RAS Chemistry & Material ScienceЖурнал физической химии Russian Journal of Physical Chemistry

  • ISSN (Print) 0044-4537
  • ISSN (Online) 3034-5537

Kinetics of the Oxidation of Zn55Al Alloy with Molybdenum in the Solid State

PII
10.31857/S0044453723020218-1
DOI
10.31857/S0044453723020218
Publication type
Status
Published
Authors
Volume/ Edition
Volume 97 / Issue number 2
Pages
237-240
Abstract
Results are presented from studying the kinetics of oxidation of Zn55Al alloy with molybdenum in the solid state. Kinetic parameters of the oxidation of alloys in the 523–623 K range of temperatures are established. It is shown that the behavior of the alloys with a third component differs considerably from the one observed during the oxidation of the binary alloy, with molybdenum additives in amounts of 0.01–0.1 wt % greatly reducing the oxidizability of Zn55Al alloy. Protective films of oxides Al2O3, ZnO, ZnAl2O4, Al2O3·Mo2O3 form during the oxidation of hard alloys.
Keywords
сплав Zn55Al термогравиметрический метод скорость окисления энергия активации молибден
Date of publication
13.09.2025
Year of publication
2025
Number of purchasers
0
Views
16

References

  1. 1. Кечин В.А., Люблинский Е.Я. Цинковые сплавы. М.: Металлургия, 1986. 247 с.
  2. 2. Amini R.N., Irani M., Ganiev I., Obidov Z. // Orien. J. Chem. 2014. V. 30. № 3. P. 969. https://doi.org/10.13005/ojc/300307
  3. 3. Mazilkin A.A., Straumal B.B., Borodachenkova M.V. et al. // Mat. Lett. 2012. V. 84. P. 63. https://doi.org/10.1016/ j.matlet.2012.06.026
  4. 4. Obidov Z.R. // Russ. J. Appl. Chem. 2015. V. 88. № 9. P. 1451. https://doi.org/10.1134/S1070427215090116
  5. 5. Uesugi T., Takigawa Y., Kawasaki M., Higashi K. // Lett. on Mat. 2015. № 5 (3). P. 269. http://www.lettersonmaterials.com
  6. 6. Maniram S.G., Satender D., Manoj Sh., Upadhyay N.C. // IOSR J. Mech. and Civil Eng. 2013. V. 10. Issue 2. P. 39. http://www.iosrjournals.org
  7. 7. Obidov Z.R., Amonova A.V., Ganiev I.N. // Russ. J. Phys. Chem. A. 2013. V. 87. № 4. P. 702. https://doi.org/10.1134/S0036024413040201
  8. 8. Tuck C.D.S., Whitehead M.E., & Smallman R.E. // Corr. Sci. 1981. № 21 (5). P. 333. https://doi.org/10.1016/0010-938x (81)90071-8
  9. 9. Obidov Z.R. // Prot. of Met. and Phys. Chem. Surf. 2012. V. 48. № 3. P. 352. https://doi.org/10.1134/S2070205112030136
  10. 10. Baca R., Juárez G., Solache H. et al. // IOP Conf. Ser.: Mat. Sci. and Eng. 2010. (8). P. 012043. https://doi.org/10.1088/1757-899X/8/1/012043
  11. 11. Обидов З.Р., Ганиев И.Н. Анодное поведение и окисление сплавов систем Zn5Al–ЩЗМ и Zn55Al–ЩЗМ. Германия: LAP LAMBERT Acad. Publ., 2012. 288 с.
  12. 12. Васильев Е.К., Назмансов М.С. Качественный рентгеноструктурный анализ. Новосибирск: Наука, 1986. 200 с.
QR
Translate

Индексирование

Scopus

Scopus

Scopus

Crossref

Scopus

Higher Attestation Commission

At the Ministry of Education and Science of the Russian Federation

Scopus

Scientific Electronic Library