首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >ORBITAL FORMING SIMULATION OF AUTOMOTIVE HUB BEARING USING THE EXPLICIT FINITE ELEMENT METHOD
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ORBITAL FORMING SIMULATION OF AUTOMOTIVE HUB BEARING USING THE EXPLICIT FINITE ELEMENT METHOD

机译:用显式有限元法模拟汽车轮毂轴承的轨道成形

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摘要

In this paper, the orbital forming simulation of an automotive hub bearing was studied to predict forming conditions and performances using the explicit finite element method. To set up an efficient solution technique for the orbital forming, axisymmetric finite element models and 3D solid element models were numerically solved and compared to each other. The time scaling and mass scaling techniques were introduced to reduce the excessive computational time caused by small element size in case of the explicit finite element method. It was found from the numerical results on the orbital forming that the axisymmetric element models showed the similar results to the 3D solid element models in forming loads whereas the deformations at the bearing inner race were quite different. Finally the strains at the bearing inner race and the forming forces of the peen were measured by test for the same product used in the numerical analysis, and were compared with the 3D solid element results. It was shown that the test results were in good agreements with the numerical ones.
机译:本文研究了汽车轮毂轴承的轨道成形仿真,以使用显式有限元方法预测成形条件和性能。为了建立有效的轨道成形求解技术,对轴对称有限元模型和3D实体元素模型进行了数值求解,并进行了比较。在显式有限元方法的情况下,引入了时间缩放和质量缩放技术,以减少由于小尺寸元素而导致的过多计算时间。从轨道成形的数值结果发现,轴对称单元模型在成形载荷方面显示出与3D实体单元模型相似的结果,而轴承内圈的变形却大不相同。最后,通过对数值分析中使用的同一产品的测试,测量了轴承内圈的应力和锤头的成形力,并将其与3D实体元素结果进行了比较。结果表明,试验结果与数值结果吻合良好。

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