4.6 Article

Thrust and Torque Characteristics Based on a New cutter-head Load Model

Journal

CHINESE JOURNAL OF MECHANICAL ENGINEERING
Volume 28, Issue 4, Pages 801-809

Publisher

SPRINGEROPEN
DOI: 10.3901/CJME.2015.0504.066

Keywords

TBM(full face rock tunnel boring machine); cutter-head load model; CSM(Colorado school of mines) model; cutter-head layout design; thrust and torque

Funding

  1. National Natural Science Foundation of China [51275339]
  2. National Basic Research Program of China(973 Program) [2013CB035402]

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Full face rock tunnel boring machine(TBM) has been widely used in hard rock tunnels, however, there are few published theory about cutter-head design, and the design criteria of cutter-head under complex geological is not clear yet. To deal with the complex relationship among geological parameters, cutter parameters, and operating parameters during tunneling processes, a cutter-head load model is established by using CSM(Colorado school of mines) prediction model. Force distribution on cutter-head under a certain geology is calculated with the new established load model, and result shows that inner cutters bear more force than outer cutters, combining with disc cutters abrasion; a general principle of disc cutters' layout design is proposed. Within the model, the relationship among rock uniaxial compressive strength(UCS), penetration and thrust on cutter-head are analyzed, and the results shows that with increasing penetration, cutter thrust increases, but the growth rate slows and higher penetration makes lower special energy(SE). Finally, a fitting mathematical model of ZT(ratio of cutter-head torque and thrust) and penetration is established, and verified by TB880E, which can be used to direct how to set thrust and torque on cutter-head. When penetration is small, the cutter-head thrust is the main limiting factor in tunneling; when the penetration is large, cutter-head torque is the major limiting factor in tunneling. Based on the new cutter-head load model, thrust and torque characteristics of TBM further are researched and a new way for cutter-head layout design and TBM tunneling operations is proposed.

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