临界温度条件下电液致动器的热耦合仿真

IF 0.7 Q4 ENGINEERING, MECHANICAL International Journal of Fluid Power Pub Date : 2022-09-12 DOI:10.13052/ijfp1439-9776.2336
Xudong Han, T. Minav, Mingkang Wang, Y. Fu, M. Pietola
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引用次数: 0

摘要

电液静压执行器(EHA)是一种新兴的传动技术,起源于航空航天工业,并被引入船舶、机器人、工程机械和机床等各个应用领域。尽管EHA具有效率高、易于维护、通电等优点,但它通常是独立的集成器件,散热能力较低。因此,在EHA开发过程中,热耦合模型对于每个设计方案的评估都是必要的。本文在详细设计阶段建立了EHA热特性分析的热耦合模型。电学、力学、系统级水力学、损耗和控制学科通过集总参数建模实现,而热力学和流体动力学学科通过计算流体动力学(CFD)模拟。随后,对临界温度条件进行了仿真分析,获得了动态热响应和功率响应。仿真结果可用于EHA详细设计工作的置信度,并证明了所提出的模型作为一种实用的开发工具的功能。
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Thermal Coupling Simulation of Electro-Hydrostatic Actuator Subjected to Critical Temperature Conditions
Electro-hydrostatic actuators (EHAs) are emerging transmission techniques originated from aerospace industry and being introduced to various application fields, such as ships, robots, construction machines, and machine tools. Despite the advantages of high efficiency, easy maintenance, electrified power, etc., EHAs are usually self-contained integrated devices, resulting in low heat dissipation ability. Therefore, thermal coupling models are necessary for the evaluation of each design option during the EHA development. In this paper, a thermal coupling model was established for EHA thermal characteristic analysis during the detail design stage. The disciplines of electrics, mechanics, system level hydraulics, losses, and control are implemented by lumped parameter modeling while the disciplines of thermodynamics and fluid dynamics are simulated by computational fluid dynamics (CFD). Subsequently, a simulation analysis focusing on the critical temperature conditions was conducted, and the dynamic thermal and power responses were achieved. The simulation results are applicable to gain confidence for EHA detail design work as well as proved the functions of the proposed model as a practical development tool.
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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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