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A study on prediction & validation of meshing gear pair backlash under various manufacturing and assembly errors

机译:不同制造和装配误差下啮合齿轮副间隙的预测与验证研究

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Backlash is a need for proper gear mesh but also a defect if not controlled closely. Few studies have focused on controlling backlash with some mechanical solutions that can be applied. Few other studies have shown interest in estimation of minimum / maximum variable backlash. The operating backlash of meshing gears is affected by many factors among which runouts, pitch errors and tooth thicknesses are the three most pronounced manufacturing errors. All these three parameters are the measurable ones once the gears are manufactured. Center distance and phasing of meshing gears are the examples of assembly errors which may affect the operating backlash. A software has been developed to predict likely maximum and minimum backlash of a gear pair selected arbitrarily and assembled together. For the validation of software predictions an experimental setup is needed for backlash measurements. Thus, a special test rig is designed and constructed for experimental measurements of the operating backlash under some manufacturing and assembly errors of a gear pair. Good agreements have been achieved between backlash predictions and measurements thus validating the in-house prepared software for backlash calculations.
机译:齿隙是齿轮啮合的需要,但如果控制不当,则还存在缺陷。很少有研究致力于通过一些可应用的机械解决方案来控制齿隙。很少有其他研究显示出对最小/最大可变反冲的估计感兴趣。啮合齿轮的工作间隙受到许多因素的影响,其中跳动,螺距误差和齿厚是最明显的三个制造误差。齿轮制造完成后,所有这三个参数都是可测量的。啮合齿轮的中心距和相位是可能会影响工作间隙的装配误差的示例。开发了一种软件来预测任意选择并组装在一起的齿轮对的最大和最小反冲。为了验证软件预测,需要进行反冲测量的实验装置。因此,设计并构造了一种特殊的测试装置,用于在齿轮副的某些制造和组装误差下,对工作间隙进行实验测量。齿隙预测和测量之间已经达成了良好的协议,从而验证了内部准备的用于齿隙计算的软件。

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