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High-Temperature Behavior of High-Pressure Diecast Alloys Based on the Al-Si-Cu System: The Role Played by Chemical Composition

机译:基于Al-Si-Cu体系的高压压铸合金的高温行为:化学成分的作用

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Al-Si-Cu foundry alloys are widely applied in the form of high-pressure diecast components. They feature hypo- or nearly eutectic compositions, such as AlSi9Cu3(Fe), AlSi11Cu2(Fe), and AlSi12Cu1(Fe) alloys, which are used in the present study. Diecast specimens, with a thickness of 3 mm, were used for tension tests. The short-term mechanical behavior was characterized at temperatures from 25 up to 450 °C. At temperatures above 200 °C, the tensile strength properties (YS and UTS) of the investigated alloys were severely affected by temperature, and less by chemical differences. Material hardness and ductility indexes better highlighted the differences in the mechanical behavior of these age-hardenable alloys and allowed us to relate them to the microstructure and its changes that took place at test temperatures. Thermodynamic calculations were found to be useful tools to predict phases formed during solidification, as well as those related to precipitation strengthening. By means of the performed comprehensive material characterization, deeper knowledge of the microstructural changes of Al-Si-Cu foundry alloys during short-term mechanical behavior was obtained. The gained knowledge can be used as input data for constitutive modeling of the investigated alloys.
机译:Al-Si-Cu铸造合金以高压压铸部件的形式广泛应用。它们具有亚共晶或近共晶成分,例如在本研究中使用的AlSi9Cu3(Fe),AlSi11Cu2(Fe)和AlSi12Cu1(Fe)合金。使用厚度为3毫米的压铸试样进行拉伸测试。在25至450°C的温度下表征了短期机械性能。在高于200°C的温度下,所研究合金的拉伸强度性能(YS和UTS)受温度的严重影响,而受化学差异的影响较小。材料硬度和延展性指数更好地突出了这些可时效硬化合金的机械性能差异,并使我们能够将它们与在测试温度下发生的微观结构及其变化联系起来。发现热力学计算是预测凝固过程中形成的相以及与沉淀强化有关的相的有用工具。通过进行全面的材料表征,可以获得有关Al-Si-Cu铸造合金在短期机械行为期间的微观结构变化的更深入的知识。所获得的知识可以用作所研究合金的本构模型的输入数据。

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