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首页> 外文期刊>RSC Advances >A nano-micro dual-scale particulate-reinforced copper matrix composite with high strength, high electrical conductivity and superior wear resistance
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A nano-micro dual-scale particulate-reinforced copper matrix composite with high strength, high electrical conductivity and superior wear resistance

机译:具有高强度,高电导率和优异耐磨性的纳米微米级双尺度颗粒增强铜基复合材料

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Due to the contradiction between mechanical properties and electrical conductivity, it is not easy to fabricate materials with both high strength and good wear resistance with favourable electrical conductivity for the application of electrical materials. In addition, strength and wear resistance do not always present a uniform growth trend at the same time. Herein, a novel copper matrix composite reinforced by in situ synthesized ZrB _(2) microparticles and nano Cu _(5) Zr precipitates is successfully prepared by a casting method and sequential heat treatments. The Cu/dual-scale particulate composite possesses a desired trade-off of strength, electrical conductivity and wear resistance. ZrB _(2) microparticles form from Zr and B elements in copper melts, and nanoscale Cu _(5) Zr precipitates form in the matrix after solid solution and aging treatments. The ZrB _(2) microparticles, nano Cu _(5) Zr precipitates, and well-bonded interfaces contribute to a high tensile strength of 591?MPa and superior wear resistance, with a relative electrical conductivity of 83.7% International Annealed Copper Standard.
机译:由于机械性能和电导率之间的矛盾,要制造具有高强度和良好耐磨性且具有良好电导率的材料用于电材料的应用并不容易。另外,强度和耐磨性并不总是同时呈现出均匀的增长趋势。在这里,通过铸造方法和顺序热处理成功地制备了由原位合成的ZrB_(2)微粒和纳米Cu_(5)Zr沉淀物增强的新型铜基复合材料。 Cu /双尺度颗粒复合材料具有强度,导电性和耐磨性的所需折衷。 ZrB _(2)微粒由铜熔体中的​​Zr和B元素形成,固溶和时效处理后在基体中形成纳米级Cu _(5)Zr沉淀物。 ZrB _(2)微粒,纳米Cu _(5)Zr析出物和牢固结合的界面有助于形成591?MPa的高拉伸强度和出色的耐磨性,相对电导率为国际退火铜标准的83.7%。

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