Experimental Investigation to Fabricate Synthetic Laminated Rock with Different Bedding Plane Cohesive Strengths

Qingwen Shi, Brijes Mishra
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Abstract

Bedding plane properties influence the failure behavior of laminated rocks such as slate and shale. For safe and stable underground coal mine design it is imperative to understand the relationship between the bedding plane strength and the failure of laminated rock. However, it is difficult to obtain in situ laminated rocks with various bedding plane properties while keeping other properties constant. In the present research, we experimentally investigated various approaches to vary the weak plane cohesive strength (Cp). Concrete block incorporating a weak plane was casted and the Cp of the weak plane was varied experimentally using two methods. Direct shear tests along the planes validated that applying normal stress on the concrete block successfully varied the Cp. The verified method was then used to cast synthetic laminated rock (SLR) with various Cp. We then conducted Brazilian splitting tests on SLR with different orientations of bedding planes and compared the failure strength and failure modes with that of shale specimen. The results validated the second method as both failure strength and failure modes of SLR specimens matched the behavior of shale specimens. This research provided a validated method to fabricate SLR with different Cp in the laboratory.
不同层理面内聚强度合成层状岩的试验研究
层理面性质影响板岩、页岩等层状岩石的破坏行为。为了煤矿井下的安全稳定设计,了解层理面强度与层状岩体破坏之间的关系是十分必要的。然而,在保持其他性质不变的情况下,很难获得具有多种层理面性质的原位层状岩石。在本研究中,我们实验研究了改变弱平面内聚强度(Cp)的各种方法。采用两种方法对混凝土砌块进行浇筑试验,研究了混凝土砌块软弱面Cp的变化规律。沿平面的直剪试验验证了在混凝土块体上施加正应力成功地改变了Cp。然后,我们将验证的方法用于浇铸具有不同Cp的合成层状岩石(SLR)。然后,我们对不同层状平面方向的SLR进行了巴西劈裂试验,并将其破坏强度和破坏模式与页岩样品进行了比较。结果证实了第二种方法的有效性,SLR试样的破坏强度和破坏模式与页岩试样的行为相匹配。本研究为实验室制备不同Cp的单反提供了一种行之有效的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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