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Ratcheting assessment in the tubesheets of heat exchangers using the nonlinear isotropic/kinematic hardening model

机译:使用非线性各向同性/运动型硬化模型在热交换器管板中进行棘轮评估

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In this paper, the ratcheting phenomena in the tubesheet of a heat exchanger, which made of modified 9Cr-1Mo steel, has been investigated. The nonlinear isotropic/kinematic hardening model (combined model) is used to investigate the progressive strains due to the cyclic pressure and temperature loading. Therefore, three series of tests were carried out at different temperatures (room temperature, 300 degrees C, 520 degrees C) to gain stable hysteresis cycles and to obtain the hardening parameters of the desired material. Via least-squares nonlinear regression, the constitutive coefficients are obtained. In addition the effect of tube number on the progressive strains has been investigated. Therefore, three models of tubesheets with different tube numbers are considered. The results show that the progressive strains initially are significant at each cycle and gradually decrease from their initial amount, they reach a stable state, as the number of the tubes increases, and the more progressive strain accumulates.
机译:本文研究了由改性的9Cr-1Mo钢制成的热交换器的管板中的棘轮现象。非线性各向同性/运动学硬化模型(组合模型)用于研究由于循环压力和温度负载引起的渐进菌株。因此,在不同温度(室温,300摄氏度,520℃)下进行三系列测试以获得稳定的滞后循环并获得所需材料的硬化参数。通过最小二乘非线性回归,获得本构系。此外,还研究了管数对渐进菌株的影响。因此,考虑了三种具有不同管数的管别模型。结果表明,随着管的数量增加,它们逐渐从初始量逐渐减小,逐渐减小,随着管的数量增加,逐渐减小,并且随着管的数量增加,并且越来越逐渐累积。

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