SU135316A1 - Method of reversing the operating current in electrochemical plants - Google Patents

Method of reversing the operating current in electrochemical plants

Info

Publication number
SU135316A1
SU135316A1 SU644562A SU644562A SU135316A1 SU 135316 A1 SU135316 A1 SU 135316A1 SU 644562 A SU644562 A SU 644562A SU 644562 A SU644562 A SU 644562A SU 135316 A1 SU135316 A1 SU 135316A1
Authority
SU
USSR - Soviet Union
Prior art keywords
reversing
current
operating current
electrochemical plants
reverse
Prior art date
Application number
SU644562A
Other languages
Russian (ru)
Inventor
В.Н. Алексеенко
Original Assignee
В.Н. Алексеенко
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 В.Н. Алексеенко filed Critical В.Н. Алексеенко
Priority to SU644562A priority Critical patent/SU135316A1/en
Application granted granted Critical
Publication of SU135316A1 publication Critical patent/SU135316A1/en

Links

Description

Известны способы реверсирован 5  тока, в том числе способы периодического кратковремениого изменени  тока с э.чектромашинной установкой и стабилизирующим трансформатором.There are known methods for reversing current 5, including methods for periodically short-term current changes with an electric machine installation and a stabilizing transformer.

Особенность описывае Мото способа реверсировани  рабочего тока заключаетс  в том, что, с целью обеспечени  надежности работы устройств электропитани  и ускорени  рабочих процессов, реверсирован е тока осуществл ют за счет изменени  величины рабочего тока с помощью регулируемого дроссел  и полупроводниковых выпр мителей.The peculiarity of the description of the Moto method of reversing the operating current is that, in order to ensure the reliability of the power supply devices and accelerate the working processes, the current is reversed by varying the operating current using adjustable throttle and semiconductor rectifiers.

При осуществлении способа реверсировани  рабочего тока количество электричества, проход щее через ванну в пр мом и обратном направлени х , регулируетс  по величине тока. Врем  пр мого и обратного тока не регулируетс ,  вл етс  величиной посто нной и равно половине периода сети переменного тока. Регулирование величины обратного тока производитс  бесконтактным регулируемым дросселем.When implementing the method of reversing the operating current, the amount of electricity passing through the bath in the forward and reverse directions is regulated by the magnitude of the current. The forward and reverse current is not adjustable, is a constant and equal to half the period of the AC network. The reverse current is controlled by a contactless adjustable choke.

На чертеже показана электрическа  схема, примен ема  дл  осуществлени  предлагаемого способа.The drawing shows the electrical circuit used to implement the proposed method.

Схема состоит из трансформатора Тр, служащего дл  понил-сени  напр жени  тока в сети до величины, необходимой при использовании электрической ванны ЭВ. Во вторичную обмотку трансформатора Тр последовательно с электролитической ванной ЭВ включен столб ВС, который выбираетс  таким образом, чтобы он мог обеспечить прохождение тока заданной величины в пр мом направлении. Параллельно вентилю, обеспечивающему прохождение пр мого тока ванны, подключаетс  вентиль обратного тока ВС. Вентиль обратного тока включен последовательно с рабочими обмотками регулируемого дроссел  РД, который служит дл  регулировани  величины обратного тока. Таким образом, настройки режи.ма работы электролитической ванны осуществл етс  только регулированием величины обратного тока.The circuit consists of a transformer Tp, which serves to understand the mains voltage up to the value required when using an electric bath EV. The secondary winding of the transformer Tp, in series with the electrolytic bath EV, includes a pole BC, which is chosen so that it can ensure the passage of a current of a given magnitude in the forward direction. Parallel to the valve providing the passage of the direct current of the bath, a valve of the reverse current of the BC is connected. The reverse current valve is connected in series with the working windings of an adjustable throttle of the taxiway, which serves to regulate the magnitude of the reverse current. Thus, the settings of the operation mode of the electrolytic bath are carried out only by adjusting the magnitude of the reverse current.

ПредАгет изобретени Invention

Способ реверсировани  рабочего тока в электрохимических установках с использованием регулируемого дроссел  и полупроводниковых выпр мителей , отличающийс  тем, что, с целью обеспечени  надежности работы устройств электропитани  и ускорени  рабочих процессов, осуществл ют бесконтактное реверсирование за счет изменени  величины рабочего тока, а не за счет изменени  времени, и регулируют силы пр мого и обратного токов с помощью регулируелюго дроссел  и полупроводниковых выпр мителей.A method of reversing the operating current in electrochemical plants using adjustable throttles and semiconductor rectifiers, characterized in that, in order to ensure the reliability of power supply devices and accelerate working processes, they carry out contactless reversal by varying the amount of operating current rather than by changing the time , and regulate the forces of direct and reverse currents with the help of adjustable-speed chokes and semiconductor rectifiers.

ЛАЛ,Lal

SU644562A 1959-11-18 1959-11-18 Method of reversing the operating current in electrochemical plants SU135316A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU644562A SU135316A1 (en) 1959-11-18 1959-11-18 Method of reversing the operating current in electrochemical plants

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU644562A SU135316A1 (en) 1959-11-18 1959-11-18 Method of reversing the operating current in electrochemical plants

Publications (1)

Publication Number Publication Date
SU135316A1 true SU135316A1 (en) 1960-11-30

Family

ID=48291638

Family Applications (1)

Application Number Title Priority Date Filing Date
SU644562A SU135316A1 (en) 1959-11-18 1959-11-18 Method of reversing the operating current in electrochemical plants

Country Status (1)

Country Link
SU (1) SU135316A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3562623A (en) * 1968-07-16 1971-02-09 Hughes Aircraft Co Circuit for reducing stray capacity effects in transformer windings

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3562623A (en) * 1968-07-16 1971-02-09 Hughes Aircraft Co Circuit for reducing stray capacity effects in transformer windings

Similar Documents

Publication Publication Date Title
SU135316A1 (en) Method of reversing the operating current in electrochemical plants
SU129726A1 (en) Rectified installation
SU51612A1 (en) Device for automatic regulation of the voltage of a multi-phase synchronous generator
SU379964A1 (en) DEVICE FOR AUTOMATIC REGULATION OF EXCITATION OF POWERFUL SYNCHRONOUS GENERATOR
SU50509A1 (en) Device for automatically maintaining a constant voltage in an AC network
SU140879A1 (en) Device for feeding ignition circuits, grid control and valve converter control
SU96575A1 (en) Device for automatic power control of high-frequency installations
SU472437A1 (en) Voltage Regulator for Self-excited Synchronous Generator
US2808558A (en) Means in combination with an alternating current generator for energizing its field windings
SU141930A1 (en) Straightener
SU100965A1 (en) Device for self-excitation of an alternator
US2034470A (en) Constant voltage generator
SU687546A1 (en) Controllable power supply source
SU122225A3 (en) Tube generator for induction heating
SU596665A1 (en) Device for supplying electrolytic baths with reverse pulse periodic current
SU148824A1 (en) Three Phase Voltage Regulator
SU584388A1 (en) Device for charging storage battery
SU120245A1 (en) Device for automatic regulation of voltage in a direct current installation
SU149459A1 (en) Device for controlling the voltage on the inductive-active load of direct current
SU432474A1 (en) DEVICE FOR REGULATING AC VOLTAGE UNDER LOADING
SU139702A1 (en) Synchronous motor compounding device
SU72537A1 (en) Voltage Regulator
SU107436A1 (en) Installation to maintain a predetermined voltage value at the end of the power line
SU105902A1 (en) Single core dc to ac converter
SU479100A1 (en) Power source