%0 Journal Article %T §£§­§ª§Á§¯§ª§¦ §£§½§³§°§¬§°§´§¦§®§±§¦§²§¡§´§µ§²§¯§°§¤§° §°§¬§ª§³§­§¦§¯§ª§Á §¯§¡ §³§°§³§´§¡§£ §ª §³§´§²§µ§¬§´§µ§²§µ §¡§­§À§®§ª§¯§ª§¥§¯§°§¤§° §±§°§¬§²§½§´§ª§Á §¯§¡ §ª§®§±§­§¡§¯§´§ª§²§°§£§¡§¯§¯§°§« §±§°§£§¦§²§·§¯§°§³§´§ª §¯§ª§¬§¦§­§¦§£§°§¤§° §³§±§­§¡§£§¡ HIGH-TEMPERATURE OXIDATION INFLUENCE ON COMPOSITION AND STRUC-TURE OF ALUMINIDE COATING ON ION IMPLANTED SURFACE OF NICKEL ALLOY %A §¡. §¡. §¢§í§Ò§Ú§ß %J Vestnik UGATU %D 2013 %I Ufa State Aviation Technical University %X §²§Ñ§ã§ã§Þ§à§ä§â§Ö§ß§à §Ó§Ý§Ú§ñ§ß§Ú§Ö §Ó§í§ã§à§Ü§à§ä§Ö§Þ§á§Ö§â§Ñ§ä§å§â§ß§à§Ô§à §à§Ü§Ú§ã§Ý§Ö§ß§Ú§ñ §ß§Ñ §ã§à§ã§ä§Ñ§Ó §Ú §ã§ä§â§å§Ü§ä§å§â§å §Ó§Ñ§Ü§å§å§Þ§ß§à-§á§Ý§Ñ§Ù§Þ§Ö§ß§ß§à§Ô§à §á§à§Ü§â§í§ä§Ú§ñ §£§³§¥§±-11, §ß§Ñ§ß§Ö§ã§Ö§ß§ß§à§Ô§à §ß§Ñ §á§à§Õ§Ý§à§Ø§Ü§å §Ú§Ù §ã§á§Ý§Ñ§Ó§Ñ §¸§¯§¬-7§±, §Ú§Þ§á§Ý§Ñ§ß§ä§Ú§â§à§Ó§Ñ§ß§ß§å§ð §Ú§à§ß§Ñ§Þ§Ú §Ú§ä§ä§Ö§â§Ò§Ú§ñ. §ª§Ù§å§é§Ö§ß§à §á§Ö§â§Ö§â§Ñ§ã§á§â§Ö§Õ§Ö§Ý§Ö§ß§Ú§Ö §ï§Ý§Ö§Þ§Ö§ß§ä§à§Ó §Ó §á§à§Ü§â§í§ä§Ú§Ú §Ó §â§Ö§Ù§å§Ý§î§ä§Ñ§ä§Ö §ï§Ü§ã§á§à§Ù§Ú§è§Ú§Ú §à§Ò§â§Ñ§Ù§è§à§Ó §á§â§Ú §ä§Ö§Þ§á§Ö§â§Ñ§ä§å§â§Ö 850 §à§³, §Ó§í§ñ§Ó§Ý§Ö§ß§Ñ §Ó§Ù§Ñ§Ú§Þ§à§ã§Ó§ñ§Ù§î §Þ§Ö§Ø§Õ§å §ç§Ñ§â§Ñ§Ü§ä§Ö§â§à§Þ §â§Ñ§ã§á§â§Ö§Õ§Ö§Ý§Ö§ß§Ú§ñ §ï§Ý§Ö§Þ§Ö§ß§ä§à§Ó §Ú §â§Ñ§Ò§à§ä§à§ã§á§à§ã§à§Ò§ß§à§ã§ä§î§ð §Ù§Ñ§ë§Ú§ä§ß§à§Ô§à §á§à§Ü§â§í§ä§Ú§ñ. §±§à§Ü§Ñ§Ù§Ñ§ß§à §á§â§Ö§Ú§Þ§å§ë§Ö§ã§ä§Ó§à §Ú§ã§á§à§Ý§î§Ù§à§Ó§Ñ§ß§Ú§ñ §Ú§à§ß§ß§à§Û §Ú§Þ§á§Ý§Ñ§ß§ä§Ñ§è§Ú§Ú §Ü§Ñ§Ü §ã§á§à§ã§à§Ò§Ñ §Õ§à§á§à§Ý§ß§Ú§ä§Ö§Ý§î§ß§à§Û §á§à§Õ§Ô§à§ä§à§Ó§Ü§Ú §á§à§Ó§Ö§â§ç§ß§à§ã§ä§Ú §ß§Ú§Ü§Ö§Ý§Ö§Ó§à§Ô§à §ã§á§Ý§Ñ§Ó§Ñ §á§à§Õ §Ó§Ñ§Ü§å§å§Þ§ß§à-§á§Ý§Ñ§Ù§Þ§Ö§ß§ß§à§Ö §á§à§Ü§â§í§ä§Ú§Ö, §à§Ò§Ö§ã§á§Ö§é§Ú§Ó§Ñ§ð§ë§Ú§Ö §á§à§Ó§í§ê§Ö§ß§Ú§Ö §Ø§Ñ§â§à§ã§ä§à§Û§Ü§à§ã§ä§Ú §á§à§Ó§Ö§â§ç§ß§à§ã§ä§Ú §ã§á§Ý§Ñ§Ó§Ñ. The paper discusses the influence of high-temperature oxidation on composition and structure of vacuum-plasma coating VSDP-11 deposited on TsNK-7P alloy substrate implanted with ytterbium ions. The elements redistribution in the coating after exposition at 850 oC was studied and the interdependence between the elements redistribution and the life cycle of the protective coating was established. The ion implantation benefits resulting in the increase of the alloy surface heat resistance were shown for the additional nickel alloy surface treatment for the purpose of vacuum-plasma coating deposition. %K Aluminide coating %K nickel alloy %K ion implantation %K heat resistance %U http://www.journal.ugatu.ac.ru/index.php/vestnik/article/view/210