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Experimental Study of Mechanical Properties of Rock Mass Containing Intermittent Joints of Prefabricated

机译:岩土力学性能的实验研究含有预制的间歇性接头的实验研究

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Most of the engineering rock masses contain a variety of different levels of geological tectonic joints and weak planes, which can weaken the rock strength. The rock masses containing joints have completely different mechanical properties with the intact ones. Through loading failure tests on the rock masses containing two intermittent joints of prefabricated of different spacing, the differences between jointed rock mass and intact one were studied. The research shows that: 1. Comparing with the intact rock mass, the stress-strain curve of jointed one has a relatively large fluctuation near the peak, it isn't smooth, and there's a reduction in the stage of plastic flow after yielding;;ultimate strength decreases obviously, joint depth has a great impact on strength, and there's no necessary link between ultimate strength of rock mass and joints spacing. 2. When the loading is failure, the elastic and deformation modulus of rock mass decrease obviously comparing with those of the intact rock mass, which tend small generally with the increment of joints spacing, however, they have a relatively complex relation and it isn't linear. 3. The failure characteristics of jointed rock mass are different from those of the intact rock mass, failure planes are relatively complex and no longer single shear or complementary shear ones, which presents that shear failures occur along the end of prefabricated joints with few extensional cracks;;the spacing of prefabricated joints have a great impact on the failure pattern of rock mass. The research results can provide certain references for the mechanical parameters selection of jointed rock mass of engineering design and numerical analysis.
机译:大多数工程岩体含有各种不同水平的地质构造关节和弱飞机,可以削弱岩石强度。含有关节的岩体具有完全不同的机械性能,具有完整的机械性能。通过在包含不同间距的预制的两个间歇性接头的岩体上装载失败测试,​​研究了关节岩体和完整的差异。该研究表明:1。与完整的岩体质量相比,关节的应力 - 应变曲线在峰值附近具有相对大的波动,它不是光滑的,并且塑性流动阶段的阶段减少了屈服; ;最终的力量明显降低,联合深度对力量产生了很大影响,并且岩体稳积之间没有必要的联系和关节间距。 2.当负载发生故障时,与完整岩体的弹性和变形模量明显减少,这与完整的岩体肿块相比,这通常是具有关节间距的增量的小,但是它们具有相对复杂的关系,它是一个相对复杂的关系t线性。 3.关节岩体的故障特性与完整岩体质量的故障特性不同,失效平面是相对复杂的,不再是单剪切或互补的剪切,这呈剪切故障沿预制接头的末端发生,具有少量延伸裂缝;;预制关节的间距对岩体的故障模式产生了很大影响。研究结果可以为工程设计和数值分析的联合岩石质量的机械参数选择提供某些参考。

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