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Radial forging of aluminum to steel preform for the production of light-weighted wheel bearing outer race

机译:铝铝钢预制件,用于生产轻加轮轴承外圈的生产

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In this research work an innovative procedure through which to manufacture the outer race of vehicles wheels bearing, aiming to reduce their total weight, is proposed. Utilizing the radial forging process, an aluminum workpiece is forged on a steel core, resulting in the same geometry for the wheel bearing outer race but allowing to achieve a considerable weight reduction. By considering the most burdensome load conditions the outer race has to stand, a stress analysis is implemented in ABAQUS/Standard by applying both bolts and bearing ball forces. Based on the stress distribution, the portion of the cross-section where the load is bearable by the aluminum 6061 alloy is identified and a new steel workpiece, realized by removing the above-mentioned volume, is created. The aluminum workpiece is then hot-forged on the steel part, replacing the removed steel volume and recreating the original shape of the bearing outer race, afterwards tested with the same load conditions to verify that the combined forged part is able to withstand the same loads. To optimize the interface behavior between hot-forged A16061 and 45Cr steel, simple tension test specimens, realized by forging an aluminum workpiece on a steel plate, have been manufactured realizing different surface knurling on the steel plate and by pre-heating the aluminum part at different temperatures. With the proposed approach, the weight of the bearing outer race has been reduced of 35.8% while granting the same mechanical performances of the original component.
机译:在这项研究中,提出了一种创新的程序,通过该过程,通过该程序来制造车轮轴承的外壳,旨在减少总重量。利用径向锻造工艺,铝制工件在钢芯上锻造,导致车轮轴承外座圈的相同几何形状,但允许达到相当重量的减轻。通过考虑外部竞争的最大沉重载荷条件,通过施加螺栓和轴承球力,在ABAQUS /标准中实施应力分析。基于应力分布,识别负载由铝6061合金可用于载荷的横截面的部分,并通过去除上述体积来实现新的钢制工件。然后将铝制工件热锻造在钢部件上,更换除去的钢体积并重新创建轴承外圈的原始形状,然后用相同的负载条件测试,以验证组合的锻造部件是否能够承受相同的负载。为了优化热锻造A16061和45CR钢之间的界面行为,通过锻造钢板上的铝制工件实现的简单张力试验标本,已经制造在钢板上实现不同的表面滚花,并通过预热铝部件不同的温度。通过所提出的方法,轴承外部种族的重量减少了35.8%,同时授予原始组分的相同机械性能。

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