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Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes

The urgency of the investigation of finishing and deburring treatment of small parts of radio electronic equipment is justified. It is shown that vibro-abrasive treatment is the most effective method of small parts with hard-to-reach areas deburring and has a number of advantages over other methods...

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Главные авторы: Kolganova, E. N., Колганова, Е. Н., Goncharov, V. M., Гончаров, В. М., Fedorov, A. V., Федоров, А. В.
Формат: Статья
Язык:English
Опубликовано: Elsevier 2020
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Online-ссылка:https://dspace.ncfu.ru/handle/20.500.12258/11235
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spelling ir-20.500.12258-112352025-03-06T14:14:16Z Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes Kolganova, E. N. Колганова, Е. Н. Goncharov, V. M. Гончаров, В. М. Fedorov, A. V. Федоров, А. В. Vibration treatment Burrs Media of organic origin Roughness Microdistortion of the surface Edge rounding The urgency of the investigation of finishing and deburring treatment of small parts of radio electronic equipment is justified. It is shown that vibro-abrasive treatment is the most effective method of small parts with hard-to-reach areas deburring and has a number of advantages over other methods since treatment of the parts of this kind is a complicated and hard-to-solve task due to difficult access to the operating area and bending of burrs inside grooves and holes. The results of theoretical and experimental investigations on the process of deburring during vibration treatment of parts are presented 2020-01-31T12:41:57Z 2020-01-31T12:41:57Z 2019 Статья Kolganova, EN; Goncharov, VM; Fedorov, AV. Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes // MATERIALS TODAY-PROCEEDINGS. - 2019. - Том: 19. - Стр.: 2368-2373. - Часть: 5 http://hdl.handle.net/20.500.12258/11235 en Materials Today: Proceedings application/pdf application/pdf Elsevier
institution СКФУ
collection Репозиторий
language English
topic Vibration treatment
Burrs
Media of organic origin
Roughness
Microdistortion of the surface
Edge rounding
spellingShingle Vibration treatment
Burrs
Media of organic origin
Roughness
Microdistortion of the surface
Edge rounding
Kolganova, E. N.
Колганова, Е. Н.
Goncharov, V. M.
Гончаров, В. М.
Fedorov, A. V.
Федоров, А. В.
Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes
description The urgency of the investigation of finishing and deburring treatment of small parts of radio electronic equipment is justified. It is shown that vibro-abrasive treatment is the most effective method of small parts with hard-to-reach areas deburring and has a number of advantages over other methods since treatment of the parts of this kind is a complicated and hard-to-solve task due to difficult access to the operating area and bending of burrs inside grooves and holes. The results of theoretical and experimental investigations on the process of deburring during vibration treatment of parts are presented
format Статья
author Kolganova, E. N.
Колганова, Е. Н.
Goncharov, V. M.
Гончаров, В. М.
Fedorov, A. V.
Федоров, А. В.
author_facet Kolganova, E. N.
Колганова, Е. Н.
Goncharov, V. M.
Гончаров, В. М.
Fedorov, A. V.
Федоров, А. В.
author_sort Kolganova, E. N.
title Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes
title_short Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes
title_full Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes
title_fullStr Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes
title_full_unstemmed Investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes
title_sort investigation of deburring process at vibro-abrasive treatment of parts having small grooves and holes
publisher Elsevier
publishDate 2020
url https://dspace.ncfu.ru/handle/20.500.12258/11235
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