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Additive Manufacturing of Polymer Composites (source)
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journal article EST
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journal article ENG
The effect of Zinc Oxide on DLP hybrid composite manufacturability and mechanical-chemical resistance
Baroninš, Janis
;
Antonov, Maksim
;
Abramovskis, Vitalijs
;
Rautmane, Aija
;
Lapkovskis, Vjaceslavs
;
Bockovs, Ivans
;
Goel, Saurav
;
Kumar Thakur, Vijay
;
Shishkin, Andrei
Polymers
2023
/
art. 4679, p. 1−19
https://doi.org/10.3390/polym15244679
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journal article EST
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journal article ENG
Number of records 1, displaying
1 - 1
keyword
101
1.
additive layer manufacturing
2.
additive manufacturing
3.
Additive manufacturing (AM)
4.
additive manufacturing in orthopaedics
5.
additive manufacturing of ship propeller
6.
computational foundations for additive manufacturing
7.
Hybrid additive manufacturing
8.
laser additive manufacturing
9.
laser-based additive manufacturing
10.
metal additive manufacturing
11.
Wire arc additive manufacturing
12.
Wire-arc additive manufacturing
13.
polymer composites
14.
polymer matrix composites
15.
additive
16.
additive color model
17.
additive corrections
18.
additive technology in medicine
19.
additive white noise
20.
Bayesian additive regression tree
21.
component additive method
22.
nano-additive
23.
neural additive model
24.
shapley additive explanation (SHAP)
25.
carbon fibre reinforced polymer
26.
conducting polymer
27.
Conductive polymer
28.
cotton polymer wastes
29.
electrically conductive polymer
30.
electroactive polymer (EAP)
31.
functional polymer
32.
ionic polymer-metal composite (IPMC)
33.
macroporous monolithic polymer layers
34.
molecularly imprinted polymer
35.
molecularly imprinted polymer (MIP)
36.
particle-reinforced polymer composite
37.
Polymer
38.
polymer actuator
39.
polymer blending
40.
polymer blends
41.
polymer chemistry
42.
polymer circularity
43.
polymer composite
44.
polymer concrete
45.
polymer films
46.
polymer membrane
47.
polymer processing
48.
polymer tribology
49.
polymer waste
50.
polymer wastes
51.
polymer with carbon black
52.
polymer-matrix composite
53.
thermally responsive polymer
54.
Al-based composites
55.
aluminum matrix composites
56.
aluminum matrix composites(ZrC+TiC) ceramic reinforcements
57.
bimaterial composites
58.
carbide composites
59.
cementitious composites
60.
cementitious refractory composites
61.
ceramic composites
62.
ceramic metal composites
63.
CNT doped composites
64.
CoCrFeMnNi composites
65.
composites
66.
Cu-composites
67.
duplex oxide–carbide composites
68.
fiber reinforced composites
69.
fiber-reinforced composites
70.
fiber-reinforced composites and injection molding
71.
fire-retardant fiber-reinforced composites
72.
glass-fiber reinforced composites
73.
hemp fiber composites
74.
hybrid composites
75.
interpenetrating phase composites
76.
light-weight composites
77.
light-weight superhard composites
78.
lignin-pla composites
79.
metal matrix composites
80.
metal matrix composites (MMCs)
81.
metallic composites
82.
metal-matrix composites
83.
metal-metal interpenetrating phase composites
84.
MWCNTs/Al–Mg–Sc–Zr composites
85.
nano-composites
86.
N-Composites isolated points
87.
Ni-W composites
88.
particle reinforced composites
89.
particulate composites
90.
powder composites
91.
strain hardening cementitious composites (SHCC)
92.
Zirconia composites
93.
ZrC-based composites
94.
TiB2/Ti composites
95.
TiC/AZ91D composites
96.
TiC/Ti-alloy composites
97.
TiC/TiN Composites
98.
titanium matrix composites
99.
WC-based composites
100.
wood-plastic composites
101.
Y123/ BaCuO2 composites
subject term
1
1.
Baltic Polymer Symposium
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