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Modeling the Effect of Alloying Elements in Magnesium on Deformation Twin Characteristics

机译:用镁镁对变形双胞胎特征的影响模拟效果

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HCP magnesium metals are widely used in different industries due to their low density and high specific strength. Their applicability is restricted due to poor formability and high anisotropy in deformation behavior. The formability of magnesium can be improved by alloying additions and this modification can affect macroscopic plastic anisotropy. Alloying additions can also significantly control the twinning process. In this work we use a crystal plasticity based Fast Fourier Transform model to characterize deformation twinning in different alloy types. In the model, the influence of alloying additions is represented through their effect on the critical resolved shear stress (CRSS) values for all slip and twinning modes. From this study, we build an understanding of the influence of alloying elements on twin growth and twin transmission behavior. A new plastic anisotropy measure is proposed to quantify the effects of alloying elements on some important twinning characteristics in magnesium alloys.
机译:由于其低密度和高比强度,HCP镁金属广泛应用于不同行业。由于变形行为的可易成形性和高各向异性差,它们的适用性受到限制。通过合金化添加可以改善镁的可成形性,并且该改性可以影响宏观塑性各向异性。合金添加也可以显着控制孪晶过程。在这项工作中,我们使用基于晶体可塑性的快速傅里叶变换模型来表征不同合金类型的变形孪生。在该模型中,通过它们对所有滑动和孪晶模式的临界分辨剪切应力(CRS)值的影响表示合金添加的影响。从本研究开始,我们建立了对合金元素对双胞胎生长和双传动行为的影响的理解。提出了一种新的塑料各向异性测量,以量化合金元素对镁合金中一些重要的孪晶特性的影响。

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