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A review on development and applications of bio-inspired superhydrophobic textiles

机译:生物启发的超疏水性纺织品的开发与应用综述

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摘要

Bio-inspired engineering has been envisioned in a wide array of applications. All living bodies on Earth, including animals and plants, have well organized functional systems developed by nature. These naturally designed functional systems inspire scientists and engineers worldwide to mimic the system for practical applications by human beings. Researchers in the academic world and industries have been trying, for hundreds of years, to demonstrate how these natural phenomena could be translated into the real world to save lives, money and time. One of the most fascinating natural phenomena is the resistance of living bodies to contamination by dust and other pollutants, thus termed as self-cleaning phenomenon. This phenomenon has been observed in many plants, animals and insects and is termed as the Lotus Effect. With advancement in research and technology, attention has been given to the exploration of the underlying mechanisms of water repellency and self-cleaning. As a result, various concepts have been developed including Young's equation, andWenzel and Cassie-Baxter theories. The more we unravel this process, the more we get access to its implications and applications. A similar pursuit is emphasized in this review to explain the fundamental principles, mechanisms, past experimental approaches and ongoing research in the development of bio-inspired superhydrophobic textiles.
机译:生物启发的工程技术已经在多种应用中得到了设想。地球上的所有生物,包括动植物,都具有自然界所组织的功能良好的功能系统。这些自然设计的功能系统启发了全世界的科学家和工程师,以模仿该系统以供人类实际应用。数百年来,学术界和行业的研究人员一直在尝试证明如何将这些自然现象转化为现实世界,以节省生命,金钱和时间。最引人入胜的自然现象之一是生物体对灰尘和其他污染物污染的抵抗力,因此被称为自清洁现象。这种现象已在许多植物,动物和昆虫中观察到,被称为莲花效应。随着研究和技术的进步,人们已经开始关注疏水和自清洁的潜在机理。结果,已经开发出各种概念,包括杨氏方程式以及温泽尔和卡西·巴克斯特理论。我们越解开这个过程,就越能获得它的含义和应用程序。在这篇综述中强调了类似的追求,以解释生物启发的超疏水性纺织品发展的基本原理,机理,过去的实验方法和正在进行的研究。

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  • 作者

    Ahmad, I; Kan, CW;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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