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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Study of fatigue crack incubation and propagation mechanisms in a HPDC AM60B magnesium alloy
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Study of fatigue crack incubation and propagation mechanisms in a HPDC AM60B magnesium alloy

机译:HPDC AM60B镁合金的疲劳裂纹萌生与扩展机理研究

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摘要

The micro-mechanisms of fatigue crack nucleation and subsequent propagation in a commercial high-pressure die-cast (HPDC) AM60B alloy were studied. It was found that the majority of fatigue cracks were initiated due to the compressive residual stresses at the locations of large casting pores underneath the machined surfaces, not close to the cast skins, as expected. The propagation of the fatigue cracks depends on the alloy's microstructure, as well as the casting initiated defects during the manufacturing process. Close to the initiation sites, in a location of high local porosity, the cracks grow along the interdendritic regions. On the other hand, in the absence of the weak microstructual paths, the cracks propagate directly through the dendrite cells. Numerous randomly oriented serrated surfaces near the regions farther away from the initiation sites indicate a mixed interdendritic-transdendritic propagation mode. The final fracture zone is characterized by a high level of porosity and dimples surrounding the second phase particles. The resulting conclusions provide a summary of the parameters influencing crack propagation in the alloy.
机译:研究了在商业高压压铸(HPDC)AM60B合金中疲劳裂纹成核和随后扩展的微观机制。已发现,大多数疲劳裂纹是由于加工表面下方大铸孔位置处的残余压缩应力所致,而不是如预期那样靠近铸皮。疲劳裂纹的扩展取决于合金的微观结构以及制造过程中铸件引发的缺陷。靠近起爆点,在局部高孔隙率的位置,裂纹沿着树突间区域生长。另一方面,在没有微弱的微结构路径的情况下,裂纹直接通过枝晶细胞传播。靠近起始点的区域附近有许多随机取向的锯齿状表面,表明树突间-树突间混合传播模式。最终的断裂带的特征是第二相颗粒周围有高孔隙率和凹痕。得出的结论总结了影响合金中裂纹扩展的参数。

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