METHOD OF ELECTROLYTIC DEPOSITION OF AN IRON-TITANIUM ALLOY

FIELD: electrolytic deposition of wear-resisting coatings for recovery and reinforcement of the worn surfaces of details. SUBSTANCE: the invention presents a method of electrolytic deposition of an iron-titanium alloy and is dealt in particular with electrolytic deposition of wear-resisting coatings...

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Hauptverfasser: SEREBROVSKAJA L.N, SEREBROVSKIJ V.V, KONJAEV N.V, SEREBROVSKIJ V.I
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creator SEREBROVSKAJA L.N
SEREBROVSKIJ V.V
KONJAEV N.V
SEREBROVSKIJ V.I
description FIELD: electrolytic deposition of wear-resisting coatings for recovery and reinforcement of the worn surfaces of details. SUBSTANCE: the invention presents a method of electrolytic deposition of an iron-titanium alloy and is dealt in particular with electrolytic deposition of wear-resisting coatings for recovery and reinforcement of the worn surfaces of details. The method provides for deposition of coatings from the electrolyte, that contains (in kg / m3): iron chloride - 350-400, titanium oxalate - 15-25, saline acid - 0.5-1.5. The deposition is exercised using an alternating asymmetric current with an asymmetry factor of 1.2-6.0 at the electrolyte temperature of 20-40o, an interval of cathode current densities of 35-50 A/dcm2. Technical result: increased efficiency of the method, strengthened linkage of the coating with the base, increased microhardness and wear resistance. EFFECT: the invention allows to increase strength of linkage of the coating with the base, microhardness and wear resistance of products, general efficiency of the method.
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SUBSTANCE: the invention presents a method of electrolytic deposition of an iron-titanium alloy and is dealt in particular with electrolytic deposition of wear-resisting coatings for recovery and reinforcement of the worn surfaces of details. The method provides for deposition of coatings from the electrolyte, that contains (in kg / m3): iron chloride - 350-400, titanium oxalate - 15-25, saline acid - 0.5-1.5. The deposition is exercised using an alternating asymmetric current with an asymmetry factor of 1.2-6.0 at the electrolyte temperature of 20-40o, an interval of cathode current densities of 35-50 A/dcm2. Technical result: increased efficiency of the method, strengthened linkage of the coating with the base, increased microhardness and wear resistance. 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subjects APPARATUS THEREFOR
CHEMISTRY
ELECTROFORMING
ELECTROLYTIC OR ELECTROPHORETIC PROCESSES
METALLURGY
PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTIONOF COATINGS
title METHOD OF ELECTROLYTIC DEPOSITION OF AN IRON-TITANIUM ALLOY
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