主办:陕西省汽车工程学会
ISSN 1671-7988  CN 61-1394/TH
创刊:1976年

汽车实用技术 ›› 2022, Vol. 47 ›› Issue (10): 75-80.DOI: 10.16638/j.cnki.1671-7988.2022.010.016

• 测试试验 • 上一篇    

联合仿真在某车型 LGF/PP 尾门模态 仿真上的应用

徐德奎,茅 菁   

  1. 延锋彼欧汽车外饰系统有限公司
  • 出版日期:2022-05-30 发布日期:2022-05-30
  • 通讯作者: 徐德奎
  • 作者简介:徐德奎(1982—),男,硕士,工程师,研究方向为有限元仿真分析,E-mail: 240709259@qq.com。

Application of Co-simulation to Mode Analysis of LGF/PP Tailgate of a Vehicle

XU Dekui, MAO Jing   

  1. Yanfeng Plastic Omnium Automotive Exterior Systems Company Limited
  • Online:2022-05-30 Published:2022-05-30
  • Contact: XU Dekui

摘要: 为提高 LGF/PP 复合材料尾门模态仿真的准确性,尝试联合使用 Moldflow、Helius 和 Abaqus 软件进行仿真模拟。首先构建 LGF/PP 材料的本构模型,并基于实际成型工艺使用 Moldflow 软件计算尾门内板玻纤分布;其次通过 Helius 软件将玻纤分布信息映射到模态有限 元模型,并结合材料模型获得联合仿真模型;最后将联合仿真结果与试验结果进行比较,两 者误差基本在 6%以内。结果表明,联合仿真技术能明显提高 LGF/PP 零件模态仿真的准确性, 这为该类产品模态性能的准确预测提供了重要的参考价值和现实意义,也可推广应用于结构 刚度、强度、热机耦合等机械性能仿真精度的提升。

关键词: 联合仿真;LGF/PP;复合材料尾门;尾门内板;模态分析;各向异性;仿真精度

Abstract: In order to improve the simulation accuracy of mode analysis of composite tailgate with LGF/PP, a co-simulation method of Moldflow, Helius and Abaqus was adopted. Firstly, a material model of LGF/PP was built based on tensile test with different fiber orientation. Secondly, based on actual molding process, Moldflow is used to calculate the glass fiber distribution, which is mapped to the modal finite element model by Helius, then the final co-simulation model is obtained by combining with both the material constitutive model and mapped fiber orientation. Finally, the comparison was performed between simulation and physical test, and the error is within 6%. The results show that the mode value calculated by co-simulation model is closer to the mode of physical test, and this method can obviously improve the simulation accuracy, this provides important reference value and practical significance for the accurate prediction of modal performance of this kind of products and also can be applied to improve the simulation accuracy of mechanical behavior such as structural stiffness, strength, and thermo-mechanical coupling.

Key words: Co-simulation; LGF/PP; Composite tailgate; Inner panel; Mode analysis; Anisotropy; Simulation accuracy