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The effects of temperature and deformation rate on fracture behavior of S-2 glass/epoxy laminated composites

机译:温度和变形率对S-2玻璃/环氧树脂层压复合材料裂缝行为的影响

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摘要

Cracks can occur in the composite structures during production, assembly, or usage. Environment temperature, deformation rate, and crack geometry have a direct influence on the fracture behavior of laminated composites. In this study, the fracture behavior of S-2 glass/epoxy composites having different crack geometry at different temperatures and deformation rates was investigated experimentally and numerically. Within the scope of the study, the fracture toughness (K) and strain energy release rate (G) values of samples with 5 mm crack geometry were calculated for the crack tip opening conditions in Mode I and Mode I/II. Fracture tests at different environmental temperatures were performed to investigate the effects of temperature on fracture behavior. Fracture tests were achieved at three different deformation rates, to exhibit the relationship between crack initiation and deformation rate. Also, the fracture behavior of S-2 glass/epoxy laminated composites was analyzed by using the finite element method (FEM). S-2 glass fabric reinforced composite is used as a new alternative to traditional building materials, especially in the aviation, space and military industries. The results obtained from the experimental and FEM studies of this composite structure showed that different environmental and loading conditions were effective on the fracture behavior of the composite structure.
机译:在生产、组装或使用过程中,复合材料结构中可能会出现裂纹。环境温度、变形速率和裂纹几何形状直接影响层合复合材料的断裂行为。在本研究中,对具有不同裂纹几何形状的S-2玻璃/环氧树脂复合材料在不同温度和变形速率下的断裂行为进行了实验和数值研究。在研究范围内,针对模式I和模式I/II中的裂纹尖端张开条件,计算了具有5mm裂纹几何形状的样品的断裂韧性(K)和应变能释放率(G)值。进行了不同环境温度下的断裂试验,以研究温度对断裂行为的影响。在三种不同变形速率下进行了断裂试验,以展示裂纹萌生和变形速率之间的关系。采用有限元法分析了S-2玻璃/环氧树脂复合材料的断裂行为。S-2玻璃纤维布增强复合材料被用作传统建筑材料的新替代品,特别是在航空、航天和军事工业中。对这种复合材料结构的实验和有限元研究结果表明,不同的环境和载荷条件对复合材料结构的断裂行为是有效的。

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