Investigation on the Rock-Fragmentation Process of Conical-Shaped TBM Cutterhead in Extremely Hard Rock Ground

IF 0.2 Q4 ENGINEERING, CIVIL Civil Engineering Journal-Stavebni Obzor Pub Date : 2023-10-30 DOI:10.14311/cej.2023.03.0031
Shijun Chen, Xinyu Jin, Rucheng Hu, Fei Liu, Zhongsheng Hu
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Abstract

Conical-shaped cutterhead is one type of tunnel boring machine (TBM) cutterhead which may have advantage of high rock-breaking efficiency in extremely hard rock ground. This study investigated the rock-fragmentation process of disc cutters on the conical-shaped cutterhead via a series of numerical simulations that had been verified by laboratory rock-fragmentation tests. Firstly, the rock-fragmentation numerical model of the six cutters in the 'flat-cone' contiguous part was built based on cutting mode analysis of the conical-shape cutterhead. The rock sample in the numerical model was synthesized using a grain-based discrete element method (GB-DEM) and the reliability of this approach was verified via scaled rock-fragmentation tests conducted on a self-developed linear cutting machine (LCM). Then, a series of numerical simulations were conducted to study the influence of cutterhead cone angle, cutter spacing, and cutter installation angle on the rock-fragmentation performance. The results were as follows: 1) the nature of rock fragmentation in the cone area is the rock fragmentation under side free-face condition; 2) the penetration specific energy can be reduced and thus the rock-fragmentation efficiency can be improved by appropriately increasing the conical angle, reducing the cutter spacing, and increasing the cutter installation angle; 3) for the studied granite, the optimal conical angle is 25°, the cutter spacing is suggested to be no more than 70 mm, and the cutter tilt angle is suggested to be no more than 3°. The results obtained in this paper can be used as guidance for the design of the conical-shaped cutterhead.
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锥形TBM刀盘在极硬岩石地层中的破岩过程研究
锥形刀盘是隧道掘进机刀盘的一种,在极硬的岩石地层中具有破岩效率高的优点。本文通过一系列数值模拟研究了圆盘刀在锥形刀盘上的破岩过程,并通过室内破岩试验进行了验证。首先,在分析锥形刀盘切削模态的基础上,建立了“平锥”连续段6个刀盘的破岩数值模型;数值模型中的岩样采用基于颗粒的离散元法(GB-DEM)进行合成,并在自行研制的线性切割机(LCM)上进行了尺度岩石破碎试验,验证了该方法的可靠性。然后进行了一系列数值模拟,研究了刀盘锥角、刀间距、刀安装角对破岩性能的影响。结果表明:1)锥区岩石破碎性质为侧向自由面条件下的岩石破碎;2)适当增大锥角、减小切刀间距、增大切刀安装角,可以降低穿透比能,提高破岩效率;3)对于所研究的花岗岩,最佳锥角为25°,刀具间距建议不大于70 mm,刀具倾斜角度建议不大于3°。所得结果可为锥形刀盘的设计提供指导。
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来源期刊
自引率
0.00%
发文量
38
审稿时长
10 weeks
期刊介绍: The Civil Engineering Journal’s objective is to present the latest progress in research and development in civil engineering. It is desired to provide free and up to date information regarding innovations in various civil engineering fields. The Civil Engineering Journal is opened for all authors worldwide that follow the journal‘s requirements (theme, template and affirmative reviews). The journal is administrated by a public university (Civil Engineering faculty, Czech Technical University in Prague) and therefore publishing is free of charge with no exceptions. Main journal themes correspond to specialization of the Civil Engineering Faculty, CTU in Prague. Namely: Applied informatics Architecture Building Constructions and Municipal Engineering Building structures Building materials and components Building physics, building services Construction technology Construction management and economics Geodesy, Cartography, GIS Geotechnics Hydraulics and hydrology Hydraulic structures Indoor environmental and building services engineering Landscape water conservation Road and railway structures Sanitary and ecological engineering Structural mechanics Urban facility management Urban design, Town and regional planning Water management, Water structures.
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