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METHOD OF ELECTROLYTIC DEPOSITION OF AN IRON-TITANIUM ALLOY

机译:电解沉积钛铁合金的方法

摘要

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.
机译:领域:耐磨涂层的电解沉积,用于恢复和增强磨损表面。物质:本发明提出了一种铁-钛合金的电解沉积方法,并且特别涉及用于耐磨涂层的电解沉积以恢复和增强细节的磨损表面的方法。该方法提供了从电解质中沉积涂层的方法,该涂层包含(kg / m 3 ):氯化铁-350-400,草酸钛-15-25,盐水-0.5-1.5。在20-40 o 的电解质温度下,使用不对称因子为1.2-6.0的交流不对称电流进行沉积,阴极电流密度的间隔为35-50 A / dcm 2 。技术成果:提高了方法的效率,增强了涂层与基体之间的键合,提高了显微硬度和耐磨性。效果:本发明允许增加涂层与基体的键合强度,产品的显微硬度和耐磨性,该方法的总体效率。

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