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Base Material Considerations and the Selection of NACE Approved High-Strength Alloy Overlay for Use on HP/HT Exploration and Production Equipment

机译:用于HP / HT勘探和生产设备的基础材料注意事项和NACE批准的高强度合金堆焊层的选择

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Petroleum exploration and production operations have been and are expanding into areas that demand resistance to operating temperatures and pressures well above those that are presently considered "normal" by the existing API oil tool equipment specifications. Consequently, the common low alloy steel materials from which the present oil tool equipment is manufactured have been and are now being reexamined to determine their suitability for use in these high pressure high temperature, HP/HT, operating environment applications. Furthermore, with these HP/HT applications, consideration must be given not only to the elevated temperature tensile strengths of the low alloy steel materials but, also to their resistance to the hostile wellbore fluid constituents to which they may be exposed. Principally the effect of any Hydrogen Sulfide, H_2S, which may be contained in the wellbore fluid on the materials of construction, must be thoroughly considered. In addition, other hostile wellbore fluid constituents, such as, Carbon Dioxide, CO_2 and Chlorides must be considered as well. Development work has been ongoing to explore the advancement of the common low alloy steel materials of construction for this equipment with greater section thickness, higher tensile strengths and continued qualification of the material to the requirements of NACE MR0175 / ISO 15156. This development has recently begun to include the incorporation of other materials to augment the mechanical properties of these common low alloy steel materials. This materials augmentation includes the use of high strength alloy overlays. These overlays not only can provide higher strength and concurrent resistance to Sulfide Stress Corrosion Cracking, SSCC, they can also provide improved corrosion resistance in service compared with equipment manufactured from the common low alloy steel materials alone. The development of the use of these materials and combination of materials will help advance the technology for the exploration and production of petroleum for enhancing of the entire industry. As wellbore fluid temperatures and pressures continue to increase, the materials of construction used for the manufacture of wellbore fluid containing equipment will have to continue to improve to maintain pace with the needs of exploration and production.
机译:石油勘探和生产作业已经并且正在扩展到要求对工作温度和压力具有抵抗力的领域,这些领域的工作温度和压力远高于现有API石油工具设备规范当前认为的“正常”水平。因此,已经并且现在正在重新审查用于制造本油工具设备的普通低合金钢材料,以确定它们是否适合在这些高压高温,HP / HT操作环境中使用。此外,在这些HP / HT应用中,不仅必须考虑低合金钢材料的高温拉伸强度,而且还必须考虑其对可能暴露于其中的有害井筒流体成分的抵抗力。原则上,必须彻底考虑井筒流体中可能包含的任何硫化氢H_2S对施工材料的影响。此外,还必须考虑其他不利的井筒流体成分,例如二氧化碳,CO_2和氯化物。正在进行开发工作,以探索用于该设备的普通低合金钢结构的改进,该材料具有更大的截面厚度,更高的抗拉强度,并且继续使该材料符合NACE MR0175 / ISO 15156的要求。包括掺入其他材料以增强这些常见的低合金钢材料的机械性能。这种材料的增加包括使用高强度合金覆盖层。与仅由普通低合金钢材料制造的设备相比,这些覆盖层不仅可以提供更高的强度并同时具有抗硫化物应力腐蚀开裂(SSCC)的能力,而且在使用中还可以提供更高的抗腐蚀性。这些材料的使用和材料组合的发展将有助于推动石油勘探和生产技术的发展,从而促进整个行业的发展。随着井眼流体的温度和压力持续增加,用于制造含井眼流体的设备的构造材料将必须继续改进,以保持与勘探和生产需求的步调。

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