射出成形におけるT字金型に対するMPS法を用いた解析手法の適用

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Published inスマートプロセス学会誌 Vol. 13; no. 4; pp. 211 - 217
Main Authors 宮坂, 史和, 米倉, 真大, 井上, 直生, 倉敷, 哲生, 向山, 和孝, 瀬戸, 雅宏, 山部, 昌
Format Journal Article
LanguageJapanese
Published 一般社団法人 スマートプロセス学会 (旧高温学会) 10.07.2024
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ISSN2186-702X
2187-1337
DOI10.7791/jspmee.13.211

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Author 倉敷, 哲生
向山, 和孝
米倉, 真大
井上, 直生
宮坂, 史和
山部, 昌
瀬戸, 雅宏
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  fullname: 井上, 直生
  organization: 大阪大学大学院工学研究科 ビジネスエンジニアリング専攻
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  fullname: 瀬戸, 雅宏
  organization: 金沢工業大学 機械工学科
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  fullname: 山部, 昌
  organization: 金沢工業大学 機械工学科
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References 9) Y. Fukuzawa, H. Toyama, K. Shibata, S. Koshizuka: “Numerical analysis of high viscous non-Newtonian fluid flow using the MPS method”, Transactions of the Japan Society for Computational Engineering and Science, 2014 (2014), 20140007.
14) A. Khayyer and H. Gotoh: “Enhancement of stability and accuracy of the moving particle semi-implicit method”, Journal of Computational Physics, 230-8 (2011), 3093-3118.
5) B. Stampone, M. Ravelli, L. Giorleo and G. Trotta: “Thermal behaviour of resin inserts for micro injection moulding: a FEM analysis”, Procedia Computer Science, 217 (2023), 1360-136
3) S. Ogura, M. Seto and M. Yamabe: “Verification of Fiber Orientation Mechanism by Resin Flow Behavior in the Flow Front Confluence Region”, Seikei Kakou, 34-11 (2022) 428-433. (in Japanese
8) H. Gotoh: “Particle method, Computational science for continuum, multiphase flow, and granular materials”, Morikita (2018).
13) A. Khayyer and H. Gotoh: “A higher order Laplacian model for enhancement and stabilization of pressure calculation by the MPS method”, Applied Ocean Research, 32-1 (2010),124-131.
2) T. Suzuki, T. Sugita, M. Seto, H. Kakishima, H. Tanaka and M. Yamabe: “Analysis of Glass Fiber Orientation of an Injection Molded Thin Part Using X-ray Micro CT (Part 1): Extraction and Quantification of Glass Fibers Using Cylinder-Model Fitting”, Seikei Kakou, 28-6 (2016), 239-246. (in Japanese
7) H. Kato, T. Kurashiki, K.Mukoyama, F. Miyasaka, K. Mitsufuji, M. Seto and M. Yamabe: “Evaluation of Local Flow during Injection Molding of Fiber-reinforced Plastics via Moving Particle Semiimplicit Particle Simulation”: Journal of the Japan Society for Composite Materials, 47-3 (2021), 89-96. (in Japanese)
11) S. Yashiro, H. Sasaki and Y. Sakaida: “Particle simulation for predicting fiber motion in injection molding of short-fiber-reinforced composites”, Composite A, 43-10 (2012), 1754-1764.
6) F. Wittemann, L. Karger and F. Henning: “Influence of fiber breakage on flow behavior in fiber length- and orientation-dependent injection molding simulations”, Journal of Non-Newtonian Fluid Mechanics, 310 (2022), 104950.
10) Williams L. Malcolm, Robert F. Landel, and John D. Ferry: “The Temperature Dependence of Relaxation Mechanisms in Amorphous Polymers and Other Glass-forming Liquids”, J. Amer. Chem. Soc. 77-14 (1955), 3701-3707.
15) N. Tsuruta, A. Khayyer and H. Gotoh: “A short note on Dynamic Stabilization of Moving Particle Semi-implicit method”, Computers & Fluids, 85 (2013), 158-164.
