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首页> 外文期刊>Journal of Mechanical Science and Technology >Gear hot forging process robust design based on finite element method
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Gear hot forging process robust design based on finite element method

机译:基于有限元方法的齿轮热锻工艺鲁棒性设计

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During the hot forging process, the shaping property and forging quality will fluctuate because of die wear, manufacturing tolerance, dimensional variation caused by temperature and the different friction conditions, etc. In order to control this variation in performance and to optimize the process parameters, a robust design method is proposed in this paper, based on the finite element method for the hot forging process. During the robust design process, the Taguchi method is the basic robust theory. The finite element analysis is incorporated in order to simulate the hot forging process. In addition, in order to calculate the objective function value, an orthogonal design method is selected to arrange experiments and collect sample points. The ANOVA method is employed to analyze the relationships of the design parameters and design objectives and to find the best parameters. Finally, a case study for the gear hot forging process is conducted. With the objective to reduce the forging force and its variation, the robust design mathematical model is established. The optimal design parameters obtained from this study indicate that the forging force has been reduced and its variation has been controlled.
机译:在热锻过程中,成形性能和锻造质量会因模具磨损,制造公差,温度引起的尺寸变化以及不同的摩擦条件等而波动。为了控制这种性能变化并优化工艺参数,基于热锻过程的有限元方法,本文提出了一种鲁棒的设计方法。在鲁棒性设计过程中,Taguchi方法是基本的鲁棒性理论。为了模拟热锻过程,引入了有限元分析。另外,为了计算目标函数值,选择正交设计方法来安排实验并收集样本点。 ANOVA方法用于分析设计参数与设计目标之间的关系,并找到最佳参数。最后,对齿轮热锻工艺进行了案例研究。为了减少锻造力及其变化,建立了鲁棒的设计数学模型。从这项研究中获得的最佳设计参数表明,锻造力已减小,其变化已得到控制。

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