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Review article: Research on coupled vibration of multi-engine multi-gearbox marine gearing

机译:综述文章:多引擎多变速箱船舶驾驶耦合振动研究

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摘要

The type and working principle of multi-engine multi-gearbox gearing are introduced. The global dynamic modeling method, based on the generalized finite element theory, and the layered dynamic modeling method, based on the idea of whole first and then partial are proposed, and the dynamic models of three operation modes in the four engines with two shafts are established. The effects of coupling, rotation speed, configuration and power loss on the dynamic response of the system are studied by using the dynamic model. The research results show that the coupling vibration of multi-engine multi-gearbox gearing is obvious at low speed, and the coupling vibration weakens with the increase in speed. Reducing the coupling stiffness can weaken the coupling vibration of the system. The symmetrical structure of the transmission system has the same dynamic response at the symmetrical position. Meshing friction has little effect on the dynamic response of the system. The more power flowing through the cross-connect gearbox, the greater the system power loss. This research provides theoretical support for the low-vibration design of multi-engine multi-gearbox marine gearing and has a positive significance for understanding the coupled vibration characteristics of complex gear systems.
机译:介绍了多引擎多齿轮箱传动装置的类型和工作原理。基于广义有限元理论的全局动态建模方法,基于整体第一然后部分的思想,以及两个轴的四个发动机中的三种操作模式的动态模型已确立的。通过使用动态模型研究了耦合,转速,配置和功率损耗对系统动态响应的影响。研究结果表明,多发动机多齿轮箱齿轮的耦合振动在低速下显而易见,耦合振动随速度的增加而削弱。减少耦合刚度可以削弱系统的耦合振动。传输系统的对称结构在对称位置具有相同的动态响应。啮合摩擦对系统的动态响应几乎没有影响。流过交叉连接齿轮箱的功率越大,系统功率损耗越大。本研究为多发动机多变速箱船舶驾驶器的低振动设计提供了理论支持,并且对理解复杂齿轮系统的耦合振动特性具有积极意义。

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