CS256185B1 - Two-way tephlone electromagnetic valve - Google Patents

Two-way tephlone electromagnetic valve Download PDF

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Publication number
CS256185B1
CS256185B1 CS863715A CS371586A CS256185B1 CS 256185 B1 CS256185 B1 CS 256185B1 CS 863715 A CS863715 A CS 863715A CS 371586 A CS371586 A CS 371586A CS 256185 B1 CS256185 B1 CS 256185B1
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CS
Czechoslovakia
Prior art keywords
way
tephlone
electromagnetic valve
bellows
flow
Prior art date
Application number
CS863715A
Other languages
Czech (cs)
Slovak (sk)
Other versions
CS371586A1 (en
Inventor
Peter Michalec
Original Assignee
Peter Michalec
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 Peter Michalec filed Critical Peter Michalec
Priority to CS863715A priority Critical patent/CS256185B1/en
Publication of CS371586A1 publication Critical patent/CS371586A1/en
Publication of CS256185B1 publication Critical patent/CS256185B1/en

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  • Details Of Valves (AREA)

Abstract

Ventil rieši prietok a dávkovanie agresívnych plynov a kvapalin. V komoře je otvor opatřený vybráním pre utesnenie prietoku médií sedlom s vlnovcom, ktorý je nalisovaný do tiahla, tak, že je přitahované cievtkou cez kolík piestom a dochádza k vtiahnutiu pružiny a dosedacieho kolíka do otvoru v pieste, pričom dochádza ik zmršťovaniu sedla s vlnovcom.The valve solves the flow and dosing of aggressive gases and liquid. There is in the chamber a hole provided with a recess for sealing the flow media with a bellows seat that is pressed into the rod, so that it is attracted the coil through the pin with the plunger and occurs pulling the spring and bearing pin into opening in the piston, while shrinking bellows seats.

Description

Vynález rieši dvojcestný teflonový elektromagnetický ventil pre reguláciu prietoku agresívnych plynov a kvapalín.The invention provides a two-way Teflon solenoid valve for controlling the flow of aggressive gases and liquids.

Doposiaí sa dávkovanie agresívnych médií vykonává výlučné ručně. Nevýhodou je prácna manipulácia pri dávkovaní i vypuštění médií, pri ktorej može dójsť k pracovnému úrazu poleptáním. Ďalšou nevýhodou je nerovnoměrné dávkovanie médií.So far, the dosing of aggressive media is carried out exclusively by hand. The disadvantage is labor manipulation during dosing and draining of the media, which can cause work injury due to burns. Another disadvantage is the uneven dosing of the media.

Uvedené nevýhody odstraňuje dvojcestný teflonový elektromagnetický ventil, ktorého podstata spočívá v tom, že do teflonového sedla s vlnovcom, ktoré uzatvára prietok média v komoře, je nalisované tiahlo.The above-mentioned disadvantages are overcome by a two-way Teflon solenoid valve, which is based on the fact that a rod is pressed into the Teflon seat with bellows, which closes the flow of medium in the chamber.

Zavedením ventilu do výroby dQjde k rovnoměrnému a přesnému dávkovaniu médií, odstráneniu ručnej manipulácie a úspoře devizových prostriedkov pri nákupe obdobných ventilov z NŠ.The introduction of the valve into the production process will result in a uniform and accurate dosing of the media, removal of manual handling and saving of foreign exchange resources when purchasing similar valves from the primary school.

Na prípojenom výkrese je znázorněné riešenie vynálezu, kde na obrázku je nárys vynálezu v piečnom řeze.The accompanying drawing shows a solution of the invention, in which the figure shows a front view of the invention in a sectional view.

Ventil podlá vynálezu pozostáva z ovládacej časti elektromagnetického obvodu, do ktorej patří cievka 1, a mechanickej časti, do ktorej patří komora 10, v ktorej je nastorutkovaná komora piestu 11, utěsněné těsněním 9, pričom komora- piestu 11 dotláča cez podložku 7 sedlo s vlnovcom 8, ktoré je nalisované do tiahla 61 Tiahlo 6 je přitahované cievkou 1 cez kolík 5 piestom 4 do jadra cieviky 1 a dochádza k vtiahnutiu pružiny 3 a dosedacieho kolíka 2 do otvoru v pieste 4, pričom dochádza k zmršťovaniu sedla s vlnovcom 8 a dochádza k otvoreniu ventilu. Pružina 3 spolu s dosedacíím kolikom 2 vytvára tlak pre uzatvorenie prietoku na sedlo s vlnovcom 8.The valve according to the invention consists of an actuating part of the electromagnetic circuit to which the coil 1 belongs and a mechanical part to which the chamber 10, in which the piston chamber 11 is screwed, is sealed by a gasket 9, 8, which is pressed into the rod 61 The rod 6 is attracted by the coil 1 through the pin 5 by the piston 4 to the core of the coil 1 and the spring 3 and the locating pin 2 are pulled into the bore in the piston 4. opening the valve. The spring 3 together with the bearing pin 2 creates a pressure to close the flow to the bellows seat 8.

Claims (1)

Dvojcestný teflonový elektromagnetický ventil, ktorý obsahuje ovládaciu část elektromagnetického obvodu a mechanlckú část,A two-way Teflon solenoid valve that includes a control part of the electromagnetic circuit and a mechanical part, YNÁLEZU vyznačený tým, že do teflonového sedla s vlnovcom (8) je nalisované tiahlo (6).The invention is characterized in that a tie rod (6) is pressed into the teflon seat with the bellows (8).
CS863715A 1986-05-21 1986-05-21 Two-way tephlone electromagnetic valve CS256185B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CS863715A CS256185B1 (en) 1986-05-21 1986-05-21 Two-way tephlone electromagnetic valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CS863715A CS256185B1 (en) 1986-05-21 1986-05-21 Two-way tephlone electromagnetic valve

Publications (2)

Publication Number Publication Date
CS371586A1 CS371586A1 (en) 1987-08-13
CS256185B1 true CS256185B1 (en) 1988-04-15

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Family Applications (1)

Application Number Title Priority Date Filing Date
CS863715A CS256185B1 (en) 1986-05-21 1986-05-21 Two-way tephlone electromagnetic valve

Country Status (1)

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CS (1) CS256185B1 (en)

Also Published As

Publication number Publication date
CS371586A1 (en) 1987-08-13

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