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Twin symmetry roll axial rolling: new method of plastic forming profiles demonstrated using manufacture of spiral bevel gears

机译:双对称辊轴向轧制:利用螺旋锥齿轮制造证明了新的塑性成形轮廓方法

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摘要

When using conventional manufacturing methods for machining gears, the percentage of stock material utilisation in the finished article is low due to the amount of swarf removed during machining. In addition, the machining process itself may result in low tooth strength. Adopting a plastic forming method to produce gear forms can greatly enhance the mechanical properties of the product. The size of the automotive transmission driven by a rear axle spiral bevel gear which is used as a case study in this paper is larger than that usually manufactured by the plastic forming method. Objects of this size require high capacity hot forming equipment, and even then it is difficult to obtain a full profile. In this paper, a new method of plastic forming profiles: twin symmetry roll axial rolling is described using a spiral bevel gear as a case study. The technology was analysed by producing a three-dimensional model of the spiral bevel gear, and finite element analysis was used to simulate the process. It can be seen that the teeth were completely filled with a well defined outline and only a small amount of horizontal overfilling and vertical flash occurred because there was small contact area between the blank and rolls which minimised the rolling force.
机译:当使用传统的制造方法来加工齿轮时,由于在加工过程中去除的切屑的量,最终产品中原料利用率的百分比很低。另外,机加工过程本身可能导致低的牙齿强度。采用塑性成型方法生产齿轮形式可以大大提高产品的机械性能。本文以案例研究为例,由后桥螺旋锥齿轮驱动的汽车变速器的尺寸要比通常通过塑性成型方法制造的尺寸大。这种尺寸的物体需要高容量的热成型设备,即使如此,也很难获得完整的轮廓。在本文中,以螺旋锥齿轮为例,介绍了一种新的塑性成形方法:双对称辊轴向轧制。通过生成螺旋锥齿轮的三维模型来分析该技术,并使用有限元分析来模拟该过程。可以看出,齿完全被轮廓清晰的填充,并且仅发生少量的水平过度填充和垂直飞边,这是因为坯料与轧辊之间的接触面积较小,从而使轧制力最小。

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