FSAE汽车转向节的设计与分析

S. Ranganathan, S. gopal, S. Eswaran, Suganthan muthusamy
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引用次数: 1

摘要

方程式赛车(FSAE)正面临着通过减轻各部件的重量来提高车辆性能的挑战。在考虑重量时,指节是一个要认真看的东西。转向节是与约束叉骨、悬架、制动盘和轮毂挂钩的非标准或非目录部件。它承受不同条件下的交变载荷。在这项研究中,我们的目标是减轻重量的指关节让步屈服强度。利用solidworks软件设计了两种不同类型的紧凑型关节。紧凑的关节也为车辆提供了所需的方向,也减少了非簧载质量。为了使指关节更紧凑,在压力较小的区域丰富肋骨。两个指关节的不同之处在于2型指关节的长度更多。与模型1相比,如果关节的长度增加,作用在上臂上的应力就会减小。但是考虑到基于尺寸的重量,模型1在不考虑材料的情况下关节的重量更小。因此,我们的主要目标是使用高强度的材料,与商业关节材料相比,重量更轻。本文提出了两种不同材料7075-T6铝合金具有较高的屈服强度,并与7075-T6铝合金中添加5wt%SiC和3wt%Gr制备的混杂复合材料进行了比较。在Ansys 16.0软件中分析了含5wt%SiC和3wt%Gr的AA7075-T6和AA7075-T6两种材料的性能。根据ansys的计算结果,对其应力和变形进行了分析。通过总结工作,选择变形和应力较小的观测模型和材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of Steering Knuckle for FSAE Vehicle
Formula vehicles (FSAE) is confronting to increase vehicle performance by reducing the weight of the various components. In consideration of weight, knuckle is one of the serious things to look over it. Steering knuckle is a nonstandard or non-catalog component hooks up with the constraint wishbones, suspension, brake disc and wheel hub. It undergoes alternating loads subjected to different conditions. In this study we aim in reduction of weight in the knuckle with concession in the yield strength. Design a two different type of compact knuckle by using the solidworks software. The compact knuckle also provides desired direction to the vehicle and also reduces the unsprung mass. To make a compact knuckle enrich a rib in less stress areas. The difference in two knuckles is that the length of model 2 knuckle is more. If the length of the knuckle increases the stress acting on upper arm will be less when compared to the model 1. But in consideration of weight based on size model 1 knuckle is less weight without consideration of material. Thus our main aim is using the material with a high strength with less weight comparing with the commercial knuckle material. In this paper, proposed a two different materials one is Aluminium alloy 7075-T6 has a high yield strength and this is compared to the prepared hybrid composite material by which the material is prepared by adding 5wt%SiC and 3wt%Gr with Aluminium alloy 7075- T6. By the properties of the two material AA7075-T6 and AA7075- T6 with 5wt%SiC and 3wt%Gr is analysed in the Ansys 16.0 software. By the results through ansys, the stress and deformation is analyzed. By concluding the work by selecting less deformation and stress observed model and material.
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