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Nanorubber-modified cement system for oil and gas well cementing application

机译:用于油气井胶结井生产的纳米橡胶改性水泥系统

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Flexible cement systems with low shrinkage are more capable than the conventional cement systems to withstand the tensile stresses generated by fluctuation of temperature and pressure in oil and gas wells. In this work nanorubber particles (NR), stable at high temperature and in alkaline environment, were incorporated into a cement system. The impact of NR on the heat of hydration, autogenous shrinkage and tensile properties were measured at 40 degrees C, whereas the sonic compressive strength development and 3 days tensile strength were measured at 20.7 MPa and 142 degrees C. Addition of NR to the cement system resulted in reduced autogenous shrinkage, but also retarded setting time and compressive strength development. Incorporation of NR into the cement system improved the capacity to withstand tensile stresses at laboratory conditions. The results indicate promising performance at well conditions, which is supported by a measured positive impact on tensile strength at high temperature and pressure. (c) 2017 Elsevier B.V. All rights reserved.
机译:具有低收缩的柔性水泥系统比传统的水泥系统更具能力,以承受通过油气阱温度和压力波动产生的拉伸应力。在该工作中,在高温和碱性环境下稳定纳米橡胶颗粒(NR)掺入水泥体系中。在40℃下测量NR对水合,自生收缩和拉伸性质的影响,而Sonic抗压强度显影和3天拉伸强度在20.7MPa和142℃下测量。添加NR至水泥系统导致自体收缩减少,但也延迟设定时间和抗压强度发育。将NR掺入水泥系统中提高了实验室条件下承受拉伸应力的能力。结果表明在井条件下的有希望的性能,其通过测量的正极影响在高温和压力下对拉伸强度的测量的正影响。 (c)2017 Elsevier B.v.保留所有权利。

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