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基于区域应变效应的冲击地压孕育及预警机制 被引量:3
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作者 张月征 王涛 +2 位作者 纪洪广 向鹏 彭华 《采矿与安全工程学报》 EI CSCD 北大核心 2018年第5期1022-1029,共8页
冲击地压等动力灾害孕育、诱发过程有采场范围外更大规模工程岩体的参与,为探明此类灾害与区域应力场之间的相关性、冲击灾源体与周边区域应力环境之间的耦合致灾机制和定量关系,基于应力连续监测技术开展了冲击地压灾害的区域应变效应... 冲击地压等动力灾害孕育、诱发过程有采场范围外更大规模工程岩体的参与,为探明此类灾害与区域应力场之间的相关性、冲击灾源体与周边区域应力环境之间的耦合致灾机制和定量关系,基于应力连续监测技术开展了冲击地压灾害的区域应变效应观测与特征分析。建立了针对冲击地压矿井区域应力监测的钻孔应变观测系统,实现了采场及冲击"相关区域"地层应力的动态监测;提出了钻孔应变数据特征分析参量"应变比速率"的概念,用于量化分析区域应力的演变趋势。研究表明,矿山开采中的冲击地压孕育、诱发过程伴随着区域应力场的调整,且钻孔应变实测数据验证了传统采动影响范围以外更大区域的应变效应;冲击地压发生前,相关区域的钻孔应变出现了"增高→极大值→降低→趋于稳定值"的"凸"型变化过程;应变比速率呈现出"0→正→0→负→0"变化过程,为分析冲击地压灾害孕育状态及预测预警提供了新的判断依据。 展开更多
关键词 冲击地压 区域应变效应 应变比速率 孕育机制
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Energy Absorption and Deformation Mechanism of Lotus-type Porous Coppers in Perpendicular Direction 被引量:2
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作者 Weidong Li Kai Xu +3 位作者 Honghao Li Haoling Jia Xinhua Liu Jianxin xie 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2017年第11期1353-1361,共9页
As metallic foams used for energy absorption in the automotive and aerospace industries, recently invented lotus-type porous metals are viewed as potential energy absorbers. Yet, solid conclusion on their eligibility ... As metallic foams used for energy absorption in the automotive and aerospace industries, recently invented lotus-type porous metals are viewed as potential energy absorbers. Yet, solid conclusion on their eligibility as energy absorbers is still in question, particularly when compression is in the direction perpendicular to the axial orientation of cylindrical pores. In this work, the energy absorption of lotus-type porous coppers in the perpendicular direction is investigated at strain rates from 0.001 s^(-1) to^2400 s^(-1). The energy absorption capacity and the energy absorption efficiency are calculated to be4–16 k J/kg and 0.32–0.7, respectively, slightly inferior to metal foams and the same porous solid compressed in the parallel direction due to the shortened extent of the plateau stress region. The deformation mechanism is examined experimentally in conjunction with finite element modeling. Both suggest that gradual squeeze and collapse of pores are the mechanisms accommodating the energy absorption. The deformation is generally evenly distributed over pore ligaments and independent of strain rate. 展开更多
关键词 Lotus-type porous structure Energy absorption Plateau stress region Plastic collapse strain rate effect
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