欢迎访问《金属矿山》杂志官方网站,今天是 分享到:
×

扫码分享

金属矿山 ›› 2025, Vol. 55 ›› Issue (8): 27-37.

• 采矿工程 • 上一篇    下一篇

冷却方式对微波辐射玄武岩损伤效果的影响规律研究

施  伟1   陈登红1   方  曙2   汪朝家1   侯  猛1    

  1. 1. 安徽理工大学矿业工程学院,安徽 淮南 232001;2. 煤炭科学技术研究院有限公司矿用材料分院,北京 100013
  • 出版日期:2025-09-15 发布日期:2025-09-12
  • 作者简介:施  伟(2000—),男,硕士研究生。
  • 基金资助:
    安徽省高校协同创新基金项目(编号:GXXT-2020-008);安徽省省级研究生专业学位教学案例库项目(编号:2022zyxwjxalk087)。 

Study on the Influence of Cooling Path on the Damage Effect of Microwave Radiation Basalt

SHI Wei 1   CHEN Denghong 1   FANG Shu 2   WANG Chaojia 1   HOU Meng 1    

  1. 1. School of Mining Engineering,Anhui University of Science and Technology,Huainan 232001,China; 2. Mining Materials Branch of Coal Science and Technology Research Institute Co. ,Ltd. ,Beijing 100013,China
  • Online:2025-09-15 Published:2025-09-12
  • Contact: 陈登红(1986—),男,教授,博士,博士研究生导师。

摘要: 针对传统硬岩破碎效率低及微波辅助破岩中冷却路径影响机制不明的问题,以玄武岩为对象,系统探 究了微波辐射后不同冷却方式对岩石损伤的影响规律。 通过对比自然冷却、实时高温及水流冲击循环冷却路径下岩 石的波速、抗拉强度、分形维数和应变场特征,发现水流冲击循环冷却通过快速降温显著加剧试件内外热应力差异, 从而最大化提升损伤效果。 试验表明:短时辐射结合间歇水流冲击的冷却策略可高效驱动多尺度裂纹扩展,其中辐 射 45 s 后水流冲击 30 s 的循环路径效果最优,导致波速降幅达 19%、抗拉强度降低近 50%,分形维数显著提升;微观 分析进一步揭示了热应力梯度主导的裂纹扩展机制。 研究证实,在相同能耗下,温度差越大损伤效果越好,短时辐射 结合间歇水流冲击的循环冷却策略可显著提升微波辅助破岩效率。 可为后续试验和工程实际中微波辅助破岩的应 用提供借鉴。 

关键词: 微波辐射  玄武岩  冷却路径  分形维数  损伤效果

Abstract: In view of the low crushing efficiency of traditional hard rock and the unknown influence mechanism of cooling path in microwave-assisted rock breaking,this study systematically explored the influence of different cooling methods on rock damage after microwave irradiation with basalt as the object. By comparing the wave velocity,tensile strength,fractal dimension and strain field characteristics of rock under natural cooling,real-time high temperature and water impact cycle cooling paths, it is found that water impact cycle cooling significantly aggravates the difference of thermal stress inside and outside the specimen through rapid cooling,thus maximizing the damage effect. The experimental results show that the cooling strategy of shortterm radiation combined with intermittent water flow impact can effectively drive multi-scale crack propagation. Among them, the cycle path effect of water flow impact for 30 s after 45 s of radiation is the best,resulting in a decrease of wave velocity by 19%,a decrease of tensile strength by nearly 50%,and a significant increase of fractal dimension. The microscopic analysis further reveals the crack propagation mechanism dominated by thermal stress gradient. The results show that under the same energy consumption,the greater the temperature difference,the better the damage effect. The circulating cooling strategy of shortterm radiation combined with intermittent water flow impact can significantly improve the efficiency of microwave-assisted rock breaking. It can provide reference for the application of microwave-assisted rock breaking in subsequent experiments and engineering practice. 

Key words: microwave radiation,basalt,cooling type,fractal dimension,damage effect 

中图分类号: