Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditions

The most commonly used technology among the additive manufacturing is Direct Metal Laser Sintering (DMLS). This process is based on selective laser sintering (SLS). The method gained its popularity due to the possibility of producing metal parts of any geometry, which would be difficult or impossibl...

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Main Authors: Karolewska Karolina, Ligaj Bogdan
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/39/matecconf_mse2019_08010.pdf
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spelling doaj-ef855f34912f4a8daec86697b49d5ff22021-04-02T15:09:12ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012900801010.1051/matecconf/201929008010matecconf_mse2019_08010Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditionsKarolewska Karolina0Ligaj Bogdan1UTP University of Science and Technology in Bydgoszcz, Faculty of Mechanical EngineeringUTP University of Science and Technology in Bydgoszcz, Faculty of Mechanical EngineeringThe most commonly used technology among the additive manufacturing is Direct Metal Laser Sintering (DMLS). This process is based on selective laser sintering (SLS). The method gained its popularity due to the possibility of producing metal parts of any geometry, which would be difficult or impossible to obtain by the use of conventional manufacturing techniques. Materials used in the elements manufacturing process are: titanium alloys (e.g. Ti6Al4V), aluminium alloy AlSi10Mg, etc. Elements printed from Ti6Al4V titanium alloy find their application in many industries. Details produced by additive technology are often used in medicine as skeletal, and dental implants. Another example of the DMLS elements use is the aerospace industry. In this area, the additive manufacturing technology produces, i.a. parts of turbines. In addition to the aerospace and medical industries, DMLS technology is also used in motorsport for exhaust pipes or the gearbox parts. The research objects are samples for static tests. These samples were made of Ti6Al4V alloy by the DMLS method and the rolling method from a drawn rod. The aim of the paper is the mechanical properties comparative analysis of the Ti6Al4V alloy produced by the DMLS method under static loading conditions and microstructure analysis of this material.https://www.matec-conferences.org/articles/matecconf/pdf/2019/39/matecconf_mse2019_08010.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Karolewska Karolina
Ligaj Bogdan
spellingShingle Karolewska Karolina
Ligaj Bogdan
Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditions
MATEC Web of Conferences
author_facet Karolewska Karolina
Ligaj Bogdan
author_sort Karolewska Karolina
title Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditions
title_short Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditions
title_full Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditions
title_fullStr Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditions
title_full_unstemmed Mechanical properties comparison of Ti6Al4V produced by different technologies under static load conditions
title_sort mechanical properties comparison of ti6al4v produced by different technologies under static load conditions
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description The most commonly used technology among the additive manufacturing is Direct Metal Laser Sintering (DMLS). This process is based on selective laser sintering (SLS). The method gained its popularity due to the possibility of producing metal parts of any geometry, which would be difficult or impossible to obtain by the use of conventional manufacturing techniques. Materials used in the elements manufacturing process are: titanium alloys (e.g. Ti6Al4V), aluminium alloy AlSi10Mg, etc. Elements printed from Ti6Al4V titanium alloy find their application in many industries. Details produced by additive technology are often used in medicine as skeletal, and dental implants. Another example of the DMLS elements use is the aerospace industry. In this area, the additive manufacturing technology produces, i.a. parts of turbines. In addition to the aerospace and medical industries, DMLS technology is also used in motorsport for exhaust pipes or the gearbox parts. The research objects are samples for static tests. These samples were made of Ti6Al4V alloy by the DMLS method and the rolling method from a drawn rod. The aim of the paper is the mechanical properties comparative analysis of the Ti6Al4V alloy produced by the DMLS method under static loading conditions and microstructure analysis of this material.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/39/matecconf_mse2019_08010.pdf
work_keys_str_mv AT karolewskakarolina mechanicalpropertiescomparisonofti6al4vproducedbydifferenttechnologiesunderstaticloadconditions
AT ligajbogdan mechanicalpropertiescomparisonofti6al4vproducedbydifferenttechnologiesunderstaticloadconditions
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