Vigón Paula, Argüelles Antonio, Mollón Victoria, Lozano Miguel, Bonhomme Jorge, Viña Jaime
Department of Construction and Manufacturing Engineering, University of Oviedo, Edificio Departamental Oeste, 33203 Gijón, Spain.
Department of Materials Science and Metallurgical Engineering, University of Oviedo, Edificio Departamental Este, 33203 Gijón, Spain.
Materials (Basel). 2022 May 20;15(10):3669. doi: 10.3390/ma15103669.
This study analyzes the behavior under the static delamination and mode-I fracture stress of adhesive joints made on the same composite material with an epoxy matrix and unidirectional carbon fiber reinforcement and two types of adhesives, one epoxy and the other acrylic. Standard DCB tests (for mode-I fracture) were used to quantify the influence on the interlaminar fracture toughness of the type of adhesive used. Both materials were subjected to two different degradation processes, one hygrothermal and the other in a salt-fog chamber. After aging, the mode-I fracture has been evaluated for both materials. From the experimental results obtained, it can be deduced for the epoxy adhesive that exposure to the hygrothermal environment used moderately modifies its behavior against delamination, while its exposure to the saline environment produces a significant loss of its resistance to delamination. For the acrylic adhesive, the hygrothermal exposure causes an improvement in its delamination behavior for all the exposure periods considered, while the saline environment slightly modifies its behavior. There is, therefore, a clear influence of the type of aging on the fracture behavior of both adhesives.
本研究分析了用环氧基体和单向碳纤维增强的同一复合材料制成的粘结接头,在静态分层和I型断裂应力下,使用两种胶粘剂(一种是环氧胶粘剂,另一种是丙烯酸胶粘剂)时的行为。采用标准双悬臂梁试验(用于I型断裂)来量化所用胶粘剂类型对层间断裂韧性的影响。两种材料都经历了两种不同的降解过程,一种是湿热老化,另一种是盐雾试验箱老化。老化后,对两种材料的I型断裂进行了评估。从获得的实验结果可以推断,对于环氧胶粘剂,暴露在所用的湿热环境中会适度改变其抗分层性能,而暴露在盐环境中会使其抗分层能力显著下降。对于丙烯酸胶粘剂,在所有考虑的暴露时间段内,湿热暴露都会改善其分层性能,而盐环境只会轻微改变其性能。因此,老化类型对两种胶粘剂的断裂行为有明显影响。