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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Design of double-crowned tooth geometry for spiroid gear produced by precision casting process
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Design of double-crowned tooth geometry for spiroid gear produced by precision casting process

机译:精密铸造工艺生产螺旋齿轮双冠状齿几何设计

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摘要

A novel double-crowned tooth geometry is proposed by the application of ease-off topography for spiroid gear manufactured by precision casting process, with the goals of localizing the bearing contact and obtaining a perfect function of transmission errors. The modified tooth surface is applied as the reference geometry to machine the die cavity geometry that will produce such geometry of the gears. The tooth geometry of crowned gear was achieved first from a pre-designed controllable function of transmission errors along the desired contact path. Then, the desired ease-off topography along the contact line is designed and calculated computationally from the given mathematic model of surface modification. The geometry of double-crowned spiroid gear could be reconstructed by superimposing the ease off of contact line direction on the profile-crowned tooth surface. The article provides numerical examples to validate the feasibility of ease-off modification methodology that was used to produce the double-crowned tooth geometry for the gears, while tooth contact analysis is performed computationally to investigate the stability of bearing contact and function of transmission errors to alignment.
机译:采用精密铸造工艺制造的螺旋形齿轮的缓和齿轮的缓解形貌提出了一种新型的双冠状齿几何形状,采用了轴承接触的目标,并获得了传输误差的完美功能。改进的齿面作为参考几何形状施加到机器上的模腔几何形状,其将产生齿轮的这种几何形状。首先从沿期望的接触路径的预先设计的传输误差的预先设计的可控函数实现冠状齿轮的齿几何形状。然后,从给定的表面修改的给定数学模型计算和计算沿着接触线的所需的便于放松地形。通过在轮廓凸起的齿面上叠加接触线方向的易于关闭,可以重建双冠螺旋状齿轮的几何形状。该文章提供了数值例子,以验证用于生产齿轮的双冠齿几何形状的缓和修改方法的可行性,而牙齿接触分析是在计算上进行的,以研究轴承接触的稳定性和传输误差的稳定性结盟。

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