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A novel traction-separation law for the prediction of the mixed mode response of ductile adhesive joints

机译:一种新的牵引分离法则用于预测韧性粘接接头的混合模态响应

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摘要

A new traction-separation law that represents the constitutive relation of a ductile adhesive material in Mode I and Mode II is developed and introduced in interface elements for the finite element analysis of adhesive joints, within the framework of Cohesive Zone Modeling (CZM) techniques. The proposed law is based on the embedded process zone approach and is formulated to address the mixed-mode loading and fracture of adhesively bonded joints. This law is first used for the description of the pure Mode I (opening) and pure Mode II (sliding) loading and fracture and then it is integrated into a developed mixed-mode model in order to account for the dependence of the separate pure mode laws. The traction increasing part of the law is described by an exponential function, whereas the softening part is described by a linear decrease. Prediction of damage initiation is established through the nominal quadratic stress criterion, whereas the damage propagation is established through the linear energetic criterion. Experimental results from steel-to-steel single lap and Double Strap Joint configurations have been utilized for the validation of the proposed law and mixed-mode model. Comparisons are also provided from finite element analyses with the already known trapezoidal law and with the PRP (Park-Paulino-Roesler) model. The proposed law adequately captures the elastoplastic behaviour of the tested adhesive joints, in terms of their global response. Additionally, the strength of the tested joints is predicted with great accuracy. © 2011 Elsevier Ltd. All rights reserved.
机译:在粘性区域建模(CZM)技术的框架内,开发了一种新的牵引力分离定律,表示了模式I和模式II中的韧性粘合材料的本构关系,并将其引入到界面单元中,以进行粘合剂接头的有限元分析。拟议的法律是基于嵌入式工艺区域方法,并制定以解决混合模式的载荷和粘接接头的断裂。该定律首先用于描述纯模式I(打开)和纯模式II(滑动)的载荷和断裂,然后将其整合到已开发的混合模式模型中,以解决单独的纯模式的依赖性法律。定律的牵引力增加部分由指数函数描述,而软化部分由线性减小描述。通过标称二次应力准则建立损伤开始的预测,而通过线性能量准则建立损伤的传播。钢对钢单搭接和双钢带接头配置的实验结果已用于验证所建议的定律和混合模式模型。还通过有限元分析与已知的梯形定律和PRP(Park-Paulino-Roesler)模型进行了比较。拟议的法律就其整体响应而言,充分体现了被测粘合接头的弹塑性行为。此外,可以非常准确地预测被测接头的强度。 ©2011 Elsevier Ltd.保留所有权利。

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