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Adhesive debonding detection of FRP reinforcement by the ultrasonic non-destructive technique

机译:超声波无损检测技术对玻璃纤维增​​强材料的粘接脱粘检测

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摘要

Fiber reinforced polymer (FRP) composite systems are extensively used for repairing and reinforc- ing structurally inefficient concrete structures. The performance of an FRP rehabilitation system is highly influenced by its integrity. In particular, the presence of defects, e.g. voids, inclusions, debonds, improper cure and delaminations, caused by an inaccurately manufacture and installation, may affect the capability of the rehabilitated structure. For this reason, non-destructive (ND) meth- ods could be used to assess the quality of the reinforcement [1,2].udIn this work an ultrasonic ND technique for detecting delamination defects in FRP reinforcement is presented. The technique couples the Akaike information criterion (AIC), used as automatic starting time signal detection [3] and the equivalent time-lenght (ETL) of the signal, used as indicator of the energy distribution of the signal with respect to the beginning of the signal [4].udWhen a perfect bonding between FRP and concrete substrate exists, the acoustical impedance mismatch is small, as both the FRP and the underlying material are dense solids, so the energy is almost transmitted to the concrete. On the other hand, when the adherence between FRP and concrete is compromised by the presence of a thin air gap, the acoustical impedance mismatch is bigger and a great amount of energy is reflected back. The results show that the energetic indicator ETL is particularly sensitive to the quality of the bonding of the FRP-concrete substrate.udThe proposed technique has been tested in pitch-catch mode on FRP reinforcements bonded to concrete substrates, both in vitro, using samples with imposed well-known defects, and in situ, on reinforced concrete beams included in a floor slab.
机译:纤维增强聚合物(FRP)复合系统广泛用于修复和加固结构效率低下的混凝土结构。 FRP修复系统的性能在很大程度上受到其完整性的影响。尤其是缺陷的存在,例如由不正确的制造和安装造成的空隙,夹杂物,脱胶,不适当的固化和分层可能会影响修复后结构的性能。因此,可以使用非破坏性(ND)方法来评估钢筋的质量[1,2]。 ud在这项工作中,提出了一种用于检测FRP钢筋中分层缺陷的超声ND技术。该技术将Akaike信息标准(AIC)用作自动开始时间信号检测[3],并将信号的等效时间长度(ETL)用作相对于信号开始的能量分布指标。信号[4]。 ud当FRP与混凝土基板之间存在完美的结合时,由于FRP和下面的材料都是致密的固体,因此声阻抗失配很小,因此能量几乎传输到了混凝土上。另一方面,当FRP和混凝土之间的粘合性因薄的气隙而受损时,声阻抗失配更大,并且大量的能量被反射回去。结果表明,能量指示剂ETL对FRP-混凝土基体的粘结质量特别敏感。 ud建议的技术已在沥青-抓接模式下在体外粘结到混凝土基体的FRP增强材料上进行了测试,使用了样品在地板上的钢筋混凝土梁上就地施加了众所周知的缺陷。

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