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Inelastic Constitutive Equations for Modified 9Cr-1Mo Steel under Nonisothermal Cyclic Deformation Conditions (2nd Report, Extension of Unified Constitutive Model Incorporating Dynamic Strain Aging Effect and its Simulations)

机译:非等温循环变形条件下改性9Cr-1Mo钢的非弹性本构方程(第二次报告,结合了动态应变时效的统一本构模型的扩展及其模拟)

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摘要

Based on inelastic behavior of modified 9 Cr-1 Mo steel described in the first report, the unified constitutive model proposed by the authors was extended for cyclic deformations, including nonisoth- ermal conditions. In the constitutive model, cyclic softening behavior was expressed by decreasing an asymptotic value of back stress with accumulation of inelastic strain. Most of the constants in the constitutive model were determined as a function of the temperature in order to calculate stress- strain relationships under nonisothermal conditions. To evaluate the validity of the constitutive model, it was applied to analysis of inelastic behavior under mononotic tension, stress relaxation, creep, isothermal cyclic deformations including stress relaxation and nonisothermal cyclic deforma- tions. It was found that the present constitutive model was successful in describing the inelastic behavior of the steel adequately.
机译:基于第一份报告中所述的改性9 Cr-1 Mo钢的非弹性行为,扩展了作者提出的统一本构模型以应对包括非等温条件在内的循环变形。在本构模型中,通过减小背应力的渐近值和非弹性应变的积累来表达循环软化行为。确定本构模型中的大多数常数作为温度的函数,以便计算非等温条件下的应力-应变关系。为了评估本构模型的有效性,将其用于分析单向张力,应力松弛,蠕变,等温循环变形(包括应力松弛和非等温循环变形)下的非弹性行为。发现本构模型成功地描述了钢的非弹性行为。

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