ºÝºÝߣshows by User: BambangAfrinaldi / http://www.slideshare.net/images/logo.gif ºÝºÝߣshows by User: BambangAfrinaldi / Fri, 18 Sep 2020 06:33:57 GMT ºÝºÝߣShare feed for ºÝºÝߣshows by User: BambangAfrinaldi Analisa kerusakan pada plastik /slideshow/analisa-kerusakan-pada-plastik/238532518 analisakerusakanpadaplastik-200918063357
Analisa kerusakan pada plastik dengan tinjauan penentuan secara visual dan dengan teknik spektroskopi (FTIR)]]>

Analisa kerusakan pada plastik dengan tinjauan penentuan secara visual dan dengan teknik spektroskopi (FTIR)]]>
Fri, 18 Sep 2020 06:33:57 GMT /slideshow/analisa-kerusakan-pada-plastik/238532518 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Analisa kerusakan pada plastik BambangAfrinaldi Analisa kerusakan pada plastik dengan tinjauan penentuan secara visual dan dengan teknik spektroskopi (FTIR) <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/analisakerusakanpadaplastik-200918063357-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Analisa kerusakan pada plastik dengan tinjauan penentuan secara visual dan dengan teknik spektroskopi (FTIR)
Analisa kerusakan pada plastik from Bambang Afrinaldi
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The roles of process parameters on structures and mechanical properties of polypropylene clay nanocomposites /slideshow/the-roles-of-process-parameters-on-structures-and-mechanical-properties-of-polypropylene-clay-nanocomposites/236414454 therolesofprocessparametersonstructuresandmechanicalpropertiesofpolypropylene-claynanocomposites-200630113216
Process parameters are crucial to produce targeted qualities in polypropylene (PP)/clay nanocomposites, due to their roles on the generation of shear and diffusion. Thus, this research aims to observe their effects on structures and properties of PP/clay nanocomposites. Samples were produced by mixing PP, PP grafting maleic anhydride (PP-gMA), and Cloisite 20A at fixed compositions, 88/9/3 wt%, respectively, in an internal mixer with variations on temperatures (210, 220, 230 °C) and speeds (60, 80, 100 rpm). Effect of mixing parameters on nanocomposite structures and properties were investigated from XRD, SEM and flexural properties. The results showed that all samples had intercalated as well as agglomerated structures. Further analysis on XRD and SEM showed that samples produced at high conditions (230C or 100 rpm) had similar structures. In contrast, low setting sample (210C and 60 rpm), despite its similarity on dispersion level, had longer agglomerates than that of mixed at high settings. Correlated both increase of d-spacing and agglomerates length to flexural properties suggested that modulus was more influenced by dispersion level, while strength was affected by agglomerates. However, it was worth to note that improvement on dspacing, with availability of long agglomerates might not guarantee modulus and strength improvement due to low interfacial bonding.]]>

