際際滷shows by User: reesebt / http://www.slideshare.net/images/logo.gif 際際滷shows by User: reesebt / Thu, 05 Sep 2019 15:38:40 GMT 際際滷Share feed for 際際滷shows by User: reesebt 3DCS Advanced Analyzers (AAO) for large assemblies and fast optimization /slideshow/3dcs-advanced-analyzers-aao-for-large-assemblies-and-fast-optimization/169304723 3dcsaaoadvancedanalyzeroptimizer-web-190905153840
3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity 7 Reasons why 3DCS AAO Makes sense for you: -- You have large models with a lot of measurements or tolerances -- You want to know which part in the assembly is causing the most variation -- You have non-linear relationships in your model -- You want to optimize your tolerances quickly -- You want to know which measurements should be measured in production -- You want to check your locators or test different locating strategies -- You want to do What-If studies on different tolerances across the model See video demos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer]]>

3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity 7 Reasons why 3DCS AAO Makes sense for you: -- You have large models with a lot of measurements or tolerances -- You want to know which part in the assembly is causing the most variation -- You have non-linear relationships in your model -- You want to optimize your tolerances quickly -- You want to know which measurements should be measured in production -- You want to check your locators or test different locating strategies -- You want to do What-If studies on different tolerances across the model See video demos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer]]>
Thu, 05 Sep 2019 15:38:40 GMT /slideshow/3dcs-advanced-analyzers-aao-for-large-assemblies-and-fast-optimization/169304723 reesebt@slideshare.net(reesebt) 3DCS Advanced Analyzers (AAO) for large assemblies and fast optimization reesebt 3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity 7 Reasons why 3DCS AAO Makes sense for you: -- You have large models with a lot of measurements or tolerances -- You want to know which part in the assembly is causing the most variation -- You have non-linear relationships in your model -- You want to optimize your tolerances quickly -- You want to know which measurements should be measured in production -- You want to check your locators or test different locating strategies -- You want to do What-If studies on different tolerances across the model See video demos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsaaoadvancedanalyzeroptimizer-web-190905153840-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> 3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity 7 Reasons why 3DCS AAO Makes sense for you: -- You have large models with a lot of measurements or tolerances -- You want to know which part in the assembly is causing the most variation -- You have non-linear relationships in your model -- You want to optimize your tolerances quickly -- You want to know which measurements should be measured in production -- You want to check your locators or test different locating strategies -- You want to do What-If studies on different tolerances across the model See video demos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer
3DCS Advanced Analyzers (AAO) for large assemblies and fast optimization from Benjamin Reese
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3DCS FEA Compliant Modeler - Finite Element Analysis and Tolerance Analysis /slideshow/3dcs-fea-compliant-modeler-finite-element-analysis-and-tolerance-analysis/169304714 3dcsfeacompliantmodeler-190905153838
Traditional variation analysis methods are considered to be "rigid-body" or "non-compliant" modeling; meaning, that every part within the assembly does not flex or would not be distorted through an assembly process such as welding, clamping or unclamping of an assembly fixture. While this might be the case with a few machined components, most commodities and materials like sheet metal, plastics, aluminum, etc. can be heavily influenced through the manufacturing processes (both fabrication and assembly), thus changing the dimensional integrity or shape of the part/assembly. Finite Element Analysis (FEA) is used to determine the stresses and displacements in mechanical objects and systems and is the basis for this leading-edge advancement in predictive analysis. 3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate the variation of compliant parts and assemblies within the 3D Variation Analysis model. Watch videos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler]]>

Traditional variation analysis methods are considered to be "rigid-body" or "non-compliant" modeling; meaning, that every part within the assembly does not flex or would not be distorted through an assembly process such as welding, clamping or unclamping of an assembly fixture. While this might be the case with a few machined components, most commodities and materials like sheet metal, plastics, aluminum, etc. can be heavily influenced through the manufacturing processes (both fabrication and assembly), thus changing the dimensional integrity or shape of the part/assembly. Finite Element Analysis (FEA) is used to determine the stresses and displacements in mechanical objects and systems and is the basis for this leading-edge advancement in predictive analysis. 3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate the variation of compliant parts and assemblies within the 3D Variation Analysis model. Watch videos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler]]>
Thu, 05 Sep 2019 15:38:38 GMT /slideshow/3dcs-fea-compliant-modeler-finite-element-analysis-and-tolerance-analysis/169304714 reesebt@slideshare.net(reesebt) 3DCS FEA Compliant Modeler - Finite Element Analysis and Tolerance Analysis reesebt Traditional variation analysis methods are considered to be "rigid-body" or "non-compliant" modeling; meaning, that every part within the assembly does not flex or would not be distorted through an assembly process such as welding, clamping or unclamping of an assembly fixture. While this might be the case with a few machined components, most commodities and materials like sheet metal, plastics, aluminum, etc. can be heavily influenced through the manufacturing processes (both fabrication and assembly), thus changing the dimensional integrity or shape of the part/assembly. Finite Element Analysis (FEA) is used to determine the stresses and displacements in mechanical objects and systems and is the basis for this leading-edge advancement in predictive analysis. 3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate the variation of compliant parts and assemblies within the 3D Variation Analysis model. Watch videos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsfeacompliantmodeler-190905153838-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Traditional variation analysis methods are considered to be &quot;rigid-body&quot; or &quot;non-compliant&quot; modeling; meaning, that every part within the assembly does not flex or would not be distorted through an assembly process such as welding, clamping or unclamping of an assembly fixture. While this might be the case with a few machined components, most commodities and materials like sheet metal, plastics, aluminum, etc. can be heavily influenced through the manufacturing processes (both fabrication and assembly), thus changing the dimensional integrity or shape of the part/assembly. Finite Element Analysis (FEA) is used to determine the stresses and displacements in mechanical objects and systems and is the basis for this leading-edge advancement in predictive analysis. 3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate the variation of compliant parts and assemblies within the 3D Variation Analysis model. Watch videos and learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler
3DCS FEA Compliant Modeler - Finite Element Analysis and Tolerance Analysis from Benjamin Reese
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3DCS and Parallel Works Provide Cloud Computing for FAST Tolerance Analysis /slideshow/3dcs-and-parallel-works-provide-cloud-computing-for-fast-tolerance-analysis/169304697 dcsparallelworkswebinar-190905153836
Offload your analysis processing to the cloud, and let Distributed Computing handle the hardware and software requirements, while you continue your work. With no licenses or additional software required, you can begin using Distributed Computing right away. Purchase Credits as needed, allowing you to control how much or how little you want to use. Learn more at https://www.3dcs.com/distributed-computing-powered-parallel-works-cloud]]>

Offload your analysis processing to the cloud, and let Distributed Computing handle the hardware and software requirements, while you continue your work. With no licenses or additional software required, you can begin using Distributed Computing right away. Purchase Credits as needed, allowing you to control how much or how little you want to use. Learn more at https://www.3dcs.com/distributed-computing-powered-parallel-works-cloud]]>
Thu, 05 Sep 2019 15:38:36 GMT /slideshow/3dcs-and-parallel-works-provide-cloud-computing-for-fast-tolerance-analysis/169304697 reesebt@slideshare.net(reesebt) 3DCS and Parallel Works Provide Cloud Computing for FAST Tolerance Analysis reesebt Offload your analysis processing to the cloud, and let Distributed Computing handle the hardware and software requirements, while you continue your work. With no licenses or additional software required, you can begin using Distributed Computing right away. Purchase Credits as needed, allowing you to control how much or how little you want to use. Learn more at https://www.3dcs.com/distributed-computing-powered-parallel-works-cloud <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/dcsparallelworkswebinar-190905153836-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Offload your analysis processing to the cloud, and let Distributed Computing handle the hardware and software requirements, while you continue your work. With no licenses or additional software required, you can begin using Distributed Computing right away. Purchase Credits as needed, allowing you to control how much or how little you want to use. Learn more at https://www.3dcs.com/distributed-computing-powered-parallel-works-cloud
3DCS and Parallel Works Provide Cloud Computing for FAST Tolerance Analysis from Benjamin Reese
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3DCS Dimensional Variation Analysis Integrated in Siemens NX CAD /reesebt/3dcs-dimensional-variation-analysis-integrated-in-siemens-nx-cad 3dcsvariationanalystfornx-190905153832
3DCS for NX gives outputs based on part and process variation. These can be input in a variety of ways, from CAD based PMI to selecting from applicable feature or point based options in 3DCS. The final results are shown as statistical (Monte Carlo) and mathematics (GeoFactor) based outputs with toggle-able metrics like Cpk, Ppk, ranges, percent out of specification and a variety more. What helps 3DCS for NX stand out is its connection to Siemen's Teamcenter PLM system. Not only is 3DCS for NX integrated into NX CAD, but it in turn is integrated with Teamcenter. The 3DCS analysis data is stored in the NX CAD model, meaning that any place the model is stored or managed takes the 3DCS data along with it. This makes it easy to store your model and 3DCS data in Teamcenter, handling both version control and data security. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/siemens-nx-integrated]]>

3DCS for NX gives outputs based on part and process variation. These can be input in a variety of ways, from CAD based PMI to selecting from applicable feature or point based options in 3DCS. The final results are shown as statistical (Monte Carlo) and mathematics (GeoFactor) based outputs with toggle-able metrics like Cpk, Ppk, ranges, percent out of specification and a variety more. What helps 3DCS for NX stand out is its connection to Siemen's Teamcenter PLM system. Not only is 3DCS for NX integrated into NX CAD, but it in turn is integrated with Teamcenter. The 3DCS analysis data is stored in the NX CAD model, meaning that any place the model is stored or managed takes the 3DCS data along with it. This makes it easy to store your model and 3DCS data in Teamcenter, handling both version control and data security. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/siemens-nx-integrated]]>
Thu, 05 Sep 2019 15:38:32 GMT /reesebt/3dcs-dimensional-variation-analysis-integrated-in-siemens-nx-cad reesebt@slideshare.net(reesebt) 3DCS Dimensional Variation Analysis Integrated in Siemens NX CAD reesebt 3DCS for NX gives outputs based on part and process variation. These can be input in a variety of ways, from CAD based PMI to selecting from applicable feature or point based options in 3DCS. The final results are shown as statistical (Monte Carlo) and mathematics (GeoFactor) based outputs with toggle-able metrics like Cpk, Ppk, ranges, percent out of specification and a variety more. What helps 3DCS for NX stand out is its connection to Siemen's Teamcenter PLM system. Not only is 3DCS for NX integrated into NX CAD, but it in turn is integrated with Teamcenter. The 3DCS analysis data is stored in the NX CAD model, meaning that any place the model is stored or managed takes the 3DCS data along with it. This makes it easy to store your model and 3DCS data in Teamcenter, handling both version control and data security. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/siemens-nx-integrated <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsvariationanalystfornx-190905153832-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> 3DCS for NX gives outputs based on part and process variation. These can be input in a variety of ways, from CAD based PMI to selecting from applicable feature or point based options in 3DCS. The final results are shown as statistical (Monte Carlo) and mathematics (GeoFactor) based outputs with toggle-able metrics like Cpk, Ppk, ranges, percent out of specification and a variety more. What helps 3DCS for NX stand out is its connection to Siemen&#39;s Teamcenter PLM system. Not only is 3DCS for NX integrated into NX CAD, but it in turn is integrated with Teamcenter. The 3DCS analysis data is stored in the NX CAD model, meaning that any place the model is stored or managed takes the 3DCS data along with it. This makes it easy to store your model and 3DCS data in Teamcenter, handling both version control and data security. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/siemens-nx-integrated
3DCS Dimensional Variation Analysis Integrated in Siemens NX CAD from Benjamin Reese
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3DCS Dimensional Variation Analysis Integrated in PTC CREO /slideshow/3dcs-dimensional-variation-analysis-integrated-in-ptc-creo/169304643 3dcsvariationanalystforcreo-190905153824
3DCS Variation Analyst for Creo is an integrated software solution in PTC Creo that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitvity) Analysis. Integrated CAD tools provide a streamlined approach to analysis that improves adoption, training and process implementation. With the ability to open 3DCS for Creo in the CAD platform, and utilize PMI and CAD characteristics, implementation of 3DCS as a tolerance analysis tool becomes easy to learn and apply. With an integrated modeling approach, 3DCS saves the analysis data in the model files (assembly level), letting users manage their CAD model in leading PLM systems like Teamcenter, Windchill, Enovia and 3DEXPERIENCE and automatically bring their tolerance analysis along. This answers the challenge of both file management and version control. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/ptc-creo-integrated]]>

