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Improvement of traditional clay bricks’ thermal insulation characteristics by using waste materials

机译:用废料改善传统粘土砖的隔热特性

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This study aims to improve clay bricks' thermal insulation properties by using waste materials. Laboratory scale samples were produced by an extrusion process, which simulates a feasible industrial production technique. The study results reveal that the unit weight of brick was reduced, and thermal properties were improved by introducing grapevine twig and poplar dust by forming pores in the brick mud after firing. When the substitution ratio of waste materials increased from 2.5 %–15 % by volume gradually, it was determined that the thermal conductivity coefficient (λ), dry bulk specific gravity, and compressive strength value of the clay brick decreased. However, the moisture content for extrusion and the water absorption ratio increased. The amount of waste material in clay brick mud was optimized, and the effect of these waste materials on the plastic and hardened properties of clay bricks were investigated. As a result, the optimum mix ratio of grapevine twig and poplar dust was 7.5 % by volume considering extrudability, physical, thermal and mechanical properties of the final product. It was shown that the bricks' weight was reduced by 25 %, and the thermal conductivity coefficient was decreased by 22 % at a 7.5 % substitution ratio by volume, respectively. With the addition of waste materials, drying shrinkage values decreased due to waste materials restricting effect, while firing shrinkage values increased due to increased porosity. Moreover, it was determined that these two waste materials could be used at similar dosages because they have introduced similar characteristics to traditional clay bricks.
机译:本研究旨在通过使用废料改善粘土砖的隔热性能。通过挤出过程生产实验室规模样本,其模拟了可行的工业生产技术。研究结果表明,通过在烧制后通过在砖泥浆中形成毛孔,通过引入葡萄树枝和白杨灰尘来改善砖的单位重量。当废料的替代比率逐渐增加2.5%-15体积%时,确定导热系数(λ),干块比重和粘土砖的抗压强度值下降。然而,用于挤出的水分含量和吸水率增加。优化了粘土砖泥泥浆中的废料量,研究了这些废料对粘土砖的塑料和硬化性能的影响。结果,考虑到最终产品的可挤出,物理,热和机械性能,葡萄树枝和杨木粉尘的最佳混合比为7.5%。结果表明,砖的重量降低了25%,热导率系数分别以7.5%的替代比率降低22%。随着废料的添加,干燥收缩值由于废料限制效应而降低,而射击收缩值由于孔隙率增加而增加。此外,确定这两种废物可用于类似剂量,因为它们已经向传统的粘土砖引入了类似的特征。

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