Hassan Md Sahid, Zaman Saqlain, Dantzler Joshua Z R, Leyva Diana Hazel, Mahmud Md Shahjahan, Ramirez Jean Montes, Gomez Sofia Gabriela, Lin Yirong
Department of Aerospace and Mechanical Engineering, The University of Texas at El Paso, El Paso, TX 79968, USA.
Aerospace Center, The University of Texas at El Paso, El Paso, TX 79968, USA.
Nanomaterials (Basel). 2023 Dec 15;13(24):3148. doi: 10.3390/nano13243148.
The integration of 3D printed sensors into hosting structures has become a growing area of research due to simplified assembly procedures, reduced system complexity, and lower fabrication cost. Embedding 3D printed sensors into structures or bonding the sensors on surfaces are the two techniques for the integration of sensors. This review extensively discusses the fabrication of sensors through different additive manufacturing techniques. Various additive manufacturing techniques dedicated to manufacture sensors as well as their integration techniques during the manufacturing process will be discussed. This review will also discuss the basic sensing mechanisms of integrated sensors and their applications. It has been proven that integrating 3D printed sensors into infrastructures can open new possibilities for research and development in additive manufacturing and sensor materials for smart goods and the Internet of Things.
由于简化了装配程序、降低了系统复杂性并降低了制造成本,将3D打印传感器集成到承载结构中已成为一个不断发展的研究领域。将3D打印传感器嵌入结构或在表面粘贴传感器是传感器集成的两种技术。本文综述广泛讨论了通过不同增材制造技术制造传感器的方法。将讨论各种专门用于制造传感器的增材制造技术及其在制造过程中的集成技术。本文综述还将讨论集成传感器的基本传感机制及其应用。事实证明,将3D打印传感器集成到基础设施中可以为增材制造以及智能产品和物联网的传感器材料的研发开辟新的可能性。