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大采高液压支架护帮力的提高 被引量:1
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作者 陈桃杯 王珣 《机械工程与自动化》 2017年第5期202-202,204,共2页
针对煤矿生产现场中大采高液压支架的使用现状及问题,提出整改要求,并对改进措施进行了详尽的阐述,最终达到了提高护帮力的目的。
关键词 增大强度 护帮力 提高 液压支架
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Bearing mechanism of roof and rib support structure in automatically formed roadway and its support design method
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作者 JIANG Bei WANG Ming-zi +4 位作者 WANG Qi XIN Zhong-xin XING Xue-yang DENG Yu-song YAO Liang-di 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2467-2487,共21页
Non-pillar mining technology with automatically formed roadway is a new mining method without coal pillar reservation and roadway excavation.The stability control of automatically formed roadway is the key to the succ... Non-pillar mining technology with automatically formed roadway is a new mining method without coal pillar reservation and roadway excavation.The stability control of automatically formed roadway is the key to the successful application of the new method.In order to realize the stability control of the roadway surrounding rock,the mechanical model of the roof and rib support structure is established,and the influence mechanism of the automatically formed roadway parameters on the compound force is revealed.On this basis,the roof and rib support structure technology of confined lightweight concrete is proposed,and its mechanical tests under different eccentricity are carried out.The results show that the bearing capacity of confined lightweight concrete specimens is basically the same as that of ordinary confined concrete specimens.The bearing capacity of confined lightweight concrete specimens under different eccentricities is 1.95 times higher than those of U-shaped steel specimens.By comparing the test results with the theoretical calculated results of the confined concrete,the calculation method of the bearing capacity for the confined lightweight concrete structure is selected.The design method of confined lightweight concrete support structure is established,and is successfully applied in the extra-large mine,Ningtiaota Coal Mine,China. 展开更多
关键词 automatically roadway with non-pillar confined lightweight concrete roof and rib support mechanical model bearing behaviour
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8.5m大采高综采工作面煤壁稳定性的理论分析 被引量:37
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作者 吴浩 宋选民 《煤炭科学技术》 CAS 北大核心 2015年第3期22-25,共4页
大采高综采工作面片帮问题是影响高效安全开采的主要因素之一,为了研究大采高对煤壁稳定性的影响,基于上湾矿四盘区1-2煤层8.5 m大采高工作面围岩力学条件,采用压杆理论分析煤壁的挠度特征,得到煤壁容易发生片帮的位置在煤壁的中上部;... 大采高综采工作面片帮问题是影响高效安全开采的主要因素之一,为了研究大采高对煤壁稳定性的影响,基于上湾矿四盘区1-2煤层8.5 m大采高工作面围岩力学条件,采用压杆理论分析煤壁的挠度特征,得到煤壁容易发生片帮的位置在煤壁的中上部;并提出梯形滑块模型,在考虑摩擦力的前提下通过力学计算,得到护帮力不能小于0.251 MPa;针对8.5 m超大采高综采工作面,特别提出了采用支架增压增力复合护帮机构支护方式,护帮板长度分别为1 100、1 600、800 mm,总长度达3 500 mm,可以有效地减少工作面大块煤壁片帮现象。 展开更多
关键词 大采高 煤壁片 压杆理论 塑性区深度 护帮力
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