用于液压阀和系统性能监控的传感器技术:挑战与展望

Jingqi Liu, Chenggang Yuan, Lukas Matias, Chris Bowen, Vimal Dhokia, Min Pan, James Roscow
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引用次数: 0

摘要

液压流体动力系统对运输、重工业和机器人等一系列工程应用至关重要。该行业规模庞大,据估计,液压泵的能耗占欧盟总能耗的 15%,而流体动力系统的平均效率仅为 22%。液压系统的数字化在能效、性能、减少维护和自动化方面具有显著优势。然而,这需要在集成智能传感技术方面取得进展,以提供有关液压元件运行和健康状况的实时反馈。本综述详细介绍了液压流体动力研究的发展趋势,并概述了与这些系统的数字化及其在工业 4.0 框架内的集成有关的进展。文中讨论了相关传感器技术的基本原理以及将传感器集成到液压系统中的创新方法。此外,还回顾了通过采集压力波纹为传感器和相关电子设备供电的方法。还对该领域的未来发展方向进行了展望,包括评估利用先进制造技术(尤其是快速成型制造技术)促进传感器成功集成到液压流体动力系统中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Sensor Technologies for Hydraulic Valve and System Performance Monitoring: Challenges and Perspectives

Sensor Technologies for Hydraulic Valve and System Performance Monitoring: Challenges and Perspectives

Hydraulic fluid power systems are essential for a range of engineering applications such as transportation, heavy industry, and robotics. The scale of the industry is such that hydraulic pumps are estimated to account for 15% of all the energy consumption in the European Union and yet the average efficiency of fluid power systems is only 22%. The digitalization of hydraulic systems offers significant advantages in terms of energy efficiency, performance, reduced maintenance, and automation. However, this requires advances in the integration of smart sensing technologies to provide real-time feedback on the operation and health of hydraulic components. This review details developing trends in hydraulic fluid power research and provides an overview of progress related to the digitalization of these systems and their integration within an Industry 4.0 framework. The fundamentals of relevant sensor technologies and innovative approaches for integrating sensors into hydraulics systems are discussed. Methods to deliver power to the sensors and associated electronics through harvested pressure ripples are also reviewed. An outlook with respect to future directions in this field is given, including an assessment of the potential for exploiting advanced manufacturing technologies, in particular additive manufacturing, to facilitate successful sensor integration into hydraulic fluid power systems.

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