The contribution to coating quality evaluation by statistical methods

The paper deals with evaluation of quality of electrolytic coating by statistical methods. Electrolytic solution was created by ZnCl<sub>2</sub> within interval of 0,062 mol•l<sup>-1</sup>to 1,01 mol•l<sup>-1</sup>, NaCl ranging from 7,01 mol•l<sup>-1</su...

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Main Authors: M. Badida, L. Sobotova, M. Gombar, J. Kmec, D. Kucerka, R. Hrmo
Format: Article
Language:English
Published: Croatian Metallurgical Society 2016-07-01
Series:Metalurgija
Subjects:
Online Access:http://hrcak.srce.hr/file/226342
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author M. Badida
L. Sobotova
M. Gombar
J. Kmec
D. Kucerka
R. Hrmo
author_facet M. Badida
L. Sobotova
M. Gombar
J. Kmec
D. Kucerka
R. Hrmo
author_sort M. Badida
collection DOAJ
description The paper deals with evaluation of quality of electrolytic coating by statistical methods. Electrolytic solution was created by ZnCl<sub>2</sub> within interval of 0,062 mol•l<sup>-1</sup>to 1,01 mol•l<sup>-1</sup>, NaCl ranging from 7,01 mol•l<sup>-1</sup> to 60,66 mol•l<sup>-1</sup>, H<sub>3</sub>BO<sub>3</sub> ranging from 0,11 mol.l-1 to 0,89 mol.l-1. Physical conditions of the experiment are represented by the electrolyte temperature ranging from - 3,78 °C to 43,78 °C, electroplating period ranging from 3,11 to 26,98 min and voltage ranging from 1,62 V to 6,38 V. Steel S355J0 was used as an experimental material. The results showed that zinc chloride volume contained in the electrolyte does not produce any influence on resulting quality of zinc coating.
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spelling doaj.art-e1c1dd3193e849dfb3c4ccffb885aa332022-12-22T01:21:03ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762016-07-01553445448The contribution to coating quality evaluation by statistical methodsM. BadidaL. SobotovaM. GombarJ. KmecD. KucerkaR. HrmoThe paper deals with evaluation of quality of electrolytic coating by statistical methods. Electrolytic solution was created by ZnCl<sub>2</sub> within interval of 0,062 mol•l<sup>-1</sup>to 1,01 mol•l<sup>-1</sup>, NaCl ranging from 7,01 mol•l<sup>-1</sup> to 60,66 mol•l<sup>-1</sup>, H<sub>3</sub>BO<sub>3</sub> ranging from 0,11 mol.l-1 to 0,89 mol.l-1. Physical conditions of the experiment are represented by the electrolyte temperature ranging from - 3,78 °C to 43,78 °C, electroplating period ranging from 3,11 to 26,98 min and voltage ranging from 1,62 V to 6,38 V. Steel S355J0 was used as an experimental material. The results showed that zinc chloride volume contained in the electrolyte does not produce any influence on resulting quality of zinc coating.http://hrcak.srce.hr/file/226342coatinggalvanic zinc coatingqualitystatistical analysisdesign of experiments
spellingShingle M. Badida
L. Sobotova
M. Gombar
J. Kmec
D. Kucerka
R. Hrmo
The contribution to coating quality evaluation by statistical methods
Metalurgija
coating
galvanic zinc coating
quality
statistical analysis
design of experiments
title The contribution to coating quality evaluation by statistical methods
title_full The contribution to coating quality evaluation by statistical methods
title_fullStr The contribution to coating quality evaluation by statistical methods
title_full_unstemmed The contribution to coating quality evaluation by statistical methods
title_short The contribution to coating quality evaluation by statistical methods
title_sort contribution to coating quality evaluation by statistical methods
topic coating
galvanic zinc coating
quality
statistical analysis
design of experiments
url http://hrcak.srce.hr/file/226342
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