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Tool design for inner race cold forging with skew-type cross ball grooves

机译:带斜交球槽的内圈冷锻工具设计

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The inner race of CV (Constant Velocity) joints with asymmetric six cross ball grooves is an important load-supporting automobile part that transmits torque between the transmission and a driven wheel. This metal component has conventionally been produced by a machining sequence that includes material removal. As an alternative, a cold forging procedure using a semi-closed die is presented. The proposed cold forging is composed of six longitudinally segmentalized cross-ball grooving dies, a die holder, and forging punches, which were chosen with consideration of their operation mechanisms. Process design and detailed tool design have been conducted. To ensure the appropriateness of the suggested process with respect to deformation behavior, a 3-dimensional finite element simulation including forging load prediction is carried out, and experimental investigations are also performed using SCr420H steel as the initial billet material. Unexpected fracture failure of the die occurred due to the asymmetric geometry of the segmentalized cross ball grooving die, in response to which modification of the die geometry was carried out based on the results from the structural integrity evaluation, thereafter, the inner race was appropriately produced using the modified die. The dimensional accuracy at three critical cross sections of the forged inner race is investigated and compared. It is shown that the proposed semi-closed die cold forging could be successfully applied to the production of the inner race with the six skew-type cross ball grooves, and achieved with the dimensional variation under about 2.0%.
机译:具有不对称的六个十字球凹槽的CV(恒定速度)万向节的内圈是重要的负载汽车部件,在变速器和从动轮之间传递扭矩。该金属部件通常通过包括材料去除的加工程序来生产。作为替代方案,提出了使用半封闭模具的冷锻程序。拟议的冷锻由六个纵向分段的十字球开槽模具,一个模具支架和锻造冲头组成,它们是根据它们的操作机制来选择的。已经进行了工艺设计和详细的工具设计。为了确保建议的工艺在变形性能方面的适当性,进行了包括锻造载荷预测在内的三维有限元模拟,并且还使用SCr420H钢作为初始坯料进行了实验研究。由于分段的十字球开槽模具的几何形状不对称而导致模具的意外断裂失败,对此,根据结构完整性评估的结果对模具几何形状进行了修改,此后,适当地产生了内圈使用修改后的模具。研究并比较了锻造内圈三个关键横截面的尺寸精度。结果表明,所提出的半闭口模锻件可以成功地应用于带有六个斜交球槽的内圈的生产中,并且尺寸偏差在2.0%以下。

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