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云南某露天铅锌矿砂岩能耗规律及动态力学性能研究

王传攀 钱开龙 朱国军 杨元珍 杨兴祥 张浩 孔维森

云南冶金2026,Vol.55Issue(3):20-27,8.
云南冶金2026,Vol.55Issue(3):20-27,8.

云南某露天铅锌矿砂岩能耗规律及动态力学性能研究

Study on Energy Consumption Law and Dynamic Mechanical Properties of Sandstone in an Open-pit Lead-zinc Mine of Yunnan

王传攀 1钱开龙 2朱国军 2杨元珍 1杨兴祥 1张浩 2孔维森1

作者信息

  • 1. 云南金鼎锌业有限公司,云南兰坪 671400
  • 2. 昆明冶金研究院有限公司,云南 昆明 650031
  • 折叠

摘要

Abstract

Aiming at the design requirements of deep multi-bench blasting in an open-pit lead-zinc mine in Yunnan,impact tests were conducted on rock samples by using the Split Hopkinson Pressure Bar(SHPB)system to investigate the energy consumption law and dynamic mechanical properties of sandstone under different impact loads.The results show that when the impact air pressure increases from 0.25 MPa to 0.50 MPa,the incident energy,transmitted energy and absorbed energy of sandstone samples increase linearly,while the reflected energy rises in a quadratic polynomial trend.With the strain rate increasing from 53.09 s-1 to 126.57 s-1,the damage degree of sandstone specimens intensifies and fine fragments increase.The energy consumption per unit mass rises from 0.02 J/g to 0.29 J/g,showing a linear relationship between energy consumption and strain rate.This study reveals the quantitative relationship between the dynamic compressive strength of sandstone and strain rate.It is proposed that the charge weight should be increased in deep high-stress areas to match the dynamic strength of rocks and avoid under-blasting or over-blasting.The research findings provide theoretical support for the efficient and safe exploitation of deep mineral resources.

关键词

分离式霍普金森压杆/砂岩/应变率/动态力学性能/能耗

Key words

Split Hopkinson Pressure Bar/sandstone/strain rate/dynamic mechanical properties/energy consumption

分类

矿业与冶金

引用本文复制引用

王传攀,钱开龙,朱国军,杨元珍,杨兴祥,张浩,孔维森..云南某露天铅锌矿砂岩能耗规律及动态力学性能研究[J].云南冶金,2026,55(3):20-27,8.

基金项目

云南省重大科技专项计划(202502AB080007) (202502AB080007)

云南省基础研究专项面上项目(202501CF070050) (202501CF070050)

昆明冶金研究院有限公司"揭榜挂帅"科技项目(2024JB02) (2024JB02)

云南冶金

1006-0308

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