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Potential of weathered blast furnace slag for use as an addition in concrete

机译:风化高炉炉渣的潜力,用作混凝土的添加

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The paper investigates the potential for recovering granulated blast furnace slag after four to five years' storage in a stockpile (weathered) for use as an addition in concrete. The initial research physically and chemically characterised fresh and weathered granulated slag. Thereafter, studies on ground materials in paste and mortar were carried out. The weathered granulated slag was similar to fresh slag in terms of particle size, shape and elemental composition. However, there was greater roughening of particle surfaces, with various weathering products forming. Following grinding, fresh slag comprised angular particles covering a range of sizes, while finer particles in weathered slag included fragmented reaction products. In cement paste, weathered slag gave reductions in chemically bound water. In mortar, this showed little difference in flow properties compared to fresh slag, with reductions in compressive strength and increases in porosity also noted. Further analyses suggest that, at equal Blaine fineness, weathered slag (a) is actually coarser than fresh material, affecting particle packing and giving larger capillary pores, and (b) has lower reactivity due to reduced surface area. The practical implications are examined and approaches to using weathered slag in concrete suggested.
机译:本文调查了在储存(风化)中四到五年的储存后回收粒状高炉渣的可能性,以用作混凝土的添加。初始研究物理和化学表征清新和风化的颗粒状炉渣。此后,进行糊剂和砂浆的研磨材料的研究。在粒径,形状和元素组合物方面,风化的颗粒状炉渣类似于新鲜炉渣。然而,颗粒表面具有更大的粗糙化,具有各种耐候产品。磨削后,新鲜矿渣包括覆盖一系列尺寸的角颗粒,而风化渣的更精细的颗粒包括碎片反应产物。在水泥浆料中,风化的渣在化学束缚的水中降低。在砂浆中,与新鲜炉渣相比,流动性质的差异很小,减压抗压强度并增加了孔隙率的增加。进一步的分析表明,在等于Blaine细度,风化的炉渣(A)实际上比新鲜材料粗糙,影响颗粒填充并给予较大的毛细孔孔,并且(B)由于表面积减小而具有较低的反应性。检查了实际意义和在具体中使用风化渣的方法。

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