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A Study on the Structure of Rock Engineering Coatings Based on Complex Network Theory

机译:基于复杂网络理论的岩石工程涂层结构研究

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As one of the most basic materials of engineering coatings, rock has complex structural characteristics in its medium space. However, it is still difficult to quantitatively characterize the microstructure of rock coatings, such as connectivity and aggregation degree. For this paper, based on a CT-scan model of rock coating, we extracted the network topology of a rock coating sample and verified that its microstructure parameter distribution accords with Barabasi and Albert (BA) scale-free theory. Based on this result, relying on the BA scale-free theory, a dual-porosity network model of rock coating was constructed. We extracted the network structure of the model to verify it, and analyzed the distribution of the microstructure parameters of the model, such as degree distribution, average path length and throat length distribution. At the same time, we analyzed the evolution trend of the permeability of the coating model with the microscopic parameters. Then we discuss the influence of the change of structural parameters on the microstructure of the coating model, and compared with the mainstream rock models at the present stage, the rationality and accuracy of the models are analyzed. This provides a new method for studying the mechanical and permeability properties of engineering coating materials.
机译:作为工程涂料最基本的材料之一,岩石在其中等空间中具有复杂的结构特征。然而,仍然难以定量表征岩涂层的微观结构,例如连通性和聚集度。本文基于岩涂的CT扫描模型,我们提取了岩涂样品的网络拓扑,并验证了其微观结构参数分布与Barabasi和Albert(BA)无尺寸理论的理论。基于该结果,依靠BA尺度理论,构建了岩涂的双孔隙率网络模型。我们提取了模型的网络结构以验证,并分析模型的微结构参数的分布,例如度分布,平均路径长度和喉部长度分布。同时,我们分析了涂层模型与微观参数的渗透性的演化趋势。然后我们讨论结构参数变化对涂层模型的微观结构的影响,并与本阶段主流岩石模型相比,分析了模型的合理性和准确性。这提供了研究工程涂料的机械和渗透性性能的新方法。

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