Process parameters are crucial to produce targeted qualities in polypropylene (PP)/clay nanocomposites, due to their roles on the generation of shear and diffusion. Thus, this research aims to observe their effects on structures and properties of PP/clay nanocomposites. Samples were produced by mixing PP, PP grafting maleic anhydride (PP-gMA), and Cloisite 20A at fixed compositions, 88/9/3 wt%, respectively, in an internal mixer with variations on temperatures (210, 220, 230 °C) and speeds (60, 80, 100 rpm). Effect of mixing parameters on nanocomposite structures and properties were investigated from XRD, SEM and flexural properties. The results showed that all samples had intercalated as well as agglomerated structures. Further analysis on XRD and SEM showed that samples produced at high conditions (230C or 100 rpm) had similar structures. In contrast, low setting sample (210C and 60 rpm), despite its similarity on dispersion level, had longer agglomerates than that of mixed at high settings. Correlated both increase of d-spacing and agglomerates length to flexural properties suggested that modulus was more influenced by dispersion level, while strength was affected by agglomerates. However, it was worth to note that improvement on dspacing, with availability of long agglomerates might not guarantee modulus and strength improvement due to low interfacial bonding.]]>
Tue, 30 Jun 2020 11:32:16 GMT /slideshow/the-roles-of-process-parameters-on-structures-and-mechanical-properties-of-polypropylene-clay-nanocomposites/236414454 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) The roles of process parameters on structures and mechanical properties of polypropylene clay nanocomposites BambangAfrinaldi Process parameters are crucial to produce targeted qualities in polypropylene (PP)/clay nanocomposites, due to their roles on the generation of shear and diffusion. Thus, this research aims to observe their effects on structures and properties of PP/clay nanocomposites. Samples were produced by mixing PP, PP grafting maleic anhydride (PP-gMA), and Cloisite 20A at fixed compositions, 88/9/3 wt%, respectively, in an internal mixer with variations on temperatures (210, 220, 230 °C) and speeds (60, 80, 100 rpm). Effect of mixing parameters on nanocomposite structures and properties were investigated from XRD, SEM and flexural properties. The results showed that all samples had intercalated as well as agglomerated structures. Further analysis on XRD and SEM showed that samples produced at high conditions (230C or 100 rpm) had similar structures. In contrast, low setting sample (210C and 60 rpm), despite its similarity on dispersion level, had longer agglomerates than that of mixed at high settings. Correlated both increase of d-spacing and agglomerates length to flexural properties suggested that modulus was more influenced by dispersion level, while strength was affected by agglomerates. However, it was worth to note that improvement on dspacing, with availability of long agglomerates might not guarantee modulus and strength improvement due to low interfacial bonding. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/therolesofprocessparametersonstructuresandmechanicalpropertiesofpolypropylene-claynanocomposites-200630113216-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Process parameters are crucial to produce targeted qualities in polypropylene (PP)/clay nanocomposites, due to their roles on the generation of shear and diffusion. Thus, this research aims to observe their effects on structures and properties of PP/clay nanocomposites. Samples were produced by mixing PP, PP grafting maleic anhydride (PP-gMA), and Cloisite 20A at fixed compositions, 88/9/3 wt%, respectively, in an internal mixer with variations on temperatures (210, 220, 230 °C) and speeds (60, 80, 100 rpm). Effect of mixing parameters on nanocomposite structures and properties were investigated from XRD, SEM and flexural properties. The results showed that all samples had intercalated as well as agglomerated structures. Further analysis on XRD and SEM showed that samples produced at high conditions (230C or 100 rpm) had similar structures. In contrast, low setting sample (210C and 60 rpm), despite its similarity on dispersion level, had longer agglomerates than that of mixed at high settings. Correlated both increase of d-spacing and agglomerates length to flexural properties suggested that modulus was more influenced by dispersion level, while strength was affected by agglomerates. However, it was worth to note that improvement on dspacing, with availability of long agglomerates might not guarantee modulus and strength improvement due to low interfacial bonding.
The roles of process parameters on structures and mechanical properties of polypropylene clay nanocomposites from Bambang Afrinaldi
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Polimer Komposit /slideshow/polimer-komposit/236299996 polimerkomposit-200627150018
Tinjauan umum, kondisi pasar, permasalahan dan tantangan polimer komposit]]>

Tinjauan umum, kondisi pasar, permasalahan dan tantangan polimer komposit]]>
Sat, 27 Jun 2020 15:00:18 GMT /slideshow/polimer-komposit/236299996 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Polimer Komposit BambangAfrinaldi Tinjauan umum, kondisi pasar, permasalahan dan tantangan polimer komposit <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/polimerkomposit-200627150018-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Tinjauan umum, kondisi pasar, permasalahan dan tantangan polimer komposit
Polimer Komposit from Bambang Afrinaldi
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Reologi nanokomposit polipropilen/mwcnt/organoclay /slideshow/reologi-nanokomposit-polipropilenmwcntorganoclay/236299834 reologinanokompositpolipropilen-mwcnt-organoclay-200627145050
Karakter rheologi pada nanokomposit polipropilen/mwcnt/organoclay]]>

Karakter rheologi pada nanokomposit polipropilen/mwcnt/organoclay]]>
Sat, 27 Jun 2020 14:50:50 GMT /slideshow/reologi-nanokomposit-polipropilenmwcntorganoclay/236299834 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Reologi nanokomposit polipropilen/mwcnt/organoclay BambangAfrinaldi Karakter rheologi pada nanokomposit polipropilen/mwcnt/organoclay <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/reologinanokompositpolipropilen-mwcnt-organoclay-200627145050-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Karakter rheologi pada nanokomposit polipropilen/mwcnt/organoclay
Reologi nanokomposit polipropilen/mwcnt/organoclay from Bambang Afrinaldi
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Penggunaan carbon nanotube untuk aplikasi material polimer antistatik 1 /slideshow/penggunaan-carbon-nanotube-untuk-aplikasi-material-polimer-antistatik-1/70228182 penggunaancarbonnanotubeuntukaplikasimaterialpolimerantistatik-1-161217131440
Penggunaan carbon nanotube untuk aplikasi material polimer antistatik]]>

