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首页> 外文期刊>Advances in materials science and engineering >Effect of Particle Size of Periclase on the Periclase Hydration and Expansion of Low-Heat Portland Cement Pastes
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Effect of Particle Size of Periclase on the Periclase Hydration and Expansion of Low-Heat Portland Cement Pastes

机译:过氧化物酶粒度对低热硅酸盐水泥浆料过氧化物酶水合和膨胀的影响

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摘要

In this paper, low-heat Portland cement (LHC) clinkers were prepared by calcining raw materials at 1350°C for 2.0 hours, 1400°C for 1.0 hour, 1400°C for 1.5 hours, 1400°C for 2.0 hours, 1450°C for 1.0 hour, and 1450°C for 2.0 hours. The clinkers were ground with gypsum to produce LHC. The particle size of periclase was analysed by BSEM. Expansion of LHC pastes due to hydration of periclase was measured. The hydration degree of periclase in LHC pastes was quantitatively determined by XRD internal standard method and BSEM. The results showed that the particle size of periclase was larger when clinkers were calcined at higher temperatures or for longer time. Smaller periclase (2.60 μm) in LHC pastes tended to hydrate faster. As a result, expansion of LHC pastes develops relatively faster. Smaller particle of periclase in clinker tends to result in higher hydration degree of periclase in pastes cured at 20°C for 240 days, and there is a small amount of brucite appearing around periclase. The hydration rate of 4.00 μm periclase particle in cement paste cured at 80°C is obviously faster than that in paste cured at 20°C and 40°C. When cement paste was cured at 80°C for 7 days, the periclase was hydrated for 32.56%. The smaller size periclase (1–3 μm) had fully hydrated when the curing age was 240 days, and a large amount of brucite was produced around the larger periclase particle.
机译:本文通过在1350°C下煅烧2.0小时,1400°C下煅烧1.0小时,1400°C下1.5小时,1400°C下2.0小时,1450°C煅烧低热硅酸盐水泥(LHC)熟料。于1.0℃加热1小时,于1450℃加热2.0小时。熟料用石膏磨碎以生产LHC。用BSEM分析过氧化物酶的粒径。测量了由于过氧化物酶的水合而引起的LHC糊剂的膨胀。用XRD内标法和BSEM定量测定LHC糊剂中过氧化物酶的水合度。结果表明,熟料在较高温度或较长时间下煅烧时,过氧化物酶的粒径较大。 LHC糊剂中较小的周长胶(2.60μm)倾向于更快地水合。结果,LHC糊剂的膨胀发展相对较快。熟料中较小的钙镁矿颗粒倾向于导致在20°C下固化240天的糊状物中钙镁矿的水合度更高,并且在钙镁矿周围出现少量水镁石。在80°C固化的水泥浆中4.00μm过氧化物酶颗粒的水合速率明显快于在20°C和40°C固化的浆体中的水合速率。当水泥浆在80℃下固化7天时,过氧化物酶被水合32.56%。固化期为240天时,较小尺寸的钙长石(1-3μm)已完全水化,并且较大的钙长石颗粒周围会生成大量水镁石。

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