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Influence of moisture content on the LCPC test results and its implications on tool wear in mechanized tunneling

机译:水分含量对LCPC测试结果的影响及其对机械隧道掘进工具磨损的影响

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Various testing methods have been proposed to measure rock abrasiveness as an input into the prediction models for estimating the tool wear in mechanized tunneling and mining. Among the proposed tests, LCPC test has been used by many researchers for assessment of rock abrasivity. In this study, 20 rock samples from various locations in Pakistan were subjected to comprehensive testing of various properties. The tests included LCPC (Laboratorie Central des Ponts et Chaussees) rock abrasivity tests as well as a complete suite of standard rock physical and mechanical property tests. Whilst the standard LCPC test is run in dry samples, this study compared the results of the LCPC method in dry and saturated conditions, performed at water contents of 15, 30, 45 and 60%. Overall abrasivity [measured as ABR (g/t)] decreased with the increase in water content with peak values of ABR (g/t) attained at 15% water contents for low porosity rocks and 30% water content for high porosity rocks when compared to dry tests. Similarly, a gradual decrease in the LCPC Breakability Index (BR%) was noted in the case of low porosity rocks with the corresponding increase in water content. However, for high porosity rocks there was a cyclic fall and rise in breakability (BR%) at 15% and 30% moisture levels, respectively. This was in contrast to dry tests. A steady drop in BR% was also observed at higher water contents. This paper discusses the result of the testing as well as practical implications of these measurements on predicted wear of cutting tools used in mechanized excavation in mining and tunneling applications. Preliminary statistical analysis of the data and correlations between ABR, water contents, and petrographic and engineering rock properties are also included in this paper.
机译:已经提出了各种测试方法来测量岩石的磨蚀性,作为预测模型的输入,以估计机械化隧道和采矿中的工具磨损。在提议的测试中,LCPC测试已被许多研究人员用于评估岩石的磨蚀性。在这项研究中,对巴基斯坦不同地点的20个岩石样品进行了各种性能的综合测试。测试包括LCPC(拉邦中央实验室实验室)岩石耐磨性测试以及一整套标准的岩石物理和机械性能测试。标准LCPC测试在干燥样品中进行,本研究比较了LCPC方法在干燥和饱和条件下(水分含量为15%,30%,45%和60%时)的结果。总体耐磨性[以ABR(g / t)衡量]随含水量的增加而降低,与之相比,低孔隙度岩石的含水量为15%,高孔隙度岩石的含水量为30%,ABR的峰值(g / t)达到了干测试。同样,在低孔隙度岩石的情况下,LCPC破碎性指数(BR%)逐渐降低,而含水量相应增加。但是,对于高孔隙度的岩石,在含水量分别为15%和30%时,其断裂性(BR%)会周期性下降。这与干式测试相反。在较高的水含量下,也观察到BR%的稳定下降。本文讨论了测试结果以及这些测量对采矿和隧道应用中的机械化开挖中使用的切削工具的预计磨损的实际意义。本文还包括对数据的初步统计分析以及ABR,含水量以及岩石学和工程岩石性质之间的相关性。

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