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Fatigue characteristics of the extruded AZ80 automotive wheel

机译:挤压成型的AZ80汽车轮毂的疲劳特性

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In order to provide a reliable theoretical foundation for fatigue resistant design of the magnesium alloy automobile wheel, specimens machined from rim and disc of the extruded AZ80 wheel were subjected to strain-controlled fatigue tests. Various characterizations (such as microstructure and texture analysis, stress-strain response monitoring, twinning/detwinning behavior evolution, and fatigue fracture morphology analysis) have been carried out to investigate the static and fatigue performance of the AZ80 wheel. The obtained micro-structural analysis revealed that the rim sample exhibited finer and more homogeneous dynamic recrystallized grains with the average grain size of —17.2 μm, while —30.5 μm for the disc sample. The rim specimen achieved the ultimate tensile strength of —339 MPa with a noticeable elongation to fracture of -14.6%. In addition, the rim sample also showed superior fatigue properties as compared with the disc sample, which was related to the smaller grains and the weaker texture intensity. The twinning/detwinning behavior participated in the cyclic deformation above the strain amplitude of 0.4% for both samples, resulting in asymmetric hysteresis loops and residual twins. The fatigue crack initiation site was observed with second phase particles and secondary cracks near the surface for all specimens, and in particular, cleavage-like faceted area with twins was identified at strain amplitude of 1%.
机译:为了为镁合金汽车车轮的抗疲劳设计提供可靠的理论基础,对从挤压的AZ80车轮的轮辋和轮盘加工的试样进行了应变控制疲劳测试。为了表征AZ80车轮的静态和疲劳性能,已经进行了各种表征(例如微观结构和织构分析,应力应变响应监测,孪生/脱孪行为演变以及疲劳断裂形态分析)。所得的微结构分析表明,轮辋样品表现出更细且更均匀的动态再结晶晶粒,其平均晶粒尺寸为-17.2μm,而圆盘样品的平均晶粒尺寸为-30.5μm。轮辋样品的极限抗拉强度达到-339 MPa,断裂伸长率显着为-14.6%。另外,轮辋样品与盘状样品相比还显示出优异的疲劳性能,这与较小的晶粒和较弱的织构强度有关。两个样品的孪生/脱孪行为都参与了超过0.4%的应变幅度的循环变形,导致不对称的磁滞回线和残留的孪晶。观察到所有试样的表面都出现第二相颗粒和第二条裂纹的疲劳裂纹萌生部位,特别是在应变幅度为1%时,发现了具有孪晶的分裂状刻面。

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