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Rolling processes and performance of Cu-Fe in-situ composites

机译:Cu-Fe原位复合材料的轧制工艺及性能

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The deformation processed Cu-based in-situ composite was a kind of structural function materials with high physical and mechanical performance and used widely in large scale integrated circuit. Especially, the sheet material of Cu-Fe in-situ composites was interested to researchers because the Fe was cheaper and the use of sheets was more widely in electron industry. In this study, the sheets of Cu-10Fe-1Ag in-situ composite were achieved by cold rolling which the thickness was from 6mm to 2.56mm, 1.28mm, 0.64mm and 0.32mm. Corresponding, the rolling ratio was 4.9, 5.3, 5.9 and 6.6. The maximum strength was 722Mpa at the rolling ratio 4.9. The conductivity was measured also with maximum 59.5% IACS. The experimental results show that the tensile strength and electrical resistance increase with the increasing of rolling strain. Although the conductivity of Cu-Fe in-situ composites was not very high, the matching of strength and conductivity was favorable. It is feasible that the high performance Cu-based in-situ composite can be obtained by cold rolling with merits of materials cheaper, melting simple and usage wide.
机译:变形加工的Cu基原位复合材料是一种具有较高物理机械性能的结构功能材料,广泛用于大规模集成电路中。特别地,Cu-Fe原位复合材料的片材引起了研究者的兴趣,因为Fe更便宜并且在电子工业中片材的使用更加广泛。在本研究中,通过冷轧获得厚度为6mm至2.56mm,1.28mm,0.64mm和0.32mm的Cu-10Fe-1Ag原位复合材料片。相应地,轧制比为4.9、5.3、5.9和6.6。在4.9的轧制比下,最大强度为722Mpa。还使用最大59.5%IACS测量了电导率。实验结果表明,抗拉强度和电阻随轧制应变的增加而增加。尽管Cu-Fe原位复合材料的电导率不是很高,但是强度和电导率的匹配是有利的。可以通过冷轧获得便宜的材料,熔化简单且用途广泛的优点,从而获得高性能的铜基原位复合材料。

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