EP2004315B1 - Homogeneiseur comportant un rotor, un inducteur (vis inducteur) pouvant tourner dans le sens oppose au rotor et un rotor a contre-courant pouvant tourner en direction opposee au rotor - Google Patents

Homogeneiseur comportant un rotor, un inducteur (vis inducteur) pouvant tourner dans le sens oppose au rotor et un rotor a contre-courant pouvant tourner en direction opposee au rotor Download PDF

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Publication number
EP2004315B1
EP2004315B1 EP06710603A EP06710603A EP2004315B1 EP 2004315 B1 EP2004315 B1 EP 2004315B1 EP 06710603 A EP06710603 A EP 06710603A EP 06710603 A EP06710603 A EP 06710603A EP 2004315 B1 EP2004315 B1 EP 2004315B1
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EP
European Patent Office
Prior art keywords
teeth
rotor
rows
row
substances
Prior art date
Legal status (The legal status 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 status listed.)
Not-in-force
Application number
EP06710603A
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German (de)
English (en)
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EP2004315A1 (fr
Inventor
Urs Nadler
Uwe Klaumunzner
Sasche Lais
Hans-Ruedi Zimmermann
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
FrymaKoruma AG
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FrymaKoruma AG
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Filing date
Publication date
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Priority to PL06710603T priority Critical patent/PL2004315T3/pl
Publication of EP2004315A1 publication Critical patent/EP2004315A1/fr
Application granted granted Critical
Publication of EP2004315B1 publication Critical patent/EP2004315B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F23/00Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
    • B01F23/40Mixing liquids with liquids; Emulsifying
    • B01F23/43Mixing liquids with liquids; Emulsifying using driven stirrers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F23/00Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
    • B01F23/40Mixing liquids with liquids; Emulsifying
    • B01F23/47Mixing liquids with liquids; Emulsifying involving high-viscosity liquids, e.g. asphalt
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/40Mixers with rotor-rotor system, e.g. with intermeshing teeth
    • B01F27/41Mixers with rotor-rotor system, e.g. with intermeshing teeth with the mutually rotating surfaces facing each other
    • B01F27/411Mixers with rotor-rotor system, e.g. with intermeshing teeth with the mutually rotating surfaces facing each other provided with intermeshing elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F2215/00Auxiliary or complementary information in relation with mixing
    • B01F2215/04Technical information in relation with mixing
    • B01F2215/0413Numerical information
    • B01F2215/0418Geometrical information
    • B01F2215/0422Numerical values of angles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F2215/00Auxiliary or complementary information in relation with mixing
    • B01F2215/04Technical information in relation with mixing
    • B01F2215/0413Numerical information
    • B01F2215/0436Operational information
    • B01F2215/0468Numerical pressure values

