Mechanical behavior of fiber-glass plastic with hole pattern using digital image correlation and acoustic emission methods

E. Strungar, Dmitriy Lobanov, Ekaterina Chebotareva, Yaroslava Kochneva
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Abstract

In this paper, tensile tests of specimens with a pattern of holes made of fiber-glass plastic based on combined epoxy and phenol-formaldehyde resins are carried out in order to study the processes of damage accumulation and tension fracture. The Vic-3D video system is used to evaluate damage development and inhomogeneity of strain localization during loading. Continuous recording of acoustic emission signals is carried out during the tests, resulting in obtaining data on fracture mechanisms in the material. Ranges of peak frequencies are identified. Surface analysis of specimens was carried out using a microscope. A significant reduction in strength occurs due to the presence of a circular hole in the material, although additional holes do not exacerbate this effect. Fracture patterns of specimens with a hole pattern have been analyzed, and different "paths" of fracture have been observed. The comparison of strain fields obtained on the basis of application of three-dimensional digital optical system with the configuration of strain fields constructed as a result of numerical modeling by the finite element method has been carried out. It is found that the strain fields for different open hole patterns are quantitatively and qualitatively similar and identical.
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利用数字图像相关和声发射方法研究带有孔洞图案的玻璃纤维塑料的机械性能
本文对基于环氧树脂和酚醛树脂组合的玻璃纤维塑料制成的带有孔洞图案的试样进行了拉伸试验,以研究损伤累积和拉伸断裂的过程。Vic-3D 视频系统用于评估加载过程中的损伤发展和应变定位的不均匀性。在测试过程中连续记录声发射信号,从而获得材料断裂机制的数据。确定了峰值频率范围。使用显微镜对试样进行表面分析。由于材料中存在一个圆孔,强度明显降低,但额外的圆孔不会加剧这种影响。对带孔试样的断裂模式进行了分析,观察到了不同的断裂 "路径"。应用三维数字光学系统获得的应变场与通过有限元法建立的数值模型应变场配置进行了比较。结果发现,不同开孔模式的应变场在数量和质量上是相似和相同的。
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