期刊文献+

Comparative Study of the Rock-breaking Mechanism of a Disc Cutter and Wedge Tooth Cutter by Discrete Element Modelling

下载PDF
导出
摘要 The operation of a shield tunnel boring machine(TBM)in a high-strength hard rock stratum results in significant cutter damage,adversely affecting the thrust and torque of the cutter head.Therefore,it is very important to carry out the research on the stress characteristics and optimize the cutter parameters of cutters break high-strength hard rock.In this paper,the rock-breaking performance of cutters in an andesite stratum in the tunnel of Qingdao Metro Line No.8 was investigated using the discrete element method and theoretical analysis.The rock-breaking processes of a disc cutter and wedge tooth cutter were simulated by software particle flow code PFC^(3D),and the rock-breaking degree,stress of the cutter,and rock-breaking specific energy were analyzed.The rock damage caused by the cutter in a specific section was divided into three stages:the advanced influence,crushing,and stabilizing stages.The rock-breaking degree and the tangential and normal forces of the wedge tooth cutter are larger than that of the disc cutter under the same conditions.The disc cutter(wedge tooth cutter)has the highest rock-breaking efficiency at a cutter spacing of 100 mm(110 mm)and a penetration depth of 8 mm(10 mm),and the rock-breaking specific energy is 11.48 MJ/m^(3)(12.05 MJ/m^(3)).Therefore,two types of cutters with different penetration depths or cutter spacing should be considered.The number of teeth of wedge tooth cutters can be increased in hard strata to improve the rock-breaking efficiency of the shield.The research results provide a reference for shield cutterhead selection and cutter layout in similar projects.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第3期269-285,共17页 中国机械工程学报(英文版)
基金 Supported by National Natural Science Foundation of China(Grant Nos.51608521,51809264) Beijing Municipal Major Achievements Transformation and Industrialization Projects of Central Universities(Grant No.ZDZH20141141301) the Fundamental Research Funds for the Central Universities(Grant No.2023ZKPYLJ06).
  • 相关文献

参考文献3

二级参考文献18

  • 1R. Cordel, G. Comes, P. Duffaut, A. Valantin, M. Coder, and R. Perami, La geotechnique et le creusement mecanise des tunnels, Institut Technique Du Batiment et des Travaux Publics, 1974.
  • 2P.J. Tarkoy and M. Marconi, Difficult rock comminution and associated geological conditions, [in] Proceeding of the 6th Congress on Tunnelling, London, 1991, p. 195.
  • 3K. Gehring, Design criteria for TBM's with respect to real rock response, [in] Proceeding of Tunnel Boring Machines: Trends in Design and Construction of Mechanised Tunnelling, Linz, 1995, p.43.
  • 4S. Klein, M. Schmoll, and T. Avrey, TBM performance at four hard rock tunnels in California, [in] Proceedings of the Rapid Excavation Tunnel Conference, S. Francisco, 1995, p.61.
  • 5N. Innaurato and P.P. Oreste, L'interazione roccia-utensile helle macchine di scavo per roccia, [in] Atti dell'VIII Ciclo di Conferenze di Meccanica ed Ingegneria delle Rocce, Torino, 2000, p. 111.
  • 6N. Innaurato and P. Oreste, Theoretical approach for assess- ment of the mechanics of rock failure in the TBMs tools-rock interaction, [in] Proceedings of the AITES-ITA Worm Tunnel Congress, Milan, 2001, p.227.
  • 7N. Barton, TBM Tunnelling in Jointed and Faulted Rock, Balkema, Rotterdam, 2000, p. 177.
  • 8T. Movinkel and O. Johannesen, Geological parameters for hard rock tunnel boring, Tunnels Tunnelling Int., 18(1986), No.4, p.45.
  • 9H.L. Hartman, Basic studies of percussion drilling, Min. Eng., 11(1959), p.68.
  • 10W.C. Maurer, The state of rock mechanics knowledge in drilling, [in] Proceedings of the 8th Symposium on Rock Mechanics, University of Minnesota, 1966, p.355.

共引文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部