SU123638A1 - Method of removing electrostatic charges from treated textile materials by ionizing air in a production room - Google Patents
Method of removing electrostatic charges from treated textile materials by ionizing air in a production roomInfo
- Publication number
- SU123638A1 SU123638A1 SU613426A SU613426A SU123638A1 SU 123638 A1 SU123638 A1 SU 123638A1 SU 613426 A SU613426 A SU 613426A SU 613426 A SU613426 A SU 613426A SU 123638 A1 SU123638 A1 SU 123638A1
- Authority
- SU
- USSR - Soviet Union
- Prior art keywords
- electrostatic charges
- textile materials
- production room
- treated textile
- ionizing air
- Prior art date
Links
Landscapes
- Treatment Of Fiber Materials (AREA)
- Preliminary Treatment Of Fibers (AREA)
- Elimination Of Static Electricity (AREA)
Description
Изобретение относитс к способу удалени электростатических зар дов с обрабатываемых текстильных материалов путем ионизации воздуха в производственном помещении. При существующих способах электростатические зар ды удал ют на текстильных предпри ти х в местах возникновени зар дов при помощи специальных ионизирующих установок , что вызывает неудобства при обслуживании технологического процесса обработки текстильных материалов, а также в эксплуатации установок .The invention relates to a method for removing electrostatic charges from treated textile materials by ionizing air in a production room. With existing methods, electrostatic charges are removed at textile enterprises at the sites where charges are generated using special ionizing facilities, which causes inconvenience in maintaining the processing of textiles, as well as in operating the facilities.
Предлагаемый способ устран ет указанные недостатки тем, что ионизацию воздуха совмещают с процессом его увлажнени на гидроаэронизирующих или других устройствах, размещенных в производственном помещении.The proposed method eliminates these drawbacks in that the air ionization is combined with the process of its moistening on hydroaeronizing or other devices located in the production room.
Корпус / (см. чертеж) гидроаэронизирующего устройства представл ет цилиндр, образованный планками 2, прикрепленными к кольцам 3. Планки изготавливают из материала, не подвергающегос коррозии, и прикрепл ют сиаружи колес 3 с просветами, а загнутый конец их выступает внутрь корпуса /. Внутри цилиндрического корпуса / по его центру проходит пазова труба 4, на которой смонтированы форсунки 5. Корпус -/ подвещиваетс на вал 6, который покоитс в подщипниках и жестко скреплен с конической щестерней 7.The housing / (see drawing) of the hydraulic aero- nizing device is a cylinder formed by slats 2 attached to rings 3. The slats are made of a material that does not corrode and are attached to the circle of the wheels 3 with openings, and the bent end protrudes inside the case. Inside the cylindrical body / in its center there is a groove pipe 4, on which the nozzles 5 are mounted. The housing - / is placed on the shaft 6, which rests in the bearing and is rigidly fastened to the conical bristle 7.
Во врем действи устройства корпус 1 приводитс во вращение от электродвигател (на чертеже не показан) при помощи конических щестерен § и 7, позвол ющих измен ть скорости вращени ; вырывающиес из форсунок 5 струи и крупные капли воды удар ютс в ребра и плоскости вращающихс планок 2 и раздробл ютс , образу при этом вод ную иыль. Выносимый же воздух за счет баллоэлектрического эффекта насыщаетс ионами до большой концентрации и направл етс к вентил тору (на чертеже не показан) и дальше, непосредственно в производственные помещени , где и удал ет электростатические зар ды с обрабатываемых текстильных материалов.During the operation of the device, the housing 1 is rotated by an electric motor (not shown in the drawing) by means of conical gears § and 7, which allow varying the rotational speeds; The jets ejected from the nozzles 5 and the large water droplets hit the ribs and planes of the rotating strips 2 and split up to form a water source. The exhaust air, due to the balloelectric effect, is saturated with ions to a high concentration and is directed to the fan (not shown) and then directly to production facilities, where it removes electrostatic charges from the textile materials being processed.
№ 123638- 2 -No. 123638-2 -
Предмет изобретени Subject invention
Способ удалени электростатических зар дов с обрабатываемых текстильных материалов путем ионизации воздуха в производственном помещении, отличающийс тем, что, с целью устранени необходимости установки ионизирующих устройств непосредственно в местах возникновени электростатических зар дов, ионизацию воздуха совмещают с процессом его увлажнени на гидроэронизирующих или других устройствах, размещенных в производственном помещении.A method for removing electrostatic charges from treated textile materials by ionizing air in a production room, characterized in that, in order to eliminate the need to install ionizing devices directly at the sites of electrostatic charges, air ionization is combined with the process of its moistening on hydraulic equipment or other devices placed in the workplace.
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Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
SU613426A SU123638A1 (en) | 1958-12-09 | 1958-12-09 | Method of removing electrostatic charges from treated textile materials by ionizing air in a production room |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
SU613426A SU123638A1 (en) | 1958-12-09 | 1958-12-09 | Method of removing electrostatic charges from treated textile materials by ionizing air in a production room |
Publications (1)
Publication Number | Publication Date |
---|---|
SU123638A1 true SU123638A1 (en) | 1959-11-30 |
Family
ID=48395183
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
SU613426A SU123638A1 (en) | 1958-12-09 | 1958-12-09 | Method of removing electrostatic charges from treated textile materials by ionizing air in a production room |
Country Status (1)
Country | Link |
---|---|
SU (1) | SU123638A1 (en) |
-
1958
- 1958-12-09 SU SU613426A patent/SU123638A1/en active
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