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INCLUSION OF TORSION WITH BENDING AND PRESSURE LOADS FOR PIPES WITH THIN-WALL REGIONS

机译:薄壁区域管道的弯曲与弯曲载荷和压力载荷的夹杂

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Piping installations may experience local wall thinning under predominant pressure and bending loading with a small amount of torsion loading. Assessment of the remaining pipe integrity must account for all loads and can benefit from resolving the multiaxial loads into an equivalent load. This paper presents results of the finite element analyses of straight pipes containing non-planar flaws (i.e. local wall thinning areas) subject to combination of pressure, bending and torsion. The pressure is 8 MPa and the torsion stresses are limited to 20% of the material's flow stress. Flaws are introduced into a 4 inch OD pipe with an R/t of 6.64 and 9.36. The incipient plastic collapse moment at a given torsion moment is determined and compared with the plastic collapse moment of the pure bending case. The results show that for flaws with a depth less than 60% of the nominal pipe wall thickness the bending and torsion moments can be combined into an equivalent moment by vector summation (the Root of the Sum of Squares approach). For deeper flaws the effect of pipe and flaw geometry is observed.
机译:管道安装可能会在主要压力和弯曲载荷以及少量扭转载荷的作用下局部变薄。对剩余管道完整性的评估必须考虑所有载荷,并且可以通过将多轴载荷分解为等效载荷而受益。本文介绍了受压力,弯曲和扭转作用的包含非平面缺陷(即局部壁薄区域)的直管的有限元分析结果。压力为8 MPa,扭转应力限制为材料流动应力的20%。将缺陷引入R / t为6.64和9.36的4英寸OD管中。确定在给定扭转力矩下的初期塑性破坏力矩,并将其与纯弯曲壳体的塑性破坏力矩进行比较。结果表明,对于深度小于标称管壁厚度的60%的缺陷,可以通过矢量求和将弯矩和扭转力矩合并为等效力矩(平方根法)。对于更深的缺陷,可以观察到管道和缺陷几何形状的影响。

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