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Highly Sensitive, Anisotropic, and Reversible Stress/Strain- Sensors from Mechanochromic Nanofiber Composites

机译:机械变色纳米纤维复合材料的高灵敏度,各向异性和可逆应力/应变传感器

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摘要

Mechanochromic polymeric systems are intensively investigated for real-time stress detection applications. However, an effective stress-sensing material must respond to low deformation with a detectable color change that should be quickly reversible upon force unloading. In this work, mechanochromic nanofibers made by electrospinning are used to produce mechanochromic nanofiber/poly(dimethylsiloxane) (PDMS) composites with isotropic and anisoptropic response. Due to chain alignment of spiropyran copolymer chains within the nanofibers, only very small strains are required to yield a mechanochromic response. Composites with aligned and isotropic nanofibers show anisotropic and isotropic mechanochromic behavior, respectively. Due to the special substitution pattern of spiropyran in the copolymer, the mechanochromic response of these nanofiber/PDMS composites shows fast reversibility upon force unloading. The outstanding benefit of using highly sensitive mechanochromic nanofibers as filler in composite materials allows the detection of directional stress and strain, and it is a step forward in the development of smart, mechanically responsive materials.
机译:对于实时应力检测应用,对机械变色聚合物系统进行了深入研究。但是,有效的应力感应材料必须以可检测到的颜色变化对低变形做出响应,该颜色变化应在力卸载后迅速逆转。在这项工作中,通过电纺制的机械变色纳米纤维被用于生产具有各向同性和各向异性反应的机械变色纳米纤维/聚二甲基硅氧烷(PDMS)复合材料。由于螺吡喃共聚物链在纳米纤维内的链排列,仅需要很小的应变即可产生机械致变色响应。具有排列的和各向同性的纳米纤维的复合材料分别表现出各向异性和各向同性的变色行为。由于螺吡喃在共聚物中的特殊取代方式,这些纳米纤维/ PDMS复合材料的机械变色响应在力卸载时显示出快速可逆性。在复合材料中使用高灵敏的机械致变色纳米纤维作为填料的显着优势是可以检测方向应力和应变,这是开发智能,机械响应性材料的一步。

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