Effect of the Electrolyte Temperature and the Current Density on a Layer Microhardness Generated by the Anodic Aluminium Oxidation

Joint Authors

Piteľ, Ján
Gombár, Miroslav
Kmec, Ján
Vagaská, Alena
Fechová, Erika
Michal, Peter
Kučerka, Daniel
Spišák, Emil

Source

Advances in Materials Science and Engineering

Issue

Vol. 2015, Issue 2015 (31 Dec. 2015), pp.1-9, 9 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2015-04-19

Country of Publication

Egypt

No. of Pages

9

Abstract EN

The paper investigates the influence of the chemical composition and temperature of electrolyte, the oxidation time, voltage, and the current density on Vickers microhardness of aluminium oxide layers, at the same time.

The layers were generated in the electrolytes with different concentrations of sulphuric and oxalic acids and surface current densities 1 A·dm−2, 3 A·dm−2, and 5 A·dm−2.

The electrolyte temperature varied from −1.78°C to 45.78°C.

The results have showed that while increasing the electrolyte temperature at the current density of 1 A·dm−2, the increase in the layer microhardness values is approximately by 66%.

While simultaneously increasing the molar concentration of H2SO4 in the electrolyte, the growth rate of the microhardness value decreases.

At the current density of 3 A·dm−2, by increasing the electrolyte temperature, a reduction in the microhardness of the generated layer occurs with the anodic oxidation time less than 25 min.

The electrolyte temperature is not significant with the changing values of the layer microhardness at voltages less than 10.5 V.

American Psychological Association (APA)

Spišák, Emil& Gombár, Miroslav& Kmec, Ján& Vagaská, Alena& Fechová, Erika& Michal, Peter…[et al.]. 2015. Effect of the Electrolyte Temperature and the Current Density on a Layer Microhardness Generated by the Anodic Aluminium Oxidation. Advances in Materials Science and Engineering،Vol. 2015, no. 2015, pp.1-9.
https://search.emarefa.net/detail/BIM-1053598

Modern Language Association (MLA)

Spišák, Emil…[et al.]. Effect of the Electrolyte Temperature and the Current Density on a Layer Microhardness Generated by the Anodic Aluminium Oxidation. Advances in Materials Science and Engineering No. 2015 (2015), pp.1-9.
https://search.emarefa.net/detail/BIM-1053598

American Medical Association (AMA)

Spišák, Emil& Gombár, Miroslav& Kmec, Ján& Vagaská, Alena& Fechová, Erika& Michal, Peter…[et al.]. Effect of the Electrolyte Temperature and the Current Density on a Layer Microhardness Generated by the Anodic Aluminium Oxidation. Advances in Materials Science and Engineering. 2015. Vol. 2015, no. 2015, pp.1-9.
https://search.emarefa.net/detail/BIM-1053598

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1053598