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Selection of parameters for laser surface texturing of titanium alloys

Data publikacji: 20.12.2018

Czasopismo Techniczne, 2018, Volume 12 Year 2018 (115), s. 167 - 172

https://doi.org/10.4467/2353737XCT.18.189.9677

Autorzy

,
Monika Krzywicka
Faculty of Production Engineering, University of Life Sciences in Lublin
Wszystkie publikacje autora →
,
Szymon Tofil
Centre for Laser Technologies of Metals, Faculty of Mechatronics and Machine Design, Kielce University of Technology
Wszystkie publikacje autora →
Krzysztof Pałka
Department of Materials Engineering, Faculty of Mechanical Engineering, Lublin University of Technology
Wszystkie publikacje autora →

Tytuły

Selection of parameters for laser surface texturing of titanium alloys

Abstrakt

This paper shows a parameters selection method providing an ablative laser treatment removal of materials. A laser for generating laser beams of ultraviolet light in picosecond pulses at a frequency to 400 kHz was used in the experiment. The quality of the marks was examined by scanning electron microscopy. On the basis of the analysis, it is recommended to conduct micromachining at a frequency of 100 kHz and exposure times within the range of 62.5 ms to 125 ms.

Bibliografia

[1]    Crisan N., Trunfio A.M., Stoica G., Bajenescu T., Gheorghiu H., Tribological behawior of new titanium alloys – a comparative study, Applied Mechanics and Materials, Vol. 528, 2014, 19–24.

[2]    Majkowska B., Jażdżewska M., Miotke D., Wołowiec E., Zieliński A., Evaluation of wear resistance of Ti alloys used for elements friction of knee endoprosthesis, Solid State Phenomena, Vol. 225, 2014, 123–130.

[3]    Cunha A., Serro A.P., Oliveira V., Almeida A., Vilar R., Durrieu M.Ch., Wetting behaviour of femtosecond laser textured Ti-6Al-4V surfaces, Applied Surface Science, Vol. 265, 2013, 688–696.

[4]    Qin L., Lin P., Zhang Y., Dong G., Zeng Q., Influence of surface wettability on the tribological properties of laser textured Co-Cr-Mo alloy in aqueous bovine serum albumin solution, Applied Surface Science, Vol. 268, 2013, 79–86.

[5]    Tianchang H., Litian H., Qi D., Effective solution for the tribological problems of Ti-6Al-4V: Combination of laser surface texturing and solid lubricant film, Surfa-ce&Coatings Technology, Vol. 206, 2012, 5060–5066.

[6]    Ramos­Saenz C.R., Sundaram P.A., Diffoot­Carlo N., Tribological properties of Ti-based alloys in a simulated bone-implant interface with Ringer’s solution at fretting contacts, Journal of the Mechanical Behavior of Biomedical Materials, Vol. 3, 2010, 549–558.

[7]  Mirhosseini N., Crouse P.L., Schmidth M.J.J., Lia L., Garrod D., Laser surface micro-texturing of Ti-6Al-4V substrates for improved cell integration, Applied Surface Science, Vol. 19, 2007, 7738–7743.

[8]    Antoszewski B., Radek N., Tofil Sz., Bronček J., Dobór parametrów laserowej mikroobróbki powierzchniowej elementów panewek brązowych, Przegląd Elektrotechniczny, Vol. 1, 2017, 41–44.

[9]    Antoszewski B., Warstwy powierzchniowe z teksturą – kształtowanie wybranymi tech-nologiami wiązkowymi oraz właściwości tribologiczne, Kielce, Wydawnictwo Politechniki Świętokrzyskiej, 2010.

[10]Antoszewski B., Sęk P., Influence of laser beam intensity on geometry parameters of a single surface texture element, Archives of Metallurgy and Materials, Vol. 3B, 2015, 2215–2219.

Informacje

Informacje: Czasopismo Techniczne, 2018, Volume 12 Year 2018 (115), s. 167 - 172

Typ artykułu: Oryginalny artykuł naukowy

Tytuły:

Polski:

Selection of parameters for laser surface texturing of titanium alloys

Angielski:

Selection of parameters for laser surface texturing of titanium alloys

Autorzy

Faculty of Production Engineering, University of Life Sciences in Lublin

Centre for Laser Technologies of Metals, Faculty of Mechatronics and Machine Design, Kielce University of Technology

Department of Materials Engineering, Faculty of Mechanical Engineering, Lublin University of Technology

Publikacja: 20.12.2018

Status artykułu: Otwarte __T_UNLOCK

Licencja: Żadna

Udział procentowy autorów:

Monika Krzywicka (Autor) - 33%
Szymon Tofil (Autor) - 33%
Krzysztof Pałka (Autor) - 34%

Korekty artykułu:

-

Języki publikacji:

Angielski