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A novel constitutive model for multi-step stress relaxation ageing of a pre-strained 7xxx series alloy

机译:一种新型型号的预拉伸7xxx系列合金的多步应弛豫老化构成模型

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摘要

A novel set of unified constitutive equations has been developed and validated to describe stress relaxation ageing (SRA) behaviour of 7xxx series aluminium alloys. The model, based on dynamic ageing and power-law creep relations, can predict the stress relaxation, age hardening response and their interactions at different temperatures, through considering the microstructure evolutions (precipitate radius, volume fraction and dislocation density) during SRA. In addition, the model newly incorporates the effects of prior plastic strain. This model was verified through T74 multi-step SRA experiments for different pre-strain conditions. Excellent agreement was achieved between the predicted and experimental results for stress relaxation and yield strength variation. The evolution of micro-internal variables (e.g. normalised precipitate radius) within the model were calibrated by observing transmission electron microscopy (TEM) images both performed in this work and available in literature. The advanced constitutive model developed predicts the mechanical properties and residual stresses in components after ageing. Therefore, the model provides a valuable tool to optimise manufacturing processes leading to many benefits including reduced scrap rates and financial losses.
机译:已经开发并验证了一种新颖的统一组成型方程,以描述7xxx系列铝合金的应力松弛老化(SRA)行为。基于动态老化和动力法蠕变关系的模型可以通过考虑SRA期间的微观结构演进(沉淀半径,体积分数和位错密度)来预测应力松弛,年龄硬化响应及其在不同温度的相互作用。此外,该模型新增了现有塑性应变的效果。通过T74多步骤SRA实验验证了该模型,用于不同的菌株的含义。在应力松弛和屈服强度变化的预测和实验结果之间实现了优秀的一致性。通过观察在这项工作中执行的透射电子显微镜(TEM)图像并在文献中可用,通过观察到透射电子显微镜(TEM)图像来校准模型内的微内变量(例如归一化沉淀半径)。先进的本构模型开发了老化后部件中的机械性能和残余应力预测。因此,该模型提供了一个有价值的工具,优化了导致许多益处的制造过程,包括减少废料率和金融损失。

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