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Temperature Effects on the Tensile Properties of Precipitation-Hardened Al-Mg-Cu-Si Alloys

机译:温度对沉淀硬化Al-Mg-Cu-Si合金拉伸性能的影响

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Because the mechanical performance of precipitation-hardened alloys can be significantly altered with temperature changes, understanding and predicting the effects of temperatures on various mechanical properties for these alloys are important. In the present work, an analytical model has been developed to predict the elastic modulus, the yield stress, the failure stress, and the failure strain taking into consideration the effect of temperatures for precipitation-hardenable Al-Mg-Cu-Si Alloys (Al-A319 alloys). In addition, other important mechanical properties of Al-A319 alloys including the strain hardening exponent, the strength coefficient, and the ductility parameter can be estimated using the current model. It is demonstrated that the prediction results based on the proposed model are in good agreement with those obtained experimentally in Al-A319 alloys in the as-cast condition and after W and T7 heat treatments.
机译:由于沉淀硬化合金的机械性能会随温度变化而显着改变,因此了解和预测温度对这些合金的各种机械性能的影响非常重要。在目前的工作中,已经开发了一种分析模型来预测弹性模量,屈服应力,破坏应力和破坏应变,其中考虑了沉淀硬化型Al-Mg-Cu-Si合金(Al -A319合金)。此外,可以使用当前模型估算Al-A319合金的其他重要机械性能,包括应变硬化指数,强度系数和延展性参数。结果表明,基于所提出模型的预测结果与在铸造条件下以及经过W和T7热处理的Al-A319合金中的实验结果吻合良好。

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