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首页> 外文期刊>Journal of the Society of Inorganic Materials,Japan: セツコウ·石灰·セメント·地球環境の科学 >Influence of Gypsum on the Hydrothermal Reaction of Lime-Quartz System and on the Strength of Autoclaved Calcium Silicate Product
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Influence of Gypsum on the Hydrothermal Reaction of Lime-Quartz System and on the Strength of Autoclaved Calcium Silicate Product

机译:石膏对石英系统水热反应及高压灭菌钙硅酸钙产品的影响

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摘要

The influence of adding gypsum on the chemical reactions and strength of lime-quartz based autoclaved board samples were investigated. The samples were prepared by adding 0, 5, 10, 20 mass percent of gypsum (converted to CaSO_4) under saturated steam pressures at 180 deg C for various times from 0 approx 160 h and 140 deg C for 0 h. The starting materials of Ca (OH)_2 and quartz with Ca/Si = 0.8 were mixed with gypsum, cellulose fiber and water, followed by molding to a density of 1000 kg centre dot m~(-3). The demolded boards were then hardened by autoclaving. The specimens without gypsum reacted hydrothermally: Ca-rich C-S-H +quartz->C-S-H->tobermorite with 1.1 nm spacing. Adding gypsum to the starting mixtures, hemihydrate dehydrated form of the gypsum reacted with lime and quartz to form hexagonal prisms of hydroxyl ellestadite which grew radially, and inhibited the formation of C-S-H and tobermorite. This inhibition resulted in the delay of the elevation of the strength. As the hydrothermal reaction progressed, hydroxyl ellestadite reacted with quartz and decomposed into tobermorite crystals and anhydrite. A finer microstructure developed, resulting in a high strength. Further hydrothermal treatment increased the strength of specimens prepared with higher quantities of gypsum, indicating higher tobermorite crystallinity. Prolonged treatment of specimens prepared with 0, 5 or 10 mass percent of gypsum caused tobermorite to decompose into gyrolite, and led to a coarser microstructure and reduction in strength. However, gypsum that was added to constitute 20 percent give tobermorite to remain stable and inhibited the decomposition into gyrolite.
机译:研究了添加石膏对石英基型高压灭菌板样品的化学反应和强度的影响。通过在饱和蒸汽压力下加入0,5,10,20质量%的石膏(转化为CasO_4)在180℃下加入0.0℃,从0℃下加入0.5℃和140℃0小时。 Ca(OH)_2和用Ca / Si = 0.8的石英的原料与石膏,纤维素纤维和水混合,然后模塑为1000kg中心点M〜(-3)的密度。然后通过高压灭菌硬化脱模的板。没有石膏的标本是水热的反应:富含Ca的C-S-H +石英 - > C-S-H->具有1.1nm间距的C-S-H-> Tobermorite。将石膏添加到起始混合物中,石膏的半水合物脱水形式与石灰和石英反应,形成径向生长的羟基粒径的六边形棱镜,并抑制C-S-H和Tobermorite的形成。这种抑制导致强度延迟延迟。随着水热反应进展,羟基焦淀粉与石英反应并分解成富含纤维素晶体和空调。开发的更精细的微观结构,产生高强度。进一步的水热处理提高了用较高量的石膏制备的标本强度,表明较高的富含纤维素结晶度。延长用0,5或10质量%的石膏制备的标本的延长治疗导致Tobermorite分解成陀螺素,并导致较粗糙的微观结构和减少强度。然而,加入的石膏构成20%给予Tobermorite保持稳定并抑制分解成陀螺岩。

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