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Effect of Aging Treatment on Mechanical Properties and Electrical Conductivity of Cu-5.7Cr in situ Composite Produced by Equal Channel Angular Pressing

机译:老化处理对等通道角压制型Cu-5.7%Cr的机械性能和电导率的影响

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摘要

The effect of aging treatment on mechanical properties and electrical conductivity of Cu-5.7%Cr in situ composite produced by equal channel angular pressing (ECAP) was investigated here. The rotation and spreading of Cr particles was observed in Cu-5.7%Cr alloy during the ECAP, resulting in long thin in situ filaments. The equiaxed grains of the Cu phase with an average size of 200 nm were developed after eight passes of ECAP. When aging at 400~450°C for 1 h, Cu-5.7%Cr composite after ECAP shows the maximum microhardness, and the electrical conductivity is larger than 70% of IACS. At 400°C, the peak aging time appears for 0.5~2 h, dependent on the pre-strain for all ECAP samples. With the increase of ECAP passes, the enhancement of tensile strength due to the aging treatment declines, and even shows negative after eight passes of ECAP. The combination of ECAP and aging treatment would be a promising process to balance mechanical properties and electrical conductivity of Cu-5.7%Cr composite.
机译:在此研究了老化处理对通过等通道角压(ECAP)产生的Cu-5.7%Cr的机械性能和电导率的电导率。在ECAP期间在Cu-5.7%Cr合金中观察到Cr颗粒的旋转和扩散,导致长薄的原位长丝。在八次ECAP经过八次通过后,平均尺寸为200nm的Cu相的等轴晶粒。当400〜450℃时老化1小时,ECAP后Cu-5.7%Cr复合材料显示最大的微硬度,电导率大于IACS的70%。在400℃下,峰值老化时间出现0.5〜2小时,取决于所有ECAP样品的预菌株。随着ECAP通过的增加,由于老化治疗导致的拉伸强度的增强下降,甚至在ECAP的八次通过后显示出负面。 ECAP和老化处理的组合将是平衡Cu-5.7%Cr复合材料的机械性能和导电性的有希望的过程。

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