arrow
Return

A Multiobjective Design Architecture for Versatile Stretchable Touchscreen Displays

delete2023-09-15
delete0
PRE
AI
Z
Ziyi Wu
谷祎璠 cover
谷祎璠 (Yifan Gu)
J
Junwei Chen
Z
Zhiguang Qiu
Y
Yun-Fan Cheng
H
Hao Lu
Y
Yuyang Zhu
Y
Yida Wang
Y
Yu‐Sheng Lin
X
Xuchun Gui
S
Shaozhi Deng
秦宗 cover
秦宗 (Zong Qin) *
杨柏儒 cover
杨柏儒 (Bo‐Ru Yang)
DOI:10.1109/JSEN.2023.3296248delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Stretchable touch sensors, which can be conformally attached to arbitrary surfaces, endow any uneven surfaces with intelligence for interacting with humans by sensing the input signal, which is critical for future Internet of Things environments. Theoretical derivation and numerical simulations for structural design have been reported to help understand and analyze stretchable sensors. However, the device prototype simultaneously fulfilling the stretchability and touch sensing was not yet investigated. Here, we demonstrated the prototype, a 5 x 5 copper-based stretchable touch sensor with serpentine shapes. Furthermore, we proposed a hybrid design architecture, combining geometrical modeling, multiphysics field analysis, and multiobjective evolutionary algorithm (MOEA) to construct a stretchable touch sensor with optimal electrical and mechanical performance. This design demonstrated the touch sensitivity improvement by a factor of 72.6% without compromising the stretchability. The proposed touch sensor still functions well under 30% of strain when stretched. This research demonstrates the potential of MOEA as a powerful design tool for versatile stretchable sensors.
Keywords:
Microtopography design
multiobjective algorithm
stretchable electronics
touch sensitivity
touch sensors

Journal

IEEE Sensors Journal cover
IEEE Sensors Journal
IF:
4.5
Papers:
2.1W
Citations:
7.3W

Organization

S
Sun Yat Sen University
Scholars:
9.9W
Papers: 7.2W
Citations: 95