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Effects of surface preparation on the long-term durability of adhesively bonded composite joints.

机译:表面处理对胶粘复合接头长期耐久性的影响。

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The long-term durability of adhesively bonded composite joints is critical to modern aircraft structures, which are increasingly adopting bonding as an alternative option to mechanical fastening. The effects of the surface preparation of the adherends are critical, affecting initial strength, long-term durability, fracture toughness, and failure modes of bonded joints. In this study, several potential factors are evaluated, with focus on the following: (1) Effects of possible chemical contamination from release fabrics, release films, and peel plies during adherend cure. (2) Chemical and mechanical effects of abrasion on the fracture toughness and failure mode. (3) Characterization of paste and film adhesives.; There are several standard test methods used to evaluate specimen fracture, but the majority concentrate on bonded metals and interlaminar composite fracture. Testing concentrated on mode I tests; a custom double cantilever beam specimen was devised and utilized, and two forms of a wedge crack test (traveling and static) were also used. Additionally, single lap shear tests were run to contrast the mode I tests. Non-destructive testing included X-ray photography of crack fronts, energy dispersive spectroscopy and X-ray photoelectron spectroscopy surface chemistry analyses, and scanning electron microscope imaging of prepared surfaces.; All mode I test methods tended to be in agreement in the ranking of different surface preparation methods. Test results revealed that release agents deposited on adherend surfaces during their cure cycle prevented proper adhesion. While mechanical abrasion did improve their fracture toughness and lower their contamination greatly, the test values did not reach the levels of samples that were not contaminated before bonding, and the interfacial modes of failure did not always change to desirable modes.
机译:胶粘复合接头的长期耐用性对于现代飞机结构至关重要,现代飞机结构越来越多地采用粘接作为机械固定的替代选择。被粘物表面处理的影响至关重要,会影响初始强度,长期耐久性,断裂韧性和粘结接头的破坏模式。在这项研究中,评估了几个潜在因素,重点放在以下方面:(1)粘附体固化期间脱模织物,脱模膜和剥离层可能造成的化学污染的影响。 (2)磨损对断裂韧性和破坏方式的化学和机械作用。 (3)胶粘剂和薄膜胶粘剂的特性;有几种用于评估试样断裂的标准测试方法,但大多数集中在粘结金属和层间复合材料断裂上。测试集中在模式I测试上;设计并使用了定制的双悬臂梁标本,并且还使用了两种形式的楔形裂纹测试(行进和静态)。此外,还进行了单搭接剪切测试以对比I模式的测试。无损检测包括裂纹前沿的X射线照相,能量色散光谱和X射线光电子能谱表面化学分析,以及对准备好的表面进行扫描电子显微镜成像。所有I型测试方法在不同表面处理方法的等级上趋于一致。测试结果表明,在固化过程中沉积在被粘物表面上的脱模剂阻碍了适当的粘合。尽管机械磨损的确改善了其断裂韧性并大大降低了其污染,但测试值并未达到粘结前未受污染的样品的水平,并且界面破坏模式并不总是变为所需的模式。

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