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注浆加固对破碎岩体抗剪强度影响的试验研究。

Experimental study on the effect of grouting reinforcement on the shear strength of a fractured rock mass.

机构信息

School of Energy Science and Engineering, Henan Polytechnic University, Jiaozuo, Henan, China.

Henan Collaborative Innovation Center of Coal Work Safety, Jiaozuo, Henan, China.

出版信息

PLoS One. 2019 Aug 12;14(8):e0220643. doi: 10.1371/journal.pone.0220643. eCollection 2019.

Abstract

To study the strengthening mechanism and effect underlying the reinforcement of a fractured rock mass with grouting, compressive shear tests were conducted with an RMT-150B rock mechanics test system. Prefabricated structural surfaces were strengthened with a new inorganic dual-liquid grouting material at five water-cement ratios (0.6-1.5). The effects of these water-cement ratios of the grouting on the deformation, strength, and failure characteristics of the prefabricated structural surface were analyzed. The results show that reinforcement with grouting significantly influenced the bearing capacity of the structural surface. The shear strength of the structure was significantly improved and the deformation resistance of the structural surface was enhanced. The shear stress-displacement curves, generated in compressive shear tests of the grouting-reinforced structures, were all nonlinear. The shearing process comprised three stages: elasticity, yield, and failure. Decreasing the water-cement ratio of the grouting material weakened the plasticity of the grouted structural surface and enhanced its brittleness. The deformation type changed from plastic slip to brittle shear. The shear strength, cohesion, and angle of internal friction of the grouting-reinforced structural surface increased with decreasing water-cement ratio.

摘要

为了研究注浆加固破碎岩体的强化机理和效果,利用 RMT-150B 岩石力学试验系统进行了压缩剪切试验。采用新型无机双液注浆材料,在五种水灰比(0.6-1.5)下对预制结构面进行了强化。分析了注浆水灰比对预制结构面变形、强度和破坏特性的影响。结果表明,注浆加固对结构面的承载能力有显著影响。结构的抗剪强度得到显著提高,结构面的变形阻力增强。注浆加固结构压缩剪切试验产生的剪切应力-位移曲线均呈非线性。剪切过程包括弹性、屈服和破坏三个阶段。降低注浆材料的水灰比会削弱注浆结构面的塑性,增强其脆性。变形类型由塑性滑移变为脆性剪切。随着水灰比的降低,注浆加固结构面的抗剪强度、内聚力和内摩擦角均增大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25bc/6690545/6c64e61e611a/pone.0220643.g001.jpg

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