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Ductility Of fly ash - slag based reinforced geopolymer concrete elements cured at room temperature.

机译:粉煤灰 - 矿渣的延展性在室温下固化的基于粉煤灰 - 矿渣的增强地缘聚合物混凝土元件。

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Ductility of the flexural element is the main governing property for healthy performance of structural element. Although numerous factors contribute towards the ductility of Reinforced Geopolymer Concrete (RGPC) elements, low calcium based fly ash and GGBS have chemical proportions which make RGPC develop significant ductility along with steel reinforcement – when mixed in an intelligent way satisfying structural and economic conditions. In the present research work influence of low calcium fly ash, GGBS, River sand, M-sand, Steel Grade, manufactured fibres and natural fibres are used to study the ductile behaviour of RGPC sections by load testing 51 under reinforced flexural elements. The study reveals that fly ash - slag based reinforced flexural elements behave in line with OPC based RCC elements. The provisions mentioned in Indian RC designer IS:456-2000 can be used to predict the flexural behaviour of reinforced geopolymer concrete elements. The average flexural ductility of these test specimens observed to lie in between 2 & 3.
机译:弯曲元件的延展性是用于结构元素的健康性能的主要调控性能。尽管众多因素涉及增强地缘聚合物混凝土(RGPC)元件的延展性,但低钙的粉煤灰和GGB具有化学比例,使RGPC能够随着钢筋而产生显着的延展性 - 以满足结构和经济条件的智能化方式混合。在目前的研究工作对低钙粉煤灰,GGB,河砂,M砂,钢级,制造纤维和天然纤维的影响,用于研究RGPC部分在增强弯曲元件下的负载试验51研究RGPC部分的延性行为。该研究表明,粉煤灰 - 渣的增强弯曲元件表现得与基于OPC的RCC元素线。印度RC设计师所述的规定是:456-2000可用于预测增强地缘聚合物混凝土元件的弯曲行为。这些试样的平均弯曲延性观察到位于2&3之间。

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