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换热器管板胀接接头开槽结构的模拟与试验研究

Simulation and experimental study on slotted structure of tubesheet expansion joint of heat exchanger

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【作者】 朱振华孟德志张为刘利强

【Author】 ZHU Zhenhua;MENG Dezhi;ZHANG Wei;LIU Liqiang;School of Mechanical and Electrical Engineering, Changchun University of Science and Technology;

【机构】 长春理工大学机电工程学院

【摘要】 为增强换热器管板胀接接头在常温下的抗拉强度,通过有限元分析和试验验证,开发一种具有阶梯型开槽结构的管板接头。建立不开槽、标准开槽和阶梯开槽的三种胀接接头的理论分析模型,利用弹塑性理论进行胀接过程和接头拉脱过程的有限元模拟,探究不同开槽形式的胀接接头处的拉脱破坏形式,并且对三种胀接接头开展常温下的拉脱试验,得出不同开槽形式的胀接接头的拉脱力。结果表明:开槽结构的胀接接头的拉脱力明显高于不开槽结构的胀接接头,并且阶梯槽胀接接头的拉脱力最大。阶梯槽胀接接头在拉脱过程中会出现“驼峰形”的陡坡,拉脱难度更大。胀接接头在开槽位置形成多条较宽的高应力残存环带,这些高应力残存环带是保证开槽接头密封性和抗拉脱力的关键因素。

【Abstract】 In order to enhance the tensile strength of tubesheet expansion joint of heat exchanger at room temperature, a tubesheet joint with stepped slotted structure was developed through finite element analysis and experimental verification. The theoretical analysis models of three kinds of expansion joints without slotting,standard slotting and stepped slotting are created. The finite element simulation of expansion process and joint pull-off process is carried out by using elastic-plastic theory, and the pull-off failure forms of expansion joints with different slotting forms are explored. The pull-off tests of three kinds of expansion joints at room temperature were carried out, and the pull-off forces of expansion joints with different slotted forms were obtained. The results show that the pull-off force of the expanded joint with slotted structure is significantly higher than that without slotted structure, and the pull-off force of the expanded joint with stepped groove is the largest. The stepped groove expansion joint will have a "hump shaped" steep slope in the pulling off process,which is more difficult to pull off. Moreover, many wide high stress residual rings are formed at the slotted position of the expansion joint. These high stress residual rings are the key factors to ensure the tightness and tensile force of the slotted joint.

  • 【文献出处】 中国测试 ,China Measurement & Test , 编辑部邮箱 ,2023年04期
  • 【分类号】TK172
  • 【下载频次】11
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