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Synthesis of fly ash/metakaolin geopolymer for concrete retrofitting application

机译:粉煤灰/偏高岭土地质聚合物的合成,用于混凝土改造

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The purpose of this research is to use fly ash as raw material to synthesize geopolymer paste that can replace traditional epoxy resin for concrete reinforcement purpose. Fly ash and metakaolin are mixed with alkali solution at predetermined SiO2/Na2O modulus to form geopolymer pastes, which were then used as a binding agent between carbon fiber reinforced polymer (CFRP) and the concrete substrate. According to the test results, the geopolymer paste synthesized with 0.75 SiO2/Na2O modulus alkali activator have the highest mechanical strength and fire resistance. Under ambient condition, the compressive strength of the concrete cylinder bonded to one layer and two layers CFRP using geopolymers binder is 1.5 times and 2 times of original concrete cylinder, respectively. Under 85% compressive strength loading and elevated temperature, the CFRP (geopolymer) bonded concrete cylinder failed at 516 degrees C. These test results proved that geopolymer can be a potential binding material for concrete rehabilitation due to its high-mechanical strength and excellent fire resistance.
机译:这项研究的目的是使用粉煤灰作为原料来合成可替代传统环氧树脂以用于混凝土加固的地聚合物浆料。将粉煤灰和偏高岭土与碱溶液按预定的SiO2 / Na2O模量混合,以形成地聚合物糊剂,然后将其用作碳纤维增强聚合物(CFRP)和混凝土基材之间的粘合剂。根据测试结果,以0.75 SiO2 / Na2O模量的碱活化剂合成的地聚合物糊具有最高的机械强度和耐火性。在环境条件下,使用地质聚合物粘结剂粘结到一层和两层CFRP上的混凝土圆筒的抗压强度分别是原始混凝土圆筒的1.5倍和2倍。在85%的抗压强度载荷和高温下,CFRP(地聚合物)粘结的混凝土圆筒在516℃时失效。这些测试结果证明,地聚合物具有较高的机械强度和优异的耐火性,可以作为混凝土修复的潜在粘结材料。 。

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