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ENERGY DISSIPATION OF DAMPER RINGS FOR THIN-WALLED GEARS

机译:薄齿齿轮阻尼环的能量耗散

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摘要

When the gear generates a nodal mode shape vibration, there are two directions of possible relative displacement between the corresponding points on the contact surface of the damper ring and the damper groove, which are circumferential direction and axial direction respectively. In this paper, the relative displacement of the damper ring and the damper groove are considered in two directions, and the calculation method of energy dissipation is proposed. When the nodal vibration occurs in the gear, due to the existence of the strain difference between the damper ring and the damper groove on the contact surface, circumferential slip of partial area would occur. The energy dissipation in one vibration cycle is accurately determined by analytical solution. Since the aviation gears are mostly thin-walled structures, the axial displacement is large when resonance occurs. Based on the discrete damper ring model which considers interaction between every segment of the ring, the first-order harmonic balance method is used to calculate the axial displacement of the damper ring under the given gear rim amplitude. And then the hysteresis curve area of each discrete segment on the contact surface is summed to obtain energy dissipation in one vibration cycle. In this paper, based on the energy method, the damping effect of the damper ring is predicted. The damping ratio curve obtained by energy dissipation in two directions is compared and analyzed. The occurrence conditions of the two directions of possible relative displacement and the influence of the damper ring parameters on both situations are summarized.
机译:当齿轮产生节点模式形状的振动时,在阻尼环和阻尼槽的接触表面上的对应点之间存在两个可能的相对位移方向,分别是圆周方向和轴向。本文从两个方向考虑阻尼环和阻尼槽的相对位移,提出了能量耗散的计算方法。当齿轮中发生节点振动时,由于阻尼环和阻尼槽在接触面上的应变差的存在,会发生部分区域的周向滑动。通过分析解决方案可以准确确定一个振动周期中的能量耗散。由于航空齿轮大多是薄壁结构,因此在发生共振时轴向位移很大。基于考虑了环各段之间相互作用的离散阻尼环模型,使用一阶谐波平衡法来计算在给定齿轮轮辋振幅下阻尼环的轴向位移。然后,将每个离散段在接触表面上的磁滞曲线面积求和,以在一个振动周期中获得能量耗散。本文基于能量方法,对阻尼环的阻尼效果进行了预测。比较和分析了通过两个方向的能量耗散获得的阻尼比曲线。总结了可能发生相对位移的两个方向的发生条件,以及阻尼环参数对两种情况的影响。

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