3DCS Variation Analyst for Creo is an integrated software solution in PTC Creo that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitvity) Analysis. Integrated CAD tools provide a streamlined approach to analysis that improves adoption, training and process implementation. With the ability to open 3DCS for Creo in the CAD platform, and utilize PMI and CAD characteristics, implementation of 3DCS as a tolerance analysis tool becomes easy to learn and apply. With an integrated modeling approach, 3DCS saves the analysis data in the model files (assembly level), letting users manage their CAD model in leading PLM systems like Teamcenter, Windchill, Enovia and 3DEXPERIENCE and automatically bring their tolerance analysis along. This answers the challenge of both file management and version control. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/ptc-creo-integrated]]>
Thu, 05 Sep 2019 15:38:24 GMT /slideshow/3dcs-dimensional-variation-analysis-integrated-in-ptc-creo/169304643 reesebt@slideshare.net(reesebt) 3DCS Dimensional Variation Analysis Integrated in PTC CREO reesebt 3DCS Variation Analyst for Creo is an integrated software solution in PTC Creo that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitvity) Analysis. Integrated CAD tools provide a streamlined approach to analysis that improves adoption, training and process implementation. With the ability to open 3DCS for Creo in the CAD platform, and utilize PMI and CAD characteristics, implementation of 3DCS as a tolerance analysis tool becomes easy to learn and apply. With an integrated modeling approach, 3DCS saves the analysis data in the model files (assembly level), letting users manage their CAD model in leading PLM systems like Teamcenter, Windchill, Enovia and 3DEXPERIENCE and automatically bring their tolerance analysis along. This answers the challenge of both file management and version control. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/ptc-creo-integrated <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsvariationanalystforcreo-190905153824-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> 3DCS Variation Analyst for Creo is an integrated software solution in PTC Creo that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitvity) Analysis. Integrated CAD tools provide a streamlined approach to analysis that improves adoption, training and process implementation. With the ability to open 3DCS for Creo in the CAD platform, and utilize PMI and CAD characteristics, implementation of 3DCS as a tolerance analysis tool becomes easy to learn and apply. With an integrated modeling approach, 3DCS saves the analysis data in the model files (assembly level), letting users manage their CAD model in leading PLM systems like Teamcenter, Windchill, Enovia and 3DEXPERIENCE and automatically bring their tolerance analysis along. This answers the challenge of both file management and version control. Learn more at https://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/ptc-creo-integrated
3DCS Dimensional Variation Analysis Integrated in PTC CREO from Benjamin Reese
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QDM WEB System -- Connect your suppliers and global enterprise /slideshow/qdm-web-system-connect-your-suppliers-and-global-enterprise/169304598 qdmsystem-190905153816
QDM WEB provides a portal to view your enterprise at any level of the business. By connecting modular systems together that utilize SPC monitoring and reporting, QDM WEB gives a ground-level to top-level view of quality minute-by-minute, letting you catch manufacturing issues as they start before bad parts are made. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/modules/qdm-gateway-central-database]]>

QDM WEB provides a portal to view your enterprise at any level of the business. By connecting modular systems together that utilize SPC monitoring and reporting, QDM WEB gives a ground-level to top-level view of quality minute-by-minute, letting you catch manufacturing issues as they start before bad parts are made. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/modules/qdm-gateway-central-database]]>
Thu, 05 Sep 2019 15:38:16 GMT /slideshow/qdm-web-system-connect-your-suppliers-and-global-enterprise/169304598 reesebt@slideshare.net(reesebt) QDM WEB System -- Connect your suppliers and global enterprise reesebt QDM WEB provides a portal to view your enterprise at any level of the business. By connecting modular systems together that utilize SPC monitoring and reporting, QDM WEB gives a ground-level to top-level view of quality minute-by-minute, letting you catch manufacturing issues as they start before bad parts are made. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/modules/qdm-gateway-central-database <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/qdmsystem-190905153816-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> QDM WEB provides a portal to view your enterprise at any level of the business. By connecting modular systems together that utilize SPC monitoring and reporting, QDM WEB gives a ground-level to top-level view of quality minute-by-minute, letting you catch manufacturing issues as they start before bad parts are made. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/modules/qdm-gateway-central-database
QDM WEB System -- Connect your suppliers and global enterprise from Benjamin Reese
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QDM SPC System Product Suite -- Customize Your System /slideshow/qdm-spc-system-product-suite-customize-your-system/169304583 qdmproductssuiteoverviewplantsystem-2016-190905153814
QDM is a modular SPC System that provides a number of different modules to combine into a custom system that integrates with your processes. As part of the Quality 4.0 initiative, QDM provides visibility into your quality through real-time monitoring, up to the minute dashboards and alerts, as well as root cause analysis tools to find the source of problems. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/system-overview]]>

