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Strength and transport characteristics of volcanic pumice powder based high strength concrete

机译:火山浮石粉基高强度混凝土的强度和输运特性

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In this study, the potency of volcanic pumice powder (VPP) as a supplementary cementitious material at varied levels (0%, 10%, 20%, and 30%) in high strength concrete (HSC) was investigated for its pozzolanic reactivity as a basis for strength and durability enhancement. Workability, transport properties and mechanical properties were tested in addition to the characterization of the products. X-ray florescence and strength activity index established the VPP oxides (SiO2 + Al2O3 + Fe2O3 = 76.01%) and pozzolanicity while diffraction techniques revealed the presence of anorthite (Al2CaO8Si2), and clinopyroxene (AlCaMgSiO6). Despite the paucity of calcium oxide and the excess of silica and alumina in VPP in contrast to OPC, yet it contributes significantly to the microstructural density and tortuosity of HSC pores thereby improving the strengths and transport properties as evidenced in the reduction of rapid chloride ions penetration (RCPT), and low initial surface (water) absorption (ISA) values. The maximum 180-day tensile, flexural and compressive strengths of the HSC-VPP sample were 6.22, 10.5 and 78.9 MPa, respectively. (C) 2019 Published by Elsevier Ltd.
机译:在这项研究中,研究了火山浮石粉(VPP)作为高强度混凝土(HSC)中不同含量(0%,10%,20%和30%)的补充胶凝材料的效能,其火山灰活性为强度和耐用性增强的基础。除产品特性外,还测试了可加工性,运输性能和机械性能。 X射线荧光和强度活性指数确定了VPP氧化物(SiO2 + Al2O3 + Fe2O3 = 76.01%)和火山灰性,而衍射技术显示了钙长石(Al2CaO8Si2)和斜辉石(AlCaMgSiO6)的存在。尽管与OPC相比,VPP中的氧化钙稀少且二氧化硅和氧化铝过量,但它显着促进了HSC孔的微观结构密度和曲折度,从而改善了强度和传输性能,这在氯离子快速渗透的减少中得到了证明。 (RCPT)和较低的初始表面(水)吸收(ISA)值。 HSC-VPP样品的最大180天抗拉强度,抗弯强度和抗压强度分别为6.22、10.5和78.9 MPa。 (C)2019由Elsevier Ltd.发布

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