Lee Seung-Jun, Jung Yu-Jin, Park JeeWoong, Jang Sung-Hwan
Department of Civil and Environmental Engineering, Hanyang University, Seoul 04763, Korea.
Department of Smart City Engineering, Hanyang University ERICA, Ansan 15588, Korea.
Nanomaterials (Basel). 2022 Jul 11;12(14):2369. doi: 10.3390/nano12142369.
In the construction and machinery industry, heat is a major factor causing damage and destruction. The safety and efficiency of most machines and structures are greatly affected by temperature, and temperature management and control are essential. In this study, a carbon nanotube (CNT) based temperature sensing coating that can be applied to machines and structures having various structural types was fabricated, and characteristics analysis and temperature sensing performance were evaluated. The surface coating, which detects temperature through resistance change is made of a nanocomposite composed of carbon nanotubes (CNT) and epoxy (EP). We investigated the electrical properties by CNT concentration and temperature sensing performance of CNT/EP coating against static and cyclic temperatures. In addition, the applicability of the CNT/EP coating was investigated through a partially heating and cooling experiment. As a result of the experiment, the CNT/EP coating showed higher electrical conductivity as the CNT concentration increased. In addition, the CNT/EP coating exhibits high sensing performance in the high and sub-zero temperature ranges with a negative temperature coefficient of resistance. Therefore, the proposed CNT/EP coatings are promising for use as multi-functional coating materials for the detection of high and freezing temperatures.
在建筑和机械行业中,热是造成损坏和破坏的主要因素。大多数机器和结构的安全性和效率都受到温度的极大影响,因此温度管理和控制至关重要。在本研究中,制备了一种基于碳纳米管(CNT)的温度传感涂层,该涂层可应用于具有各种结构类型的机器和结构,并对其进行了特性分析和温度传感性能评估。通过电阻变化检测温度的表面涂层由碳纳米管(CNT)和环氧树脂(EP)组成的纳米复合材料制成。我们研究了碳纳米管浓度对电性能的影响以及CNT/EP涂层在静态和循环温度下的温度传感性能。此外,通过局部加热和冷却实验研究了CNT/EP涂层的适用性。实验结果表明,随着碳纳米管浓度的增加,CNT/EP涂层的电导率更高。此外,CNT/EP涂层在高温和零下温度范围内具有负电阻温度系数,表现出高传感性能。因此,所提出的CNT/EP涂层有望用作检测高温和冰点温度的多功能涂层材料。