%0 Journal Article %T §°§ã§à§Ò§Ö§ß§ß§à§ã§ä§Ú §Ó§í§ã§à§Ü§à§ã§Ü§à§â§à§ã§ä§ß§à§Ô§à §â§Ñ§ã§ä§Ó§à§â§Ö§ß§Ú§ñ §Ø§Ö§Ý§Ö§Ù§à§ç§â§à§Þ§à§ß§Ú§Ü§Ö§Ý§Ö§Ó§à§Ô§à §ã§á§Ý§Ñ§Ó§Ñ §·§¯35§£§´§À §á§â§Ú§Þ§Ö§ß§Ú§ä§Ö§Ý§î§ß§à §Ü §ï§Ý§Ö§Ü§ä§â§à§ç§Ú§Þ§Ú§é§Ö§ã§Ü§à§Û §à§Ò§â§Ñ§Ò§à§ä§Ü§Ö Features of high-speed dissolution of iron-chromium-nickel alloy §·§¯35§£§´§À at electrochemical machining %A §¯. §¡. §¡§Þ§Ú§â§ç§Ñ§ß§à§Ó§Ñ %A §£. §¿. §¤§Ñ§Ý§Ú§Ö§Ó %A §³§Ó§Ö§ä§Ý§Ñ§ß§Ñ §µ§ã§ä§ð§Ø§Ñ§ß§Ú§ß§Ñ %J Vestnik UGATU %D 2013 %I Ufa State Aviation Technical University %X §³§á§Ý§Ñ§Ó §ß§Ñ §Ø§Ö§Ý§Ö§Ù§à§ß§Ú§Ü§Ö§Ý§Ö§Ó§à§Û §à§ã§ß§à§Ó§Ö §·§¯35§£§´§À §ñ§Ó§Ý§ñ§Ö§ä§ã§ñ §á§Ö§â§ã§á§Ö§Ü§ä§Ú§Ó§ß§í§Þ §Þ§Ñ§ä§Ö§â§Ú§Ñ§Ý§à§Þ §Ó §á§â§à§Ú§Ù§Ó§à§Õ§ã§ä§Ó§Ö §â§Ñ§Ò§à§é§Ú§ç §Ý§à§á§Ñ§ä§à§Ü §Ô§Ñ§Ù§à§ä§å§â§Ò§Ú§ß§ß§í§ç §Ú §Õ§â§å§Ô§Ú§ç §Õ§Ó§Ú§Ô§Ñ§ä§Ö§Ý§Ö§Û, §Ü§à§Þ§á§â§Ö§ã§ã§à§â§ß§í§ç §Ý§à§á§Ñ§ä§à§Ü [1]. §°§Ò§â§Ñ§Ò§à§ä§Ü§Ñ §Õ§Ö§ä§Ñ§Ý§Ö§Û §Ó§í§ã§à§Ü§à§Û §ä§à§é§ß§à§ã§ä§Ú §Ú §ã§Ý§à§Ø§ß§à§Û §Ü§à§ß§æ§Ú§Ô§å§â§Ñ§è§Ú§Ú §Ú§Ù §Õ§Ñ§ß§ß§à§Ô§à §ã§á§Ý§Ñ§Ó§Ñ §Þ§Ö§ç§Ñ§ß§Ú§é§Ö§ã§Ü§Ú§Þ§Ú §Þ§Ö§ä§à§Õ§Ñ§Þ§Ú §Ù§Ñ§ä§â§å§Õ§ß§Ö§ß§Ñ. §£ §Ü§Ñ§é§Ö§ã§ä§Ó§Ö §Ñ§Ý§î§ä§Ö§â§ß§Ñ§ä§Ú§Ó§ß§à§Ô§à §Þ§Ö§ä§à§Õ§Ñ §à§Ò§â§Ñ§Ò§à§ä§Ü§Ú §á§â§Ö§Õ§Ý§Ñ§Ô§Ñ§Ö§ä§ã§ñ §ï§Ý§Ö§Ü§ä§â§à§ç§Ú§Þ§Ú§é§Ö§ã§Ü§Ñ§ñ §à§Ò§â§Ñ§Ò§à§ä§Ü§Ñ. §ª§ã§ã§Ý§Ö§Õ§à§Ó§Ñ§Ý§Ñ§ã§î §ï§Ý§Ö§Ü§ä§â§à§ç§Ú§Þ§Ú§é§Ö§ã§Ü§Ñ§ñ §à§Ò§â§Ñ§Ò§Ñ§ä§í§Ó§Ñ§Ö§Þ§à§ã§ä§î §ã§á§Ý§Ñ§Ó§Ñ §·§¯35§£§´§À §ß§Ñ §Ø§Ö§Ý§Ö§Ù§à§ß§Ú§Ü§Ö§Ý§Ö§Ó§à§Û §à§ã§ß§à§Ó§Ö. §±§â§Ú §â§Ñ§Ù§â§Ñ§Ò§à§ä§Ü§Ö §ä§Ö§ç§ß§à§Ý§à§Ô§Ú§é§Ö§ã§Ü§à§Ô§à §á§â§à§è§Ö§ã§ã§Ñ §ß§Ö§à§Ò§ç§à§Õ§Ú§Þ§à §á§à§Õ§à§Ò§â§Ñ§ä§î §ï§Ý§Ö§Ü§ä§â§à§Ý§Ú§ä, §à§Ò§Ö§ã§á§Ö§é§Ú§Ó§Ñ§ð§ë§Ú§Û §Ó§í§ã§à§Ü§å§ð §á§â§à§Ú§Ù§Ó§à§Õ§Ú§ä§Ö§Ý§î§ß§à§ã§ä§î, §Ü§Ñ§é§Ö§ã§ä§Ó§à §Ú §ä§à§é§ß§à§ã§ä§î §à§Ò§â§Ñ§Ò§à§ä§Ü§Ú. §¥§Ý§ñ §ï§ä§à§Ô§à §Ú§ã§ã§Ý§Ö§Õ§à§Ó§Ñ§Ý§Ñ§ã§î §ï§Ý§Ö§Ü§ä§â§à§ç§Ú§Þ§Ú§é§Ö§ã§Ü§Ñ§ñ §à§Ò§â§Ñ§Ò§Ñ§ä§í§Ó§Ñ§Ö§Þ§à§ã§ä§î §Ó §ï§Ý§Ö§Ü§ä§â§à§Ý§Ú§ä§Ñ§ç §â§Ñ§Ù§ß§à§Û §á§â§Ú§â§à§Õ§í (8%, 10%, 15% NaNO3, §Ó §Ü§à§Þ§Ò§Ú§ß§Ú§â§à§Ó§Ñ§ß§ß§í§ç §ï§Ý§Ö§Ü§ä§â§à§Ý§Ú§ä§Ñ§ç §ß§Ñ §à§ã§ß§à§Ó§Ö 8%NaNO3 §ã §Õ§à§Ò§Ñ§Ó§Ü§Ñ§Þ§Ú 1%, 2% , 3% §Ú 5% NaCl) The alloy §·§¯35§£§´§À is a perspective material in production of working blades of gas-turbine and other engines, compressor blades. Machining of details of high precision and a difficult configuration from this alloy is complicated by mechanical methods. Electrochemical machining is offered as an alternative processing method. The electrochemical workability of iron-chromium-nickel based alloy §·§¯35§£§´§À was investigated. When designing technological process it is necessary to pick up an electrolyte providing high efficiency, quality and accuracy of processing. For this purpose the electrochemical workability in electrolytes of the different nature (8 %, 10 %, 15 % of NaNO3, in the combined 8%NaNO3 based electrolytes with additives of 1 %, 2 %, 3 % and 5 % of NaCl) was investigated %K Electrochemical machining %K alloy §·§¯35§£§´§À %K electrolyte %K potentiostatic current-voltage curve %K output ECM parameters %K productivity %K current efficiency %K selectivity coefficient %K height of microroughnesses %U http://www.journal.ugatu.ac.ru/index.php/vestnik/article/view/211