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A NEW IDEA OF PURE MODE-I FRACTURE TEST OF BONDED BI-MATERIALS

机译:结合材料纯I型断裂试验的新思路

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Bi-material 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. There are two fundamental issues that need to be adequately addressed: (1) Fracture of bonded bi-materials is mixed mode: Mode-I (pure peel) and Mode-Ⅱ (pure shear). Fracture test implementation of bi-material systems with the traditional Mode-I methods will induce a noticeable mixed mode fracture due to the disrupted symmetry by the bi-material configuration; (2) The popular cohesive zone models (CZMs) for accurate fracture simulations require more than a single parameter (toughness) as is the case in the traditional linear elastic fracture mechanics (LEFM). Thus, J-integral is highly preferred. It can not only capture more accurate toughness value by considering the root rotation effect, but also facilitate the experimental characterizations of the interfacial cohesive laws, which naturally include all required parameters by CZMs. Motivated by these two 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: Despite the approximation with the elementary beam theories, the accuracy is validated by numerical simulations. The proposed approach may be considered as a promising candidate for the future standard Mode-I test method of adhesively bonded dissimilar materials due to its obvious simplicity and accuracy.
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。需要充分解决两个基本问题:(1)粘合双材料的断裂是混合模式:模式I(纯剥离)和模式II(纯剪切)。使用传统的I型方法对双材料系统进行断裂测试会由于双材料配置的对称性破坏而引起明显的混合模式断裂。 (2)像传统的线性弹性断裂力学(LEFM)一样,用于精确断裂模拟的流行内聚区模型(CZM)不仅需要单个参数(韧性)。因此,J-积分是高度优选的。它不仅可以通过考虑根部旋转效应来捕获更准确的韧性值,而且可以方便地进行界面凝聚规律的实验表征,其中自然包括了CZM所需的所有参数。受到这两个重要问题的推动,目前的工作中提出了一个新颖的想法,以实现和表征键合异种材料之间的纯模式-I非线性界面断裂:尽管与基本梁理论近似,但仍通过数值模拟验证了准确性。所提议的方法由于其明显的简单性和准确性,可以被认为是未来的粘合异种材料的标准I型测试方法的有希望的候选者。

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