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Stress corrosion cracking (SCC) for engineers, designers and consultants involved in the design, maintenance, and rehabilitation of underground petroleum (including gas, crude oil, and refinery products) pipelines.
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The theoretical basis for the 100 millivolt (mV) cathodic polarization criterion. Effects of other factors such as temperature, mill scale, moisture, and anaerobic bacteria, polarization.
Corrosion associated with alternating current (AC) interference on buried steel pipelines. AC corrosion characteristics and proposed mechanisms. Approaches to protection and monitoring.
HISTORICAL DOCUMENT. Determining the appropriate assessment method for corrosion threats, as a part of a pipeline integrity process. Specifically intended for buried onshore pipelines constructed from ferrous materials.
HISTORICAL DOCUMENT. Acceptable practices for the design, fabrication, installation, and maintenance of steel-cased metallic pipelines. For use by personnel in the pipeline industry.
Especificación para la aplicación de un recubrimiento interior en equipos de concreto (hormigón) y acero tales como tanques, recipientes a presión, sumideros y fosas.
HISTORICAL DOCUMENT. Surface preparation, coatings, application, inspection, and quality tests for coating a tank car. Corrosion and product contamination must be considered in the design of tank cars transporting liquids.
This standard provides a general guide for the application of effective cathodic protection (CP) to all types of oil-treating vessels containing a free water phase (the electrolyte). It is intended to be used by facility owners, contractors, inspectors, vessels equipment specialists, CP system designers, manufacturers, and others concerned with corrosion mitigation by using cathodic protection systems. The procedures in this standard may best be applied under the direction of a corrosion engineer and by persons with experience and knowledge of the design, installation, operation, maintenance, and control of corrosion protection in the oil-treating vessels containing the electrolyte.
Coatings and materials are discussed in this document in conjunction with the cathodic protection design, as the coating is a major factor when designing a cathodic protection system.
HISTORICAL DOCUMENT. Coatings application to the interiors of rail tank cars handling concentrated sulfuric acid at ambient temperatures. Inspection of completed coating. Testing. Surface prep. Materials Inspection.
REAFFIRMATION. This AMPP standard test method specifies procedures to evaluate cathodic disbondment resistance of the steel structure coating systems under cathodic protection, such as buried or submerged pipeline and tank linings. The standard covers all test specimen geometries and test temperatures. This standard also takes into consideration all test parameters with the goal of the standard to be used during the selection of protective coating systems for use under cathodic protection. This test method is intended for use by facility owners, coating applicators, and coating manufacturers.
This test method provides descriptions of the measurement techniques and cautionary measures most commonly used on underground and submerged piping other than offshore piping to determine whether one or more selected criterion has been met at a representative test site(s) with consideration for special conditions. These methods are also applicable to many other underground or submerged metallic structures.
HISTORICAL DOCUMENT. External corrosion direct assessment (ECDA) data structure enables integration of data and standardized reporting. Allows transfer between different software or computer systems.