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首页> 外文期刊>Advances in Mechanical Engineering >Fatigue life prediction of heavy vehicle suspension system under varying load conditions
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Fatigue life prediction of heavy vehicle suspension system under varying load conditions

机译:改变负荷条件下重型车辆悬架系统的疲劳寿命预测

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Leaf spring experiences frequent cyclic loading during working conditions. When design stage itself it is very essential to assess the fatigue life of the suspension system. It is important to consider and evaluate the key aspects of fatigue failure and life by using Finite Element Analysis (FEA) techniques to overcome these failures. This paper serves to stimulate the premature failure of the existing and proposed bracket model with generalized force elements under dynamic load conditions. Scanning Electron Microscope (SEM) was used to identify the bracket failure prone areas which indicate that the cyclic load in the suspension system is caused by rural area road-induced vibrations and bumps. This contributes to the increase of the fatigue fracture, which ends up with a bracket failure. The results indicated that the fatigue life of existing bracket is low for rough road conditions; the modified bracket has been optimized for the safe load conditions of the heavy vehicle suspension system.
机译:在工作条件下,叶子弹簧经常经常循环加载。当设计阶段本身时,评估悬架系统的疲劳寿命是至关重要的。重要的是要考虑和评估疲劳失效和使用寿命的关键方面,通过使用有限元分析(FEA)技术来克服这些故障。本文有助于刺激现有和提出的支架模型的过早失效,在动态负载条件下具有广义力元件。扫描电子显微镜(SEM)用于识别支架故障易发区域,表明悬架系统中的循环负载是由农村地区道路引起的振动和凸块引起的。这有助于疲劳骨折的增加,最终有一个支架衰竭。结果表明,对于崎岖的道路状况,现有支架的疲劳寿命较低;改进的支架已经针对重型车辆悬架系统的安全负载条件进行了优化。

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