CS257140B1 - Device for continuous ultrasound cleaning - Google Patents
Device for continuous ultrasound cleaning Download PDFInfo
- Publication number
- CS257140B1 CS257140B1 CS865119A CS511986A CS257140B1 CS 257140 B1 CS257140 B1 CS 257140B1 CS 865119 A CS865119 A CS 865119A CS 511986 A CS511986 A CS 511986A CS 257140 B1 CS257140 B1 CS 257140B1
- Authority
- CS
- Czechoslovakia
- Prior art keywords
- ultrasonic
- cleaning
- radiator
- bed
- channel
- Prior art date
Links
- 238000004140 cleaning Methods 0.000 title claims abstract description 23
- 238000002604 ultrasonography Methods 0.000 title 1
- 238000004506 ultrasonic cleaning Methods 0.000 claims description 8
- 230000002262 irrigation Effects 0.000 claims 1
- 238000003973 irrigation Methods 0.000 claims 1
- 238000007789 sealing Methods 0.000 abstract 1
- 238000011010 flushing procedure Methods 0.000 description 4
- 239000007788 liquid Substances 0.000 description 3
- 239000012530 fluid Substances 0.000 description 2
- 239000012535 impurity Substances 0.000 description 2
- 239000004519 grease Substances 0.000 description 1
- 239000000463 material Substances 0.000 description 1
Landscapes
- Cleaning By Liquid Or Steam (AREA)
Abstract
Podstata riešenia spočívá v tom, že reflexná plocha oproti ultrazvukového žiariČa je situovaná na vydutom lóžku, ktoré tvoří súčasne vedenie čištěných súčiastok a uzatváraciu stenu čistiaceho kanála. Čistiaci priestor je přepojený aspoň jedným vyplachovacítn kanálom s priestorom čistiacej vane.The essence of the solution is that it is reflective area versus ultrasonic glow it is situated on a concave bed that forms at the same time guiding the cleaned parts and sealing the cleaning channel wall. cleansing the space is interconnected by at least one rinser channel with cleaning area bathtubs.
Description
Vynález sa týká riešenia zariadenia pre kontinuálně ultrazvukové čistenie, najma drótov a rúriek.The invention relates to a solution for continuous ultrasonic cleaning, in particular wires and tubes.
Doteraz známe zariadenia pre kontinuálně ultrazvukové čistenie sú založené váčšinou na využití účinkov ultrazvukovéj energie v takzvanom vzdialenom ultrazvukovom poli, kde ultrazvukové žiariče vyžarujú ultrazvukovú energiu do celého velkého priestoru čistiacej vane. Iné zariadenie pre ultrazvukové čistenie súčiastok využívá blízké ultrazvukové pole, ktorého podstata spočívá v tom, že vyžarovacia plocha ultrazvukového žiariči prichyteného na jednej zo stien malej vane, ktorá je umiestnená v těsnej blízkosti dopravníka, na ktorom sú čištěné súčiastky. V priestore vymedzenom plochami čištěných súčiastok a vyžarujúcou plochou ultrazvukového žlariča je stály přítok čistiacej kvapaliny. Vyžarujúce plochy niekolkých ultrazvukových žiaričov sú umiestnené za sebou jednostranné, alebo obojstranne, a to aj v dvoch rovinách. Súčasné riešenia nesplňajú však niektoré velmi náročné požíadavky na čistenie různých materiálov v tvare drůtov, rúriek, pásiek a iných tenkých a dlhých predmetov v kontinuálnom režime při vysokých rýchlostiach od pevne viazaných nečistůt na ich povrchu áko sú zbytky maziv, pilin, usadenín oxidov a podobné.The prior art devices for continuous ultrasonic cleaning are based largely on utilizing the effects of ultrasonic energy in the so-called distant ultrasonic field, where ultrasonic radiators emit ultrasonic energy throughout the large area of the cleaning tub. Another device for ultrasonic cleaning of components utilizes a near ultrasonic field, which is based on the fact that the radiating surface of the ultrasonic radiator is attached to one of the walls of a small tub located in close proximity to the conveyor on which the components are cleaned. There is a constant inflow of cleaning fluid in the space delimited by the surfaces of the parts to be cleaned and the radiating surface of the ultrasonic radiator. The radiating surfaces of several ultrasonic radiators are located one behind the other or on both sides, even in two planes. However, the present solutions do not meet some of the very demanding requirements for cleaning various materials in the form of wires, tubes, tapes and other thin and long objects in continuous mode at high speeds from tightly bound impurities on their surfaces, such as grease, sawdust, oxide deposits and the like.
