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Creep Prediction from Stress Relaxation Coupled with Equivalent Relaxation Rate

机译:蠕变预测从应力松弛加上等同的弛豫速率

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Several stress relaxation and creep tests of high temperature material are performed. According to the characteristics of stress relaxations and the superposition equation of diffusion and Maxwell equations of two stages, equivalent relaxation time and equivalent relaxation rate are proposed. Considering equivalent relaxation rate as the creep rate under constant stress, the relaxation-creep conversion model is built up and presented. Then the steady-state creep curve and creep rate are calculated. The results show that the numerical results are in good agreement with the experimental data. It indicates that equivalent relaxation rate can be employed for the analysis of steady-state creep rate. The conversion model and method can be used to design the creep strength and predict the life of the component at high temperature.
机译:进行几种应力松弛和高温材料的蠕变试验。根据应力松弛的特征和两个阶段的扩散和麦克斯韦方程的叠加方程,提出了等同的弛豫时间和等同的弛豫速率。考虑到等效的弛豫率作为恒定应力下的蠕变率,建立并呈现了松弛蠕变转换模型。然后计算稳态蠕变曲线和蠕变率。结果表明,数值结果与实验数据吻合良好。它表明可以采用等效的弛豫率来分析稳态蠕变率。转换模型和方法可用于设计蠕变强度并在高温下预测部件的寿命。

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