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Shear Stiffening-Based Mechanoluminescent Device for Impact-Thermal Coupling Protection and Impact Visualization

delete2024-09-12
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PRE
AI
S
Shilong Duan
M
Min Sang
C
Chen, Hong
Y
Yucheng Pan
S
Shuai Liu
Z
Zimu Li
Z
Zhihao Hu
Z
Zhentao Zhang
X
Xinglong Gong *
DOI:10.1002/adfm.202411821delete
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Abstract

Abstract

En 中文
Intelligent impact-protection wearable devices often require intricate circuitry to operate, which hinders the timely display of impact-related injuries. Consequently, it is imperative to develop intelligent protective materials that are self-sufficient and capable of visualization. In this work, the impact protection material shear-stiffening gel (SSG) is combined with the mechanoluminescent (ML) material ZnS:Cu/PDMS@SiO2 to create ML-SSG. This material embodies various protective features, including impact protection, force visualization, flame resistance, and long-distance passive control, making it ideal for intelligent wearable devices. In light of the significant shear stiffening effect of SSG, ML-SSG effectively dissipates up to 80% of the impact energy and exhibits excellent impact resistance. Concurrently, ML-SSG is also capable of visualizing impact injuries, displaying and warning in real-time via mechanoluminescence, and assessing the impact force based on the intensity of mechanoluminescence. The incorporation of SiO2 and ZnS:Cu has resulted in ZnS:Cu/PDMS@SiO2 with remarkable flame-retardant property. This innovative material significantly improves the performance of ML-SSG in complex environments. In addition, ML-SSG realizes human-computer interaction through neural network based on mechanoluminescence display characteristics. This research significantly expands the potential applications of multifunctional protective materials in various complicated environments, thereby promoting the development of wearable protective devices. To enhance the mechanical and thermal protection performance while achieving visual impact detection, mechanoluminescent-shear stiffening gel (ML-SSG) is designed by integrating mechanoluminescent material with shear stiffening gel. This innovative material withstands mechanical impact and incorporates a unique force visualization mechanism, providing an early warning system for potential impact damage. Finally, a dependable human-machine interaction system is developed by combining with machine learning. image
Keywords:
flame resistance
force visualization
human-computer interaction
impact resistance
shear stiffening

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

C
chinese academy of sciences
Scholars:
55.3W
Papers: 44.6W
Citations: 704