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作 者:李露红 赵博宇 丛洪莲 LI Luhong;ZHAO Boyu;CONG Honglian(Engineering Research Center for Knitting Technology,Ministry of Education,Jiangnan University,Wuxi,Jiangsu 214122,China)
机构地区:[1]江南大学针织技术教育部工程研究中心,江苏无锡214122
出 处:《纺织学报》2023年第8期88-95,共8页Journal of Textile Research
基 金:国家自然科学基金项目(61772238);泰山产业领军人才项目(tscy20180224)。
摘 要:针对柔性电容传感器制备工艺中存在的导电材料易剥落和透气性差等问题,提出一种将具有双面效应的导电针织物作为柔性电极,不同厚度经编间隔织物作为介质层的针织复合结构电容式传感器,并进行了电力学性能测试,研究其在外力作用下的灵敏度、线性度、迟滞性和重复性。结果表明:随着应力的增加,电容式传感器的灵敏度逐渐增大,介质层厚度越大,灵敏度越好;当应变小于30%时,不同规格电容式传感器均表现出良好的线性度,介质层厚度愈小,线性度越好,但随着应变继续增大,电容式传感器线性特性变差;在应力加载和卸载的过程中,电容式传感器表现出较好的压缩回复性;在不同应变值的连续压缩测试中,电容式传感器的电容输出曲线形状整体相似,电容式传感器具有较好的重复性。Objective Knitted flexible capacitive sensors have been widely studied for their inherent softness and comfort,structural simplicity and low loss.However,most of the sensor electrode materials are exposed to the external environment or in direct contact with the human body,prone to oxidization with long-term use.Moreover,the traditional encapsulation materials used for sensors have poor air permeability,affecting the wearing comfort of human body.Therefore,a knitted composite structure capacitive sensor was proposed to place the electrodes inside the sensor to improve the sensing efficiency of the sensor and the human body experience.Method The silver-plated conductive yarn and cotton yarn were used to prepare the double-side-effect electrode using the computerized flat knitting machine with different thickness intervals in the fabric to form the"sandwich structure"capacitive sensor.According to the formula C=(ε0εrS)/d,the change in the distance between the electrodes causes change in capacitance value so as to achieve sensing.The assembled sensor was placed on an electronic universal testing machine for compression experiments,and leads from both ends of the electrodes were connected to the TH2830 LCR digital bridge,and the values were recorded simultaneously.Results The electro-mechanical properties,sensitivity,linearity,compression reversibility,hysteresis and repeatability of the sensor were studied and analyzed.The strain-capacitance curve of the sensor showed that with increasing compressive strain the capacitance value increased gradually,which is consistent with the mechanism elaborated in Equation(1)(Fig.5).As important index for sensing performance,which is usually expressed as the ratio of the relative rate of change of capacitance to the stress,sensitivity of the sensor was characterized.With the gradual increase of the strain value,the sensitivity of the three different thickness sensors demonstrated a gradual increase with two different output characteristics(Fig.6).The sensor with a thickness of
分 类 号:TS181.8[轻工技术与工程—纺织材料与纺织品设计]
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