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基于攝影測量的三軸土體剪切帶演化規律

Evolution law of the soil shear band in a triaxial test based on photogrammetry technology

  • 摘要: 為實現土樣局部變形的定向研究,同時優化土樣的變形測量精度,將數字圖像測量與三軸試驗結合,在不對儀器做大型改造的條件下,運用攝影測量技術改良試驗. 以桂林地區紅黏土為研究對象,試驗全程對土樣全表面進行受力變形監測,并還原土樣的三維重構模型,以此研究其應力應變關系、局部應變特性、剪切帶演化規律. 研究結果表明:(1)土樣表面的剪切帶內外區域具有截然不同的變形特征,帶外區域變形較為均勻且變形量趨于穩定,而帶內區域變形不均勻且變形量不斷加劇;(2)根據土樣表面不同區域間的局部應變差異,確定了剪切帶開始形成、停止擴張及完全貫穿的臨界狀態,提出了一種判別剪切帶發展階段的方法;(3)根據判別方法,將剪切帶的演化過程拆分為壓縮變形、表面擴張、延伸貫穿、相對滑移四個階段,并分析了各個階段不同的變形規律與破壞機理. 經攝影測量技術改良的三軸試驗,能夠得到更準確的土體局部本構關系和變形特性,為探索土的應變局部化現象提供了一種精確且經濟的研究方案.

     

    Abstract: A triaxial test is a common method for studying the shear strength of soil. This test simulates actual engineering conditions; therefore, the evolution law of the shear band is universal. An in-depth study of this law will help reveal the shear failure characteristics of soil and promote the development of soil mechanics, geological disasters, and other disciplines. To implement directional research on the local deformation of soil samples and optimize the deformation measurement accuracy of soil samples, this paper combined digital image measurements with a triaxial test and used photogrammetry technology to improve this test without a large-scale transformation of the instrument. Taking the red clay soil in Guilin as the research object, the stress and deformation of soil samples on the entire surface were monitored throughout the test, and the accurate deformation data of 136 marked targets on the surface were collected. Based on these data, a three-dimensional reconstruction model of the soil samples was restored to study the overall and local stress–strain relationships, whereas the local strain characteristics were intensively analyzed. Depending on the deformation characteristics of the soil samples during the shear zone development, the evolution law of the shear zone from germination to complete formation was analyzed, and the evolution process was divided into four consecutive stages according to the proposed critical state discrimination method. The results of the study are as follows: (1) The outer and inner regions of the shear band on the soil sample surface have completely different deformation characteristics. In the outer region, the deformation is uniform, and the deformation extent tends to be stable. In the inner region, the deformation is nonuniform, and the deformation extent is continuously intensified. (2) According to the local strain difference between different regions on the surface of the soil samples, the critical state of shear band formation is determined: initial formation, stop expansion, and complete penetration. Moreover, a method is proposed to discriminate the stage of shear band development based on the localized strain on the sample surface. (3) Based on this method, the evolution process of the shear band is divided into four stages: compression deformation, surface expansion, extension penetration, and relative slip, and the different deformation laws and failure mechanisms of each stage are analyzed. The triaxial compression test of soil modified by the photogrammetry technique can obtain more accurate local intrinsic relationships and deformation characteristics, providing an accurate and economical research solution to investigate strain localization phenomenon.

     

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