首页> 外文会议>ASME Pressure Vessels and Piping conference >PLASTIC LIMIT LOADS FOR SLANTED CIRCUMFERENTIAL THROUGH-WALL CRACKED PIPES BASED ON FINITE ELEMENT LIMIT ANALYSIS
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PLASTIC LIMIT LOADS FOR SLANTED CIRCUMFERENTIAL THROUGH-WALL CRACKED PIPES BASED ON FINITE ELEMENT LIMIT ANALYSIS

机译:基于有限元极限分析的塑料极限载荷倾斜圆周通壁裂纹管

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摘要

Based on detailed three-dimensional (3-D) finite element (FE) limit analyses, the plastic limit load solutions for pipes with slanted circumferential through-wall cracks (TWCs) subjected to axial tension, global bending and internal pressure are reported. The FE model and analysis procedure employed in the present numerical study were validated by comparing the present FE results with existing solutions for plastic limit loads of pipes with idealized TWCs. To quantify the effect of slanted crack on plastic limit load, the slant correction factors for calculating plastic limit loads of pipes with slanted TWCs from pipes with idealized TWCs were newly proposed via extensive 3-D FE calculations. These slant correction factors are presented in a tabulated form for practical ranges of geometry and each loading conditions. Moreover, the present FE plastic limit loads were also compared with the existing solutions of pipes with slanted TWCs. These FE plastic limit load solutions can be applied to estimate elastic-plastic fracture mechanics parameters and creep fracture mechanics parameters, such as elastic-plastic J-integral and crack opening displacement, creep C~*-integral and creep crack opening displacement, based on the reference stress concept considering more realistic crack shape.
机译:基于详细的三维(3-D)有限元(Fe)限制分析,报道了具有轴向张力,全局弯曲和内压的倾斜周向通壁裂缝(TWC)的管子的塑料极限载荷溶液。通过将现有的Fe结果与具有理想化TWC的塑料极限负载的现有解决方案进行比较,通过将现有的Fe结果进行比较,验证了本数值研究中使用的Fe模型和分析程序。为了量化倾斜裂缝对塑料极限载荷的影响,通过广泛的3-D FE计算,新提出了用于计算倾斜校正因子,用于从带有理想化TWCS的管道的管道倾斜的管道。这些倾斜校正因子以制表形式呈现,用于实际的几何形状和每个负载条件。此外,还将目前的Fe塑料极限载荷与具有倾斜TWC的管道的现有溶液进行比较。这些Fe塑料极限载荷解决方案可应用于估计弹性塑料断裂力学参数和蠕变断裂力学参数,如弹性塑料J-积分和裂缝开口位移,蠕变C〜 - *隔板和蠕变裂缝开口位移,基于考虑更现实的裂缝形状的参考应力概念。

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