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Study on Model Structure and Mechanical Anisotropy of Columnar Jointed Rock Mass Based on Three-Dimensional Printing Method

机译:基于三维印刷方法的柱状关节岩体模型结构与机械各向异性研究

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摘要

The natural structure of columnar jointed rock mass (CJRM) is complex because it was formed during the cooling process of volcanic rock. In CJRM, both the structures of columns and columnar joints are oriented, and the exact mechanical properties are difficult to obtain due to the lack of testing samples that correspond to natural rock masses. Therefore, this brings challenges for underground engineering construction related to CJRM. The reconstruction of CJRM is an effective method that can be used to resolve this problem. However, using an artificial method means that it is difficult to consider the detail of structures, such as irregular columns, columnar joints, and microcracks in columns. With the development of 3D printing (3DP) technology, a useful method for the accurate reconstruction of CJRM has been provided. In this paper, based on laboratory and in situ tests, the structural characteristics and mechanical properties of CJRM in Baihetan Hydropower Station will be investigated. Then, based on the accurate structural reconstruction of CJRM that considers the similarity constant between in situ and laboratory tests, the mechanical anisotropy and failure modes of 3DP CJRM specimens will be investigated. The results show that 3DP is an effective method for reconstructing the structures of CJRM and that it is necessary to consider the detail of the structures, such as the irregularity of columns, columnar joints, and microcracks. In addition, the unfavorable loading angles between the axis of the column and loading direction were obtained. The 3DP results presented in this paper could provide a reference to help understand the structural characteristics of CJRM.
机译:柱状关节岩体(CJRM)的自然结构很复杂,因为它在火山岩的冷却过程中形成。在CJRM中,柱子和柱状接头的结构都是取向的,并且由于缺乏与天然岩体对应的测试样品缺乏测试,因此难以获得精确的机械性能。因此,这为与CJRM相关的地下工程建设带来了挑战。 CJRM的重建是一种有效的方法,可用于解决这个问题。然而,使用人造方法意味着难以考虑结构的细节,例如不规则的柱,柱状接头和柱中的微裂纹。随着3D打印(3DP)技术的开发,提供了一种用于CJRM精确重建的有用方法。本文基于实验室和原位试验,研究了白初水电站CJRM的结构特征和力学性能。然后,基于CJRM的精确结构重建,其考虑原位和实验室测试之间的相似性常数,研究了3DP CJRM样本的机械各向异性和失效模式。结果表明,3DP是重建CJRM结构的有效方法,并且需要考虑结构的细节,例如柱,柱状关节和微裂纹的不规则性。另外,获得柱和装载方向之间的不利装载角度。本文提出的3DP结果可以提供参考,以帮助了解CJRM的结构特征。

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  • 来源
    《International journal of geomechanics》 |2020年第11期|04020208.1-04020208.13|共13页
  • 作者单位

    Institute of Rock and Soil Mechanics Chinese Academy of Sciences Wuhan Hubei 430071 China Univ. of Chinese Academy of Sciences Beijing 100049 China;

    Institute of Rock and Soil Mechanics Chinese Academy of Sciences Wuhan Hubei 430071 China Univ. of Chinese Academy of Sciences Beijing 100049 China;

    Institute of Rock and Soil Mechanics Chinese Academy of Sciences Wuhan Hubei 430071 China Univ. of Chinese Academy of Sciences Beijing 100049 China;

    East China Investigation and Design Institute Power China Huadong Engineering Corporation Hangzhou Zhejiang 310014 China;

    East China Investigation and Design Institute Power China Huadong Engineering Corporation Hangzhou Zhejiang 310014 China;

    College of Civil Engineering and Architecture Guangxi Univ. Nanning Guangxi 530004 China;

    Institute of Rock and Soil Mechanics Chinese Academy of Sciences Wuhan Hubei 430071 China Univ. of Chinese Academy of Sciences Beijing 100049 China;

    Institute of Rock and Soil Mechanics Chinese Academy of Sciences Wuhan Hubei 430071 China Univ. of Chinese Academy of Sciences Beijing 100049 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Columnar jointed rock mass; Three-dimensional printing; Structural reconstruction; Mechanical anisotropy; Failure characteristics;

    机译:柱状连接岩体;三维印刷;结构重建;机械各向异性;失败特征;

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