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Pantograph mechanism for conversion from swelling into contraction motion of pneumatic balloon actuator

机译:受电弓机构,用于将气动执行器的膨胀运动转换成收缩运动

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This paper proposes a pantograph mechanism to convert swelling motion of pneumatic balloon actuator (hereafter PBA) into linear contraction motion. PBA swells in nature by internal pressurization. Bending PBA, which was previously proposed, converts swelling into bending motion by bimorph mechanism. In addition, we reported conversion from bending motion of PBA into contraction elsewhere. This paper presents direct conversion from swelling motion into contraction by a pantograph mechanism. Direct conversion improves conversion efficiency and performance of actuator. A developed single actuator could achieve efficient conversion and generate 1.2N at 80kPa in the case of 6mm×6mm×400μm device (5mm×5mm balloon). Design for outputs accumulation is also demonstrated. Medical forceps and endoscope are demonstrated as promising medical application of the contracting motion PBA.
机译:本文提出了一种受电弓机构,将气动执行机构(以下称为PBA)的膨胀运动转换为线性收缩运动。 PBA通过内部加压自然膨胀。先前提出的弯曲PBA通过双压电晶片机制将膨胀转换为弯曲运动。另外,我们报道了从PBA的弯曲运动到其他地方的收缩的转换。本文介绍了受电弓机制从膨胀运动到收缩的直接转换。直接转换可提高转换效率和执行器性能。对于6mm×6mm×400μm器件(5mm×5mm球囊),开发的单个执行器可以实现高效转换并在80kPa时产生1.2N的能量。还演示了输出累积的设计。医用镊子和内窥镜被证明是收缩运动PBA的有前途的医学应用。

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