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首页> 外文期刊>International Journal of Solids and Structures >Characterization and modeling of strain assisted diffusion in an epoxy adhesive layer
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Characterization and modeling of strain assisted diffusion in an epoxy adhesive layer

机译:环氧胶粘剂层中应变辅助扩散的表征和建模

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摘要

In this paper a coupled model for strain-assisted diffusion is derived from the basic principles of continuum mechanics and thermodynamics, and material properties characterized using diffusion experiments. The proposed methodology constitutes a significant step toward modeling the synergistic bond degradation mechanism at the bonded interface between a Fiber Reinforced Polymer (FRP) and a substrate, and for predicting debond initiation and propagation along the interface in the presence of a diffusing penetrant at the crack tip and at elevated temperatures. It is now well-known that Fick's law is frequently inadequate for describing moisture diffusion in polymers and polymer composites. Non-Fickian or anomalous diffusion is likely to occur when a polymer is subjected to external stresses and strains, as well as elevated temperatures and humidity. In this paper, a modeling methodology based on the basic principles of continuum mechanics and thermodynamics is developed which allows characterization of the combined effects of temperature, humidity, and strain on diffusion coefficients as well as on moisture saturation level, from moisture weight gain data. For tractability, the diffusion governing equations are simplified for the special case of I-D diffusion subjected to uniaxial strain and a uniform strain gradient. A novel test specimen that introduces a uniform strain gradient is developed, and diffusion test data for an epoxy-based primer/adhesive are presented and employed for complete characterization of material constants used in the model. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在本文中,从连续力学和热力学的基本原理以及使用扩散实验表征的材料特性中得出了应变辅助扩散的耦合模型。拟议的方法学是朝着在纤维增强聚合物(FRP)和基材之间的粘结界面处建立协同粘结降解机理建模迈出的重要一步,并用于预测在裂纹处存在扩散渗透剂的情况下脱胶引发和沿该界面的扩散。尖头和高温。众所周知,菲克定律通常不足以描述水分在聚合物和聚合物复合材料中的扩散。当聚合物受到外部应力和应变以及升高的温度和湿度时,可能会发生非菲克式或反常扩散。在本文中,开发了一种基于连续力学和热力学基本原理的建模方法,该方法可从水分增重数据中表征温度,湿度和应变对扩散系数以及水分饱和度的综合影响。为了易于处理,简化了I-D扩散在单轴应变和均匀应变梯度下的特殊情况下的扩散控制方程。开发了一种引入均匀应变梯度的新型测试样品,并给出了基于环氧的底漆/粘合剂的扩散测试数据,并将其用于模型中材料常数的完整表征。 (c)2005 Elsevier Ltd.保留所有权利。

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