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Interaction of welding residual stresses and warm pre-stressing on brittle fracture of a pipe containing an internal semi-elliptical crack

机译:焊接残余应力和热预应力在内部半椭圆形裂纹管道脆性断裂中的相互作用

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Residual stresses (RS) due to welding process, may change the load bearing capacity of cracked components. These stresses can also affect the benefit of warm pre-stressing (WPS) cycles which are used for improving structure behaviour. RS are obtained from a two-passes welding simulation of a pipe and verified by experiments. A semi-elliptical internal crack at the weld line is considered. Redistribution of RS field after introducing the crack shows a significant tensile RS are remained at the crack tip. Two common WPS cycles, load-cool-fracture (LCF) and load-unload-cool-fracture (LUCF), are applied using the model at room and low temperature subjected to axial loading. Using local approach to fracture shows that welding RS dramatically raise the fracture probability. LCF has more influence on reducing the fracture probability in comparison with LUCF. The interaction of welding RS and WPS cycles still improves the fracture properties, however, welding RS cause to decrease the benefit of WPS. Comparing RS distributions on crack-tip shows that applying WPS cause to release a significant amount of welding RS and therefore, WPS can be very useful for welded structures. The near crack-tip opening stresses at a same fracture load are further studied for all cases. (C) 2015 Elsevier Ltd. All rights reserved.
机译:焊接过程产生的残余应力(RS)可能会改变破裂部件的承载能力。这些应力也会影响用于改善结构性能的预热(WPS)循环的好处。 RS是从管道的两遍焊接模拟中获得的,并通过实验进行了验证。考虑到焊接线处的半椭圆形内部裂纹。引入裂纹后,RS场的重新分布表明,在裂纹尖端处仍保留有明显的拉伸RS。使用该模型在室温和低温下承受轴向载荷的情况下,应用了两个常见的WPS循环,即载荷-冷却-断裂(LCF)和载荷-卸载-冷却-断裂(LUCF)。使用局部断裂方法表明,焊接RS大大提高了断裂概率。与LUCF相比,LCF对降低断裂几率的影响更大。焊接RS和WPS循环的相互作用仍然可以改善断裂性能,但是,焊接RS会降低WPS的效益。比较裂纹尖端的RS分布可知,应用WPS会释放大量的焊接RS,因此WPS对于焊接结构可能非常有用。在所有情况下,都将进一步研究在相同断裂载荷下的近裂纹尖端打开应力。 (C)2015 Elsevier Ltd.保留所有权利。

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