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Microscale groove effect on shear strength of epoxy-bonded dissimilar metal plate

机译:微观沟槽对环氧粘合异种金属板剪切强度的影响

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摘要

In this study, the shear strengths of Al 7075-HSS adhesive bonded, grooved and smooth plates were investigated. The proven toughness and durability of adhesives have drawn the attention of researchers who want to take advantage of the technology to benefit the development of ballistic resistance sandwich panels. However, the strength of the panel depends on the design of surface topography. Therefore, it is essential to understand the fracture upon loading parallel to the plane of the adhesive bonded metal plates. In this experiment, toughened epoxy was used to bond dissimilar metal plates at 1 mm thickness. The shear tests were performed with a universal-testing machine to identify the maximum fracture loads. The results showed that a shear lap joint specimen with a grooved surface yields a higher strength than a smooth specimen. From the fracture behaviour of all specimens, interfacial failure with some degree of cohesive failure was observed. This indicates that the strength of the adhesive-bonded metal plate driven by a mechanical interlocking effect and mode of failure for thick bondline was the result of interfacial strength rather than adhesive bulk strength. Shear value results and fractography for 1 mm bond thickness provide insights towards steel fibre application in epoxy.
机译:在这项研究中,研究了Al 7075-HSS粘接,开槽和光滑板的剪切强度。胶粘剂经证实的韧性和耐用性吸引了研究人员的注意,他们希望利用该技术来受益于防弹夹芯板的开发。但是,面板的强度取决于表面形貌的设计。因此,必须理解平行于粘合金属板的平面加载时的断裂。在该实验中,使用增韧的环氧树脂以1 mm的厚度粘合异种金属板。用万能试验机进行剪切试验,以确定最大断裂载荷。结果表明,带有凹槽表面的剪切搭接接头试样比光滑试样具有更高的强度。从所有试样的断裂行为,观察到界面破坏和一定程度的内聚破坏。这表明由机械互锁效应和厚粘结层破坏模式驱动的粘结金属板的强度是界面强度而不是粘结松散强度的结果。 1 mm粘结厚度的剪切值结果和分形术可提供有关钢纤维在环氧树脂中应用的见解。

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