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现代矿业 ›› 2026, Vol. 42 ›› Issue (04): 34-38.

• 采矿工程 • 上一篇    下一篇

铜曼采场复杂工况下穿孔爆破技术优化与实践

谭明洪   

  1. 云南华联锌铟股份有限公司
  • 出版日期:2026-04-25 发布日期:2026-05-08

Optimization and Practice of Drilling Boreholes and Blasting Technology in Complex Working Conditions of Tong—Man Mining Area

TAN Minghong   

  1. Yunnan Hualian Zinc and Indium Co.,Ltd.
  • Online:2026-04-25 Published:2026-05-08

摘要: 随着铜曼露天采场开采深度增加,难爆矿岩比例上升,为解决穿孔爆破与后续工序 衔接不畅、爆破质量不佳等问题,采用3DMine 矿业工程软件,实施精细爆破网路设计。再结合采 场复杂地质条件与生产需求,从作业组织方式优化、采区矿岩与爆破技术参数适配性提升、爆破施 工工艺改进等方面,开展穿孔爆破技术优化研究工作。经研究与实践,逐渐形成了横向、纵向交替规 划爆区组织穿孔爆破施工等作业模式,结合采场穿孔爆破工作面与爆区矿岩地质差异性,搭配高精 度数码电子雷管、3DMine软件及PVC 管护孔等技术,有效提高了穿孔与爆破质量、施工组织效率,提 升了穿孔爆破工序与后续铲装运输设备作业的连续性,降低了安全事故发生率与综合成本。实践表 明,优化后,采场采剥储备量动态均值提升至当期产量计划的1.22 倍以上;15 m³电铲台班效率同比提 高15%,4.5 m³挖机台班生产效率同比提高11%;设备受浮石、散岩影响导致的事故损失较4 a 前大幅 下降;爆破技术参数改进后,炸药单耗显著下降。综合节约生产成本952 万元/a,可为同类露天矿山 提供借鉴。

关键词: 露天采场, 穿孔爆破, 技术优化, 生产实践, 工况适配

Abstract: As the mining depth of the Tong—Man Open-pit Mine increases,the proportion of diffi⁃ cult-to-blast rock increases.To address the problems of poor connection between hole blasting and subse ⁃ quent processes,as well as poor blasting quality,the 3DMine mining engineering software was adopted to implement a detailed blasting network design.In combination with the complex geological conditions of the mining area and production requirements,research and optimization were conducted on the perforation blasting technology from aspects such as optimizing the operation organization,improving the compatibility of mine rock and blasting technical parameters,and improving the blasting construction process.Through research and practice,an operation mode of alternating planning of blasting areas and organizing perfora ⁃ tion blasting construction was gradually formed.Combined with the geological differences between the blasting working face and the blasting area in the mining area,high-precision digital electronic detona ⁃ tors,3DMine software,and PVC pipe for protecting holes were used,effectively improving the quality of drilling boreholes and blasting,enhancing the efficiency of construction organization,improving the conti⁃ nuity of the perforation and blasting process and subsequent loading and transportation equipment opera ⁃ tions,and reducing the rate of safety accidents and overall costs.The practice shows that after optimiza ⁃ tion,the dynamic average of mining and stripping reserves in the mining area has increased to more than 1.22 times the current production plan ;the efficiency of 15 m³electric shovel shifts has increased by 15% compared with the same period last year,and the production efficiency of 4.5 m³excavator shifts has in⁃ creased by 11%compared with the same period last year;the accident losses caused by the influence of floating stones and scattered rocks on equipment have decreased significantly compared to 4 years ago;af⁃ ter the improvement of blasting technical parameters,the single consumption of explosives has decreased significantly.Overall,production costs have been saved by 9.52 million RMB per year,which can provide a reference for similar open-pit mines.

Key words: open-pit mine, drilling boreholes and blasting, technology optimization, production practice, working condition adaptation