Effects of microwave irradiation on impact comminution and energy absorption of magnetite ore

Hao Jiawang, L. Qingwen, Qiao Lan, Deng Naifu
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引用次数: 3

Abstract

The severe mechanical wear and high-energy consumption in the comminution process of high hardness iron ore have always restricted the efficient and economic development of an enterprise. On the basis of the basic principle that microwave irradiation can induce rock damage, the magnetic ore specimens were subjected to microwave heating treatment with different heating paths and cooling paths; the uniaxial impact comminution test was conducted by the drop hammer impact equipment. This study analyzed the effect of the heating and cooling paths on the crack propagation process, dynamic mechanical strength, and energy consumption of magnetite ore. The results show that microwave irradiation causes obvious microwave-induced cracks in ore, and in the subsequent impact cracking process, the new cracks gradually penetrate the microwave-induced cracks and form the macroscopic fracture surface. With the increase of irradiation power and time, the ore dynamic strength decreased, and the absorption energy increased. Therefore, increasing the total output energy of microwave can effectively alleviate the mechanical wear and enhance the comminution effect of ores. Among the factors that affect the mechanical properties and absorption energy of ore, power has a higher priority than time. With the increase in the heat exchange rate between the ore and the external environment, the ore comminution becomes more intense, leading to the best comminution effect of ores. The research results have an important reference for the practical application of microwave irradiation technology in hard rock comminution.
微波辐照对磁铁矿冲击粉碎及能量吸收的影响
高硬度铁矿石粉碎过程中严重的机械磨损和高能耗一直制约着企业的高效经济发展。基于微波辐射诱发岩石损伤的基本原理,采用不同的加热路径和冷却路径对磁性矿石试样进行微波加热处理;采用落锤冲击设备进行单轴冲击粉碎试验。本研究分析了加热路径和冷却路径对磁铁矿裂纹扩展过程、动态机械强度和能耗的影响。结果表明:微波辐照使矿石产生明显的微波诱导裂纹,在随后的冲击开裂过程中,新的裂纹逐渐穿透微波诱导裂纹,形成宏观断裂面。随着辐照功率和辐照时间的增加,矿石动强度减小,吸收能增大。因此,增加微波的总输出能量可以有效地缓解机械磨损,提高矿石的粉碎效果。在影响矿石力学性能和吸收能的因素中,功率的重要性高于时间。随着矿石与外界环境热交换率的增大,矿石的粉碎作用更加强烈,从而达到矿石的最佳粉碎效果。研究结果对微波辐照技术在硬岩粉碎中的实际应用具有重要参考意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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