首页> 外文会议>Biennial ASME Conference on Engineering Systems Design and Analysis >DYNAMIC SIMULATION TECHNIQUE FOR PREDICTION OF STRESS ON ELEMENT OF METAL PUSHING V-BELT UNDER CVT OPERATION
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DYNAMIC SIMULATION TECHNIQUE FOR PREDICTION OF STRESS ON ELEMENT OF METAL PUSHING V-BELT UNDER CVT OPERATION

机译:CVT运行下压力压力预测压力的动态仿真技术

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A simulation method enabling simultaneous prediction of dynamic behavior and stress distribution on an individual element has been developed for durability evaluation of dynamic strength of metal pushing V-belts. The finite-element-method that enables contact analyses in time history with large-scale model was adopted to reproduce the dynamic behavior of the V-belt in high rotational speed range of CVT. This paper focuses on the element strength in actual CVT operation, and also discusses modifications made to the previously reported simulation method to enable the prediction of detailed stress. A new technique named inertia-relief is introduced, which does not require the application of constraint conditions when calculating the detailed stress on element in respectively. This results in allowing the stress distribution on any element to be found at any position on the trajectory of the V-belt and the elastic deformation of the element to be identified. Using this technique, it has been found that the stress on the necks of elements at the entrance and exit of the pulleys affects the dynamic strength of the V-belt. Furthermore, a method of evaluating this stress was also determined. In addition, consideration was given to the effect of the elements tail side concave shape on the dynamic strength of the V-belt.
机译:为耐久性评估金属推动V形型电动强度的耐久性评估,开发了一种仿真方法,其能够同时预测各个元件上的动态行为和应力分布。采用具有大规模模型的时间历史中实现接触分析的有限元方法来再现V形圈在CVT的高转速范围内的动态行为。本文重点介绍了实际CVT操作中的元素强度,并且还讨论了对先前报道的模拟方法进行的修改,以实现详细压力的预测。介绍了一种名为惯性浮雕的新技术,当分别计算元素的详细压力时,不需要在计算细节时应用约束条件。这导致允许在V形带的轨迹的任何位置上找到任何元素的应力分布以及要识别的元素的弹性变形。使用这种技术,已经发现,滑轮的入口和出口处的元件颈部的应力影响V形带的动态强度。此外,还确定了评估该应力的方法。此外,考虑了元件尾部凹形形状对V形带的动态强度的影响。

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