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Effect of laser surface texturing and fabrication methods on tribological properties of ti6al4v/hap biocomposites
ID
Sadlik, Julia
(
Author
),
ID
Polajnar, Marko
(
Author
),
ID
Kumar, Rahul
(
Author
),
ID
Kalin, Mitjan
(
Author
),
ID
Kravanja, Gaia
(
Author
),
ID
Hribar, Luka
(
Author
)
URL - Source URL, Visit
https://www.mdpi.com/1996-1944/18/11/2468
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(15,70 MB)
MD5: 5620A2B8216E394318832B4DB28193E6
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Abstract
Bone diseases lead to an increasing demand for implants to treat long bone defects and for load-bearing applications. Osteoporosis care and accidental injuries are major contributors to this rising need. Our research aims to demonstrate innovative material systems and methods for preparing implants that can be used in regenerative medicine. We hypothesize that by combining titanium alloys (Ti6Al4V) with hydroxyapatite (Hap), we can enhance biocompatibility and tribo-mechanical performance, which are critical for the longevity of Ti-based surgical implants. Additionally, we investigate the application of laser surface treatments to expose the underlying porosity, thereby enhancing cell transport and promoting cell growth. In this study, we investigate the effects of two fabrication techniques-Spark Plasma Sintering (SPS) and powder metallurgy (PM)-on the properties of laser-textured Ti64/Hap biocomposites. Our findings demonstrate that the selected processing route significantly influences the microstructure, tribological performance, and surface properties of these materials. An X-ray diffraction (XRD) analysis corroborates our results from incubation studies in simulated body fluids, highlighting the impact of phase transformations during sintering on the chemical properties of Ti-Hap composites. Additionally, while laser surface texturing was found to slightly increase the friction coefficient, it markedly enhanced the wear resistance, particularly for the PM and SPS Ti + 5%Hap composites.
Language:
English
Keywords:
titanium alloy
,
hydroxyapatite
,
laser surface texturing
,
biocomposite
,
friction
,
biomaterial
Work type:
Article
Typology:
1.01 - Original Scientific Article
Organization:
FS - Faculty of Mechanical Engineering
Publication status:
Published
Publication version:
Version of Record
Year:
2025
Number of pages:
27 str.
Numbering:
Vol. 18, issue 11
PID:
20.500.12556/RUL-169498
UDC:
539.92:615.4
ISSN on article:
1996-1944
DOI:
10.3390/ma18112468
COBISS.SI-ID:
237657859
Publication date in RUL:
30.05.2025
Views:
293
Downloads:
60
Metadata:
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Record is a part of a journal
Title:
Materials
Shortened title:
Materials
Publisher:
MDPI
ISSN:
1996-1944
COBISS.SI-ID:
33588485
Licences
License:
CC BY 4.0, Creative Commons Attribution 4.0 International
Link:
http://creativecommons.org/licenses/by/4.0/
Description:
This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.
Secondary language
Language:
Slovenian
Keywords:
titanova zlitina
,
hidroksiapatit
,
lasersko teksturiranje površin
,
biokompozit
,
trenje
,
biomaterial
Projects
Funder:
Other - Other funder or multiple funders
Funding programme:
European union, M-ERA.NET 3
Project number:
C3360-25-452008
Name:
New Generation of Bioactive Laser Textured Ti/Hap Implants
Acronym:
BiLaTex
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