针对圣彼得堡地铁系统矿山的实际情况,对隧道掘进盾构执行机构进行了合理的设计论证

IF 2.4 Q2 MINING & MINERAL PROCESSING
D. Yungmeister, Aleksei Yacheykin
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引用次数: 0

摘要

本文讨论了在圣彼得堡地铁复杂的采矿地质条件下,采用海瑞克公司的现代隧道掘进盾构,采用配有门齿和切石机的混合执行机构进行隧道掘进的特点。分析了混合执行机构沿由寒武纪粘土和灰岩夹层组成的非均质井底块体掘进时的工作。对抗振锥进行了理论和实验研究,用图形表示了其穿透深度对轴向力和轴向力以及施加的冲击载荷的依赖关系(穿透深度的依赖关系被解释为线性依赖关系)。理论和实验证实,振动切削工具(尖刺滚柱)对由寒武纪粘土和灰岩夹层组成的非均质井底岩体的破坏强度增加,而穿透速度的增长取决于它们的参数数量。在对设计进行考虑的基础上,阐述了一种装有振动切削齿的旋转执行机构的工作原理和功率计算方法,并在此基础上建立了隧道掘进盾构的扭矩和性能随执行机构对底部进给量的关系图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rational design justification of the tunnel boring shield executive body for the conditions of the mines of Saint Petersburg Metrostroy
The article discusses the features of running tunnels in difficult mining and geological conditions of the Saint Petersburg Metrostroy using modern tunnel boring shields of Herrenknecht company with hybrid executive bodies equipped with a incisors and rock cutters. The work of a hybrid executive body is analyzed when driving along a heterogeneous bottomhole massif consisting of Cambrian clay with limestone interlayers. Theoretical and experimental studies of vibroactive cones, a graphical representation of the dependence of the depth of their penetration on the axial force and axial force together with the applied shock load (the dependences of the penetration depth are interpreted as a linear dependence) have been carried out. An increase in the intensity of destruction of a heterogeneous bottomhole massif consisting of Cambrian clay and limestone interlayers using vibroactive rock-cutting tools (spiked roller) was theoretically and experimentally confirmed, while the growth of the penetration rate is determined depending on the number of their parameters. The design is considered, the principle of operation and the method of power calculation of a rotary executive body equipped with vibroactive cutters are described, on the basis of which a nomogram of the dependence of the torque and performance of the tunnel boring shield on the feed rate of the executive body to the bottom is built.
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来源期刊
Journal of Mining Institute
Journal of Mining Institute MINING & MINERAL PROCESSING-
CiteScore
7.50
自引率
25.00%
发文量
62
审稿时长
8 weeks
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