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WRINKLING OF LINED STEEL PIPES UNDER BENDING

机译:弯曲时衬里钢管的皱纹

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摘要

Lined pipes are used in energy pipeline applications (oil, gas, etc.); a corrosion-resistant thin-walled liner is fitted inside a carbon-steel outer pipe. The paper focuses on wrinkling of lined pipes (sometimes also referred to as "mechanical clad" pipes), which are candidates for offshore pipeline applications. The lateral confinement of the liner pipe due to the deformable outer pipe and its interaction with the outer pipe has a decisive influence on the wrinkling behaviour of the thin-walled liner. The problem is solved numerically, using nonlinear finite elements to simulate the lined pipe and its interaction with the outer pipe. Nonlinear geometry with large strains is taken into account, and the material of both pipes is elastic-plastic. Stresses and strains are monitored throughout the deformation stage with emphasis on possible detachment of the liner from the outer pipe and the formation of wrinkles. It is shown that the behaviour is characterized by a first bifurcation in a uniform wrinkling pattern, followed by a secondary bifurcation and finally a localization of the buckled pattern. The values of curvature at which liner wrinkling occurs are determined. The numerical results are compared with available experimental results.
机译:衬里管道用于能源管道应用(石油,天然气等);碳钢外管内部装有耐腐蚀的薄壁衬管。本文重点研究衬里管道(有时也称为“机械复合”管道)起皱的问题,这些管道是海上管道应用的候选对象。由于可变形的外管及其与外管的相互作用而导致的衬管的横向约束对薄壁衬管的起皱行为具有决定性的影响。使用非线性有限元模拟衬砌管道及其与外部管道的相互作用,以数值方式解决了该问题。考虑到具有大应变的非线性几何形状,并且两个管道的材料都是弹塑性的。在变形的整个阶段都对应力和应变进行监控,重点是衬套可能从外管上脱落以及形成褶皱。结果表明,这种行为的特征是:首先以均匀的皱纹形式出现分叉,然后是第二次分叉,最后是弯曲图案的局部化。确定发生衬里起皱的曲率值。将数值结果与可用的实验结果进行比较。

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