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Investigation of the Anisotropic Characteristics of Layered Rocks under Uniaxial Compression Based on the 3D Printing Technology and the Combined Finite-Discrete Element Method

机译:基于3D打印技术的单轴压缩下层状岩石的各向异性特性及组合有限分元法研究

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The excavation in layered rocks is an issue for a number of geoengineering applications; these kinds of rocks all exhibit transverse isotropic features due to the process of metamorphic differentiation. This paper focuses on providing two methods, i.e., the 3D printing technology and the combined finite-discrete element method, to simulate the anisotropic characteristics of layered rocks. The results showed that both the 3D-printed samples and the FDEM numerical models are considered as a good match, and both revealed that as the inclined angle increased, the UCS of the sample first decreased and then increased, showing a U-shaped pattern. The results of this paper served as a reference to the promotion of the 3D printing technology and the combined finite-discrete element method in the geotechnical engineering field and laboratory test research.
机译:分层岩石的挖掘是许多地理工程应用的问题;由于变形分化的过程,这些类型的岩石都表现出横向各向同性特征。本文重点介绍提供两种方法,即3D打印技术和组合的有限离散元素方法,以模拟层状岩石的各向异性特性。结果表明,3D印刷样品和FDEM数值模型被认为是良好的匹配,并且都显示出随着倾斜角度的增加,样品的UCS首先降低,然后增加,显示U形图案。本文的结果担任岩土工程领域和实验室试验研究中促进3D印刷技术和组合有限离散元素的参考。

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