MICHAL, Peter, Alena VAGASKÁ and Miroslav GOMBÁR. Determination of Relationship between Chemical Composition of Electrolyte and Surface Sample Quality. Key Engineering Materials. Zurich: Trans Tech Publications, vol. 2016, No 669, p. 150-157. ISSN 1662-9795. 2016.
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Basic information
Original name Determination of Relationship between Chemical Composition of Electrolyte and Surface Sample Quality
Name in Czech Stanovení vztahu mezi chemickým složením elektrolytu a kvalitou povrchu vzorku
Authors MICHAL, Peter (703 Slovakia), Alena VAGASKÁ (703 Slovakia) and Miroslav GOMBÁR (703 Slovakia, belonging to the institution).
Edition Key Engineering Materials, Zurich, Trans Tech Publications, 2016, 1662-9795.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 20400 2.4 Chemical engineering
Country of publisher Switzerland
Confidentiality degree is not subject to a state or trade secret
RIV identification code RIV/75081431:_____/16:00000623
Organization unit Institute of Technology and Business in České Budějovice
Keywords (in Czech) eloxování; složení elektrolytu; kvalita povrchu
Keywords in English anodic oxidation; electrolyte composition; surface quality
Tags KSTR5, RIV16, SCOPUS
Tags Reviewed
Changed by Changed by: Hana Dlouhá, učo 19800. Changed: 2/9/2016 10:23.
Abstract
Paper tracks experimentally confirmed relationship between chemical composition of electrolyte and resulting surface finish quality of created oxide layer during the process of anodic oxidation of aluminium. Examined chemical factors were: concentrations of sulphuric acid, oxalic acid, boric acid and sodium chloride. Aggressive effects of electrolyte were chosen as indicator of resulting layer quality – presence and extent of etching of used substrate sample.
Abstract (in Czech)
Cestou článku experimentálně potvrzeny vztah mezi chemickým složením elektrolytu a výslednou kvalitou povrchu úpravou vytvořené oxidové vrstvy v průběhu procesu anodické oxidace hliníku. Zkoumané chemické faktory byly: koncentrace kyseliny sírové, šťavelová kyselina, kyselina boritá a chlorid sodný. Agresivní účinky elektrolytu byly vybrány jako indikátor Výsledná kvalita vrstvy - Existence a rozsah leptání substrátu použitého vzorku.
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