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纤维增强地质聚合物混凝土早期冲击力学性能的对比研究 被引量:8
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作者 罗鑫 许金余 李为民 《振动与冲击》 EI CSCD 北大核心 2009年第10期163-168,共6页
为对比研究玄武岩纤维和碳纤维对地质聚合物混凝土(geopolymeric concrete,GC)早期冲击力学性能的改善效果,首先以矿渣与粉煤灰作为原材料,并采用液体硅酸钠与NaOH作为碱激发剂,配制了纤维体积掺量分别为0、0.1%、0.2%、0.3%的玄武岩纤... 为对比研究玄武岩纤维和碳纤维对地质聚合物混凝土(geopolymeric concrete,GC)早期冲击力学性能的改善效果,首先以矿渣与粉煤灰作为原材料,并采用液体硅酸钠与NaOH作为碱激发剂,配制了纤维体积掺量分别为0、0.1%、0.2%、0.3%的玄武岩纤维增强地质聚合物混凝土(basalt fiber reinforced geopolymeric concrete,BFRGC)和碳纤维增强地质聚合物混凝土(carbon fiber reinforced geopolymeric concrete,CFRGC),再采用Φ100 mm霍普金森压杆(split Hopkin-son pressure bar,SHPB)试验装置测试了两种材料3d、7d的冲击力学性能,并对试验进行对比分析。结果表明:纤维增强地质聚合物混凝土(fiber reinforced geopolymeric concretes,FRGCs)早期冲击力学性能具有显著的应变率相关性;BFRGC的早期动态强度特性优于CFRGC;BFRGC在10—102s-1范围内的能量吸收能力与CFRGC的相当,但BFRGC相对于CFRGC在吸收冲击能上的优势,将会随着应变率的增加而越发明显。对比可知:BFRGC较CFRGC而言,具有更加优越的早期冲击力学性能,主要体现在动态强度和能量吸收能力上。 展开更多
关键词 纤维增强地质聚合物混凝土 玄武岩纤维 碳纤维 早期冲击力学性能 霍普金森压杆
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Dynamic regimes of cemented backfill at early-age 被引量:4
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作者 LIU Zhi-yi GAN De-qing GAN Ze 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2079-2090,共12页
In view of the mechanics characteristic of cemented tailings backfill(CTB)at early age,the separation Hopkinson pressure bar test device was used to explore the effects of curing age and impact energy.A total of 48 CT... In view of the mechanics characteristic of cemented tailings backfill(CTB)at early age,the separation Hopkinson pressure bar test device was used to explore the effects of curing age and impact energy.A total of 48 CTB samples with diameter of 50 mm and length of 25 mm were prepared with curing ages of 3,5,7 and 9 d.Impact tests under different impact energy(10,20,30 and 40 J)were carried out.The microstructure of CTB at different ages was analyzed by scanning electron microscopy(SEM).The results show that,the curing age mainly affects the mechanical properties and internal structure of early-age CTB.With increasing curing age,the mechanical properties of early-age CTB change from viscoelasticity to brittleness.The impact energy mainly affects the response of dynamic peak compressive strength to strain rate.Under low strain rate,the structure of CTB is broken,but still has bearing capacity,affecting the formation of later strength.It is concluded that the structural loses completely under the action of high strain rate.Therefore,the control of impact energy and the protection of curing age should be fully considered in actual production process. 展开更多
关键词 early-age backfill curing age impact energy mechanical property microstructure analysis
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