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Development of a hybrid ferrofluid seal technology for miniature pneumatic and hydraulic actuators

机译:开发用于微型气动和液压执行器的混合铁磁流体密封技术

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摘要

Future microrobotic applications require actuators that can generate a high actuation force and stroke in a limited volume. Up to now, little research has been performed on the development of pneumatic and hydraulic microactuators, although they offer great prospects in achieving high force densities. One of the main technological barriers in the development of these actuators is the fabrication of powerful seals with low leakage. This paper presents a seal technology for linear fluidic microactuators based on ferrofluids. A design and simulation method for these seals has been developed and validated by measurements on miniaturized actuator prototypes. These actuators have an outside diameter of 2 mm, a length of 13 mm and have been tested using both pressurized air and water. Our current actuator prototypes are able to operate at pressures up to 1.6 MPa without leakage. At these pressures, forces up to 0.65 N have been achieved. The stroke of the actuators is 10 mm.
机译:未来的微型机器人应用需要能够在有限的体积内产生高促动力和冲程的促动器。迄今为止,尽管气动和液压微执行器在实现高力密度方面具有广阔的前景,但尚未进行任何研究。这些致动器的开发中的主要技术障碍之一是制造具有低泄漏的强力密封件。本文提出了一种基于铁磁流体的线性流体微执行器的密封技术。这些密封件的设计和仿真方法已经开发出来,并通过对微型执行器原型的测量来验证。这些执行器的外径为2 mm,长度为13 mm,并已使用压缩空气和水进行了测试。我们当前的执行器原型能够在高达1.6 MPa的压力下运行而不会泄漏。在这些压力下,已经达到了0.65 N的力。执行器的行程为10毫米。

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