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Process Parameters Optimisation for Helical Gears Precision Forging with Damage Minimization

机译:斜齿轮精锻工艺参数的优化与最小化

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The principle of material damage and the Cockroft-Latham damage model were demonstrated. The finite element simulation combined with fracture criterion has been performed in order to predict fracture. An optimisation method for the helical gears precison forging was proposed based on the finite element method(FEM) and Taguchi method with damage minimization. The maximum damage value of all element in helical gear precision forging was considered as the optimal objective. The optimal parameters combination is obtained through S/N analysis and the analysis of variance (ANOVA). It is shown that, for helical gears precision forging, the most significant parameters affecting the maximum damage value are punch velocity, friction coefficient, interaction between deformation temperature and punch velocity, deformation temperature in turn.
机译:证明了材料损坏的原理和Cockroft-Latham损坏模型。为了预测断裂,已经进行了结合断裂准则的有限元模拟。提出了一种基于有限元法和田口法的斜齿轮精密锻造优化方法,并将损伤最小化。斜齿轮精密锻造中所有元素的最大损伤值被认为是最佳目标。通过S / N分析和方差分析(ANOVA)获得最佳参数组合。结果表明,对于斜齿轮精密锻造而言,影响最大损伤值的最重要参数是冲头速度,摩擦系数,变形温度与冲头速度之间的相互作用,变形温度。

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