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Constitutive modelling of creep-ageing behaviour of peak-aged aluminium alloy 7050

机译:峰值时效铝合金7050蠕变时效行为的本构模型

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The creep-ageing behaviour of a peak-aged aluminium alloy 7050 was investigated under different stress levels at 174 ∘C for up to 8 h. Interrupted creep tests and tensile tests were performed to investigate the influences of creep-ageing time and applied stress on yield strength. The mechanical testing results indicate that the material exhibits an over-ageing behaviour which increases with the applied stress level during creep-ageing. As creep-ageing time approaches 8 h, the material's yield strength under different stress levels gradually converge, which suggests that the difference in mechanical properties under different stress conditions can be minimised. This feature can be advantageous in creep-age forming to the formed components such that uniformed mechanical properties across part area can be achieved. A set of constitutive equations was calibrated using the mechanical test results and the alloy-specific material constants were obtained. A good agreement is observed between the experimental and calibrated results.
机译:研究了峰值时效铝合金7050的蠕变时效行为,该合金在174∘C的应力水平高达8 stressh的条件下。进行了间断蠕变试验和拉伸试验,以研究蠕变时效时间和施加应力对屈服强度的影响。力学测试结果表明,材料表现出过时效行为,该行为随蠕变时效过程中施加的应力水平而增加。随着蠕变时效时间接近8 h,材料在不同应力水平下的屈服强度逐渐收敛,这表明在不同应力条件下机械性能的差异可以最小化。该特征在对成形的部件进行蠕变时效成形方面可以是有利的,从而可以在零件区域上实现均匀的机械性能。使用机械测试结果校准了一组本构方程,并获得了合金特定的材料常数。实验结果和校准结果之间观察到很好的一致性。

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