Experimental Verification of An Electro-Hydraulic Actuation System Driven by An Integrated Electro-Hydraulic Unit

IF 0.7 Q4 ENGINEERING, MECHANICAL
Shaoyang Qu, Federico Zappaterra, A. Vacca, Zifan Liu, Enrique Busquets
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引用次数: 2

Abstract

This paper proposes an electro-hydraulic actuator (EHA) system, and a novel-designed electro-hydraulic unit (EHU) consisting of a fixed-displacement hydraulic gear machine and a variable-speed electric machine. The novel EHU design integrates an electric machine and a hydraulic machine in a single housing, targeting optimal compactness, power density, and component reduction. The EHA system features an open circuit design, where hydraulic hoses connect the EHU with a tank, a valve manifold, and the hydraulic cylinder. In this way, the proposed EHA technology can be used to implement distributed hydraulic actuation in a vehicle without requiring changes to the hydraulic actuators or at the overall layout of the hydraulic components with respect to the original vehicle design. A dedicated test rig is developed to verify the performance of the proposed EHA system. The efficiency of the EHA is measured in a steady state and under a realistic duty cycle of a commercial compact loader. The efficiency of the EHA system based on the measurements on the test rig can reach 54% with up to 20 kN load and 6 kW power level. Furthermore, the EHU is implemented on the reference machine to drive the boom function. Preliminary results on the performance of the EHU show an efficiency of up to 68% under different loading conditions.
集成电液单元驱动电液作动系统的实验验证
本文提出了一种电液执行器(EHA)系统,以及一种由固定排量液压齿轮机和变速电机组成的新型电液单元(EHU)。新型EHU设计将电机和液压机集成在一个外壳中,旨在实现最佳紧凑性、功率密度和部件减少。EHA系统采用开路设计,液压软管将EHU与油箱、阀歧管和液压缸连接。通过这种方式,所提出的EHA技术可以用于在车辆中实现分布式液压致动,而不需要相对于原始车辆设计改变液压致动器或液压部件的总体布局。开发了一个专用的试验台来验证所提出的EHA系统的性能。EHA的效率是在商业紧凑型装载机的稳定状态和实际工作循环下测量的。根据试验台上的测量结果,EHA系统的效率可以达到54%,负载高达20kN,功率水平为6kW。此外,EHU在参考机器上实现,以驱动动臂功能。EHU性能的初步结果表明,在不同的负载条件下,效率高达68%。
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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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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