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高、低品位铁矿石动态拉伸力学特性试验研究OA

Experimental Study on Dynamic Tensile Mechanical Properties of High and Low Grade Iron Ores

中文摘要英文摘要

在采矿过程中,矿石通常发生拉伸破坏,为探究高、低品位铁矿石的动态拉伸力学特性,采用分离式霍普金森杆(SHPB)系统和超高速数字图像相关(DIC)技术,对品位在60%以上的富铁矿石和品位在10%到20%之间的贫铁矿石进行动态劈裂试验,分析其破坏过程、应变分布、动态拉伸强度及能量吸收特性.结果表明:高品位铁矿石裂纹扩展集中于试样中心,破坏形式以中心主裂纹贯穿为主,动态拉伸强度和加载率随冲击气压升高显著增大;低品位铁矿石因内部节理发育,裂纹沿弱面分散扩展,动态拉伸强度和加载率受节理分布影响显著,规律性较弱.能量分析表明:高品位铁矿石能量吸收率高于低品位,其破坏由矿物颗粒强度主导,而低品位铁矿石受节理面强度控制.对高品位铁矿石与低品位铁矿石各项数据对比后发现,在相同冲击气压的作用下高品位铁矿石的加载率、动态拉伸强度、最大拉伸应变和吸收能均高于低品位铁矿石.铁矿石岩性和品位对其力学性能有显著影响,实验结果可为铁矿石爆破开采参数优化及损伤控制提供理论依据.

During the mining process,tensile failure represents a predominant mode of ore fragmentation.This re-search systematically examines the dynamic tensile mechanical properties of both high-grade(Fe>60%)and low-grade(Fe 10~20%)iron ores through the combined application of Split Hopkinson Pressure Bar(SHPB)testing and Ultra-high-speed Digital Image Correlation(DIC)techniques for dynamic splitting tests.The analysis focused on failure mechanisms,strain field evolution,dynamic tensile properties,and energy absorption capacity.Results reveal that high-grade iron ore specimens experience localized crack propagation at their geometric center,predominantly failing through the formation of a dominant central fracture.A strong positive correlation was observed between in-creasing impact pressure and improvements in both dynamic tensile strength and loading rate.In contrast,low-grade i-ron ores exhibit dispersed crack propagation along pre-existing internal joints due to their structural heterogeneity.The dynamic tensile strength and loading rate exhibit less predictable trends in these specimens,which are predominantly governed by joint network characteristics.Energy dissipation analysis indicates superior energy absorption capacity in high-grade ores,where failure mechanisms are primarily determined by mineral grain strength,while low-grade ore fail-ure is dictated by joint plane integrity.Comparative analysis reveals that under identical impact pressure conditions,high-grade iron ores exhibit superior mechanical performance compared to low-grade specimens,with higher loading rates,dynamic tensile strength,peak tensile strain capacity,and energy absorption.This study confirms the substantial influence of both lithological characteristics and ore grade classification on mechanical properties.These findings estab-lish a theoretical framework for optimizing blasting parameters and implementing effective damage mitigation strategies in iron ore mining operations.

高常胜;张钧鹏;邓皓泽;李宗武;陈宏灏;李冬

鞍钢集团矿业公司弓长岭有限公司井采分公司,辽阳 111008北京科技大学资源与安全工程学院,北京 100083鞍钢集团矿业公司弓长岭有限公司井采分公司,辽阳 111008鞍钢集团矿业公司弓长岭有限公司井采分公司,辽阳 111008鞍钢集团矿业公司弓长岭有限公司井采分公司,辽阳 111008鞍钢集团矿业公司弓长岭有限公司井采分公司,辽阳 111008

矿业与冶金

动态拉伸力学特性铁矿石SHPB系统裂纹扩展数字图像相关(DIC)技术

dynamic tensile mechanical propertiesiron oreSHPB systemcrack propagationdigital imagecorrelation(DIC)technology

《爆破》 2026 (2)

179-187,209,10

赋存复杂矿体无切割自由面爆破落矿技术研究(2024-科A13) Research on Blasting Ore-drawing Technology without Free Cutting Face for Complex Ore Bodies(2024-Science A13)

10.3963/j.issn.1001-487X.2026.02.018

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