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. 2020 Sep 30;6(3):836–879. doi: 10.1016/j.bioactmat.2020.09.013

Table 9.

Mechanical properties of various Zn-based composites.

Composition
& Fabrication
Relative Density (%) Mechanical properties
Ref.
σTYS (MPa) σUTS (MPa) E (%) σCYS (MPa) σUCS (MPa) H (HV)
ZnSPS 99.524 53 ± 18 171 ± 14 43.8 ± 1.3 [91]
Zn-1HASPS 96.503 70 ± 11 158 ± 8 45.7 ± 1.5
Zn-5HASPS 94.925 43 ± 11 109 ± 10 43.6 ± 1.0
Zn-10HASPS 92.995 47 ± 10 74 ± 5 44.3 ± 1.5
ZnHE 98.879 154 ± 11 244 ± 2 45.6 ± 2.0 [305]
Zn-8HAHE 94.480 113 ± 5 169 ± 4 44.7 ± 4.5
Zn-3HAPM 110.56 [310]
ZnSPS 92 ± 1 129 ± 2 36.8 ± 1.4 [311]
Zn-8HASPS 68 ± 7 89 ± 7 34.3 ± 4.5
ZnSPS 81 ± 5 33 ± 2 [312]
Zn-16HASPS 46 ± 3 65 ± 5 24 ± 5
ZnSPS 99.130 54 ± 17 42.9 ± 2.3 [292]
Zn–1MgSPS 99.91 134 ± 16 75.7 ± 9.5
Zn–2MgSPS 100.0 152 ± 11 69.5 ± 3.3
Zn–5MgSPS 100.0 183 ± 27 80.8 ± 9.9
ZnPM 114 ± 5 156 ± 5 35 ± 4 170 ± 6 215 ± 4 [291]
Zn-5MgPM 148 ± 6 183 ± 4 16 ± 2 209 ± 6 256 ± 6
Zn-1MgHE 226.2 300.5 5.8 [294]
Zn–1Mg-1β-TCPHE 249.3 330.1 11.7
Zn–1Mg-0 TCPHE 236 ± 5 315 ± 8 6.7 ± 2 [293]
Zn–1Mg-1 TCPHE 251 ± 7 331 ± 9 11.7 ± 3
Zn–1Mg-3 TCPHE 220 ± 8 308 ± 7 4.5 ± 2
Zn–1Mg-5 TCPHE 195 ± 8 299 ± 9 3.9 ± 3
Zn–2Mg-6SiCPM 90.30 225 96.79 [313]
ZnCC+M 23.4 ± 2.1 51 ± 3.6 40.6 [307]
Zn-10 vol% WCCC+M 116 ± 11 507 ± 65 60.1
ZnHR 36.6 98.9 71.9 34.4 [309]
Zn-3 vol% TiB2HR 70.2 143.8 22.8 63.9
Zn-2FeCast 66 ± 10 92 ± 12 1.4 ± 0.4 47.9 [308]
Zn–2Fe-8 vol% WCCast 50 ± 2 121 ± 6 8.7 ± 2.8 59.3
Zn–2Fe-6 vol% WCHR 92 ± 8 156 ± 6 15.2 ± 0.2
ZnPM 79.29 83.45 27.0 ± 3.7 [314]
Zn-1NDPM 97.872 59.69 73.56 12.1 ± 4.9
Zn-2.5NDPM 91.040 43.39 58.81 8.4 ± 0.15
Zn-0MWCNTsSPS+HR 123 65.7 [315]
Zn-0.5MWCNTsSPS+HR 151 71.7
Zn-1MWCNTsSPS+HR 174 73.0
Zn-1.5MWCNTsSPS+HR 217 80.4
Zn-2MWCNTsSPS+HR 267 87.8
Zn-3MWCNTsSPS+HR 281 4 89.6