Effect of Nano CeO2 Addition on the Microstructure and Properties of a Cu-Al-Ni Shape Memory Alloy

被引:0
|
作者
Abhishek Pandey
Ashish Kumar Jain
Shahadat Hussain
V. Sampath
Rupa Dasgupta
机构
[1] CSIR-Advanced Materials Processes and Research Institute,Department of Materials Design and Processing
[2] Bhopal,Department of Metallurgical and Materials Engineering
[3] IIT Madras,undefined
关键词
Differential Scanning Calorimetry; CeO2; Shape Memory Alloy; Transformation Temperature; Shape Memory Effect;
D O I
暂无
中图分类号
学科分类号
摘要
This article deals with the effect of adding nano CeO2 to act as a grain pinner/refiner to a known Cu-Al-Ni shape memory alloy. Elements were taken in a predefined ratio to prepare 300 g alloy per batch and melted in an induction furnace. Casting was followed by homogenization at 1173 K (900 °C) and rolling to make sheets of 0.5-mm thickness. Further, samples were characterized for microstructure using optical and electron microscope, hardness, and different phase studies by X-ray and transformation temperatures by differential scanning calorimetry. X-ray peak broadenings and changes were investigated to estimate the crystallite size, lattice strain, and phase changes due to different processing steps. A nearly uniform distribution of CeO2 and better martensitic structure were observed with increasing CeO2. The addition of CeO2 also shows a visible effect on the transformation temperature and phase formation.
引用
收藏
页码:2205 / 2210
页数:5
相关论文
共 50 条
  • [41] Characterization of the superelastic effect in Cu-Al-Ni shape memory a
    Ibarra, A
    Rodríguez, PP
    Nó, ML
    San Juan, J
    SMST-2003: PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON SHAPE MEMORY AND SUPERELASTIC TECHNOLOGIES, 2004, : 183 - 190
  • [42] Initial stages of γ2 precipitation in an aged Cu-Al-Ni shape memory alloy
    Acad of Sciences of the Czech, Republic, Praha, Czech Republic
    Mater Sci Eng A Struct Mater Prop Microstruct Process, 2 (166-174):
  • [43] Enhancing the life cycle behaviour of Cu-Al-Ni shape memory alloy bimorph by Mn addition
    Akash, K.
    Prabu, S. S. Mani
    Gustmann, Tobias
    Jayachandran, S.
    Pauly, Simon
    Palani, I. A.
    MATERIALS LETTERS, 2018, 226 : 55 - 58
  • [44] The Influence of Heat Treatment on Microstructure and Phase Transformation Temperatures of Cu-Al-Ni Shape Memory Alloy
    Ivanic, I.
    Kozuh, S.
    Grguric, T. Holjevac
    Kosec, B.
    Gojic, M.
    KEMIJA U INDUSTRIJI-JOURNAL OF CHEMISTS AND CHEMICAL ENGINEERS, 2019, 68 (3-4): : 111 - 118
  • [45] Effect of Ta Additions on the Microstructure, Damping, and Shape Memory Behaviour of Prealloyed Cu-Al-Ni Shape Memory Alloys
    Saud, Safaa N.
    Hamzah, E.
    Bakhsheshi-Rad, H. R.
    Abubakar, T.
    SCANNING, 2017,
  • [46] Continuously cast Cu-Al-Ni shape memory alloy - Properties in as-cast condition
    Lojen, G.
    Gojic, M.
    Anzel, I.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2013, 580 : 497 - 505
  • [47] Effect of Co additions on the damping properties of Cu-Al-Ni shape memory alloys
    Chang, Shih-Hang
    Liao, Bo-Siang
    Gholami-Kermanshahi, Mozhgan
    JOURNAL OF ALLOYS AND COMPOUNDS, 2020, 847
  • [48] Grain ejection associated with thermocycling of Cu-Al-Ni shape memory alloy
    Pereira, Elaine Cristina
    Mathlakova, Lioudmila Aleksandrovna
    da Silva Figueiredo, Andre Ben-Hur
    Lima, Eduardo Sousa
    Paula, Andersan dos Santos
    Monteiro, Sergio Neves
    MATERIALS LETTERS, 2018, 210 : 54 - 57
  • [49] Positron dopplerbroadening measurements in Cu-Al-Ni based shape memory alloy
    Segers, D.
    Hurtado, I.
    Dorikens-Vanpraet, L.
    van Humbeeck, J.
    Journal De Physique, 1995, 5 (01): : 1 - 163
  • [50] Study of a monocrystalline Cu-Al-Ni shape memory alloy by infrared thermography
    Bubulinca, C.
    Balandraud, X.
    Delpueyo, D.
    Grediac, M.
    Stanciu, S.
    Abrudeanu, M.
    Plaiasu, A. -G.
    Dicu, M. M.
    Nitu, E. L.
    JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 2013, 15 (5-6): : 544 - 549