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09165 High Temperature Protective Coatings of Interest to the Process Industry

Product Number: 51300-09165-SG
ISBN: 09165 2009 CP
Author: Yungdy Chandra Tjin, Thuan K. Nguyen, Ikke F. Dolana and Vilupanur A. Ravi
Publication Date: 2009
$0.00
$20.00
$20.00
Metallic materials used in certain areas of the chemical process industry face high temperature attack in the form of oxidation, sulfidation, carburization, halogen attack, etc. One approach to defending metallic materials against high temperature corrosive attack is through the use of protective coatings. Although several coating methods are available, halide-activated pack cementation is a coating process of choice due to its versatility and cost-effectiveness. Traditionally pack cementation has been utilized to apply aluminum, chromium or silicon-rich coatings. The coating process is reviewed and a model to predict the kinetics is outlined. The effective utilization of this process to achieve desired results is discussed.

Keywords: coatings, pack cementation, halide-activated, aluminizing, chromizing, siliconizing
Metallic materials used in certain areas of the chemical process industry face high temperature attack in the form of oxidation, sulfidation, carburization, halogen attack, etc. One approach to defending metallic materials against high temperature corrosive attack is through the use of protective coatings. Although several coating methods are available, halide-activated pack cementation is a coating process of choice due to its versatility and cost-effectiveness. Traditionally pack cementation has been utilized to apply aluminum, chromium or silicon-rich coatings. The coating process is reviewed and a model to predict the kinetics is outlined. The effective utilization of this process to achieve desired results is discussed.

Keywords: coatings, pack cementation, halide-activated, aluminizing, chromizing, siliconizing
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