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New Method for Studying Rock-Breaking Mechanism by Disc Cutters
被引量:
1
1
作者
Jianqin Liu
Huaicheng Bin
+2 位作者
Wei Guo
Mengmeng Liu
Xuanbin Jia
《Transactions of Tianjin University》
EI
CAS
2017年第2期147-156,共10页
Gaining a thorough understanding of the theoretical principles of rock breaking with a disc cutter is a critical issue in tunnel boring machine (TBM) technology. To fully consider the complexity and importance of the ...
Gaining a thorough understanding of the theoretical principles of rock breaking with a disc cutter is a critical issue in tunnel boring machine (TBM) technology. To fully consider the complexity and importance of the basic principles of rock breaking during tunnel excavation, in this paper we use a new method, the smooth particle hydrodynamics (SPH), to study the rock-breaking mechanism and verify its accuracy and feasibility. Using the SPH method, we induce the rock fragmentation process with two cutters in synchronous and sequential orders. The results show that when the cutters act on rock sequentially, the second indentation influences the crack evolution of the first indentation. With increased cutter spacing, the second crack gradually becomes independent of the first crack. Under synchronous action of the two cutters, a bursiform nucleus is generated beneath the cutters and the area of the nucleus increases with increased cutter spacing. Whether the cutters act on the rock sequentially or synchronously, we found the optimum cutter spacing of our chosen rock type to be 60 mm. Our analyses results show that the efficiency of sequential rock cutting is superior to synchronous cutting, both with respect to crack evolution and cutter force. © 2017, Tianjin University and Springer-Verlag Berlin Heidelberg.
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关键词
boring
machines
(machine
tool
s)
Computer
simulation
Construction
equipment
Crack
propagation
Cracks
HYDRODYNAMICS
Rock
bursts
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职称材料
题名
New Method for Studying Rock-Breaking Mechanism by Disc Cutters
被引量:
1
1
作者
Jianqin Liu
Huaicheng Bin
Wei Guo
Mengmeng Liu
Xuanbin Jia
机构
School of Mechanical Engineering
Key Laboratory of Mechanism Theory and Equipment Design of Ministry of Education
出处
《Transactions of Tianjin University》
EI
CAS
2017年第2期147-156,共10页
基金
supported by the National Natural Science Foundation of China (No. 51275339, No. 51675374 and No. 5157051735)
文摘
Gaining a thorough understanding of the theoretical principles of rock breaking with a disc cutter is a critical issue in tunnel boring machine (TBM) technology. To fully consider the complexity and importance of the basic principles of rock breaking during tunnel excavation, in this paper we use a new method, the smooth particle hydrodynamics (SPH), to study the rock-breaking mechanism and verify its accuracy and feasibility. Using the SPH method, we induce the rock fragmentation process with two cutters in synchronous and sequential orders. The results show that when the cutters act on rock sequentially, the second indentation influences the crack evolution of the first indentation. With increased cutter spacing, the second crack gradually becomes independent of the first crack. Under synchronous action of the two cutters, a bursiform nucleus is generated beneath the cutters and the area of the nucleus increases with increased cutter spacing. Whether the cutters act on the rock sequentially or synchronously, we found the optimum cutter spacing of our chosen rock type to be 60 mm. Our analyses results show that the efficiency of sequential rock cutting is superior to synchronous cutting, both with respect to crack evolution and cutter force. © 2017, Tianjin University and Springer-Verlag Berlin Heidelberg.
关键词
boring
machines
(machine
tool
s)
Computer
simulation
Construction
equipment
Crack
propagation
Cracks
HYDRODYNAMICS
Rock
bursts
Keywords
SPH
Rock
breaking
Crack
propagation
Numerical
simulation
分类号
U455.31 [建筑科学—桥梁与隧道工程]
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New Method for Studying Rock-Breaking Mechanism by Disc Cutters
Jianqin Liu
Huaicheng Bin
Wei Guo
Mengmeng Liu
Xuanbin Jia
《Transactions of Tianjin University》
EI
CAS
2017
1
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