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Nanomodified Methyl Methacrylate Polymer for Sealing of Microscale Defects in Wellbore Systems

机译:用于密封井眼系统的微米缺损的纳次碳化甲基甲基丙烯酸甲酯聚合物

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摘要

Microscale defects (microannuli) at the steel-cement and rock-cement interfaces are a major cause of failure in the integrity of wellbore systems. Microscale defects/microcracks as small as 30 mu m are sufficient to create a significant leakage pathway for fluids. In this paper, the authors propose the use of nanomodified methyl methacrylate (NM-MMA) polymer as a seal material for 30-mu m microcracks. Four materials were evaluated for their ability to serve as an effective seal material to seal 30-mu m microcracks: microfine cement, epoxy, methyl methacrylate (MMA), and NM-MMA incorporating 0.5% by weight aluminum nanoparticles (ANPs). The seal materials' bond strengths with shale were investigated using push-out tests. In addition, the ability to flow fluid through the microcracks was investigated using sagittal microscopic images. Viscosity, surface tension, and contact angle measurements explain the superior ability of MMA seal materials to flow into very thin microcracks compared with other materials. Post-test analysis shows MMA repair materials are capable of completely filling the microcracks. In addition, incorporating ANPs in MMA resulted in significant improvement in seal material ductility. Dynamic mechanical analysis (DMA) showed that incorporating ANPs in MMA reduced the creep compliance and improved creep recovery of NM-MMA. X-ray diffraction (XRD) analysis shows that incorporating ANPs in MMA resin increases the degree of polymer crystallization, resulting in significant improvement in seal material ductility. (c) 2019 American Society of Civil Engineers.
机译:钢水泥和岩石水泥接口的微观缺陷(微蛋白)是井筒系统完整性失败的主要原因。微观缺陷/微裂纹小至30μm的微裂纹足以为流体产生显着的泄漏途径。在本文中,作者提出了使用纳米倍增的甲基丙烯酸甲酯(NM-MMA)聚合物作为30-MU M微裂纹的密封材料。评估四种材料的用作有效的密封材料,以密封30-mu m微裂纹:微细水泥,环氧树脂,甲基丙烯酸甲酯(MMA)和NM-MMA掺入0.5重量%的铝纳米粒子(ANP)。使用推出测试研究了带有页岩的密封材料的粘合强度。此外,使用矢状显微图像研究了通过微裂纹流动流体的能力。粘度,表面张力和接触角测量解释了与其他材料相比,MMA密封材料流入非常薄的微裂纹的优异能力。后测试分析显示MMA修复材料能够完全填充微裂纹。另外,在MMA中掺入ANP导致密封材料延展性的显着改善。动态机械分析(DMA)显示,在MMA中掺入ANP,降低了NM-MMA的蠕变顺应性和改善蠕变恢复。 X射线衍射(XRD)分析表明,掺入MMA树脂中的ANP增加了聚合物结晶的程度,导致密封材料延展性的显着改善。 (c)2019年美国土木工程学会。

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  • 来源
    《Journal of materials in civil engineering》 |2019年第7期|04019118.1-04019118.10|共10页
  • 作者单位

    Univ New Mexico Dept Civil Construct & Environm Engn MSC01 1070 1 Univ New Mexico Albuquerque NM 87131 USA;

    Sandia Natl Labs POB 5800 MS 0779 Albuquerque NM 87185 USA;

    Transpo Ind Inc 20 Jones St New Rochelle NY 10801 USA;

    Univ New Mexico Dept Civil Construct & Environm Engn MSC01 1070 1 Univ New Mexico Albuquerque NM 87131 USA;

    Univ New Mexico Dept Civil Construct & Environm Engn MSC01 1070 1 Univ New Mexico Albuquerque NM 87131 USA;

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