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Soft simple Compact Valve Inducing Self-excited Vibration Aimed for Mobile Robots Unnecessary for Electricity

机译:软简单的紧凑型阀门诱导自我激动的振动,用于电力不必要的移动机器人

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This paper presents a novel valve for switching the pressure modes of to chambers by self-excited vibration instead of using electricity. The valve has a simple structure consisting of flexible tubes and small permanent magnets, which can be fabricated with compact size, lightweight and at low cost. When constant air pressure is applied to the input port of the valve, the magnet vibrates self-excitedly and two chambers which are connected to the output ports are alternately pressurized at the same frequency as the vibration. We present the principle of the valve and the modeling of the switching operation. Several switching experiments using a prototype valve were performed to show the characteristics of the proposed valve. Finally, the validity of our proposing method is verified by implementing it on a pneumatic mobile robot and realizing the line- free propulsion without electricity.
机译:本文介绍了一种新型阀,用于通过自激振动而不是使用电力来切换到腔室的压力模式。阀门具有简单的结构,包括柔性管和小永磁体,可以用紧凑的尺寸,轻质和低成本制造。当恒定的空气压力施加到阀的输入端口时,磁体振动自我激励,并且两个连接到输出端口的腔室以与振动相同的频率交替地加压。我们介绍了阀门的原理和开关操作的建模。进行了使用原型阀的几个切换实验以显示所提出的阀门的特性。最后,通过在气动移动机器人上实施它并实现无电力的无线推进来验证我们提出方法的有效性。

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