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Strengthening Mechanisms and their Superposition Law in an Age-Hardenable Mg-10 wt pct Y Alloy

机译:易老化的Mg-10 wt pct Y合金的强化机理及其叠加规律

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摘要

Very weak grain size dependence of yield strength is observed in a peak-aged Mg-10 wt pct Y alloy, in which the Hall-Petch slope k is only 36 pct of that in pure Mg. Such a low grain refinement strengthening response is considered as a result of strong interaction between different strengthening components, and they do not follow a linear superposition law. To determine quantitatively the superposition exponent in the superposition law, the variation of yield strength with grain size in this alloy was examined as solution treated and as peak aged, respectively. The contributions of each major strengthening component, including solid solution, precipitation, and grain refinement strengthening, were evaluated independently based on the data from microstructural characterization. The calculated superposition exponent is scattered around 1.5 with weak dependence on grain size. Furthermore, the effect of solid-solution and precipitation strengthening on the Hall-Petch parameters was also formulated and discussed.
机译:在峰值时效的Mg-10 wt pct Y合金中观察到屈服强度对晶粒尺寸的依赖性很弱,其中Hall-Petch斜率k仅为纯Mg的36 pct。这样低的晶粒细化强化响应被认为是不同强化成分之间强烈相互作用的结果,并且它们不遵循线性叠加定律。为了定量确定叠加定律中的叠加指数,分别研究了固溶处理和峰时效时该合金的屈服强度随晶粒尺寸的变化。基于微观结构表征的数据,独立评估了每个主要强化成分的贡献,包括固溶,析出和晶粒细化强化。计算出的叠加指数散布在1.5左右,对晶粒尺寸的依赖性较小。此外,还阐述并讨论了固溶和沉淀强化对霍尔-Petch参数的影响。

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