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金属矿山 ›› 2019, Vol. 48 ›› Issue (01): 24-28.

• 采矿工程 • 上一篇    下一篇

胶结充填体与矿柱相互作用双轴加载试验研究

侯晨1,朱万成1,张洪训1,郭良银2,杜加法3,刘晓光2   

  1. 1. 东北大学资源与土木工程学院,辽宁 沈阳 110819; 2. 山东黄金矿业股份有限公司新城金矿,山东 烟台 261438;3. 山东黄金集团充填工程实验室,山东 烟台 261438
  • 出版日期:2019-01-25 发布日期:2019-03-01

Bi-axial Loading Experiments on Interactions between Cemented Backfill and Pillar

Hou Chen1,Zhu Wancheng1,Zhang Hongxun1,Guo Liangyin2,Du Jiafa3,Liu Xiaoguang2   

  1. 1. School of Resources and Civil Engineering, Northeastern University,Shenyang 110819,China;2. Xincheng Gold Mine of Shandong Gold Mining Co., Ltd., Yantai 261438,China;3. Shandong Gold Group Filling Engineering Laboratory, Yantai 261438,China
  • Online:2019-01-25 Published:2019-03-01

摘要: 矿柱与充填体之间的相互作用是矿柱和充填体优化和安全设计的重要问题。通过双轴加载试验研究了侧向应力和采场充填率等因素对矿柱与充填体相互作用的影响。结果表明:充填体接顶时,充填体能充分发挥自身强度并直接参与顶板支撑,此时矿柱—充填体支承系统可以充分发挥承载力;充填体不接顶时,在一定侧向应力作用下矿柱—充填体支撑力提高主要是两者界面摩擦力的提高,而充填体横向约束效应对于矿柱强度提高效应不明显;较高的充填率意味着在矿柱—充填体界面处产生更大接触面积,在一定侧向应力作用下会在界面产生更大的摩擦力,进而产生更大的系统承载能力。试验结果与新城金矿测试结果的对比证实了该项研究对于新城金矿二步采场的稳定性分析具有一定的指导意义。

关键词: 胶结充填体, 相互作用, 承载单元, 矿柱, 摩擦力

Abstract: Understanding the interactions between pillars and backfill is an important issue for optimization and safety design of the backfill body and pillars. The effects of the lateral stress and the backfill ratio on the interactions between the pillar and backfill were studied by biaxial compression tests. The result showe that when the filling body meets the roof, it can bring its own strength into full play and directly participate in the roof support. At this time, the bearing capacity of the pillar-filling body support system can be maximum;when the filling body does not touch the roof, that the support force of the pillar-filling body increases under the action of a certain lateral stress are mainly due to the friction between the two interfaces. The lateral confinement effect of the backfill body has not an obvious impact on pillar strength. Therefore, a higher filling rate means a larger contact area at the pillar-filling interface, and a greater frictional force at the interface will be generated under a certain lateral stress, resulting in a greater bearing capacity of the system. By comparing the experimental results with the test results in Xincheng Gold Mine, it is proved that this study has certain guiding significance for the stability analysis of the second-step stope in Xincheng Gold Mine.

Key words: Cemented backfill, Interaction, Loading unit, Pillar, Frictional force