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Novel tactile and nearness sensing properties of carbon microcoils (CMCs)

机译:碳微线圈(CMC)的新型触觉和接近感测特性

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Carbon microcoils (CMCs) with 3D-helical/spiral conformations were embedded into various elastic matrices, such as polysilicone, elastic epoxy resin, etc., to produce CMC tactile and nearness micro-sensory elements. The sensing properties of the CMC sensor element (changes in electrical parameters under an applied load (pressure) or approaching substances) were examined. The sensing ability was obtained even for microelements of 0.1 脳 0.1 脳 0.1 mm3 or 0.05 mm thickness, and for a small added amount of 0.1 wt% CMCs in the matrix. The minimum detection pressure was ca. 1 Pa. Changes in the L, C, R or Z parameter were also observed by approximating a hand, heater, mobile phone, sound, etc. It was considered that the CMC sensor elements have high potential applications, such as tactile sensors for endoscopes, catheters, a manipulation sheet, or as the artificial skin with a high tactile sensing ability and/or as nearness sensors for humanoid robots, etc.
机译:将具有3D螺旋/螺旋构象的碳微线圈(CMC)嵌入各种弹性矩阵(如聚硅氧烷,弹性环氧树脂等)中,以生成CMC触觉和接近度微感测元件。检查了CMC传感器元件的感测特性(在施加的负载(压力)或接近的物质下,电参数的变化)。即使对于厚度为0.1×0.1×0.1 mm3或0.05 mm的微量元素,以及少量添加的0.1 wt%CMC,也可以获得传感能力。最小检测压力为约。 1 Pa。通过接近手,加热器,手机,声音等,还观察到L,C,R或Z参数的变化。认为CMC传感器元件具有很高的应用潜力,例如用于内窥镜的触觉传感器,导管,操作表,或具有高触觉感应能力的人造皮肤和/或用作类人机器人的接近传感器等。

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