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Mode-I fatigue crack growth analysis of V-ribbed belts

机译:V型肋带的I型疲劳裂纹扩展分析

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One factor which is critical to the life of automotive serpentine belts is their failure due to propagation of initially small flaws in the elastomer located in the belt rib. This paper aims to develop a predictive fatigue crack growth model for serpentine belts with initially small rib tip flaws. The study combines the fatigue crack growth tests for belt rib material and computational fracture mechanics analysis for V-ribbed belts to predict fatigue life. The belt rib rubber material is tested for its fatigue behavior and the relationship between the fatigue crack growth rate and the tearing energy is constructed. A power law is employed to curve fit the fatigue crack growth rate curve. A global-local finite element analysis procedure is used to compute the J-integral for a through-the-thickness crack in the belt rib tip. The three-dimensional global model is created with relatively coarse mesh using first order continuum elements in ABAQUS. The three-dimensional local model for the rib crack is constructed with significantly finer mesh and employs the second order continuum elements. The boundary conditions for the local model are driven by the displacement solution of the global model. The maximum and minimum J-integrals are calculated for two extreme configurations in one belt running cycle. The range of the J-integral is input into the curve fitted power law to derive the fatigue crack growth rate and hence the fatigue life for the belt.
机译:对汽车蛇形皮带的寿命而言至关重要的一个因素是由于最初微小的裂纹在位于皮带肋中的弹性体中扩散而导致其失效。本文旨在建立起初具有较小肋尖缺陷的蛇形带的预测疲劳裂纹扩展模型。该研究结合了带肋材料的疲劳裂纹扩展测试和V型肋带的计算断裂力学分析,以预测疲劳寿命。测试带肋橡胶材料的疲劳行为,并建立疲劳裂纹扩展速率与撕裂能量之间的关系。幂律用于拟合疲劳裂纹扩展速率曲线。使用整体局部有限元分析程序来计算带肋尖端中整个厚度裂纹的J积分。使用ABAQUS中的一阶连续体元素,使用相对粗糙的网格创建三维全局模型。肋骨裂纹的三维局部模型是使用更精细的网格构建的,并使用了二阶连续体元素。局部模型的边界条件由整体模型的位移解驱动。在一个皮带运行周期中,针对两种极端配置计算了最大和最小J积分。将J积分的范围输入到曲线拟合幂律中,以得出疲劳裂纹扩展率,从而得出皮带的疲劳寿命。

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