首页> 外文会议>International conference on alkali activated materials and geopolymers: versatile materials offering high performance and low emissions 2018 >GEOPOLYMER-BASED BRICKS MAY BE THE NEXT GENERATION OF BRICKS: A CASE STUDY OF MINEALITHE AS AN ALKALINE ACTIVATOR
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GEOPOLYMER-BASED BRICKS MAY BE THE NEXT GENERATION OF BRICKS: A CASE STUDY OF MINEALITHE AS AN ALKALINE ACTIVATOR

机译:基于地聚合物的砖可能是砖的下一代:以矿物碱为碱的活化剂的案例研究

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摘要

The objective of this study is to compare the mechanical performance of fired bricks with geopolymer-based bricks by alkaline activation of clays. The alkaline activator considered in the research is called "MINEALITHE" that has a PH within the range of 13-14. The choice of the solid material and the alkaline activator have a significant impact on the mechanical properties of the final product. Based on literature, the mechanical properties of Geopolymers produced from fly ash, Ground-granulated blast-furnace slag (GGBS) or calcined kaolin exhibits greater strength than Geopolymers based on non-calcined materials such as kaolin. This research challenges this statement by providing evidence in favour of a high mechanical strength of Kaolin thanks to the MINEALITHE Activator. For that, Geopolymer blocks are prepared by mixing clay, sand, MINEALITHE solution and water. Geopolymer samples are prepared according to different clay / MINEALITHE ratios. After curing at room temperature, samples are investigated using compressive and flexural tests. The results show that the obtained Geopolymers have a compressive strength comparable to that of fired bricks. This study gives insights into the potential of Geopolymer materials as a substitute of fired bricks for future constructions.
机译:这项研究的目的是通过对粘土进行碱活化来比较烧结砖和基于地质聚合物的砖的机械性能。研究中考虑的碱性活化剂称为“ MINEALITHE”,其PH在13-14的范围内。固体材料和碱性活化剂的选择对最终产品的机械性能有重大影响。根据文献,由飞灰,磨碎的高炉矿渣(GGBS)或煅烧高岭土制成的地聚合物的机械性能比基于非煅烧材料(例如高岭土)的地聚合物表现出更高的强度。这项研究通过提供支持MINEALITHE活化剂的高岭土高机械强度的证据,对这一说法提出了挑战。为此,通过混合粘土,沙子,MINEALITHE溶液和水来制备地聚合物块。根据不同的粘土/ MINEALITHE比例制备地质聚合物样品。在室温下固化后,使用压缩和弯曲试验研究样品。结果表明,所获得的地质聚合物的抗压强度可与烧结砖媲美。这项研究深入了解了地聚合物材料在未来建筑中替代烧砖的潜力。

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