基于Inspire的FSCC 赛车悬架立柱优化设计及CAE分析
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西华大学材料科学与工程学院

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四川省科技厅重点研发项目(2022YFG0366);四川省粉末冶金工程技术研究中心(SC-FMYJ2021-06)


Optimal design and CAE analysis of FSC racing suspension column based on Altair Inspire Form Software
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    摘要:

    零件轻量化是机械制造领域的重要研究方向。本文以中国大学生方程式汽车大赛(Formula Student Combustion China,FSCC)BTR-X的悬架立柱作为例,在分析其实际受力情况的基础上,利用Altair Inspire Form软件以最大化刚度为目标对其进行了减重设计和拓扑结构优化。得到了带刹入弯工况条件下两种不同设计方案的应力、应变值及安全系数,并对比了其优缺点。结果表明,在最佳优化方案中,BTR-X悬架立柱最大有效应力为557 MPa,减重18.5%,提升了车辆的操稳性,实现了其轻量化的目标,对进一步提升FSCC赛车的性能有一定的参考价值。最后,通过选择性激光烧结(Selective Laser Sintering,SLS)成功实现了优化悬架立柱结构的3D打印成型,为FSCC赛车的轻量化设计及加工提供了新思路。

    Abstract:

    Parts lightweight is an important research direction in the field of mechanical manufacturing. In this study, the suspension column of the Formula Student Combustion China (FSCC) Formula Student BTR-X was taken as an example. Based on the analysis of its actual force, the Altair Inspire Form software was employed to perform weight reduction design and topology optimization with the goal of maximizing stiffness. The stress-strain values and safety factors of two different design schemes were obtained under the condition of entering the bend with brakes, and then their advantages and disadvantages were compared. In the best optimization scheme obtained, the maximum effective stress of the BTR-X suspension column was 557 MPa, and the weight was reduced by 18. 5%, thus improving the stability of the vehicle. Accordingly, the lightweight goal has been achieved, which has certain reference value for further improving the performance of FSCC racing cars. Finally, the molding process of the optimized suspension column structure has been successfully realized by selective laser sintering (Selective Laser Sintering, SLS), providing a new route for the lightweight design and processing of FSCC racing cars.

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历史
  • 收稿日期:2022-12-12
  • 最后修改日期:2023-03-07
  • 录用日期:2023-03-08
  • 在线发布日期: 2023-06-21
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