Super soft but strong E-Skin based on carbon fiber/carbon black/silicone composite: Truly mimicking tactile sensing and mechanical behavior of human skin

التفاصيل البيبلوغرافية
العنوان: Super soft but strong E-Skin based on carbon fiber/carbon black/silicone composite: Truly mimicking tactile sensing and mechanical behavior of human skin
المؤلفون: Yuan-Qing Li, Pei Huang, Feng-Lian Yi, Gang Yang, Ze-Yu Wang, Jin-Rui Liu, Ning Hu, Ya-Fei Fu, Shao-Yun Fu
المصدر: Composites Science and Technology. 186:107910
بيانات النشر: Elsevier BV, 2020.
سنة النشر: 2020
مصطلحات موضوعية: Materials science, integumentary system, Composite number, General Engineering, Modulus, Human skin, 02 engineering and technology, Carbon black, 010402 general chemistry, 021001 nanoscience & nanotechnology, 01 natural sciences, 0104 chemical sciences, Contact force, chemistry.chemical_compound, Silicone, chemistry, Electrode, Ultimate tensile strength, Ceramics and Composites, Composite material, 0210 nano-technology
الوصف: Besides the prominent tactile sensing ability, human skin is also well known for its unique mechanical behavior – combination of excellent softness with certain stretchability of a strain-limiting effect to prevent damage from excessive strain. Here a stretchable e-skin truly mimicking the tactile sensing and mechanical behavior of human skin is fabricated. Carbon black (CB)/silicone composite with excellent piezo-resistive performance is employed as mechanical stimuli sensing material, which provides super softness, large stretchability, high strain sensitivity and long-term reliability for the e-skin. High performance carbon fiber (CF) with quasi-sinusoidal shape is designed to serve as electrode material and reinforcement filler simultaneously, which renders the e-skin a typical J-shape stress-strain curve similar as that of human skin. The Young's modulus, tensile strength and failure strain of the e-skin can be readily adjusted by controlling the content and shape of the CF electrode to match them well with those of human skin. Finally, the fabricated e-skin exhibits the capability of spatiotemporal recognition of the location and magnitude of contact forces in monitoring dynamic stress distribution. The as-prepared stretchable e-skin based on CF/CB/silicone composite is highly promising for robotics and prosthetics, etc.
تدمد: 0266-3538
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::23d1d7585cd53e7d0333026dd8b878ed
https://doi.org/10.1016/j.compscitech.2019.107910
حقوق: CLOSED
رقم الأكسشن: edsair.doi...........23d1d7585cd53e7d0333026dd8b878ed
قاعدة البيانات: OpenAIRE