Effect of Post Heat Treatment on the Microstructure and Microhardness of Friction Stir Processed NiAl Bronze (NAB) Alloy

被引:22
|
作者
Lv, Yuting [1 ]
Wang, Liqiang [1 ]
Xu, Xiaoyan [1 ]
Lu, Weijie [1 ]
机构
[1] Shanghai Jiao Tong Univ, State Key Lab Met Matrix Composites, Shanghai 200240, Peoples R China
来源
METALS | 2015年 / 5卷 / 03期
基金
美国国家科学基金会; 中国博士后科学基金;
关键词
NiAl bronze (NAB); friction stir processing (FSP); heat treatment; micro-hardness; NICKEL-ALUMINUM BRONZE; CHANNEL ANGULAR EXTRUSION; CAVITATION EROSION; MECHANICAL-PROPERTIES; CORROSION; INITIATION; PHASES; HOT;
D O I
10.3390/met5031695
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
NiAl bronze (NAB) alloy is prepared by using friction stir processing (FSP) technique at a tool rotation rate of 1200 rpm and a traverse speed of 150 mm/min. A post heat treatment is performed at the temperature of 675 degrees C. The effect of heat treatment on the microstructure and microhardness is studied. The results show that the microstructure of the FSP NAB alloy consists of high density dislocations, retained phase ( phase) and recrystallized grains. When annealed at 675 degrees C, discontinuous static recrystallization (DSRX) takes place. The content of phase gradually decreases and fine phase is precipitated. After annealing for 2 h, both the microhardness of the FSP sample in the stir zone (SZ) and the difference in hardness between the SZ and base metal decrease due to the reduction of the dislocation density and phase, accompanying recrystallized grain coarsening. With further increasing of the annealing time to 4 h, the aforementioned difference in hardness nearly disappears.
引用
收藏
页码:1695 / 1703
页数:9
相关论文
共 50 条
  • [21] The influence of friction stir processing parameters on microstructure of as-cast NiAl bronze
    Oh-Ishi, K
    McNelley, TR
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2005, 36A (06): : 1575 - 1585
  • [22] The influence of friction stir processing parameters on microstructure of as-cast NiAl bronze
    Keiichiro Oh-Ishi
    Terry R. McNelley
    Metallurgical and Materials Transactions A, 2005, 36 : 1575 - 1585
  • [23] Effects of Heat Transfer on Microhardness and Microstructure of Friction Stir Welded AA 6061 Aluminum Alloy
    Selvamani, S. T.
    Vigneshwar, M.
    Divagar, S.
    INTERNATIONAL JOURNAL OF ENGINEERING RESEARCH IN AFRICA, 2016, 21 : 102 - 109
  • [24] Effect of Ultrasonic Impact on the Microhardness and Microstructure of Friction Stir Welded Aluminum Alloy 2024
    Eliseev, A. A.
    Fortuna, S. V.
    Khimich, M. A.
    RUSSIAN PHYSICS JOURNAL, 2024, 67 (07) : 932 - 939
  • [25] Influence of heat treatment on microstructure and hardness of friction stir processed eutectic silumin
    Khayretdinov, N. F.
    Kabirova, D. B.
    Valeeva, A. Kh.
    Fazlyakhmetov, R. F.
    Imayev, M. F.
    LETTERS ON MATERIALS, 2023, 13 (4S): : 505 - 510
  • [26] Effect of heat treatment on microstructure and microhardness of directionally solidified NiAl-Cr(Mo)-Hf intermetallic alloy
    Xu, CM
    Guo, HT
    Xie, XS
    14TH CONGRESS OF INTERNATIONAL FEDERATION FOR HEAT TREATMENT AND SURFACE ENGINEERING, VOLS 1 and 2, PROCEEDINGS, 2004, : 165 - 168
  • [27] Effect of Heat Treatment on Microstructure and Microhardness of Directionally Solidified NiAl-Cr(Mo)-Hf Intermetallic Alloy
    XU Chun-mei l’\ GUO Jian-ting 2
    材料热处理学报, 2004, (05) : 165 - 168
  • [28] Microstructure, microhardness and corrosion susceptibility of friction stir welded AlMgSiCu alloy
    Dong, Peng
    Sun, Daqian
    Wang, Bing
    Zhang, Yueying
    Li, Hongmei
    MATERIALS & DESIGN, 2014, 54 : 760 - 765
  • [29] Microstructures and hardness of stir zone for friction stir processed and post-processed heat treatment 7B04-O aluminium alloy
    Chen, Y.
    Ding, H.
    Li, J. Z.
    7TH INTERNATIONAL CONFERENCE ON NANOMATERIALS BY SEVERE PLASTIC DEFORMATION, 2017, 194
  • [30] Effect of heat treatment and number of passes on the microstructure and mechanical properties of friction stir processed AZ91C magnesium alloy
    Dadashpour, M.
    Yesildal, R.
    Mostafapour, A.
    Rezazade, V.
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2016, 30 (02) : 667 - 672