Hydrocyclone apparatus
专利摘要:
A hydrocyclone assembly consisting of two identical hydrocyclones having accept tubes directed against each other so that the longitudinal axes of the hydrocyclones are aligned, and including a joint feed chamber and a joint accept chamber in which the combined accept fraction from the hydrocyclones accumulates. The accept ends of the hydrocyclones' accept tubes are connected with each other and the accept fractions are conducted into and combined in connecting ducts which communicate with the accept chamber. 公开号:SU953972A3 申请号:SU772555701 申请日:1977-11-01 公开日:1982-08-23 发明作者:Суракка Йорма;Ланкинен Матти 申请人:Энсо-Гутцайт Осакейхтие (Фирма); IPC主号:
专利说明:
(54) HYDROCYCLONE DEVICE one The image refers to the devices for clarifying and drying the suspensions. Classification of granular material, sewage treatment and can be used in pulp and paper, chemical and other industries. A device for cleaning suspensions is known, comprising separating elements located in a housing divided by partitions into a supply chamber and chambers of refreshed and condensed fractions. The initial suspension is supplied through the feed chamber to the separation electrodes, where it is separated by the action of centrifugal forces. Separation products are discharged through the chambers of the clarified and condensed fractions. The disadvantage of such a device is the difficulty in replacing and installing the separating elements due to the presence of axial pressure forces. The closest to the invention of the technical essence and the achieved The result is a hydrocyclone device containing separating elements mounted against each other in a housing divided by partitions into a pit chamber, a receiving chamber, a chamber of clarified and thickened fraction 2. However, for a known hydrocyclone device, the separation efficiency is not sufficiently high, due to the collision of the effluent streams in the chamber of the illumination: the faction. The aim of the invention is to increase the separation efficiency of the anti-collision avoidance stream. 15 This goal is achieved by the fact that in a hydrocyclone device containing living separating elements mounted against each other in a housing divided by partitions into a feed chamber, a receiving chamber, the cameras are illuminated. the condensed and condensed fractions, the chamber of the clarified frags is equipped with a separation plate, and the output ends of the separating elements are connected by nozzles connected to the receiving chamber. FIG. I is represented by a gypsy bike device, a section view is overthrown; in fig. 2 shows section A-A in FIG. I; in FIG. 3, section BB in FIG. 2, The gypsum clone device contains separating elements 1 mounted against each other in a housing divided by partitions into a feeding chamber 2, a receiving chamber 3, a chamber clarified 4 and dried 5 fractions. In chamber 4 of the clarified fraction, a separation plate 6 is installed, and the output ends of the separating elements I are connected to the receiving chamber by 3 nozzles 7. The device works as follows. The initial suspension through the feed chamber 2 enters the separating elements I and twists. Under the action of centrifugal forces, its separation occurs. The thickened fraction is discharged through the chamber 5 of the thickened fraction. The clarified enters the chambers 4 of the clarified fraction, which is common to two elements. Separation plate 6 prevents collision the outgoing flows in chamber 4. From chamber 4, the clarified fraction enters through inlet 7 to the receiving chamber 3. Due to the installation of the separation p / nstiny, the collision of the outflows is eliminated, as a result, the separation efficiency will be significantly increased. A hydraulic device containing separating elements mounted against each other in a housing divided by partitions into a feeding chamber, a receiving Chamber, chambers of clarified and condensed fractions, which, in order to increase separation efficiency by preventing collisions of outflows, the chamber the clarified fraction is provided with a separating plate, tin, and the output ends of the separating elements are provided with nozzles connected to a receiver ( Sources of information taken in attention during examination 1.Patent UK No. 1381239 cl. In 2 P, 1975. 2. USSR author's certificate number 548219, cl. B4 C 5/28, 1975 (prototype). - (( FIG .. 6-5 b z Fig.Z
