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A macro-micro-multi-level modeling scheme to study the effect of particle distribution on wrap-bendability of AA5754 sheet alloys

机译:宏观-微观-多层次建模方案,研究颗粒分布对AA5754薄板合金可弯曲性的影响

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摘要

A two-level finite element model to simulate wrap bending of flat sheet metal has been developed. Firstly, a sample sized plane strain analysis is performed and the location of most severe deformation is identified. Then a plane strain sub-model incorporating microstructural input, such as second phase particles at this location, is performed. The results show that models with particles distributed primarily in stringers exhibit lower bendability than those containing a random distribution of particles. This is consistent with the difference in bendability observed between continuous cast (CC) and direct chill cast (DC) AA5754 alloys which have characteristic stringer and random particle distributions. The morphology of cracking in the model with stringers is similar to that observed in AA5754 CC sheets. The crack initiates at the surface between particles or near particles and propagates along local shear bands to other stringers in the bulk or jumps from one stringer to another.
机译:已经开发了一种用于模拟平板金属包绕弯曲的两级有限元模型。首先,进行样本大小的平面应变分析,并确定最严重变形的位置。然后,执行结合了微结构输入的平面应变子模型,例如该位置的第二相粒子。结果表明,具有主要分布在桁条中的粒子的模型比包含随机分布的粒子的模型具有较低的可弯曲性。这与连续铸造(CC)和直接冷铸(DC)具有特征性纵梁和随机颗粒分布的AA5754合金之间观察到的可弯曲性差异是一致的。带纵梁的模型的裂纹形态与AA5754 CC薄板中观察到的相似。裂纹起始于颗粒之间或附近的颗粒表面,并沿着局部剪切带传播到主体中的其他桁条,或从一个桁条跳至另一条。

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