首页> 外文会议>International Symposium on Structural Integrity >Weld Residual Stress in Tube to Tube Sheet Joints of a Heat Exchanger by Experimental and Finite Element Simulation
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Weld Residual Stress in Tube to Tube Sheet Joints of a Heat Exchanger by Experimental and Finite Element Simulation

机译:通过实验性和有限元模拟焊接管纸张与热交换器管接头的残余应力

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摘要

Shell-and-tube heat exchangers are widely used in petrol and petro-chemical industries. But weld residual stresses are generated in the tube-to-tube sheet joint and have a great effect on stress corrosion cracking. Therefore, a good prediction and an efficient evaluation of the weld residual stress are necessary to assure the structure integrity. In this work, X-ray diffraction measurement and finite element method have been used to study the residual stress distribution. The results show that the large tensile residual stresses, which have exceeded the yield stress, are generated in the tube to tube sheet joints, leading that the joints become the weakest parts of the heat exchanger. In the central surface part, a wave shape stress distribution is generated along the centerline of tube 1 and tube 3.
机译:壳管热交换器广泛用于汽油和石化工业。 但焊接残余应力在管 - 管板接头中产生,对应力腐蚀裂缝具有很大的效果。 因此,需要良好的预测和对焊接残余应力的有效评估来确保结构完整性。 在这项工作中,已经使用X射线衍射测量和有限元方法来研究残留应力分布。 结果表明,超过屈服应力的大拉伸残余应力在管中产生到管纸张接头中,导致接头成为热交换器的最薄膜。 在中央表面部分中,沿管1和管3的中心线产生波形应力分布。

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