首页> 外文会议>Smart Structures and Materials 1995: Smart Systems for Bridges, Structures, and Highways >Applications of absolute extrinsic Fabry-Perot interferometer (EFPI)fiber optic sensing system for measurement of strain in pre-tensioned tendonsfor prestrained concrete,
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Applications of absolute extrinsic Fabry-Perot interferometer (EFPI)fiber optic sensing system for measurement of strain in pre-tensioned tendonsfor prestrained concrete,

机译:绝对外在法布里-珀罗干涉仪(EFPI)光纤传感系统在预应力混凝土预应力筋的应变测量中的应用,

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Abstract: The application of a state-of-the-art fiber optic sensing system for the quantitative analysis of strain in strands used in prestressed concrete is proposed. Compressive stress in concrete is used to counterbalance any tensile force due to loading, which might lead to cracking or deflection. In pre-tensioning prestressed concrete, a tendon is tensioned before concrete is placed and the prestress is transferred to the concrete after it has cured by releasing the tension on the tendon. In linear prestressing it is often required to determine the axial strain on the tendon during the initial procedure of pre-tensioning, so that the required longitudinal force to achieve maximum concrete strength, can be accurately determined. Conventional techniques for this purpose involve the use of conventional foil strain gages, which are not only expensive to use, but are also known for their failure rate in high strain environments. We discuss the absolute extrinsic Fabry-Perot interferometer (AEFPI) fiber optic sensing system for monitoring strain in pretensioned tendons while this tendon is being loaded. The experiments performed at the Turner Fairbanks Federal Highway Administration at McLean, Virginia exhibit the survivability of the EFPI sensor at strain in excess of 12,000 $mu$epsilon while being attached to the tendon surface. The results are compared to those obtained from a collocated foil strain gage and excellent correlation is obtained. Applications of the AEFPI system to high performance smart materials and structures are analyzed and future work in this area is discussed. !9
机译:摘要:提出了一种先进的光纤传感系统,用于定量分析预应力混凝土中的股线中的应变。混凝土中的压缩应力用于抵消由于载荷引起的任何拉力,这可能会导致开裂或挠曲。在预张紧的预应力混凝土中,在放置混凝土之前先张紧钢筋束,并在固化后通过释放钢筋束上的张力将预应力转移到混凝土上。在线性预应力中,通常需要在预张紧的初始过程中确定钢筋束上的轴向应变,以便可以准确确定达到最大混凝土强度所需的纵向力。为此目的,常规技术涉及使用常规箔片应变计,这些应变计不仅使用昂贵,而且还因其在高应变环境下的故障率而闻名。我们讨论了绝对外在法布里-珀罗干涉仪(AEFPI)光纤传感系统,用于在加载该肌腱时监测预应力肌腱中的应变。在弗吉尼亚州麦克莱恩市的特纳费尔班克斯联邦公路管理局进行的实验表明,EFPI传感器在附着于肌腱表面的应变超过12,000μμε时仍具有生存能力。将结果与从并置的箔片应变计获得的结果进行比较,并获得了极好的相关性。分析了AEFPI系统在高性能智能材料和结构中的应用,并讨论了该领域的未来工作。 !9

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