Flexible sensors for mechatronic engineering education

被引:0
作者
Song D. [1 ]
Chen X. [1 ]
Wang M. [1 ]
Xiao X. [1 ]
机构
[1] College of Engineering, China Agricultural University, Beijing
来源
Sensors International | 2023年 / 4卷
关键词
Education; Flexible sensors; Mechatronic engineering;
D O I
10.1016/j.sintl.2023.100236
中图分类号
G4 [教育];
学科分类号
04 ; 0401 ;
摘要
Mechatronics has become an inevitable trend in the development of the industry, manufacturing industry in the rapid development of today has also driven the innovation of technology. In the development process of mechatronics, flexible sensors stand out, flexible sensors have the characteristics of flexibility, and a wider range of applications, which is the frontier direction of contemporary electromechanical development. Mechanical and electronic engineering is for the traditional engineering disciplines, the teaching process of students to accept concepts and other content ability is poor, lack of interest, the need for new solutions to solve problems. And by using flexible sensors in exemplary teaching, electromechanical knowledge can be taught more effectively, which can enhance students' vision, learning ability, indepe, dance, and innovation. In this paper, we outline the principles of flexible sensors, and sensors in electromechanical engineering, the advantages and disadvantages of each type of flsensorsensors, and their broad prospects for electromechanical teaching applications. © 2023 The Authors
引用
收藏
相关论文
共 113 条
[61]  
Flexible piezoelectric thin film sensor LS-YD 001
[62]  
Lin G.L., Lin A.X., Liu M.Y., Et al., Barium titanate–bismuth ferrite/polyvinylidene fluoride nanocomposites as flexible piezoelectric sensors with excellent thermal stability[J], Sensor Actuator Phys., 346, (2022)
[63]  
Wang J., Jiu J., Nogi M., Sugahara T., Nagao S., Koga H., He P., Suganuma K., A highly sensitive and flexible pressure sensor with electrodes and elastomeric interlayer containing silver nanowires, Nanoscale, 7, pp. 2926-2932, (2015)
[64]  
Li F.C., Kong Z., Wu J.H., Ji X.Y., Liang J.J., Progress of flexible piezoresistive pressure sensor, J. Phys., 70, pp. 1-18, (2021)
[65]  
Yu R., Xia T., Wu B., Yuan J., Ma L., Cheng G.J., Liu F., Highly sensitive flexible piezoresistive sensor with 3D conductive network, ACS Appl. Mater. Interfaces, 12, pp. 35291-35299, (2020)
[66]  
Ma X., Cai X., Yuan M., Qu Y., Tan Y., Chen F., Self-powered and flexible gas sensor using defect-engineered WS2/G heterostructure, Sensor. Actuator. B Chem., 371, (2022)
[67]  
Zhai Z., Zhang X., Wang J., Li H., Sun Y., Hao X., Qin Y., Niu B., Li C., Washable and flexible gas sensor based on UiO-66-NH2 nanofibers membrane for highly detecting SO2, Chem. Eng. J., 428, (2022)
[68]  
Naganaboina V.R., Singh S.G., Graphene-CeO2 based flexible gas sensor: monitoring of low ppm CO gas with high selectivity at room temperature[J], Appl. Surf. Sci., 563, (2021)
[69]  
Wang Z., Dai J., Wang J., Et al., Realization of Oriented and Nanoporous Bismuth Chalcogenide Layers via Topochemical Heteroepitaxy for Flexible Gas Sensors[J]. Research, (2022)
[70]  
Guo Y., Xi H., Gu Z., Li M., Li X., Gao D., A self-powered PVA-based flexible humidity sensor with humidity-Related voltage output for multifunctional applications, Colloids Surf. A Physicochem. Eng. Asp., 658, (2023)