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Comparative analysis of the sin-hyperbolic and Kachano-Rabotnov creep-damage models

机译:SIN - 双曲和Kachano-Rabotnov蠕变损伤模型的比较分析

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摘要

In this study, the Sin-Hyperbolic (Sinh) and the classic Kachanov-Rabotnov (KR) creep-damage models are fit to creep data for 304 stainless steel at 600 and 700 degrees C. The ability of the models to predict minimum creep strain rate, creep deformation, damage evolution, and rupture are compared. It is shown that both models can predict the creep deformation accurately; however, the minimum creep strain rate, damage evolution, and rupture predictions of the KR model is deficient. Using the KR model, critical damage is often less than unity; a violation of continuum damage mechanics (CDM). The KR minimum creep strain rate and rupture predictions do not exhibit the sigmoidal bend on a log-log scale that is observed in experimental data. In the Sinh model, critical damage is always unity and the sigmoidal bend in the minimum creep strain rate and stress-rupture curves is present. Overall the Sinh model is more accurate.
机译:在这项研究中,SIN-Supbolic(SINH)和经典的Kachanov-Rabotnov(KR)蠕变损坏模型适合于600和700摄氏度的304不锈钢的蠕变数据。模型预测最小蠕变应变的能力 比较速率,蠕变变形,损伤和破裂。 结果表明,两种型号可以精确地预测蠕变变形; 然而,KR模型的最小蠕变应变速率,损伤演化和破裂预测是缺陷的。 使用KR模型,临界损坏通常小于Unity; 违反连续损伤力学(CDM)。 KR最小蠕变应变速率和破裂预测不会在实验数据中观察到的日志日志尺度上表现出S形弯曲。 在SINH模型中,临界损坏总是统一,存在最小蠕变应变速率和应力破裂曲线的矩形弯曲。 总体而言,SINH模型更准确。

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