IMPROVEMENT OF ACOUSTIC PARAMETERS OF HYDRAULIC DRIVES

A. Puzanov, Sergey Kurdubanov
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Abstract

The study objective is to improve the operational characteristics of hydraulic drives. The task to which the paper is devoted is to simulate operating processes and minimize the vibrations of the drive hydraulic and mechanical components based on the analysis of the main types of generators and dissipators of acoustic vibrations in hydraulic systems. Research methods: analysis of complex multidisciplinary models of hydraulic machine operating processes. Macro-models provide solutions to problems at the system level. Micro-models provide an analysis of the operating processes of hydraulic drives, taking into account the influence of internal and external factors of impact operating, the interaction of components and parts, changes in structural and technological parameters. The novelty of the work is in the substantiation of the influence of operational factors, structural and technological parameters on the vibration processes that form the acoustic characteristics of the hydraulic drive. The results of the study are presented on the example of reducing the vibration processes of an axial plunger hydraulic machine. Fluctuations in the operating pressure are given in the indicator diagram. The vibration amplitude depends on the dead volume of the piston chamber, as well as due to its under-filling operation at low temperatures. Also, based on the simulation results, zones of energy dissipation of the working fluid are localized to reduce vibration processes. Conclusions: the obtained results of modeling various measures to reduce the vibration processes will allow to localize and reduce the negative factors of noise generation.
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液压传动声学参数的改进
研究的目的是提高液压传动的工作特性。本文的任务是在分析液压系统声振动产生和消散的主要类型的基础上,模拟液压和机械驱动部件的工作过程,并尽量减少振动。研究方法:分析液压机运行过程的复杂多学科模型。宏观模型为系统级的问题提供解决方案。微观模型分析了液压传动的工作过程,考虑了内部和外部因素对工作的影响、零部件的相互作用、结构和技术参数的变化。这项工作的新颖之处在于证实了操作因素、结构和工艺参数对形成液压传动声学特性的振动过程的影响。以轴向柱塞液压机的减振过程为例,给出了研究结果。操作压力的波动在指示图中给出。振动幅度取决于活塞腔的死体积,以及它在低温下的欠充注操作。根据仿真结果,对工作流体的能量耗散区域进行了局部化,以减小振动过程。结论:对各种减少振动过程的措施进行建模得到的结果将允许定位和减少噪声产生的负面因素。
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