Wuhan Research Institute of Metallurgical Construction, MCC, Wuhan, 430081, China.
Faculty of Materials Science and Chemistry, China University of Geosciences, 388 Lumo Road, Wuhan, 430074, China.
Sci Rep. 2023 May 24;13(1):8388. doi: 10.1038/s41598-023-34500-5.
The development of real-time and accurate visual stress detection is crucial for the field of building engineering. Herein, a new strategy is explored for the development of novel cementitious materials by hierarchical aggregation smart luminescent material and resin-based material. The cementitious material with such layered structure is inherently capable of visualization of stress monitoring and recording by converting the stress to visible light. The specimen fabricated by the novel cementitious material could repetitively emit green visible light under excitation of a mechanical pulse for 10 cycles, suggesting that the cementitious material shows highly reproducible performance. Moreover, the numerical simulations and analysis for the models of stress indicate that the luminescent time is synchronous with the stress and the emission intensity is proportional to the value of stress. To the best of our knowledge, this is the first study that the cementitious material realizes visible stress monitoring and recording, which supplies new insights for exploring modern multi-functional building materials.
实时、准确的视错觉检测的发展对建筑工程领域至关重要。本文探索了一种新策略,通过分层聚集智能发光材料和树脂基材料来开发新型胶凝材料。这种具有层状结构的胶凝材料能够通过将应力转化为可见光来实现应力监测和记录的可视化。由新型胶凝材料制成的试件在机械脉冲激励下可重复发射绿色可见光达 10 个循环,表明该胶凝材料具有高度可重复性的性能。此外,对模型的应力数值模拟和分析表明,发光时间与应力同步,发射强度与应力值成正比。据我们所知,这是首次研究胶凝材料实现可见的应力监测和记录,为探索现代多功能建筑材料提供了新的思路。