拟合节理脆性岩石的配合比设计的室内研究

Q4 Earth and Planetary Sciences
M. Asadizadeh, M. Hossaini, M. Moosavi, S. Mohammadi
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引用次数: 8

摘要

本文试图创造一种具有相对较高的单轴抗压强度(UCS)、易铸造、高柔韧性、即时硬化、低成本和易于获得的砂浆。这种材料的主要用途是物理模拟节理岩石样块的力学行为。研究了接头粗糙度系数(JRC)、桥长(L)、桥角(γ)和接头倾角(θ) 4个参数对非持久节理块体UCS的影响。为此,对35个圆柱形试件进行了不同龄期石膏含量(P)和水泥含量(C)范围较广的试验。为了提高块状试样的强度,采用了缓速剂和润滑剂。结果表明,使用重量百分比为3 wt. %(重量百分比)的润滑剂MGAR106和重量百分比为0.05 wt. %的缓凝剂可使水含量降低12.5%,石膏和水泥含量分别增加8.3%和4.17%。因此,块状试样的UCS提高了284.33%。采用多元非线性回归(MNR)和贝叶斯正则化人工神经网络(BRANN)模型研究了P/C含量和柱状试件年龄对UCS的影响。结果表明,与MNR模型相比,BRANN方法可以提供更精确的试样UCS预测。P/C含量对UCS的影响大于龄期。砌块试件的单轴抗压强度试验表明,增大桥长、桥角均可使单轴抗压强度增大,且最小节理倾角为60°。此外,生产材料的能力,以模拟裂缝行为的节理块被批准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A laboratory study on mix design to properly resemble a jointed brittle rock
In this paper attempts have been done to create a mortar with relatively high uniaxial compressive strength (UCS), easy casting, high flexibility, instant hardening, low cost and easy availability. The main use of this material is to physically model the mechanical behavior of jointed rock-like blocks. The effect of four parameters such as joint roughness coefficient (JRC), bridge length (L), bridge angle (γ) and joint inclination (θ) on UCS of non-persistent jointed blocks were studied. For this purpose, 35 cylindrical specimens with a broad range of plaster content (P) and cement content (C) in different ages were tested. In order to increase the strength of blocky specimens, some retarder and lubricant were used. The results showed that using 3 wt. % (Weight percent) lubricant MGAR106 and 0.05 wt. % Retarder decreases water content by 12.5% and increases plaster and cement content of 8.3% and 4.17 % respectively. Consequently, UCS of blocky specimens increased by 284.33%. In order to formulize the effect of P/C content and the age of cylindrical specimens (A) on UCS, Multivariate Non-linear Regression (MNR) and Bayesian Regularized Artificial Neural Network (BRANN) models were deployed. The results showed that BRANN approach can provide more exact predictions of the specimen UCS than MNR model. Moreover, P/C content had more influence on UCS than the specimen age. Finally the UCS tests on blocky specimens indicated that increasing JRC, bridge length and bridge angle increases UCS and it takes its minimum ate joint inclination of 60°. Furthermore, the capability of produced material to model cracking behaviour of jointed blocks was approved.
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来源期刊
International Journal of Mining and Geo-Engineering
International Journal of Mining and Geo-Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.80
自引率
0.00%
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0
审稿时长
12 weeks
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