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Analysis of circular cross-section element, loaded by static and cyclic elastic-plastic pure bending

机译:静态和循环弹塑性纯弯曲加载的圆形截面单元的分析

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Data of theoretical and experimental investigation of a circular cross-section element subjected to monotonic and cyclic elastic-plastic pure bending is presented in the paper. Linear approximation of monotonic and cyclic tension-compression curves was applied, what allowed to simplify analysis and to obtain satisfactory conformance of theoretical data with experimental results. Grade 45 structural steel specimens were subjected to low cycle stress or strain-controlled reversed tension-compression and cyclic pure bending. In case of strain-controlled loading low cycle fatigue life curves for both loading models (tension-compression and bending) coincide. In case of stress-controlled bending elastically deformed internal fibers of the element impede the plastic-strain accumulation in the external fibers, and in such a way decrease the quasi-static damage accumulation, and increase the lifetime. In this research specimens lifetime was calculated by use of fatigue damage fraction and quasi-static damage fraction summation rule. The damage calculations allowed to establish the increase of fatigue life at stress-controlled low cycle bending.
机译:本文给出了圆形截面单元在单调和循环弹塑性纯弯曲作用下的理论和实验研究数据。应用了单调和循环拉伸-压缩曲线的线性近似,可以简化分析并获得理论数据与实验结果的令人满意的一致性。对45级结构钢试样进行低周应力或应变控制的反向拉伸压缩和循环纯弯曲。在应变控制的加载情况下,两种加载模型(拉伸-压缩和弯曲)的低周疲劳寿命曲线重合。在受应力控制的弯曲的情况下,该元件的内部纤维发生弹性变形,从而阻碍了外部纤维中的塑性应变累积,从而降低了准静态损伤累积,并延长了使用寿命。在这项研究中,通过使用疲劳损伤分数和准静态损伤分数求和规则来计算样品的寿命。损伤计算可以确定在受应力控制的低周弯时疲劳寿命的增加。

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