Corrosion Behavior of Ψ and β Quasicrystalline Al–Cu–Fe Alloy

被引:0
|
作者
Alvaro Torres
Sergio Serna
Cristobal Patiño
Gerardo Rosas
机构
[1] UAEM,Facultad de Ciencias Químicas e Ingeniería P.A. Ing. Mecánica
[2] UAEM,Centro de Investigación en Ingeniería y Ciencias Aplicadas
[3] Universidad Autónoma del Carmen,Facultad de Ingeniería
[4] Campus III,Instituto de Investigaciones Metalúrgicas
[5] UMSNH,undefined
关键词
Nano-quasicrystalline; Al–Cu–Fe alloy; Mechanical alloying; Corrosion;
D O I
暂无
中图分类号
学科分类号
摘要
Two nanostructured Al–Cu–Fe alloys, Al64Cu24Fe12 and Al62.5Cu25.2Fe12.3, have been studied. Icosahedral quasicrystalline (ψ) Al64Cu24Fe12 and crystalline cubic (β) Al62.5Cu25.2Fe12.3 cylindrical ingots were first produced using normal casting techniques. High-energy mechanical milling was then conducted to obtain ψ icosahedral and β intermetallic nanostructured powders. Electrochemical impedance spectroscopy, linear polarization resistance, and potentiodynamic polarization were used to investigate the electrochemical corrosion characteristics of the powders in solutions with different pH values. Current density (icorr), polarization resistance (Rp), and impedance modulus (|Z|) were determined. The results showed that regardless of pH value, increasing the solution temperature enhanced the corrosion resistance of the both phases. However, the electrochemical behavior of the ψ phase indicated that its stability depends on the submerged exposure time in neutral and alkaline environments. This behavior was related to the type of corrosion products present on the surfaces of the particles along with the diffusion and charge-transfer mechanisms of the corrosion process.
引用
收藏
页码:1117 / 1122
页数:5
相关论文
共 50 条
  • [21] Thermal stability of Al/Al-Cu-Fe quasicrystalline alloy composites produced by mechanical alloying
    Cherdyntsev, V.V.
    Kaloshkin, S.D.
    Tomilin, I.A.
    Shelekhov, E.V.
    Baldokhin, Yu.V.
    Afonina, E.A.
    Fizika Metallov i Metallovedenie, 2004, 97 (05): : 53 - 58
  • [22] Corrosion behavior of Al-Cu-Fe quasicrystals
    Rüdiger, A
    Köster, U
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2000, 294 : 890 - 893
  • [23] Thermal stability of Al/Al-Cu-Fe quasicrystalline alloy composites produced by mechanical alloying
    Cherdyntsev, VV
    Kaloshkin, SD
    Tomilin, IA
    Shelekhov, EV
    Baldokhin, YV
    Afonina, EA
    PHYSICS OF METALS AND METALLOGRAPHY, 2004, 97 (05): : 479 - 484
  • [24] Wear and Corrosion Performance of Al-Cu-Fe-(Cr) Quasicrystalline Coatings Produced by HVOF
    Wolf, Witor
    Koga, Guilherme Y.
    Schulz, Robert
    Savoie, Sylvio
    Kiminami, Claudio S.
    Bolfarini, Claudemiro
    Botta, Walter J.
    JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2020, 29 (05) : 1195 - 1207
  • [25] Wear and Corrosion Performance of Al-Cu-Fe-(Cr) Quasicrystalline Coatings Produced by HVOF
    Witor Wolf
    Guilherme Y. Koga
    Robert Schulz
    Sylvio Savoie
    Claudio S. Kiminami
    Claudemiro Bolfarini
    Walter J. Botta
    Journal of Thermal Spray Technology, 2020, 29 : 1195 - 1207
  • [26] QUASICRYSTALLINE PHASES IN AL-CU-CO ALLOY
    ZHANG, Z
    URBAN, K
    SCRIPTA METALLURGICA, 1989, 23 (05): : 767 - 772
  • [27] Deformation Characteristics of Quasicrystalline Al–Cu–Fe Alloys
    J. E. Shield
    M. J. Kramer
    Journal of Materials Research, 1997, 12 : 2043 - 2047
  • [28] Intermediate annealing behavior and grain growth of Al-Cu-Fe quasicrystalline coatings
    Daniels, MJ
    King, D
    Zabinski, JS
    Bilello, JC
    MORPHOLOGICAL AND COMPOSITIONAL EVOLUTION OF THIN FILMS, 2003, 749 : 213 - 218
  • [29] Identification of a quasicrystalline phase in the Al – Cu – Fe system
    K. B. Kalmykov
    N. L. Zvereva
    S. F. Dunaev
    N. V. Kazennov
    Metal Science and Heat Treatment, 2009, 51 : 440 - 443
  • [30] Formation of the structure and physicomechanical properties of a quasicrystalline Al–Cu–Fe alloy upon plasma spraying
    A. A. Lepeshev
    I. V. Karpov
    A. V. Ushakov
    Physics of the Solid State, 2017, 59 : 438 - 442