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Effect of aging on properties and nanoscale precipitates of Cu-Ag-Cr alloy

机译:老化对Cu-Ag-Cr合金性质和纳米级沉淀物的影响

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摘要

In this paper, the Cu-0.52Ag-0.22Cr alloy was prepared by hot horizontal continuous casting. The effects of aging process on micro-hardness, electrical conductivity, and nanoscale precipitates of Cu-0.52Ag-0.22Cr alloy were studied. The electrical conductivity and micro-hardness increase significantly in the early aging time. With the extension of aging time, the electrical conductivity is basically unchanged and remains at a high level. While, the micro-hardness increases slowly, the change trend is different at 623 K, 723 K, and 773 K. The optimisation of process parameters occurs in 723 K for 2 h. At this time, the electric conductivity is 95.8% IACS and the hardness is 104.1 HV0.1. The XRD result shows that the Ag and Cr are precipitated in elemental form copper matrix. Further TEM shows that, Cr exists at the sub-boundary in the form of larger nanoscale precipitates (100-200 nm). While a large number of Ag nanoscale precipitates (8-10 nm) is dispersed on the copper matrix. The synergistic effect of Ag and Cr nanoscale precipitates significantly improved the properties of the alloy.
机译:本文通过热水平连续铸件制备Cu-0.52Ag-0.222Cr合金。研究了老化方法对Cu-0.52Ag-0.2222Cr合金的微硬度,导电性和纳米级沉淀物的影响。在早期老化时间内导电性和微硬度显着增加。随着老化时间的延伸,导电性基本不变,保持高水平。虽然,微硬度缓慢增加,但在623k,723k和773k中的变化趋势不同。在723k中,处理参数的优化2小时。此时,电导率为95.8%IACS,硬度为104.1 HV0.1。 XRD结果表明,Ag和Cr在元素形式铜基质中沉淀。进一步的TEM表明,Cr以较大的纳米级沉淀物(100-200nm)的形式存在于亚边界处。虽然大量Ag纳米级沉淀物(8-10nm)分散在铜基上。 Ag和Cr纳米级沉淀物的协同作用显着提高了合金的性质。

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