基于增强相构型设计的石墨烯/Cu复合材料研究进展
赵乃勤, 郭斯源, 张翔, 何春年, 师春生

Progress on Graphene/Copper Composites Focusing on Reinforcement Configuration Design: A Review
ZHAO Naiqin, GUO Siyuan, ZHANG Xiang, HE Chunnian, SHI Chunsheng
表1 不同石墨烯分布构型/Cu复合材料的力学性能[18,20~24,27,29~31,33,38~43,57]
Table 1 Mechanical properties of graphene/Cu composites with different configurations[18,20-24,27,29-31,33,38-43,57]
DistributionPreparation methodStrength ofTensileRef.
configurationcomposite materialelongation
MPa%
HomogenousRGO modified by Ag + balling milling + HPSRe: 33223.8[20]
distributionRm: 478
RGO modified by Cu/Ni + SPSRe(Cu): 16422[22]
Re(Ni): 18121
RGO modified by Ni + wet mixing + SPSRe: 26812[21]
Rm: 320
Gr/Cu modified by PVA + wet mixing + SPSRe: 1728[18]
Rm: 187
Cu modified by CTAB + SPSRm: 21218[23]
Flake Cu modified by CTAB + SPSRe: 17123[24]
Rm: 233
Molecular-level mixing + SPSRm: 33514[27]
In situ grown Gr + HPSRe: 14437[29]
Rm: 274
In situ grown graphene-like nanosheet + SPS + rollingRm: 41012[30]
In situ grown Gr + SPS + rollingRe: 3933.7[31]
Rm: 477
NetworkIn situ grown discontinuous 3D Gr-like network + SPSRe: 30129[40]
distributionRm: 318
In situ grown 3D Gr network + HPSRe: 29022[41]
Rm: 308
In situ grown 3D Gr network + HPS + rollingRe: 29225.4[42]
Rm: 319
In situ grown 3D Gr network + rolling + sinteringRe: 28116.5[43]
Rm: 354
LaminateBioinspired strategy + HPSRe: 23326[33]
distributionRm: 308
Flaky powder metallurgy + rollingRe: 55710.5[57]
Rm: 705
In situ grown of high content GNPs + HPS + rollingRe: 25514[39]
Rm: 274
In situ grown Gr + flaky powder metallurgy + HPSRe: 20032.3[38]
Rm: 378