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首页> 外文期刊>Frontiers in Materials >Pozzolanic Reactivity and the Influence of Rice Husk Ash on Early-Age Autogenous Shrinkage of Concrete
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Pozzolanic Reactivity and the Influence of Rice Husk Ash on Early-Age Autogenous Shrinkage of Concrete

机译:稻壳对稻壳对混凝土早期自生收缩的影响及水稻壳体的影响

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In this study, the role of a locally available rice husk ash (RHA) in reducing early-age shrinkage of high performance concrete (HPC) after evaluating its pozzolanic reactivity was evaluated. The X-ray diffraction (XRD) and energy dispersive X-ray (EDX) analyses were performed after burning rice husk to 700 and 950 oC. Presence of relatively high deposits of amorphous siliceous phases in RHA at 700 oC indicated its pozzolanic potential. Subsequently, this RHA was ground to desired fineness, followed by sieving through sieve No. 200. Eventually, the fine RHA was used as a substitute of cement in different percentages (10, 15 and 20%) to evaluate its influence in mitigating autogenous shrinkage in concrete. Prismatic concrete beams (100 mm x 100 mm x 800 mm) were cast to measure autogenous shrinkage along with cylinders (150 mm dia. x 300 mm height) to test compressive strength of concrete. The results indicated a slight increase in compression strength with addition of 10% RHA, which however, reversed and slightly reduced in concretes containing 15 and 20% RHA. Unlike strength results, the trend of autogenous shrinkage was rather uniform as the rate as well as the amount of early-age autogenous shrinkage continued to decrease with increasing percentage of RHA. Moreover, despite of reduced rate during first 24 hours, thereafter, the effect of 20% RHA on further reduction of autogenous shrinkage was insignificant and ended up only slightly lesser than the 15% RHA concrete at 7 days. Finally, the control cement sand mortar and mortar containing 15% RHA were cast to further validate the pozzolanic reactivity of RHA through scanning electron microscopy (SEM), EDX and thermogravimetric analysis (TGA) tests. An observation of reduced amount of calcium hydroxide (Ca(OH)2) in RHA mortar samples indicating its excellent pozzolanic potential when used as a partial substitute of cement in HPC.
机译:在这项研究中,评估了在评估其Pozzolanic反应性后降低高性能混凝土(HPC)的早期收缩的局部稻壳灰(RHA)的作用。燃烧稻壳至700和950℃后进行X射线衍射(XRD)和能量分散X射线(EDX)分析。 700℃的RHA中非晶硅阶段的相对高沉积物表明其Pozzolanic潜力。随后,将该RHA接受了所需的细度,然后通过筛网No.200进行筛分。最终,将细菌用作不同百分比(10,15和20%)的水泥替代,以评估其对缓解自生收缩的影响在混凝土中。施加棱柱形混凝土梁(100mm×100mm×800mm)以测量自动收缩以及圆柱体(150mm Dia。x 300 mm高度)以测试混凝土的抗压强度。结果表明,加入10%rha的压缩强度略有增加,然而,在含有15和20%Rha的混凝土中反转和略微减少。与实力结果不同,自生收缩的趋势与率均匀均匀,随着RHA的百分比,早期自生收缩的速率仍然持续降低。此外,尽管在前24小时内速率降低,但是,20%RHA对进一步减少自生收缩的影响是微不足道的,并且在7天内仅比15%RHA混凝土略小于15%的混凝土。最后,将控制水泥砂浆和含有15%Rha的砂浆通过扫描电子显微镜(SEM),EDX和热重分析(TGA)测试进一步验证RHA的火山灰反应性。 rha砂浆样品中氢氧化物(Ca(OH)2)减少量的观察表明其优异的Pozzolanic电位用作HPC中水泥的局部替代品。

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