Overcoming strength-ductility trade-off by building a micro-nano laminated structure based on an ultralow amount of single-dispersed carbon nanotubes

被引:14
|
作者
Ding, Hao [1 ]
Cui, Xiping [1 ,2 ]
Zhang, Yuanyuan [1 ]
Wang, Zhiqi [1 ]
Gao, Naonao [1 ]
Zhang, Taiquan [1 ]
Luo, Jiawei [1 ]
Zhai, Xiangxin [1 ]
Chen, Junfeng [3 ]
Geng, Lin [1 ]
Huang, Lujun [1 ]
机构
[1] Harbin Inst Technol, Sch Mat Sci & Engn, Harbin 150001, Peoples R China
[2] Harbin Inst Technol, Ctr Anal Measurement & Comp, Harbin 150001, Peoples R China
[3] Fuzhou Univ, Sch Mat Sci & Engn, Fuzhou 350116, Peoples R China
关键词
Titanium matrix composites; Carbon nanotubes; Laminated structure; In-situ characterization; Strain delocalization; Fracture characteristic; METAL-MATRIX COMPOSITES; REINFORCED-TITANIUM COMPOSITES; MECHANICAL-PROPERTIES; POWDER-METALLURGY; LOAD-TRANSFER; LOW-TEMPERATURE; MICROSTRUCTURE; EFFICIENCY; SLIP; LOCALIZATION;
D O I
10.1016/j.ijplas.2023.103805
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
CNTs/Ti composites (Carbon nanotube reinforced titanium matrix composites) with a novel micro-nano laminated structure consisting of alternating CNTs nanolayers and Ti microlayers were successfully prepared by electrophoretic deposition combined with spark plasma sintering and temperature-controlled rolling. The CNTs/Ti composites exhibited a simultaneous enhancement in both strength and ductility compared to pure Ti fabricated by the same methods, despite the addition of CNTs being an ultra-low 0.02 weight percent (wt.%). The improvement in strength was attributed to (i) the high strengthening efficiency of individually dispersed, structurally intact CNTs and (ii) Heterogeneous deformation-induced (HDI) strengthening resulting from the heterogeneous deformation between soft Ti microlayers and hard CNTs nanolayers. Furthermore, the HDI hardening induced by the micro-nano laminated structure led to extra work hardening, enhancing the uniform deformability of CNTs/Ti composites. Consequently, strain localization was suppressed, as observed by in-situ tensile experiments, thereby preventing the initiation of interfacial. Additionally, interfacial crack propagation was significantly delayed due to CNTs bridging and crack tip blunting by ductile Ti microlayers, thereby promoting the total elongation to failure. Moreover, a progressive fracture process consisting of three stages was proposed, based on three-dimensional visualization and quantitative analysis of crack volumes. This provided a new strategy for overcoming the strength-ductility trade-off of traditional metal (Ti, Al, Fe, Ni, etc.) matrix composites through the reasonable design of a hierarchical architecture based on an ultra-low amount of high-quality nanoscaled reinforcements.
引用
收藏
页数:17
相关论文
共 10 条
  • [1] Harmony of Self-Similarity: Overcoming the Strength-Ductility Trade-Off Through Harmonic Structure
    Beygelzimer, Yan
    Orlov, Dmytro
    ADVANCED ENGINEERING MATERIALS, 2024, 26 (21)
  • [2] Evading the strength and ductility trade-off dilemma in titanium matrix composites through designing bimodal grains and micro-nano reinforcements
    Chen, Jiajing
    Han, Yuanfei
    Li, Shaopeng
    Wei, Zichao
    Le, Jianwen
    Shi, Huigang
    Huang, Guangfa
    Lu, Weijie
    Zhang, Di
    SCRIPTA MATERIALIA, 2023, 235
  • [3] Overcoming Strength-Ductility Trade-Off at Cryogenic Temperature of Low Carbon Low Alloy Steel via Controlling Retained Austenite Stability
    Wang, Xuelin
    Xie, Zhenjia
    Shang, Chengjia
    Han, Gang
    METALS, 2021, 11 (01) : 1 - 8
  • [4] Achieving strength-ductility synergy in graphene nanoplatelets/Mg-14Li-1Al composites through constructing micro-nano laminated structure
    Feng, Xiaoyan
    Chen, Yujie
    Wu, Ruizhi
    Yu, Zhe
    Ma, Xiaochun
    Zhang, Hui
    Hou, Legan
    Wang, Jun
    Liu, Wenbin
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2025, 230 : 244 - 257
  • [5] Overcoming the strength-ductility trade-off via a decomposition-induced dual-phase microstructure in a Ti-Nb-based alloy
    Gong, D. L.
    Li, D.
    Zhang, Y. X.
    Chen, K. Y.
    Lu, C. Q.
    Wang, W. J.
    Zhao, Z. B.
    Liu, Y. J.
    Wang, H. L.
    Yang, R.
    Hao, Y. L.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2025, 926
  • [6] A new synergy to overcome the strength-ductility trade-off dilemma in Al-Si-Cu alloy by micro-nano-particle complex clusters
    Zhang, Dongqing
    Li, Daoxiu
    Ren, Lei
    Zhao, Kai
    Zhao, Ziyuan
    Yan, Xirui
    Liu, Guiliang
    Cha, Wenhao
    Liu, Sida
    Liu, Xiangfa
    MATERIALS & DESIGN, 2023, 230
  • [7] Dual-phase nano-glass-hydrides overcome the strength-ductility trade-off and magnetocaloric bottlenecks of rare earth based amorphous alloys
    Shao, Liliang
    Luo, Qiang
    Zhang, Mingjie
    Xue, Lin
    Cui, Jingxian
    Yang, Qianzi
    Ke, Haibo
    Zhang, Yao
    Shen, Baolong
    Wang, Weihua
    NATURE COMMUNICATIONS, 2024, 15 (01)
  • [8] Multi-material laser powder bed fusion additive manufacturing of dual-phase laminated heterostructure of Cantor high-entropy alloy and Martensitic steel for overcoming strength-ductility trade-off
    Huang, Guoqing
    Li, Bo
    Zhang, Jianrui
    Xuan, Fuzhen
    ADDITIVE MANUFACTURING, 2025, 97
  • [9] Overcoming the strength-ductility trade-off in Fe40Mn40Co10Cr10 high-entropy alloy via nitrogen-doping and hetero-structure design
    Feng, Hao
    Wu, Minghui
    Zhang, Kaiyi
    Li, Huabing
    Zhu, Hongchun
    Zhang, Shucai
    Jiang, Zhouhua
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 1003
  • [10] Overcoming high-temperature strength-ductility trade-off by combination deformation twinning of C11b and D022 superlattices in a Ni-Cr-W/Mo-based superalloy
    Li, Xiaolin
    He, Yi
    Liu, Linxi
    Gao, Xiangyu
    Hua, Ke
    Wang, Haifeng
    SCRIPTA MATERIALIA, 2022, 220