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Design and analysis of a bi-stable linear force actuator for directly-driven metering pump

机译:直接驱动计量泵的双稳态线性致动器的设计与分析

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摘要

As a kind of energy converter, high quality electromagnetic linear actuator is the focus of the research. A new flow regulation method for metering pump is proposed, a novel bi-stable linear force actuator (BLFA) is investigated corresponding to reduce power consumption and enhance drive capability. A coupling model including a loss model, an electromagnetic model and a mechanical model was constructed. The influence rule of the structural parameters on force characteristic was investigated. Through structural parameter design, force versus position characteristic is high-linearity in working area and the minimum threshold value of drive force (start-up force) reaches 139 N without spring mechanism, which effectively reduces the device's volume. Besides, power consumption in holding phase is decreased because of holding force. Moreover, an innovative pulse current excitation mode was adopted to reduce power consumption further. Experimental and simulation results validate the static and dynamic performance of BLFA. The circulating power consumption of prototype is 3.1 J, which does not change with the working frequency and has decreased by 34% compared with the traditional excitation mode. Additionally, the advantage of BLFA's performance was also verified with directly-driven metering pump flow characteristic experiment.
机译:作为一种能量转换器,高质量的电磁线性执行器是研究的重点。提出了一种用于计量泵的新流量调节方法,研究了一种新的双稳态线性力致动器(BLFA),对应于降低功耗并增强驱动能力。构建了包括损耗模型,电磁模型和机械模型的耦合模型。研究了结构参数对力特征的影响规律。通过结构参数设计,力与位置特性是工作区域的高线性性,并且驱动力(启动力)的最小阈值(启动力)达到139n,没有弹簧机构,有效地降低了设备的体积。此外,由于保持力,保持阶段的功耗减少。此外,采用了一种创新的脉冲电流激励模式来降低功耗。实验和仿真结果验证了BLFA的静态和动态性能。原型的循环功耗为3.1 j,与工作频率不变,与传统激发模式相比,34%降低了34%。此外,BLFA性能的优势也通过直接驱动的计量泵流量实验验证。

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