Design and Implementation of a Pump and Valve Integrated System Inspired by Bivalve

Lei Cui, Haomin Wu, Bintang Yang
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引用次数: 0

Abstract

Abstract: Pumps and valves are generally indispensable parts of the hydraulic system and a component that integrates the functions of pumps and valves plays an important role in the integration and lightweight development of hydraulic systems. In this paper, a magnetically actuated pump and valve integrated system is proposed. Inspired by bivalve, the driving structure of the pump and valve integrated system is designed for jet propulsion. This design intends to actively control flow of a pipe by switching the open and close state of the system. Different from some biomimetic bivalves driven by rotating motors, the proposed integrated pump and valve system is characterized with direct drive by shell-shaped magnetic actuators. Based on the equivalent magnetic charge modelling method, a theoretical model of the magnetic torque of the permanent magnet is established for the analysis and driving mechanism design. The numerical calculation results of the theoretical model are consistent with the finite element simulation results. Additionally, the magnetic torque of different arrangements of permanent magnets are compared through electromagnetic simulation. Motion analysis is carried out by discretizing time. Finally, experiment for flow control is conducted to verify the effectiveness of the proposed pump and valve system.
受Bivalve启发的泵阀集成系统的设计与实现
摘要:泵和阀一般是液压系统不可缺少的组成部分,集泵和阀功能于一体的元件在液压系统的集成化和轻量化发展中起着重要的作用。本文提出了一种电磁驱动泵阀集成系统。受双壳阀的启发,泵阀集成系统的驱动结构设计用于喷气推进。本设计旨在通过切换系统的开启和关闭状态来主动控制管道的流量。不同于一些由旋转电机驱动的仿生双壳类,本文提出的泵阀集成系统采用壳体形磁致动器直接驱动。基于等效磁荷建模方法,建立了永磁体磁转矩的理论模型,用于分析和驱动机构设计。理论模型的数值计算结果与有限元仿真结果吻合较好。此外,通过电磁仿真比较了不同永磁体布置方式的磁转矩。运动分析是通过离散时间进行的。最后,进行了流量控制实验,验证了所提泵阀系统的有效性。
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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