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Creep rupture mechanisms of 5083-Al alloy under multiaxial stress states

机译:5083-铝合金在多轴应力状态下的蠕变断裂机理

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摘要

The high-temperature rupture behavior of the 5083-Al alloy was tested to failure at 548 K under multiaxial stress states of uniaxial tension using smooth bar specimens, biaxial shearing using double shear bar specimens, and triaxial tension using notched bar specimens. Rupture times were compared for uniaxial, biaxial, and triaxial stress states with respect to the maximum principal stress, the von-Mises effective stress, and the principal facet stress. The results indicate that the von Mises effective and principal facet stresses show a good correlation for the investigated material. The success with two parameters implies that the creep rupture of the 5083-Al alloy is dominated by grain boundary cavitation that is constrained by the creep deformation of the surroundings. The experimental results reveal that the creep rupture of this alloy under the testing condition in the present study is controlled by cavitation coupled with the highly localized deformation process such as grain boundary sliding. The failure-mechanism control parameter for the notched triaxial tension specimens confirms that the effective stress primarily controls the rupture of the uniaxial and triaxial tension specimens. A theoretical prediction based on constrained cavity growth and continuous nucleation was found to be in agreement with the experimental rupture data within a factor of three.
机译:测试了5083-Al合金的高温断裂行为,在548 K下使用光滑棒状试样的单轴拉伸,使用双剪切棒状试样的双轴剪切和使用带缺口棒状试样的三轴拉伸的多轴应力状态下的破坏。比较了单轴,双轴和三轴应力状态相对于最大主应力,von-Mises有效应力和主面应力的破裂时间。结果表明,冯·米塞斯有效应力和主刻面应力与所研究材料显示出良好的相关性。两个参数的成功表明,5083-Al合金的蠕变断裂主要受晶界空化的影响,而晶界空化受周围环境的蠕变变形所约束。实验结果表明,在本研究中,该合金在试验条件下的蠕变断裂是受空化作用以及高局部变形过程(如晶界滑动)控制的。缺口三轴拉力试样的破坏机制控制参数证实,有效应力主要控制单轴和三轴拉力试样的断裂。发现基于受约束的空穴生长和连续成核的理论预测与实验破裂数据在三分之二内是一致的。

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