李海涛, 刘建湖, 何斌, 王海坤, 裴度. 基于时域分析的设备抗冲击连接件简化方法[J]. 中国舰船研究, 2018, 13(3): 85-89. DOI: 10.19693/j.issn.1673-3185.01157
引用本文: 李海涛, 刘建湖, 何斌, 王海坤, 裴度. 基于时域分析的设备抗冲击连接件简化方法[J]. 中国舰船研究, 2018, 13(3): 85-89. DOI: 10.19693/j.issn.1673-3185.01157
LI Haitao, LIU Jianhu, HE Bin, WANG Haikun, PEI Du. Simplified method of shock resistant connection for shipboard equipment based on time domain analysis[J]. Chinese Journal of Ship Research, 2018, 13(3): 85-89. DOI: 10.19693/j.issn.1673-3185.01157
Citation: LI Haitao, LIU Jianhu, HE Bin, WANG Haikun, PEI Du. Simplified method of shock resistant connection for shipboard equipment based on time domain analysis[J]. Chinese Journal of Ship Research, 2018, 13(3): 85-89. DOI: 10.19693/j.issn.1673-3185.01157

基于时域分析的设备抗冲击连接件简化方法

Simplified method of shock resistant connection for shipboard equipment based on time domain analysis

  • 摘要:
      目的   螺栓、柱销作为舰载设备安装的重要连接件,在评估过程中合理简化仿真的方法可显著节约计算成本,提高计算效率。
      方法   基于设备抗冲击时域计算方法,选取含有大量螺栓和柱销连接件的某船用电机作为分析对象,首先采用Bushing单元对螺栓、柱销进行模拟,得到在冲击载荷作用下不同阶段设备连接的刚度特性及设备连接的等效动力学模型。然后,对电机进行时域仿真评估,将仿真结果与浮动冲击平台的实验结果进行对比,以验证简化方法的可靠性和有效性。最后,在此基础上分析得到大型设备连接件在冲击载荷作用下的失效评估准则。
      结果   结果显示,仿真和试验得到的基础载荷与设备动响应值之间的偏差小于10%,表明简化方法有效、可靠。
      结论   研究所得结果可为后续仿真分析提供一定的参考。

     

    Abstract:
      Objectives  As bolts and pins are important connector for installation of shipboard equipments, using properly simplified method for anti-shock evaluation can reduce the computation cost and improve the simulation efficiency.
      Methods   On the basis of time domain analysis on the anti-shock property of shipboard equipment, a marine generator with a large amount of connectors (e.g. boltss and pins) is chosen as research object. Firstly, installation simulation of connection with bolts and pins is carried out to obtain the stiffness charcteristics in different phases of shock loading using busing unit, and equivalent dynamic model of equipment connection is attained. Then, simulation evaluation is made on the marine generator by time domain analysis, the results are compared with experimental data acquired from floating shock platform in order to verify the effectiveness and reliability of the simplified method. Lastly, criteria for failure evaluation of large-scale equipment connection under shock loading is attained.
      Results   The deviation of obtained base loads as well as dynamic response between numerical values and experimental data is less than 10%, and the simplified simulation method for connection evaluation process is effective and reliable.
      Conclusions   The findings in this paper can provide significant references for the evaluation of the anti-shock properties of equipment.

     

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