Definitions

  • the invention relates to a homogenizer device for dispersing and / or homogenizing liquid to viscous substances, comprising a container having one or more opening for introducing the substances to be processed, which mix in the container to a liquid to be processed, wherein the container in a central region of its bottom has an opening for supplying the substances into a processing unit, which contains at least two independently drivable, concentrically arranged, circular-shaped sprockets, which are separated from each other by a predetermined gap, the substances from a central region through the Interspace can be guided in a peripheral region of the sprockets, wherein in the processing unit additionally arranged upstream of the sprockets conveyor for conveying the liquid under pressure in the direction of the sprockets is provided.
  • a homogenizer for homogenizing flowable materials comprising a rotor and a stator, which have mutually concentric teeth, and with means for the separate supply of two substances in an inlet opening of the homogenizer, of which a first radially inside and a second radially outside of a first rotor toothing opens in the inlet opening, wherein the rotor additionally comprises pumping wings which extend both radially inwardly and radially outwardly of the first rotor toothing, for a simpler and more secure admixing of substances to the mix or container contents and in particular a safe feeding of hard-to-mix components such as To allow powders, liquids, hot fats or the like.
  • a device for dispersing and / or homogenizing with a dispersing and / or homogenizing tool in which a pumpable substance or a pumpable mixture with at least one additive is miscible, wherein the pumpable substance from a container or from a pipe the dispersing and / Or homogenizing tool is zuleitbar, and wherein provided for the one or more additives a supply line is, which opens in the supply line of the pumpable material in front of the tool, and the supply line and the supply line are arranged concentrically to each other at least in the region of the mouth.
  • At least one pump is arranged at a distance in front of the dispersing and / or homogenizing tool and before the mouth of the feed line whose pump pressure in the flow direction in the region of the mouth of the feed line is less than the suction pressure of the dispersing and / or homogenizing tool. and wherein in the feed line of the pumpable substance from the pump to the mouth of the feed line, a device for changing or reducing the cross section of this feed line is arranged.
  • the devices of the type mentioned are used in the prior art to homogenize viscous substances at high speed of the respective sprockets. With the high speeds of the sprockets acting on the substances to be processed centrifugal forces are connected, which cause a pumping action, which in turn leads to the formation of a substance promoting negative pressure.
  • the known devices have the disadvantage that form with the formation of negative pressure cavities in the substances, on the one hand limit the pump power from a critical speed and further increase the speed on the other hand promote corrosion and premature wear of material.
  • the object of the invention is therefore to provide a homogenizer device with which a high efficiency cavitation formation is largely prevented.
  • the conveyor is designed as two to four partially overlapping wing Inducerschraube comprising countercurrent rotor inner and an outer row of teeth, which are arranged concentrically to each other, and the teeth at least one the rows of teeth of the countercurrent rotor are arranged with respect to the relevant Zahn Holntangente in an angle different from 0 ° so that a fluid pressure is generated in the direction of the center of the row of teeth.
  • the countercurrent rotor comprises an inner and an outer row of teeth which are arranged concentrically to each other, and the teeth of at least one of the rows of teeth of the countercurrent rotor are arranged with respect to the respective Zahn Holntangente at an angle other than 0 ° so that a fluid pressure is to be generated in the direction of the center of the row of teeth, that in Processing unit so strong pressure builds up that a formation of cavities in the substances to be processed is reliably prevented.
  • the homogenizer device according to the invention operates on the basis of a sprocket dispersing device. This is inventively incorporated in a vacuum process plant.
  • the product is processed until the required quality has been achieved. Thereafter, the product must be vented. This is done by keeping the vacuum in the system even further is reduced to gas pressure values, which are in practice under 80 mbar.
  • the cause of cavitation is usually a local pressure reduction, in particular in the region of a blade channel inlet of an impeller, wherein regions of such pressure reductions are inevitably formed with the flow around the blade inlet edges with fluid and the energy transfer from impeller blades to the pumped liquid.
  • cavitation can also occur in other areas of local pressure reduction in a pump, such as at the leading edges of stator vanes, housing tongues, split rings, etc.
  • the rotor takes on the pumping or conveying effect by sucking out the product from the cutting gap, so to speak, via the tool geometry (pumping blade, etc.). This means that a negative pressure is created in the shear gap by the suction effect and by the inertia of the product, which is particularly noticeable in the case of highly viscous products. This negative pressure is superimposed by the prevailing pressure in the container of the technical vacuum.
  • the pressure in a liquid is lower the higher its flow velocity. If the flow velocity is so high that the pressure falls below the evaporation pressure of the liquid, it goes into its gaseous state, and cavitation occurs. In the corresponding evaporation process gas bubbles are formed in the liquid.
  • the space occupied by a given quantity of vaporized, ie gaseous, water is about a thousand times larger in a normal pressure range of the technical vacuum than the space occupied by the same amount of liquid water.
  • the implosion results in a stochastically oriented liquid jet called a microjet, which with a certain probability also impinges on the surface of an impeller blade at high speed and these on the one hand eroded and on the other hand by sudden pressure load oscillates and thus exposes a strong material stress.
  • a microjet stochastically oriented liquid jet
  • the wings of the Inducerschraube preferably overlap in an angular range of 50 ° to 80 °, in particular in an angular range of 65 °, wherein the wings preferably have a pitch of about 20% to 40% and in particular of about 30%.
  • the Inducerschraube is disposed within a hollow cylinder through which the substances to be processed happen.
  • the two sprockets are driven in opposite directions.
  • the two sprockets preferably each have a plurality of concentric rows of teeth, wherein a first group of rows of teeth acts as a rotor and a second group of rows of teeth acts as counter-current to the rotor driven countercurrent rotor.
  • the counterflow rotor preferably contains three rows of teeth arranged concentrically with one another.
