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首页> 外文期刊>International Journal of Damage Mechanics >Strain and Damage-Based Analytical Methods to Determine the Kachanov-Rabotnov Tertiary Creep-Damage Constants
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Strain and Damage-Based Analytical Methods to Determine the Kachanov-Rabotnov Tertiary Creep-Damage Constants

机译:确定Kachanov-Rabotnov第三蠕变损伤常数的基于应变和损伤的分析方法

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摘要

In the power generation industry, the goal of increased gas turbine efficiency has led to increased operating temperatures and pressures necessitating nickel-base superalloy components. Under these conditions, the tertiary creep regime can become the dominant form of creep deformation. In response, the classical Kachanov-Rabotnov coupled creep-damage constitutive model is often used to predict the creep deformation and damage of Ni-base superalloys. In this model, the secondary creep behavior can be determined through analytical methods while the tertiary creep behavior is often found using trial and error or numerical optimization. Trial and error may produce no constants. Numerical optimization can be computationally expensive. In this study, a strain-based and damage-based approach to determine the tertiary creep behavior of nickel-base superalloys has been developed. Analytically determined constants are found for a given nickel-base superalloy. Creep deformation and damage evolution curves are compared. Methods to deal with stress dependence are introduced and studied.
机译:在发电行业中,提高燃气轮机效率的目标已导致工作温度和压力升高,因此需要镍基高温合金组件。在这些条件下,第三蠕变状态可以成为蠕变变形的主要形式。作为响应,经典的Kachanov-Rabotnov耦合蠕变-损伤本构模型通常用于预测Ni基高温合金的蠕变变形和损伤。在该模型中,次级蠕变行为可以通过分析方法确定,而三次蠕变行为通常是通过反复试验或数值优化发现的。反复试验可能不会产生常数。数值优化在计算上可能会很昂贵。在这项研究中,已开发出一种基于应变和基于损伤的方法来确定镍基高温合金的三次蠕变行为。对于给定的镍基高温合金,可以找到分析确定的常数。比较蠕变变形和损伤演化曲线。介绍并研究了应对压力依赖性的方法。

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