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Experimental characterization, material modeling, identification and finite element simulation of the thermo-mechanical behavior of a zinc die-casting alloy

机译:锌压铸合金热电机构的实验表征,材料建模,识别和有限元模拟

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摘要

AbstractMany industrially manufactured parts consist of a zinc die-cast material. Since classical constitutive models cannot predict the thermo-mechanical structural behavior of such a material – which exhibits highly non-linear rate-dependent effects, distinct aging properties as well a size-dependence of thin-walled parts –, it is necessary to carry out mechanical experiments under varying conditions as a basis for constitutive modeling. In this article, one major goal is the investigation of the rate-dependence at different temperatures of a zinc die-casting alloy. On the basis of several experiments on thin-walled, cylindrical tubes of Zamak 5, a thermo-mechanically consistent thermo-viscoplasticity model without a yield surface is proposed. Moreover, a concept of material parameter identification is provided and the implementation of the model into a finite element program is shown. Finally, the applicability of the model is proven by comparing an experiment of a complex component part with finite element simulations.Highlights?Extensive thermo-mechanical experiments of zinc die-casting material under torsion, tension and compression.?
机译:<![CDATA [ 抽象 许多工业制造的部件包括锌压铸材料。由于经典构成型模型不能预测这种材料的热机械结构行为 - 这表现出高度非线性速率依赖性的效果,以及薄壁零件的尺寸依赖性的明显老化性能 - 是必须进行的变化条件下的机械实验是本构型建模的基础。在本文中,一个主要目标是调查锌压铸合金不同温度的率依赖性。在薄壁上的若干实验的基础上,提出了一种没有屈服表面的热机械一致的热粘塑性模型。此外,提供了一种材料参数识别的概念,并示出了模型的实现成有限元件。最后,通过将复杂组成部分的实验与有限元模拟进行比较来证明模型的适用性。 突出显示 在扭转,张力和压缩下的锌压铸材料的广泛热机械实验。

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