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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >An engineering approach for design and analysis of metallic pipe joints under torsion by the finite element method
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An engineering approach for design and analysis of metallic pipe joints under torsion by the finite element method

机译:有限元法扭转作用下金属管接头设计与分析的工程方法

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摘要

Design and stress analysis of pipe joints are still matters of controversy with respect to a unified design approach, despite the fact that many exact and finite element solutions have been presented in the literature. Owing to the complicated and lengthy nature of most exact solutions, development of an applied method for optimized design and stress analysis of a strong and low-cost joint remains a pressing issue. In this work, a simple method was developed for assessing the behaviour of adhesively bonded tubular joints under torsion, based on a parametric study conducted by ABAQUS finite element software. Many case studies of typical metallic joints under torsion were considered for examining the interactions among the main parameters governing the joint performance (i.e. adhesive thickness, pipe and coupling thickness/diameter, joint length, and material properties). Finally, a prototypical joint was designed by using the developed design curves, and the stress distributions were verified by the same software.
机译:尽管在文献中已经提出了许多精确和有限元的解决方案,但是关于统一设计方法,管接头的设计和应力分析仍然是有争议的问题。由于大多数精确解决方案的复杂和冗长的性质,开发一种用于优化设计和坚固且低成本接头的应力分析的应用方法仍然是一个紧迫的问题。在这项工作中,基于由ABAQUS有限元软件进行的参数研究,开发了一种简单的方法来评估胶粘管状接头在扭转下的行为。考虑了许多典型的受扭金属接头的案例研究,以检查控制接头性能的主要参数(即粘合剂厚度,管道和接头厚度/直径,接头长度和材料性能)之间的相互作用。最后,使用开发的设计曲线设计了原型关节,并使用相同的软件验证了应力分布。

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