首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >LIMIT LOAD ANALYSIS OF AS-FABRICATED PIPE BENDS WITH LOW OVALITY UNDER IN-PLANE CLOSING MOMENT LOADING AND INTERNAL PRESSURE
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LIMIT LOAD ANALYSIS OF AS-FABRICATED PIPE BENDS WITH LOW OVALITY UNDER IN-PLANE CLOSING MOMENT LOADING AND INTERNAL PRESSURE

机译:在平面内闭合力矩加载和内部压力下,限制用低椭圆度的制造管弯曲的负荷分析

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Pipe bends are critical components in piping systems where their failure modes are quite different from straight pipes. The objective of the present work is to investigate the limit loads of pipe bends with actual As-fabricated shape obtained from pipe bending process as compared to bends with Ideal and Assumed imperfect shapes. The present work is conducted by using nonlinear finite element analysis and is performed in two steps. The first step is achieved by simulating rotary pipe bending process with ball mandrel to obtain the actual as-fabricated shape of the 90° pipe bend. The process simulation was verified against published experimental data. In the second step, the pipe bend is subjected to different combinations of simultaneous loads consisting of internal pressure and In-plane closing bending moment. Results are provided for limit load curves for pipe bends with as-fabricated geometries and bends with ideal shape and assumed geometrical imperfections.
机译:管道弯曲是管道系统中的关键部件,其中失效模式与直管完全不同。本作工作的目的是研究管道弯曲的极限载荷,与管弯曲过程中获得的实际制造的形状相比,与具有理想和假设的不完美形状的弯曲相比。通过使用非线性有限元分析进行本作本作,以两步进行。第一步是通过模拟带有球心轴的旋转管弯曲过程来实现的,以获得90°管弯的实际制造形状。对已发布的实验数据验证了过程模拟。在第二步中,管弯经受由内部压力和面内闭合弯矩组成的同时载荷的不同组合。提供了用于管道弯曲的限制载荷曲线,具有由制造的几何形状和弯曲,具有理想的形状和假设几何缺陷。

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