QDM is a modular SPC System that provides a number of different modules to combine into a custom system that integrates with your processes. As part of the Quality 4.0 initiative, QDM provides visibility into your quality through real-time monitoring, up to the minute dashboards and alerts, as well as root cause analysis tools to find the source of problems. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/system-overview]]>
Thu, 05 Sep 2019 15:38:14 GMT /slideshow/qdm-spc-system-product-suite-customize-your-system/169304583 reesebt@slideshare.net(reesebt) QDM SPC System Product Suite -- Customize Your System reesebt QDM is a modular SPC System that provides a number of different modules to combine into a custom system that integrates with your processes. As part of the Quality 4.0 initiative, QDM provides visibility into your quality through real-time monitoring, up to the minute dashboards and alerts, as well as root cause analysis tools to find the source of problems. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/system-overview <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/qdmproductssuiteoverviewplantsystem-2016-190905153814-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> QDM is a modular SPC System that provides a number of different modules to combine into a custom system that integrates with your processes. As part of the Quality 4.0 initiative, QDM provides visibility into your quality through real-time monitoring, up to the minute dashboards and alerts, as well as root cause analysis tools to find the source of problems. Learn more at https://www.3dcs.com/automated-spc-systems-qdm/system-overview
QDM SPC System Product Suite -- Customize Your System from Benjamin Reese
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Worst Case Tolerance Analysis - What is it, why do it, and how? /slideshow/worst-case-tolerance-analysis-what-is-it-why-do-it-and-how/96399271 webinar-worstcaseanalysis-180508144120
From the DCS Webinar on Worst Case: http://mkt.3dcs.com/worst-case-tolerance-analysis-webinar Worst Case tolerance analysis is where each individual tolerance is set to a point in its range (typically a tolerance limit) where it will result in either the maximum or minimum output at a specific measured location. A Worst Case analysis is the only way to guarantee that an assembly of good detail parts will not be out of specification. However, in most cases, a statistical analysis gives the results needed to make decisions and reduce manufacturing costs. Learn how 3DCS calculates, analyzes and answers Worst Case tolerance analysis. Find out about: -- What is Worst Case? -- Worst Case 1D vs Worst Case 3D -- Worst Case vs RSS -- GeoFactor Analyzer Worst Case -- Simple Example in 3DCS -- Worst Case User DLL -- Larger Example in 3DCS -- Q&A ]]>

From the DCS Webinar on Worst Case: http://mkt.3dcs.com/worst-case-tolerance-analysis-webinar Worst Case tolerance analysis is where each individual tolerance is set to a point in its range (typically a tolerance limit) where it will result in either the maximum or minimum output at a specific measured location. A Worst Case analysis is the only way to guarantee that an assembly of good detail parts will not be out of specification. However, in most cases, a statistical analysis gives the results needed to make decisions and reduce manufacturing costs. Learn how 3DCS calculates, analyzes and answers Worst Case tolerance analysis. Find out about: -- What is Worst Case? -- Worst Case 1D vs Worst Case 3D -- Worst Case vs RSS -- GeoFactor Analyzer Worst Case -- Simple Example in 3DCS -- Worst Case User DLL -- Larger Example in 3DCS -- Q&A ]]>
Tue, 08 May 2018 14:41:20 GMT /slideshow/worst-case-tolerance-analysis-what-is-it-why-do-it-and-how/96399271 reesebt@slideshare.net(reesebt) Worst Case Tolerance Analysis - What is it, why do it, and how? reesebt From the DCS Webinar on Worst Case: http://mkt.3dcs.com/worst-case-tolerance-analysis-webinar Worst Case tolerance analysis is where each individual tolerance is set to a point in its range (typically a tolerance limit) where it will result in either the maximum or minimum output at a specific measured location. A Worst Case analysis is the only way to guarantee that an assembly of good detail parts will not be out of specification. However, in most cases, a statistical analysis gives the results needed to make decisions and reduce manufacturing costs. Learn how 3DCS calculates, analyzes and answers Worst Case tolerance analysis. Find out about: -- What is Worst Case? -- Worst Case 1D vs Worst Case 3D -- Worst Case vs RSS -- GeoFactor Analyzer Worst Case -- Simple Example in 3DCS -- Worst Case User DLL -- Larger Example in 3DCS -- Q&A <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/webinar-worstcaseanalysis-180508144120-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> From the DCS Webinar on Worst Case: http://mkt.3dcs.com/worst-case-tolerance-analysis-webinar Worst Case tolerance analysis is where each individual tolerance is set to a point in its range (typically a tolerance limit) where it will result in either the maximum or minimum output at a specific measured location. A Worst Case analysis is the only way to guarantee that an assembly of good detail parts will not be out of specification. However, in most cases, a statistical analysis gives the results needed to make decisions and reduce manufacturing costs. Learn how 3DCS calculates, analyzes and answers Worst Case tolerance analysis. Find out about: -- What is Worst Case? -- Worst Case 1D vs Worst Case 3D -- Worst Case vs RSS -- GeoFactor Analyzer Worst Case -- Simple Example in 3DCS -- Worst Case User DLL -- Larger Example in 3DCS -- Q&amp;A
Worst Case Tolerance Analysis - What is it, why do it, and how? from Benjamin Reese
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3DCS FEA Compliant Modeler - Add Finite Element Analysis FEA to Tolerance Analysis /slideshow/3dcs-fea-compliant-modeler-add-finite-element-analysis-fea-to-tolerance-analysis/94905340 3dcsfeacompliantmodeler-180424183427
3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate variation of compliant parts and assemblies within the 3D Variation Analysis model. Optimize Assembly and Manufacturing Processes Determine optimal placement and order of operation for processes When welding, bolting, riveting or assembling parts, the order and the process can have as much of an effect on final results as the parts themselves. Riveting can stretch aircraft aluminum skin, assembling can bend and cause spring back, and bolting can warp materials. Simulate, test and determine the best order of operations and the impact these processes will have on your parts. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler]]>

