The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys

Titanium alloys are one of the materials extensively used in the aerospace industry due to its excellent properties of high specific strength and corrosion resistance. On the other hand, they also present problems wherein titanium alloys are extremely difficult materials to machine. In addition, the...

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Main Authors: Wstawska Iwona, Ślimak Krzysztof
Format: Article
Language:English
Published: Sciendo 2016-12-01
Series:Archives of Mechanical Technology and Materials
Subjects:
Online Access:https://doi.org/10.1515/amtm-2016-0003
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spelling doaj-ac4b114e51cc4350a2e49d814aeafac52021-09-06T19:39:53ZengSciendoArchives of Mechanical Technology and Materials2450-94692016-12-01361121710.1515/amtm-2016-0003amtm-2016-0003The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloysWstawska Iwona0Ślimak Krzysztof1Poznan University of Technology, Piotrowo 3 Street, 60-965 Poznan, PolandPoznan University of Technology, Piotrowo 3 Street, 60-965 Poznan, PolandTitanium alloys are one of the materials extensively used in the aerospace industry due to its excellent properties of high specific strength and corrosion resistance. On the other hand, they also present problems wherein titanium alloys are extremely difficult materials to machine. In addition, the cost associated with titanium machining is also high due to lower cutting velocities and shorter tool life. The main objective of this work is a comparison of different cooling techniques during cryogenic machining of titanium alloys. The analysis revealed that applied cooling technique has a significant influence on cutting force and surface roughness (Ra parameter) values. Furthermore, in all cases observed a positive influence of cryogenic machining on selected aspects after turning and milling of titanium alloys. This work can be also the starting point to the further research, related to the analysis of cutting forces and surface roughness during cryogenic machining of titanium alloys.https://doi.org/10.1515/amtm-2016-0003cryogenic machiningforces surface roughnesstitanium alloyscooling techniques
collection DOAJ
language English
format Article
sources DOAJ
author Wstawska Iwona
Ślimak Krzysztof
spellingShingle Wstawska Iwona
Ślimak Krzysztof
The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys
Archives of Mechanical Technology and Materials
cryogenic machining
forces surface roughness
titanium alloys
cooling techniques
author_facet Wstawska Iwona
Ślimak Krzysztof
author_sort Wstawska Iwona
title The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys
title_short The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys
title_full The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys
title_fullStr The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys
title_full_unstemmed The influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys
title_sort influence of cooling techniques on cutting forces and surface roughness during cryogenic machining of titanium alloys
publisher Sciendo
series Archives of Mechanical Technology and Materials
issn 2450-9469
publishDate 2016-12-01
description Titanium alloys are one of the materials extensively used in the aerospace industry due to its excellent properties of high specific strength and corrosion resistance. On the other hand, they also present problems wherein titanium alloys are extremely difficult materials to machine. In addition, the cost associated with titanium machining is also high due to lower cutting velocities and shorter tool life. The main objective of this work is a comparison of different cooling techniques during cryogenic machining of titanium alloys. The analysis revealed that applied cooling technique has a significant influence on cutting force and surface roughness (Ra parameter) values. Furthermore, in all cases observed a positive influence of cryogenic machining on selected aspects after turning and milling of titanium alloys. This work can be also the starting point to the further research, related to the analysis of cutting forces and surface roughness during cryogenic machining of titanium alloys.
topic cryogenic machining
forces surface roughness
titanium alloys
cooling techniques
url https://doi.org/10.1515/amtm-2016-0003
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