Suppr超能文献

可变比例的C-S-H晶种对波特兰水泥和贝利特水泥水化的加速作用

Portland and Belite Cement Hydration Acceleration by C-S-H Seeds with Variable / Ratios.

作者信息

Morales-Cantero Alejandro, Cuesta Ana, De la Torre Angeles G, Mazanec Oliver, Borralleras Pere, Weldert Kai S, Gastaldi Daniela, Canonico Fulvio, Aranda Miguel A G

机构信息

Departamento de Química Inorgánica, Cristalografía y Mineralogía, Universidad de Málaga, 29071 Málaga, Spain.

Master Builders Solutions Deutschland GmbH, Albert-Frank Str. 32, 83308 Trostberg, Germany.

出版信息

Materials (Basel). 2022 May 16;15(10):3553. doi: 10.3390/ma15103553.

Abstract

The acceleration of very early age cement hydration by C-S-H seeding is getting attention from scholars and field applications because the enhanced early age features do not compromise later age performances. This acceleration could be beneficial for several low-CO cements as a general drawback is usually the low very early age mechanical strengths. However, the mechanistic understanding of this acceleration in commercial cements is not complete. Reported here is a contribution to this understanding from the study of the effects of C-S-H gel seeding in one Portland cement and two belite cements at two widely studied water-cement ratios, 0.50 and 0.40. Two commercially available C-S-H nano-seed-based admixtures, i.e., Master X-Seed 130 and Master X-Seed STE-53, were investigated. A multi-technique approach was adopted by employing calorimetry, thermal analysis, powder diffraction (data analysed by the Rietveld method), mercury intrusion porosimetry, and mechanical strength determination. For instance, the compressive strength at 1 day for the PC (/ = 0.50) sample increased from 15 MPa for the unseeded mortar to 24 and 22 MPs for the mortars seeded with the XS130 and STE53, respectively. The evolution of the amorphous contents was determined by adding an internal standard before recording the powder patterns. In summary, alite and belite phase hydrations, from the crystalline phase content evolutions, are not significantly accelerated by C-S-H seedings at the studied ages of 1 and 28 d for these cements. Conversely, the hydration rates of tetracalcium alumino-ferrate and tricalcium aluminate were significantly enhanced. It is noted that the degrees of reaction of CAF for the PC paste (/ = 0.40) were 10, 30, and 40% at 1, 7, and 28 days. After C-S-H seeding, the values increased to 20, 45, and 60%, respectively. This resulted in larger ettringite contents at very early ages but not at 28 days. At 28 days of hydration, larger amounts of carbonate-containing AFm-type phases were determined. Finally, and importantly, the admixtures yielded larger amounts of amorphous components in the pastes at later hydration ages. This is justified, in part, by the higher content of amorphous iron siliceous hydrogarnet from the enhanced CAF reactivity.

摘要

C-S-H晶种对极早期水泥水化的加速作用正受到学者们的关注并应用于实际工程,因为其增强的早期性能不会影响后期性能。这种加速作用对几种低碳水泥可能是有益的,因为通常的一个普遍缺点是极早期的机械强度较低。然而,对于商业水泥中这种加速作用的机理理解并不完整。本文报道了一项关于在两种广泛研究的水灰比(0.50和0.40)下,C-S-H凝胶晶种对一种波特兰水泥和两种贝利特水泥影响的研究,以增进对这一现象的理解。研究了两种市售的基于C-S-H纳米晶种的外加剂,即Master X-Seed 130和Master X-Seed STE-53。采用了多种技术方法,包括量热法、热分析、粉末衍射(通过Rietveld方法分析数据)、压汞法和机械强度测定。例如,对于水灰比为0.50的波特兰水泥样品,未添加晶种砂浆的1天抗压强度为15MPa,添加XS130和STE53晶种的砂浆抗压强度分别增加到24MPa和22MPa。在记录粉末图谱之前,通过添加内标物来确定非晶态含量的变化。总之,对于这些水泥,在1天和28天的研究龄期内,从晶相含量变化来看,阿利特和贝利特相的水化并未因C-S-H晶种而显著加速。相反,铁铝酸四钙和铝酸三钙的水化速率显著提高。值得注意的是,对于水灰比为0.40的波特兰水泥浆体,铁铝酸钙在1天、7天和28天的反应程度分别为10%、30%和40%。添加C-S-H晶种后,这些值分别增加到20%、45%和60%。这导致在极早期生成更多的钙矾石,但在28天时并非如此。在水化28天时,测定出含有更多碳酸盐的AFm型相。最后,重要的是,外加剂在后期水化龄期的浆体中产生了更多的非晶态成分。部分原因是由于铁铝酸钙反应增强,生成了更多非晶态的铁硅质水石榴石。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68d6/9147420/6b0824e88831/materials-15-03553-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验