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Mechanical and Electrical Properties of Cu-15wt.%Ag Microcomposites Processed by Equal Channel Angular Pressing

机译:等通道转角挤压Cu-15wt。%Ag微复合材料的力学和电性能

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摘要

Equal channel angular pressing (ECAP) with intermediate heat treatment was employed to optimize the strength of Cu-15 wt.%Ag. Changes in microstructure, electrical properties and mechanical properties were studied as a function of pressing methods and heat treatment. ECAPed Cu-15wt.%Ag exhibited ultrafine-grained microstructures with the shape and distribution of Ag-rich lamellae dependent on the processing routes. For route A in which the sample was pressed without rotation between each pass, the initial dendrites of Ag-rich phase were elongated along the shear direction and developed into elongated filaments. For route C in which the sample was rotated by 180 degree after each pass, the morphology of initial dendrites of Ag-rich phase was not much modified and the networked structure remained even after 8 passes of ECAP. For route Be in which the sample was rotated by 90 degree after each pass, the initial dendrites became finer by fragmentation with no pronounced change of the shape and distribution of Ag-rich lamellae. The strength of Cu-15wt.%Ag ECAPed using route Be was found to be greater than those ECAPed using route A, suggesting that the substructural strengthening is more effective in strengthening than the interface strengthening.
机译:采用带有中间热处理的等通道角挤压(ECAP)来优化Cu-15 wt。%Ag的强度。研究了微观结构,电性能和机械性能随压制方法和热处理的变化。 ECAPed Cu-15wt。%Ag表现出超细晶粒的微观结构,富Ag薄片的形状和分布取决于加工路线。对于路径A,其中样品在每次通过之间不旋转而被挤压,富银相的初始树枝状晶体沿剪切方向拉长并发展为拉长的长丝。对于在每次通过后将样品旋转180度的路线C,富Ag相的初始树枝状晶体的形态没有太大改变,甚至在ECAP进行8次通过后仍保持网络结构。对于路线Be,其中每次通过后将样品旋转90度,最初的树枝状晶体通过破碎而变得更细,而富Ag薄片的形状和分布没有明显变化。发现使用路线Be ECued的Cu-15wt。%Ag的强度大于使用路线A ECAPed的Cu-15wt。%Ag,表明亚结构强化比界面强化更有效。

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