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Delamination evaluation of composite laminates with different interface fiber orientations using acoustic emission features and micro visualization

机译:使用声发射特征和微观可视化评估具有不同界面纤维取向的复合材料层压板的分层

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摘要

This study aims to investigate the sequence of initiation and evolution of different damage mechanisms during the DCB standard test procedure on specimens with different interface fiber orientation using Acoustic Emission (AE) data analysis and microscopic imaging methods. For this purpose, a series of experiments based on standard ASTM D5528 were performed on 24 layer glass epoxy multidirectional specimens with [[+/-upsilon/0(5)](As)](As) layup, in which upsilon is 0. 30. 45 and 60. The acoustic data were then acquired with two AE sensors and the whole test procedure was observed by two digital cameras, which were focused on specimen edges. The results show that the initiation and evolution process of matrix cracking as the first activated damage mechanism greatly depends on the interface fiber orientation. Also, load-displacement curves and AE data can be well correlated with microscopic observation in all stages of damage initiation, evolution and propagation. Although the standard nonlinear point as crack initiation onset predict an equal fracture energy for all cases, however AE analyses and microscopic observations show early damage initiation and evolution in 45 and 60-degree interfaces. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是使用声发射(AE)数据分析和显微成像方法,研究具有不同界面纤维取向的样品在DCB标准测试过程中,不同损伤机理的引发和演化顺序。为此,在具有[[+/- upsilon / 0(5)](As)](As)叠层的24层玻璃环氧多向标本上进行了一系列基于标准ASTM D5528的实验,其中up​​silon为0。 30. 45和60.然后,使用两个AE传感器获取声学数据,并通过两个数码相机观察整个测试过程,并将其聚焦在样品边缘上。结果表明,基体开裂的起始和演化过程是第一激活损伤机制,在很大程度上取决于界面纤维的取向。同样,在位移的起始,演化和传播的所有阶段,载荷-位移曲线和AE数据都可以与微观观察很好地相关。尽管标准的非线性点作为裂纹开始的起点,在所有情况下均能预测到相等的断裂能量,但是,声发射分析和显微镜观察显示,在45度和60度界面处,损伤的早期萌生和演化过程。 (C)2017 Elsevier Ltd.保留所有权利。

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