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Metallic material requirements for resistance to sulfide stress cracking (SSC) for petroleum production, drilling, gathering and flowline equipment, and field processing facilities to be used in H2S-bearing hydrocarbon service. Historical Document 1993
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DOWNLOADABLE HISTORICAL DOCUMENT. This NACE standard (material requirements) is one step in a series of committee studies, reports, symposia, and standards that have been sponsored by Group Committee T-1 (Corrosion Control in Petroleum Production) relating to the general problem of sulfide stress cracking (SSC) of metals. Much of this work has been directed toward the oil and gas production industry. Many of the guidelines and specific requirements in this standard are based on field experience with the materials listed, as used in specific components, and may be applicable to other components and equipment in the oil production industry or to other industries. Users of this standard must be cautious in extrapolating the content of this standard for use beyond its scope.
HISTORICAL DOCUMENT. Metallic material requirements for sucker-rod pumps in oilfield environments. Recommended materials for mild, moderate, and severe metal-loss corrosion. Properties of pump barrel and plunger materials.
This standard specifies metallic material requirements for the construction of sucker-rod pumps for service in corrosive oilfield environments. American Petroleum Institute (API) Spec 11AX provides dimension requirements that ensure the interchangeability of component parts. However, that document does not provide material specifications or guidelines for the proper application of various API pumps. API RP 11AR lists the general advantages and disadvantages of the various pump types and lists the acceptable materials for barrels and plungers; API RP 11BR and NACE SP0195 supplement API Spec 11AX by providing corrosion control methods using chemical treatment. This standard is intended for end users (e.g., production engineers) and equipment manufacturers to supplement the use of the aforementioned API and NACE publications.
Properties and test methods of 4 types of coating for pipelines. Pressure-sensitive plastic tapes, prefabricated plastic films, tape laminates, extruded plastic coatings. Based on service records. Historical document 1974
Material requirements for three types of polyolefin-based, cold-applied tapes used in coating pipelines - including pressure-sensitive and butyl-laminate tapes. Historical Document 1995
Revised standard covering only polyolefin cold-applied tapes. Material requirements for three types of cold-applied polyolefin tapes used for pipeline coating and the multilayered tape systems using these materials. Identification of these pipeline coatings by external parties. Historical Document 1989
HISTORICAL DOCUMENT. Reprinted March 1996.
This NACE technical committee report provides currently accepted practices for the design of insulated surfaces and the selection of protective coatings for carbon steel and austenitic stainless steel surfaces under thermal insulation and cementitious fireproofing. It is directed primarily toward the process industry, which has experienced the largest number of severe corrosion problems of vital parts and equipment, often leading to costly repairs or replacement.
Factors that make electrical substation painting unique. Worker safety and painting of radiators. Providing owners, engineers, and maintenance personnel with sample specifications that they may modify to meet their specific requirements. Historical Document 1995
Emergency guideline. Protective coatings for carbon steel and austenitic stainless steel under insulation systems. Systems considered: thin film liquid-applied coatings, fusionbonded coatings, metallizing, and wax-tape coatings. HSITORICAL DOCUMENT 1997
Supplement API Standard 11AX (6th ed., 1971) specifying the material requirements of metallic materials for the construction of sucker-rod pumps for service in hydrogen sulfide environments. Only pumps with one-piece barrels and metal plungers have been considered in this standard.