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首页> 外文期刊>International Journal Cast Metals Research >Estimation of local fatigue behaviour in A356-T6 gravity die cast engine head based on solidification defects content
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Estimation of local fatigue behaviour in A356-T6 gravity die cast engine head based on solidification defects content

机译:基于凝固缺陷含量的A356-T6重力压铸发动机缸盖局部疲劳行为估计

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摘要

Al-Si-Mg cast alloys have widespread applications, especially in the aerospace and automotive industries, due to their excellent combination of castability and high specific strength. Among Al-Si alloys, hypoeutectic A356 (Al-7Si-0·3Mg) ranks as one of the most widely used for the production of a variety of components, including engine blocks and engine heads, due to its excellent castability and good mechanical properties. The microstructure of this alloy greatly depends on chemical composition, solidification conditions, metal soundness and heat treatment. Furthermore, its mechanical properties are strongly affected by solidification microstructure and defects, which can vary greatly in complex shaped castings. Among the different microstructural features, only secondary dendrite arm spacing and percentage defect content can currently be predicted with sufficient accuracy by casting simulation software. This makes the prediction of the fatigue life of complex shaped Al-Si castings very difficult, since it is widely accepted that fatigue behaviour mainly depends on the size of solidification defects (gas pores and cavity shrinkages). In this study, the experimental work was carried out on an industrial A356-T6 gravity die cast engine head, with the aim of finding relationships among the main microstructural features and solidification defect parameters. The goal of this analysis was to correlate the defect size, which is the most important variable affecting the fatigue behaviour, to the other microstructural parameters that can be predicted by casting simulation software. Moreover, by applying literature models for fatigue behaviour prediction, based on maximum defect size, the local expected fatigue life/fatigue limit on a section of the casting will be evaluated and compared with those obtained by rotating bending fatigue tests. This study would demonstrate the effectiveness of a new approach of coengineering design, with a strong synergy between the structural finite element method and the casting simulation process, able to estimate the local fatigue strength in complex shaped A356 castings.
机译:Al-Si-Mg铸造合金由于具有出色的可铸造性和高比强度,因此具有广泛的应用,特别是在航空航天和汽车行业。在Al-Si合金中,亚共晶A356(Al-7Si-0·3Mg)因其出色的可铸性和良好的机械性能而被广泛用于生产包括发动机缸体和发动机缸盖在内的各种零件。 。这种合金的微观结构在很大程度上取决于化学成分,凝固条件,金属的稳固性和热处理。此外,它的机械性能受凝固组织和缺陷的强烈影响,而这些缺陷在复杂形状的铸件中会发生很大变化。在不同的微结构特征中,目前只能通过铸造仿真软件以足够的精度预测次生枝晶臂间距和缺陷百分比。这使得很难预测复杂形状的Al-Si铸件的疲劳寿命,因为人们普遍认为疲劳行为主要取决于凝固缺陷的大小(气孔和空腔收缩)。在这项研究中,实验工作是在工业A356-T6重力压铸发动机机头上进行的,目的是发现主要微观结构特征与凝固缺陷参数之间的关系。该分析的目的是将缺陷尺寸(该变量是影响疲劳性能的最重要变量)与铸造模拟软件可以预测的其他微结构参数相关联。此外,通过将文献模型用于疲劳行为预测,基于最大缺陷尺寸,将评估铸件截面上的局部预期疲劳寿命/疲劳极限,并将其与通过旋转弯曲疲劳测试获得的极限进行比较。这项研究将证明一种新的协同工程设计方法的有效性,在结构有限元方法和铸造模拟过程之间具有强大的协同作用,能够估算复杂形状的A356铸件的局部疲劳强度。

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