3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate variation of compliant parts and assemblies within the 3D Variation Analysis model. Optimize Assembly and Manufacturing Processes Determine optimal placement and order of operation for processes When welding, bolting, riveting or assembling parts, the order and the process can have as much of an effect on final results as the parts themselves. Riveting can stretch aircraft aluminum skin, assembling can bend and cause spring back, and bolting can warp materials. Simulate, test and determine the best order of operations and the impact these processes will have on your parts. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler]]>
Tue, 24 Apr 2018 18:34:27 GMT /slideshow/3dcs-fea-compliant-modeler-add-finite-element-analysis-fea-to-tolerance-analysis/94905340 reesebt@slideshare.net(reesebt) 3DCS FEA Compliant Modeler - Add Finite Element Analysis FEA to Tolerance Analysis reesebt 3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate variation of compliant parts and assemblies within the 3D Variation Analysis model. Optimize Assembly and Manufacturing Processes Determine optimal placement and order of operation for processes When welding, bolting, riveting or assembling parts, the order and the process can have as much of an effect on final results as the parts themselves. Riveting can stretch aircraft aluminum skin, assembling can bend and cause spring back, and bolting can warp materials. Simulate, test and determine the best order of operations and the impact these processes will have on your parts. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsfeacompliantmodeler-180424183427-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> 3DCS FEA Compliant Modeler, an add-on module to the 3DCS software solutions, utilizes FEA methods to accurately simulate variation of compliant parts and assemblies within the 3D Variation Analysis model. Optimize Assembly and Manufacturing Processes Determine optimal placement and order of operation for processes When welding, bolting, riveting or assembling parts, the order and the process can have as much of an effect on final results as the parts themselves. Riveting can stretch aircraft aluminum skin, assembling can bend and cause spring back, and bolting can warp materials. Simulate, test and determine the best order of operations and the impact these processes will have on your parts. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/fea-compliant-modeler
3DCS FEA Compliant Modeler - Add Finite Element Analysis FEA to Tolerance Analysis from Benjamin Reese
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3DCS Advanced Tolerance Analysis - 5 Additional Analyzers and Optimizers /slideshow/3dcs-advanced-tolerance-analysis-5-additional-analyzers-and-optimizers/94904767 3dcsaaoadvancedanalyzeroptimizer-web-180424182849
Five Tolerance Analysis Tools in One 3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity Why Use Advanced Analyzer and Optimizer? 3DCS Advanced Analyzer and Optimizer Add-on Module -->You have large models with a lot of measurements or tolerances --> You want to know which part in the assembly is causing the most variation --> You have non-linear relationships in your model --> You want to optimize your tolerances quickly --> You want to know which measurements should be measured in production --> You want to check your locators or test different locating strategies --> You want to do What If studies on different tolerances across the model Find out more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer]]>

Five Tolerance Analysis Tools in One 3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity Why Use Advanced Analyzer and Optimizer? 3DCS Advanced Analyzer and Optimizer Add-on Module -->You have large models with a lot of measurements or tolerances --> You want to know which part in the assembly is causing the most variation --> You have non-linear relationships in your model --> You want to optimize your tolerances quickly --> You want to know which measurements should be measured in production --> You want to check your locators or test different locating strategies --> You want to do What If studies on different tolerances across the model Find out more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer]]>
Tue, 24 Apr 2018 18:28:49 GMT /slideshow/3dcs-advanced-tolerance-analysis-5-additional-analyzers-and-optimizers/94904767 reesebt@slideshare.net(reesebt) 3DCS Advanced Tolerance Analysis - 5 Additional Analyzers and Optimizers reesebt Five Tolerance Analysis Tools in One 3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity Why Use Advanced Analyzer and Optimizer? 3DCS Advanced Analyzer and Optimizer Add-on Module -->You have large models with a lot of measurements or tolerances --> You want to know which part in the assembly is causing the most variation --> You have non-linear relationships in your model --> You want to optimize your tolerances quickly --> You want to know which measurements should be measured in production --> You want to check your locators or test different locating strategies --> You want to do What If studies on different tolerances across the model Find out more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsaaoadvancedanalyzeroptimizer-web-180424182849-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Five Tolerance Analysis Tools in One 3DCS Advanced Analyzer and Optimizer (AAO) contains five tools for 3DCS Variation Analyst, expanding its capabilities. These include: 1. Advanced Analyzer 2. Critical Tolerance Identifier 3. Tolerance Optimizer 4. Locator Sensitivity Analyzer 5. Simulation-Based Sensitivity Why Use Advanced Analyzer and Optimizer? 3DCS Advanced Analyzer and Optimizer Add-on Module --&gt;You have large models with a lot of measurements or tolerances --&gt; You want to know which part in the assembly is causing the most variation --&gt; You have non-linear relationships in your model --&gt; You want to optimize your tolerances quickly --&gt; You want to know which measurements should be measured in production --&gt; You want to check your locators or test different locating strategies --&gt; You want to do What If studies on different tolerances across the model Find out more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/add-ons/3dcs-advanced-analyzer-optimizer
3DCS Advanced Tolerance Analysis - 5 Additional Analyzers and Optimizers from Benjamin Reese
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CATIA Integrated Tolerance Analysis - 3DCS for CATIA V5 /slideshow/catia-integrated-tolerance-analysis-3dcs-for-catia-v5/94904270 3dcsvariationanalystforcatia-v5-180424182357
3DCS Variation Analyst CAA V5 Based Software is used by manufacturers across the globe for Tolerance Analysis to reduce scrap, rework and warranty claims. 3DCS Variation Analyst CAA V5 Based (3DCS for V5) is an integrated software solution in CATIA V5 that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitivity) Analysis. Model Part and Process Variation - How does it work? Use CATIA FTA - Embedded GD&T3DCS for V5 uses three methods of simulation; Monte Carlo Simulation, High-Low-Mean (Sensitivity analysis) and GeoFactor Analysis. These together highlight the sources of variation as well as potential build issues in the product. By accurately modeling the build process, users can determine how their process will affect the assembly in addition to their part tolerance stack-up. This together essentially creates a virtual prototype that can be used to make decisions about design changes and tooling while reducing scrap and rework. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/catia-v5-integrated]]>

