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A New Low-Profile Electromagnetic-Pneumatic Actuator for High-Bandwidth Applications

机译:适用于高带宽应用的新型薄型电磁气动执行器

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This paper proposes a new electromagneticpneumatic actuator with high force density for wide bandwidth applications. The actuator includes an active electromagnetic actuator and a pneumatic spring, fused together into a hybrid design. The electromagnetic component acts as an active element, generating wide bandwidth high-density forces. It further provides a baseline stiffness, for the device, using its magnetic spring. The active electromagnetic actuator consists of a number of stacks positioned in a vertical arrangement. The modular design of the actuator, allows for reconfiguring the device with different number of stacks to adjust the strokes, depending on the target application. The pneumatic spring is then responsible for adding extra stiffness and support for heavy load masses. The added stiffness by the pneumatic spring can be easily adjusted by regulating the gas pressure. Based on the proposed active electromagnetic actuator, analytical and FEM models are developed, which are used for optimizing the design. The proposed actuator has a lowprofile design, making it suitable for many applications with space limitations. The final design is prototyped, and experimentally tested. To evaluate the performance of the electromagnetic component, its force density (force to volume ratio) is compared with a voice coil actuator (that is widely used in both academic and industrial sectors). The FEM and experimental results confirmed the high force density of the electromagnetic component, comparing to a voice coil of similar size. The proposed design, with a diameter of ~125 mm and a height of ~60 mm, generates a force variation of ~ 318 N for the currents of I = ±2 A. Furthermore, it has small electromagnetic and electromechanical time constants of 5.2 and 10.5 ms, respectively, with negligible eddy current effect. These findings make the actuator suitable for wide bandwidth applications.
机译:本文提出了一种新型的气动气动执行器,具有较高的力密度,适用于宽带宽应用。该执行器包括主动电磁执行器和气动弹簧,融合在一起形成混合设计。电磁成分充当有源元件,产生宽带宽的高密度力。它还使用其磁性弹簧为设备提供了基线刚度。有源电磁执行器由许多垂直放置的堆栈组成。执行器的模块化设计允许根据目标应用重新配置具有不同数量堆栈的设备以调整行程。然后,气动弹簧负责增加额外的刚度并支撑重负载。气动弹簧增加的刚度可通过调节气压轻松调节。基于提出的有源电磁执行器,开发了解析和有限元模型,用于优化设计。提出的执行器具有低矮的设计,使其适合于空间有限的许多应用。最终设计是原型,并进行了实验测试。为了评估电磁组件的性能,将其力密度(力与体积之比)与音圈致动器(在学术和工业领域广泛使用)进行比较。与类似尺寸的音圈相比,有限元分析和实验结果证实了电磁元件的高力密度。所提出的设计的直径为〜125 mm,高度为〜60 mm,对于I =±2 A的电流,产生的力变化为〜318N。此外,它的电磁和机电时间常数较小,为5.2和10.5 ms,涡流效应可忽略不计。这些发现使执行器适用于宽带应用。

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