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On the Possibility of Formation and Properties of Copper-Silver Solid Solutions Under Severe Plastic Deformation

机译:严重塑性变形下铜-银固溶体的形成和性质的可能性

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摘要

Mechanical alloying of Cu and Ag powders in concentrations Cu1-x-Ag-x (N... at.% = 0.1, 0.2, aEuro broken vertical bar, 0.9) under high-pressure torsion is investigated. The alloys obtained have a structure of nanograined nonequilibrium FCC solid solutions with positive deviation from Vegard's law. The hardness of the alloys is 4-6 times higher than of the initial components - copper and silver. The energy and power parameters of treatment of the solid solutions and stages of their formation are calculated from the shear stress measured in situ under high pressure. Thermally induced decomposition of the solid solutions begins from aging under normal conditions, is accelerated upon heating, and ends by short-term heating up to 500A degrees C. It is accompanied by simultaneous development of the processes of gathering recrystallization.
机译:研究了在高压扭力下浓度为Cu1-x-Ag-x(N ... at。%= 0.1,0.2,aEuro垂直折线,0.9)的Cu和Ag粉的机械合金化。所获得的合金具有纳米晶粒非平衡FCC固溶体的结构,与Vegard定律有正偏差。合金的硬度是初始成分铜和银的4-6倍。固溶处理的能量和功率参数以及固溶体的形成阶段是根据在高压下现场测量的切应力计算得出的。固溶体的热诱导分解从正常条件下的老化开始,通过加热而加速,并通过短期加热至500A摄氏度而结束。它伴随着收集重结晶过程的同时发展。

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