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AN INVESTIGATION ON THE DESIGN OF FORMATE AND GENERATE FACE MILLED HYPOID GEARS

机译:甲酸盐设计设计的调查

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Hypoid gears are transmission elements that transfer power and moment between shafts whose axes do not intersect. They are similar in structure to spiral bevel gears. However, there are many advantages compared to spiral bevel gears in terms of load carrying capacity and rigidity. Hypoid gear pairs are mostly used as powertrain on the rear axles of cars and trucks. Hypoid gears are manufactured by two essential methods called face-milling and face-hobbing, and there are mainly two relative kinematic movements (Formate® and Generate). In this study, the gears produced with the Face-milling method are discussed. Face milled hypoid gears can be manufactured with both Formate® and Generate, while pinions can only be manufactured with the Generate method. The most crucial factor that determines the performance of hypoid gears is the geometry of hypoid gears. The gear and pinion geometry is directly dependent on the tool geometry, machine parameters, and relative motion between the cradle and the workpiece. The gear geometry determines the contact shape and pressure during power transmission. In this study, the mathematical equation of the cutting tool is set. After that, using differential geometry, coordinate transformation, and the gearing theory, the mathematical equation of hypoid gear is obtained.
机译:支撑齿轮是传输元件,其传输轴之间的轴之间的功率和时刻不相交。它们的结构类似于螺旋锥齿轮。然而,与螺旋锥齿轮的负载承载能力和刚性相比,存在许多优点。支撑齿轮齿轮对主要用作汽车和卡车后轴上的动力系。双杠齿轮由两个称为面部铣削和面部困境的必要方法制造,主要有两种相对运动运动(Formate®并产生)。在该研究中,讨论了用面铣方法产生的齿轮。面部铣削双曲面齿轮可以用Feedate®制造并产生,而小齿轮只能用生成方法制造。确定支撑齿轮性能的最关键因素是双瓦齿轮的几何形状。齿轮和小齿轮几何形状直接依赖于工具几何形状,机器参数和摇篮和工件之间的相对运动。齿轮几何形状决定了电力传输过程中的接触形状和压力。在这项研究中,设定了切削工具的数学方程。之后,使用差分几何形状,坐标变换和传动理论,获得了支撑齿轮的数学方程。

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