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Failure pressure of a pressurized girth-welded super duplex stainless steel pipe in reverse osmosis desalination plants

机译:反渗透海水淡化厂加压环缝超双相不锈钢管的破坏压力

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Pressurized super duplex stainless steel grade S32750 pipe is the most important element in SWRO (Sea Water Reverse Osmosis) plants. This paper presents FE (finite element) analyses to investigate the residual stress distributions produced by the girth welding of the thin-walled super duplex stainless steel pipe and the failure pressure of the girth-welded super duplex steel pipe under internal pressure. FE simulation of the girth welding process was first performed to predict the weld-induced residual stresses employing a sequentially coupled three-dimensional (3-D) thermo-mechanical FE formulation. The residual stresses were then incorporated into the 3-D elastic-plastic FE analyses to explore the failure behavior of the girth-welded super duplex steel pipe subjected to superimposed internal pressure. GPD (Global Plastic Deformation) was used as an indicator of the failure pressure. The FE results have shown that the failure of the girth-welded thin-walled super duplex stainless steel pipe under internal pressure occurs when the effective stress approaches at a certain level which is much lower than the ultimate tensile strength and the burst pressure is weakly influenced by the weld-induced residual stresses.
机译:加压超双相不锈钢等级S32750管是SWRO(海水反渗透)工厂中最重要的元素。本文介绍了有限元分析,以研究薄壁超级双相不锈钢管的环焊产生的残余应力分布以及内部压力下环缝超级双相钢管的破坏压力。首先采用顺序耦合的三维(3-D)热机械有限元公式对环焊过程进行有限元模拟,以预测焊接引起的残余应力。然后将残余应力合并到3-D弹塑性有限元分析中,以研究承受内压叠加的环缝焊接超级双相钢管的破坏行为。 GPD(整体塑性变形)被用作破坏压力的指标。有限元分析结果表明,当有效应力达到远低于极限抗拉强度的一定水平且对破裂压力的影响较弱时,环缝薄壁超双相不锈钢管在内部压力下会发生破坏。由焊接引起的残余应力。

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