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Investigation into effect of rubber bushing on stress distribution and fatigue behaviour of anti-roll bar

机译:橡胶衬套对防倾杆应力分布和疲劳行为影响的研究

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Anti-roll bars used in ground vehicle to reduce body roll by resisting any uneven vertical motion between the pair of wheels suffer from fatigue failure. In this study, several struc-tural analyses of an anti-roll bar made of SAE 9262 were carried out by means of finite ele-ment (FE) technique to determine stress distributions. The result of FE analyses indicated that equivalent stress in the inner surface of the corner bend was the maximum; wherein the shear stress dominates. Fatigue tests that were carried out under 7° rotational loading also confirmed the failure location. In addition, the effects of hardness and wall thickness of rubber used in bushing on stress distribution were investigated for various polyurethane rubbers (75,85,90 and 95 Shore A) and bush wall thickness (5.25,7 and 8.75 mm), system-atically. It was found that both soft rubber and thick wall thickness tend to reduce stress in the critical region. Based on the results of FE analyses, several proof tests of anti-roll bars with specific bushing were planned. It was concluded that the reduction of equivalent stress in anti-roll bar accomplished by modifying the bushing provided a significant improvement in the fatigue life. Approximately 9% improvement in the fatigue life with respect to base bushing could be obtained by selecting relatively soft rubber materials. For the rubber hardness 75 Shore A, changing in wall thickness from 7 mm to 8.75 provided 11% improvement. Total improvement from the proof tests reached up to approximately 21% in the fatigue life.
机译:地面车辆中使用的防倾杆通过抵抗一对车轮之间的任何不均匀的垂直运动来减少车身侧倾,从而导致疲劳失效。在这项研究中,通过有限元(FE)技术对SAE 9262制成的防倾杆进行了几种结构分析,以确定应力分布。有限元分析的结果表明,拐角内表面的等效应力最大。其中剪切应力占主导。在7°旋转负载下进行的疲劳测试也确定了故障位置。此外,针对各种聚氨酯橡胶(75、85、90和95 Shore A)和衬套壁厚(5.25、7和8.75 mm),研究了衬套中所用橡胶的硬度和壁厚对应力分布的影响-简而言之已经发现,软橡胶和厚壁厚都趋向于减小关键区域的应力。根据有限元分析的结果,计划对带有特定衬套的防倾杆进行多次验证测试。结论是,通过修改衬套可以降低防倾杆的等效应力,从而显着提高疲劳寿命。通过选择相对较软的橡胶材料,相对于基础衬套,疲劳寿命可提高约9%。对于硬度为75 Shore A的橡胶,壁厚从7 mm更改为8.75可提高11%。验证测试的总改进使疲劳寿命提高了约21%。

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