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Influence of delayed addition time of sodium sulfanilate phenol formaldehyde condensate on the hydration characteristics of sulfate resisting cement pastes containing silica fume

机译:氨基苯磺酸钠,苯酚甲醛缩合物的延迟添加时间对含硅粉的抗硫酸盐水泥浆水化特性的影响

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The water-silica fume-cement system is highly sensitive to the effect of superplasticizers. This work aimed to study the individual effects of the dosage and delayed addition time of laboratory synthesized sodium sulfanilate phenol formaldehyde condensate (SSFP) on the hydration characteristics of sulfate resisting cement (SRC) pastes incorporating 10 mass% SF and hydrated up to 90 days. Initial and final setting times, compressive strength, bulk density, total porosity and hydration kinetics were determined. Some selected specimens were analyzed using IR spectroscopy. The results showed that the fluidity of cement pastes increases with SSFP dosage and delayed addition time up to 10 min this is due to the electrostatic repulsion between cement particles and the decrease of C_3A content that is minimized by hydration until the dormant period (10-15 min). The values of combined water, compressive strength and bulk density increase with polymer content up to 1.5 mass% with delayed addition time up to 10 min; this is intrinsically associated with the reduction of W/C ratio with polymer content as well as the improvement of superplasticizing effect of SSFP with delayed addition. IR spectra are in a good agreement with the results of physico-chemical and mechanical properties. The synthesized SSFP condensate could improve the fluidity, bulk density and compressive strength of the investigated cement pastes.
机译:水硅粉水泥系统对高效减水剂的效果高度敏感。这项工作旨在研究实验室合成的氨基磺酸钠苯酚甲醛缩合物(SSFP)的剂量和延迟添加时间对掺入10质量%SF并长达90天水合的耐硫酸盐水泥(SRC)糊料水化特性的影响。测定了初始和最终凝固时间,抗压强度,堆积密度,总孔隙率和水合动力学。使用红外光谱分析了一些选定的标本。结果表明,水泥浆的流动性随SSFP用量的增加和最多10分钟的延迟添加时间而增加,这是由于水泥颗粒之间的静电排斥力和C_3A含量的降低,通过水化作用直至休眠期将C_3A含量降至最低(10-15)分钟)。聚合物含量最高为1.5质量%时,组合水,抗压强度和堆积密度的值会增加,延迟添加时间最多为10分钟;这与降低聚合物含量的W / C比以及延迟添加SSFP的超塑化效果有着内在的联系。红外光谱与物理化学和机械性能的结果非常吻合。合成的SSFP凝析油可以改善所研究水泥浆的流动性,堆积密度和抗压强度。

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