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复杂地质条件下矿用TBM刀盘纯栓接设计及其受力分析

Design and stress analysis of pure bolted connection for mining TBM cutterhead under complex geological conditions

  • 摘要: 全断面掘进机TBM(Tunnel Boring Machine)在煤矿岩巷掘进中发挥着关键作用,但设备下井、运输、井下组装环节仍面临施工管理难度大、安全风险高、作业效率低等技术难题。考虑煤矿巷道对TBM刀盘的特殊要求,提出了刀盘纯栓接设计思路,并采用理论分析、ANSYS数值模拟与现场测试相结合的方法进行受力分析;建立了最大推力、上软下硬、转弯纠偏、脱困模式4种载荷工况模型,分别选取多种不同有限元网格进行应力计算,结合具体工况参数与边界条件对刀盘实施受力加载,明确了各种工况下刀盘分块位置最大应力和最大位移及所承受的剪力,计算出了单颗螺栓的最大工作载荷并完成强度校核;采用力学计算和螺栓布局优化分析,明晰了最佳分块形式和螺栓分布,开发出适用于煤矿巷道的纯栓接结构刀盘。结果表明:纯栓接结构使刀盘的硐内组装效率提升30%,且掘进期间无螺栓失效情况;该纯栓接结构设计合理,具备良好的安全可靠性与拆装维护便利性;井下应用证明了所建立的载荷工况模型、螺栓计算方法及预紧力验证方法有效。

     

    Abstract: Tunnel Boring Machine (TBM) play a crucial role in coal mine rock roadway excavation. However, the processes of equipment lowering, transportation, and underground assembly still face urgent technical challenges such as high difficulty in construction management, significant safety risks, and low operational efficiency. Considering the specific requirements of coal mine roadways for TBM cutterheads, a pure bolted design concept for cutterheads is proposed, and a combined method of theoretical analysis, ANSYS numerical simulation, and on-site testing is adopted for force analysis. Four load condition models, including maximum thrust, upper-soft and lower-hard strata, turning correction, and stuck-release mode, are established. Various finite element mesh sizes are selected for stress calculation respectively. Combined with specific working condition parameters and boundary conditions, force loading is applied to the cutterhead, clarifying the maximum stress, maximum displacement, and shear force borne at the segmented positions of the cutterhead under various working conditions. The maximum working load of a single bolt is calculated and its strength check is completed. Through mechanical calculation and bolt layout optimization analysis, the optimal segmentation form and bolt distribution are determined, and a pure bolted structure cutterhead suitable for coal mine roadways is developed. The results show that the pure bolted structure increases the underground assembly efficiency of the cutterhead by 30% and no bolt failure occurs during the excavation period; the pure bolted structure is reasonably designed, with good safety, reliability, and convenience in disassembly, assembly, and maintenance; the underground application has verified the effectiveness of the established load condition models, bolt calculation methods, and preload verification methods.

     

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