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Glassflake composite coating systems have proven track records of long term corrosion protection in aggressive service applications. They offer design and actual life for many applications of decades rather than years. This paper will review some of the changes, which have occurred over recent years.
Glassflake Composite coating systems have proven track records of long term corrosion protection even in aggressive service applications with design and actual life for many applications being measured in decades rather than years. The paper will review of some of the changes which have occurred over recent years.Within process vessels a complex mixture of organic materials and acid gases temperature erosion and pressure can make corrosion protection a particular challenge. Vinylester glassflake materials have been used extensively for corrosion protection of oil process vessels.High performance linings are now also being used with carbon steel on many oil projects and offshore oil installations as a cost effective alternative to stainless steel and super-duplex pipework. These include many environments containing high pressure high temperatures and sour gas.This paper will review the successful long term track record of these materials their limitations application requirements for process vessels and pipework and possible future trends within the industry.
Key words: Process Vessels, Process Pipework, Vinylester Composite Lining, Glassflake
This paper will review the features and benefits of a new epoxy coating technology that allows for true epoxy-amine curing in a single-pack product. Performance versus traditional two-component epoxy products will be compared, and environmental and convenience benefits of single-pack versus two-component packaging will be discussed.
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Fitness for purpose of low temperature cure liquid-applied coating systems for pipeline maintenance and repair. Potential revisions to incorporate low temperature cure liquid-applied coating products into Table 1 of CSA Z245.30-14 will be presented along with commentary related to the deviations from the standard.
Overview of coatings for a cyclic-temperature environment. Test method, including a heat cycle between 21 to 300 deg-C simulating the dehydrator operation and exposure to salt spray. The performances of the three coatings were evaluated using this method. Factors to be considered for coating selection in the cyclic-temperature environment are discussed.c