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Limit load analysis of thin-walled as-fabricated pipe bends with low ovality under in-plane moment loading and internal pressure

机译:平面内弯矩载荷和内压作用下低椭圆度薄壁预制弯管的极限载荷分析

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The fabrication of pipe bends using rotary pipe bending (RPB) process results in geometrical imperfections as described by cross-sectional ovality and wall thickness variations which affect the pipe bends performance during service. Previous studies whether ignores these imperfections (Ideal pipe bend (IB)) or assume these imperfections in their analysis (Assumed shape bend (AS)). The objective of the present work is to investigate, using non-linear finite element analysis, the effect of the residual stresses and the presence of the inherited geometrical imperfections (low ovality) obtained from RPB process of 90 degrees pipe bends on their load carrying capacities as compared with the IB and AS models. RPB process with basic tooling configuration is first simulated to obtain the as-fabricated 90 degrees pipe bend. The results of this step were verified against published experimental results and analytical solutions, and compensated for springback. The pipe bend was then subjected to different combinations of loads (in-plane moment and internal pressure) to construct a comparative limit load diagram. Within the scope of our study, results have shown that the presence of the residual stresses remarkably reduces the pipe bend load-carrying capacity. IB model results in non-conservative results as geometrical imperfections lower the load carrying capacity of the pipe bend, while the AS model has been found to be invalid for cases where a mandrel is used in RPB process.
机译:使用旋转弯管(RPB)工艺制造弯管会导致几何缺陷,如截面椭圆度和壁厚变化所描述的那样,这些缺陷会影响维修期间的弯管性能。先前的研究是忽略这些缺陷(理想的弯管(IB))还是在分析中假设这些缺陷(假定的形状弯曲(AS))。本工作的目的是使用非线性有限元分析来研究残余应力的影响以及从90度弯管的RPB过程获得的遗传几何缺陷(低椭圆度)的存在对它们的承载能力的影响。与IB和AS模型相比。首先模拟具有基本工具配置的RPB工艺,以得到加工后的90度弯管。已针对已发表的实验结果和分析解决方案验证了此步骤的结果,并补偿了回弹。然后对弯管施加不同的载荷组合(平面力矩和内部压力)以构建比较极限载荷图。在我们的研究范围内,结果表明,残余应力的存在显着降低了弯管的承载能力。 IB模型导致非保守结果,因为几何缺陷会降低弯管的承载能力,而AS模型对于在RPB过程中使用心轴的情况无效。

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