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Failure pressure of straight pipe with wall thinning under internal pressure

机译:内压下壁变薄的直管的破坏压力

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The failure pressure of pipe with wall thinning was investigated by using three-dimensional elastic-plastic finite element analyses (FEA). With careful modeling of the pipe and flaw geometry in addition to a proper stress-strain relation of the material, FEA could estimate the precise burst pressure obtained by the tests. FEA was conducted by assuming three kinds of materials: line pipe steel, carbon steel, and stainless steel. The failure pressure obtained using line pipe steel was the lowest under the same flaw size condition, when the failure pressure was normalized by the value of unflawed pipe defined using the flow stress. On the other hand, when the failure pressure was normalized by the results of FEA obtained for unflawed pipe under various flaw and pipe configurations, the failure pressures of carbon steel and line pipe steel were almost the same and lower than that of stainless steel. This suggests that the existing assessment criteria developed for line pipe steel can be applied to make a conservative assessment of carbon steel and stainless steel.
机译:采用三维弹塑性有限元分析方法,研究了薄壁管材的破坏压力。通过对管道和缺陷几何形状进行仔细建模,再加上适当的材料应力-应变关系,FEA可以估计通过测试获得的精确爆破压力。有限元分析是通过假设三种材料进行的:管线管钢,碳素钢和不锈钢。当通过使用流应力定义的无缺陷管的值对失效压力进行归一化时,在相同缺陷尺寸条件下,使用管线管钢获得的失效压力最低。另一方面,当通过在各种缺陷和管道结构下对无瑕疵管的有限元分析结果对失效压力进行归一化时,碳钢和管线管钢的失效压力几乎相同,并且低于不锈钢。这表明,为管线钢开发的现有评估标准可用于对碳素钢和不锈钢进行保守评估。

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