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首页> 外文期刊>Research journal of applied science, engineering and technology >Laboratory Investigation on Performance of Cement Using Different Additives Schemes to Improve Early Age Compressive Strength
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Laboratory Investigation on Performance of Cement Using Different Additives Schemes to Improve Early Age Compressive Strength

机译:使用不同添加剂方案提高早期抗压强度的水泥性能的室内研究

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It is essential to maintain the oil well cement integrity effectively and economically. The classical literature review of cement slurry preparation has shown high temperature in wellbore has influenced the mechanical properties of cement slurry, especially compressive strength. The compressive strength is the most important parameter when the ability of the cement to perform its necessary functions of down-hole faster placement analyzed. In past, the different additives were used to improve the performance of cement slurry by maintain compressive strength during placement. Laboratory tests carry out by Silica Fume (SF) with dispersants and fluid loss control additives at different concentrations to performed early age compressive test of nondestructive cement slurry through Ultra-Sonic Cement Analyzer (UCA). Measured result showed that 6:34 and 7:48 h aged sample have a maximum compressive strength at temperature above 120°C. It is observed that as concentration of SF increased with combined dispersants and fluid loss additives used to control& enhance compressive strength at above 120°C for the integrity of cement slurry.
机译:有效而经济地保持油井水泥的完整性至关重要。水泥浆制备的经典文献回顾表明,井筒中的高温影响了水泥浆的机械性能,特别是抗压强度。当分析水泥在井下更快地完成其必要功能的能力时,抗压强度是最重要的参数。过去,使用不同的添加剂通过在浇筑过程中保持抗压强度来改善水泥浆的性能。硅粉(SF)与分散剂和失水控制添加剂以不同浓度进行实验室测试,以通过超声波水泥分析仪(UCA)对无损水泥浆进行早期老化压缩测试。测量结果表明,经过6:34和7:48 h老化的样品在120°C以上的温度下具有最大抗压强度。可以看出,随着SF浓度的增加,分散剂和失水添加剂的组合用于控制和增强水泥浆完整性的120°C以上的抗压强度。

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