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Research on Vibration Reduction Characteristics of Continuum and Noncontinuum System on Coupling for High-Power Gear Transmission Based on Particle Damping Materials

机译:基于粒子阻尼材料的高功齿轮传输耦合振动减振特性研究

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High-power gears are widely used in various engineering fields. The gear transmission system is an extremely complex elastic system, which produces complex vibration under internal and external excitation. For the vibration and noise problems caused by transmission error, a discrete element and finite coupling method based on the particle filling rate is proposed. Firstly, the gear dynamic model was established, and the particle damper was installed in the gear to reduce the vibration of the gear. Secondly, through the coupling process, the contact force and contact position between the noncontinuous medium and the continuous medium were correctly transferred to the corresponding nodes of the finite element analysis model. Then, the equivalent displacement mapping of the contact loads’ node of the gear was realized, and the transformation of the local coordinate to the global coordinate was carried out. Finally, by combining theoretical analysis with experimental verification, the influence of the filling rate of damping particles on the vibration reduction effect of the gearbox under different working conditions was studied. The 2?mm tungsten particles were selected, and the particle damper had the best damping effect when the filling rate was 88%.
机译:高功率齿轮广泛用于各种工程领域。齿轮传动系统是一个极其复杂的弹性系统,在内部和外部激励下产生复杂的振动。对于由透射误差引起的振动和噪声问题,提出了一种基于颗粒灌装速率的离散元件和有限耦合方法。首先,建立齿轮动态模型,粒子阻尼器安装在齿轮中以减少齿轮的振动。其次,通过耦合过程,非连续介质和连续介质之间的接触力和接触位置被正确地传递到有限元分析模型的相应节点。然后,实现了档位的触点负载节点的等效位移映射,并进行了对全局坐标的局部坐标的变换。最后,通过将理论分析与实验验证相结合,研究了阻尼颗粒灌装速率对不同工作条件下齿轮箱振动效应的影响。选择2毫克钨颗粒,当填充速率为88%时,颗粒阻尼器具有最佳阻尼效果。

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