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再生胶在半导电橡皮中的应用
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作者 张逸民 莫炯 王建恩 《郑州大学学报(自然科学版)》 CAS 1997年第1期61-64,共4页
用电子显微镜对再生胶的微观结构进行观察分析,进而将再生胶与丁腈胶混合并用制成半导电橡皮.经实验测定,其性能符合JB664—77规定.和纯丁腈胶半导电橡皮相比。
关键词 再生胶 丁腈胶 导电橡皮 微观结构
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新式导电橡皮
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作者 卓沁 《今日科技》 1997年第6期25-25,共1页
最近,台湾谦祥电子有限公司推出多款新式导电橡皮产品。一般导电橡皮表面印刷多采用网印方式,例如电话机按键上的数字,经过长期使用后。
关键词 按键 凹陷 导电橡皮
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Superhydrophobic conductive rubber band with synergistic dual conductive layer for wide-range sensitive strain sensor 被引量:2
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作者 Hongling Sun Yibing Bu +6 位作者 Hu Liu Jingwen Wang Wenke Yang Qianming Li Zhanhu Guo Chuntai Liu Changyu Shen 《Science Bulletin》 SCIE EI CAS CSCD 2022年第16期1669-1678,M0004,共11页
Wearable electronic devices have received increasing interests because of their excellent flexibility,stretchability,and human friendliness.As the core components,flexible strain sensors integrated with wide working r... Wearable electronic devices have received increasing interests because of their excellent flexibility,stretchability,and human friendliness.As the core components,flexible strain sensors integrated with wide working range,high sensitivity,and environment stability,especially in moisture or corrosive environments,remain a huge challenge.Herein,synergistic carbon nanotubes(CNTs)/reduced graphene oxide(rGO)dual conductive layer decorated elastic rubber band(RB)was successfully developed and treated with hydrophobic fumed silica(Hf-SiO_(2))for preparing superhydrophobic strain sensor.As expected,stable entangled CNTs layer and ultrasensitive microcracked rGO layer endow the sensor with extremely low detection limit(0.1%),high sensitivity(gauge factor is 685.3 at 482%strain),wide workable strain range(0–482%),fast response/recovery(200 ms/200 ms)and favorable reliability and reproducibility over 1000 cycles.Besides,the constructed Hf-SiO_(2) coating also makes the sensor exhibit excellent superhydrophobicity,self-cleaning property,and corrosion-resistance.As a proof of concept,our prepared high-performance strain sensor can realize the full-range monitoring of human motions and physiological signals even in the water environment,including pulse,vocalization,joint bending,running,and gesture recognition.Interestingly,it can also be knitted into a tactile electronic textile for spatial pressure distribution measurement.Thus,this study provides a universal technique for the preparation of high-performance strain sensors with great potential applications in the field of next-generation intelligent wearable electronics. 展开更多
关键词 Rubber band SUPERHYDROPHOBIC Strain sensor Synergistic dual conductive layer Wearable electronics
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