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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Annealing effects of high sensitive thin strain gauges consisting of nickel carbon nanocomposites
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Annealing effects of high sensitive thin strain gauges consisting of nickel carbon nanocomposites

机译:高敏感薄应变仪组成的镍碳纳米复合材料的退火效应

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摘要

Hybrid laminates consisting of fiber-reinforced thermoplastic films and metallic thin sheets are successively replacing thermoset-based systems due to their obvious advantages of higher formability and the aptitude for mass production. In order to monitor the material under operating condition, hybrid laminates need to be equipped with smart sensor units. Therefore, the aim of the present work is to evaluate the temperature stability of the Ni-C thin film strain gauge sensors. The analyses of the deposited Ni-C films manufactured by means of a magnetron sputtering process were carried out by means of Raman spectroscopy and X-ray diffraction to investigate the phase development after a heat treatment at different temperatures and holding times. In addition, the four-terminal sensing was utilized to study the change of temperature coefficients of resistance after a single annealing treatment.
机译:由纤维增强热塑性薄膜和金属薄板组成的混合层压板由于其成形性更高的优点和批量生产的能力而连续地代替热固性的系统。 为了在操作条件下监控材料,混合层压板需要配备智能传感器单元。 因此,本作作品的目的是评估Ni-C薄膜应变仪传感器的温度稳定性。 通过拉曼光谱和X射线衍射进行通过磁控溅射工艺制造的沉积Ni-C膜的分析,以研究在不同温度和保持时间的热处理后的相位发育。 另外,利用四末端感测来研究单次退火处理后抗性温度系数的变化。

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