Nondestructive Testing and Health Monitoring Techniques for Structural Effective Prestress
Методы неразрушающего контроля и мониторинга технического состояния эффективного предварительного напряжения конструкций
2023-09-28
SCID: 54.1/pa2cajpn
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fiber Bragg grating sensorshealth monitoringnondestructive testingprestress evaluationstructural effective prestress
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Abstract (AI)
Prestressed structures are widely employed in bridges and large-span spatial structures, and the accurate evaluation of prestress state is of great importance for structural maintenance. This paper reviews the nondestructive testing (NDT) and health monitoring techniques for structural effective prestress. Specifically, the fiber Bragg grating (FBG) sensor-based, magnetic-elastic (ME) sensor-based, dynamic response-based, ultrasonic guided wave (UGW)-based, electromechanical impedance (EMI)-based, and electrical resistance-based methods are reviewed in this paper. Firstly, the principle, application range, and measuring accuracy of each technique are introduced and analyzed, and the benefits and limitations of each technique are summarized: The FBG sensor and ME sensor take on high measuring accuracy and have been applied in practical engineering, but they are required to be preinstalled during structural construction; the dynamic response-based method is greatly effective in cable force assessment but not suitable for prestress evaluation of prestressed concrete (PSC) structures; the UGW-based, EMI-based, and electrical resistance-based methods have shown favorable potential for prestress assessment in laboratory experiments, but their feasibility and accuracy in practical engineering need to be verified. Secondly, the challenges and discussion of each method are discussed in the following four aspects: measuring range, reliability of measuring results, stability and durability considering long-term monitoring, and cost-efficiency. Finally, a decision tree is proposed to choose the most appropriate prestress evaluation method in a specific application scenario.
Key Findings
1
Dynamic-response methods are effective for cable-force assessment but are unsuitable for evaluating prestress in prestressed concrete structures.
2
FBG- and magnetic-elastic-sensor methods provide high measurement accuracy and have been used in engineering, but require installation during construction.
3
The paper reviews six nondestructive testing and health-monitoring approaches for evaluating effective prestress in bridges and large-span structures.
4
The review analyzes measurement range, result reliability, long-term stability and durability, and cost-efficiency, and proposes a decision tree for method selection.
5
Ultrasonic guided-wave, electromechanical-impedance, and electrical-resistance methods show promise in laboratory prestress assessment, while practical feasibility and accuracy remain unverified.
Research Object
Effective prestress in prestressed structures, including bridges and large-span spatial structures
Research Subject
Nondestructive testing and health-monitoring techniques for evaluating prestress state, including their principles, applicability, accuracy, reliability, long-term stability, durability, and cost-efficiency
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2023-09-28
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