Energy dissipation in the variable stiffness couplings with a serpentine spring at the torsional vibrations

S. Palochkin, M.A. Karnaukhov, M. A. Lyubchenko, P. Rudovskiy
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Abstract

The paper presents results of the theoretical research of the structural vibration damping in the variable stiffness couplings with a serpentine spring, which are rather widely used in the drives of the heavy engineering and machine tool products exposed to the vibration loads. When performing dynamic calculations of the drives of such machines, it is necessary to know the dissipative characteristics of their components and parts, including the indicated couplings. The paper considers the case of torsional harmonic vibrations characteristic for the coupling drive with a serpentine spring associated with twisting of the shafts connected by this coupling due to the attached parts imbalance. Quantitative characteristics of the torsional vibration energy dissipation in the couplings under consideration were studied and determined using the well-known method for estimating the vibration energy losses due to friction during slipping in the compressed parts’ contact. Mathematical model of the torsional vibration damping in a coupling was developed, which makes it possible to determine its quantitative characteristics in the form of vibration energy dissipation per cycle and the absorption coefficient depending on the coupling design parameters and the vibration process. The proposed model is implemented as an interactive application program in the MATLAB computer environment.
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带蛇形弹簧的变刚度联轴器在扭转振动下的能量耗散
本文介绍了蛇形弹簧变刚度联轴器结构减振的理论研究结果。蛇形弹簧变刚度联轴器广泛应用于重型工程和机床产品的振动驱动中。在对此类机器的驱动器进行动态计算时,有必要了解其组件和部件的耗散特性,包括指示的联轴器。本文研究了蛇形弹簧联轴器的扭转谐波振动特性,该联轴器所连接的轴由于所附零件的不平衡而发生扭转。研究了所考虑的联轴器中扭振能量耗散的定量特性,并采用了众所周知的估计被压缩部件接触滑动时摩擦引起的振动能量损失的方法来确定。建立了联轴器扭振阻尼的数学模型,根据联轴器设计参数和振动过程,确定了其单周期振动耗能和吸振系数的定量特征。该模型在MATLAB计算机环境下作为交互式应用程序实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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