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The effect of welding residual stresses on brittle fracture in an internal surface cracked pipe

机译:焊接残余应力对内表面裂纹管脆性断裂的影响

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The change in brittle fracture properties due to the presence of welding residual stresses (RS) is studied in a pipe. Welding RS are simulated by using a 3-D finite element (FE) model and experimentally verified. An internal circumferential thumbnail crack is introduced at the weld line. The modified Beremin model is used as local approach method to predict toughness distributions in the presence of welding RS. The model is calibrated using experimental fracture tests at -150 degrees C consisting of low and high constraint specimens. The results indicate that, in the welded pipe, the fracture toughness will decrease dramatically in comparison with the as-received pipe. For the same fracture probability of 90%, fracture toughness will decrease from 65 to 40 MPa root m. This is due to the influence of tensile welding RS on the crack tip stress state, which result in a decrease in the opening mode stresses at the near crack tip up to 40%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在管道中研究了由于存在焊接残余应力(RS)而导致的脆性断裂性能的变化。焊接RS通过使用3-D有限元(FE)模型进行仿真,并进行了实验验证。在焊接线上引入了内部圆周缩略图裂缝。修改后的Beremin模型用作局部方法,以预测存在焊接RS时的韧性分布。通过在-150摄氏度下由低和高约束试样组成的实验性断裂试验对模型进行校准。结果表明,与原样相比,焊接管的断裂韧性将大大降低。对于相同的90%断裂概率,断裂韧性将从65根m降低到40 MPa。这是由于拉伸焊接RS对裂纹尖端应力状态的影响,导致裂纹尖端附近的开模应力降低了40%。 (C)2015 Elsevier Ltd.保留所有权利。

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