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用于高温传感器的铟锡氧化物和聚合物衍生陶瓷复合薄膜的快速激光制备

Rapid laser fabrication of indium tin oxide and polymer-derived ceramic composite thin films for high-temperature sensors.

作者信息

Xu Lida, Zhou Xiong, Zhao Fuxin, Fu Yanzhang, Tang Lantian, Zeng Yingjun, Chen Guochun, Wu Chao, Wang Lingyun, Chen Qinnan, Yang Kai, Sun Daoheng, Hai Zhenyin

机构信息

Discipline of Intelligent Instrument and Equipment, Xiamen University, Xiamen 361102, China; Department of Mechanical and Electrical Engineering, Xiamen University, Xiamen 361102, China; Fujian Micro/nano Manufacturing Engineering Technology Research Center, Xiamen University, Xiamen 361102, China.

Department of Mechanical and Electrical Engineering, Xiamen University, Xiamen 361102, China; Fujian Micro/nano Manufacturing Engineering Technology Research Center, Xiamen University, Xiamen 361102, China.

出版信息

J Colloid Interface Sci. 2024 Mar 15;658:913-922. doi: 10.1016/j.jcis.2023.12.119. Epub 2023 Dec 23.

Abstract

Thin-film sensors are essential for real-time monitoring of components in high-temperature environments. Traditional fabrication methods often involve complicated fabrication steps or require prolonged high-temperature annealing, limiting their practical applicability. Here, we present an approach using direct ink writing and laser scanning (DIW-LS) to fabricate high-temperature functional thin films. An indium tin oxide (ITO)/preceramic polymer (PP) ink suitable for DIW was developed. Under LS, the ITO/PP thin film shrank in volume. Meanwhile, the rapid pyrolysis of PP into amorphous precursor-derived ceramic (PDC) facilitated the faster sintering of ITO nanoparticles and improved the densification of the thin film. This process realized the formation of a conductive network of interconnected ITO nanoparticles. The results show that the ITO/PDC thin film exhibits excellent stability, with a drift rate of 4.7 % at 1000 °C for 25 h, and withstands temperatures up to 1250 °C in the ambient atmosphere. It is also sensitive to strain, with a maximum gauge factor of -6.0. As a proof of concept, we have used DIW-LS technology to fabricate a thin-film heat flux sensor on the surface of the turbine blade, capable of measuring heat flux densities over 1 MW/m. This DIW-LS process provides a viable approach for the integrated, rapid, and flexible fabrication of thin film sensors for harsh environments.

摘要

薄膜传感器对于高温环境下部件的实时监测至关重要。传统制造方法通常涉及复杂的制造步骤或需要长时间的高温退火,限制了它们的实际适用性。在此,我们提出一种使用直接墨水书写和激光扫描(DIW-LS)来制造高温功能薄膜的方法。开发了一种适用于DIW的氧化铟锡(ITO)/预陶瓷聚合物(PP)墨水。在激光扫描下,ITO/PP薄膜体积收缩。同时,PP快速热解为非晶态前驱体衍生陶瓷(PDC)促进了ITO纳米颗粒更快的烧结,并改善了薄膜的致密化。这一过程实现了相互连接的ITO纳米颗粒导电网络的形成。结果表明,ITO/PDC薄膜表现出优异的稳定性,在1000°C下25小时的漂移率为4.7%,并能在环境气氛中承受高达1250°C的温度。它对应变也很敏感,最大应变系数为-6.0。作为概念验证,我们使用DIW-LS技术在涡轮叶片表面制造了一个薄膜热通量传感器,能够测量超过1MW/m的热通量密度。这种DIW-LS工艺为恶劣环境下薄膜传感器的集成、快速和灵活制造提供了一种可行的方法。

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