首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Doping Ti to achieve microstructural refinement and strength enhancement in a high volume fraction Y2O3 dispersion strengthened Cu
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Doping Ti to achieve microstructural refinement and strength enhancement in a high volume fraction Y2O3 dispersion strengthened Cu

机译:掺杂Ti实现高体积馏分Y2O3色散中的微观结构细化和强度增强强化Cu

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摘要

In this work, high volume fraction Y2O3 dispersion strengthened Ti-free and Ti-doped Cu samples were prepared by mechanical alloying, high temperature heat treatment and powder compact extrusion to study the role of alloying Ti element on microstructures, mechanical properties and electrical conductivity of the extruded samples. It is found that the addition of a small amount of 0.4 wt.%Ti effectively suppresses the coarsening of Y2O3 particles during material fabrication, which produces smaller and more uniform oxide particles distributed in a homogeneous ultrafine grained Cu matrix. However, a heterogeneous Cu matrix microstructure, consisting of elongated micrometer-scale Cu grains and equiaxed ultrafine Cu grains, is observed in the Ti-free sample due to significant coarsening of the Y2O3 particles. The different microstructural features of the two extruded samples lead to distinctively different mechanical behaviors and electrical conductivities. The energy dispersive X-ray spectrometry elemental and high resolution transmission electron microscopy analysis suggest that the stabilizing mechanisms of the Y2O3 particles involve both the segregation of Ti atoms to the surface layers of large Y2O3 particles and dissolution of Ti atoms into small Y2O3 particles to form complex particles. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过机械合金化,高温热处理和粉末紧凑的挤压来制备高容积级分和Ti掺杂的Cu样品,研究了合金Ti元件对微结构,机械性能和电导率的作用挤出的样品。发现添加少量0.4重量%。%Ti有效地抑制了材料制造期间Y2O3颗粒的粗化,这产生分布在均匀超细颗粒Cu基质中的较小且更均匀的氧化物颗粒。然而,由于Y2O3颗粒的显着粗化,在无晶粒尺寸Cu颗粒和等轴超细Cu晶粒中观察到由细长的微米级Cu晶粒和等轴超细Cu晶粒组成的异质Cu基质微观结构。两个挤出样品的不同微观结构特征导致不同的机械行为和电导率。能量分散X射线光谱分子元素和高分辨率透射电子显微镜分析表明,Y2O3颗粒的稳定机制涉及Ti原子的偏析,使大Y2O3颗粒的表面层和Ti原子溶解到小的Y2O3颗粒中形成复杂的颗粒。 (c)2018年elestvier b.v.保留所有权利。

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