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HISTORICAL DOCUMENT. The purpose of this NACE International test method is to standardize the testing methods and conditions used to determine acceptable temperature limits for personnel protection for insulative coatings in accordance with ASTM C1055. The temperature limits determined when using this test method are specific for each coating tested at a particular thickness and substrate temperature. A standardized test method can validate the temperature limits of a coating used for personnel protection, and enable direct comparison of its performance. This test method is intended for use by facility owners, engineers, health and safety specialists, coatings manufacturers, and other interested parties.
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Guidelines for establishing standard procedures for test panel selection, surface preparation, coating application, field exposure sites and conditions, and the grading and evaluation of panels. Historical Document 1993
Handling and transportation of finish coated steel from the fabrication shop to the project site is impacted by the length of time that the finish coat must dry. Known as shop-field throughput, a reduction in the dry time required prior to handling (without compromising performance), as well as a minimization of handling damage can greatly reduce project costs.
HISTORICAL DOCUMENT. Standard test methods for evaluating protective coatings for immersion service. Two test methods for evaluation of both chemical resistance and permeability for coatings on any substrate.
Two test methods for evaluating the performance of protective coatings and linings used as lining materials in immersion service: one-side testing of the panel and immersion testing of the panel. Historical Document 1996
This updated NACE International standard test method specifies test methods to evaluate the performance of liquid coating systems for seawater immersion services. This test method is intended for use by facility owners and coating manufacturers.The test method covers liquid exterior protective coating systems for offshore platform steel structures, piers, docks, pilings, subsea valves, and wellheads at normal seawater temperature.
Included are four test methods—including cathodic disbondment, seawater immersion resistance, aging stability, and edge coverage—used to evaluate coating systems. The test method also includes two tables; Table 1 details fingerprinting of coating materials, and Table 2 details the test panel geometry, size, substrate material, and minimum quantity.