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Influence of Asymmetric Mesh Stiffness on Dynamics of Spiral Bevel Gear Transmission System

机译:非对称啮合刚度对螺旋锥齿轮传动系统动力学的影响

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An 8-DOF (degrees-of-freedom) nonlinear dynamic model of a spiral bevel gear pair which involves time-varying mesh stiffness, transmission error, backlash, and asymmetric mesh stiffness is established. The effect of the asymmetric mesh stiffness on vibration of spiral bevel gear transmission system is studied deliberately with numerical method. The results show that the mesh stiffness of drive side has more effect on dynamic response than those of the coast side. Only double-sided impact region is affected considerably by mesh stiffness of coast side while single-sided impact and no-impact regions are unchanged. In addition, the increase in the mesh stiffness of drive side tends to worsen the dynamic response of the transmission system especially for light-load case.
机译:建立了螺旋锥齿轮副的8自由度非线性动力学模型,该模型涉及时变啮合刚度,传动误差,齿隙和非对称啮合刚度。用数值方法研究了非对称啮合刚度对螺旋锥齿轮传动系统振动的影响。结果表明,驱动侧的网格刚度对动力响应的影响比海岸侧更大。海岸侧的网格刚度仅对双面冲击区域有较大影响,而单面冲击区域和无冲击区域则保持不变。另外,驱动侧的啮合刚度的增加趋向于恶化传动系统的动态响应,特别是对于轻载情况。

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