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首页> 外文期刊>International Journal of Mechanical Sciences >Experimental studies and constitutive modelling of the hardening of aluminium alloy 7055 under creep age forming conditions
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Experimental studies and constitutive modelling of the hardening of aluminium alloy 7055 under creep age forming conditions

机译:蠕变时效条件下7055铝合金硬化的实验研究和本构模型

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摘要

A test programme has been designed to characterise the creep-ageing behaviour of Aluminium Alloy 7055, commonly termed AA7055, under creep age forming (CAF) conditions. Creep ageing tests have been carried out for a range of stress levels at 120℃ for 20 h, which is the typical period for a CAF process. Interrupted creep tests have also been carried out to rationalise the effect of stress levels on age hardening. Based on experimental observations, a set of mechanism-based unified creep ageing constitutive equations has been formulated, which models creep induced evolution of precipitates, dislocation hardening, solid solution hardening and age-precipitation hardening. A multiple-step reverse process has been introduced to determine, from creep ageing test data, the values of constants arising in the constitutive equations. Close agreement between experimental data and computed results are obtained for creep and age hardening data for the stress range tested. The determined equation set has been integrated with the commercial FE code MSC.MARC via the user defined subroutine, CRPLAW, for CAF process modelling. In addition to springback, the evolution of precipitate size and creep induced precipitation hardening can be predicted.
机译:设计了一个测试程序来表征在蠕变年龄形成(CAF)条件下铝合金7055(通常称为AA7055)的蠕变老化行为。蠕变老化测试是在120℃的应力水平范围内进行20小时的测试,这是CAF工艺的典型时期。还进行了间断蠕变测试,以使应力水平对时效硬化的影响合理化。基于实验观察,建立了一套基于机理的统一蠕变时效本构方程,对蠕变引起的析出,位错强化,固溶强化和时效强化进行了建模。已经引入了多步反向过程,以根据蠕变老化测试数据确定本构方程中出现的常数值。对于测试应力范围的蠕变和时效硬化数据,获得了实验数据和计算结果之间的紧密一致性。所确定的方程组已通过用户定义的子例程CRPLAW与商业FE代码MSC.MARC集成在一起,用于CAF过程建模。除回弹外,还可预测沉淀物大小的演变和蠕变引起的沉淀硬化。

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