通过与碎石骨料混合和水泥处理,煤渣砾石作为替代基层材料的潜在用途

M. Seyfe, Anteneh Geremew
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引用次数: 7

摘要

煤渣砾石是与近期火山活动有关的火山碎屑物质,这些火山活动发生在典型的直边锥形山丘上。本研究的目的是利用这种在埃塞俄比亚许多地区丰富的边缘材料,通过机械混合和化学稳定来改变其性能。对煤渣砾石试样进行的物理力学试验结果表明,煤渣砾石作为基层材料,特别是在交通繁忙的道路上,具有一定的边缘性。将煤渣砾石与常规碎石基层材料碎石骨料(CSA)按煤渣/碎石骨料(CSA)的比例(10/90、20/80、30/70、40/60和50/50)混合,并用6。8%和10%的水泥。筛分分析结果表明,骨料破碎值(ACV)、片状度指数和加州承载比(CBR)、30%的碎石骨料(CSA)可由煤渣碎石替代作为新鲜碎石(GB1)材料,水泥处理后的煤渣碎石分别加入6%和8%的水泥可作为稳定基层(CB2)和(CB1)基层材料。指由统一抗压强度试验(UCS)测定的14天抗压强度。
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POTENTIAL USE OF CINDER GRAVEL AS AN ALTERNATIVE BASE COURSE MATERIAL THROUGH BLENDING WITH CRUSHED STONE AGGREGATE AND CEMENT TREATMENT
Cinder gravels are pyroclastic materials associated with recent volcanic activity which occur in characteristically straight sided cone shaped hills. The aim of this study was to use this marginal material which is abundantly available in many parts of Ethiopia by modifying their properties through mechanical blending and chemical stabilization. Results of physical and mechanical test conducted on cinder gravel samples prove their marginality to be used as base course materials especially for highly trafficked roads. An experimental investigation were carried by blending cinder gravels with conventional crushed stone bases course material, Crushed Stone Aggregate (CSA), in proportions of cinder/ Crushed Stone Aggregate (CSA) (10/90, 20/80, 30/70, 40/60 and 50/50) and treating with 6. 8 and 10% of cement. According to results of sieve analysis, Aggregate crushing value (ACV), flakiness index and California Bearing Ratio (CBR), 30% of Crushed Stone Aggregate (CSA) can be replaced by cinder gravels for use as Fresh, crushed rock (GB1) material and for cement treated cinder gravels adding 6% and 8% cement make them suitable for use as Stabilized base course (CB2) and (CB1) base course materials respectively, referring to their 14 day compressive strength as determined by Unified compressive strength test(UCS) test.
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