首页> 外文期刊>Frontiers of mechanical engineering >A model for creep life prediction of thin tube using strain energy density as a function of stress triaxiality under quasi-static loading employing elastic-creep & elastic-plastic-creep deformation
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A model for creep life prediction of thin tube using strain energy density as a function of stress triaxiality under quasi-static loading employing elastic-creep & elastic-plastic-creep deformation

机译:利用弹性蠕变和弹塑性蠕变变形在准静态载荷下使用应变能密度与应力三轴性的函数预测薄管蠕变寿命的模型

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摘要

This paper demonstrates the application of a new multiaxial creep damage model developed by authors using stress traixiality to predict the failure time of a component made of 0.5%Cr-0.5%Mo-0.25%V low alloy steel. The model employs strain energy density and assumes that the uniaxial strain energy density of a component can be easily calculated and can be converted to multi-axial strain energy density by multiplying it to a function of stress trixiality which is a ratio of mean stress to equivalent stress. For comparison, an elastic-creep and elastic-plastic-creep finite element analysis (FEA) is performed to get multi-axial strain energy density of the component which is compared with the calculated strain energy density for both cases. The verification and application of the model are demonstrated by applying it to thin tube for which the experimental data are available. The predicted failure times by the model are compared with the experimental results. The results show that the proposed model is capable of predicting failure times of the component made of the above-mentioned material with an accuracy of 4.0%.
机译:本文演示了作者开发的一种新的多轴蠕变损伤模型的应用,该模型使用应力三轴性来预测由0.5%Cr-0.5%Mo-0.25%V低合金钢制成的组件的失效时间。该模型采用应变能密度,并假设可以轻松计算组件的单轴应变能密度,并将其乘以应力三项式的函数即可将其转换为多轴应变能密度,该函数是平均应力与等效应力之比强调。为了进行比较,执行了弹性蠕变和弹塑性蠕变有限元分析(FEA),以获取组件的多轴应变能密度,并将这两种情况与计算出的应变能密度进行比较。该模型的验证和应用通过将其应用到可获得实验数据的细管上进行演示。将模型预测的故障时间与实验结果进行比较。结果表明,所提出的模型能够以4.0%的精度预测由上述材料制成的组件的失效时间。

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