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Plastic limit load of Grade 91 steel pipe containing local wall thinning defect at high temperature

机译:高温局部壁薄缺陷的91级钢管塑性极限载荷

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This paper aims to predict the plastic limit load of Grade 91 pipe at high temperature by experimental and numerical analysis methods. The elastic-plastic constitutive relation of P91 considering creep damage at high temperature is proposed and the effectiveness is verified by high-temperature instantaneous tensile test after creep of P91 sample. Then, using the elastic-plastic constitutive relation considering creep damage, the plastic limit loads of P91 pipe containing local wall thinning (LWT) defect at high temperature have been calculated by finite element (FE) method and the accuracy is checked by high-temperature burst experiment after creep of T91 pipe containing LWT. Finally, the fracture analysis and metallographic analysis of Grade 91 sample and pipe containing LWT defect are performed. The results show that the elastic-plastic constitutive relation of P91 considering creep damage proposed by this paper can well describe the elastic-plastic behavior of P91 under creep condition and is useful to calculate the plastic limit load of P91 pipe containing LWT. The failures of P91 tensile samples and T91 pipes containing LWT defect are both plastic fracture. This research would provide an optional method for structure integrity analysis of the pipe containing LWT defect at high temperature. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文旨在通过实验和数值分析方法来预测91级管道在高温下的塑性极限载荷。提出了考虑高温蠕变损伤的P91弹塑性本构关系,并通过P91试样蠕变后的高温瞬时拉伸试验验证了其有效性。然后,使用考虑蠕变损伤的弹塑性本构关系,通过有限元(FE)方法计算出包含高温局部壁薄(LWT)缺陷的P91管的塑性极限载荷,并通过高温检查精度。 T91含轻水管蠕变蠕变后的爆破实验。最后,对91级试样和含轻水缺陷的管材进行了断裂分析和金相分析。结果表明,本文提出的考虑蠕变损伤的P91弹塑性本构关系可以很好地描述P91在蠕变条件下的弹塑性行为,对于计算含LWT的P91管的塑性极限载荷是有用的。 P91拉伸样品的失效和T91管道的轻载缺陷均属于塑性断裂。这项研究将为高温下含有LWT缺陷的管道的结构完整性分析提供一种可选方法。 (C)2015 Elsevier Ltd.保留所有权利。

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