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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >On Approximately Realizing and Characterizing Pure Mode-I Interface Fracture Between Bonded Dissimilar Materials
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On Approximately Realizing and Characterizing Pure Mode-I Interface Fracture Between Bonded Dissimilar Materials

机译:粘合异种材料之间纯I型界面断裂的近似实现与表征

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摘要

Bimaterial systems in which two dissimilar materials are adhesively joined by a thin adhesive interlayer have been widely used in a variety of modern industries and engineering structures. It is well known that interfacial fracture is the most common failure mode for these bimaterial systems. Particularly, the interface fracture is a mixed mode in nature mode-I (pure peel) and mode-II (pure shear) due to the disrupted symmetry by the bimaterial configuration. Obviously, characterizing individual fracture modes, especially mode-I fracture, is essential in understanding and modeling the complex mixed mode fracture problems. Meanwhile, the J-integral is a highly preferred means to characterize the interfacial fracture behaviors of a bimaterial system because it cannot only capture more accurate toughness value, but also facilitate an experimental characterization of interfacial traction-separation laws (cohesive laws). Motivated by these important issues, a novel idea is proposed in the present work to realize and characterize the pure mode-I nonlinear interface fracture between bonded dissimilar materials. First, a nearly pure mode-I fracture test can be simply realized for a wide range of bimaterial systems by almost eliminating the mode-II component based on a special and simple configuration obtained in this work. Then, the concise forms of the J-integral are derived and used to characterize the interfacial fracture behaviors associated with classical and shear deformation beam theories. The proposed approach may be considered as a promising candidate for the future standard mode-I test method of bimaterial systems due to its obvious accuracy, simplicity, and applicability, as demonstrated by the numerical and experimental results.
机译:双材料系统中,两种不同的材料通过薄的粘合剂夹层粘合在一起,已广泛用于各种现代工业和工程结构中。众所周知,界面断裂是这些双材料系统最常见的破坏模式。特别地,由于双材料构造的对称性破坏,界面断裂在自然模式I(纯剥离)和模式II(纯剪切)下是混合模式。显然,表征单个裂缝模式,尤其是I型裂缝,对于理解和建模复杂的混合模式裂缝问题至关重要。同时,J积分是表征双材料系统界面断裂行为的首选方法,因为它不仅可以捕获更准确的韧性值,而且还可以方便地表征界面牵引力-分离规律(内聚规律)。受这些重要问题的激励,在本工作中提出了一个新颖的想法,以实现并表征键合异种材料之间的纯I型非线性界面断裂。首先,通过在这项工作中获得的特殊且简单的配置,几乎消除了II型组件,可以对多种双材料系统简单地实现接近I型的断裂试验。然后,导出J积分的简明形式,并将其用于表征与经典和剪切变形梁理论相关的界面断裂行为。数值和实验结果表明,该方法具有明显的准确性,简便性和适用性,可以认为是未来双材料系统标准I型测试方法的有希望的候选方法。

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