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首页> 外文期刊>Rock Mechanics and Rock Engineering >An Experimental Study of Dependence of Optimum TBM Cutter Spacing on Pre-set Penetration Depth in Sandstone Fragmentation
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An Experimental Study of Dependence of Optimum TBM Cutter Spacing on Pre-set Penetration Depth in Sandstone Fragmentation

机译:最优TBM刀具间距对砂岩碎片预设渗透深度的依赖性的实验研究

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Cutter spacing is an essential parameter in the TBM design. However, few efforts have been made to study the optimum cutter spacing incorporating penetration depth. To investigate the influence of pre-set penetration depth and cutter spacing on sandstone breakage and TBM performance, a series of sequential laboratory indentation tests were performed in a biaxial compression state. Effects of parameters including penetration force, penetration depth, chip mass, chip size distribution, groove volume, specific energy and maximum angle of lateral crack were investigated. Results show that the total mass of chips, the groove volume and the observed optimum cutter spacing increase with increasing pre-set penetration depth. It is also found that the total mass of chips could be an alternative means to determine optimum cutter spacing. In addition, analysis of chip size distribution suggests that the mass of large chips is dominated by both cutter spacing and pre-set penetration depth. After fractal dimension analysis, we found that cutter spacing and pre-set penetration depth have negligible influence on the formation of small chips and that small chips are formed due to squeezing of cutters and surface abrasion caused by shear failure. Analysis on specific energy indicates that the observed optimum spacing/penetration ratio is 10 for the sandstone, at which, the specific energy and the maximum angle of lateral cracks are smallest. The findings in this paper contribute to better understanding of the coupled effect of cutter spacing and pre-set penetration depth on TBM performance and rock breakage, and provide some guidelines for cutter arrangement.
机译:刀具间距是TBM设计中的重要参数。然而,已经少量努力研究了包含渗透深度的最佳刀具间距。为了研究预先设定穿透深度和刀具间距对砂岩破损和TBM性能的影响,在双轴压缩状态下进行一系列顺序实验室凹口试验。研究了参数的效果,包括穿透力,穿透深度,芯片质量,芯片尺寸分布,凹槽体积,特定能量和横向裂纹的最大角度。结果表明,随着预先设定的穿透深度的增加,芯片的总质量,凹槽和观察到的最佳刀具间距增加。还发现芯片的总质量可以是确定最佳切割间距的替代方法。此外,芯片尺寸分布的分析表明大型芯片的质量由刀具间距和预先设定的穿透深度主导。在分形尺寸分析之后,我们发现刀具间距和预先设置的穿透深度对小芯片的形成可忽略不计,并且由于剪切故障引起的切割器和表面磨损而形成小芯片。对特定能量的分析表明,观察到的最佳间隔/穿透比为砂岩10,在此,特定能量和横向裂缝的最大角度最小。本文的研究结果有助于更好地了解切割器间距和预先设定渗透深度对TBM性能和岩石破损的耦合效果,并为切割装置提供一些指导。

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