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首页> 外文期刊>International journal of automation technology >Development of a Rubber Soft Actuator Driven with Gas/Liquid Phase Change
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Development of a Rubber Soft Actuator Driven with Gas/Liquid Phase Change

机译:气/液相变驱动的橡胶软执行器的开发

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摘要

Soft rubber actuators are very useful in applications involving humans, such as in medicine and reflexology. Additionally, they are useful in industrial devices because of their softness. However, many soft rubber actuators are driven by pneumatic power, and the power source is usually bulky. This makes the application of soft rubber actuators difficult. In this study, we propose a novel small power source for soft rubber actuators, which uses the gas/liquid phase change phenomenon of the actuator working fluid. When fluids change their phase between liquid and vapor, a large volume change occurs. We assume that this volume change is sufficient to drive a single soft rubber actuator. We fabricated a prototype of an actuator comprised entirely of silicone rubber via a molding process. Using the first prototype, we confirmed that the actuator can be driven by the gas/liquid phase change of the actuator fluid. Then, we fabricated a second prototype that includes a cartridge heater inside its body. We applied an electronics coolant fluid to this actuator. From the results of several experiments, we confirmed that the actuator produced a maximum output force of 405 mN. When the actuator was driven by the gas/liquid phase change, its trajectory was almost the same as that when driven by air pressure. Hence, the proposed pressure source maintained the characteristics and advantages of the soft rubber actuator. We believe that a pressure source using the gas/liquid phase change phenomenon of a working fluid will mitigate the problems of the driving system of soft rubber actuators.
机译:软橡胶促动器在涉及人的应用中非常有用,例如医学和反射疗法。另外,由于它们的柔软性,它们在工业设备中有用。然而,许多软橡胶致动器是由气动驱动的,并且动力源通常很笨重。这使得软橡胶致动器的应用困难。在这项研究中,我们提出了一种用于软橡胶执行器的新型小型电源,它利用了执行器工作流体的气相/液相变化现象。当流体在液体和蒸气之间改变它们的相时,会发生大的体积变化。我们假设这种体积变化足以驱动单个软橡胶致动器。我们通过模制工艺制造了完全由硅橡胶组成的执行器原型。使用第一个原型,我们确认了执行器可以由执行器流体的气相/液相变化驱动。然后,我们制造了第二个原型,该原型在其内部包括一个筒形加热器。我们向该执行器施加了电子冷却液。从几个实验的结果中,我们确认执行器产生的最大输出力为405 mN。当执行器由气相/液相变化驱动时,其轨迹几乎与由气压驱动时的轨迹相同。因此,提出的压力源保持了软橡胶致动器的特性和优点。我们相信使用工作流体的气相/液相变化现象的压力源将减轻软橡胶促动器驱动系统的问题。

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