权利要求:
Claims (1) [1] SUMMARY OF THE INVENTION A gyrocyclical device comprising separating elements mounted against each other in a housing separated by partitions into a supply chamber, a receiving chamber, and clarified and condensed fraction chambers, in order to increase separation efficiency by preventing collisions of the outgoing streams, the clarified fraction chamber is provided with a separation plate, and the output ends of the separating elements are equipped with nozzles connected to the receiving chamber ”
类似技术:
公开号 | 公开日 | 专利标题 SU953972A3|1982-08-23|Hydrocyclone apparatus DK506983A|1983-11-04|cyclone US4175036A|1979-11-20|Hydrocyclone separator SU1237086A3|1986-06-07|Sorting drum GB1500892A|1978-02-15|Degritting and fibre removal system KR840004874A|1984-10-31|Cyclone separator and cyclone separation method US4153558A|1979-05-08|Hydrocyclone separator US4510056A|1985-04-09|Hydrocyclone separator US3861532A|1975-01-21|Vortex separator SE305113B|1968-10-14| ES473136A1|1979-04-16|Cylindrical separator apparatus for separating mixtures of solids of different specific gravities, particularly for the mining industry SE8205011L|1984-03-03|cyclones FI62775C|1983-03-10|ANORDNING VID HYDROCYKLONSEPARATOR GB2164589A|1986-03-26|Separating mixtures of solids of different specific gravity US3487923A|1970-01-06|Apparatus for separating aqueous suspensions of solid particles RU183954U1|2018-10-10|DUAL INPUT HYDROCYCLON EP0036328A3|1982-01-13|Dual flow screening apparatus US4608174A|1986-08-26|Feed and accept duct system for hydrocyclones GB2125310A|1984-03-07|Dehydrating sieve apparatus SU1417928A1|1988-08-23|Method of classifying fibrous materials SU986507A1|1983-01-07|Multihydrocyclone KR930011078B1|1993-11-20|Apparatus for purifying suspension FI87245B|1992-08-31|INMATNINGSSYSTEM FOER MESAUGN. SU971496A1|1982-11-07|Multihydrocyclone SU895519A1|1982-01-07|Hydraulic cyclone
同族专利:
公开号 | 公开日 PT67210B|1979-03-26| US4148722A|1979-04-10| IT1090196B|1985-06-18| MX144291A|1981-09-23| FR2369000A1|1978-05-26| NZ185532A|1980-10-24| PT67210A|1977-11-01| DE2747912C2|1982-12-09| BR7707306A|1978-07-25| CA1105890A|1981-07-28| IN148847B|1981-06-27| FR2369000B1|1985-01-18| DE2747912A1|1978-05-11| SE423599B|1982-05-17| AT354240B|1979-12-27| FI56868C|1980-04-10| AU509775B2|1980-05-22| GB1561937A|1980-03-05| NO773731L|1978-05-03| AR214344A1|1979-05-31| SE7712247L|1978-05-02| JPS6044021B2|1985-10-01| FI56868B|1979-12-31| ES463638A1|1978-08-01| AU3015377A|1979-05-03| YU261677A|1982-06-30| JPS5356761A|1978-05-23| FI763102A|1978-05-02| ATA767477A|1979-05-15|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US3535850A|1966-10-28|1970-10-27|Hans J P Von Ohain|Centrifugal particle separator| DE1955015C2|1968-11-20|1982-11-25|Aktiebolaget Celleco, Tumba|Multiple hydrocyclone| US3731800A|1970-11-27|1973-05-08|Polaroid Corp|Counter-current centrifugal device and use| US3959123A|1972-10-04|1976-05-25|Nils Anders Lennart Wikdahl|Hydrocyclone separator unit with downflow distribution of fluid to be fractionated and process| SU510269A1|1974-04-29|1976-04-15|Hydrocyclone for separating suspensions into fractions| US4019980A|1975-01-24|1977-04-26|The Bauer Bros. Co.|Multiple hydrocyclone arrangement|CA1197478A|1982-05-26|1985-12-03|Graham B. Chivrall|Cyclone separators| SE435142B|1983-02-24|1984-09-10|William Robinson|GROUP OF HYDROCYCLONES AND APPLICATION OF CAPS, FOR INCLUDING IN S BATTERIES OF CYCLONES, FOR CLEANING EXV FIBER SUSPENSIONS| FI74894C|1984-03-19|1988-04-11|Enso Gutzeit Oy|DUBBELHYDROCYKLON.| FI68368C|1984-03-20|1985-09-10|Enso Gutzeit Oy|MATAR- OCH ACCEPTKANALSYSTEM FOER HYDROCYKLONER| GB2230482A|1986-10-03|1990-10-24|Carroll Noel|Cyclone separator| JPS63115116U|1987-01-22|1988-07-25| US5154826A|1987-09-15|1992-10-13|Delawood Pty. Ltd.|Hydrocyclone overflow transport| DE4404661A1|1994-02-14|1995-08-17|Stiftung Inst Fuer Werkstoffte|Arrangement for separation in a cyclone| US6517733B1|2000-07-11|2003-02-11|Vermeer Manufacturing Company|Continuous flow liquids/solids slurry cleaning, recycling and mixing system|
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申请号 | 申请日 | 专利标题 FI763102A|FI56868C|1976-11-01|1976-11-01|HYDROCYKLONANORDNING| 相关专利
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