Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding
The tensile properties of short fiber reinforced composites are enhanced if fiber alignment in the load direction is achieved. Powder injection molding provides partial alignment of fibers in molded parts and shows a skin-core effect. The objective of this study was to align fibers completely in flo...
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American Institute of Physics Inc.
2015
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my.utp.eprints.314602022-03-26T03:20:03Z Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding Shirazi, I. Ahmad, F. Raza, M.R. Muhsan, A.S. Aslam, M. The tensile properties of short fiber reinforced composites are enhanced if fiber alignment in the load direction is achieved. Powder injection molding provides partial alignment of fibers in molded parts and shows a skin-core effect. The objective of this study was to align fibers completely in flow direction and reducing skin-core effect in green samples. This objective was achieved by changing the type of flow during molding by changing sprue geometry in a way that diverging flow is developed in it. This diverging flow was converted to converging flow when feedstock entered mold cavity and generated shear to align fibers. This sprue modification was helpful in aligning short fibers in flow direction and eliminating skin-core effect. © 2015 AIP Publishing LLC. American Institute of Physics Inc. 2015 Conference or Workshop Item NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85063824708&doi=10.1063%2f1.4919181&partnerID=40&md5=70356d960417c9f4f373c1caa247af91 Shirazi, I. and Ahmad, F. and Raza, M.R. and Muhsan, A.S. and Aslam, M. (2015) Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding. In: UNSPECIFIED. http://eprints.utp.edu.my/31460/ |
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The tensile properties of short fiber reinforced composites are enhanced if fiber alignment in the load direction is achieved. Powder injection molding provides partial alignment of fibers in molded parts and shows a skin-core effect. The objective of this study was to align fibers completely in flow direction and reducing skin-core effect in green samples. This objective was achieved by changing the type of flow during molding by changing sprue geometry in a way that diverging flow is developed in it. This diverging flow was converted to converging flow when feedstock entered mold cavity and generated shear to align fibers. This sprue modification was helpful in aligning short fibers in flow direction and eliminating skin-core effect. © 2015 AIP Publishing LLC. |
format |
Conference or Workshop Item |
author |
Shirazi, I. Ahmad, F. Raza, M.R. Muhsan, A.S. Aslam, M. |
spellingShingle |
Shirazi, I. Ahmad, F. Raza, M.R. Muhsan, A.S. Aslam, M. Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding |
author_facet |
Shirazi, I. Ahmad, F. Raza, M.R. Muhsan, A.S. Aslam, M. |
author_sort |
Shirazi, I. |
title |
Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding |
title_short |
Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding |
title_full |
Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding |
title_fullStr |
Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding |
title_full_unstemmed |
Shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding |
title_sort |
shear controlled alignment of short carbon fibers in copper matrix composite green samples produced by powder injection molding |
publisher |
American Institute of Physics Inc. |
publishDate |
2015 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85063824708&doi=10.1063%2f1.4919181&partnerID=40&md5=70356d960417c9f4f373c1caa247af91 http://eprints.utp.edu.my/31460/ |
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