Structural Analysis & Shape Optimization for a Control Arm of a Vehicle’s Suspension.

Abdul Rehman Ahmad, Mian Muhammad, Asim Zahir
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Abstract

This paper's primary goal is to develop and conduct a structural analysis of a sheet metal control arm used in the front suspension system. The control arm permits the wheel to move up and down but prohibits it from moving forward or backward. Additionally, the part is exposed to intense loads while performing its duty because the wheelbase is attached to the chassis on one end. To create sustainable and competitive products, component material and design selection is a crucial topic in the industry. Shape optimization can be utilized as a design tool in the initial stages of the design process to fully satisfy the strength and endurance requirements on a component level. Here the focus is on a control arm where the structural requirements on it involve the part being exposed to stress-strain due to the applied forces which can be treated and reduced during the optimization process. This would enable engineers to design better products while reducing the cost of development significantly.
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汽车悬架控制臂的结构分析与形状优化。
本文的主要目的是对前悬架系统中使用的金属板控制臂进行开发和结构分析。控制臂允许车轮上下移动,但禁止车轮前后移动。此外,由于轮距的一端与底盘相连,因此该部件在执行任务时会承受很大的载荷。要制造出具有可持续性和竞争力的产品,部件材料和设计的选择是行业内的一个重要课题。在设计过程的初始阶段,形状优化可作为一种设计工具,以充分满足部件的强度和耐久性要求。这里的重点是控制臂,对其结构的要求涉及部件在外力作用下的应力应变,而这些应力应变可以在优化过程中进行处理和减少。这将使工程师能够设计出更好的产品,同时大幅降低开发成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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