首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Synthesis of microcrystalline brownmillerite Ca-2(Al,Fe)(2)O-5 and its influence of mechanical properties to the class G oil-well cement
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Synthesis of microcrystalline brownmillerite Ca-2(Al,Fe)(2)O-5 and its influence of mechanical properties to the class G oil-well cement

机译:微晶棕甲晶晶酯Ca-2(Al,Fe)(2)O-5的合成及其机械性能对G级油井水泥的影响及其影响

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摘要

This study investigated the use of calcium oxide (CaO), aluminum oxide (Al2O3) and ferric oxide (Fe2O3) as raw materials for the production of brownmillerite Ca-2(Al,Fe)(2)O-5, after firing at 1330, 1350 and 1370 degrees C. Lithofacies analysis, SEM/EDS and XRD were used to analyze the phase transition and microstructure of the clinkers during the firing process, and the contents of free calcium oxide (f-CaO) in the clinkers were determined by chemical titration. The results showed that the optimum temperature for the preparation of brownmillerite was 1370 degrees C (within the selected temperature range). By firing and quenching, microcrystalline brownmillerite (MB) was obtained (crystallinity index was 0.7). Compared with the compressive strength of class G oil-well cement matrix (M0) without MB, the compressive strength of specimens (M4) with 4 wt% MB addition increased by 67, 12, 20 and 33% (after curing for 1, 3, 7 and 14 d, respectively). meanwhile, the elastic modulus of M4 (after curing for 7 d) was reduced by 24% relative to that of M0, indicating that the mechanical properties of M4 were better than that of M0. To investigate the effect of microcrystalline brownmillerite on the strength and toughness of the class G oil-well cement matrix, triaxial testing was used in this study, and the toughening mechanisms were established.
机译:本研究调查了氧化钙(CaO),氧化铝(Al 2 O 3)和氧化铁(Fe2O3)作为在1330次烧制后生产棕色少许Ca-2(Al,Fe)(2)O-5的原料的原料,1350和1370℃。锂外分析,SEM / EDS和XRD用于分析烧制过程中熟料的相转变和微观结构,并通过熟料测定熟料中游离氧化钙(F-CaO)的含量的含量化学滴定。结果表明,棕色镁石制备的最佳温度为1370℃(在所选温度范围内)。通过烧制和淬火,获得微晶棕色镁(MB)(结晶性指数为0.7)。与没有Mb的G类油井水泥基质(M0)的压缩强度相比,试样(M4)的压缩强度增加了4wt%Mb的添加量增加了67,12,20和33%(固化1,3 7和14d分别)。同时,相对于M0的M0的M4(固化后7d)的弹性模量减少了24%,表明M4的机械性能优于M0的机械性能。为了探讨微晶棕色镁石对G级油井水泥基质的强度和韧性的影响,在该研究中使用三轴检测,并建立了增韧机制。

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