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首页> 外文期刊>Journal of intelligent material systems and structures >Self-sensing and quantitative assessment of prestressed concrete structures based on distributed long- gauge fiber Bragg grating sensors
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Self-sensing and quantitative assessment of prestressed concrete structures based on distributed long- gauge fiber Bragg grating sensors

机译:基于分布式长距离光纤布拉格光栅传感器的预应力混凝土结构自感和定量评估

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摘要

Quantitative assessment of strengthened concrete structures using self-sensing fiber-reinforced polymer sheets is presented in this article. First, strain distribution along the height of a structure induced by pre-tension force (initiate state) is theoretically estimated. Second, the procedure for parameter estimation of prestressed fiber-reinforced polymer-strengthened structures under external load using measured and pre-tension force-induced strain is established, and nonlinearity caused by random cracks is considered in the method. Both local parameters (neutral axis position, bending stiffness distribution, strain distribution along the cross section, etc.) and global parameter (deflection) of structures can be accurately estimated by measured long-gauge strain responses. Finally, both prestressed fiber-reinforced polymer-strengthened and reinforced concrete beams installed with long-gauge fiber Bragg grating sensors have been experimentally investigated to prove the effectiveness of this method. Experimental results indicate that the estimated neutral axis height and local bending stiffness can reflect initiation of random cracks and deterioration process of structures under increasing external load. Meanwhile, the estimated strain along the beam height and deflection at mid-span agree well with the measured ones, which further verifies the accuracy of the estimated neutral axis position affected by randomly appeared cracks. Hence, the method can be utilized for assessment and maintenance of fiber-reinforced polymer-strengthened structures.
机译:本文介绍了使用自感应纤维增强聚合物板对钢筋混凝土结构进行的定量评估。首先,从理论上估计沿由预拉力引起的结构高度的应变分布(初始状态)。其次,建立了利用实测和预拉力引起的应变对预应力纤维增强聚合物加强结构进行参数估计的程序,并考虑了随机裂纹引起的非线性。结构的局部参数(中性轴位置,弯曲刚度分布,沿横截面的应变分布等)和结构的整体参数(挠度)都可以通过测量长应变应变响应来准确估算。最后,通过实验研究了装有长规格光纤布拉格光栅传感器的预应力纤维增强聚合物增强混凝土梁和钢筋混凝土梁,以证明该方法的有效性。实验结果表明,估计的中性轴高度和局部弯曲刚度可以反映出随机裂纹的产生和结构在外部载荷增加下的劣化过程。同时,沿梁高和中跨挠度的估计应变与实测值吻合得很好,进一步验证了随机出现裂纹影响的估计中性轴位置的准确性。因此,该方法可用于评估和维护纤维增强的聚合物增强结构。

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