首页> 外文会议>International Conference on Advanced Marine Materials >A COMPARISON BETWEEN A CHROMATE AND A NON CHROMATE SURFACE TREATMENT FOR ADHESIVE BONDING OF A CARBON FIBER COMPOSITE TO TITANIUM ALLOYS
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A COMPARISON BETWEEN A CHROMATE AND A NON CHROMATE SURFACE TREATMENT FOR ADHESIVE BONDING OF A CARBON FIBER COMPOSITE TO TITANIUM ALLOYS

机译:铬酸盐复合物与钛合金粘合剂粘合的铬酸盐和非铬酸盐表面处理的比较

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Presently, conventional surface treatment for adhesive bonding of Ti-6Al-4V to carbon fiber composites employs a hydrofluoric acid surface etch followed by strontium chromate coating. Both the acid-etch and chromate coating are environmentally unfriendly. The main objective of this research is to find an effective replacement to the conventional surface treatment that is environmentally friendly but maintains bond strength and bond durability. A two-step process involving an alkaline hydrogen peroxide treatment followed by a titanium-based treatment was proposed to replace the conventional treatment. Lap shear data from the these surface treatments indicated this new acid-free, chromate-free treatment had improved residual strength compared to conventional treatment after six weeks of salt spray exposure. In addition, inter-ply failure in the composite was the mechanism of failure for the new treatment while the conventional treatment separated at the substrate/chromate interface. The change in mechanism was thought due to surface modifications by the new treatment.
机译:目前,用于Ti-6Al-4V至碳纤维复合材料的粘合剂粘合的常规表面处理采用氢氟酸表面蚀刻,然后用铬酸盐涂层。酸蚀刻和铬酸盐涂层都是不友好的。本研究的主要目的是找到对环境友好的传统表面处理的有效替代,但保持粘合强度和粘合耐久性。提出了一种涉及碱性过氧化氢处理的两步方法,然后是钛的处理,以取代常规治疗。从这些表面处理中的LAP剪切数据表明,与常规治疗后六周的盐喷射暴露后,这种无酸性无铬酸盐处理具有改善的残余强度。此外,复合材料中的间隙衰竭是新处理的失效机制,而在基板/铬酸盐界面处分离的常规处理。由于新治疗的表面修饰,机制的变化被认为是由于表面修改。

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