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A review on the performance of conventional and energy-absorbing rockbolts 被引量:30
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作者 Charlie C.Li Gisle Stjern Arne Myrvang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2014年第4期315-327,共13页
This is a review paper on the performances of both conventional and energy-absorbing rockbolts manifested in laboratory tests. Characteristic parameters such as ultimate load, displacement and energy absorption are re... This is a review paper on the performances of both conventional and energy-absorbing rockbolts manifested in laboratory tests. Characteristic parameters such as ultimate load, displacement and energy absorption are reported, in addition to load-displacement graphs for every type of rockbolt. Conventional rockbolts refer to mechanical rockbolts, fully-grouted rebars and frictional rockbolts. According to the test results, under static pull loading a mechanical rockbolt usually fails at the plate; a fully-grouted rebar bolt fails in the bolt shank at an ultimate load equal to the strength of the steel after a small amount of displacement; and a frictional rockbolt is subjected to large displacement at a low yield load. Under shear loading, all types of bolts fail in the shank. Energy-absorbing rockbolts are developed aiming to combat instability problems in burst-prone and squeezing rock conditions. They absorb deformation energy either through ploughing/slippage at predefined load levels or through stretching of the steel bolt. An energy-absorbing rockbolt can carry a high load and also accommodate significant rock displacement, and thus its energy-absorbing capacity is high. The test results show that the energy absorption of the energy-absorbing bolts is much larger than that of all conventional bolts. The dynamic load capacity is smaller than the static load capacity for the energy-absorbing bolts displacing based on ploughing/slippage while they are approximately the same for the D-Bolt that displaces based on steel stretching. 展开更多
关键词 Rockbolt Laboratory bolt testEnergy-absorbing rockbolt Yield rockbolt Pull testshear test Dynamic testDrop test
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公路路堤生态边坡植被根系加筋效应的三轴试验研究 被引量:1
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作者 郭阳阳 蒋希雁 +1 位作者 何春晓 张耀锋 《河北建筑工程学院学报》 CAS 2017年第1期57-62,83,共7页
采用常规静三轴不固结不排水试验来探究边坡植被根系含量和压实度对重塑非饱和粉质粘土抗剪强度指标的影响规律.通过试验结果分析得出以下结论:(1)通过加筋土与素土对比,素土与加筋土的应力应变曲线趋势走向相近,且都呈现出硬化现象而... 采用常规静三轴不固结不排水试验来探究边坡植被根系含量和压实度对重塑非饱和粉质粘土抗剪强度指标的影响规律.通过试验结果分析得出以下结论:(1)通过加筋土与素土对比,素土与加筋土的应力应变曲线趋势走向相近,且都呈现出硬化现象而无明显破坏峰值,说明加筋土也符合莫尔库伦强度准则.(2)加筋土的抗剪强度较素土有明显的增大,且加筋土的粘聚力随着试样中根含量比重的增加而增大,说明草根可以通过与土体相互作用约束土体的侧向变形起到加筋的效果.(3)在同一压实度条件加筋土相对素土内摩擦角变化很小,说明草根对土体的内摩擦角影响较小.(4)在含根量一定条件下,试样抗剪强度随着压实度的增大而大幅度提升,且加筋土比素土粘聚力增大幅度要大,压实度提高可以增大边坡的稳定性.(5)植被根系的加筋作用可以弥补浅层土体压实度不足,达到提高浅层边坡稳定性的效果. 展开更多
关键词 路堤边坡 三轴试验 抗剪强度 压实度 含根量 粘聚力
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