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Review

Table 2.

Properties of Al based metal matrix nano and hybrid composites.

Material Particle size (μm/nm) Vol.%/Wt.% Elastic modulus GPa UTS MPa Yield strength MPa % Elongation Hardness Ref.
Al/SiC + Gr 20 wt.%, 6 wt.% 153 [9]
2024Al alloy/SiCw + SiCp 0.3–0.6 μm, 10–28 μm length 35 nm 20 vol.%, 0–7 vol.% 150–200 450–600 275–550 [10]
Pure Al/WO3p + ABOw 18 μm 0.5–1 μm, 10–30 μm length 3 vol.%, 22 vol.% 96 287.30 250.7 1.66 [12]
Pure Al/ABOw + BPOp 0.5–1 μm, 10–30 μm length 0.2–0.5 μm 20 vol.%, 5 vol.% 104 224 3.5 [13]
Pure Al/ABOw 0.5–1 μm, 10–30 μm length 20 vol.% 107 138 0.48 [13]
PureAl/WO3p + ABOw 3 μm WO3 ABOw [14]
0.5–1 μm, 10–30 μm length 3 vol.%, 22 vol.% 280 1.5
5 vol.%, 20 vol.% 260 1.3
7 vol.%, 18 vol.% 200 1.0
6061 Al/ABOw + SiCp 0.5–1 μm, 10–30 μm length 5 vol.% 293 (at 640° C) 4.6 [16]
186 (at 680 °C) 2.3
251 (at 650°C) 3.5
228 (at 630 °C) 3.2
8–14 μm 15 vol.% 293 (at 30 min. stirring) 4.6
214 (at 20 min. stirring) 2.5
A356/Al2O3 + Al3Zr 0.08–.13 μm 20 wt.% [17]
Without magnetic field assistance 354 278.95 4.85 108 N/mm2
With magnetic field assistance 393.87 339.74 4.72 139.8 N/mm2
AA 2024/Fly ash 23 nm 1–3 wt.% 289–345 Compressive strength 75–114 Hv [25]
LM24/Cu-CNT nano fillers 1–100 μm 0.05–0.1 wt. % 150 4.81 [26]
Al/SiC 25 nm 5 vol.% 90 Hv [30]
10 vol.% 130 Hv
20 vol.% 170 Hv
Al/SiCw + SiCp T6 0.3–0.6 μm, 10–28 length 35 nm 20 vol.%, 2–7 vol.% 124–127 513–620 0.77–0.83 [34]
Al/SiCw 0.3–0.6 μm, 10–28 length 27 vol.% 126 613 0.8 [34]
Pure Al/MWCNTs 0.25–0.75 vol.% 198.5–330.8 126.1–230.5 57–77 Hv [36]
Al/Fe mesh/SiC 25 μm 75.2 214 191 3 [45]
Al/Fe mesh 76.7 168 151 4 [45]

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