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Effect of surface treatment on adhesively bonded aluminium-aluminium joints regarding aeronautical structures

机译:表面处理对航空结构粘接铝 - 铝接头的影响

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AbstractThe structural integrity of several structures could be determined by their joints strength. Over the years, adhesively bonded joints have been often chosen to achieve a compromise between mass reduction and higher mechanical strength. Among others, the reduction in stress concentrations, the ability of producing smooth surfaces with no discontinuities and the reduced weight penalties are some of the factors that make this type of joints so attractive. Normally, to increase the bond strength, the materials to be bonded must be subjected to a kind of surface treatment. For metals, and more specifically, for aluminium alloys, phosphoric acid anodizing and chromic acid anodizing have been the most used treatments worldwide. However, recent investigations show that these kinds of anodizing are detrimental to health due to the release of carcinogenic substances. With this in mind, it is of the utmost importance to find alternative surface treatments that can ensure an effective bond. In this paper, a vast experimental study was performed based in the single lap joint ASTM D 1002 standard method, with the objective of determining the best alternative surface treatment (Sulfuric Acid Anodizing and Boric-Sulfuric Acid Anodizing), for aluminium-to-aluminium joints, using two types of adhesives, namely the AF 163 and the EA 9658 AERO. Results show that the optimum surface treatment is different for each type of adhesive and this fact has a huge influence on mechanical behavior of this type of aeronautical adhesive joints.Highlights?The mechanical performance regarding adhesively bonded joints in aeronautical structures is addressed.?The effect of surface treatment on adhesively bonded joints and its related strength is characterized and evaluated.?The different type of failures regarding the different combinations of treatment vs adhesive are evaluated.]]>
机译:<![cdata [ 抽象 若干结构的结构完整性可以通过它们的关节强度来确定。多年来,已经选择粘合的接头以在质量降低和更高的机械强度之间实现折衷。其中,压力浓度的降低,生产平滑表面的能力,没有不连续性和减轻的重量惩罚是使这种类型的关节如此吸引人的一些因素。通常,为了增加粘合强度,必须进行待粘合的材料必须进行一种表面处理。对于金属,更具体地,对于铝合金,磷酸阳极氧化和铬酸阳极氧化是全世界最多的治疗方法。然而,最近的调查表明,由于泌尿原物质的释放,这些种类的阳极氧化对健康有害。考虑到这一点,寻找可以确保有效债券的替代表面处理至关重要。本文基于单圈接头ASTM D 1002标准方法进行了巨大的实验研究,目的是确定最佳替代表面处理(硫酸阳极氧化和硼硫酸阳极氧化),用于铝 - 铝关节,使用两种类型的粘合剂,即AF 163和EA 9658 Aero。结果表明,每种类型的粘合剂都有不同的表面处理,这一事实对这种类型的航空粘合剂接头的力学行为产生了巨大影响。 亮点 有关航空结构中的粘粘合接头的机械性能是解决的。 表面处理在粘性上的效果粘结的关节及其相关强度的特征和相关强度进行了评估。 评估了关于不同治疗组合的不同类型VS粘合剂的故障。 ]]>

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