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Distributed fiber optic sensor-enhanced detection and prediction of shrinkage-induced delamination of ultra-high-performance concrete overlay

机译:分布式光纤传感器增强的超高性能混凝土覆盖的收缩诱导分层的检测和预测

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摘要

This study develops a delamination detection system for smart ultra-high-performance concrete (UHPC) overlays using a fully distributed fiber optic sensor. Three 450 mm (length) x 200 mm (width) x 25 mm (thickness) UHPC overlays were cast over an existing 200 mm thick concrete substrate. The initiation and propagation of delamination due to early-age shrinkage of the UHPC overlay were detected as sudden increases and their extension in spatial distribution of shrinkage-induced strains measured from the sensor based on pulse pre-pump Brillouin optical time domain analysis. The distributed sensor is demonstrated effective in detecting delamination openings from microns to hundreds of microns. A three-dimensional finite element model with experimental material properties is proposed to understand the complete delamination process measured from the distributed sensor. The model is validated using the distributed sensor data. The finite element model with cohesive elements for the overlay-substrate interface can predict the complete delamination process.
机译:本研究开发了一种使用完全分布式光纤传感器的智能超高性能混凝土(UHPC)叠加层的分层检测系统。在现有的200mm厚的混凝土基板上施放三个450毫米(长度)×200mm(宽度)×25mm(厚度)UHPC覆盖层。由于基于脉冲预泵布里渊光学时域分析,由于突然增加,因此检测到UHPC覆盖的早期收缩引起的uHPC覆盖的早期收缩引起的分层覆盖物的延伸和它们的延伸。分布式传感器在检测微米到数百微米中的分层开口方面有效。提出了一种具有实验材料特性的三维有限元模型,以了解从分布式传感器测量的完整分层过程。使用分布式传感器数据进行验证该模型。具有用于覆盖基板接口的内聚元件的有限元模型可以预测完整的分层过程。

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