日本機械学会論文集 C編
Online ISSN : 1884-8354
Print ISSN : 0387-5024
生物の筋肉をモデルとした静電リニアアクチュエータの理論的検討
壁井 信之宮崎 俊幸倉田 浩小笠原 幹村山 知寛長竹 和夫土屋 喜一
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1991 年 57 巻 538 号 p. 1924-1929

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Recently Yano proposed a new theory of muscle contraction, termed the electrostatic linear actuator model. Base on this theory, we developed an electrostatic linear actuator as a biomimicking skeletal muscle. The fundamental actuator unit consists of a parallel plate capacitor and a slider made of dielectric material. Based on this model, we derived the 70 theoretical formula for the thrust of the actuator. This formula revealed the following facts: The thrust can be maintained constant when the supply voltage is kept constant, and can be remarkably increased by optimizing the dielectric constant of the fluid which fills the space of the capacitor. Using this formula, we designed a simple practical model expected to generate the thrust of 10mN with the stroke of 10mm. The surface area of this actuator was 1cm2.

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