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Quantitative analysis of QSI and LVI damage in GFRP unidirectional composite laminates by a new ultrasonic approach

机译:采用新的超声方法定量分析GFRP单向复合材料层压板的QSI和LVI损伤

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摘要

Our work is focused on a new experimental approach for the comparison between Quasi Static Indentation (QSI) damage and Low-Velocity Impact (LVI) damage in polymer composites starting from the results of ultrasonic goniometric immersion tests. In particular, the comparison is performed through the analysis of the additional anisotropy induced by the damage in unidirectional Glass Fiber-Reinforced Polymer (GFRP) composites due to QSI and LVI damage tests performed with a low level of the employed energy. To this aim, we ultrasonically reconstruct the acoustic curves (velocity curves and slowness curves) before and after the damage. Ultrasonic experiments are performed by using a goniometric ultrasonic immersion device designed and built at our laboratory, aimed at the mechanical characterization of anisotropic materials. We highlight differences and similarities between QSI and LVI damage starting from the analysis of the variations of the acoustic behavior and by using a suitable anisotropic damage model developed in the framework of the Continuum Damage Mechanics theory. The proposed experimental approach can be suitably developed for in situ investigations on low-velocity impact damage in polymer composite components.
机译:我们的工作重点是从超声测角浸没测试的结果出发,比较聚合物复合材料中准静态压痕(QSI)损伤和低速冲击(LVI)损伤的新实验方法。特别是,比较是通过分析由单向玻璃纤维增​​强聚合物(GFRP)复合材料由于QSI和LVI破坏测试而导致的附加各向异性引起的,该各向异性测试是在使用的能量水平较低的情况下进行的。为此,我们对损伤前后的声学曲线(速度曲线和缓和曲线)进行超声重建。超声实验是通过使用在我们实验室设计和制造的,旨在对各向异性材料进行机械表征的测角超声浸没设备进行的。我们将从对声学行为的变化进行分析开始,并使用在连续损伤力学理论框架内开发的合适的各向异性损伤模型,重点介绍QSI和LVI损伤之间的异同。所提出的实验方法可以适当地用于聚合物复合材料部件中低速冲击损伤的原位研究。

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