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首页> 外文期刊>World Journal of Mechanics >The Ratcheting Behaviour of Plain Carbon Steel Pressurized Piping Elbows Subjected to Simulated Seismic In-Plane Bending
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The Ratcheting Behaviour of Plain Carbon Steel Pressurized Piping Elbows Subjected to Simulated Seismic In-Plane Bending

机译:模拟地震平面弯曲下碳素钢加压管道弯头的棘轮行为

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In this paper, cyclic loading behavior of carbon steel pressurized piping elbows are described. Effects of internal pressure and bending moment amplitude on the ratcheting rate are investigated. The AF kinematic hardening model is used to predict the plastic behavior of the elbows. Material parameters and stress-strain data have been obtained from several stabilized cycles of specimens that are subjected to symmetric strain cycles. The results show that the maximum ratcheting strain occurred mainly in the hoop direction at flanks. Hoop strain ratcheting was found at intrados for individual specimen. Ratcheting strain rate increases with increase of the bending loading level at the constant internal pressure. The results show that the initial rate of ratcheting is large and then it decreases with the increasing cycles. The FE model predicts the hoop strain ratcheting rate to be near that found experimentally in all cases that M/Ml≤1..
机译:本文描述了碳钢加压管道弯头的循环载荷行为。研究了内部压力和弯矩幅度对棘轮速率的影响。 AF运动硬化模型用于预测肘部的塑性行为。材料参数和应力-应变数据已经从经受对称应变循环的几个稳定样本周期中获得。结果表明,最大棘轮应变主要发生在侧翼的环向。在每个样品的内部都发现箍应变棘轮。在恒定内压下,棘轮应变率随弯曲载荷水平的增加而增加。结果表明,棘轮的初始速率较大,然后随着周期的增加而降低。 FE模型预测在所有情况下M / Ml≤1时,环向应变的棘轮速率都接近于实验得出的结果。

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