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IMPACT OF GROOVES IN HYDRAULICALLY EXPANDED TUBE-TO-TUBESHEET JOINTS

机译:凹槽在液压膨胀管与管线接头的影响

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The stress corrosion cracking of tube-to-tubesheet joints is one of the major faults causing heat exchanger failure. After the expansion process, the stresses are developed in a plastically deformed tube around the tube-to-tubesheet joint. These residual stressed joints, exposed to tube and shell side fluids, are the main crack initiation sites. Adequate contact pressure at the tube-to-tubesheet interface is required to produce a quality joint. Insufficient tube-to-tubesheet contact pressure leads to insufficient joint strength. Therefore, a study on the residual stress and contact pressure that have a great significance on the quality of the tube-to-tubesheet joint is highly demanded. In this research, a 2D axisymmetric numerical analysis is performed to study the effect of the presence of grooves in the tubesheet and the expansion pressure length on the distribution of contact pressure and stress during loading and unloading of 400 MPa expansion pressure. The results show that the maximum contact pressure is independent of the expansion pressure length. However, the presence of grooves significantly increased the maximum contact pressure. It is proven that the presence of grooves in the tubesheet is distinguishable from the maximum contact pressure and residual von mises equivalent stress. The tube pull-out strength increases with the expansion pressure and the number of grooves. In conclusion, the presence of the grooves affects the tube-to-tubesheet joints.
机译:管 - 管板关节的应力腐蚀裂缝是引起热交换器故障的主要故障之一。在膨胀过程之后,应力在管 - 管板关节周围的塑性变形管中开发。这些残留的应力关节暴露于管和壳侧流体,是主要裂纹引发位点。管 - 管板界面的足够接触压力是生产质量接头。管 - 管板接触压力不足导致关节强度不足。因此,对储存应力和接触压力有着重要意义的研究,对管 - 管板关节的质量具有重要意义。在该研究中,执行2D轴对称数值分析,以研究在装载和卸载400MPa膨胀压力期间接触压力和应力的分布上的凹槽和膨胀压力长度的效果。结果表明,最大接触压力与膨胀压力长度无关。然而,凹槽的存在显着增加了最大接触压力。据证正,管段中的凹槽的存在可与最大接触压力和残留von相当应力的残余von可区分。管拉出强度随着膨胀压力和凹槽的数量而增加。总之,凹槽的存在影响管 - 管板关节。

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