
Formula SAE Race Car Suspension Project – Zonghao Benjamin Liu …
Built 3D models for control arms to perform finite element analysis simulations (FEA) to predict stress-loading characteristics prior to manufacture. Designed sensor mounting systems for the data acquisition system for both old and new cars for telemetry team.
Formula SAE Race Car Human Interface Project – Zonghao Benjamin Liu ...
We designed and manufactured the human interface parts including the steering linkage, harness mounts, and brake system. The design of the steering system was quite a challenge for me.
Andrew Liu - Suspension Engineer - Texas A&M FSAE Electric …
MechE @ Texas A&M | Formula SAE Electric Suspension Engineer · I am a highly motivated and reliable Mechanical Engineering student offering extensive work experience and technical knowledge in...
In Formula Student Competition (FSAE), the college students’ team is required to design and race a small-scale formula style racing car [1]. The brake system is one of the most vital parts of the formula student racing car.
FSAE赛车前轮定位参数的优化研究 - nwpu.edu.cn
摘要: 针对大学生方程式 (FSAE)赛车前轮定位参数的优化设计问题,基于ADAMS/Car模块建立FSAE赛车双横臂独立悬架的仿真模型,对前轮定位参数进行仿真分析。
Design of FSAE Formula Racing Car Frame and Finite
2022年1月13日 · Modal analysis and lightweight design of FSAE racing car frame based on ANSYS workbench B Wang Y Liu
Optimization of the FSAE Car Steering Trapezoid
After manufacturing and testing the FSAE car prototype, the experimental and optimal results are compared, which indicates that the design of the steering trapezoid mechanism reduce tire wear and protect good steering and grip performance.
基于ADAMS/CAR的FSAE赛车解耦悬架设计和仿真研究-【维普期刊 …
摘要 传统的大学生方程式赛车采用双横臂式悬架,改变对称布置的弹簧刚度时,悬架的侧倾刚度及垂直刚度都会发生改变,为悬架侧倾刚度、垂直刚度的调校带来困扰。 在双横臂式悬架的基础上,设计了FSAE赛车解耦悬架,基于ADAMS/CAR中...
FSAE赛车空气动力学套件优化设计 - sues.edu.cn
使用数值累进法和控制变量法的优化方法,并通过计算流体动力学(Computational Fluid Dynamics, CFD)进行仿真,设计完成一套性能优异的空气动力学套件. 与2018赛季车辆相比,该设计使赛车的负升力和的升阻比分别提高81%和91%,极大提升了整车的动力学性能.
FSAE赛车空气动力学套件优化设计_李嘉寅 - 道客巴巴
使用数值累进法和控制变量法的优化方法,并通过计算流体动力学(Computational Fluid Dynamics, CFD)进行仿真,设计完成一套性能优异的空气动力学套件.与 2018 赛季车辆相比,该设计使赛车的负升力和的升阻比分别提高 81% 和 91%,极大提升了整车的动力学性能.关键 ...