CHINESE JOURNAL OF ENERGETIC MATERIALS
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孔内分层装药爆破破岩成腔机理及应用
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作者单位:

1.安徽理工大学 矿山地下工程教育部工程研究中心, 安徽 淮南 232001;2.安徽理工大学 深部煤矿采动响应与灾害防控国家重点实验室, 安徽 淮南 232001;3.安徽理工大学 化工与爆破学院, 安徽 淮南 232001

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基金项目:

安徽省自然科学基金(2408085QA029);深部煤矿采动响应与灾害防控国家重点实验室开放基金(SKLMRDPC23KF05);矿山地下工程教育部工程研究中心开放基金(JYBGCZX2023105)


Mechanisms of Rock Breaking and Cavity Formation of Hole-inner Layered Charge Blasting
Author:
Affiliation:

1.Engineering Research Center of Underground Mine Construction of Ministry of Education, Anhui University of Science and Technology, Huainan 232001, China;2.State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines, Anhui University of Science and Technology, Huainan 232001, China;3.School of Chemical and Blasting Engineering, Anhui University of Science and Technology, Huainan 232001, China

Fund Project:

Grant support: Anhui Provincial Natural Science Foundation (2408085QA029); Open Research Grant of State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines (SKLMRDPC23KF05); Open Research Grant of Engineering Research Center of Underground Mine Construction of Ministry of Education (JYBGCCZX2023105)

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    摘要:

    为了研究孔内分层装药爆破破岩成腔机理,首先通过理论分析和模型试验探究孔内分层装药对深孔掏槽破岩成腔效果的影响,并采用数值模拟揭示岩体破坏抛掷历程与破岩成腔机理,通过现场试验验证其应用效果。结果表明:孔内分层装药能够实现炸药能量的均匀分布和先后释放,可以消除槽腔上部大块岩石、削弱槽腔底部围岩的约束作用,从而达到96.5%的成腔效率;数值模拟实现了爆破历程的可视化,并且模拟结果证实了能量的均匀分布和先后释放对破岩成腔的有利作用;与传统掏槽爆破技术相比,采用孔内分层装药掏槽技术,循环进尺和炮孔利用率分别提高了0.45 m和17.3%,炸药和雷管单耗分别降低了0.42 kg·m-3和0.21 PCS·m-3,证实了孔内分层装药掏槽技术在深孔爆破中的适用性。

    Abstract:

    To study the mechanisms of rock breaking and cavity formation by hole-inner layered charge blasting, the influence of hole-inner layered charges on the rock breaking and cavity formation of deep hole cutting was first investigated through theoretical analysis and model experiments. Then, numerical simulations were carried out using SPH-FEM algorithm to reveal the processes of rock breaking and throwing as well as the mechanisms of rock breaking and cavity formation. Finally, field tests were conducted to explore its application effects. The results show that the hole-inner layered charge could realize the uniform distribution and release of explosive energy, which could eliminate the large rock in the upper cavity and weaken the constraint effect of the surrounding rock in the bottom cavity, so as to achieve the cavity formation efficiency of 96.5%. The numerical simulation realized the visualization of the blasting process. The simulation results confirmed the beneficial effect of uniform energy distribution and sequential release on rock breaking and cavity formation. Compared with traditional cutting blasting technique, using the hole-inner layered charge cutting technique, cycle footage and hole utilization were increased by 0.45 m and 17.3%, respectively, the specific charge and detonator were reduced by 0.42 kg·m-3 and 0.21 PCS·m-3, respectively. The results demonstrated the applicability of hole-inner layered charge cutting technique in deep hole blasting.

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引用本文

程兵,叶福,汪泉,等.孔内分层装药爆破破岩成腔机理及应用[J].含能材料, 2025, 33(7):714-724. DOI:10.11943/CJEM2025040.
CHENG Bing, YE Fu, WANG Quan, et al. Mechanisms of Rock Breaking and Cavity Formation of Hole-inner Layered Charge Blasting[J]. Chinese Journal of Energetic Materials, 2025, 33(7):714-724. DOI:10.11943/CJEM2025040.

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  • 收稿日期: 2025-03-03
  • 最后修改日期: 2025-07-02
  • 录用日期: 2025-06-20
  • 在线发布日期: 2025-06-26
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