Effects of Dosing and Mechanical Activation on the Performance of Reservoir Sediment-Cement Composite Cementitious Material

IF 0.7 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yancang Li, Chunyuan Zhang, Zihe Zhang, Huawang Shi, Shenglei Feng
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引用次数: 0

Abstract

To solve the problem of reservoir sediment accumulation, this paper intends to study the feasibility of preparing reservoir sediment-cement composite cementitious material by partially replacing cement with reservoir sediment. Using the single factor test method, the replacement rate of reservoir sediment and mechanical activation time were selected as variables to explore the effects of water requirement of normal consistency, setting time, mortar fluidity, and mechanical properties of mortar specimens. The results show that with the increase of sediment replacement rate, the water requirement of normal consistency of composite cementitious material paste increases, the setting time increases, the fluidity of mortar decreases, and the mechanical properties of mortar specimens decrease significantly. With the increase of mechanical activation time, the water requirement of normal consistency decreases, the setting time decreases, the fluidity of mortar increases, and the mechanical properties of the mortar specimen increase. The microcosmic results show that mechanical activation can promote the formation of C-S-H gel in reservoir sediment, and fill each other with unreacted reservoir sediment particles, resulting in a denser microstructure. The purpose of this paper is to provide theoretical support for the preparation of reservoir mud-cement composite cementitious material.
配料和机械活化对水库沉积物-水泥复合胶凝材料性能的影响
为解决水库泥沙淤积问题,本文拟研究用水库泥沙部分替代水泥制备水库泥沙-水泥复合胶凝材料的可行性。采用单因素试验方法,以水库泥沙置换率和力学激活时间为变量,探讨正常稠度需水量、凝结时间、砂浆流动性和砂浆试件力学性能的影响。结果表明:随着泥沙置换率的增加,复合胶凝材料膏体正常稠度需水量增加,凝结时间增加,砂浆流动性降低,砂浆试件力学性能显著降低;随着机械活化时间的延长,砂浆正常稠度需水量减小,凝结时间减小,砂浆流动性增大,砂浆试件力学性能提高。微观结果表明,机械活化可促进储层沉积物中C-S-H凝胶的形成,并与未反应的储层沉积物颗粒相互填充,使其微观结构更加致密。本文的目的是为油藏泥浆-水泥复合胶凝材料的制备提供理论支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Science
Materials Science 工程技术-材料科学:综合
CiteScore
1.60
自引率
44.40%
发文量
63
审稿时长
4-8 weeks
期刊介绍: Materials Science reports on current research into such problems as cracking, fatigue and fracture, especially in active environments as well as corrosion and anticorrosion protection of structural metallic and polymer materials, and the development of new materials.
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