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首页> 外文期刊>Journal of Materials Engineering and Performance >Viscoplastic Ratcheting Response of Materials under Step-Loading Conditions at Various Cyclic Stress Levels
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Viscoplastic Ratcheting Response of Materials under Step-Loading Conditions at Various Cyclic Stress Levels

机译:在各种循环应力水平下踩踏条件下材料的粘液棘轮响应

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摘要

The present study intends to assess ratcheting response of rate-dependent SS316L, SS316L(N), and 63Sn37Pb alloys under various step-loading conditions at room temperature through use of the Ahmadzadeh-Varvani (A-V) model developed based on a viscoplastic flow rule. The choice of viscoplastic description enabled the model to control plastic strain increments over loading progress at various stress rates. Predicted ratcheting over asymmetric loading cycles and multi-step cycles was influenced by cyclic stress levels, stress rates, and sequence of loading steps. Predicted ratcheting in steel samples SS316L and SS316L(N) over the second loading step in Low-High and High-Low loading sequences was primarily influenced with the stress amplitude in the second step. Multi-step-loading sequences High-Low-High and Low-High-Low in solder samples revealed how noticeable the impact of mean stress on ratcheting is. Predicted ratcheting values by means of the A-V model closely agreed with experimental data of alloys examined in this study.
机译:本研究旨在通过使用基于粘胶塑造规则开发的AHMADZADEH-VARVANI(A-V)模型来评估率依赖性SS316L,SS316L(N)和63Sn37PB合金的棘轮响应。粘液描述的选择使模型控制塑性应变增量在各种应力​​速率下加载进度。预测不对称加载循环和多步循环的棘轮受循环应力水平,应力速率和装载步骤的序列影响。在低高和高负载序列中的第二加载步骤中预测在钢中的棘轮SS316L和SS316L(N)主要受到第二步中的应力幅度的影响。多层加载序列在焊料样本中高低高低,低低低,透露了如何明显的平均压力对棘轮的影响。通过对本研究中检查的合金的实验数据密切一致的A-V模型预测的棘轮值。

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