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An internal variable approach to high temperature deformation and superplasticity of Mg alloys

机译:镁合金高温变形和超塑性的内部变量方法

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摘要

High temperature deformation behavior of pure Mg and Mg alloys has been investigated within the framework of an internal variable theory for inelastic deformation. To this end, a series of load relaxation tests has been performed for pure Mg single and poly crystals as well as the AZ31 Mg alloys. At 623 K, pure Mg single crystal exhibited a transition in deformation mechanism from dislocation climb at lower strain rates to plastic deformation at higher rates, while the polycrystal showed only the plastic deformation. The AZ31Mg alloy with the fine grain size of d= 10μm revealed both the grain boundary sliding and plastic deformation under suitable test conditions in terms of temperature and strain rate, while the coarse grain with d=20μm exhibited only the plastic deformation. From the constitutive analysis based on the internal variable theory, the role of grain size refinement and process temperature on superplasticity has been clarified precisely as a dividend of present approach.
机译:在内部变量理论的非弹性变形理论框架内,研究了纯Mg和Mg合金的高温变形行为。为此,已经对纯Mg单晶和多晶以及AZ31 Mg合金进行了一系列负载松弛测试。在623 K时,纯Mg单晶表现出从较低应变速率的位错爬升到较高应变速率的塑性变形的变形机理转变,而多晶仅显示塑性变形。 d =10μm细晶粒的AZ31Mg合金在合适的测试条件下,在温度和应变率方面均显示出晶界滑动和塑性变形,而d =20μm的粗晶粒仅表现出塑性变形。从基于内部变量理论的本构分析中,晶粒细化和加工温度对超塑性的作用已被明确阐明,这是当前方法的一大优势。

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