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Estimation of Elastic-Plastic Behavior at Notches under Uniaxial Cyclic Loading

机译:单轴环状载荷下凹口弹性塑性行为的估算

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An accurate prediction of elasto-plastic cyclic deformation becomes extremely important in design optimization. It also leads to more accurate fatigue life prediction and hence weight savings. In paper presents a two-stage notch root prediction method. This is based on a correction expression to Neuber's rule notch strain amplitude as the first stage, and a linear interpolation scheme as the second stage. The accuracy of this method is assessed by comparing the predicted results with the results obtained from elasto-plastic finite element analysis. Various types of steels with different yield strengths were used in this study. Notch deformation behavior under cyclic variable amplitude loading conditions was monitored for a double notched flat plate and a circumference notched round bar to cover plain stress and plain strain conditions. Elastic as well as elasto-plastic finite element analyses are performed. Notch strain amplitudes in addition to fatigue life predictions obtained using the proposed method are in a good agreement with the elasto-plastic finite element analysis when compared to predictions obtained using Neuber's rule.
机译:精确预测弹性塑料循环变形在设计优化方面变得非常重要。它还导致更准确的疲劳寿命预测,从而节省了重量。在纸上提出了一种两级陷波根预测方法。这是基于作为第一阶段的Neuber规则Notch应变幅度的校正表达,以及作为第二阶段的线性插值方案。通过将预测结果与从弹塑性有限元分析中获得的结果进行比较来评估该方法的准确性。本研究使用了各种类型的产量强度的钢。监测循环可变幅度负载条件下的Notch变形行为,用于双缺口平板和圆周切口圆形杆,以覆盖普通应力和普通应变条件。进行弹性以及弹性塑料有限元分析。除了使用Nuuber规则获得的预测相比,使用所提出的方法获得的疲劳寿命预测之外,还与弹性塑料有限元分析良好。

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