  • the pressure to be generated towards the center of the row of teeth prevents cavitation in a very effective manner at the very spot where the largest problems associated therewith have arisen in conventional devices.
  • the teeth of the inner row of teeth with respect to the respective Zahn Herbertntangente are arranged in a different angle from 0 ° so that upon rotation, a fluid pressure is generated in the direction of the center of the ring gear, wherein the teeth in counter-rotating sprockets in opposite directions are oriented.
  • the teeth of both the inner and the outer rows of teeth generally to produce a fluid pressure in the direction of the center of the toothed rim.
  • the teeth of the outer row of teeth is preferably provided by a different angle of 90 ° of the short sides of the cuboid. This angle can for example be sized at about 45 °.
  • the teeth of the two rows of teeth of the countercurrent rotor are preferably arranged offset so that a gap between the teeth of a row of teeth in the radial direction does not come to rest in the teeth of the other row of teeth. This measure also supports the generation of the strongest possible pressure in the direction of the center of the ring gear.
  • the teeth of at least one of the rows of teeth of the rotor are arranged at an angle other than 0 ° with respect to the respective teeth row tangent so as to generate a fluid pressure toward the center of the rows of teeth, with the teeth of a rotor row opposite to the rotor driven countercurrent rotor are oriented with respect to the respective Zahn Holntangente in the opposite direction of a countercurrent row of teeth.
  • the teeth of an inner row of teeth of the rotor are preferably arranged at a greater distance from each other than the teeth of an outer row of teeth.
  • a tooth is preferably formed substantially cuboid, wherein the distance between two adjacent teeth of a ring gear is dimensioned smaller than the length of a tooth.
  • the device according to the invention it has generally been proven to firmly couple the Inducerschraube with one or more of the rows of teeth. It can be provided in particular that the Inducerschraube and the countercurrent rotor as part of a compact unit are formed, wherein the countercurrent rotor is designed as a double-toothed ring with two concentrically arranged rows of teeth. According to the device according to the invention it is provided that the teeth of at least one of the rows of teeth, preferably the inner row of teeth, with respect to the relevant Zahn Herbertntangente are arranged in a different angle from 0 ° so that a fluid pressure is generated in the direction of the center of the ring gear.
  • the rotor includes three concentric arranged rows of teeth, wherein a central row of teeth of the rotor between the two rows of teeth of the countercurrent rotor is arranged and the other two rows of teeth of the rotor flank the two rows of teeth of the countercurrent rotor inwardly and outwardly.
  • the processed substances are preferably returned to the container after passing through the processing unit for an iterative processing, wherein a return line preferably takes place in the region of the container bottom.
  • the in the FIGS. 1 to 9 illustrated homogenizer device 100 for dispersing and / or homogenizing liquid to viscous substances contains a container 110 with an opening, not shown, for introducing the substances to be processed.
  • the container 110 has an opening for supplying the substances into a central portion of its bottom Processing unit 120, the two independently drivable, concentrically arranged, circular toothed racks 130, 140, which are separated by a predetermined gap from each other, the substances from a central region through the gap in a peripheral region of the sprockets 130, 140 passed become.
  • a conveying device 150 is additionally provided in the processing unit 120, which conveys the substances under pressure in the direction of the sprockets 130, 140.
  • the conveyor 150 is disposed upstream of the sprockets 130, 140 and formed as three Inducerschraube 150 having partially overlapping wings 151.
  • the wings 151 overlap in an angular range of about 65 ° and have a slope of about 30%.
  • the inducer screw 150 is arranged inside a hollow cylinder through which the substances to be processed pass.
  • the two toothed rings 130, 140 each have a plurality of concentric rows of teeth, with a first group of rows of teeth acting as a rotor 130 and a second group of rows of teeth acting as a counter-rotating to the rotor 130 countercurrent rotor 140.
  • the counterflow rotor 140 comprises an inner 141 and an outer row of teeth 142, which are arranged concentrically to one another.
  • the teeth of the inner row of teeth 141 are arranged with respect to the respective Zahn Holntangente in an angle different from 0 ° so that at Rotation, a fluid pressure is generated in the direction of the center of the sprocket.
  • the teeth of both the inner 141 and the outer 142 rows of teeth generate a fluid pressure toward the center of the ring gear, wherein the teeth of the outer row of teeth 142 is provided for this purpose a different angle of incidence of the short parallelepiped sides.
  • the teeth of the two rows of teeth 141, 142 of the countercurrent rotor 140 are arranged offset so that a gap of the teeth of a row of teeth in the radial direction does not come to rest in the teeth of the other row of teeth.
  • the counterflow rotor 140 includes three rows of teeth arranged concentrically with each other.
  • the teeth of the rows of teeth of the rotor 130 are arranged with respect to the respective Zahn Holntangente in a different angle from 0 ° so that a fluid pressure towards the center of the rows of teeth is generated, the teeth of a rotor row of teeth with the rotor 130 counter-driven countercurrent rotor 140 are oriented with respect to the respective Zahn Holntangente in the opposite direction of a countercurrent row of teeth.
  • the teeth of an inner row of teeth 131 of the rotor 130 are arranged for this purpose to each other at a greater distance than the teeth of an outer row of teeth.
  • a tooth of the rows of teeth of the rotor 130 is formed substantially parallelepiped, wherein the distance between two adjacent teeth of a ring gear is dimensioned smaller than the length of a tooth.
  • the Inducerschraube 150 and the counterflow rotor 140 are formed as part of a compact unit, wherein the counterflow rotor 140 is designed as a double-toothed ring with two concentrically arranged rows of teeth 141, 142.
  • the rotor 130 includes three concentric arranged rows of teeth 131, 132, 133 wherein a central row of teeth 132 of the rotor 130 between the two rows of teeth 141, 142 of the countercurrent rotor 140 is arranged and the other two rows of teeth 131, 133 of the rotor 130, the two Tooth rows 141, 142 of the countercurrent rotor 140 flank inwards and outwards.
  • the substances After passing through the processing unit 120, the substances can be returned to the container 110 for iterative processing, whereby a return line into the bottom of the container 110 takes place.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)
  • Toys (AREA)
  • Rotary Pumps (AREA)
  • Refuse Collection And Transfer (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)

