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易碎岩石大粒径石料开采爆破关键参数研究
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作者 谢兴博 王希之 +1 位作者 谭雪刚 谭灵 《爆破》 CSCD 北大核心 2012年第2期57-59,共3页
随着外海建港项目的增多,在易碎岩石中集中爆破生产大粒径规格石料成为一个难题。通过分析应力波和爆炸气体对裂隙走向和长度的影响,提出了增大最小抵抗线和填塞长度、减小孔间距的单排孔开采方案,以及关键参数的计算公式,并多次得到工... 随着外海建港项目的增多,在易碎岩石中集中爆破生产大粒径规格石料成为一个难题。通过分析应力波和爆炸气体对裂隙走向和长度的影响,提出了增大最小抵抗线和填塞长度、减小孔间距的单排孔开采方案,以及关键参数的计算公式,并多次得到工程实践的验证。 展开更多
关键词 易碎岩石 大粒径 爆破参数
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The test research on partial relieving pressure for the entry in the deep mine under high stress and friable surrounding rock
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作者 杜计平 候朝炯 +1 位作者 朱亚平 郝明奎 《Journal of Coal Science & Engineering(China)》 2007年第3期359-361,共3页
Based on the geological condition of Zhangxiaolou deep mine in Xuzhou mining area, under 986 m in depth, 20.6-31.6 MPa in maximum horizontal principal stress, and friable and fractured surrounding rock, test researche... Based on the geological condition of Zhangxiaolou deep mine in Xuzhou mining area, under 986 m in depth, 20.6-31.6 MPa in maximum horizontal principal stress, and friable and fractured surrounding rock, test researches on partial relieving pressure were completed for the entry with U-steel arched yielding support. The relieving pressure parameters, technology process and results of springing blasting by boreholes and excavating pockets in the two sides of entry were introduced. It is demonstrated that springing will not be shaped under the condition of single borehole arrangement after exploded, the arrangement by a group, it will make borehole bottom form springing in 0.6-0.8 m in diameter, that convergence of two sides and roof to floor have some increments by using springing blasting for reliving pressure. This kind of method for reliving pressure is not suitable to use in the deep mine, and that the convergence of two sides obviously declined by excavating pocket in two sides, it can be still used in the entry with metal support, while maintenance of entry in deep mines is difficult, and can not be supported by bolt or bolt with wire mesh. 展开更多
关键词 deep mine high stress friable and fractured surrounding rock ENTRY springing blasting relieving pressure excavating pocket relieving pressure
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