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Strap Repair Optimization by Using Embedded Patches

机译:使用嵌入式补丁优化表带修复

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Adhesively-bonded techniques offer an attractive option for repair of aluminium structures, and currently there are three widely used configurations, i.e., single-strap (SS), double-strap (DS) and scarf repairs. SS and DS repairs are straightforward to execute but stresses in the adhesive layer peak at the ends of the overlap. DS repairs additionally require both sides of the damaged structures to be reachable for repair, which is often not possible. In these repair configurations, some limitations emerge such as the weight, aerodynamic performance and aesthetics. The scarf repair is more complex to fabricate but stresses are more uniform along the adhesive bondline. Few studies of SS and DS repairs with embedded patches, such that these are completely flush with the adherends, are available in the literature. Furthermore, no data is available about the effects of geometrical and material parameters (e.g. the Young's modulus of adhesive, E) on the mechanical behaviour optimization of embedded repairs. For this purpose, in this work standard SS and DD repairs, and also with embedded patches in the adherends, were tested under tension to allow the geometry optimization, by varying the overlap length (L_O), thus allowing the maximization of the repairs strength. The influence of the patch embedding technique, showing notorious advantages such as aerodynamic or aesthetics, was compared in strength with standard strap repairs, for the viability analysis of its implementation. As a result of this work, some conclusions were drawn for the design optimization of bonded repairs on aluminium structures.
机译:胶粘技术为铝结构的修复提供了一种有吸引力的选择,并且目前存在三种广泛使用的配置,即单带(SS),双带(DS)和围巾修理。 SS和DS修复很容易执行,但是粘合剂层中的应力在重叠的两端达到峰值。 DS维修还额外要求受损结构的两侧都可以维修,这通常是不可能的。在这些维修配置中,会出现一些限制,例如重量,空气动力性能和美观性。围巾修复的制作难度更大,但沿粘合线的应力更均匀。文献中很少有关于用嵌入式补丁修复SS和DS的研究,以至于它们与被粘物完全齐平。此外,没有关于几何和材料参数(例如,粘合剂的杨氏模量E)对嵌入式修复的机械行为优化的影响的数据。为此,在这项工作中,对标准SS和DD修复以及粘附在被粘物中的嵌片进行了拉伸测试,以通过改变重叠长度(L_O)来优化几何形状,从而使修复强度达到最大。将贴片包埋技术的影响(如空气动力学或美观性)显示出臭名昭著的优势,并将其强度与标准皮带修理进行了比较,以对其实施的可行性进行分析。这项工作的结果是,对铝结构粘结修补的设计优化得出了一些结论。

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