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Experimental Investigation of the Mechanical Behavior of Aluminum Adhesive Joints under Mixed-Mode Loading Conditions

机译:混合模式加载条件下铝粘合剂枢纽力学行为的实验研究

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In recent years, structural adhesives have rapidly become the preferred alternative to resistance spot welding in fabricating stronger, lighter aluminum connections. Connections inevitably undergo and must withstand complex quasi-static and/or dynamic loads during their service life. Therefore, understanding how loading conditions affect the mechanical behavior of adhesive joints is vital to their design and the advancement of structural safety. Quasi-static and dynamic tests are performed to analyze both the strength and failure modes of aluminum 6062 substrates bonded by an adhesive (Darbond EP-1506) for an array of loading directions. An Arcan test device, which enables application of mixed-mode loads ranging from pure peel (mode I) to pure shear (mode II) to the adhesive layer, is employed in quasi-static testing. A self-designed medium-speed test machine is utilized to perform dynamic testing. To avoid severe system oscillations exhibited in force measurements during dynamic testing, the Arcan test device is replaced by a set of integrated fixtures to improve stiffness and reduce fixture weight. To induce manifold mechanical responses in the adherend and adhesive materials, the specimens are subjected to a mixture of transverse and shear forces. Experimental results demonstrate that the fracture displacement increases with an increase in testing angle of the applied force, indicating that ductile fracture predominates brittle fracture and governs failure when shear loading is significant in mixed loading scenarios, especially for dynamic tests. Furthermore, dynamic strengthening is observed in samples subjected to peel loading, but is undiscovered in samples tested under mixed loading conditions, where interfacial failure is more likely to occur compared to cohesive failure. This observation reveals that the cohesive zone is reinforced by the strain rate effect, whereas the interface between the adhesive and adherend does not experience this phenomenon.
机译:近年来,结构粘合剂已迅速成为电阻点焊的优选的备选方案中的制造坚固,更轻铝连接的焊接。连接不可避免地经历和必须承受其使用寿命期间复杂的准静态和/或动态负载。因此,了解负载条件如何影响粘接接头的力学性能是其设计和结构安全的发展是至关重要的。准静态和动态测试被执行以分析的铝两者强度和失效模式6062个基板通过粘接剂粘接(Darbond EP-1506)用于装载方向的阵列。一个Arcan测试装置,它使混合模式加载范围从纯的剥离(模式I)到纯剪切(模式II)的粘合剂层的应用中,采用在准静态测试。自行设计中速试验机被用来执行动态测试。为了避免在动态试验时,力的测量表现出严重的系统振荡,Arcan测试装置是由一组集成的夹具取代,以提高刚性,减少固定装置的重量。为了诱导在被粘物和粘合材料歧管的机械响应,试样经受横向力和剪切力的混合物。实验结果表明,随着用于测试所施加的力的角度,这表明韧性断裂占优势脆性断裂并规范失败时剪切载荷处于混合装载场景显著,特别是对于动态测试的断裂位移增加。此外,动态加强在经受剥离加载样品观察到,但在混合装载情况下,其中的界面破坏更可能比内聚破坏发生下测试的样品被发现。这一观察结果表明,内聚区由应变率效应增强,而胶粘剂与被粘物之间的界面不会出现此现象。

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