4.7 Article

Improved mechanical properties of W-Zr-B coatings deposited by hybrid RF magnetron - PLD method

期刊

APPLIED SURFACE SCIENCE
卷 570, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.apsusc.2021.151239

关键词

Superhard tungsten borides; Hybrid magnetron sputtering - pulsed laser deposition; Nanopillar compression

资金

  1. National Science Centre, Poland [2017/25/B/ST8/01789]

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Novel W-Zr-B coatings were developed by a hybrid process, and the influence of laser power density on the structure and mechanical properties of the deposited films was studied. Addition of zirconium changed the structure of the films from columnar to amorphous.
In this work, novel W-Zr-B coatings were developed by a hybrid process combining pulsed laser deposited ZrB2 and radio frequency magnetron sputtered W2B5. The influence of the laser power density on the structure and mechanical properties of the deposited films was studied. Addition of zirconium causes a change in the structure of the deposited films from columnar to mainly amorphous. The nanoindentation tests and compression of nanopillars showed that doped W-Zr-B layers are still super-hard and incompressible in comparison to WB2 films without doping, but they change their behaviour from brittle to ductile. Films obtained with a fluence of 1.06 J/cm(2) are superhard (H = 40 +/- 4 GPa) and incompressible (12 +/- 1 GPa), but possess a relatively low Young's modulus (E = 330 +/- 32 GPa) and a high elastic recovery (We = 0.9). Further increase in the fluence causes films to consist of deeply embedded fragments of laser ablated ZrB2 target in the deposited layer. Taking into account that the particles are made of ZrB2 which possess extraordinary thermal properties, and the matrix is made of W-Zr-B, a super-hard material, such a composite can also be interesting for industrial applications.

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