Research on the Marine Shafting Torsional Vibration with Gears Transmission

Xiang Xu, Rui-ping Zhou, Mengsheng Wang
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引用次数: 3

Abstract

Abstract The torsional vibration of marine propulsion shafting has been studied for more than a century. With abundant research achievements and experiences, a systematic approach of vibration calculation has been put forward for ship industrial applications. However, literature review indicates that when processing the gear transmission in the shaft line, the meshing motion has been treated as rigid mass in the equivalent equation of energy conservation, which leads to a certain error between the theoretical and experimental results of torsional vibration. Hence, to improve the calculation accuracy, a new method which considers the gear meshing stiffness is proposed in this paper. By taking the propulsion shafting of 3700DWT IMO TYPE II CHEMICAL TANKER as the research object, the forward computing formula of the shaft torsional vibration was first obtained using gear system dynamics theory. Then, the gear mesh stiffness was derived from the length variation of gear contact line. Finally, the free torsional vibration frequency was calculated considering the influence of the gear meshing force. The real marine test was implemented to verify the proposed method. The calculation results show that the new approach can track the actual torsional vibration more precisely than that without taking the gear meshing impact into account.
齿轮传动船舶轴系扭振研究
船舶推进轴系的扭振问题已经研究了一个多世纪。通过丰富的研究成果和经验,提出了一种适合船舶工业应用的系统的振动计算方法。然而,文献综述表明,在处理轴线上齿轮传动时,在等效能量守恒方程中将啮合运动视为刚性质量,导致扭转振动的理论结果与实验结果存在一定误差。因此,为了提高计算精度,本文提出了一种考虑齿轮啮合刚度的新方法。以3700DWT IMO II型化工船推进轴系为研究对象,首先利用齿轮系统动力学理论得到了轴系扭转振动的正算公式。然后,根据齿轮接触线的长度变化,推导出齿轮啮合刚度。最后,考虑齿轮啮合力的影响,计算了自由扭振频率。通过实际船舶试验验证了该方法的有效性。计算结果表明,该方法比不考虑齿轮啮合冲击的方法能更精确地跟踪实际扭转振动。
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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