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Modelling Magnesium Alloys for Improved Isotropic and Symmetric Yield Behaviour

机译:模拟镁合金以改善各向同性和对称屈服行为

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Age-hardenable wrought magnesium alloys suffer from high mechanical anisotropy and asymmetry which can be reduced by the correct choice of precipitate shape and habit plane. In this paper, the effect of combining precipitates of different types has been predicted using modified Orowan strengthening theory and visco-plastic self-consistent modelling, with the goal of designing more isotropic magnesium alloys. It was predicted that the correct combination of 〈1120〉 basal laths and c-axis rods would be expected to reduce yield anisotropy and asymmetry, whilst also providing high strength, consistent with published data on a Mg-Sn-Zn-Al-Na alloy. The model was further expanded to relate precipitate volume fractions to alloying content so that weight-optimised alloys with desirable isotropy, symmetry and strength could be designed.
机译:时效硬化的变形镁合金具有较高的机械各向异性和不对称性,可以通过正确选择析出物形状和习性平面来降低这种各向异性。在本文中,已使用改进的Orowan强化理论和粘塑性自洽模型预测了结合不同类型沉淀物的效果,目的是设计出更多各向同性的镁合金。据预测,正确组合〈1120〉基底板条和c轴杆会降低屈服各向异性和不对称性,同时还能提供高强度,这与Mg-Sn-Zn-Al-Na合金的公开数据一致。该模型进一步扩展,以使析出物体积分数与合金含量相关,从而可以设计出具有理想各向同性,对称性和强度的重量优化合金。

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