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Ratcheting assessment of steel alloys under step-loading conditions

机译:逐步加载条件下钢合金的棘轮评估

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The present study examines the capability of a recently modified hardening rule to characterize ratcheting response of materials subjected to multi-step uniaxial stress cycles. The modified hardening rule was developed based on Armstrong-Frederick (A-F) hardening rule through implementing new ratcheting rate dependent coefficients γ_2 and S. These coefficients were estimated by means of calibrated curves for any given stress levels defined from the uniaxial single-step ratcheting response at various cyclic stress levels. At a constant mean stress, ratcheting strain progressively increased as stress amplitude over steps of loading history increased. Similar response was also evident for step-loading with constant stress amplitude while the values of mean stress increased. For high-low histories, the trend of predicted ratcheting strain from higher to lower magnitudes found agreeable with that of experimental data. The discrepancy of the predicted and experimentally ratcheting strain values in the high-low step loading however was due to constancy in the shape and size of translating yield surface in the modified kinematic hardening rule. The modified hardening rule was employed to assess ratcheting response of SS316L, SA333, SS316L(N) and 1070 steel alloys under various step-loading conditions. Predicted ratcheting data at various stress level were found in good agreements as compared with the experimental ratcheting strains.
机译:本研究检查了最近修改的硬化规则表征材料经受多步单轴应力循环的棘轮响应的能力。通过实施新的棘轮速率相关系数γ_2和S,基于Armstrong-Frederick(AF)硬化规则开发了修改后的硬化规则。对于单轴单步棘轮响应定义的任何给定应力水平,这些系数都是通过校准曲线估算的在各种循环应力水平下。在恒定的平均应力下,棘轮应变随着加载过程中应力幅度的增加而逐渐增加。对于具有恒定应力幅度的阶跃载荷,而平均应力值却增加了,相似的响应也很明显。对于高-低的历史,发现棘轮应变从较高到较低的趋势与实验数据一致。然而,在高-低阶跃荷载中,预测的和实验棘轮应变值的差异是由于修正的运动硬化规则中平移屈服面的形状和尺寸的恒定性所致。修改后的硬化规则用于评估在不同阶跃载荷条件下SS316L,SA333,SS316L(N)和1070钢合金的棘轮响应。与实验棘轮应变相比,在各种应力​​水平下的预测棘轮数据均吻合良好。

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