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Study of Impact Damage in PVA-ECC Beam under Low-Velocity Impact Loading Using Piezoceramic Transducers and PVDF Thin-Film Transducers

机译:利用压电陶瓷换能器和PVDF薄膜换能器研究低速冲击载荷下PVA-ECC光束的冲击损伤

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Compared to conventional concrete, polyvinyl alcohol fiber reinforced engineering cementitious composite (PVA-ECC) offers high-strength, ductility, formability, and excellent fatigue resistance. However, impact-induced structural damage is a major concern and has not been previously characterized in PVA-ECC structures. We investigate the damage of PVA-ECC beams under low-velocity impact loading. A series of ball-drop impact tests were performed at different drop weights and heights to simulate various impact energies. The impact results of PVA-ECC beams were compared with mortar beams. A combination of polyvinylidene fluoride (PVDF) thin-film sensors and piezoceramic-based smart aggregate were used for impact monitoring, which included impact initiation and crack evolution. Short-time Fourier transform (STFT) of the signal received by PVDF thin-film sensors was performed to identify impact events, while active-sensing approach was utilized to detect impact-induced crack evolution by the attenuation of a propagated guided wave. Wavelet packet-based energy analysis was performed to quantify failure development under repeated impact tests.
机译:与常规混凝土相比,聚乙烯醇纤维增强工程水泥复合材料(PVA-ECC)具有高强度,延展性,可成形性和出色的抗疲劳性。但是,冲击引起的结构损坏是一个主要问题,以前在PVA-ECC结构中尚未得到表征。我们研究了低速冲击载荷下PVA-ECC梁的损伤。在不同的液滴重量和高度下进行了一系列落球冲击试验,以模拟各种冲击能量。比较了PVA-ECC梁与砂浆梁的冲击结果。聚偏二氟乙烯(PVDF)薄膜传感器和基于压电陶瓷的智能骨料的组合用于冲击监测,包括冲击的产生和裂纹的发展。进行了PVDF薄膜传感器接收到的信号的短时傅立叶变换(STFT)来识别冲击事件,而主动传感方法则通过传播的导波的衰减来检测冲击引起的裂纹演变。进行了基于小波包的能量分析,以量化重复冲击测试下的故障发展。

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