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刘马宝

教授 博士生导师 硕士生导师

  • 学历: 博士研究生毕业
  • 学位: 博士

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titanium matrix composites reinforced with graphene nanoplatelets

发布时间:2025-04-30
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发布时间:
2025-04-30
论文名称:
titanium matrix composites reinforced with graphene nanoplatelets
发表刊物:
Materials Science & Engineering A
摘要:
In this study, graphene nanoplatelets reinforced titanium matrix (GNPs/CT20) composites with adjustable performance were fabricated via 3D vibration milling and spark plasma sintering. With the progressive increase of GNPs, a quasi-continuous 3D reinforcement (TiC-GNPs-TiC) network was established and a peculiar phe- nomenon is observed that the ductility of GNPs/CT20 composites trends in hump type while the strength in- creases monotonically. The first crest of the humping ductility for GNPs/CT20 composites was attributed to the fine-grained CT20 matrix contributed by GNPs and in-situ generated TiC. Subsequently, the increasing TiC with discrete distribution dominated the tensile ductility behaviour which showed as the valley of humping ductility. Further additions of GNPs led to the network distribution of TiC-GNPs-TiC, which contributed to a relatively uniform deformation and the near equiaxed fine-grained microstructure gradually replacing the original Wid- manst¨atten microstructure, thus promoting the second crest of the humping ductility. Finally, lots of TiC-GNPs- TiC further improved strength but inevitably reduced ductility for their serious agglomeration. This study focuses on the strengthening and toughening mechanisms of the quasi-continuous 3D TiC-GNPs-TiC network in titanium matrix reinforced by GNPs (TMCGs) and provides new insights into the design and fabrication of TMCGs with excellent strength-ductility.
合写作者:
Zhang Wei; Zhou Shiqi; Ren Weijia; Zhou Qihang; Wei Jiarui; Liu Mabao;
卷号:
861
页面范围:
144386
是否译文:
发表时间:
2022-11-24