際際滷shows by User: NSANKARME / http://www.slideshare.net/images/logo.gif 際際滷shows by User: NSANKARME / Fri, 15 Nov 2024 03:23:13 GMT 際際滷Share feed for 際際滷shows by User: NSANKARME Iron carbon phase diagram and cast irons /slideshow/iron-carbon-phase-diagram-and-cast-irons/273321505 unit1-241115032313-5affcb15
Iron carbon phase diagram and cast iron types in engineering materials and metallurgy unit 1]]>

Iron carbon phase diagram and cast iron types in engineering materials and metallurgy unit 1]]>
Fri, 15 Nov 2024 03:23:13 GMT /slideshow/iron-carbon-phase-diagram-and-cast-irons/273321505 NSANKARME@slideshare.net(NSANKARME) Iron carbon phase diagram and cast irons NSANKARME Iron carbon phase diagram and cast iron types in engineering materials and metallurgy unit 1 <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/unit1-241115032313-5affcb15-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Iron carbon phase diagram and cast iron types in engineering materials and metallurgy unit 1
Iron carbon phase diagram and cast irons from sankar n
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Electron Beam Melting for structural engineering /slideshow/electron-beam-melting-for-structural-engineering/271909734 electronbeammelting-240920032559-9cfa271c
Election beams welding ]]>

Election beams welding ]]>
Fri, 20 Sep 2024 03:25:59 GMT /slideshow/electron-beam-melting-for-structural-engineering/271909734 NSANKARME@slideshare.net(NSANKARME) Electron Beam Melting for structural engineering NSANKARME Election beams welding <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/electronbeammelting-240920032559-9cfa271c-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Election beams welding
Electron Beam Melting for structural engineering from sankar n
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Hybrid Additive Manufacturing application and advanced /slideshow/hybrid-additive-manufacturing-application-and-advanced/271898234 hybridadditivemanufacturing-240919122621-0c06f776
Hybrid additive manufacturing ]]>

Hybrid additive manufacturing ]]>
Thu, 19 Sep 2024 12:26:21 GMT /slideshow/hybrid-additive-manufacturing-application-and-advanced/271898234 NSANKARME@slideshare.net(NSANKARME) Hybrid Additive Manufacturing application and advanced NSANKARME Hybrid additive manufacturing <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/hybridadditivemanufacturing-240919122621-0c06f776-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Hybrid additive manufacturing
Hybrid Additive Manufacturing application and advanced from sankar n
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Hardness- /slideshow/hardness-131482764/131482764 hardness-190212133120
Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness hardness conversion Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness ]]>

Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness hardness conversion Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness ]]>
Tue, 12 Feb 2019 13:31:20 GMT /slideshow/hardness-131482764/131482764 NSANKARME@slideshare.net(NSANKARME) Hardness- NSANKARME Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness hardness conversion Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/hardness-190212133120-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness hardness conversion Types Macro Hardness Rockwell Hardness Test Rock well superficial Test Brinell Hardness Tests Micro Hardness Vickers Micro indentation Hardness Tests Knoop Micro indentation Hardness Tests Nano Hardness
Hardness- from sankar n
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Welding of High Strength low Alloy (HSLA) Steels /slideshow/welding-of-high-strength-low-alloy-hsla-steels/123010977 presentation-4-181114170445
Introduction Physical Metallurgy of HSLA Steel Welding Metallurgy of HSLA Steel Problems Encountered In HSLA Steel Welding Solution For The Problem Conclusion. ]]>

Introduction Physical Metallurgy of HSLA Steel Welding Metallurgy of HSLA Steel Problems Encountered In HSLA Steel Welding Solution For The Problem Conclusion. ]]>
Wed, 14 Nov 2018 17:04:45 GMT /slideshow/welding-of-high-strength-low-alloy-hsla-steels/123010977 NSANKARME@slideshare.net(NSANKARME) Welding of High Strength low Alloy (HSLA) Steels NSANKARME Introduction Physical Metallurgy of HSLA Steel Welding Metallurgy of HSLA Steel Problems Encountered In HSLA Steel Welding Solution For The Problem Conclusion. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/presentation-4-181114170445-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Introduction Physical Metallurgy of HSLA Steel Welding Metallurgy of HSLA Steel Problems Encountered In HSLA Steel Welding Solution For The Problem Conclusion.
Welding of High Strength low Alloy (HSLA) Steels from sankar n
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Corrosion /slideshow/corrosion-93659155/93659155 corrosion-180412104007
A brief introduction to corrosion and types of corrosion, such as pitting corrosion. Cavitations corrosion Galvanic corrosion. Fretting corrosion. Crevice corrosion. Intergranular and transgranular corrosion, Stress corrosion ]]>

