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Article

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Title

Comparison of selected surface topography parameters after the turning of Inconel 625 obtained by the additive techniques to the parameters of the material made by the traditional techniques

Authors

[ 1 ] Instytut Technologii Mechanicznej, Wydział Budowy Maszyn i Zarządzania, Politechnika Poznańska | [ D ] phd student | [ P ] employee

Scientific discipline (Law 2.0)

[2.9] Mechanical engineering

Year of publication

2018

Published in

Archives of Mechanical Technology and Materials

Journal year: 2018 | Journal volume: vol. 38

Article type

scientific article

Publication language

english

Keywords
EN
  • Additive Manufacturing
  • Inconel 625
  • surface topography
  • Laser Deposition Technology
Abstract

EN The paper presents the possibilities of additive manufacturing of the selected alloy, Inconel, for production of ready-made elements. The results of surface topography examination of the material manufactured with the use of the device 557 RPMI working in the LDT technology (LDT = Laser Deposition Technology) have been compared to those of the cold drawn material. The surface just after manufacturing in these two technologies has been compared to the one after machining by means of variable machining parameters. The surface roughness parameter, Ssk is positive for all the surfaces of the sample made by the traditional technology, regardless of the feed. This means that most of the material is located close to the valleys. The surfaces are characterised by right-hand side asymmetry. In all the surfaces of the sample made by the additive technology, regardless of the feed value, the surface roughness parameter, Ssk, is negative, which means that most of the material is located close to the peaks.

Pages (from - to)

75 - 81

DOI

10.2478/amtm-2018-0013

URL

https://www.sciendo.com/pl/article/10.2478/amtm-2018-0013

License type

CC BY-NC-ND (attribution - noncommercial - no derivatives)

Full text of article

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public

Ministry points / journal

7

Ministry points / journal in years 2017-2021

7

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