USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFA
The process of laser and laser-plasma methods of surface alloying of steel samples is investigated. It si determined that in the absence of cracks the structural state of the doped layer is characterized by the formation of dispersed phases in their uniform distribution, a low density of dislocation...
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Dnipro National University of Railway Transport named after Academician V. Lazaryan
2014-09-01
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Series: | Nauka ta progres transportu |
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Online Access: | http://stp.diit.edu.ua/article/view/9468/24393 |
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doaj-cc5f2bd94ccb45d29bd277d48f18ecef2020-11-25T03:09:22Zeng Dnipro National University of Railway Transport named after Academician V. LazaryanNauka ta progres transportu2307-34892307-66662014-09-0137244248USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFAV. D. Shelyagin0V. Yu. Haskin1A. T. Nikulin2A. V. Siora3A. V. Bernatskiy4Institute of electro-welding named after E. O. Paton NANU, Kiev, UkraineInstitute of electro-welding named after E. O. Paton NANU, Kiev, UkraineInstitute of electro-welding named after E. O. Paton NANU, Kiev, UkraineInstitute of electro-welding named after E. O. Paton NANU, Kiev, UkraineInstitute of electro-welding named after E. O. Paton NANU, Kiev, UkraineThe process of laser and laser-plasma methods of surface alloying of steel samples is investigated. It si determined that in the absence of cracks the structural state of the doped layer is characterized by the formation of dispersed phases in their uniform distribution, a low density of dislocations without any sharp gradients and low level of internal stresses.http://stp.diit.edu.ua/article/view/9468/24393laser alloyinglaser-plasma alloyingstudy of structuredislocationsinternal stresses |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
V. D. Shelyagin V. Yu. Haskin A. T. Nikulin A. V. Siora A. V. Bernatskiy |
spellingShingle |
V. D. Shelyagin V. Yu. Haskin A. T. Nikulin A. V. Siora A. V. Bernatskiy USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFA Nauka ta progres transportu laser alloying laser-plasma alloying study of structure dislocations internal stresses |
author_facet |
V. D. Shelyagin V. Yu. Haskin A. T. Nikulin A. V. Siora A. V. Bernatskiy |
author_sort |
V. D. Shelyagin |
title |
USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFA |
title_short |
USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFA |
title_full |
USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFA |
title_fullStr |
USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFA |
title_full_unstemmed |
USING OF LASER EMISSION FOR ALLOYING SURFACE ALLOYS’ SAMPLES BY TYPE 38XN3MFA |
title_sort |
using of laser emission for alloying surface alloys’ samples by type 38xn3mfa |
publisher |
Dnipro National University of Railway Transport named after Academician V. Lazaryan |
series |
Nauka ta progres transportu |
issn |
2307-3489 2307-6666 |
publishDate |
2014-09-01 |
description |
The process of laser and laser-plasma methods of surface alloying of steel samples is investigated. It si determined that in the absence of cracks the structural state of the doped layer is characterized by the formation of dispersed phases in their uniform distribution, a low density of dislocations without any sharp gradients and low level of internal stresses. |
topic |
laser alloying laser-plasma alloying study of structure dislocations internal stresses |
url |
http://stp.diit.edu.ua/article/view/9468/24393 |
work_keys_str_mv |
AT vdshelyagin usingoflaseremissionforalloyingsurfacealloyssamplesbytype38xn3mfa AT vyuhaskin usingoflaseremissionforalloyingsurfacealloyssamplesbytype38xn3mfa AT atnikulin usingoflaseremissionforalloyingsurfacealloyssamplesbytype38xn3mfa AT avsiora usingoflaseremissionforalloyingsurfacealloyssamplesbytype38xn3mfa AT avbernatskiy usingoflaseremissionforalloyingsurfacealloyssamplesbytype38xn3mfa |
_version_ |
1724663094128410624 |