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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effects of amphoteric polycarboxylate dispersant (APC) and acetone formaldehyde sulfite polycondensate (AFS) on the rheological behavior and model of oil well cement pastes
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Effects of amphoteric polycarboxylate dispersant (APC) and acetone formaldehyde sulfite polycondensate (AFS) on the rheological behavior and model of oil well cement pastes

机译:两性多羧酸盐分散剂(APC)和丙酮甲醛亚硫酸盐致缩聚物(AFS)对油井水泥浆料流变行为及模型的影响

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Two oil-well cement dispersants, Amphoteric polycarboxylate dispersant (APC) and Acetone formaldehyde sulfite polycondensate (AFS) with different dosages (0.10%,0.15% and 0.20% by weight of cement), were used to investigate the rheological performance of cement paste. A simple equipment, six-speed rotational viscometer, was employed to study the relationship between the shear stress and shear rate of the fresh cement paste. Three typical rheological models including Herschel-Bulkley model, Bingham model, and Power-law model, were applied to estimate the yield stress, plastic viscosity and trend of the flow curves. The validity of these rheological models in predicting the rheological properties of cement paste was confirmed by considering the fitting optimization index (R-2). Besides, the thixotropic behavior of cement paste with different dispersants was investigated. The results show that the rheological properties of cement paste improve dramatically with either APC or AFS addition. And the APC dispersant with better dispersion behavior is significantly efficient in decreasing the consistency index and increasing the flow behavior index than AFS dispersant. The Herschel-Bulkley model with higher fitting optimization index was found to fit the experimental data best compared with Bingham model and Power-law model. The degree of thixotropy of cement paste with more dispersant addition decreases compared to the reference, which is related to the rheological behavior.
机译:两种油井水泥分散剂,两性多羧酸盐分散剂(APC)和丙酮甲醛硫酸甲硫酸盐(AFS),用不同剂量(0.10%,0.15%和0.20重量%的水泥)来研究水泥浆料的流变性能。采用简单的设备,六速旋转粘度计研究新鲜水泥浆料的剪切应力和剪切速率之间的关系。应用了三种典型的流变模型,包括Herschel-Bulkley模型,宾厄姆模型和动力法模型,估计流量曲线的屈服应力,塑料粘度和趋势。通过考虑拟合优化指数(R-2),确认了这些流变模型在预测水泥浆的流变性质中的有效性。此外,研究了水泥浆料与不同分散剂的触变行为。结果表明,水泥浆料的流变性能随着APC或AFS添加而显着改善。具有更好的色散行为的APC分散剂在降低稠度指数并增加比AFS分散剂的流动行为指数显着有效。发现具有较高拟合优化指数的Herschel-Bulkley模型与Bingham Model和Power-Law模型相比,最佳实验数据。与参考文献相比,具有更多分散剂添加的水泥浆料的触变度降低,这与流变行为有关。

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