Penggunaan carbon nanotube untuk aplikasi material polimer antistatik]]>
Sat, 17 Dec 2016 13:14:40 GMT /slideshow/penggunaan-carbon-nanotube-untuk-aplikasi-material-polimer-antistatik-1/70228182 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Penggunaan carbon nanotube untuk aplikasi material polimer antistatik 1 BambangAfrinaldi Penggunaan carbon nanotube untuk aplikasi material polimer antistatik <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/penggunaancarbonnanotubeuntukaplikasimaterialpolimerantistatik-1-161217131440-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Penggunaan carbon nanotube untuk aplikasi material polimer antistatik
Penggunaan carbon nanotube untuk aplikasi material polimer antistatik 1 from Bambang Afrinaldi
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Sekilas mengenai estimasi ketidakpastian pengukuran /BambangAfrinaldi/sekilas-mengenai-estimasi-ketidakpastian-pengukuran sekilasmengenaiestimasiketidakpastianpengukuran-161217130812
Sekilas mengenai estimasi ketidakpastian pengukuran.]]>

Sekilas mengenai estimasi ketidakpastian pengukuran.]]>
Sat, 17 Dec 2016 13:08:12 GMT /BambangAfrinaldi/sekilas-mengenai-estimasi-ketidakpastian-pengukuran BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Sekilas mengenai estimasi ketidakpastian pengukuran BambangAfrinaldi Sekilas mengenai estimasi ketidakpastian pengukuran. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/sekilasmengenaiestimasiketidakpastianpengukuran-161217130812-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Sekilas mengenai estimasi ketidakpastian pengukuran.
Sekilas mengenai estimasi ketidakpastian pengukuran from Bambang Afrinaldi
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Effect of multi wall carbon nanotube content on the electrical and rheological properties of polypropylene based nanocomposites /slideshow/effect-of-multi-wall-carbon-nanotube-content-on-the-electrical-and-rheological-properties-of-polypropylene-based-nanocomposites/67754448 effectofmultiwallcarbonnanotubecontentontheelectricalandrheologicalpropertiesofpolypropylene-basedna-161028012215
Incorporating multi wall carbon nanotube (MWCNT) into the polymer can improve the electrical properties of the nanocomposites. The effects of MWCNT on the electrical and rheological properties of polypropylene/MWCNT (PP/MWCNT) nanocomposites are investigated. The nanocomposites were prepared using melt mixing technique at chamber temperature of 180ºC and rotor rotation of 100 rpm for 10 minutes. Addition of MWCNT increases the electrical surface conductivity up to 10-7 S. The electrical percolation threshold of the nanocomposites is found to occur at 1.3 wt% MWCNT content. Viscosity of the nanocomposites increased with the addition of MWCNT. The rheological percolation threshold of the PP/MWCNT is found occur at 1.4 wt% MWCNT content. Well dispersion is observed by mean Scanning Electron Microscope (SEM) analysis.]]>

