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Investigation of mechanical properties and crack propagation behaviour of hybrid composites with epoxy resin matrix

机译:环氧树脂基质杂化复合材料力学性能及裂纹繁殖行为的研究

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Mechanical properties, micro structure and crack propagation behaviour of different fabric reinforced mono and hybrid composites for materials of wind turbines have been investigated. Mechanical properties of different fabrics (glass, basalt and carbon) reinforced mono and hybrid composites with epoxy resin matrix have been compared. For characterization of materials tensile, three-point bending and single-edge notched tensile (SEN-T) tests with acoustic emission study were used and scanning electron microscope (SEM) pictures have been taken of the fracture surfaces of composite specimens. Similar behaviour of glass and basalt fibre reinforced composites was revealed by tensile and three-point bending tests. The satisfactory adhesion between fibre and matrix was shown by scanning electron microscope. The fibre-break was proven by the taken pictures to be the main failure mechanism. Results of mechanical tests were also confirmed by acoustic emission study. The crack propagation method of glass and basalt fabric reinforced composites is similar.
机译:研究了不同织物增强单体的机械性能,微结构和裂纹传播行为和用于风力涡轮机材料的混合复合材料。已经比较了不同织物(玻璃,玄武岩和碳)的机械性能和具有环氧树脂基质的杂种复合材料。为了表征材料拉伸,使用具有声发射研究的三点弯曲和单边缘缺口拉伸(SeN-T)测试,并扫描电子显微镜(SEM)图像的复合样品的断裂表面。通过拉伸和三点弯曲试验揭示了玻璃和玄武岩纤维增强复合材料的类似行为。通过扫描电子显微镜显示纤维和基质之间的令人满意的粘附性。拍摄的照片被证明是纤维突破是主要的故障机制。声排放研究也证实了机械测试的结果。玻璃和玄武岩织物增强复合材料的裂纹传播方法类似。

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