微波辅助 TBM 双刃凿岩机破岩效率及其位置关系研究

Sen Wen, Lin Du, Qingmei Kong, Min Zhang, Xinru Ding
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引用次数: 0

摘要

本研究在微波试验的基础上,利用离散元程序(PFC)建立了微波辅助圆盘铣刀破岩模型,并探讨了微波辐射与圆盘铣刀穿透力之间的位置关系对破岩效率的影响规律,结果表明:位置关系的改善对提高破岩效率有显著作用,双刃铣刀在波导中心位置破岩时,破岩比能量达到并最小:位置关系的改善对提高破岩效率有显著作用,双刃刀在波导间距为90mm的中心位置和波导间距为150mm的内外侧位置破岩时,破岩比能量达到且最小;当波导间距为150mm时,刀间距为110mm、130mm和190mm的双刃刀在破岩效率和经济效益上各有优势,应根据工程实际需要进行选择。后续研究还应充分考虑岩石类型、微波参数、刀具剖面、工程环境等因素进行深入研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Microwave-assisted TBM Double-edged Cutter Rock-breaking Efficiency and its Positional Relationship
In this study, based on a microwave test, the discrete element program (PFC) is used to establish a microwave-assisted disc cutter rock-breaking model and explore the influence law of the positional relationship between microwave radiation and disc cutter penetration on rock-breaking efficiency, and the results show that: The improvement of the positional relationship has a significant effect on improving the rock-breaking efficiency, and the double-edged cutter reaches and minimum rock-breaking specific energy when breaking the rock in the center position with a waveguide spacing of 90 mm and in the inner and outer positions with a waveguide spacing of 150 mm; When the waveguide spacing is 150mm, the double-edged cutter with cutter spacing of 110mm, 130mm, and 190mm have their advantages in rock-breaking efficiency and economic benefits, which should be selected according to the actual needs of the project. The follow-up research should also fully consider the rock type, microwave parameters, cutter profile, engineering environment, and other factors for in-depth investigation.
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