Assembling customized sensor arrays on structures by direct-ink-writing for real-time complex crack monitoring 机器收录·待核验

mxdsg2td9p2ymr48

Crack growth is a primary failure mechanism in engineering structures, and its real-time monitoring is critical for reliable damage evaluation and life prediction. In this study, a customizable crack monitoring sensor array is developed using direct ink writing (DIW) technology. The sensing concept translates crack-induced mechanical rupture into discrete, stepwise resistance variations, providing a direct and unambiguous electrical signature of crack initiation and propagation in real time. Here, the real-time capability refers to the synchronous electrical response triggered by fracture events, rather than high-speed temporal resolution. Owing to the high design flexibility of DIW, the sensor architecture can be readily tailored in terms of geometry, signal response, and system integration. Experimental validation demonstrates the capability of the proposed sensor to monitor multiple crack modes, including quasi-static fracture, dynamically unstable brittle fracture, fatigue crack growth, and crack-path deflection, across different substrate materials. The results highlight the effectiveness of the DIW-fabricated sensor array as a versatile and scalable platform for event-based, multi-mode crack monitoring in structural health monitoring applications.

本卡描述如含来自官方页的原文片段,其版权归原作者,不在本站 CC-BY 4.0 许可范围(见关于与许可)。

落地页
https://tandf.figshare.com/articles/dataset/Assembling_customized_sensor_arrays_on_structures_by_direct-ink-writing_for_real-time_complex_crack_monitoring/31889045
许可证
CC-BY-4.0 (置信:verified_official)
发布年份
2026
发布方
Taylor & Francis

分发点

other https://tandf.figshare.com/articles/dataset/Assembling_customized_sensor_arrays_on_structures_by_direct-ink-writing_for_real-time_complex_crack_monitoring/31889045
关联论文(3 篇)

仅表示这篇论文与本数据集在文献网络中相邻, 不代表该论文确实使用了本数据集

溯源(6 条)
来源链接: https://tandf.figshare.com/articles/dataset/Assembling_customized_sensor_arrays_on_structures_by_direct-ink-writing_for_real-time_complex_crack_monitoring/31889045 日期: 2026-07-21
来源链接: https://api.datacite.org/dois/10.6084/m9.figshare.31889045 日期: 2026-07-30
来源链接: https://api.datacite.org/dois/10.6084/m9.figshare.31889045 日期: 2026-07-30
日期: 2026-07-30
日期: 2026-07-31
日期: 2026-07-31