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Development of Forging Parts for Solar Electrode Body Using Oxygen-Free Copper Material

무산소동 소재를 활용한 태양광 일렉트로드 바디 단조 부품 개발

  • 박동환 (경북하이브리드부품연구원) ;
  • 탁윤학 (경북하이브리드부품연구원)
  • Received : 2015.11.02
  • Accepted : 2016.01.28
  • Published : 2016.06.30

Abstract

Forging operations are non-stationary processes occurring because of indirect pressure, generally, under conditions of three-dimensional stress and deformation. Furthermore, due to friction and the constraints of die geometry, deformation is not homogeneous. Material flow and deformation are largely determined by the shape of the tools. It is well known that net-shape forging can improve the mechanical strength of the final product as well as reduce material waste. Oxygen-free copper that is used for electrical and electronic components has excellent electrical and thermal conductivity. Oxygen-free copper parts have a low productivity in cutting process. Thus, the forging process is performed in order to improve the low productivity in cutting process. The forging of oxygen-free copper for electrode body parts was modeled using finite element simulation and forging experiments that were conducted for producing electrode body parts at room temperature. In order to reduce the cost of cutting products, the forging was performed in a closed cavity to obtain near-net or net-shape parts.

Keywords

References

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