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Analyzing effects of surface roughness, voids, and particle-matrix interfacial bonding on the failure response of a heterogeneous adhesive

机译:分析表面粗糙度,空隙和颗粒-基质界面结合对异质粘合剂失效响应的影响

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An automated computational framework is introduced to link the microstructure to the micromechanical behavior of a heterogeneous adhesive composed of an epoxy matrix and embedded silica particles. A new reconstruction algorithm is employed to synthesize 3D periodic microstructural models of this materials system based on morphological and statistical data extracted from micro-computed tomography images. A non-iterative mesh generation algorithm is implemented in parallel to transform resulting virtual microstructures into finite element (FE) models. The continuum ductile and cohesive damage models used for simulating the adhesive's failure response are calibrated with experimental data and the statistical representative volume element (SRVE) is identified. We have then carried out several high-fidelity FE simulations to investigate the effects of pre-existing voids in the adhesive layer, surface roughness of adherends, and the bonding strength along particles-matrix interfaces on the failure response of the adhesive subject to tensile, compressive, and shear loads. (C) 2018 Elsevier B.V. All rights reserved.
机译:引入了自动计算框架,以将微观结构链接到由环氧基质和嵌入的二氧化硅颗粒组成的异质粘合剂的微观力学行为。基于从微计算机断层摄影图像中提取的形态和统计数据,采用一种新的重建算法来合成该材料系统的3D周期性微结构模型。并行执行非迭代网格生成算法,以将生成的虚拟微结构转换为有限元(FE)模型。用实验数据对用于模拟粘合剂失效响应的连续延性和内聚破坏模型进行校准,并确定统计上具有代表性的体积元素(SRVE)。然后,我们进行了几次高保真有限元模拟,以研究粘合剂层中预先存在的空隙,被粘物的表面粗糙度以及沿颗粒-基质界面的粘合强度对粘合剂在拉伸作用下的失效响应的影响,压缩和剪切载荷。 (C)2018 Elsevier B.V.保留所有权利。

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