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Formability analysis of bearing ring produced by short-flow warm extrusion processing

机译:短流动温暖挤压加工生产轴承环的可成形性分析

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Bearing rings are the most common used machine parts. It is of great significance to reduce the processing flow of bearing rings for saving energy and material, increasing productivity. In this work, one step warm extrusion processing using ring blank as preform was proposed to form bearing ring which possesses upper and lower rings. The upper and lower rings are formed by materials reverse and forward flow during warm extrusion, respectively, and the ratio of materials reverse flow amount to forward flow amount (RRFA) determines the formability of bearing rings. In order to process bearing rings at optimum RRFA at which the upper and lower rings can be simultaneously formed, finite element models for the warm extrusion processing were established based on DEFORM-3D software. The effect of extrusion ratio, round corner radius of extrusion die, extrusion temperature, friction coefficient on the flow rules of materials was analyzed by the developed finite element models. The results show that small extrusion ratio (i.e. small outer diameter of ring blank) and large round corner radius of extrusion die enhance the material flowing into lower ring and facilitate the forming of lower ring. Extrusion temperature and friction coefficient have little effect on RRFA. Comprehensively considering the flow rules of materials, the well-formed bearing rings can be obtained when extrusion ratio is 2.33, round corner radius of extrusion die is 1.5, extrusion temperature is 700-800 °C.
机译:轴承环是最常用的二手机器零件。减少轴承环的加工流程具有重要意义,以节省能源和材料,提高生产率。在这项工作中,提出了使用环形坯料作为预制件的一步温挤出处理,形成具有上下环的轴承环。上环和下环通过在温暖挤出期间通过材料反向和正向流形成,并且材料反向流量与前向流量(RRFA)的比率决定了轴承环的可成形性。为了在最佳RRFA下处理轴承环,在可以同时形成上和下环的最佳RRFA,基于Deform-3D软件建立了用于热挤压处理的有限元模型。通过开发的有限元模型分析了挤出比,挤出率挤出模具,挤出温度,摩擦系数对材料的流动规则的影响。结果表明,小的挤出比(即环形的小外径)和大圆角挤出模具的挤出模具增强了流入下环的材料,并促进了下环的形成。挤出温度和摩擦系数对RRFA几乎没有影响。全面考虑材料的流动规则,当挤出比为2.33时,可以获得良好的轴承环,挤压模具的圆角半径为1.5,挤出温度为700-800°C。

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