3DCS Variation Analyst CAA V5 Based Software is used by manufacturers across the globe for Tolerance Analysis to reduce scrap, rework and warranty claims. 3DCS Variation Analyst CAA V5 Based (3DCS for V5) is an integrated software solution in CATIA V5 that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitivity) Analysis. Model Part and Process Variation - How does it work? Use CATIA FTA - Embedded GD&T3DCS for V5 uses three methods of simulation; Monte Carlo Simulation, High-Low-Mean (Sensitivity analysis) and GeoFactor Analysis. These together highlight the sources of variation as well as potential build issues in the product. By accurately modeling the build process, users can determine how their process will affect the assembly in addition to their part tolerance stack-up. This together essentially creates a virtual prototype that can be used to make decisions about design changes and tooling while reducing scrap and rework. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/catia-v5-integrated]]>
Tue, 24 Apr 2018 18:23:57 GMT /slideshow/catia-integrated-tolerance-analysis-3dcs-for-catia-v5/94904270 reesebt@slideshare.net(reesebt) CATIA Integrated Tolerance Analysis - 3DCS for CATIA V5 reesebt 3DCS Variation Analyst CAA V5 Based Software is used by manufacturers across the globe for Tolerance Analysis to reduce scrap, rework and warranty claims. 3DCS Variation Analyst CAA V5 Based (3DCS for V5) is an integrated software solution in CATIA V5 that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitivity) Analysis. Model Part and Process Variation - How does it work? Use CATIA FTA - Embedded GD&T3DCS for V5 uses three methods of simulation; Monte Carlo Simulation, High-Low-Mean (Sensitivity analysis) and GeoFactor Analysis. These together highlight the sources of variation as well as potential build issues in the product. By accurately modeling the build process, users can determine how their process will affect the assembly in addition to their part tolerance stack-up. This together essentially creates a virtual prototype that can be used to make decisions about design changes and tooling while reducing scrap and rework. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/catia-v5-integrated <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsvariationanalystforcatia-v5-180424182357-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> 3DCS Variation Analyst CAA V5 Based Software is used by manufacturers across the globe for Tolerance Analysis to reduce scrap, rework and warranty claims. 3DCS Variation Analyst CAA V5 Based (3DCS for V5) is an integrated software solution in CATIA V5 that simulates product assembly and part tolerance 3D stack-ups through Monte Carlo Analysis and High-Low-Mean (Sensitivity) Analysis. Model Part and Process Variation - How does it work? Use CATIA FTA - Embedded GD&amp;T3DCS for V5 uses three methods of simulation; Monte Carlo Simulation, High-Low-Mean (Sensitivity analysis) and GeoFactor Analysis. These together highlight the sources of variation as well as potential build issues in the product. By accurately modeling the build process, users can determine how their process will affect the assembly in addition to their part tolerance stack-up. This together essentially creates a virtual prototype that can be used to make decisions about design changes and tooling while reducing scrap and rework. Learn more at: http://www.3dcs.com/tolerance-analysis-software-and-spc-systems/3dcs-software/catia-v5-integrated
CATIA Integrated Tolerance Analysis - 3DCS for CATIA V5 from Benjamin Reese
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3DCS /slideshow/3-dcs-colormapingpreviewcatiav5multicad/42838777 3dcscolormaping-preview-catia-v5-multi-cad-141218103119-conversion-gate02
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Thu, 18 Dec 2014 10:31:18 GMT /slideshow/3-dcs-colormapingpreviewcatiav5multicad/42838777 reesebt@slideshare.net(reesebt) 3DCS reesebt <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcscolormaping-preview-catia-v5-multi-cad-141218103119-conversion-gate02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br>
3DCS from Benjamin Reese
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3DCS is Fully Integrated in CATIA V6 3DExperience Platform /slideshow/3dcs-if-fully-integrated-in-catia-v6-3dexperience-platform/41867796 3dcs-for-v6-webinar-light-141121130517-conversion-gate02
Bring your dimensional analysis into the 3DExperience from Dassault Systemes and optimize your designs to reduce rework, scrap and warranty claims. With powerful tools and quality solutions, 3DCS empowers engineers and designers to bring their CAD models to life, using real data and realistic 3d simulation in order to analyze products before producing them. These virtual prototypes let the designers tweak and fix issues before they become costly, reducing time to market and the possibility of problems later on. Find out how 3DCS can help you reduce stress from manufacturing issues and empower you to reduce physical prototyping.]]>

Bring your dimensional analysis into the 3DExperience from Dassault Systemes and optimize your designs to reduce rework, scrap and warranty claims. With powerful tools and quality solutions, 3DCS empowers engineers and designers to bring their CAD models to life, using real data and realistic 3d simulation in order to analyze products before producing them. These virtual prototypes let the designers tweak and fix issues before they become costly, reducing time to market and the possibility of problems later on. Find out how 3DCS can help you reduce stress from manufacturing issues and empower you to reduce physical prototyping.]]>
Fri, 21 Nov 2014 13:05:17 GMT /slideshow/3dcs-if-fully-integrated-in-catia-v6-3dexperience-platform/41867796 reesebt@slideshare.net(reesebt) 3DCS is Fully Integrated in CATIA V6 3DExperience Platform reesebt Bring your dimensional analysis into the 3DExperience from Dassault Systemes and optimize your designs to reduce rework, scrap and warranty claims. With powerful tools and quality solutions, 3DCS empowers engineers and designers to bring their CAD models to life, using real data and realistic 3d simulation in order to analyze products before producing them. These virtual prototypes let the designers tweak and fix issues before they become costly, reducing time to market and the possibility of problems later on. Find out how 3DCS can help you reduce stress from manufacturing issues and empower you to reduce physical prototyping. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcs-for-v6-webinar-light-141121130517-conversion-gate02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Bring your dimensional analysis into the 3DExperience from Dassault Systemes and optimize your designs to reduce rework, scrap and warranty claims. With powerful tools and quality solutions, 3DCS empowers engineers and designers to bring their CAD models to life, using real data and realistic 3d simulation in order to analyze products before producing them. These virtual prototypes let the designers tweak and fix issues before they become costly, reducing time to market and the possibility of problems later on. Find out how 3DCS can help you reduce stress from manufacturing issues and empower you to reduce physical prototyping.
3DCS is Fully Integrated in CATIA V6 3DExperience Platform from Benjamin Reese
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Webinar Presentation: QDM Supplier Quality Assurance, Communicate Quickly and Easily with Your Suppliers /slideshow/webinar-presentation-qdm-supplier-quality-assurance-communicate-quickly-and-easily-with-your/35048307 qdm-sqa-webinar-presentation-by-dcs-140523100638-phpapp02
This webinar covers the use of QDM to quickly communicate measurement plans, coordinates and critical to quality characteristics with suppliers. In addition, it gives suppliers the ability to collect all of their measurement data and easily translate it into actionable reports for their customers. View the recording on Youtube at http://youtu.be/SpxD-FGIdPQ]]>

