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ABS塑料管冷塑成型:ABS塑料管


21先进材料与纳米技术国际会议

2018年9月04-06日瑞士苏黎世|

津田健太郎、西田新一、市川俊史、鹿谷由太、由藤、堀ome、池田直树、植松大一、萩原诚、原田秀人和龟井伸行

群马大学,日本DIP株式会社,日本

ScientificTracks抽象:Res. Rev. J Mat. science

DOI:10.4172 / 2321 - 6212 c3 - 020

摘要

介绍了ABS塑料管的冷成形工艺。对管道膨胀过程进行了实验和有限元分析。日本正在考虑在空调中应用ABS塑料管代替金属管道,因为空调可以减轻重量,降低抗震重心。ABS塑料管的零件一般采用注射成型的方法生产。这些过程需要冷却时间,并且需要大量的时间。此外,每一种应用都需要昂贵的模具。为此,提出了ABS塑料管的冷成形工艺。本研究所选用的ABS塑料管的冷塑性成形工艺很少有其他作者研究过。冷塑成型的产品能力高于注塑成型或热加工。与这些工艺相比,冲模的形状简单。 In this study, pipe expansion process was operated. The ABS plastic pipe has a 10 mm diameter and 8mm inner diameter and 1 mm thickness. At first, true stress and true strain curves at any strain rate were measured by ring compression test. Obtained flow stresses was used to FEM analysis. Experimental device for pipe expansion process was made by Dip Inc.. Objective inner diameter was 10 mm. FEM analysis was operated to clarify the deformation behavior such as load-stroke diagram. It was possible to produce the expanded ABS pipe. The whitening of worked pipe and strain recovery was observed. Analysis result was indicated the good agreement comparing to experimental result in load-stroke diagram. Recent Publications 1. Ryosuke Okushima, Shinichi Nishida, Junshi Ichikawa, Yuta Kashitani, Yujiro Nitta, Atsuhiro Aoki, Yuto Takigawa, Hayato Aso, Hideto Harada and Akihiro Watanabe, FEM Analysis of Cold Flaring Process of SGP Pipe, International Journal of Advanced Engineering, Management and Science, Vol. 3 Issue 2, 75-76 (2017). 2. Nao Ozawa, Shinichi Nishida, Toshio Haga, Junshi Ichikawa, Yuta Kashitani, Ryosuke Okushima, Yujiro Nitta, Atsuhiro Aoki, Yuto Takigawa, Hayato Aso, Hideto Harada and Akihiro Watanabe, Forgeability of AZ Series Magnesium Alloy produced by Twin Roll Casting, International Journal of Advanced Engineering, Management and Science, Vol. 3 Issue 2, 77-80 (2017). 3. Sueji Hirawatari, Hisaki Watari, Shinichi Nishida, Yuki Sato and Mayumi Suzuki, Evaluation of Friction Properties of Magnesium Alloy during Hot Forging by Ring Compression Test, Materials Science Forum, Vol.889, 119-126 (2017). 4. Y. Kamakoshi, S. Nishida, K. Kanbe and I. Shoji, Finite element method analysis of cold forging for deformation and densification of Mo alloyed sintered steel, IOP Conference Series: Materials Science and Engineering, Vol.257, (2017). 5. Shinichi Nishida, Junshi Ichikawa, Yuta Kashitani, Kentaro Tsunoda, Yusuke Takeuchi, Yujiro Nitta, Yuto Takigawa, Atsuhiro Aoki and Yutaka Sato, FEM Analysis of Cold Flaring Process of SUS304 Pipe, Defect and Diffusion Forum, Vol.382, 120-126(2018).

传记

Kentaro Tsunoda正在读他的第四个本科。他在日本群马大学研究塑料管道的冷成形。他在群马大学机械工程学院完成了他的研究。他参加了两次会议,介绍他的研究成果。

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