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Modified high-temperature coating

In addition to the in-house testing of this modified high-temperature system (between 150 °C and 185 °C), independent testing was conducted by Shell Expro (UK) at a temperature of 130 °C and 30 bar pressure, together with other proprietary coating systems, and it was found to be the only material tested to withstand these conditions. [Pg.93]

Coating system - Modified high temperature epoxy novolac, Belzona 1591 Application date - March 1997... [Pg.93]

In this work. Zirconium based UHTCs were applied to modify the matrix of Cp/SiC composites and fabricate ultra-high-temperature coatings for C/SiC composites. The properties and microstructures were studied as well. [Pg.67]

Uses. 3-Pentenenitrile, 3PN, is used entirely by the manufacturers to make adiponitrile. i7j -2-Pentenenitrile, 2PN, can be cycli2ed catalyticaHy at high temperature to produce pyndine, a solvent and agncultural chemical intermediate. 2PN is also chlorinated to manufacture pentachloropyndine, an intermediate in the insecticide Dursban produced by Dow. Addition of ammonia to 2PN foUowed by reduction leads to 1,3-pentadiamine (Dytek ep), which is used as a curing agent for epoxy coatings and as a chain modifier in polyurethanes. [Pg.226]

Plastic packagiag materials are thermoplastic, ie, reversibly fluid at high temperatures and soHd at ambient temperatures. These materials may be modified by copolymerization, additives ia the blead, aHoyiag, and surface treatment and coating. Properties of principal plastic packagiag materials are givea ia Table 1. [Pg.451]

Chemically Modified Waxes. Hydrocarbon waxes of the microcrystaHine, polyethylene, and polymethylene classes are chemically modified to meet specific market needs. In the vast majority of cases, the first step is air oxidation of the wax with or without catalysts (11). The product has an acid number usuaHy no higher than 30 and a saponification number usuaHy no lower than 25. An alternative step is the reaction of the wax with a polycarboxyHc acid, eg, maleic, at high temperature (12). Through its carboxyl groups, the oxidised wax can be further modified in such reactions as saponification or esterification. Oxidised wax is easily emulsified in water through the use of surfactants or simple soaps, and is widely used in many coating and poHsh appHcations. [Pg.317]


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Coating systems modified high-temperature

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