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Formation of Sensors in Polymer and Metal-Based Materials and Composites

机译:聚合物和金属基材料以及复合材料中传感器的形成

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In this study, elemental ideas were proposed and demonstrated to realize a couple of smart material systems without using sophisticated and expensive sensors as follows: (1) Commercially available quartz type optical fiber was successfully embedded in aluminum matrix by the interphase forming/bonding method to be used as a sensor. (2) In order to obtain an interference type fiber optic strain sensor in matrix materials without using commercially available expensive one, a unique method was proposed, that is, a pre-notched optical fiber filament was embedded in epoxy resin matrix and was fractured apart in it to form a fiber optic strain sensor. (3) A simple and low cost sensor to detect temperature and strain of aluminum and its composite was proposed and demonstrated, that is, an oxidized nickel wire was embedded in aluminum matrix to form a temperature and strain sensor.
机译:在这项研究中,提出并证明了一些基本思想,可以在不使用复杂且昂贵的传感器的情况下实现几个智能材料系统:(1)通过相形成/键合方法,将可商购获得的石英型光纤成功嵌入铝基体中,从而实现了以下目的:用作传感器。 (2)为了在不使用市售的昂贵的基体材料的情况下在基体材料中获得干涉型光纤应变传感器,提出了一种独特的方法,即在环氧树脂基体中嵌入预切口光纤丝并使其断裂。在其中形成一个光纤应变传感器。 (3)提出并演示了一种简单,低成本的铝及其复合材料的温度和应变检测传感器,即在铝基体中嵌入氧化镍丝形成温度和应变传感器。

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