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A Methodology to Experimentally Investigate the Impact of Wobble Errors on the Contact Pattern and Static Transmission Error of Helical Gear Pairs

机译:实验研究摆动误差对斜齿轮副的接触模式和静态传递误差的影响的方法

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For a gear pair, both the contact pattern and the transmission error (TE) significantly impact durability and fatigue life. Design and manufacturing processes are often aimed at improving the contact pattern and reducing the overall TE. Other errors, such as runout and wobble, are often induced during the installation of power transmission systems, and they can alter the contact pattern and TE of an otherwise well-designed gear pair. This study provides a methodology to experimentally investigate the impact of wobble errors on the contact pattern and static transmission error (STE) of helical gears. It first provides a description of the modifications to an existing test machine. Next, it describes the gear specifications, preliminary testing matrix, data acquisition and processing procedure, as well as the experimental results obtained with regards to both the contact pattern and STE. The following are observed while describing the experimental results. For a test with no wobble and no runout, the contact pattern remains the same at every rotational position. However, by introducing even a small amount of wobble, the contact will shift from one side of the face width of the gear to the opposite side of the face width of the gear within one revolution. Introduction of wobble may increase the STE and sideband activity around gear mesh harmonics, especially as torque increases. Yet the modest increases in STE and sideband activity seen with the introduction of wobble are not enough to make definitive conclusions. The feasibility of the modified test setup has been demonstrated, and preliminary results have been presented. However, additional data collection should be completed in order to study the impact of runout and wobble on both spur and helical gear pairs with various microgeometry modifications and manufacturing errors.
机译:对于齿轮副,接触方式和传动误差(TE)都会显着影响耐用性和疲劳寿命。设计和制造过程通常旨在改善接触方式并降低整体TE。在动力传动系统的安装过程中,经常会引起其他错误,例如跳动和摆动,它们会改变原本设计良好的齿轮副的接触方式和TE。这项研究提供了一种方法,可以通过实验研究摆动误差对斜齿轮的接触模式和静态传递误差(STE)的影响。首先提供对现有测试机的修改的描述。接下来,它描述了齿轮规格,初步测试矩阵,数据采集和处理程序,以及有关接触模式和STE的实验结果。在描述实验结果时会观察到以下内容。对于没有摆动和跳动的测试,接触模式在每个旋转位置都保持不变。然而,通过引入甚至很小的摆动,接触将在一圈内从齿轮的齿面宽度的一侧转移到齿轮的齿面宽度的相反侧。摆动的引入可能会增加齿轮啮合谐波周围的STE和边带活动,尤其是随着扭矩的增加。然而,随着摆动的引入,STE和边带活动的适度增加还不足以得出明确的结论。已经证明了修改后的测试设置的可行性,并提供了初步结果。但是,应完成其他数据收集工作,以研究跳动和摆动对正齿轮和斜齿轮副的影响,并会进行各种微几何修改和制造误差。

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