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Damage and Defect Detection Through Infrared Thermography of Fiber Composites Applications for Strengthening of Structural Elements

机译:纤维复合材料造成损伤和缺陷检测,用于加强结构元素的应用

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Fiber Reinforced Polymer (FRP) composites are today widely used for the strengthening and seismic retrofitting of structures. The efficiency of this technology is strongly dependent on the correct positioning and bonding of the fibers on the surface of the structure to be reinforced. The connection between the surface of the substrate (concrete, masonry or steel) and the fibers is assured by the adhesives. The control of the application may be performed with different Non Destructive Evaluation (NDE) techniques but presently there are no standard procedures to assess the quality of the applications in civil engineering structures. Infrared thermography represents a valid tool for the detection and measurement of bonding defects or damage in the composite strips and can be used even for the definition of possible damage progression. The paper presents a series of results obtained using infrared thermography on masonry walls and concrete beams.
机译:纤维增强聚合物(FRP)复合材料广泛用于强化和地震改装的结构。该技术的效率强烈依赖于纤维在待加固结构表面上的正确定位和粘合。粘合剂确保基板(混凝土,砖石或钢)和纤维之间的连接。可以利用不同的非破坏性评估(NDE)技术来执行对应用的控制,但目前没有标准程序来评估土木工程结构中的应用的质量。红外热成像表示用于检测和测量粘合缺陷或复合条损坏的有效工具,并且即使对于可能的损坏进展的定义也可以使用。本文介绍了一系列在砌体墙壁和混凝土梁上使用红外热成像获得的结果。

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