Incorporating multi wall carbon nanotube (MWCNT) into the polymer can improve the electrical properties of the nanocomposites. The effects of MWCNT on the electrical and rheological properties of polypropylene/MWCNT (PP/MWCNT) nanocomposites are investigated. The nanocomposites were prepared using melt mixing technique at chamber temperature of 180ºC and rotor rotation of 100 rpm for 10 minutes. Addition of MWCNT increases the electrical surface conductivity up to 10-7 S. The electrical percolation threshold of the nanocomposites is found to occur at 1.3 wt% MWCNT content. Viscosity of the nanocomposites increased with the addition of MWCNT. The rheological percolation threshold of the PP/MWCNT is found occur at 1.4 wt% MWCNT content. Well dispersion is observed by mean Scanning Electron Microscope (SEM) analysis.]]>
Fri, 28 Oct 2016 01:22:15 GMT /slideshow/effect-of-multi-wall-carbon-nanotube-content-on-the-electrical-and-rheological-properties-of-polypropylene-based-nanocomposites/67754448 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Effect of multi wall carbon nanotube content on the electrical and rheological properties of polypropylene based nanocomposites BambangAfrinaldi Incorporating multi wall carbon nanotube (MWCNT) into the polymer can improve the electrical properties of the nanocomposites. The effects of MWCNT on the electrical and rheological properties of polypropylene/MWCNT (PP/MWCNT) nanocomposites are investigated. The nanocomposites were prepared using melt mixing technique at chamber temperature of 180ºC and rotor rotation of 100 rpm for 10 minutes. Addition of MWCNT increases the electrical surface conductivity up to 10-7 S. The electrical percolation threshold of the nanocomposites is found to occur at 1.3 wt% MWCNT content. Viscosity of the nanocomposites increased with the addition of MWCNT. The rheological percolation threshold of the PP/MWCNT is found occur at 1.4 wt% MWCNT content. Well dispersion is observed by mean Scanning Electron Microscope (SEM) analysis. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/effectofmultiwallcarbonnanotubecontentontheelectricalandrheologicalpropertiesofpolypropylene-basedna-161028012215-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Incorporating multi wall carbon nanotube (MWCNT) into the polymer can improve the electrical properties of the nanocomposites. The effects of MWCNT on the electrical and rheological properties of polypropylene/MWCNT (PP/MWCNT) nanocomposites are investigated. The nanocomposites were prepared using melt mixing technique at chamber temperature of 180ºC and rotor rotation of 100 rpm for 10 minutes. Addition of MWCNT increases the electrical surface conductivity up to 10-7 S. The electrical percolation threshold of the nanocomposites is found to occur at 1.3 wt% MWCNT content. Viscosity of the nanocomposites increased with the addition of MWCNT. The rheological percolation threshold of the PP/MWCNT is found occur at 1.4 wt% MWCNT content. Well dispersion is observed by mean Scanning Electron Microscope (SEM) analysis.
Effect of multi wall carbon nanotube content on the electrical and rheological properties of polypropylene based nanocomposites from Bambang Afrinaldi
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Calendering /BambangAfrinaldi/calendering calendering-bmg-160714113204
Plastic processing technique - A short information]]>

Plastic processing technique - A short information]]>
Thu, 14 Jul 2016 11:32:03 GMT /BambangAfrinaldi/calendering BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Calendering BambangAfrinaldi Plastic processing technique - A short information <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/calendering-bmg-160714113204-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Plastic processing technique - A short information
Calendering from Bambang Afrinaldi
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Atomic Force Microscopy /slideshow/atomic-force-microscopy-64022000/64022000 atomicforcemicroscopyafm-bmg-160714112954
Introduction of Atomic Force Microscopy (AFM)]]>

Introduction of Atomic Force Microscopy (AFM)]]>
Thu, 14 Jul 2016 11:29:54 GMT /slideshow/atomic-force-microscopy-64022000/64022000 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Atomic Force Microscopy BambangAfrinaldi Introduction of Atomic Force Microscopy (AFM) <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/atomicforcemicroscopyafm-bmg-160714112954-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Introduction of Atomic Force Microscopy (AFM)
Atomic Force Microscopy from Bambang Afrinaldi
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Pengaruh konsentrasi inisiator dan komposisi styrene dan maleic anhydride terhadap berat molekul pada sintesis kopolimer poly(styrene maleic anhydride) /slideshow/pengaruh-konsentrasi-inisiator-dan-komposisi-styrene-dan-maleic-anhydride-terhadap-berat-molekul-pada-sintesis-kopolimer-polystyrene-maleic-anhydride/63420813 pengaruhkonsentrasiinisiatordankomposisistyrenedanmaleicanhydrideterhadapberatmolekulpadasintesiskop-160624163149
Pengaruh konsentrasi inisiator dan komposisi styrene dan maleic anhydride terhadap berat molekul pada sintesis kopolimer poly(styrene maleic anhydride)]]>