A brief introduction to corrosion and types of corrosion, such as pitting corrosion. Cavitations corrosion Galvanic corrosion. Fretting corrosion. Crevice corrosion. Intergranular and transgranular corrosion, Stress corrosion ]]>
Thu, 12 Apr 2018 10:40:07 GMT /slideshow/corrosion-93659155/93659155 NSANKARME@slideshare.net(NSANKARME) Corrosion NSANKARME A brief introduction to corrosion and types of corrosion, such as pitting corrosion. Cavitations corrosion Galvanic corrosion. Fretting corrosion. Crevice corrosion. Intergranular and transgranular corrosion, Stress corrosion <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/corrosion-180412104007-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> A brief introduction to corrosion and types of corrosion, such as pitting corrosion. Cavitations corrosion Galvanic corrosion. Fretting corrosion. Crevice corrosion. Intergranular and transgranular corrosion, Stress corrosion
Corrosion from sankar n
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Gas Metal Arc Welding" (or GMAW). /slideshow/gas-metal-arc-welding-or-gmaw/81846876 mig-171110095743
What is MIG welding? Working process Process Parameters Advantages Limitations Applications MIG welding is an arc welding process in which a continuous solid wire electrode is fed through a welding gun and into the weld pool, joining the two base materials together. A shielding gas is also sent through the welding gun and protects the weld pool from contamination. In fact, MIG stands for Metal Inert Gas. The technical name for it is "Gas Metal Arc Welding" (or GMAW). ]]>

What is MIG welding? Working process Process Parameters Advantages Limitations Applications MIG welding is an arc welding process in which a continuous solid wire electrode is fed through a welding gun and into the weld pool, joining the two base materials together. A shielding gas is also sent through the welding gun and protects the weld pool from contamination. In fact, MIG stands for Metal Inert Gas. The technical name for it is "Gas Metal Arc Welding" (or GMAW). ]]>
Fri, 10 Nov 2017 09:57:42 GMT /slideshow/gas-metal-arc-welding-or-gmaw/81846876 NSANKARME@slideshare.net(NSANKARME) Gas Metal Arc Welding" (or GMAW). NSANKARME What is MIG welding? Working process Process Parameters Advantages Limitations Applications MIG welding is an arc welding process in which a continuous solid wire electrode is fed through a welding gun and into the weld pool, joining the two base materials together. A shielding gas is also sent through the welding gun and protects the weld pool from contamination. In fact, MIG stands for Metal Inert Gas. The technical name for it is "Gas Metal Arc Welding" (or GMAW). <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/mig-171110095743-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> What is MIG welding? Working process Process Parameters Advantages Limitations Applications MIG welding is an arc welding process in which a continuous solid wire electrode is fed through a welding gun and into the weld pool, joining the two base materials together. A shielding gas is also sent through the welding gun and protects the weld pool from contamination. In fact, MIG stands for Metal Inert Gas. The technical name for it is &quot;Gas Metal Arc Welding&quot; (or GMAW).
Gas Metal Arc Welding" (or GMAW). from sankar n
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Dfp2 /slideshow/dfp2-42515523/42515523 dfp2-141209055947-conversion-gate02
USE OF MICROPROCESSORS FOR SEQUENCING]]>

USE OF MICROPROCESSORS FOR SEQUENCING]]>
Tue, 09 Dec 2014 05:59:47 GMT /slideshow/dfp2-42515523/42515523 NSANKARME@slideshare.net(NSANKARME) Dfp2 NSANKARME USE OF MICROPROCESSORS FOR SEQUENCING <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/dfp2-141209055947-conversion-gate02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> USE OF MICROPROCESSORS FOR SEQUENCING
Dfp2 from sankar n
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rapit prototyping /slideshow/rapit-prototyping/40959370 rpt-29-141031063413-conversion-gate01
RAPID PROTOTYPING AND TOOLING -MODEL SLICING and tool path generation]]>

RAPID PROTOTYPING AND TOOLING -MODEL SLICING and tool path generation]]>
Fri, 31 Oct 2014 06:34:13 GMT /slideshow/rapit-prototyping/40959370 NSANKARME@slideshare.net(NSANKARME) rapit prototyping NSANKARME RAPID PROTOTYPING AND TOOLING -MODEL SLICING and tool path generation <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/rpt-29-141031063413-conversion-gate01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> RAPID PROTOTYPING AND TOOLING -MODEL SLICING and tool path generation
rapit prototyping from sankar n
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