Cargando…

A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process

At present, flexible pressure-sensitive materials generally have problems with weak adhesion and poor wear resistance, which easily result in friction failure when used for plantar pressure detection. In this study, a flexible pressure sensor with the advantages of a wide detection range, fast recov...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Qijing, Zhang, Fuzheng, Xu, Xiangyue, Yang, Haolin, Mao, Qi, Xian, Dan, Yao, Kun, Meng, Qingzhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574549/
https://www.ncbi.nlm.nih.gov/pubmed/37836271
http://dx.doi.org/10.3390/nano13192630
_version_ 1785120718692810752
author Lin, Qijing
Zhang, Fuzheng
Xu, Xiangyue
Yang, Haolin
Mao, Qi
Xian, Dan
Yao, Kun
Meng, Qingzhi
author_facet Lin, Qijing
Zhang, Fuzheng
Xu, Xiangyue
Yang, Haolin
Mao, Qi
Xian, Dan
Yao, Kun
Meng, Qingzhi
author_sort Lin, Qijing
collection PubMed
description At present, flexible pressure-sensitive materials generally have problems with weak adhesion and poor wear resistance, which easily result in friction failure when used for plantar pressure detection. In this study, a flexible pressure sensor with the advantages of a wide detection range, fast recovery, and good abrasive resistance was designed and prepared based on the screen printing process. The pressure-sensitive unit with a structural size of 5 mm× 8 mm was a functional material system due to the use of graphene and epoxy resin. The influence of the different mass ratios of the graphene and epoxy resin on the sensing properties was also studied. The test results showed that when the mass ratio of graphene to epoxy resin was 1:4, the response time and recovery time of the sensing unit were 40.8 ms and 3.7 ms, respectively, and the pressure detection range was 2.5–500 kPa. The sensor can detect dynamic pressure at 0.5 Hz, 1 Hz, 2 Hz, 10 Hz, and 20 Hz and can withstand 11,000 cycles of bending. In addition, adhesion tests showed that the high viscosity of the epoxy helped to improve the interlayer bond between the pressure-sensitive materials and the flexible substrate, which makes it more suitable for plantar pressure detection environments, where friction is common.
format Online
Article
Text
id pubmed-10574549
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105745492023-10-14 A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process Lin, Qijing Zhang, Fuzheng Xu, Xiangyue Yang, Haolin Mao, Qi Xian, Dan Yao, Kun Meng, Qingzhi Nanomaterials (Basel) Article At present, flexible pressure-sensitive materials generally have problems with weak adhesion and poor wear resistance, which easily result in friction failure when used for plantar pressure detection. In this study, a flexible pressure sensor with the advantages of a wide detection range, fast recovery, and good abrasive resistance was designed and prepared based on the screen printing process. The pressure-sensitive unit with a structural size of 5 mm× 8 mm was a functional material system due to the use of graphene and epoxy resin. The influence of the different mass ratios of the graphene and epoxy resin on the sensing properties was also studied. The test results showed that when the mass ratio of graphene to epoxy resin was 1:4, the response time and recovery time of the sensing unit were 40.8 ms and 3.7 ms, respectively, and the pressure detection range was 2.5–500 kPa. The sensor can detect dynamic pressure at 0.5 Hz, 1 Hz, 2 Hz, 10 Hz, and 20 Hz and can withstand 11,000 cycles of bending. In addition, adhesion tests showed that the high viscosity of the epoxy helped to improve the interlayer bond between the pressure-sensitive materials and the flexible substrate, which makes it more suitable for plantar pressure detection environments, where friction is common. MDPI 2023-09-24 /pmc/articles/PMC10574549/ /pubmed/37836271 http://dx.doi.org/10.3390/nano13192630 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lin, Qijing
Zhang, Fuzheng
Xu, Xiangyue
Yang, Haolin
Mao, Qi
Xian, Dan
Yao, Kun
Meng, Qingzhi
A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process
title A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process
title_full A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process
title_fullStr A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process
title_full_unstemmed A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process
title_short A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process
title_sort flexible pressure sensor based on graphene/epoxy resin composite film and screen printing process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574549/
https://www.ncbi.nlm.nih.gov/pubmed/37836271
http://dx.doi.org/10.3390/nano13192630
work_keys_str_mv AT linqijing aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT zhangfuzheng aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT xuxiangyue aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT yanghaolin aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT maoqi aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT xiandan aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT yaokun aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT mengqingzhi aflexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT linqijing flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT zhangfuzheng flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT xuxiangyue flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT yanghaolin flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT maoqi flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT xiandan flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT yaokun flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess
AT mengqingzhi flexiblepressuresensorbasedongrapheneepoxyresincompositefilmandscreenprintingprocess