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A continuum damage mechanics (CDM) based Wilshire model for creep deformation, damage, and rupture prediction

机译:基于连续伤害力学(CDM)的蠕变变形,损坏和破裂预测的WILSHIRE模型

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摘要

In this study, a new constitutive model is derived that combines the Wilshire equations with continuum damage mechanics (CDM) to enable the long-term prediction of creep deformation, damage, and rupture. The Wilshire equations have been demonstrated to accurately extrapolate the stress-rupture, minimum-creep-strain-rate, and time-to-strain of various alloys across decade of life. Recently, the time-to-creep-strain equation has been rearranged to predict creep deformation curves; however, the resulting equation is difficult to calibrate and does not track damage. The CDM-based Sinh constitutive model accurately predicts creep deformation, damage, and stress-rupture for a variety of alloys; however, it lacks an explicit description of stress and temperature co-dependence which limits interpolation and extrapolation ability. In this study, the Wilshire and the CDM-based Sinh equations are combined to create the "WCS" model. The WCS model combines the best features of each model while eliminating their deficiencies. Experimental data for alloy P91 is gathered and the WCS model is calibrated to the data. The WCS model accurately predicts the stress rupture, minimum-creep-strain-rate, creep deformation, and damage of alloy P91 across the experimental stress and temperature range as well as consistency in parametric simulations.
机译:在该研究中,推导了一种新的本结构型模型,其将Wilshire方程与连续损伤力学(CDM)结合起来,以使得能够长期预测蠕变变形,损坏和破裂。已经证明了Wilshire方程,以准确地推断出跨生命十年的各种合金的应力破裂,最小蠕变 - 应变率和株的时间。最近,重新排列了蠕变 - 应变方程以预测蠕变变形曲线;然而,所得到的方程难以校准并且不追踪损坏。基于CDM的SINH本构模型精确地预测各种合金的蠕变变形,损伤和应力破裂;然而,它缺乏显着描述压力和温度共同依赖性,这限制了插值和外推能力。在本研究中,组合WILSHIRE和基于CDM的SINH方程以创建“WCS”模型。 WCS模型结合了每个模型的最佳功能,同时消除了它们的缺陷。收集合金P91的实验数据,WCS模型被校准到数据。 WCS模型精确地预测了实验应力和温度范围内的应力破裂,最小蠕变 - 应变速率,蠕变变形和合金P91的损坏以及参数模拟中的一致性。

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