首页> 外文期刊>Journal of materials in civil engineering >Geotechnical and Geoenvironmental Properties of Recycled Construction and Demolition Materials in Pavement Subbase Applications
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Geotechnical and Geoenvironmental Properties of Recycled Construction and Demolition Materials in Pavement Subbase Applications

机译:路面基层应用中再生建筑和拆除材料的岩土和地球环境特性

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A comprehensive laboratory evaluation of the geotechnical and geoenvironmental properties of five predominant types of construction and demolition (C&D) waste materials was undertaken in this research study. The C&D materials tested were recycled concrete aggregate (RCA), crushed brick (CB), waste rock (WR), reclaimed asphalt pavement (RAP), and fine recycled glass (FRG). The geotechnical assessment included particle size distribution, particle density, water absorption, compaction, Los Angeles abrasion, postcompaction sieve analysis, flakiness index, hydraulic conductivity and California bearing ratio (CBR) tests. Shear strength properties of the materials were studied through a series of triaxial tests. Consolidated drained triaxial tests undertaken on the recycled materials indicated that the recycled materials had a drained cohesion ranging from 41 kPa to 46 kPa and a drained friction angle ranging from 49° to 51°, with the exception of FRG and RAP. The response of the materials under repeated load was investigated using repeated load triaxial (RLT) tests. The RLT testing results indicated that RCA, WR, and CB performed satisfactorily at 98% maximum dry density and at a target moisture content of 70% of the optimum moisture content under modified compaction. The geoenvironmental assessment included pH value, organic content, total and leachate concentration of the material for a range of contaminant constituents. In terms of usage in pavement subbases, RCA and WR were found to have geotechnical engineering properties equivalent or superior to that of typical quarry granular subbase materials. CB at the lower target moisture contents of 70% of the OMC was also found to meet the requirements of typical quarry granular subbase materials. The properties of CB, RAP, and FRG, however, may be further enhanced with additives or mixed in blends with high quality aggregates to enable their usage in pavement subbases.
机译:在这项研究中,对五种主要拆建废料的岩土和地球环境特性进行了综合的实验室评估。测试的C&D材料为再生混凝土骨料(RCA),碎砖(CB),废石(WR),再生沥青路面(RAP)和精细再生玻璃(FRG)。岩土工程评估包括粒度分布,颗粒密度,吸水率,压实度,洛杉矶磨损,压实后筛分分析,脆性指数,水力传导率和加利福尼亚承载比(CBR)测试。通过一系列三轴试验研究了材料的抗剪强度特性。对再生材料进行的固结排水三轴测试表明,除FRG和RAP以外,再生材料的排水内聚力范围为41 kPa至46 kPa,排水摩擦角范围为49°至51°。使用重复载荷三轴(RLT)测试研究了材料在重复载荷下的响应。 RLT测试结果表明,RCA,WR和CB在改良密实度下的最大干密度为98%,目标含水量为最佳含水量的70%时,表现令人满意。地质环境评估包括pH值,有机物含量,各种污染物成分的材料总和渗滤液浓度。就路面基层中的用途而言,发现RCA和WR具有与典型采石场粒状基层材料相同或更高的岩土工程性能。还发现目标有机物含量较低,为OMC的70%时,CB可以满足典型采石场粒状基质材料的要求。然而,CB,RAP和FRG的特性可通过添加添加剂或与高品质骨料共混来进一步增强,从而使其在路面基层中使用。

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