Instytut Podstawowych Problemów Techniki
Polskiej Akademii Nauk

Pracownicy

Ewa Wojtiuk

Zakład Mechaniki Doświadczalnej (ZMD)
Pracownia Technologicznych Zastosowań Laserów (PTZL)
doktorantka
telefon: (+48) 22 826 12 81 wewn.: 236
pokój: 034
e-mail:

Ostatnie publikacje
1.  Wojtiuk E., Maździarz M., Stasiak T., Brykała M., Chmielewski M., Włoczewski M., Kosińska A., Zielińska K., Haponova O., Jasiński J., Mościcki T., Theoretical and experimental mechanical properties and thermal conductivity of W-Al-B thin films deposited by magnetron sputtering, JOURNAL OF ALLOYS AND COMPOUNDS, ISSN: 0925-8388, DOI: 10.1016/j.jallcom.2025.185222, Vol.1049, No.185222, pp.1-14, 2025

Streszczenie:
This work compares experimentally measue properties of W-Al-B thin films with mechanical properties, density, and thermal conductivity values calculated using DFT methods. Theoretical modelling was conducted to simulate two WB2 stable structures alloyed with varying amounts of aluminium: α-WB2 (P6/mmm) and ω-WB2 (P63/mmc), as well as α-AlB2 (P6/mmm). Using the HiPIMS-DC magnetron sputtering technique, films with α-WB2 structure and varying aluminium contents were deposited at 400 °C. When layers are composed with x = 1.4% aluminium (where x = at%Al / (at%Al + at%W)), their microstructure changes from amorphous to crystalline columnar. A back transformation to an amorphous microstructure occurs when the amount of aluminium exceeds x = 7.3%. An original method was used for the film density studies, which combined mass measurements and microscopic observation. These measurements were then used to determine the layers' thermal conductivity using the thermoreflectance method. The measured conductivity of the deposited ceramic films range from 3 to 6 W/(mK). Moreover, the obtained films are very hard, e.g. H = 36.1 ± 1.7 GPa for x = 1.4% Al, but exhibit a much lower Young's modulus than the theoretical values. The relatively high H/E⁎ ratio > 0.1 for films with low aluminium content indicates anmore elastic character. Ab-initio calculations showed that, based on the criteria of Cauchy pressure (C12-C44) and Pugh's ratio (B/G), the α-WB2 structure may have a ductile nature in contrast to the other structures. However, the deposited films are rather brittle in nature, resulting from an excess of boron. The fracture toughness measurements show higher KIC values for low aluminium content. They are 3.8 MPa√m for WB2, 2.8 MPa√m for x = 1.4%, and 3 MPa√m for x = 7.3% aluminium

Słowa kluczowe:
thin films, high-power impulse magnetron sputtering, density, thermal conductivity, fracture toughness, stiffness tensor

Afiliacje autorów:
Wojtiuk E. - IPPT PAN
Maździarz M. - IPPT PAN
Stasiak T. - inna afiliacja
Brykała M. - inna afiliacja
Chmielewski M. - Institute of Electronic Materials Technology (PL)
Włoczewski M. - IPPT PAN
Kosińska A. - inna afiliacja
Zielińska K. - IPPT PAN
Haponova O. - IPPT PAN
Jasiński J. - inna afiliacja
Mościcki T. - IPPT PAN
100p.
2.  Psiuk R., Chrzanowska-Giżyńska J., Denis P., Wyszkowska E., Wiśniewska M., Lipińska M., Wojtiuk E., Kurpaska Ł., Smolik J., Mościcki T. P., Microstructural and properties investigations of tantalum-doped tungsten diboride ceramic coatings via HiPIMS and RF magnetron sputtering, ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING, ISSN: 1644-9665, DOI: 10.1007/s43452-024-01050-0, Vol.24, No.239, pp.1-16, 2024

Streszczenie:
In this work, tantalum-doped tungsten boride ceramic coatings were deposited from a single sputtering target with the radio frequency (RF) and high-power impulse magnetron sputtering (HiPIMS) methods. Two-inch torus targets were synthesised from pure elements with the spark plasma sintering (SPS) method with a stoichiometric composition of W1-xTaxB2.5 (x = 0, 0.08, 0.16, 0.24). Films were deposited with RF and HiPIMS power suppliers at process temperatures from RT to 600 °C. The substrate heating and the energy of the ionised material impacting the substrate increase the surface diffusivity of adatoms and are crucial in the deposition process. The results of SEM and XRD investigations clearly show that the addition of tantalum also changes the microstructure of the deposited films. The coatings without tantalum possess a finer microstructure than those with 24% of tantalum. The structure of films is homogeneous along the film thickness and composed mainly of columns with a (0001) preferred orientation. Deposited coatings are composed mainly of P6/mmm α-WB2 structures. The analysis of nanoindentation results allowed us to determine that ceramic coatings obtained with the HiPIMS method possess hardness above 41 GPa and a ratio of hardness to reduced Young modulus above 0.1. The thickness of HiPIMS-deposited films is relatively small: only around 60% of the RF magnetron sputtered coatings even when the average power input was two times higher. However, it has been shown that the RF coatings require heating the substrate above 400 °C to obtain a crystalline structure, while the HiPIMS method allows for a reduction of the substrate temperature to 300 °C.

