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ELASTOPLASTIC ANALYSIS OF THE RESIDUAL STRESS IN CHAIN LINKS

机译:链节残余应力的弹塑性分析

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摘要

Mooring lines of offshore oil exploitation platforms consist of long lengths of steel chain links, wire ropes and other accessories. Usually, these lines are designed for an operational life of about 20 years and periodic inspections are mandatory for monitoring the structural integrity of these components. The failure of a single element in a mooring line can cause incalculable environmental damage and severe economic losses. The ocean adverse environment loading produced by the combination of the wind, waves and currents leads to a complex alternate loading that can promote fatigue and crack propagation. Residual stress plays a preponderant part in the structural integrity of a mechanical component subjected to such loading. Offshore mooring line components as chain links enter in operation with a residual stress field created by the proof test dictated by offshore standards. However, the traditional design of such mechanical components does not consider the presence of residual stress. This study concerns about predict the residual stress field present in stud and studless chain links prior to operation to compare the fatigue life predicted by the traditional design methodology with the one predicted considering the residual stresses states present before operation. Numeric simulations with an elastoplastic finite element model are used to estimate the residual stress along the chain link that are present after the proof test and before operation. The results indicate that the presence of residual stresses modify significantly the fatigue life of the component.
机译:海上石油开采平台的系泊缆包括长段的钢链节,钢丝绳和其他附件。通常,这些生产线的设计使用寿命约为20年,并且必须定期检查以监视这些组件的结构完整性。系泊缆中单个元件的故障可能导致无法估量的环境破坏和严重的经济损失。风,浪和流的组合所产生的海洋不利环境负荷导致复杂的交替负荷,从而加剧疲劳和裂纹扩展。残余应力在承受这种载荷的机械部件的结构完整性中起着主要作用。作为链节的海上系泊缆组件在运行时会产生残余应力场,该残余应力场是由海上标准规定的验证测试产生的。然而,这种机械部件的传统设计没有考虑残余应力的存在。这项研究关注预测操作前双头螺栓和无钉链节中存在的残余应力场,以将传统设计方法预测的疲劳寿命与考虑了操作前存在的残余应力状态的预测疲劳寿命进行比较。使用具有弹塑性有限元模型的数值模拟来估算在验证测试之后和操作之前沿链节的残余应力。结果表明,残余应力的存在显着改变了部件的疲劳寿命。

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