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The Effect of Geometry and Material Properties on the Load Capacity of Single-Strapped Adhesive Bonded Joints

机译:几何和材料特性对单肩粘合接头负荷能力的影响

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摘要

Adhesive bonding is a particularly effective method of assembling complex structures, especially those made from dissimilar materials. If the joint is well designed and correctly executed, the adhesive bond ought to be one of the strongest components of the structure and most certainly should not be the reason for reducing the load capacity or fatigue life. The major factors determining the integrity of an adhesive bond are selection of the most appropriate adhesive, joint design, preparation of the bonding surfaces, strict quality control in production and monitoring in service. This work focuses on the evaluation of the load capacity of some configurations of adhesively bonded single-strapped joints based on finite element analyses. The adhesive layer thickness, the overlap length, the adherent and strap thicknesses were varied as well as the materials properties.
机译:粘合剂粘合是组装复杂结构的特别有效的方法,尤其是由不同材料制成的方法。如果接头设计良好并正确执行,粘合剂粘合剂应该是结构最强的部件之一,最肯定不应该是降低负载能力或疲劳寿命的原因。确定粘合剂粘结完整性的主要因素是选择最合适的粘合剂,关节设计,粘接表面的制备,生产和在服务中监测的严格质量控制。这项工作侧重于评估基于有限元分析的粘粘合的单捆接头的一些配置的负荷能力。粘合剂层厚度,重叠长度,粘附剂和带厚度以及材料特性。

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