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High-Temperature Elastomer Seal Material Testing and Selection for Downhole Environments

机译:高温弹性体密封材料测试和选择井下环境

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As drilling technology allows deeper and hotter reservoirs to be reached, oil and gas well operations must be able to withstand harsher environmental conditions. The wells in which the drilling and completion tools are used have become increasingly deeper, and consequently, the operating pressures and temperatures to which these tools are exposed have also increased. Hydrocarbon recovery operations involving acids, high pH, steam and high temperatures are particularly damaging to downhole sealing materials. To meet the increased chemical and mechanical performance requirements of the harsh environments in these deep wells, new materials and methodologies must be developed for all phases of exploration and production operations. The most commonly used oilfield elastomers such as acrylonitrile butadiene rubber and hydrogenated acrylonitrile butadiene rubber are either not chemically strong enough or not thermally stable to withstand the harsh chemical and thermal environments of these deep wells. Perfluoroelastomers become the only choice when downhole temperature reaches as high as 260癈. This paper discusses some selected seal material lab test results, namely mechanical properties, extrusion resistance, steam resistance, and bonding strength conducted up to 260癈 for different compounds. Some of these compounds were successful and were able to show markedly improved performance in their respective tool designs.
机译:由于钻井技术允许达到更深,更热的储层,油气井操作必须能够承受骚扰环境条件。使用钻孔和完成工具的孔已经变得越来越深,因此,这些工具暴露的操作压力和温度也增加。涉及酸,高pH,蒸汽和高温的烃回收作用对井下密封材料特别损害。为了满足这些深井中的恶劣环境的增强化学和机械性能要求,必须为勘探和生产运营的所有阶段开发新材料和方法。最常用的油田弹性体如丙烯腈丁二烯橡胶和氢化丙烯腈丁二烯橡胶不够强大或不热稳定,以承受这些深井的苛刻的化学和热环境。全氟弹性体成为井下温度达到高达260‰的唯一选择。本文讨论了一些选定的密封材料实验室测试结果,即机械性能,挤压,蒸汽阻力和粘合强度,相对于不同的化合物的260。其中一些化合物是成功的,并且能够在各自的工具设计中表现出显着提高的性能。

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