Vyššie uvedené nedostatky odstraňuje a technický problém rieši zariadenie pre kontinuálně ultrazvukové čistenie podlá vynálezu, ktorého podstatou je, že reflexná plocha je situovaná na vydutom lůžku tvoriacom súčasne vedenie čištěných súčiastok a uzatváraciu stenu čistiaceho kanála, do ktorého je ultrazvukový žiarič čiastočne zapuštěný, a ktorý je přepojený aspoň jedným vyplachovacím kanálom s priestorom čistiacej vane.The above-mentioned drawbacks are eliminated and the technical problem is solved by the continuous ultrasonic cleaning device according to the invention, which is based on the reflective surface situated on the concave bed forming the guide of the cleaned parts and the closing wall of the cleaning channel into which the ultrasonic radiator is partially embedded. connected by at least one flushing duct with a cleaning tub space.
Zariadením pre kontinuálně ultrazvukové čistenie podlá vynálezu sa docieli toho, že v priestore medzi ultrazvukovým žiaričom a uzatváraciu stenu čistiaceho kanála, do trovaná ultrazvuková energia s vysokou intenzitou a velmi aktívnou kavitáciou, ktoré působia prostredníctvom čistiacej kvapaliny na povrch čištěných predmetov.The continuous ultrasonic cleaning device according to the invention achieves the fact that in the space between the ultrasonic radiator and the closure wall of the cleaning channel, ultrasonic energy of high intensity and very active cavitation is applied to the surface of the objects to be cleaned.
Na připojených výkresoch sú znázorněné příkladné riešenia zariadenia pre kontinuálně ultrazvukové čistenie, kde na obr. 1 je nakreslené zariadenie v řeze, ktorého reflektor má tvořené lůžko jednou válcovou častou, na obr. 2 je nakreslený žiarič a reflektor s lůžkom v tvare dvoch válcových častí v řeze, na obr. 3 je nakreslený žiarič a reflektor s prizmatickým lůžkom v řeze, a na obr. 4 je nakreslený žiarič a reflektor v tvare hranola v řeze.The accompanying drawings show exemplary solutions of a device for continuous ultrasonic cleaning, wherein FIG. 1 is a cross-sectional view of the device whose reflector has a bed formed by a cylindrical portion; FIG. 2 is a cross-sectional view of a radiator and reflector having a bed in the form of two cylindrical portions; FIG. 3 is a cross-sectional view of a radiator and reflector with a prismatic bed, and FIG. 4 is a cross-sectional view of a radiator and a prism-shaped reflector.
Zariadenie pre kontinuálně ultrazvukové čistenie pozostáva z ultrazvukovej kmitavej sústavy 1 tvorenej ultrazvukovou hlavicou 2 a ultrazvukovým žiaričom 4. Činná plocha 5 ultrazvukového žiariča 4 je tvořená válcovou plochou. Oproti činnej ploché 5 ultrazvukového žiariča 4 je umiestnený reflektor B, v ktorom je vytvořené vyduté lůžko 7 tvořené reflexnou plochou 3. Ultrazvukový žiarič 4 je s reflektorom B uložený v čistiacej váni 9, ktorá je naplněná čistiacou kvapalinou 10. V reflektore B je vytvořený vyplachovací kanál 11 spájajúci lůžko 7 s čistiacou kvapalinou 10 v čistiacej váni 9. Reflektor 6 je uchytený na ultrazvukovej hlavici 2 prostredníctvom držiaka 12. Ultrazvuková hlavica 2 je připojená na ultrazvukový generátor 13.The device for continuous ultrasonic cleaning consists of an ultrasonic oscillating system 1 formed by an ultrasonic head 2 and an ultrasonic radiator 4. The working surface 5 of the ultrasonic radiator 4 is formed by a cylindrical surface. In contrast to the active flat 5 of the ultrasonic radiator 4, a reflector B is arranged, in which a concave bed 7 formed by a reflective surface 3 is formed. The ultrasonic radiator 4 is embedded with the reflector B in a cleaning tank 9 filled with cleaning liquid 10. channel 11 connecting the bed 7 with the cleaning liquid 10 in the cleaning pan 9. The reflector 6 is mounted on the ultrasonic head 2 by means of the holder 12. The ultrasonic head 2 is connected to the ultrasonic generator 13.
U cfalšieho riešenia je činná plocha 5 ultrazvukového žiariča 4 tvořená dvoma časťamí válcových plůch. Lůžko 7 reflektora 6 je tvořené dvoma reflexnými plochami 3 v tvare válcových plůch 8, ktoré sú připojené s priestorom čistiacej vane 9 vyplachovacími kanálmi 11.In a lesser solution, the active surface 5 of the ultrasonic radiator 4 is formed by two portions of cylindrical surfaces. The bed 7 of the reflector 6 is formed by two reflective surfaces 3 in the form of cylindrical surfaces 8, which are connected to the space of the cleaning basin 9 by flushing channels 11.
Iné riešenie zariadenia má tvořenu činnú plochu 5 ultrazvukového žiariča 4 a reflexná plocha 3 lůžka 7 prizmatickou plochou 14. Lůžko 7 je s priestorom čistiacej vane 9 spojené prostredníctvom vyplachovacieho kanála 11.Another solution of the device comprises an active surface 5 of the ultrasonic radiator 4 and a reflective surface 3 of the bed 7 through a prismatic surface 14. The bed 7 is connected to the space of the cleaning bath 9 by means of a flushing channel 11.
