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Thermal-mechanical finite element analysis of V-ribbed belt drive operation

机译:V形肋带驱动操作热机械有限元分析

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This paper investigates the effect of ambient temperature on the performance characteristics of an automotive poly-rib belt operating in an under-the-hood temperature environment. A three-dimensional dynamic finite element model consisting of a driver pulley, a driven pulley, and a complete V-ribbed belt was constructed. Belt tension and rotational speed were controlled by means of loading and boundary inputs. Belt construction accounts for three different elastomeric compounds and a single layer of helical wound reinforcing cord. Rubber was considered as hyperelastic material. Cord is linear elastic. The material model was implemented in ABAQUS/Explicit for the simulation. Analysis was focused on rib flank and tip since stress concentrations in these regions are known to contribute to crack initiation and fatigue failure.
机译:本文研究了环境温度对在橱内温度环境中运行的汽车多肋带性能特性的影响。构造了由驱动皮带轮,从动皮带轮和完整的V形肋带组成的三维动态有限元模型。通过加载和边界输入控制皮带张力和转速。皮带施工占三种不同弹性化合物和一层螺旋伤口增强帘线。橡胶被认为是高速材料。线是线性弹性。材料模型是在ABAQUS / SIMICULIC中实施的。分析重点是肋骨侧和尖端,因为这些区域中的应激浓度有助于裂纹引发和疲劳失败。

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