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基于压电智能骨料的爆炸损伤钢筋混凝土梁抗弯承载力试验研究

An Experimental Study of the Flexural Bearing Capacity of Reinforced Concrete Beams Damaged by Explosions Using Piezoelectric Smart Aggregates.

作者信息

Xu Kai, Sheng Shilong, Jiang Ronghui, Feng Qian

机构信息

School of Urban Construction, Wuhan University of Science and Technology, Wuhan 430065, China.

Glodon Digital Technology (Zhejiang) Co., Ltd., Hangzhou 310016, China.

出版信息

Sensors (Basel). 2024 Dec 12;24(24):7944. doi: 10.3390/s24247944.

Abstract

Two identically sized RC beams were fabricated to investigate the effects of explosive loads on the flexural behaviour of Reinforced Concrete (RC) beams. One of the beams was subjected to an explosive load to induce post-explosion damage, and subsequently, both beams underwent flexural capacity testing. Integrating piezoelectric smart aggregates (SAas) within the beams facilitated continuous observation of the damage conditions, allowing for the assessment of internal concrete deterioration from explosive impacts to bending failures. The internal crack development index R was established using the Wavelet Packet Energy Analysis method. Combined with the structure's residual capacity-based damage assessment criterion, the relationship between R and component damage was found. This allowed us to identify the change in the bending capacity of RC beams after explosion damage and the quantitative damage assessment of the beam to be realised, providing valuable insights for structural engineers and researchers. Comparing the flexural test results between the explosively pre-damaged beam and the undamaged test beam, it was observed that the neutral axis of the damaged beam was significantly elevated, accompanied by a notable reduction in flexural capacity. By examining the variation curve of the internal crack development index R, it was noted that during the initial stage of the bending flexural test, due to bending deformation, cracks in the core region of the pre-damaged beam gradually healed, leading to a pseudo-decrease in the damage index. After reaching a minimum point, the damage progressed faster until failure occurred.

摘要

制作了两根尺寸相同的钢筋混凝土梁,以研究爆炸荷载对钢筋混凝土(RC)梁抗弯性能的影响。其中一根梁承受爆炸荷载以引发爆炸后损伤,随后,两根梁都进行了抗弯能力测试。在梁中集成压电智能骨料(SA)有助于持续观察损伤情况,从而能够评估从爆炸冲击到弯曲破坏过程中内部混凝土的劣化情况。使用小波包能量分析方法建立了内部裂缝发展指数R。结合基于结构剩余能力的损伤评估标准,发现了R与构件损伤之间的关系。这使我们能够识别爆炸损伤后RC梁抗弯能力的变化,并实现对梁的定量损伤评估,为结构工程师和研究人员提供了有价值的见解。通过比较爆炸预损伤梁和未损伤试验梁的抗弯试验结果,观察到损伤梁的中性轴显著升高,同时抗弯能力明显降低。通过检查内部裂缝发展指数R的变化曲线,注意到在抗弯试验的初始阶段,由于弯曲变形,预损伤梁核心区域的裂缝逐渐愈合,导致损伤指数出现假下降。在达到最低点后,损伤进展加快,直至发生破坏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d30/11679734/4a07b4a78375/sensors-24-07944-g001.jpg

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