Effects of friction models, geometry and position of tool on curving tendency of micro-extrusion 6063 aluminum alloy pins

Sedthawatt Sucharitpwatskul, Numpon Mahayotsanun*, Sasawat Mahabunphachai, Tatsuya Funazuka, Norio Takatsuji, Kuniaki Dohda

*この論文の責任著者

研究成果: 書籍の章/レポート/会議録会議への寄与査読

抄録

Micro-extrusion process is one of the micro-forming technology for fabrication of micro-parts such as micro-gear shaft for microelectromechanical system (MEMS) and micro pins for electronic parts. This paper presents the friction models effects and geometry effects on curving tendency of micro-extrusion 6063 aluminum alloy pins. Three friction models were considered: (1) Coulomb friction, (2) plastic shear friction, and (3) combined (Coulomb & plastic shear) friction. The finite element simulation was carried out and the results showed that the combined friction model accurately predicted the micro-extrusion results. Then, four tool geometry and position effects were investigated: (1) punch shift length, (2) die angle, (3) die shift length, and (4) bearing length. The finite element simulation was carried out to determine these tool geometry and position effects on the curving tendency of micro-extruded pins. The results showed that punch shift length and die angle did not affect the curving tendency. However, die shift length caused the micro-extruded pins to curve. The increase in bearing length helped straighten the micro-extruded pins.

本文言語英語
ホスト出版物のタイトル Key Engineering Materials
出版社Scientific.net
ページ135-142
ページ数8
739
DOI
出版ステータス出版済み - 2017
イベントInternational Conference on Engineering Tribology and Applied Technology, ICETAT 2016 - Taipei, 台湾省、中華民国
継続期間: 2016/11/042016/11/06

学会

学会International Conference on Engineering Tribology and Applied Technology, ICETAT 2016
国/地域台湾省、中華民国
CityTaipei
Period2016/11/042016/11/06

ASJC Scopus 主題領域

  • 材料科学一般
  • 材料力学
  • 機械工学

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