热塑性聚氨酯
3D打印
熔丝制造
材料科学
制作
碳纳米管
耐久性
导电体
热塑性塑料
丝网印刷
墨水池
纳米技术
直线(几何图形)
机械工程
计算机科学
复合材料
工程类
弹性体
医学
几何学
替代医学
数学
病理
作者
Chi Cuong Vu,Thanh Tai Nguyen,Sang-Un Kim,Jooyong Kim
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2021-04-05
卷期号:14 (7): 1791-1791
被引量:17
摘要
Health monitoring sensors that are attached to clothing are a new trend of the times, especially stretchable sensors for human motion measurements or biological markers. However, price, durability, and performance always are major problems to be addressed and three-dimensional (3D) printing combined with conductive flexible materials (thermoplastic polyurethane) can be an optimal solution. Herein, we evaluate the effects of 3D printing-line directions (45°, 90°, 180°) on the sensor performances. Using fused filament fabrication (FDM) technology, the sensors are created with different print styles for specific purposes. We also discuss some main issues of the stretch sensors from Carbon Nanotube/Thermoplastic Polyurethane (CNT/TPU) and FDM. Our sensor achieves outstanding stability (10,000 cycles) and reliability, which are verified through repeated measurements. Its capability is demonstrated in a real application when detecting finger motion by a sensor-integrated into gloves. This paper is expected to bring contribution to the development of flexible conductive materials-based on 3D printing.
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