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OPTIMIZATION OF FACE CONE ELEMENT FOR SPIRAL BEVEL AND HYPOID GEARS

机译:螺旋锥和双瓦齿轮面锥形元件的优化

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In the blank design of spiral bevel and hypoid gears, the face cone is defined as an imaginary cone tangent to the tops of the teeth. Traditionally, the face cone element or generatrix is a straight line. On the other hand, the tooth root lines which are traced by the blade tips are normally not straight lines. As a result, the tooth top geometry generally does not fit the mating member's real root shape, providing an uneven tooth root-tip clearance; additionally, in some cases root-tip interference between the tooth tip and the root tooth surfaces of the mating gear members may be observed. To address this issue, this paper describes a method of determining an optimized face cone element for spiral bevel and hypoid gears. The method is based on the incorporation of calculation of tooth surface and root geometries, the conjugate relationship of the mating gear members, the ease-off topography, and the tooth contact analysis. The resulting face cone element may not be a straight line but generally an optimized curve that, in addition to avoidance of the interference, offers maximized contact ratio and even tooth root-tip clearance. Manufacturing of bevel gear blanks with a curved face cone element can be implemented by using computer numerically controlled (CNC) machines.
机译:在螺旋锥和双瓦齿轮的空白设计中,面锥被定义为与牙齿顶部切相的假想锥形。传统上,面锥形元件或perentatrix是一条直线。另一方面,由刀片尖端追踪的齿根线通常不是直线。结果,齿顶几何形状通常不适合配合构件的真正形状,提供不均匀的齿根尖端间隙;另外,在一些情况下,可以观察到配合齿轮构件的根尖和根齿表面之间的根尖干涉。为了解决这个问题,本文介绍了一种确定用于螺旋斜面和双瓦齿轮的优化面锥形元件的方法。该方法基于齿面和根几何形状的计算,配合齿轮构件的缀合关系,缓解形貌和齿接触分析。所得到的面锥形元件可以不是直线,而是通常是优化的曲线,除了避免干扰之外,还提供最大化的接触比甚至牙齿根尖端间隙。具有弯曲面锥形元件的锥齿轮坯料的制造可以通过使用计算机数控(CNC)机器来实现。

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