设计了一种高效的刮板式切料输送机

IF 0.2 Q4 FORESTRY
V. Gabov, D. Shishliannikov, Aleksandr N. Korolev, A. Mikriukov, Aleksandr Muravskii
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引用次数: 0

摘要

介绍。本文从提高机械化地下采煤效率的角度出发,为面刮板输送机的高效设计提供理论依据。研究表明,建立适应采动条件、地质条件和工艺条件变化的FSC,有助于连续作业条件下煤矿机械化采场的稳定运行。研究方法。为了方便FSC的开发和结构分析,建议在输送机设计中使用显示功能元件及其相互关系的结构公式。介绍了现有FSCs的结构原理,并给出了结构公式的实例。指出了影响FSC结构的因素。自适应FSCs的先进设计应考虑到实现更多主要和辅助功能的可能性。介绍了刮板式切割输送机的概念。结果。建立了适应复杂采矿地质工况的FSCC结构公式。介绍了作者提出的FSCC的原理图和操作步骤。所述的技术解决方案提高了采煤和运输过程的效率,提高了综采长壁在复杂采矿和地质条件下的运行稳定性。结论。FSCC在功能元件结构和设计方面的系统化和分析,使得寻找改进这些输送机械的隐性途径,提高其对采矿、地质和工艺操作条件变化的适应性和效率成为可能。本文所描述的自适应FSCC保证了矿井工作中有效的地面剖面,提高了开采煤层底孔区煤的寿命,并在煤岩选择性开采或地质断层推进过程中实现了货物流的分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rationale for the efficient design of a face scraper-type cutting conveyor
Introduction. The article considers mechanized underground coal mining efficiency improvement by providing rationale for the efficient design of face scraper conveyors (FSC). It is shown that the creation of FSC adaptive to mining, geological and technological conditions that change as the extraction columns are developed, contributes to the stable operation of mechanized mining complexes for coal mining under continuous operation. Methods of research. As a matter of convenient FSC development and structure analysis, it is advisable to use structural formulae that display functional elements and their relationships in the conveyor design. The construction principle is described and examples of structural formulas are given for the existing FSCs. The factors affecting the FSC structure are specified. Advanced designs of adaptive FSCs should be developed taking into account the possibility of fulfilling more main and auxiliary functions. The concept of a face scraper-type cutting conveyor (FSCC) has been introduced. Results. The structural formula of the FSCC adaptive to complex mining and geological operating conditions is substantiated. The schematic diagram and operation procedure for the FSCC proposed by the authors are described. The described technical solutions provide increased efficiency of coal mining and transportation processes and increased operating stability of the fully-mechanized longwall when operating in complex mining and geological conditions. Conclusions. FSCC systematization and analysis in terms of the functional elements structure and design makes it possible to look for implicit ways to improve these transporting machines, increase their adaptability and efficiency in changing mining, geological and technological operating conditions. The adaptive FSCC described in the article ensures effective profiling of ground in the mine working, intensification of the life-in of coal in the bottom-hole zone of the mined coal seam and separation of cargo flows during the selective extraction of coal and rock or advancing through the geological faults.
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