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桥式起重机运行啃轨的分析 被引量:6
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作者 左玮 《大众标准化》 2004年第5期23-23,28,共2页
关键词 桥式起重机 啃轨 车轮 磨损轨道 房梁结构 修理
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桥式起重机运行啃轨的分析
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作者 郭士娟 《热电技术》 2012年第2期50-52,共3页
针对国电吉林热电厂四台桥式起重机械运行中普遍存在的啃轨现象,从起重机桥架构造、轨道安装等方面进行分析,提升起重设备运行的安全性。
关键词 桥式起重机 啃轨 车轮 磨损轨道 房梁结构
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Stability influence factors analysis and construction of a deep beam anchorage structure in roadway roof 被引量:8
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作者 Xie Shengrong Gao Mingming +4 位作者 Chen Dongdong Sun Yanding Pan Hao Su Hai Lan Shizhong 《International Journal of Mining Science and Technology》 EI CSCD 2018年第3期445-451,共7页
Deep beam anchorage structures based on spatial distribution analysis of the cable prestressed field have been proposed for roadway roof support, Stability and other factors that influence deep beam structures are stu... Deep beam anchorage structures based on spatial distribution analysis of the cable prestressed field have been proposed for roadway roof support, Stability and other factors that influence deep beam structures are studied in this paper using mechanical calculations, numerical analysis and field measurements, A mechanical model of deep beam structure subjected to multiple loading is established, including analysis of roof support in the return airway of S1203 working face in the Yuwu coal mine, China, The expression of maximum shear stress in the deep beam structure is deduced according to the stress superposition criterion, It is found that the primary factors affecting deep beam structure stability are deep beam thickness, cable pre-tension and cable spacing, The variation of maximum shear stress distribution and prestressed field diffusion effects according to various factors are analyzed using Matlah and FLAC3DTM software, and practical support parameters of the S1203 return airway roof are determined, According to the observations of rock pressure, there is no evidence of roof separation, and the maximum values of roof subsidence and convergence of wall rock are 72 and 48 mm, respectively, The results show that the proposed roof support design with a deep beam structure is feasible and achieves effective control of the roadway roof, 展开更多
关键词 Support structure Deep beam Maximum shear stress Influencing factors Stability control Roadway roof
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Instability characteristics of the cracked roof rock beam under shallow mining conditions 被引量:2
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作者 Zhao Yanhai Wang Shuren +2 位作者 Zou Zhengsheng Ge Linlin Cui Fang 《International Journal of Mining Science and Technology》 EI CSCD 2018年第3期437-444,共8页
To establish the movement relationship for the roof breaking under shallow mining conditions, the mechanical model of the roof rock beam was built, then the structure instability process of the roof rock beam was anal... To establish the movement relationship for the roof breaking under shallow mining conditions, the mechanical model of the roof rock beam was built, then the structure instability process of the roof rock beam was analyzed. The changing criterion of the vertical displacement was established and the relationship between the deflection and the rotary motion of roof block was determined. Regarding a mining face in Shangwan Mine, the responsing laws of the deflection and horizontal thrust of the roof rock beam were obtained through FLAC3D numerical analysis. The results show that the structure instability of the cracked roof rock beam depends on the interaction between the vertical load and the horizontal thrust.For the roof rock beam, when the vertical load keeps constant, the horizontal thrust fluctuating rises with increasing deflection. The horizontal thrust increases constantly with the deeper buried depth and the smaller span. 展开更多
关键词 Shallow mining Working face Roof rock beam Structure stability Horizontal thrust
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