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Ultimate Strength Prediction of Steel Liners Using Nonlinear Finite Element Analysis

机译:非线性有限元分析钢结构终极强度预测

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A new steel liner installed in a prestressed concrete cylinder pipeline failed due to eccentric welds and high pressures in the line. The failure was in the form of tears trough the eccentric welds and the backing bar along the longitudinal joint at the intersection of the longitudinal and the circumferential joints. The failed liners were repaired and critical areas were reinforced using cover plates applied over the longitudinal and circumferential welds. This paper details the nonlinear finite element analyses used to predict the failure of the steel liners before and after weld repair and to determine the effect of additional reinforcement on the safety of the liner in form of local cover plates and butt-andstrap steel repair bands. 2D and 3D finite element analyses accounting for large deflection and plasticity were performed. The failure was governed by the ductile failure criterion, expressed in terms of plastic strain reaching the ultimate strain capacity of steel and the brittle failure criterion expressed in terms of triaxiality criterion. Triaxiality failure criterion is expressed in terms of a relationship between effective stress and maximum principal stress. The resulting stresses and strains were compared to the capacities of the steel in triaxial stress state to determine liner safety against brittle failure and in total plastic strain in ductile failure modes.
机译:由于偏心焊接和线路高压,安装在预应力混凝土缸管道中的新型钢结构失效。失败是泪焊的形式,沿着纵向和圆周接头处的纵向接头沿偏心焊接和背杆。使用施加在纵向和周向焊缝上的盖板加强了失效的衬垫,并加强了关键区域。本文详述了非线性有限元分析,用于预测焊接前后钢衬衬里的故障,并确定额外的增强对局部盖板和对接钢修复带的形式的衬里安全的影响。 2D和3D有限元分析算用于大偏转和可塑性。故障由延性故障标准管辖,以塑性应变达到钢的最终应变容量,并且在三轴性标准方面表达的脆性失效标准。在有效应力和最大主要压力之间的关系方面表达了三轴性故障标准。将得到的应力和菌株与三轴应力状态中钢的容量进行比较,以确定突出损失的衬垫安全性和韧性衰竭模式中的总塑性应变。

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