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Strength development of recycled concrete aggregate stabilized with fly ash-rice husk ash based geopolymer as pavement base material

机译:用粉煤灰稻壳灰基于地缘聚合物稳定的循环混凝土骨料的力量发展,作为路面基础材料

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This research studies on the usage of fly ash (FA) and rice husk ash (RHA) based geopolymers for improving the compressive strength of recycled concrete aggregate (RCA) to be a lightweight stabilised pavement base material. A mixture of FA from coal-burning power plants and RHA from rice milling process was used as a precursor while the liquid alkaline activator (L) was a mixture of sodium hydroxide solution (NaOH) and sodium silicate solution (Na2SiO3). Various RHA/FA ratios (between 100/0 and 0/100) and NaOH/Na2SiO3 ratios (between 50/50 and 100/0) were used in this study. The FA-RHA-geopolymer stabilised RCA samples, at each NaOH/Na2SiO3 ratio were prepared at the optimum liquid alkaline activator content (OLC) for unconfined compressive strength (UCS) tests. The UCS tests were conducted after 7, 28 and 60 days of curing. The test results indicate that the UCS of FA-RHA-geopolymer stabilised RCA increases as the RHA/FA and NaOH/Na2SiO3 ratios decrease and the curing time increases. Based on the Department of Highways, Thailand, the 60/40 RHA/FA and 60/40 NaOH/Na2SiO3 mix proportions are recommended for both low and high traffic volume roads with a low unit weight of 21.1 kN/m(3). This research study confirms the potential of FA-RHA-geopolymer stabilised RCA as an alternative stabilised road base material.
机译:该研究研究了粉煤灰(FA)和稻壳灰(RHA)基质的使用,从而改善再循环混凝土骨料(RCA)的抗压强度为轻质稳定的路面基础材料。从燃煤发电厂和水稻铣削过程中的FA混合物用作前体,而液体碱性活化剂(L)是氢氧化钠溶液(NaOH)和硅酸钠溶液(Na2SiO3)的混合物。在本研究中使用各种RHA / FA比(100/0和0/100)和NaOH / Na2SiO3比率(在50/50和100/0之间)。在最佳液体碱性活化剂含量(OLC)中制备在每种NaOH / Na 2 SiO3比下的Fa-rha-geo聚物稳定的RCA样品,用于非束缚的抗压强度(UCS)测试。 UCS测试在固化7,28和60天后进行。测试结果表明,Fa-rha-地质聚合物稳定的RCA的UCS随着RHA / FA和NaOH / Na2SiO3比率降低并且固化时间增加而增加。基于高速公路部,泰国,60/40 rha / FA和60/40 NaOH / Na2sio3混合比例,适用于低和高交通量道路,单位重量为21.1kN / m(3)。该研究研究证实了Fa-rha-geo聚物稳定的RCA作为替代稳定的道路基材的潜力。

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