首页> 外文会议>TMS annual meeting exhibition;Symposium on magnesium technology >Using the Crystal Plasticity Approach to Parse the Effects of Alloying and Aging on the Mechanical Behavior of Wrought Mg Alloys
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Using the Crystal Plasticity Approach to Parse the Effects of Alloying and Aging on the Mechanical Behavior of Wrought Mg Alloys

机译:使用晶体可塑性方法解析合金化和时效对锻造镁合金力学行为的影响

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Predicting the collective effects of solid solution alloying, precipitation, and grain size on the mechanical properties of a given alloy is one of the 'holy grails' of mechanical metallurgy. For alloys with a cubic crystal structure, this is challenging enough to have been solved only in specific cases, and even there, predicting the anisotropies induced by crystallographic texture is very difficult. In the case of hexagonal close packed Mg alloys, this challenge is even greater and arguably more important. Research over the past decade has also highlighted the significant impact precipitate shape and orientation can have on the strength of Mg alloys. This review lecture will show, with examples from conventional and rare earth containing Mg alloys, that the crystal plasticity approach has enabled the level of our predictive capability to rapidly approach the level, which exists in other more mature alloys systems.
机译:预测固溶合金化,析出和晶粒尺寸对给定合金机械性能的集体影响是机械冶金学的“圣杯”之一。对于具有立方晶体结构的合金而言,这具有挑战性,足以仅在特定情况下才能解决,即使在这种情况下,预测由晶体织构引起的各向异性也非常困难。对于六方密堆积镁合金而言,这一挑战甚至更大,而且可能更为重要。过去十年的研究还强调了析出物的形状和取向可能会对镁合金的强度产生重大影响。这篇回顾性演讲将通过常规和稀土含Mg合金的实例表明,晶体可塑性方法使我们的预测能力迅速达到了其他更成熟的合金体系中的水平。

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