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新型油井水泥物相组成调控及力学性能研究
引用本文:倪修成,程小伟,黎俊吾,王晶,高显束,张高寅,张春梅,刘开强. 新型油井水泥物相组成调控及力学性能研究[J]. 硅酸盐通报, 2021, 40(8): 2534-2545
作者姓名:倪修成  程小伟  黎俊吾  王晶  高显束  张高寅  张春梅  刘开强
作者单位:西南石油大学新能源与材料学院,成都 610500;西南石油大学油气藏地质及开发工程国家重点实验室,成都 610500;四川页岩气勘探开发有限责任公司,成都 610000;中国建筑材料科学研究总院有限公司,北京 100024;西南石油大学新能源与材料学院,成都 610500;中国建筑材料科学研究总院有限公司,北京 100024
基金项目:四川省区域创新合作项目(2021YFQ0045)
摘    要:为了解决页岩气开采时固井水泥环产生破坏失效的问题,通过矿物组成计算和调整生料配比,采用岩相、XRD分析以及扫描电镜测试手段,开展油井水泥物相组成调控研究,探索不同矿物组成的水泥力学性能及相关水化产物.结果表明:所研制的新型油井水泥7 d抗压、抗折强度分别为45.3 MPa、8.9 MPa;28 d抗压、抗折强度分别为5...

关 键 词:G级油井水泥  矿物组成  页岩气固井  力学性能  微观机理
收稿时间:2021-02-26

Phase Composition Control and Mechanical Property of New Oil Well Cement
NI Xiucheng,CHENG Xiaowei,LI Junwu,WANG Jing,GAO Xianshu,ZHANG Gaoyin,ZHANG Chunmei,LIU Kaiqiang. Phase Composition Control and Mechanical Property of New Oil Well Cement[J]. Bulletin of the Chinese Ceramic Society, 2021, 40(8): 2534-2545
Authors:NI Xiucheng  CHENG Xiaowei  LI Junwu  WANG Jing  GAO Xianshu  ZHANG Gaoyin  ZHANG Chunmei  LIU Kaiqiang
Affiliation:1. School of New Energy and Materials, Southwest Petroleum University, Chengdu 610500, China;2. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China;3. Sichuan Shale Gas Exploration and Development Co., Ltd., Chengdu 610000, China;4. China Building Materials Academy, Beijing 100024, China
Abstract:In order to solve the problem of damage and failure of cementing ring during shale gas exploitation, the ratio of raw materials through mineral composition was calculated and adjusted. The oil well cement phase composition control research was studied by lithofacies, XRD analysis and scanning electron microscopy tests. And the mechanical properties of cement with different mineral compositions and related hydration products were explored. The results show that the compressive and flexural strength of the developed new oil well cement reach 45.3 MPa and 8.9 MPa for 7 d, 54.2 MPa and 9.6 MPa for 28 d, respectively. The 7 d elastic modulus is reduced to 7.1 GPa, which is 14.4% lower than that of G grade oil well cement, showing more excellent mechanical properties. Through microscopic analysis, it is concluded that the mechanism of the enhancement of the mechanical properties of the new oil well cement is due to the change in the mineral composition, which produces more C-S-H gel in the hydration product. At the same time, the increase in the content of the iron phase also produces more iron (aluminum)-rich gels, forming a tight bridge structure between the hydration products, and the overall structure is more compact. The new type of oil well cement has better compressive strength, flexural strength and toughness than G grade oil well cement, which has important reference value for the safe and efficient exploitation of shale gas.
Keywords:G grade oil well cement  mineral composition  shale gas cementing  mechanical property  microcosmic mechanism  
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