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首页> 外文期刊>Journal of Materials Science >Interpretation of hardness evolution in metals processed by high-pressure torsion
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Interpretation of hardness evolution in metals processed by high-pressure torsion

机译:解释高压扭转加工的金属的硬度演变

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The processing of metals through the application of high-pressure torsion (HPT) provides the potential for achieving exceptional grain refinement in bulk disks. Numerous reports are now available describing the application of HPT to a range of pure metals and simple alloys. Excellent grain refinement was achieved using this processing technique with the average grain size often reduced to the nanoscale range. By contrast, the development of microstructure and local hardness is different depending upon the material properties. In order to make HPT processing more practical, it is indispensable to investigate the nature of the sample characteristics immediately after conventional HPT processing. Accordingly, this report demonstrates the different models of hardness evolution using representative materials of AZ31 magnesium alloy, high-purity aluminum, and Zn-22 % Al eutectoid alloy processed by HPT. Separate models are described for the evolution of hardness with equivalent strain, and the correlation between these models is suggested by the homologous temperature of HPT processing. A special emphasis is placed on examining the numerical expression of the level of strain hardening or softening of these metals with increasing equivalent strain.
机译:通过施加高压扭力(HPT)进行金属加工,为在散装盘中实现出色的晶粒细化提供了潜力。现在有许多报告描述了HPT在一系列纯金属和简单合金中的应用。使用这种加工技术可以实现出色的晶粒细化,其平均晶粒尺寸通常减小到纳米级范围。相反,取决于材料性能,微观结构和局部硬度的发展是不同的。为了使HPT处理更实用,必不可少的是在常规HPT处理后立即研究样品特性的性质。因此,本报告展示了使用HPT加工的AZ31镁合金,高纯铝和Zn-22%Al共析合金的代表材料所产生的不同的硬度演化模型。分别描述了当量应变下硬度变化的模型,并且通过HPT加工的同源温度暗示了这些模型之间的相关性。特别重视检查当量等效应变时这些金属的应变硬化或软化程度的数值表达式。

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