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Effect of waste rice husk ash from rice husk fuelled brick kilns on strength, durability and thermal performances of mortar

机译:废稻壳中稻壳燃料砖窑对砂浆力量,耐用性和热性能的影响

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Effect of waste RHA, residual ash generated from rice husk fuelled brick kilns, on strength, durability and thermal performances of mortar was investigated. Cement in the mortar was replaced by 0%, 5%, 10%, and 20% of waste RHA. Compressive strength, bulk density, water absorption, porosity, sorption rate, sulfate, acid and alkaline resistance, thermal performance, and microstructural analysis of specimens were examined.Bulk density of control (i.e. 0%) and 20% waste RHA mortar were 2033 kg/m(3) and 1821 kg/m(3), respectively, promising a lightweight mortar by blending waste RHA into the mixture. At 56 days, Strength activity index (SAL) was achieved to be 95% and 85% for 5% and 10% waste RHA mortar, respectively, indicating better compressive strength achievement with waste RHA added mortar. The expansion due to sulfate exposure was reduced by 54% and 70%, for 5% and 10% waste RHA mortar, respectively. Weight loss due to acid exposure was reduced by 45%, 40%, and 25% for 5%, 10%, and 20% waste RHA specimens, respectively. The weight loss due to alkaline exposures was reduced from 3.13% to 2.41% with rising waste RHA level from 0% to 5%. Mortar with 20% waste RHA had a higher temperature difference than the control mortar, indicating that RHA contributed to the reduced thermal conductivity. At 5% waste RHA sample, high counts of CSH was formed, micro-voids were filled, making it a dense structure, which is favorable to achieve improved strength and durability performances. (C) 2020 Elsevier Ltd. All rights reserved.
机译:研究了废物RHA,稻壳燃料砖窑,耐久性,耐久性和砂浆热性能的影响。砂浆中的水泥被0%,5%,10%和20%的废物替代。检查压缩强度,堆积密度,吸水,孔隙率,吸附速率,硫酸盐,酸和碱性耐药性,热性能和微观结构分析样品的抑制。抑制剂的控制(即0%)和20%废物砂浆是2033千克/ m(3)和1821 kg / m(3)分别承诺通过将废rha混合到混合物中的轻质砂浆。在56天内,达到5%和10%废Rha砂浆的95%和85%的强度活性指数(SAL),表明用废物rha添加砂浆更好的抗压强度成果。由于硫酸盐暴露导致的膨胀分别降低了54%和70%,分别为5%和10%的废rha砂浆。酸暴露的重量损失分别降低了5%,10%和20%废物RHA样本的45%,40%和25%。碱性暴露引起的减肥从3.13%降低至2.41%,废水水平上升0%至5%。具有20%废RHA的砂浆具有比对照砂浆更高的温差,表明rha导致导热率降低。在5%废RHA样品中,形成高计数的CSH,填充微空隙,使其成为致密的结构,这有利于实现改善的强度和耐用性性能。 (c)2020 elestvier有限公司保留所有权利。

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