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基于光电共传感的新型智能 CFRP 索,用于结构全流程预应力监测。

A Novel Smart CFRP Cable Based on Optical Electrical Co-Sensing for Full-Process Prestress Monitoring of Structures.

机构信息

School of Civil Engineering, Dalian University of Technology, Dalian 116024, China.

School of Civil and Environmental Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China.

出版信息

Sensors (Basel). 2023 Jun 1;23(11):5261. doi: 10.3390/s23115261.

Abstract

Carbon-fiber-reinforced polymer (CFRP) is a type of composite material with many superior performances, such as high tensile strength, light weight, corrosion resistance, good fatigue, and creep performance. As a result, CFRP cables have great potential to replace steel cables in prestressed concrete structures. However, the technology to monitor the stress state in real-time throughout the entire life cycle is very important in the application of CFRP cables. Therefore, an optical-electrical co-sensing CFRP cable (OECSCFRP cable) was designed and manufactured in this paper. Firstly, a brief description is outlined for the production technology of the CFRP-DOFS bar, CFRP-CCFPI bar, and CFRP cable anchorage technology. Subsequently, the sensing and mechanical properties of the OECS-CFRP cable were characterized by serious experiments. Finally, the OECS-CFRP cable was used for the prestress monitoring of an unbonded prestressed RC beam to verify the feasibility of the actual structure. The results show that the main static performance indexes of DOFS and CCFPI meet the requirements of civil engineering. In the loading test of the prestressed beam, the OECS-CFRP cable can effectively monitor the cable force and the midspan defection of the beam so as to obtain the stiffness degradation of the prestressed beam under different loads.

摘要

碳纤维增强聚合物(CFRP)是一种具有许多优异性能的复合材料,如高强度、轻重量、耐腐蚀性、良好的疲劳和蠕变性能。因此,CFRP 索在预应力混凝土结构中有很大的潜力替代钢索。然而,在 CFRP 索的应用中,实时监测整个生命周期内的应力状态的技术非常重要。因此,本文设计并制造了一种光电共传感 CFRP 索(OECS-CFRP 索)。首先,简要概述了 CFRP-DOFS 棒、CFRP-CCFPI 棒和 CFRP 索锚固技术的生产工艺。随后,通过严格的实验对 OECS-CFRP 索的传感和力学性能进行了表征。最后,将 OECS-CFRP 索用于非粘结预应力 RC 梁的预应力监测,以验证实际结构的可行性。结果表明,DOFS 和 CCFPI 的主要静态性能指标满足土木工程的要求。在预应力梁的加载试验中,OECS-CFRP 索可以有效地监测索力和梁的跨中挠度,从而获得不同荷载下预应力梁的刚度退化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b68/10256057/409cff721a67/sensors-23-05261-g001.jpg

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