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Improved model-based study of backfill stress distribution considering rock-backfill closure,mine depth,and position along stope length
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作者 LIU Chun-kang WANG Hong-jiang +1 位作者 WU Ai-xiang LI Hao 《Journal of Central South University》 2025年第7期2717-2731,共15页
During upward horizontal stratified backfill mining,stable backfill is essential for cap and sill pillar recovery.Currently,the primary method for calculating the required strength of backfill is the generalized three... During upward horizontal stratified backfill mining,stable backfill is essential for cap and sill pillar recovery.Currently,the primary method for calculating the required strength of backfill is the generalized three-dimensional(3 D)vertical stress model,which ignores the effect of mine depth,failing to obtain the vertical stress at different positions along stope length.Therefore,this paper develops and validates an improved 3 D model solution through numerical simulation in Rhino-FLAC^(3D),and examines the stress state and stability of backfill under different conditions.The results show that the improved model can accurately calculate the vertical stress at different mine depths and positions along stope length.The error rates between the results of the improved model and numerical simulation are below 4%,indicating high reliability and applicability.The maximum vertical stress(σ_(zz,max))in backfill is positively correlated with the degree of rock-backfill closure,which is enhanced by mine depth and elastic modulus of backfill,while weakened by stope width and inclination,backfill friction angle,and elastic modulus of rock mass.Theσ_(zz,max)reaches its peak when the stope length is 150 m,whileσ_(zz,max)is insensitive to changes in rock-backfill interface parameters.In all cases,the backfill stability can be improved by reducingσ_(zz,max).The results provide theoretical guidance for the backfill strength design and the safe and efficient recovery of ore pillars in deep mining. 展开更多
关键词 BACKFILL mine depth rock-backfill closure stability maximum vertical stress numerical simulation
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压下率对耐磨钢/碳钢复合板界面结合性能的影响 被引量:7
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作者 兰昆 程晓茹 +3 位作者 邱俊 雷冬 彭玉 黄大军 《热加工工艺》 CSCD 北大核心 2017年第20期121-124,共4页
利用Thermecmastor-Z热模拟试验机对试验用耐磨钢的金属塑性变形抗力进行研究,获得了该钢种在1200℃,应变速率为1、10 s-1的应力-应变曲线。应用ANSYS/LS-DYNA有限元软件模拟了1200℃条件下耐磨钢/碳钢复合板的单道次轧制过程。结果表明... 利用Thermecmastor-Z热模拟试验机对试验用耐磨钢的金属塑性变形抗力进行研究,获得了该钢种在1200℃,应变速率为1、10 s-1的应力-应变曲线。应用ANSYS/LS-DYNA有限元软件模拟了1200℃条件下耐磨钢/碳钢复合板的单道次轧制过程。结果表明:在单道次轧制过程中,获得理想的复合效果的垂直压应力要达到200 MPa以上,等效应变要达到0.85以上。 展开更多
关键词 变形抗力 有限元 耐磨钢复合板 最大垂直应力 等效应变
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