1) S. Ma, K. Shibata and H. Yokoi: “Visualization Analysis on Plasticization Process of Short Glass Fiber Reinforced Resin by Glass-inserted Heating Cylinder”, Seikei Kakou, 30-1 (2018), 37-44. (in Japanese
4) T. Sugita, M. Seto and M. Yamabe: “Experimental Analysis of Solidification Behaviors in Thin-wall LCP Injection Molding”, Seikei Kakou, 29-7 (2017), 265-271. (in Japanese
12) A. Khayyer and H. Gotoh: “Development of CMPS-HS method for attenuation of pressure fluctuation in particle method”, Proceedings of Coastal Engineering, JSCE, 55 (2008), 16-20. (in Japanese
References_xml – reference: 10) Williams L. Malcolm, Robert F. Landel, and John D. Ferry: “The Temperature Dependence of Relaxation Mechanisms in Amorphous Polymers and Other Glass-forming Liquids”, J. Amer. Chem. Soc. 77-14 (1955), 3701-3707.
– reference: 7) H. Kato, T. Kurashiki, K.Mukoyama, F. Miyasaka, K. Mitsufuji, M. Seto and M. Yamabe: “Evaluation of Local Flow during Injection Molding of Fiber-reinforced Plastics via Moving Particle Semiimplicit Particle Simulation”: Journal of the Japan Society for Composite Materials, 47-3 (2021), 89-96. (in Japanese)
– reference: 14) A. Khayyer and H. Gotoh: “Enhancement of stability and accuracy of the moving particle semi-implicit method”, Journal of Computational Physics, 230-8 (2011), 3093-3118.
– reference: 1) S. Ma, K. Shibata and H. Yokoi: “Visualization Analysis on Plasticization Process of Short Glass Fiber Reinforced Resin by Glass-inserted Heating Cylinder”, Seikei Kakou, 30-1 (2018), 37-44. (in Japanese)
– reference: 12) A. Khayyer and H. Gotoh: “Development of CMPS-HS method for attenuation of pressure fluctuation in particle method”, Proceedings of Coastal Engineering, JSCE, 55 (2008), 16-20. (in Japanese)
– reference: 13) A. Khayyer and H. Gotoh: “A higher order Laplacian model for enhancement and stabilization of pressure calculation by the MPS method”, Applied Ocean Research, 32-1 (2010),124-131.
– reference: 9) Y. Fukuzawa, H. Toyama, K. Shibata, S. Koshizuka: “Numerical analysis of high viscous non-Newtonian fluid flow using the MPS method”, Transactions of the Japan Society for Computational Engineering and Science, 2014 (2014), 20140007.
– reference: 3) S. Ogura, M. Seto and M. Yamabe: “Verification of Fiber Orientation Mechanism by Resin Flow Behavior in the Flow Front Confluence Region”, Seikei Kakou, 34-11 (2022) 428-433. (in Japanese)
– reference: 8) H. Gotoh: “Particle method, Computational science for continuum, multiphase flow, and granular materials”, Morikita (2018).
– reference: 15) N. Tsuruta, A. Khayyer and H. Gotoh: “A short note on Dynamic Stabilization of Moving Particle Semi-implicit method”, Computers & Fluids, 85 (2013), 158-164.
– reference: 4) T. Sugita, M. Seto and M. Yamabe: “Experimental Analysis of Solidification Behaviors in Thin-wall LCP Injection Molding”, Seikei Kakou, 29-7 (2017), 265-271. (in Japanese)
– reference: 5) B. Stampone, M. Ravelli, L. Giorleo and G. Trotta: “Thermal behaviour of resin inserts for micro injection moulding: a FEM analysis”, Procedia Computer Science, 217 (2023), 1360-136
– reference: 11) S. Yashiro, H. Sasaki and Y. Sakaida: “Particle simulation for predicting fiber motion in injection molding of short-fiber-reinforced composites”, Composite A, 43-10 (2012), 1754-1764.
– reference: 6) F. Wittemann, L. Karger and F. Henning: “Influence of fiber breakage on flow behavior in fiber length- and orientation-dependent injection molding simulations”, Journal of Non-Newtonian Fluid Mechanics, 310 (2022), 104950.
– reference: 2) T. Suzuki, T. Sugita, M. Seto, H. Kakishima, H. Tanaka and M. Yamabe: “Analysis of Glass Fiber Orientation of an Injection Molded Thin Part Using X-ray Micro CT (Part 1): Extraction and Quantification of Glass Fibers Using Cylinder-Model Fitting”, Seikei Kakou, 28-6 (2016), 239-246. (in Japanese)
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Title 射出成形におけるT字金型に対するMPS法を用いた解析手法の適用
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