首页> 外文会议>Corrosion conference and expo;Corrosion 2008 >A New Chemical Mechanistic Postulate Regarding Annular Environmentally Assisted Cracking (AEAC) - Importance of Cations and Key Contaminants in Packer Fluids in Cracking of Martensitic Stainless Steel
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A New Chemical Mechanistic Postulate Regarding Annular Environmentally Assisted Cracking (AEAC) - Importance of Cations and Key Contaminants in Packer Fluids in Cracking of Martensitic Stainless Steel

机译:关于环形环境辅助开裂(AEAC)的新化学机制假设-马氏体不锈钢开裂过程中封隔器流体中阳离子和关键污染物的重要性

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Failure of production tubing in the oil & gas industry has become alarmingly more frequent in recent years in spite of the increased use of corrosion-resistant-alloy (CRA) materials. The majority of the recent failures have occurred from the outside (annulus side) and been attributed to Environmentally Assisted Cracking (EAC) - hence, best described as Annular EAC (AEAC). Examination of these failures points to a serious incompatibility of the production tubing metallurgy with the packer fluid under stress. To solve this problem, a research alliance of the co-authors to examine the compatibility of a wide spectrum of completion fluids with various martensitic stainless steel metallurgies was established. This unique research collaboration has resulted in a new body of knowledge regarding the causes behind AEAC failures. Results point to a key causative factor in AEAC not previously recognized. A new chemical mechanism distinct from the classical SCC or SSC has consequently been postulated to explain many AEAC observations. The mechanistic mode involves the effect of select cations and contaminants in the packer fluid. This paper discusses this new information and identifies serious misconceptions regarding the role of completion & packer fluids in the tubular failures.
机译:尽管越来越多地使用耐腐蚀合金(CRA)材料,但近年来石油和天然气行业中生产管的故障已变得异常频繁。最近的大多数故障都发生在外部(环面),并归因于环境辅助裂纹(EAC)-因此,最好将其描述为环形EAC(AEAC)。对这些故障的检查表明,在应力作用下,生产油管冶金与封隔器流体严重不兼容。为了解决这个问题,建立了合作者的研究联盟,以研究各种完井液与各种马氏体不锈钢冶金学的相容性。这种独特的研究合作带来了关于AEAC故障背后原因的全新知识体系。结果表明,AEAC中的一个关键原因是以前未认识到的。因此,人们提出了一种不同于经典SCC或SSC的新化学机理来解释许多AEAC的观察结果。机械模式涉及封隔器流体中选择的阳离子和污染物的影响。本文讨论了这一新信息,并确定了关于完井和封隔器流体在管状破坏中的作用的严重误解。

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