Pengaruh konsentrasi inisiator dan komposisi styrene dan maleic anhydride terhadap berat molekul pada sintesis kopolimer poly(styrene maleic anhydride)]]>
Fri, 24 Jun 2016 16:31:49 GMT /slideshow/pengaruh-konsentrasi-inisiator-dan-komposisi-styrene-dan-maleic-anhydride-terhadap-berat-molekul-pada-sintesis-kopolimer-polystyrene-maleic-anhydride/63420813 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Pengaruh konsentrasi inisiator dan komposisi styrene dan maleic anhydride terhadap berat molekul pada sintesis kopolimer poly(styrene maleic anhydride) BambangAfrinaldi Pengaruh konsentrasi inisiator dan komposisi styrene dan maleic anhydride terhadap berat molekul pada sintesis kopolimer poly(styrene maleic anhydride) <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/pengaruhkonsentrasiinisiatordankomposisistyrenedanmaleicanhydrideterhadapberatmolekulpadasintesiskop-160624163149-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Pengaruh konsentrasi inisiator dan komposisi styrene dan maleic anhydride terhadap berat molekul pada sintesis kopolimer poly(styrene maleic anhydride)
Pengaruh konsentrasi inisiator dan komposisi styrene dan maleic anhydride terhadap berat molekul pada sintesis kopolimer poly(styrene maleic anhydride) from Bambang Afrinaldi
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Failure analysis of polyoxymethylene product using scanning electron microscope, thermal and processing analysis /slideshow/failure-analysis-of-polyoxymethylene-product-using-scanning-electron-microscope-thermal-and-processing-analysis/62525276 failureanalysisofpolyoxymethyleneproductusingscanningelectronmicroscopethermalandprocessinganalysis-160530060628
Failure analysis of polyoxymethylene product using scanning electron microscope, thermal and processing analysis]]>

Failure analysis of polyoxymethylene product using scanning electron microscope, thermal and processing analysis]]>
Mon, 30 May 2016 06:06:28 GMT /slideshow/failure-analysis-of-polyoxymethylene-product-using-scanning-electron-microscope-thermal-and-processing-analysis/62525276 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Failure analysis of polyoxymethylene product using scanning electron microscope, thermal and processing analysis BambangAfrinaldi Failure analysis of polyoxymethylene product using scanning electron microscope, thermal and processing analysis <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/failureanalysisofpolyoxymethyleneproductusingscanningelectronmicroscopethermalandprocessinganalysis-160530060628-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Failure analysis of polyoxymethylene product using scanning electron microscope, thermal and processing analysis
Failure analysis of polyoxymethylene product using scanning electron microscope, thermal and processing analysis from Bambang Afrinaldi
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Efisiensi energi pada industri plastik /slideshow/efisiensi-energi-pada-industri-plastik/59176893 efisiensienergipadaindustriplastik-160307033758
Cara melakukan efisiensi energi pada industri plastik]]>

Cara melakukan efisiensi energi pada industri plastik]]>
Mon, 07 Mar 2016 03:37:58 GMT /slideshow/efisiensi-energi-pada-industri-plastik/59176893 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Efisiensi energi pada industri plastik BambangAfrinaldi Cara melakukan efisiensi energi pada industri plastik <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/efisiensienergipadaindustriplastik-160307033758-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Cara melakukan efisiensi energi pada industri plastik
Efisiensi energi pada industri plastik from Bambang Afrinaldi
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Microscopic examination /BambangAfrinaldi/microscopic-examination-59175529 failureanalysis-microscopicexamination-rev1-160307031258
Microscopy application on polymers]]>

Microscopy application on polymers]]>
Mon, 07 Mar 2016 03:12:58 GMT /BambangAfrinaldi/microscopic-examination-59175529 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Microscopic examination BambangAfrinaldi Microscopy application on polymers <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/failureanalysis-microscopicexamination-rev1-160307031258-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Microscopy application on polymers
Microscopic examination from Bambang Afrinaldi
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Polymer Rheology /slideshow/polymer-rheology/58302522 polymer-rheology-2016-bmg-160216023013
Melt flow rate and melt viscosity measurement]]>

Melt flow rate and melt viscosity measurement]]>
Tue, 16 Feb 2016 02:30:13 GMT /slideshow/polymer-rheology/58302522 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Polymer Rheology BambangAfrinaldi Melt flow rate and melt viscosity measurement <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/polymer-rheology-2016-bmg-160216023013-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Melt flow rate and melt viscosity measurement
Polymer Rheology from Bambang Afrinaldi
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Efisiensi biaya pada proses injection molding /slideshow/efisiensi-biaya-pada-proses-injection-molding/55467134 efisiensibiayapadaprosesinjectionmolding-151124152022-lva1-app6891
Efisiensi untuk mengurangi biaya produksi pada industri injection molding]]>

