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On the conversion of plastic work to heat in Mg alloy AZ31B for dislocation slip and twinning deformation

机译:在镁合金AZ31B中加热塑性作品的转化,脱位滑移和孪晶变形

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In this study the conversion of plastic work to heat of a hot-rolled magnesium alloy AZ31B is investigated using a mechanism-based approach. Shear-compression specimen loading orientations are selected to promote plastic deformation principally through either basal slip, combined pyramidal and prismatic slip, or extension twinning. Loading orientations were selected based on predictions from a crystal plasticity model. High strain-rate adiabatic deformation was accomplished using a compression Kolslcy bar. During each experiment the deforming gauge section temperature rise is recorded using a single-point infra-red detector. From the specimen deformation, thermal measurements, and crystal plasticity calculations of mechanism activity, the conversion of plastic work to heat was inferred. Specimens where basal, prismatic, and pyramidal slip accounted for the majority of plastic deformation exhibited similar percentage of plastic work converted to heat. Specimens where extension twinning was highly active exhibited a comparatively lower fraction of plastic work converted to heat.
机译:在这项研究中,使用基于机制的方法研究了热轧镁合金AZ31B的塑性作品的转化。选择剪切压缩样品负载取向,主要通过基底滑动,组合金字塔和棱柱形滑移或延伸孪晶来促进塑性变形。基于来自晶体塑性模型的预测来选择加载方向。使用压缩Kolslcy棒完成高应变率绝热变形。在每个实验期间,使用单点红外探测器记录变形量截面温度升高。从标本变形,热测量和晶体塑性计算的机制活动,推断塑料工作的转化。标本,基底,棱柱形和金字塔滑坡占大多数塑性变形的标本表现出类似的塑料工作百分比转化为热量。延伸孪晶高度激活的标本表现出相对较低的塑料工作转化为热量。

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