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Microstructure and Texture Evolution During Hot Deformation of Cast-Homogenized ZK60 Magnesium Alloy

机译:铸造型ZK60镁合金热变形过程中的微观结构和纹理演化

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Forgeability of as-cast ZK60 magnesium alloy was investigated by isothermal uniaxial hot compression of cylindrical samples using the Gleeble 3500 thermal-mechanical simulation testing system. Computational thermodynamics predictions (by FactSage) along with differential scanning calorimetry (DSC) experiments showed incipient melting of low melting temperature precipitates in the as-cast material at around 340°C. Therefore, the as-cast material was subjected to homogenization heat treatment at 400°C for 4 h. Hot compression test were then conducted at 400 and 450°C using a variety of strain rates (0.001-1.0 s~(-1)). The microstructure of the samples deformed at low strain rates consisted of dynamically recrystallized (DRXed) grains. By increasing the strain rate, the volume fraction of the DRXed regions reduced. The material also exhibited sensitivity to deformation temperature in terms of DRX volume fraction. Texture of the deformed samples was also characterized using the XRD method to investigate the effect of hot deformation conditions on the texture evolution.
机译:通过使用GLEEBLE 3500热机械模拟测试系统,通过等温单轴热压缩来研究ZK60镁合金的圆柱形样品的易防性。计算热力学预测(通过差异)以及差分扫描量热法(DSC)实验显示出在340℃的浇注材料中沉淀的低熔点沉淀的初始熔化。因此,在400℃下对400℃进行均质化热处理4小时。然后使用各种应变率(0.001-1.0 s〜(-1))在400和450℃下进行热压缩试验。以低应变率变形的样品的微观结构包括动态再结晶(Drxed)颗粒。通过提高应变率,降低了Drxed区域的体积分数。在DRX体积分数方面,该材料还表现出对变形温度的敏感性。使用XRD方法表征变形样品的纹理,以研究热变形条件对纹理演化的影响。

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