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首页> 外文期刊>Journal of Mechanical Engineering Science and Technology >Analysis of Strength of Glass Fibre Composite Leaf Spring Using Finite Element Method
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Analysis of Strength of Glass Fibre Composite Leaf Spring Using Finite Element Method

机译:玻璃纤维复合板簧强度的有限元分析

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摘要

Leaf spring, as one of the main components of the suspension system, serves the function of absorbing road shocks and any wheel vibrations, preventing them from being transmitted directly to the vehicle body. Moreover, it can increase the tire traction as well as support the weight of the vehicle and various kinds of external forces. Various studies on the use of composite materials for leaf springs have shown that the strength of composite leaf spring is similar to steel leaf spring with the same load carrying capacity. However, the composite leaf spring has the added advantage of being more lightweight. In fact, composite materials have been preferable for many purposes not only because of its properties but also its lightweight structure and cost effectiveness. The analysis process was carried out using the finite element method by means of ANSYS software to display the output of the analysis being performed. After the output is known, the amount of voltage in conventional, mounted, and progressive spring can be determined. Based on the data analysis, we concluded that conventional straight leaf springs produced a maximum voltage of 653.13 MPa and maximum deflection of 4367.1 mm. The results of the analysis using the finite element method showed that conventional leaf springs (both straight and not) are considered as the most effective model of leaf spring in terms of the power generated.
机译:板簧作为悬架系统的主要组成部分之一,具有吸收路面冲击和车轮振动的作用,防止它们直接传递到车身。此外,它可以增加轮胎的牵引力,并支撑车辆的重量和各种外力。关于板簧使用复合材料的各种研究表明,在具有相同的承载能力的情况下,复合板簧的强度类似于钢板簧。但是,复合板簧的另一个优点是重量更轻。实际上,复合材料不仅由于其性能而且由于其轻质结构和成本效益而在许多方面都是优选的。分析过程是通过ANSYS软件使用有限元方法进行的,以显示正在执行的分析的输出。知道输出后,可以确定常规弹簧,安装弹簧和渐进弹簧的电压量。根据数据分析,我们得出结论,传统的直板簧产生的最大电压为653.13 MPa,最大挠度为4367.1 mm。使用有限元方法的分析结果表明,就所产生的功率而言,常规的板簧(直板和非板簧)被认为是最有效的板簧模型。

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