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Mixed-mode fracture characteristics of metal-to-metal adhesively bonded joints: experimental and simulation methods.

机译:金属对金属粘合接头的混合模式断裂特性:实验和模拟方法。

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摘要

Fracture behavior of adhesively bonded joints subjected to mixed-mode (i.e. mode I+II) loading conditions is of importance in many industrial applications. This research therefore aims to characterise the failure behaviour of metal-to-metal (i.e. both aluminium adherends) adhesive joints using the mixed mode bending test (MMB), adapted from ASTM D6671/D6671M standard, along with instrumentation using acoustic emission (AE) sensor. Twenty-four adhesively bonded specimens were prepared using two types of adhesive bond materials (acrylic, cyanoacrylate) with two different bonded area 65% and 100%. To understand the effect of mixed-mode loading conditions on the failure behavior, two different mixity ratios were achieved through the design of the MMB test fixture and tested for each bonded joint. The AE results during mechanical testing shows that the time domain signals were spread over the loading phase with distinct features for different mixity ratios. They successfully identified the moment of adhesive fracture during every test. Also, the fracture behavior of the bonded joints was simulated using virtual crack closure technique (VCCT) method using finite element method to understand the loading dynamics in specimen when considering a combination of various design parameters. In addition, an analytical method (e.g. corrected beam theory or CBT) was used to determine strain energy release rates of each specimen. The results show that both the brittle and ductile specimens exhibited higher energy release rates when mode II proportion of loading was increased during the crack initiation phase. The proposed measurement can be useful to assess the overall structural health of bonded systems.
机译:在许多工业应用中,经受混合模式(即模式I + II)载荷条件的粘合接头的断裂行为很重要。因此,本研究旨在通过采用符合ASTM D6671 / D6671M标准的混合模式弯曲测试(MMB)以及使用声发射(AE)的仪器,来表征金属对金属(即铝粘附体)粘合接头的失效行为传感器。使用两种粘合面积分别为65%和100%的两种粘合材料(丙烯酸,氰基丙烯酸酯)制备了二十四个粘合样品。为了了解混合模式载荷条件对失效行为的影响,通过MMB测试夹具的设计获得了两种不同的混合比,并针对每个粘结接头进行了测试。机械测试过程中的声发射结果表明,时域信号在加载阶段分布,具有不同混合比的独特特征。他们成功地确定了每次测试中粘合剂破裂的时刻。此外,使用虚拟裂纹闭合技术(VCCT)方法使用有限元方法模拟了结合点的断裂行为,以了解在考虑各种设计参数组合时试样的载荷动态。另外,使用分析方法(例如,校正束理论或CBT)确定每个样品的应变能释放率。结果表明,在裂纹萌生阶段,当模式II的载荷比例增加时,脆性和延性试样都显示出较高的能量释放速率。建议的测量方法对于评估粘合系统的整体结构健康状况很有用。

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