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A Simplified Three-Dimensional Finite Element Model of Serpentine Belt and its Application into a Belt Driving System

机译:蛇纹石带简化的三维有限元模型及其在带驱动系统中的应用

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The serpentine belt's multi-scale problems in geometric size, which gives rise to a very large number of element and deeply low calculating efficiency, always bring obstacles when predicting the dynamic response of a serpentine belt driving system using three-dimensional finite element model (FEM). In this paper, a simplified finite element model is built which can accurately present the original serpentine belt's geometric characteristics such as cross-area and moment of inertia, as well as material characteristics such as stiffness and damping, etc. This simplified model is then used in a three-dimensional belt-drive model to simulate the dynamic characteristics of the belt-drive system. The results show that the tension fluctuation for the original serpentine belt and the simplified belt are in good agreement with each other which confirms that the simplified belt model can be used to predict the engine front end accessory drive system (EFEADS)'s dynamic characteristics. Furthermore, the simplified belt has greatly improved the calculating efficiency as it reduces element number and the minimum element size and can be modelled more easily compared with the serpentine belt, so the simplified model has a very important engineering significance especially when it is applied to the complicated EFEADS.
机译:在几何尺寸,其产生非常大量的元件和深低计算效率,预测蛇形皮带的动态响应驱动利用三维有限元模型的系统时总是带来障碍蛇形带的多尺度问题(FEM )。在本文中,一个简化的有限元模型的建立,其能够准确地呈现原始蛇形皮带的几何特性,例如跨区域和转动惯量,以及如刚度和阻尼等,这简化模型材料特性随后被用于在三维带驱动模型来模拟带驱动系统的动态特性。结果表明,对于原来的蛇形带和简化带上的张力波动有较好的一致性彼此这证实了简化的带模型可以用于预测发动机前端附件驱动系统(EFEADS)的动态特性。此外,简化的带极大地提高了计算效率,因为它减少元件数目和最小元件尺寸并且可以更容易地与蛇形皮带相比建模,所以简化模型具有非常重要的工程意义特别是当它被施加到复杂EFEADS。

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