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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Effect of particle restitution coefficient on high-power gear transmission with dynamic continuum and non-continuum coupling
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Effect of particle restitution coefficient on high-power gear transmission with dynamic continuum and non-continuum coupling

机译:粒子恢复系数对动态连续体和非连续耦合的高功齿轮传输的影响

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High-power gears are widely used in various engineering fields. A gear transmission system is an extremely complex elastic system that produces complex vibrations under internal and external excitation. In this study, the excitation value in the gear was obtained based on the dynamic characteristics, stiffness, and error excitation, which were used as the input signals of the discrete element analysis. The dynamic model of the gear transmission system was established using the discrete element method. Meanwhile, the gear transmission energy was dissipated through the configuration of a particle damper in the gear. The continuous-discontinuous dynamic coupling method, which is the equivalent displacement mapping of gear contact loads from the discontinuous domain to the continuous element node, was realised, and the transformation of the local coordinates to the global coordinates was conducted. Finally, the effect of the particle restitution coefficient on the vibration reduction of gearboxes at various speeds was explored and verified through an experiment. At low rotating speeds, the best vibration reduction effect was achieved when the particle restitution coefficient was 0.2. At high rotating speeds, the best restitution coefficient was 0.7.
机译:高功率齿轮广泛用于各种工程领域。齿轮传动系统是一种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。在该研究中,基于动态特性,刚度和误差激发获得齿轮中的激励值,其用作离散元件分析的输入信号。使用离散元件法建立齿轮传动系统的动态模型。同时,通过齿轮中的粒子阻尼器的构造来消散齿轮传动能量。实现了连续不连续的动态耦合方法,其是从不连续域到连续元件节点的齿轮接触载荷的等效位移映射,并进行了将局部坐标转换为全局坐标。最后,通过实验探讨了粒子恢复系数对各种速度以各种速度的齿轮箱减振的影响。在低旋转速度下,当颗粒恢复系数为0.2时,实现了最佳减振效果。在高旋转速度下,最佳恢复系数为0.7。

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