曹连民, 王鹏怀, 魏翠翠. 大采高液压支架横向稳定性研究[J]. 煤矿安全, 2016, 47(8): 53-56.
    引用本文: 曹连民, 王鹏怀, 魏翠翠. 大采高液压支架横向稳定性研究[J]. 煤矿安全, 2016, 47(8): 53-56.
    CAO Lianmin, WANG Penghuai, WEI Cuicui. Study on Lateral Stability of Large Mining Height Hydraulic Support[J]. Safety in Coal Mines, 2016, 47(8): 53-56.
    Citation: CAO Lianmin, WANG Penghuai, WEI Cuicui. Study on Lateral Stability of Large Mining Height Hydraulic Support[J]. Safety in Coal Mines, 2016, 47(8): 53-56.

    大采高液压支架横向稳定性研究

    Study on Lateral Stability of Large Mining Height Hydraulic Support

    • 摘要: 随着工作面采高的增加,大采高工作面液压支架稳定性问题越显突出。针对这一问题,详细分析计算了孔轴间隙、底座宽度2个大采高液压支架自身结构要素对支架偏移、不同承载工况下的横向稳定性的影响机理和趋势,结合支架实际加工制造情况纠正以往常规分析中的不足,并以ZY10000/26/55型掩护式液压支架为实例进行具体的数据计算,发现支架最大采高与底座宽度比也是影响稳定性的因素。并根据影响机理与趋势提出了通过控制支架自身结构要素来提高横向稳定性的措施,保证大采高液压支架能够适应工作面的工作状态。

       

      Abstract: With the increase of working face mining height, the stability problem of hydraulic support with high working face is more remarkable. To solve this problem, we calculated the influence mechanism and trend of the gap between hole and axis in detail, base width which belongs to the hydraulic support structure elements on lateral stability when the hydraulic support offsets and works in different conditions, and combined with the actual processing conditions, we corrected the deficiencies of the conventional analysis and took the ZY10000/26/55 as an example to carry out the date calculation. It is found that the ratio of largest mining height to base width is also a factor affecting the stability. Finally, we proposed measures to improve the lateral stability by controlling the structural elements to ensure that the large mining height hydraulic support can meet the working conditions.

       

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