SU621524A1 - Electrolyte for electrochemical working of nickel alloys - Google Patents

Electrolyte for electrochemical working of nickel alloys

Info

Publication number
SU621524A1
SU621524A1 SU752177907A SU2177907A SU621524A1 SU 621524 A1 SU621524 A1 SU 621524A1 SU 752177907 A SU752177907 A SU 752177907A SU 2177907 A SU2177907 A SU 2177907A SU 621524 A1 SU621524 A1 SU 621524A1
Authority
SU
USSR - Soviet Union
Prior art keywords
electrolyte
nickel alloys
chloride
treatment
potassium chloride
Prior art date
Application number
SU752177907A
Other languages
Russian (ru)
Inventor
Альберт Алексеевич Карпов
Original Assignee
Специальное Проектно-Конструкторское И Технологическое Бюро Электрообработки Производственного Объединения Турбостроения "Ленинградский Металлический Завод"
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Специальное Проектно-Конструкторское И Технологическое Бюро Электрообработки Производственного Объединения Турбостроения "Ленинградский Металлический Завод" filed Critical Специальное Проектно-Конструкторское И Технологическое Бюро Электрообработки Производственного Объединения Турбостроения "Ленинградский Металлический Завод"
Priority to SU752177907A priority Critical patent/SU621524A1/en
Application granted granted Critical
Publication of SU621524A1 publication Critical patent/SU621524A1/en

Links

Claims (1)

Применение предложенного электроли та значительно повышает производитель ность обработки, при этом повышаетс  чистота обработанной поверхности. Формула изобретени  Электролит дл  электрохимической обработки никелевых сплавов на основе водного раствора хлористого кали  и хлористого аммони , отличаюв и и с   тем,что, с целью повышени  производительности обработки за счет обеспечени  образовани  растворимых комплексных соединений в прианодном слое, его состав дополнительно содержит фтористый аммоний, и компоненты вз ты в следующем соотношении, вес,%: Хлористый калий 10-15 Хлористый аммоний 10-11 Фтористый аммоний 0,5-0,6 В°ДзОстальное Источники информации, прин тые во внимание при экспертизе: 1. Да Барр А.Е. и Оливер Д.А. Электрохимическа  обработка. М., Машиностроение, 1973, стр. 83.The use of the proposed electrolyte significantly increases the productivity of the treatment, while the purity of the treated surface increases. Electrolyte for electrochemical treatment of nickel alloys based on an aqueous solution of potassium chloride and ammonium chloride, and in order to increase processing performance by ensuring the formation of soluble complex compounds in the anode layer, its composition also contains ammonium fluoride The components are taken in the following ratio, weight,%: Potassium chloride 10-15 Ammonium chloride 10-11 Ammonium fluoride 0.5-0.6 V ° D Rest Sources of information taken into account in EC examinations of: 1. Yes Barr AE and Oliver D.A. Electrochemical treatment. M., Mechanical Engineering, 1973, p. 83.
SU752177907A 1975-07-25 1975-07-25 Electrolyte for electrochemical working of nickel alloys SU621524A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU752177907A SU621524A1 (en) 1975-07-25 1975-07-25 Electrolyte for electrochemical working of nickel alloys

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU752177907A SU621524A1 (en) 1975-07-25 1975-07-25 Electrolyte for electrochemical working of nickel alloys

Publications (1)

Publication Number Publication Date
SU621524A1 true SU621524A1 (en) 1978-08-30

Family

ID=20633522

Family Applications (1)

Application Number Title Priority Date Filing Date
SU752177907A SU621524A1 (en) 1975-07-25 1975-07-25 Electrolyte for electrochemical working of nickel alloys

Country Status (1)

Country Link
SU (1) SU621524A1 (en)

Similar Documents

Publication Publication Date Title
ES8702741A1 (en) Method for preparing alloyed negative electrodes, and apparatus using said electrodes.
GB2020478A (en) Galvanic Primary Cell
FR2403593A1 (en) METHOD FOR CHECKING THE PH OF AN ELECTROLYTE
SU621524A1 (en) Electrolyte for electrochemical working of nickel alloys
JPS53113797A (en) Production of silver(ii) oxide for cell
SU466088A1 (en) Electrolyte for electrochemical dimensional processing of aluminum alloys
SU751840A1 (en) Electrolyte for electrochemical production of potassium peroxodicarbonate
SU804334A1 (en) Electrolyte for dimensional electrochemical working of titanium alloys
SU823463A1 (en) Method of producing potassium peroxoborate
JPS5211178A (en) Reaction selective activating cathode
JPS5337588A (en) Sputtering electrode
GB785812A (en) Improvements in or relating to electric storage batteries
GB1055472A (en) Improvements in and relating to primary electric cells
SU1139586A1 (en) Electrolyte for electrochemical machining of titanium and its alloys
SU527775A1 (en) A method of manufacturing a porous electrode for a chemical current source with a non-aqueous electrolyte
SU564134A1 (en) Electrolyte for tungsten electrochemical grinding
GB643877A (en) Improved surface treatment of magnesium alloys
JPS5231094A (en) Preparation of cephalexin
JPS51126616A (en) Ph difference cell utilization electric car
SU984788A1 (en) Electrolyte for electrochemical machining of titanium and its alloys
JPS5386627A (en) Recovering method for copper in copper or copper alloy-treated solution
SU554707A1 (en) METHOD OF OBTAINING VANADIUM BY ELECTROLYSIS
JPS51112783A (en) Ion exchange membrane and process for producing the same
GB532882A (en) Improvements in or relating to the purification of electrolyte solutions and the preparation of pure salts therefrom
JPS57147866A (en) Battery