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Smart Coatings - Materials, Deposition, and Applications

机译:智能涂料-材料,沉积和应用

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摘要

Besides improvement of specific functions like friction, wear, or insulation technical surfaces can be equipped by sensing functions realized by so called smart coatings. Smart coatings are here defined as a coating system providing functions like force, wear, distance or temperature sensing. The realization of such properties is a combination of different layers of insulating, piezoresistive, piezoelectric, electrical, and tribological coatings and micro structuring. For the realization of smart coatings on technical surfaces like steel a combination of insulating layer, micro structured functional coating (electrical, piezo,...) and a top coating (insulation, wear protection, low friction, ...) is applied. Basing on the sketched principle of smart coatings examples for temperature and wear measurement in harsh environment, force measurement, and distance measurement will be discussed. The realized sensors are based on the measurement of the gauge factor or the piezoresistive effect of the coatings for force measurement. For temperature measurement the thermal coefficient of the resistance is used. For the distance measurement the change in capacitance is used as measure.
机译:除了改善特定功能(如摩擦,磨损或绝缘技术表面)外,还可以通过感应功能(通过所谓的智能涂层实现)来配备技术表面。智能涂层在此定义为一种涂层系统,可提供力,磨损,距离或温度感应等功能。实现这些特性是绝缘,压阻,压电,电和摩擦学涂层的不同层与微观结构的结合。为了在工业表面(如钢)上实现智能涂层,需要结合使用绝缘层,微结构功能涂层(电,压电等)和表面涂层(绝缘,耐磨,低摩擦等)。基于智能涂料的草图原理,将讨论在恶劣环境下进行温度和磨损测量,力测量和距离测量的示例。所实现的传感器是基于测力系数的测量或用于力测量的涂层的压阻效应。对于温度测量,使用电阻的热系数。对于距离测量,使用电容变化作为度量。

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