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首页> 外文期刊>Journal of neurosurgical sciences >INFLUENCE OF THE PARTICLE SIZE DISTRIBUTION OF SILICA FLOUR ON THE MECHANICAL AND MICROSTRUCTURAL PROPERTIES OF OIL WELL CEMENT PASTE EXPOSED TO HTHP CONDITIONS
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INFLUENCE OF THE PARTICLE SIZE DISTRIBUTION OF SILICA FLOUR ON THE MECHANICAL AND MICROSTRUCTURAL PROPERTIES OF OIL WELL CEMENT PASTE EXPOSED TO HTHP CONDITIONS

机译:二氧化硅粉粒度分布对暴露于HTHP条件的油井水泥浆料机械和微观结构性能的影响

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Silica flour is used to mitigate the strength retrogression and microstructure degradation problems of oil well cement paste in high temperature wells. This study investigates the effects of the particle size distribution of silica flour on the thermal stability of cement paste. After 7 days hydrothermal curing at 80 degrees C, the cement paste was exposed to further aging fir 7 or 28 days under high temperature and high pressure (HTHP) conditions in a sealed chamber at 260 degrees C (500 degrees F) and 21 MPa (2900 psi). The results show that 43% silica flour by weight of cement (BWOC) mitigates the strength degradation of silica-stabilized Portland cement (SSPC), and course silica flour (63.13 and 48.25 mu m) maintains the strength stability of SSPC better than fine silica flour (3.25 mu m). The transfinmation of C-S-H gel to xonotlite in .SSPC was influenced by the silica particle size. The relatively fine silica flour (d(50 )= 3.25 mu m) accelerates the consumption of calcium hydroxide during the pozzolanic reaction, resulting in a poorer strength stability of SSPC than the courser silica flour (d(50)- 63.13 and 48.25 mu m). The silica flour with an average particle size of 48.25 mu m is more conducive to crystallization of xonotlite on the crystal plane corresponding to a diffraction angle of 25.5 degrees than the other size silica flour.
机译:二氧化硅粉用于减轻高温井油井水泥浆料的强度倒置和微观结构降解问题。本研究研究了二氧化硅粉粒度分布对水泥浆料热稳定性的影响。在80℃下水热固化后,将水泥浆地暴露于在260℃(500℃)和21MPa( 2900 psi)。结果表明,43%的水泥(BWOC)二氧化硅面粉(BWOC)减轻了二氧化硅稳定的波特兰水泥(SSPC)的强度降解,以及硅胶面粉(63.13和48.25μm)的硅胶面粉比细二氧化硅更好地保持SSPC的强度稳定性面粉(3.25 mu m)。 C-S-H凝胶对Xonotlite的转染在.sspc中受二氧化硅粒度的影响。相对细的二氧化硅面粉(D(50)=3.25μm)加速了在火山静脉反应过程中氢氧化钙的消耗,导致SSPC的较差的强度稳定性,而不是Courser二氧化硅面粉(D(50) - 63.13和48.25 mu m )。平均粒径为48.25μm的二氧化硅粉更有利于与其他比对应于25.5度的衍射角的晶体平面上的Xonotlite的结晶。

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