Słowa kluczowe:
RF magnetron sputtering, HiPIMS magnetron sputtering, Superhard ceramic coatings, Transition metal borides, Deposition temperature

Afiliacje autorów:
Psiuk R. - IPPT PAN
Chrzanowska-Giżyńska J. - inna afiliacja
Denis P. - IPPT PAN
Wyszkowska E. - National Centre for Nuclear Research (PL)
Wiśniewska M. - Łukasiewicz Research Network – Metal Forming Institute (PL)
Lipińska M. - inna afiliacja
Wojtiuk E. - inna afiliacja
Kurpaska Ł. - National Centre for Nuclear Research (PL)
Smolik J. - inna afiliacja
Mościcki T. P. - IPPT PAN
140p.
3.  Wojtiuk E., Radziejewska J., Marczak M., The influence of abrasive finishing conditions on the surface texture of Inconel 939 elements made using the 3D printing LPBF method, PRZEGLĄD SPAWALNICTWA, ISSN: 0033-2364, DOI: 10.26628/simp.wtr.v96.1180.34-40, Vol.96, pp.34-40, 2024

Streszczenie:
The article presents research on finishing treatment applied to components made of Inconel through 3D printing by Laser Powder Bed Fusion method. Vibration-abrasive machining was carried out using a supporting fluid and various shapes of abrasive. The effects of the processing conditions were analysed based on the surface roughness of the samples and mass loss. The obtained collective results were subjected to comparative analysis with the effects of vibratory-abrasive processing without the use of a processing fluid, as presented in the article. The research has shown that using vibration-abrasive processing, it is possible to reduce the height of surface irregularities by more than three times after four hours of treatment. The intensity of processing was the highest in the first hour of the process. The lowest roughness heights Ra = 1.8 μm were obtained using ceramic balls in the presence of a supporting fluid.

Słowa kluczowe:
vibration-abrasive processing, IN939, roughness, additive manufacturing, 3D printing post-processing

Afiliacje autorów:
Wojtiuk E. - inna afiliacja
Radziejewska J. - IPPT PAN
Marczak M. - Institute of Cardiology (PL)

Lista rozdziałów w ostatnich monografiach
1. 
Wojtiuk E., Maździarz M., Mulewska K., Chmielewski M., Hoffman J., Mościcki T., Zaawansowane badania materiałowe, diagnostyczne i obliczeniowe: wybrane osiągnięcia badawcze w IPPT PAN w 2024 roku, rozdział: Struktura i właściwości cienkich pokryć na bazie trójskładnikowych borków wolframu: teoria i eksperyment, Instytut Podstawowych Problemów Techniki Polskiej Akademii Nauk, pp.27-42, 2024

Abstrakty konferencyjne
1.  Wojtiuk E., Mościcki T., Radziejewska J., Mechanical properties and adhesion of W1-xAlxB2+z coatings, FEMS 2025 EUROMAT, 18th European Congress and Exhibition on Advanced Materials and Processes, 2025-09-14/09-18, Granada (ES), pp.1-1, 2025
2.  Psiuk R., Wojtiuk E., Zielińska K., Mościcki T., Optical emission spectroscopy of deposition proces of W-Al-B coatings obtained by HiPIMS/DCMS hybrid technique, FEMS 2025 EUROMAT, 18th European Congress and Exhibition on Advanced Materials and Processes, 2025-09-14/09-18, Granada (ES), pp.1-2, 2025
3.  Psiuk R., Wojtiuk E., Zielińska K., Mościcki T., Influence of Substrate Temperature on Properties of W-Ti-B and W-Ta-B Coatings on Cemented Carbide Tools Deposited by HiPIMS, FAST/SPS, 3rd Conference on FAST/SPS From Research to Industry, 2025-10-20/10-22, Kraków (PL), pp.40-40, 2025
4.  Wojtiuk E.A., Mościcki T., Structure and Properties of W1-xAlxB2-z Coatings, 4th Coatings and Interfaces Online Conference, 2025-05-21/05-23, Zurich (CH), pp.1-1, 2025

Słowa kluczowe:
HiPIMS magnetron sputtering, DC magnetron sputtering, coatings

Afiliacje autorów:
Wojtiuk E.A. - IPPT PAN
Mościcki T. - IPPT PAN
5.  Mościcki T., Maździarz M., Wojtiuk E., Psiuk R., Design of W-Al-B film properties: ab initio calculations and HiPIMS/DCMS combined deposition method, SolMech 2024, 43rd Solid Mechanics Conference, 2024-09-16/09-18, Wrocław (PL), pp.26-26, 2024

Słowa kluczowe:
Ternary transition metal diboride thin films, Mechanical properties, HiPIMS/DC magnetron sputtering, wear resistance and adhesion, DFT Methods

Afiliacje autorów:
Mościcki T. - IPPT PAN
Maździarz M. - IPPT PAN
Wojtiuk E. - IPPT PAN
Psiuk R. - IPPT PAN
6.  Wojtiuk E., Psiuk R., Haponova O., Mościcki T., MECHANICAL PROPERTIES OF W-Ti-B CERAMICS SYNTHETIZED IN DIFFERENT DIMENSIONS SCALES, PTCer, XIV Konferencja Polskiego Towarzystwa Ceramicznego, 2024-06-13/06-16, Zakopane (PL), pp.39-39, 2024

Kategoria A Plus

IPPT PAN

logo ippt            ul. Pawińskiego 5B, 02-106 Warszawa
  +48 22 826 12 81 (centrala)
  +48 22 826 98 15
 

Znajdź nas

mapka
© Instytut Podstawowych Problemów Techniki Polskiej Akademii Nauk 2025