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首页> 外文期刊>International Journal of Plasticity >Ratchetting of viscoplastic material with cyclic softening, part 1: experiments on modified 9Cr-1Mo steel
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Ratchetting of viscoplastic material with cyclic softening, part 1: experiments on modified 9Cr-1Mo steel

机译:循环软化粘塑性材料的棘轮破坏,第1部分:改性9Cr-1Mo钢的实验

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摘要

Uniaxial and multiaxial ratchetting tests were conducted at temperatures between 200 and 600 degreesC on modified 9Cr-1Mo steel, which exhibits both viscoplastic and cyclic softening behavior. Anomalous behavior was observed in the stress-controlled uniaxial ratchetting tests; the material exhibited outstanding ratchetting in the tensile direction under zero mean stress. Under the uniaxial conditions, the ratchetting deformation significantly depended on the loading rate and hold time in addition to parameters such as the maximum stress and stress ratio. The uniaxial ratchetting was also accelerated to a great extent when cyclic deformation was given before the ratchetting tests. Under the multiaxial conditions, the ratchetting depended on the steady stress, cyclic strain range and strain rate. The ratchetting progressed faster as the steady stress or strain range became larger, or the strain rate became smaller, as expected. Monotonic compression tests were carried out to investigate the reason for the rachetting under no mean stress. Strain range change tests were also conducted to investigate the effect of strain range on the cyclic softening behavior of the material in detail. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在改性的9Cr-1Mo钢上于200至600摄氏度的温度下进行了单轴和多轴棘轮试验,该试验显示出粘塑性和循环软化行为。在应力控制的单轴棘轮试验中观察到异常行为。在零平均应力下,该材料在拉伸方向上表现出出色的棘突。在单轴条件下,除了最大应力和应力比等参数外,棘轮形变形还显着取决于加载速率和保持时间。当在棘轮测试之前进行循环变形时,单轴棘轮跳动也大大加速。在多轴条件下,跳动取决于稳态应力,循环应变范围和应变率。如预期的那样,随着稳态应力或应变范围变大或应变率变小,棘轮动作进行得更快。进行了单调压缩试验,以研究在没有平均压力的情况下进行破坏的原因。还进行了应变范围变化测试,以详细研究应变范围对材料循环软化行为的影响。 (C)2004 Elsevier Ltd.保留所有权利。

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