This webinar covers the use of QDM to quickly communicate measurement plans, coordinates and critical to quality characteristics with suppliers. In addition, it gives suppliers the ability to collect all of their measurement data and easily translate it into actionable reports for their customers. View the recording on Youtube at http://youtu.be/SpxD-FGIdPQ]]>
Fri, 23 May 2014 10:06:38 GMT /slideshow/webinar-presentation-qdm-supplier-quality-assurance-communicate-quickly-and-easily-with-your/35048307 reesebt@slideshare.net(reesebt) Webinar Presentation: QDM Supplier Quality Assurance, Communicate Quickly and Easily with Your Suppliers reesebt This webinar covers the use of QDM to quickly communicate measurement plans, coordinates and critical to quality characteristics with suppliers. In addition, it gives suppliers the ability to collect all of their measurement data and easily translate it into actionable reports for their customers. View the recording on Youtube at http://youtu.be/SpxD-FGIdPQ <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/qdm-sqa-webinar-presentation-by-dcs-140523100638-phpapp02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> This webinar covers the use of QDM to quickly communicate measurement plans, coordinates and critical to quality characteristics with suppliers. In addition, it gives suppliers the ability to collect all of their measurement data and easily translate it into actionable reports for their customers. View the recording on Youtube at http://youtu.be/SpxD-FGIdPQ
Webinar Presentation: QDM Supplier Quality Assurance, Communicate Quickly and Easily with Your Suppliers from Benjamin Reese
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SPC for Every Level of Your Business --> QDM /slideshow/qdm-summary/33568607 qdmsummary-140415150937-phpapp01
QDM (Quality Data Management) is a scalable system for connecting and leveraging SPC in small and large corporations. As a modular system, QDM can be used to simplify reporting and real time monitoring for small manufacturers. Need to know what is wrong with a group of parts? Get a report on it in 7 seconds with up to date information. Have an issue? Use QDM to find the problem and test solutions. Multiple plants in multiple countries across the world? QDM allows managers and quality teams to communicate and see quality metrics in real time, connecting corporate managers to their teams on the plant floor. Never before has a graphical based reporting system been so flexible, and so effective at reducing the costs of quality. Don't believe us? Let us prove it. Get a free demo today by emailing sales@3dcs.com or visit us on the web at www.3dcs.com ]]>

QDM (Quality Data Management) is a scalable system for connecting and leveraging SPC in small and large corporations. As a modular system, QDM can be used to simplify reporting and real time monitoring for small manufacturers. Need to know what is wrong with a group of parts? Get a report on it in 7 seconds with up to date information. Have an issue? Use QDM to find the problem and test solutions. Multiple plants in multiple countries across the world? QDM allows managers and quality teams to communicate and see quality metrics in real time, connecting corporate managers to their teams on the plant floor. Never before has a graphical based reporting system been so flexible, and so effective at reducing the costs of quality. Don't believe us? Let us prove it. Get a free demo today by emailing sales@3dcs.com or visit us on the web at www.3dcs.com ]]>
Tue, 15 Apr 2014 15:09:37 GMT /slideshow/qdm-summary/33568607 reesebt@slideshare.net(reesebt) SPC for Every Level of Your Business --> QDM reesebt QDM (Quality Data Management) is a scalable system for connecting and leveraging SPC in small and large corporations. As a modular system, QDM can be used to simplify reporting and real time monitoring for small manufacturers. Need to know what is wrong with a group of parts? Get a report on it in 7 seconds with up to date information. Have an issue? Use QDM to find the problem and test solutions. Multiple plants in multiple countries across the world? QDM allows managers and quality teams to communicate and see quality metrics in real time, connecting corporate managers to their teams on the plant floor. Never before has a graphical based reporting system been so flexible, and so effective at reducing the costs of quality. Don't believe us? Let us prove it. Get a free demo today by emailing sales@3dcs.com or visit us on the web at www.3dcs.com <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/qdmsummary-140415150937-phpapp01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> QDM (Quality Data Management) is a scalable system for connecting and leveraging SPC in small and large corporations. As a modular system, QDM can be used to simplify reporting and real time monitoring for small manufacturers. Need to know what is wrong with a group of parts? Get a report on it in 7 seconds with up to date information. Have an issue? Use QDM to find the problem and test solutions. Multiple plants in multiple countries across the world? QDM allows managers and quality teams to communicate and see quality metrics in real time, connecting corporate managers to their teams on the plant floor. Never before has a graphical based reporting system been so flexible, and so effective at reducing the costs of quality. Don&#39;t believe us? Let us prove it. Get a free demo today by emailing sales@3dcs.com or visit us on the web at www.3dcs.com
SPC for Every Level of Your Business --> QDM from Benjamin Reese
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3DCS Compliant Modeler, add FEA to your Tolerance Analysis /slideshow/3-dcs-feacompliantmodeling/33568035 3dcsfeacompliantmodeling-140415145446-phpapp02
3DCS Compliant Modeler is the easy way to add Finite Element Analysis to your Tolerance Analysis. This add-on accounts for deformation in parts and assemblies from force, gravity, heat, clamping, welding, springback and other effects. Working with FEA Mesh, a simple output from any FEA Solver, 3DCS Compliant Modeler makes it easy to add greater depth to your analysis. Use simulation to resolve issues upfront in the design phase, and reduce the rework and flexible problems caused by many new materials. Let us show you how you can reduce variation and avoid a major headache from working with flexible materials. Email DCS today at sales@3dcs.com for a free demonstration.]]>

