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基于聚合物的采用封装体系的机械变色复合材料。

Polymer-Based Mechanochromic Composite Material Using Encapsulated Systems.

作者信息

Calvino Céline

机构信息

Pritzker School of Molecular Engineering, University of Chicago, 5640 S. Ellis Ave., Chicago, IL, 60637, USA.

出版信息

Macromol Rapid Commun. 2021 Jan;42(1):e2000549. doi: 10.1002/marc.202000549. Epub 2020 Dec 3.

Abstract

The development of mechanochromic or self-reporting polymers that can indicate damage or fatigue of materials with an optical signal has become of paramount interest to ensure the reliability of the materials and prevent catastrophic failure. This technology can potentially find usefulness for various applications, including in situ monitoring of mechanical events and structural health monitoring systems. An emerging and versatile approach to achieve mechanochromic properties relies on the encapsulation of dye solutions that can be released and activated (chemically or physically) when the walls of the capsules are mechanically damaged. While the mechanochromic effect can be achieved with different types of dyes and operating principles, this framework can also be designed with encapsulating-containers of different shapes and shell materials, such as microcapsules, hollow glass fibers, vascular networks, and micelles, making this concept applicable to a broad range of polymer matrices. An overview of the different encapsulation approaches that have been employed to prepare mechanochromic polymers is given, with a focus on the containers used for this purpose. A brief description of the containers' preparation is provided, and their associated chromic operating principles and progress in their designs are reviewed.

摘要

能够通过光信号指示材料损伤或疲劳的机械变色或自报告聚合物的开发,对于确保材料的可靠性和防止灾难性故障已变得至关重要。这项技术可能会在各种应用中发挥作用,包括机械事件的原位监测和结构健康监测系统。一种新兴且通用的实现机械变色特性的方法依赖于染料溶液的封装,当胶囊壁受到机械损伤时,染料溶液可以被释放并激活(化学或物理方式)。虽然可以通过不同类型的染料和操作原理实现机械变色效应,但这个框架也可以用不同形状和壳材料的封装容器来设计,如微胶囊、中空玻璃纤维、血管网络和胶束,使得这个概念适用于广泛的聚合物基体。本文给出了用于制备机械变色聚合物的不同封装方法的概述,重点关注用于此目的的容器。提供了容器制备的简要描述,并回顾了它们相关的变色操作原理及其设计进展。

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