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Study of the influence mechanism of pitch deviation on cylindrical helical gear meshing stiffness and vibration noise:

机译:螺距偏差对圆柱形螺旋齿轮啮合刚度和振动噪声的影响:

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To analyze the influence mechanism of pitch deviation on cylindrical helical gear meshing stiffness and vibration noise, the calculation methods about meshing stiffness and engaging vibration of helical gear which consider actual pitch deviations are proposed. The numbering rules of gear meshing teeth in LTCA (Load Tooth Contact Analysis) were rearranged according to the contact ratio and tooth pitch deviation, and the time-varying meshing stiffness and the axial degree of freedom were considered in the helical gear vibration model. A numerical simulation of example based on helical gears with the given pitch deviation is performed, which proves that load transmission error and RMS (root mean square) value of meshing vibration acceleration with tooth pitch deviation are bigger than that with standard pitch. The percent deviation of meshing stiffness increased with the increase in contact ratio, but decreased gradually with increase in load. The resonant frequency of vibration acceleration with pitch devia...
机译:为了分析螺距偏差对圆柱形螺旋齿轮啮合刚度和振动噪声的影响机理,提出了关于螺旋齿轮啮合刚度和接合振动的计算方法,其考虑实际间距偏差。根据接触比和齿间距偏差重新排列LTCA(负载齿接触分析)中的齿轮啮合齿的编号规则,并且在螺旋齿轮振动模型中考虑了时变啮合刚度和自由度的轴向自由度。执行基于具有给定间距偏差的螺旋齿轮的示例的数值模拟,从而证明了具有齿间距偏差的啮合振动加速度的负载传输误差和RMS(均方根)值大于标准间距的啮合振动加速度。啮合刚度偏差随着接触比的增加而增加,但随着负荷增加而逐渐降低。带音调振动加速的谐振频率......

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