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首页> 外文期刊>International Journal of Adhesion & Adhesives >Durability of titanium adhesive bonds with surface pretreatments based on alkaline anodisation
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Durability of titanium adhesive bonds with surface pretreatments based on alkaline anodisation

机译:钛胶结合剂的耐用性以及基于碱性阳极氧化的表面预处理

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The most recent works suggest that the alkaline anodizing process (NaTESi) based in a bath of sodium hydroxide may be an attractive alternative to chromic acid anodizing (CAA) for surface pretreatment of titanium alloys for preparing hybrid adhesive bonds Ti6Al4V/Carbon Fiber Reinforced Composite (CFRC). This work compares several anodizing processes used for surface preparation, such as CAA, NaTESi and two modified NaTESi processes. The surface morphology, roughness, surface free energy and, especially, the initial strength adherence and durability under the wedge crack tests have been characterized. Wedge crack tests were performed in three different ageing media that may be representative of the environment that adhesive joints based upon Ti6Al4V/CFRC have to withstand during aircraft service life environments: hot/wet conditions; CTB3+TS test, that combines wet-dry cycles with exposure to a corrosive environment (CTB3) and thermal shocking (TS); and immersion tests in a Lap Joint Simulant Solution (LJSS). The results indicate that despite the morphological differences of the oxide grown by CAA and NaTESi, the initial adhesive strength with an epoxy adhesive and the durability of the bond are similar for both anodizing processes. Conversely, higher initial adhesive forces are exhibited for both modified NaTESi anodizing processes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最新工作表明,基于氢氧化钠浴的碱性阳极氧化工艺(NaTESi)可能是铬酸阳极氧化(CAA)的一种有吸引力的替代方法,用于钛合金的表面预处理,以制备混合粘合键Ti6Al4V /碳纤维增强复合材料( CFRC)。这项工作比较了用于表面处理的几种阳极氧化工艺,例如CAA,NaTESi和两种改良的NaTESi工艺。已经表征了在楔形裂纹测试下的表面形态,粗糙度,表面自由能,尤其是初始强度粘附性和耐久性。楔形裂纹测试是在三种不同的老化介质中进行的,这些介质可以代表飞机使用寿命期间基于Ti6Al4V / CFRC的粘合接头必须承受的环境。 CTB3 + TS测试,将干湿循环与暴露于腐蚀性环境(CTB3)和热冲击(TS)相结合;膝关节模拟解决方案(LJSS)中的浸没测试。结果表明,尽管CAA和NaTESi所生长的氧化物在形貌上有所差异,但在两种阳极氧化工艺中,环氧粘合剂的初始粘合强度和键的耐久性均相似。相反,两种改良的NaTESi阳极氧化工艺均表现出较高的初始粘合力。 (C)2016 Elsevier Ltd.保留所有权利。

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