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On the development of creep damage constitutive equations: modified hyperbolic sine law for minimum creep strain rate and stress and creep fracture criterion based on cavity area fraction along grainudboundaries

机译:关于蠕变损伤本构方程的发展:基于沿着腔面积分数的最小蠕变应变率和应力及蠕变断裂准则的修正双曲正弦定律边界

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摘要

Abstract: This paper reports 1) the latest development and application of modified hyperbolic sine law for minimum creep strain rate and stress for both low Cr and high Cr steels, and 2) the development of creep fracture criterion based on cavity area fraction along grain boundary for high Cr steel. This work is part of the fundamental development of creep damage constitutive equations which were identified through a critical literature review.udIn the former the application of the new law results in an improved fitting; in the latter, a new creep fracture criterion based on cavity area fraction along grain boundary was derived and quantitatively calibrated using the latest detailed cavity nucleation and growth kinetics models for high Cr steel. Furthermore, thisudpaper revealed the trend of nucleation rate coefficient with stress, and the trend of creep life time coefficient with stress, which provide reliable and universal prediction capabilities.udThis paper contributes to the specific knowledge on the minimum creep strain rate and stress function, the development of a scientific sound and novel creep rupture criterion based on the cavity area fraction along grain boundary for high Cr steel, and the provision of creep damage/life prediction tools.
机译:摘要:本文报道1)改进的双曲正弦定律在低Cr和高Cr钢的最小蠕变应变率和应力方面的最新发展和应用,以及2)基于沿晶界的腔面积分数的蠕变断裂准则的发展用于高铬钢。这项工作是蠕变损伤本构方程基本发展的一部分,该方程通过重要的文献综述得到了确认。 ud在前者中,新法的应用导致了改进的拟合;在后者中,基于最新的详细的腔室成核和生长动力学模型,导出了基于沿晶界的腔体面积分数的新的蠕变断裂准则,并对其进行了定量校准。此外,本文还揭示了成核速率系数随应力的变化趋势,以及蠕变寿命系数随应力的变化趋势,从而提供了可靠且通用的预测能力。 ud本文对最小蠕变应变率和应力的具体知识做出了贡献。功能,基于高Cr钢沿晶界的空洞面积分数,开发科学合理的新型蠕变断裂准则,并提供蠕变损伤/寿命预测工具。

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