Claims (22)

  1. Dispositif homogénéisateur (100) destiné à disperser et/ou à homogénéiser des substances de liquides à visqueuses, comprenant un récipient (110) pourvu d'une ou de plusieurs ouvertures destinées à l'introduction des substances à traiter qui se mélangent dans le récipient (110) de manière à former le liquide devant être traité, le récipient (110) comportant dans une zone centrale de son fond une ouverture pour l'acheminement des substances dans une unité de traitement (120) qui renferme au moins deux couronnes dentées circulaires (130, 140), agencées concentriquement, actionnables indépendamment l'une de l'autre, qui sont séparées l'une de l'autre par un espace intermédiaire prédéterminé, les substances pouvant être canalisées à travers l'espace intermédiaire d'une zone centrale à une zone périphérique des couronnes dentées (130, 140), un dispositif de transport (150) agencé entre outre en amont des couronnes dentées (130, 140) dans l'unité de traitement (120) étant prévu pour le transport du liquide sous pression en direction des couronnes dentées (130, 140), caractérisé en ce que le dispositif de transport (150) est réalisé sous forme d'une hélice inductrice comportant deux à quatre aubes (151) se chevauchant partiellement, en ce que le contre-rotor (140) comprend une rangée intérieure (141) et une rangée extérieure (142) de dents agencées concentriquement l'une par rapport à l'autre, et en ce que les dents d'au moins une des rangées de dents (141, 142) du contre-rotor (140) sont agencées de telle manière dans un angle différent de 0° relativement à la tangente de rangée de dents correspondante, qu'une pression de liquide est générée en direction du centre de la rangée de dents.
  2. Dispositif selon la revendication 1, caractérisé en ce que trois aubes (151) se chevauchant partiellement sont prévues.
  3. Dispositif selon la revendication 2, caractérisé en ce que les aubes (151) se chevauchent dans une plage angulaire de 50° à 80°.
  4. Dispositif selon la revendication 2, caractérisé en ce que les aubes (151) se chevauchent dans une plage angulaire de 65°.
  5. Dispositif selon une des revendications de 1 à 4, caractérisé en ce que les aubes (151) présentent une inclinaison de 20° à 40°.
  6. Dispositif selon la revendication 5, caractérisé en ce que les aubes (151) présentent une inclinaison d'environ 30°.
  7. Dispositif selon une des revendications précédentes, caractérisé en ce que l'hélice inductrice (150) est agencée à l'intérieur d'un cylindre creux à travers lequel passent les substances devant être traitées.
  8. Dispositif selon une des revendications précédentes, caractérisé en ce que les deux couronnes dentées (130, 140) sont actionnables en sens contraires.
  9. Dispositif selon une des revendications précédentes, caractérisé en ce que les deux couronnes dentées (130, 140) comportent respectivement plusieurs rangées concentriques de dents, un premier groupe de rangées de dents agissant en tant que rotor (130), et un deuxième groupe de rangées de dents agissant en tant que contre-rotor (140) actionnable en sens opposé au rotor (130).
  10. Dispositif selon une des revendications de 1 à 9, caractérisé en ce que les dents de la rangée intérieure (141) sont agencées de telle manière dans un angle différent de 0° relativement à la tangente de rangée de dents correspondante, qu'une pression de liquide est générée en direction du centre de la couronne dentée lors de la rotation.
  11. Dispositif selon une des revendications de 1 à 9, caractérisé en ce que les dents des rangées intérieures (141) et des rangées extérieures génèrent une pression de liquide en direction du centre de la couronne dentée.
  12. Dispositif selon une des revendications 10 ou 11, caractérisé en ce qu'un angle d'attaque des côtés courts des parallélépipèdes différent de 90° est prévu pour les dents de la rangée extérieure (142).
