首页|FSAE赛车尾翼曲率端板的设计及制备

FSAE赛车尾翼曲率端板的设计及制备

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基于FSAE赛事,通过CFD分析方法设计并优化尾翼端板形状,并总结出一套碳纤维复合材料端板加工流程以提升尾翼的气动效率和刚度表现.首先,根据后处理云图、流线图的变化规律和匹配原则,结合数字化设计过程,确定了大曲率端板外形最佳方案,以减小前部空气动力学装置及驾驶舱湍流尾迹对流经尾翼气流的干扰,并在端板下部分设置尾翼整体部件的额外支撑点,拟达到优化流场和尾翼结构刚度、提升装置机械稳固性的目的.随后,制作成品并总结出一套完善的碳纤维复合材料尾翼端板制备方案,证明相关设计的可行性.
Design and Preparation of Curvature end Plate of FSAE Racing Car Rear Wing
Based on the FSAE competition,the CFD analysis method was used to design and optimize the shape of the wing endplate,and a set of carbon fiber composite endplate manufacturing processes was summarized to improve the aerodynamic efficiency and performance of the wing.Based on the changes in the postprocessing cloud map and streamline map,and the matching principles,the best solution for the large curvature endplate shape was determined through the digital design process to reduce the interference of the turbulence wake of the front device and cockpit on the airflow passing through the wing,and additional support points for the overall wing component were set at the lower part of the endplate to optimize the flow field and wing structure stiffness and improve the mechanical stability of the device.Subsequently,a finished product was produced and a carbon fiber composite wing endplate preparation scheme was summarized to demonstrate the feasibility of the related design.

FSAE racingrear wingaerodynamicsCFDcarbon fiber composite

杨开、孙锦辉、朱彦陶

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燕山大学车辆与能源学院,河北秦皇岛 066000

FSAE赛车 尾翼 空气动力学 CFD 碳纤维复合材料

2024

汽车零部件
中国科学技术信息研究所 中国汽车零部件工业公司

汽车零部件

影响因子:0.121
ISSN:1674-1986
年,卷(期):2024.(1)