Efisiensi untuk mengurangi biaya produksi pada industri injection molding]]>
Tue, 24 Nov 2015 15:20:22 GMT /slideshow/efisiensi-biaya-pada-proses-injection-molding/55467134 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Efisiensi biaya pada proses injection molding BambangAfrinaldi Efisiensi untuk mengurangi biaya produksi pada industri injection molding <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/efisiensibiayapadaprosesinjectionmolding-151124152022-lva1-app6891-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Efisiensi untuk mengurangi biaya produksi pada industri injection molding
Efisiensi biaya pada proses injection molding from Bambang Afrinaldi
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Memahami metode validasi untuk menjamin hasil analisis yang handal /slideshow/memahami-metode-validasi-untuk-menjamin-hasil-analisis-yang-handal/55467095 memahamimetodevalidasi-untukmenjaminhasilanalisisyanghandal-151124151946-lva1-app6892
Validasi metode untuk menjamin kualitas hasil analisis]]>

Validasi metode untuk menjamin kualitas hasil analisis]]>
Tue, 24 Nov 2015 15:19:46 GMT /slideshow/memahami-metode-validasi-untuk-menjamin-hasil-analisis-yang-handal/55467095 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Memahami metode validasi untuk menjamin hasil analisis yang handal BambangAfrinaldi Validasi metode untuk menjamin kualitas hasil analisis <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/memahamimetodevalidasi-untukmenjaminhasilanalisisyanghandal-151124151946-lva1-app6892-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Validasi metode untuk menjamin kualitas hasil analisis
Memahami metode validasi untuk menjamin hasil analisis yang handal from Bambang Afrinaldi
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How to create a product development in production /BambangAfrinaldi/how-to-create-a-product-development-in-production howtocreateaproductdevelopmentinproduction-151124150749-lva1-app6892
Some ideas to develop a product]]>

Some ideas to develop a product]]>
Tue, 24 Nov 2015 15:07:49 GMT /BambangAfrinaldi/how-to-create-a-product-development-in-production BambangAfrinaldi@slideshare.net(BambangAfrinaldi) How to create a product development in production BambangAfrinaldi Some ideas to develop a product <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/howtocreateaproductdevelopmentinproduction-151124150749-lva1-app6892-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Some ideas to develop a product
How to create a product development in production from Bambang Afrinaldi
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Innovation For Powerful Outcomes /slideshow/innovation-for-powerful-outcomes-55466053/55466053 innovation-151124145709-lva1-app6891
Innovation is about creativity and the exploitation of creative ideas for value added outcomes.]]>

Innovation is about creativity and the exploitation of creative ideas for value added outcomes.]]>
Tue, 24 Nov 2015 14:57:09 GMT /slideshow/innovation-for-powerful-outcomes-55466053/55466053 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Innovation For Powerful Outcomes BambangAfrinaldi Innovation is about creativity and the exploitation of creative ideas for value added outcomes. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/innovation-151124145709-lva1-app6891-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Innovation is about creativity and the exploitation of creative ideas for value added outcomes.
Innovation For Powerful Outcomes from Bambang Afrinaldi
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Failure analysis & test procedure #1 rev /slideshow/failure-analysis-test-procedure-1-rev/46964512 failureanalysistestprocedure1-rev-150414001254-conversion-gate01
Failure Analysis]]>

Failure Analysis]]>
Tue, 14 Apr 2015 00:12:54 GMT /slideshow/failure-analysis-test-procedure-1-rev/46964512 BambangAfrinaldi@slideshare.net(BambangAfrinaldi) Failure analysis & test procedure #1 rev BambangAfrinaldi Failure Analysis <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/failureanalysistestprocedure1-rev-150414001254-conversion-gate01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Failure Analysis
Failure analysis & test procedure #1 rev from Bambang Afrinaldi
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https://cdn.slidesharecdn.com/profile-photo-BambangAfrinaldi-48x48.jpg?cb=1629346077 https://cdn.slidesharecdn.com/ss_thumbnails/analisakerusakanpadaplastik-200918063357-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/analisa-kerusakan-pada-plastik/238532518 Analisa kerusakan pada... https://cdn.slidesharecdn.com/ss_thumbnails/therolesofprocessparametersonstructuresandmechanicalpropertiesofpolypropylene-claynanocomposites-200630113216-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/the-roles-of-process-parameters-on-structures-and-mechanical-properties-of-polypropylene-clay-nanocomposites/236414454 The roles of process p... https://cdn.slidesharecdn.com/ss_thumbnails/polimerkomposit-200627150018-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/polimer-komposit/236299996 Polimer Komposit