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使用镍粉和离子液体的具有正压阻性的高拉伸性和高灵敏度硅基复合材料。

Highly stretchable and sensitive silicone composites with positive piezoconductivity using nickel powder and ionic liquid.

作者信息

Matsuda R, Isano Y, Ueno K, Ota H

机构信息

Department of Mechanical Engineering, Yokohama National University, 79-5 Tokiwadai, Hodogaya-ku, Yokohama, Kanagawa 240-8501, Japan.

出版信息

APL Bioeng. 2023 Feb 3;7(1):016108. doi: 10.1063/5.0124959. eCollection 2023 Mar.

Abstract

Conductive rubber composites are mixtures of stretchable rubber and conductive materials. They can achieve conductivity and high elasticity and are used in soft robots and wearable devices. In general, these composites exhibit high electrical resistance owing to their bonds between the fillers breaking during elongation. However, there are several types of composite materials that decrease resistance by increasing contact between the conductive materials during elongation through optimization of the shape and size of the filler. These composite materials can rapidly decrease the resistance and are expected to be applicable to switch in electric circuits and sensors. However, to use such composite materials in circuits, the electrical resistance at the time of resistance reduction must be sufficiently low to not affect the electric circuit. To achieve this, a considerable amount of filler must be mixed; however, this reduces the elasticity of the composite. Simultaneously achieving elasticity of the composite and a sufficient decrease in the resistance is challenging. This study developed a conductive rubber composite gel by mixing silicone rubber, ionic liquid, and metal filler. Consequently, the composite achieved an elongation rate of over six times and a decrease in the resistance of less than 1/10. In addition, this composite material was used as a switch circuit wherein an electric circuit is turned on and off according to elongation through a connection to a DC power source.

摘要

导电橡胶复合材料是可拉伸橡胶与导电材料的混合物。它们能够实现导电性和高弹性,应用于软机器人和可穿戴设备中。一般来说,这些复合材料由于在拉伸过程中填料之间的键断裂而呈现出高电阻。然而,有几种复合材料通过优化填料的形状和尺寸,在拉伸过程中增加导电材料之间的接触来降低电阻。这些复合材料能够迅速降低电阻,有望应用于电路开关和传感器。然而,要在电路中使用这种复合材料,电阻降低时的电阻必须足够低,以免影响电路。为了实现这一点,必须混合大量的填料;然而,这会降低复合材料的弹性。同时实现复合材料的弹性和足够的电阻降低具有挑战性。本研究通过混合硅橡胶、离子液体和金属填料开发了一种导电橡胶复合凝胶。因此,该复合材料实现了超过六倍的伸长率和小于1/10的电阻降低。此外,这种复合材料被用作开关电路,通过连接直流电源,根据伸长情况接通和断开电路。

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