Analysis and Optimization for Weight and Stress reduction in Leaf Spring

R. Rai, R. Pathak
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Abstract

Suspension leaf springs are widely used in automobile systems. The increasing interest of automobile industry in the usage of composite materials in substitute to conventional steel leaf springs owing to higher strength to weight ratio in latter. The past literature survey shows that leaf springs are designed as generalized force elements where the position, velocity and orientation of the axle mounting gives the reaction forces in the chassis attachment positions. The attachment of chassis positions along different positions plus difference in axle mounting’s velocity and orientation, the leaf springs are designed for these force elements. So, it is very important to study the analysis of leaf springs made up of composite materials. Modelling of leaf spring has been done with SOLIDWORKS 20.0 software and analysis has been carried out with ANSYS R19.2. Thus, the comparison of static analysis of these three materials are made and compared for material composites leaf spring. The static testing is done for a load of 50000 N in the rear suspension, also FE analysis is carried out and validated.[1] Von Mises Stress and Total Deformation were found out from this analysis. The conclusion was reached that there was a reduction in both stress and weight when composite material was used rather than conventional steel material. It is an effective energy conservation measure as reduction in overall fuel consumption of automobile is also achieved.
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钢板弹簧减重减应力分析与优化
悬架钢板弹簧在汽车系统中应用广泛。由于复合材料具有较高的强度与重量比,汽车工业对使用复合材料代替传统钢板弹簧越来越感兴趣。以往的文献调查表明,钢板弹簧被设计为广义力单元,其中轴安装的位置、速度和方向给出了底盘附着位置的反作用力。针对底盘位置沿不同位置的附着以及轴安装速度和方向的差异,设计了板簧。因此,对复合材料板簧的分析研究具有十分重要的意义。利用SOLIDWORKS 20.0软件对钢板弹簧进行建模,并用ANSYS R19.2软件对钢板弹簧进行分析。因此,对这三种材料的静力分析进行了比较,并对材料复合钢板弹簧进行了比较。静态测试完成了50000 N的后悬架载荷,也进行了有限元分析和验证。[1]通过分析得到了Von Mises应力和总变形。结果表明,采用复合材料代替传统的钢材料,在减小应力和减轻重量方面均有显著的效果。这是一种有效的节能措施,同时也降低了汽车的总油耗。
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