Ďalšie riešenie zariadenia má rovnú činná plochu 5. Reflexná plocha 3 lůžka 7 je tvořená hranolovou plochou 15. Lůžko 7 je s priestorom čistiacej vane 9 spojené prostredníctvom vyplachovacích kanálov 11. Čistiaca vana 9 sa před čistěním naplní čistiacou kvapalinou 10. Po zapnutí ultrazvukového generátore 13 ultrazvukový žiarič začne vyžarovať ultrazvuková energiu smerom do lůžka 7, v ktorom sa v pozdlžnom smere posúva čištěná súčiastka 16, ktorá může byť v tvare drůtu, rúrky, připadne pásu. Vplyvom vyžarovanej ultrazvukovej energie, ktorá sa odráža od reflexných plůch 3 lůžka 7 a vplyvom čistiacej kvapaliny sa súčiastka 16 kontinuálně čistí od pevne viazaných nečistůt.Another solution of the device has a flat active surface 5. The reflective surface 3 of the bed 7 is formed by a prismatic surface 15. The bed 7 is connected to the space of the cleaning bath 9 by means of flushing channels 11. The cleaning bath 9 is filled with cleaning liquid 10 after cleaning. the ultrasonic radiator begins to emit ultrasonic energy towards the bed 7, in which the cleaned component 16, which may be in the form of a wire, a tube or a strip, is displaced in the longitudinal direction. Due to the radiated ultrasonic energy reflected from the reflective surfaces 3 of the bed 7 and the cleaning fluid, the component 16 is continuously cleaned of firmly bound impurities.
Claims (3)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CS865119A CS257140B1 (en) | 1986-07-07 | 1986-07-07 | Device for continuous ultrasound cleaning |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CS865119A CS257140B1 (en) | 1986-07-07 | 1986-07-07 | Device for continuous ultrasound cleaning |
Publications (2)
Publication Number | Publication Date |
---|---|
CS511986A1 CS511986A1 (en) | 1987-09-17 |
CS257140B1 true CS257140B1 (en) | 1988-04-15 |
Family
ID=5395452
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CS865119A CS257140B1 (en) | 1986-07-07 | 1986-07-07 | Device for continuous ultrasound cleaning |
Country Status (1)
Country | Link |
---|---|
CS (1) | CS257140B1 (en) |
-
1986
- 1986-07-07 CS CS865119A patent/CS257140B1/en unknown
Also Published As
Publication number | Publication date |
---|---|
CS511986A1 (en) | 1987-09-17 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US3066686A (en) | Sonic treating apparatus | |
DK31490D0 (en) | Ultrasonic GENNEMSTROEMNINGSMAALEINDRETNING | |
CA2094999A1 (en) | Sootblower with lance bypass flow | |
CS257140B1 (en) | Device for continuous ultrasound cleaning | |
RU97115463A (en) | DEVICE FOR FLUSHING SEDIMENT AND DEACTIVATION | |
MX9206202A (en) | WATER SUPPLY SYSTEM DUE TO NEGATIVE PRESSURE DIFFERENCE | |
BR9006269A (en) | SCRAPER INSTALLATION | |
EP0167338A3 (en) | Ultrasonic probe | |
ES2188998T3 (en) | ENERGY CONVERTER OF THE WAVES. | |
ATE12308T1 (en) | INSTANTANEOUS HEATER. | |
RU2024338C1 (en) | Method of cleaning internal side of pipe | |
CN208535305U (en) | A kind of ultrasonic water faucet | |
CN222792549U (en) | Mould cleaning device | |
SU1726679A1 (en) | Device for cleaning sanitary communication lines | |
CN216174630U (en) | Automatic cleaning device and vehicle | |
JPS59209692A (en) | Method and device for washing inner surface of pipe by ultrasonic wave | |
RU20489U1 (en) | VEHICLE GLASS CLEANING DEVICE | |
KR900007218Y1 (en) | Waste heat recovery system | |
RU2002101999A (en) | Dishwasher | |
SU545361A1 (en) | Ultrasonic Emitter for the Treatment of Diseases in the Tubular Cavities | |
SU867408A1 (en) | Dissolution apparatus | |
IT217078Z2 (en) | REFINEMENTS SUPPLIED TO A RADIATOR EQUIPPED WITH ELEMENTS SUITABLE TO GENERATE A TURBULENCE OF THE FLOW OF THE DIATHERMIC LIQUID PARTICULARLY FOR THE HEATING SYSTEM OF A MOTOR VEHICLE | |
RU95100736A (en) | Device for warming viscous liquid at draining from rail tank cars | |
RU13974U1 (en) | WATER HEATER | |
RU92009659A (en) | DEVICE FOR COOLING OF BATHTUB |