Lightweight Design and Structural Analysis of a Wheel Rim Using Finite Element Method and Its Effect on Fuel Economy and Carbon Dioxide Emission

T. Islam, Shakik Ahnaf, M. M. Mamun, Abu Saleh Muhammad Musa
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Abstract

Wheel rims made of metal alloy considerably impact the vehicle’s overall weight. Consequently, employing alloys in the design of wheels results in higher fuel efficiency and lower carbon dioxide emissions. Weight reduction of vehicles also leads to better acceleration. Lightweight automotive design has been increasingly popular in recent years as a means of conserving energy and protecting the environment. The rim is an essential feature of the vehicle since it bears a substantial portion of its overall weight. A vehicle’s weight can be greatly reduced by using a lightweight rim. However, the impact of a lightweight rim on improved fuel economy and reduced carbon dioxide emissions has not been widely explored. In this study, a wheel rim has been designed, and a finite element model has been developed considering radial load, where tire pressure has also been considered. A practical experiment with identical parameters had also been carried out. The values of equivalent stress, strain, and deformation for a metal and an alloy which is steel and cast aluminum alloy (A356.0), respectively, have been compared. In terms of structural stability, steel and cast aluminum alloy have shown fairly similar results based on equivalent stress and deformation. However, the use of cast aluminum alloy has greatly decreased the rim’s weight as a result of its low density and high specific strength. Additionally, the aluminum alloy rim has shown superior fuel efficiency and lower carbon dioxide emissions. According to the findings, cast aluminum alloy rims are more feasible when building a vehicle wheel rim since they minimize the wheel’s and vehicle’s weight while maintaining structural strength. It leads to less fuel consumption, which can save fuel costs and is important for energy conservation.
轮辋轻量化设计与结构有限元分析及其对燃油经济性和二氧化碳排放的影响
由金属合金制成的轮辋对车辆的整体重量影响很大。因此,在车轮设计中采用合金可以提高燃油效率,降低二氧化碳排放量。车辆的重量减轻也会带来更好的加速。近年来,汽车轻量化设计作为一种节约能源和保护环境的手段越来越受欢迎。轮辋是车辆的基本特征,因为它承担了其整体重量的很大一部分。使用轻质轮辋可以大大减轻车辆的重量。然而,轻型轮辋对提高燃油经济性和减少二氧化碳排放的影响尚未得到广泛探讨。在本研究中,设计了一个轮辋,并建立了考虑径向载荷的有限元模型,其中轮胎压力也被考虑在内。并进行了参数相同的实际试验。比较了一种金属和一种合金(钢和铸铝合金(A356.0))的等效应力、应变和变形值。在结构稳定性方面,基于等效应力和变形,钢和铸铝合金表现出相当相似的结果。然而,铸铝合金的使用大大减少了轮辋的重量,因为它的低密度和高比强度的结果。此外,铝合金轮辋已显示出优越的燃油效率和更低的二氧化碳排放。根据研究结果,铸造铝合金轮辋在制造汽车轮辋时更可行,因为它们在保持结构强度的同时最大限度地减少了车轮和车辆的重量。它可以减少燃料消耗,从而节省燃料成本,对节能具有重要意义。
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