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Pure aluminum with different grain size distributions by consolidation of particles using equal-channel angular pressing with back pressure

机译:通过使用等通道角压和背压固结颗粒来固结具有不同晶粒尺寸分布的纯铝

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摘要

Equal-channel angular pressing (ECAP) with back pressure was used to consolidate particles into bulk materials. In the present study, fully dense bulk aluminum was consolidated from nanoparticles and mixtures of nano and microparticles in varying proportions to obtain different grain size distributions. These materials were processed by ECAP for four passes at 673 K with the application of a constant back pressure of 200 MPa. Mechanical tests showed that hardness and strength increased significantly with increasing volume fraction of the nanoparticles while ductility decreased. Transmission electron microscopy examination and X-ray diffraction analysis showed Al nanocrystals of the order of 10nm in the material consolidated from 100% nanoparticles whereas a bimodal distribution of grain sizes was observed in the mixtures.
机译:具有背压的等通道角压(ECAP)用于将颗粒固结成块状材料。在本研究中,完全致密的块状铝以不同比例从纳米颗粒以及纳米和微粒的混合物中固结,以获得不同的晶粒尺寸分布。施加200 MPa的恒定背压,通过ECAP在673 K下对这些材料进行了四次处理。力学测试表明,随着纳米颗粒体积分数的增加,硬度和强度显着增加,而延展性下降。透射电子显微镜检查和X射线衍射分析显示,从100%纳米颗粒固结的材料中,Al纳米晶体的数量级为10nm,而在混合物中观察到晶粒尺寸的双峰分布。

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