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Microstructure and properties of nanocrystalline copper-niobium alloy with high strength and high conductivity

机译:高强度高电导率纳米晶铜铌合金的组织与性能

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摘要

A nanocrystalline Cu-10wt%Nb alloy, with high strength and high conductivity, was prepared by mechanical alloying and subsequent hot pressing. The microstructure and properties of the alloys after consolidation at different temperatures were investigated. The alloy, subjected to hydrogen-annealing of milled powders at 560 ℃ for 1 h and then vacuum hot-pressing sintering under 30 MPa pressure and 900 ℃ for 2 h, has a microhardness of 334 HV, a tensile strength of 1102 MPa, a yield strength of 1043 MPa, and an electrical conductivity of 57% IACS (International Annealing Copper Standard). The as processed alloy is characterised by Nb nanoparticles dispersed in the nanocrystalline Cu matrix. The high strength of Cu-Nb alloy is related with the microstructure, i.e. the nanocrystalline grains produce the grain boundary strengthening, while the Nb nanoparticles produce the precipitation strengthening. The grain boundaries and the nanoparticles are also found to influence the electrical conductivity of the alloy considerably.
机译:通过机械合金化和随后的热压制备了具有高强度和高导电性的纳米晶Cu-10wt%Nb合金。研究了合金在不同温度下固结后的组织和性能。该合金在560℃下经过粉末退火的氢退火1 h,然后在30 MPa压力和900℃下真空热压烧结2 h,其显微硬度为334 HV,抗拉强度为1102 MPa,屈服强度为1043 MPa,电导率为57%IACS(国际退火铜标准)。加工后的合金的特征是Nb纳米颗粒分散在纳米晶Cu基体中。 Cu-Nb合金的高强度与微观结构有关,即纳米晶粒产生晶界强化,而Nb纳米粒子产生沉淀强化。还发现晶界和纳米颗粒显着影响合金的电导率。

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