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首页> 外文期刊>Bulletin of engineering geology and the environment >Physical reconstruction and mechanical behavior of fractured rock masses
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Physical reconstruction and mechanical behavior of fractured rock masses

机译:裂缝岩体的物理重建与力学行为

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摘要

Physical modeling of rock masses containing complex fracture geometries is an important but very challenging task in rock mechanics and rock engineering. In this work, a novel integration of 3D printing and water-soluble casting is presented for the preparation of rock-model specimens with fracture networks, which is similar to the lost-wax casting process. The fracture network is created with water-soluble polyvinyl alcohol (PVA) material by 3D printing. The intact rock matrix is prepared with cement paste. Uniaxial compressive tests combined with the digital image correlation (DIC) technique are conducted to investigate the mechanical properties and failure process of the prepared rock-model specimens. The differentiation rate of the effective variance is defined to recognize the precursory anomalies during the loading process. The mechanical anisotropy is further investigated by a series of rotated models. The results show that the proposed methodology has distinct advantages for replicating rocks with complex fracture geometries in terms of high accuracy for fabricating fracture networks, high repeatability of mechanical properties, and high strength and brittleness of rock matrices. Due to the presence of complex fracture geometries, the nonlinear mechanical responses of the fractured rock-model specimens, including strain-softening and anisotropy, are observed in our experiments.
机译:含有复杂骨折几何形状的岩体的物理建模是岩石力学和岩石工程中的重要而非常具有挑战性的任务。在这项工作中,提出了一种新的3D印刷和水溶性铸件的集成,用于制备具有裂缝网络的岩石模型标本,类似于丢失的蜡铸造过程。通过3D印刷用水溶性聚乙烯醇(PVA)材料产生裂缝网络。完整的岩石基质用水泥浆料制备。进行单轴压缩试验与数字图像相关性(DIC)技术进行,以研究制备的岩石模型样本的机械性能和故障过程。有效方差的分化率被定义为在装载过程中识别前兆异常。通过一系列旋转模型进一步研究了机械各向异性。结果表明,该方法在高精度方面具有显着的岩石复制岩石的岩石的优点,用于制造断裂网络,机械性能高的可重复性以及岩石基质的高强度和脆性。由于存在复杂的骨折几何形状,在我们的实验中观察到骨折岩石模型标本的非线性机械响应,包括应变软化和各向异性。

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