3DCS Compliant Modeler is the easy way to add Finite Element Analysis to your Tolerance Analysis. This add-on accounts for deformation in parts and assemblies from force, gravity, heat, clamping, welding, springback and other effects. Working with FEA Mesh, a simple output from any FEA Solver, 3DCS Compliant Modeler makes it easy to add greater depth to your analysis. Use simulation to resolve issues upfront in the design phase, and reduce the rework and flexible problems caused by many new materials. Let us show you how you can reduce variation and avoid a major headache from working with flexible materials. Email DCS today at sales@3dcs.com for a free demonstration.]]>
Tue, 15 Apr 2014 14:54:46 GMT /slideshow/3-dcs-feacompliantmodeling/33568035 reesebt@slideshare.net(reesebt) 3DCS Compliant Modeler, add FEA to your Tolerance Analysis reesebt 3DCS Compliant Modeler is the easy way to add Finite Element Analysis to your Tolerance Analysis. This add-on accounts for deformation in parts and assemblies from force, gravity, heat, clamping, welding, springback and other effects. Working with FEA Mesh, a simple output from any FEA Solver, 3DCS Compliant Modeler makes it easy to add greater depth to your analysis. Use simulation to resolve issues upfront in the design phase, and reduce the rework and flexible problems caused by many new materials. Let us show you how you can reduce variation and avoid a major headache from working with flexible materials. Email DCS today at sales@3dcs.com for a free demonstration. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/3dcsfeacompliantmodeling-140415145446-phpapp02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> 3DCS Compliant Modeler is the easy way to add Finite Element Analysis to your Tolerance Analysis. This add-on accounts for deformation in parts and assemblies from force, gravity, heat, clamping, welding, springback and other effects. Working with FEA Mesh, a simple output from any FEA Solver, 3DCS Compliant Modeler makes it easy to add greater depth to your analysis. Use simulation to resolve issues upfront in the design phase, and reduce the rework and flexible problems caused by many new materials. Let us show you how you can reduce variation and avoid a major headache from working with flexible materials. Email DCS today at sales@3dcs.com for a free demonstration.
3DCS Compliant Modeler, add FEA to your Tolerance Analysis from Benjamin Reese
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3DCS Advanced Analyzer and Optimizer for Tolerance Analysis /slideshow/3dcs-advanced-analyzer-and-optimizer-for-tolerance-analysis/33565476 aaooverview-140415135220-phpapp02
Use AAO, Advanced Analyzer and Optimizer, to quickly optimize your designs for maximum quality at the lowest cost. Excellent for quickly testing and changing many tolerances at once, AAO is a great way to speed up modeling, and more importantly, speed up the process of testing and checking new tolerance strategies. As an inexpensive add-on to any of DCS's 3DCS software suites, including the embedded CATIA versions, AAO is a simple way to save time and increase efficiency. ]]>

Use AAO, Advanced Analyzer and Optimizer, to quickly optimize your designs for maximum quality at the lowest cost. Excellent for quickly testing and changing many tolerances at once, AAO is a great way to speed up modeling, and more importantly, speed up the process of testing and checking new tolerance strategies. As an inexpensive add-on to any of DCS's 3DCS software suites, including the embedded CATIA versions, AAO is a simple way to save time and increase efficiency. ]]>
Tue, 15 Apr 2014 13:52:20 GMT /slideshow/3dcs-advanced-analyzer-and-optimizer-for-tolerance-analysis/33565476 reesebt@slideshare.net(reesebt) 3DCS Advanced Analyzer and Optimizer for Tolerance Analysis reesebt Use AAO, Advanced Analyzer and Optimizer, to quickly optimize your designs for maximum quality at the lowest cost. Excellent for quickly testing and changing many tolerances at once, AAO is a great way to speed up modeling, and more importantly, speed up the process of testing and checking new tolerance strategies. As an inexpensive add-on to any of DCS's 3DCS software suites, including the embedded CATIA versions, AAO is a simple way to save time and increase efficiency. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/aaooverview-140415135220-phpapp02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Use AAO, Advanced Analyzer and Optimizer, to quickly optimize your designs for maximum quality at the lowest cost. Excellent for quickly testing and changing many tolerances at once, AAO is a great way to speed up modeling, and more importantly, speed up the process of testing and checking new tolerance strategies. As an inexpensive add-on to any of DCS&#39;s 3DCS software suites, including the embedded CATIA versions, AAO is a simple way to save time and increase efficiency.
3DCS Advanced Analyzer and Optimizer for Tolerance Analysis from Benjamin Reese
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https://cdn.slidesharecdn.com/profile-photo-reesebt-48x48.jpg?cb=1568919085 Responsible for marketing, sales support, Salesforce and business administration, event planning and web administration. - Re-branded company including new materials, web site and logo - Spear headed new marketing initiatives such as webinar events, social media channels and inbound marketing - Increased web traffic and lead generation year over year www.3dcs.com https://cdn.slidesharecdn.com/ss_thumbnails/3dcsaaoadvancedanalyzeroptimizer-web-190905153840-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/3dcs-advanced-analyzers-aao-for-large-assemblies-and-fast-optimization/169304723 3DCS Advanced Analyzer... https://cdn.slidesharecdn.com/ss_thumbnails/3dcsfeacompliantmodeler-190905153838-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/3dcs-fea-compliant-modeler-finite-element-analysis-and-tolerance-analysis/169304714 3DCS FEA Compliant Mod... https://cdn.slidesharecdn.com/ss_thumbnails/dcsparallelworkswebinar-190905153836-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/3dcs-and-parallel-works-provide-cloud-computing-for-fast-tolerance-analysis/169304697 3DCS and Parallel Work...