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TiB2/Ti composites (keyword)
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1
journal article
Effect of HBN on wear of AlCrN-coated spark plasma - sintered TiB2/Ti composites at temperatures up to 900°C
Luszcz, Maciej
;
Michalczewski, Remigiusz
;
Kalbarczyk, Marek
;
Osuch-Słomka, Edyta
;
Molenda, Jaroslaw
;
Liu, Le
;
Antonov, Maksim
;
Hussainova, Irina
Quarterly tribologia
2022
/
p. 43-55
https://doi.org/10.5604/01.3001.0015.8756
journal article
2
journal article EST
/
journal article ENG
Sliding wear performance of AlCrN coating on TiB2/Ti composites at high temperatures
Michalczewski, Remigiusz
;
Kalbarczyk, Marek
;
Słomka, Zbigniew
;
Osuch-Słomka, Edyta
;
Łuszcz, Maciej
;
Liu, Le
;
Antonov, Maksim
;
Hussainova, Irina
Materials
2021
/
art. 6771
https://doi.org/10.3390/ma14226771
Journal metrics at Scopus
Article at Scopus
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Article at WOS
journal article EST
/
journal article ENG
3
journal article EST
/
journal article ENG
The wear of PVD coated elements in oscillation motion at high temperature
Michalczewski, Remigiusz
;
Kalbarczyk, Marek
;
Slomka, Zbigniew
;
Liu, Le
;
Antonov, Maksim
;
Hussainova, Irina
Proceedings of the Estonian Academy of Sciences
2021
/
p. 500-507 : ill
https://doi.org/10.3176/proc.2021.4.18
Journal metrics at Scopus
Article at Scopus
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Article at WOS
journal article EST
/
journal article ENG
4
journal article EST
/
journal article ENG
Wear Performance of a Physical Vapour Deposition-Coated, Spark Plasma Sintered TiB2/Ti Composite Lubricated with Externally Introduced hBN at Temperatures up to 900 °C
Michalczewski, Remigiusz
;
Luszcz, Maciej
;
Kalbarczyk, Marek
;
Slomka, Zbigniew
;
Osuch-Slomka, Edyta
;
Molenda, Jaroslaw
;
Liu, Le
;
Antonov, Maksim
;
Hussainova, Irina
;
Rodriguez Ripoll, Manel
Materials
2025
/
art. 5274
https://doi.org/10.3390/ma18235274
journal article EST
/
journal article ENG
Number of records 4, displaying
1 - 4
keyword
73
1.
TiB2/Ti composites
2.
TiC/Ti-alloy composites
3.
Al-12Si/TiB2
4.
TiB2
5.
Al/Ti ratio
6.
diamond–Ti6Al4V composite
7.
effect of Ti and Nb
8.
Ni-Ti heat-activated orthodontic archwires
9.
ZrC-Ti
10.
Ti
11.
Ti(C,N)-Fe-based cermets
12.
Ti(C,N)–Fe-based cermets
13.
Ti(CN)-Fe-based cermets
14.
Ti–35Nb–7Zr–5Ta
15.
Ti-35Nb-7Zr-5Ta alloy
16.
Ti-6Al-4V
17.
Ti–6Al–4V
18.
Ti-6Al-4V alloy
19.
Ti-in-quartz geothermometer
20.
Ti-Nb alloy
21.
Ti-Nb-Zr alloy
22.
Ti-TiBw composite
23.
(Zr,Ti)C solid solution
24.
β-Ti alloy
25.
β-Ti-alloys
26.
Al-based composites
27.
aluminum matrix composites
28.
aluminum matrix composites(ZrC+TiC) ceramic reinforcements
29.
bimaterial composites
30.
carbide composites
31.
cementitious composites
32.
cementitious refractory composites
33.
ceramic composites
34.
ceramic metal composites
35.
CNT doped composites
36.
CoCrFeMnNi composites
37.
composites
38.
Cu-composites
39.
duplex oxide–carbide composites
40.
fiber reinforced composites
41.
fiber-reinforced composites
42.
fiber-reinforced composites and injection molding
43.
fire-retardant fiber-reinforced composites
44.
glass-fiber reinforced composites
45.
hemp fiber composites
46.
hybrid composites
47.
interpenetrating phase composites
48.
light-weight composites
49.
light-weight superhard composites
50.
lignin-pla composites
51.
metal matrix composites
52.
metal matrix composites (MMCs)
53.
metallic composites
54.
metal-matrix composites
55.
metal-metal interpenetrating phase composites
56.
MWCNTs/Al–Mg–Sc–Zr composites
57.
nano-composites
58.
N-Composites isolated points
59.
Ni-W composites
60.
particle reinforced composites
61.
particulate composites
62.
polymer composites
63.
polymer matrix composites
64.
powder composites
65.
strain hardening cementitious composites (SHCC)
66.
Zirconia composites
67.
ZrC-based composites
68.
TiC/AZ91D composites
69.
TiC/TiN Composites
70.
titanium matrix composites
71.
WC-based composites
72.
wood-plastic composites
73.
Y123/ BaCuO2 composites
subject term
2
1.
aldool-tištšenko reaktsioon
2.
TI-Hüpe 2025
author
1
1.
Krivchenko, T.I.
TalTech subject term
1
1.
ti-hüpe
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