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Development of a Methodology for Analyzation of the Influence of Pitch Diameter Shift on the Generating Gear Grinding Process

机译:开发一种方法,用于分析俯仰直径移位对发电齿轮磨削过程的影响

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In order to improve load carrying capacity and noise behaviour, case hardened gears are usually hard finished. One possible process for hard finishing of gears is generating gear grinding, which has replaced other grinding processes in batch production of small and middle sized gears due to high process efficiency. Especially generating gear grinding of large module gears with a module higher than m_n > 8 mm can be challenging due to high process forces and the resulting excitation, which can influence gear quality negatively. Turich suggested applying a pitch diameter shift during generating gear grinding to equal out the number of contact points between the left and right flanks of the gear with the grinding tool [1]. This qualitative approach is not sufficient to predict the process behaviour because it does not take the changing radii of the curvature of the involute into account and, therefore, the changing contact conditions along the gear profile. In this paper a methodology to quantify the influence of pitch diameter shift on the generating gear grinding process using a manufacturing simulation is introduced. Additionally this methodology is validated for one manufacturing test case.
机译:为了提高负载承载能力和噪声行为,壳体淬火齿轮通常是硬的。用于齿轮的硬质表面的一种可能的方法是产生齿轮磨削,由于高工艺效率,在批量生产的小型和中尺寸齿轮的批量生产中取代了其他研磨过程。特别是通过高于M_N> 8mm的模块产生大型模块齿轮的齿轮磨削,由于高处理力和所得到的激发,这可能是挑战,从而可以产生负面的齿轮质量。 Turich建议在产生齿轮磨削过程中施加间距直径换档,以等于用磨削工具的齿轮的左侧和右侧之间的接触点数[1]。这种定性方法不足以预测过程行为,因为它不会考虑渐渐的曲率的变化半径,因此,沿着齿轮轮廓改变接触条件。在本文中,引入了一种方法,以通过使用制造模拟来量化俯仰直径移位对发电齿轮磨削过程的影响的方法。此外,该方法验证了一个制造测试案例。

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