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  • 中国标准连:ISSN1005-2895
  • 续出版物号: CN 33-1180/TH
  • 主管单位:轻工业杭州机电设计研究院有限公司
  • 主办单位:轻工业杭州机电设计研究院有限公司、中国轻工机械协会、中国轻工业机械总公司
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邢爱冬,张永乐,李庆生*.基于内聚力模型的气波机振荡管304对接钎焊接头拉伸强度研究[J].轻工机械,2024,42(3):46-53
基于内聚力模型的气波机振荡管304对接钎焊接头拉伸强度研究
Research on Tensile Strength of 304 Butt Brazed Joint of Oscillating Tube of Gas Wave Machine Based on Cohesive Zone Model
  
DOI:10.3969/j.issn.1005 2895.2024.03.007
中文关键词:  气波机  振荡管  对接钎焊接头  内聚力模型  VUMAT子程序  焊缝缺陷
英文关键词:gas wave machine  oscillating tube  butt brazed joint  cohesive zone model  VUMAT subroutine  weld defect
基金项目:国家重点研发计划项目(2018YFA0704604)。
作者单位
邢爱冬,张永乐,李庆生* (南京工业大学 机械与动力工程学院 江苏 南京211816) 
摘要点击次数: 11
全文下载次数: 19
中文摘要:
      气波机核心部件振荡管采用钎焊连接,钎焊接头拉伸性能对气波机结构强度具有重要影响。为了对钎焊接头界面裂纹扩展过程进行探究,笔者针对气波机振荡管钎焊结构,制备304对接钎焊接头试样进行拉伸试验,并对拉伸断口进行形貌分析,断口处表现为韧性断裂;基于内聚力模型,开发了VUMAT子程序,进行了有限元模拟分析。模拟断裂载荷为5 039 N,试验值为5 242 N,2者误差为3.9%,验证了模拟的准确性,结果表明内聚力模型可以较好地模拟气波机振荡管钎焊接头的裂纹萌生与扩展过程。在此基础上研究焊缝缺陷对钎焊接头断裂载荷的影响,发现缺陷处内聚力单元损伤速率加快,引起断裂载荷显著下降。
英文摘要:
      The core components of the oscillating tube are brazed, and the tensile property of the brazed joint has an important influence on the structural strength of the gas wave machine. In order to investidate the process of interfacial crack propagation of brazed joint, according to the brazed structure of the oscillating tube of the gas wave machine, the tensile test of 304 butt brazed joint sample prepared was carried out, and the fracture showed ductile fracture by analyzing the tensile fracture morphology. Based on the cohesion model, the VUMAT subroutine was developed and finite element analysis was carried out. The simulated fracture load was 5 039 N, the test value was 5 242 N, and the error of both was 3.9%, which verified the accuracy of the simulation. The results show that the cohesion model can well simulate the crack initiation and propagation process of the brazed joint of the oscillating tube of the gas wave machine. On this basis, the effect of weld defects on the fracture load of brazed joint is studied, and it is found that the damage rate of cohesive force unit at the defect is accelerated, which results in a significant decrease in the fracture load.
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