  13. Dispositif selon une des revendications de 9 à 12, caractérisé en ce que les dents des deux rangées de dents (141, 142) du contre-rotor (140) sont agencées de manière décalée de telle sorte que, dans le sens radial, un interstice se trouvant entre les dents de la une rangée de dents ne vient pas se situer dans la zone des dents de l'autre rangée de dents.
  14. Dispositif selon une des revendications de 9 à 13, caractérisé en ce que le contre-rotor (140) comprend trois rangées de dents agencées concentriquement les unes par rapport aux autres.
  15. Dispositif selon une des revendications de 9 à 14, caractérisé en ce que les dents d'au moins une des rangées de dents du rotor (130) sont agencées de telle manière dans un angle différent de 0° relativement à la tangente de rangée de dents correspondante, qu'une pression de liquide est générée en direction du centre des rangées de dents, les dents d'une rangée de dents du rotor étant, relativement à la tangente de rangée de dents correspondante, orientées en direction opposée par rapport à une rangée de dents du contre-rotor, ce dernier étant actionné en sens opposé au rotor.
  16. Dispositif selon une des revendications de 9 à 15, caractérisé en ce que les dents d'une rangée de dents intérieure (131) de dents du rotor (130) sont agencées à une distance respectivement plus grande les unes des autres que les dents d'une rangée de dents extérieure (133).
  17. Dispositif selon une des revendications de 9 à 16, caractérisé en ce qu'une dent est réalisée sous forme essentiellement parallélépipédique, la distance entre deux dents voisines d'une couronne dentée étant inférieure à la longueur d'une dent.
  18. Dispositif selon une des revendications de 9 à 17, caractérisé en ce que l'hélice inductrice (150) est couplée à demeure à une ou plusieurs des rangées de dents du contre-rotor (140).
  19. Dispositif selon la revendication 18, caractérisé en ce que l'hélice inductrice (150) et le contre-rotor (140) sont conçus en tant que partie d'une unité compacte, le contre-rotor (140) étant réalisé sous forme de double couronne dentée comprenant deux rangées de dents agencées concentriquement (141, 142).
  20. Dispositif selon une des revendications de 14 à 19, caractérisé en ce que les trois rangées de dents du rotor (130) sont agencées concentriquement de telle manière qu'une rangée de dents médiane (132) du rotor (130) est agencée entre les deux rangées de dents (141, 142) du contre-rotor (140) et les deux autres rangées de dents (131, 133) du rotor (130) flanquent les deux rangées de dents (141, 142) du contre-rotor (140) sur l'intérieur et sur l'extérieur.
  21. Dispositif selon une des revendications précédentes, caractérisé en ce que, après leur passage à travers l'unité de traitement (120), les substances traitées sont réacheminables dans le récipient (110) pour un traitement interactif.
  22. Dispositif selon la revendication 21, caractérisé en ce qu'un réacheminement a lieu dans la zone du fond du récipient 110.
EP06710603A 2005-11-23 2006-02-16 Homogeneiseur comportant un rotor, un inducteur (vis inducteur) pouvant tourner dans le sens oppose au rotor et un rotor a contre-courant pouvant tourner en direction opposee au rotor Not-in-force EP2004315B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL06710603T PL2004315T3 (pl) 2005-11-23 2006-02-16 Homogenizator z wirnikiem i z przeciwnie do tego wirnika napędzanym kołem obiegowym (induktorem śrubowym) i z wirnikiem przeciwprądowym obracającym się przeciwnie do wirnika

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202005018432U DE202005018432U1 (de) 2005-11-23 2005-11-23 Homogenisator-Vorrichtung mit gegenläufig rotierbaren Zahnkränzen
PCT/IB2006/000734 WO2007060501A1 (fr) 2005-11-23 2006-02-16 Homogeneiseur comportant un rotor, un inducteur (vis inducteur) pouvant tourner dans le sens oppose au rotor et un rotor a contre-courant pouvant tourner en direction opposee au rotor

Publications (2)

Publication Number Publication Date
EP2004315A1 EP2004315A1 (fr) 2008-12-24
EP2004315B1 true EP2004315B1 (fr) 2010-08-11

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EP06710603A Not-in-force EP2004315B1 (fr) 2005-11-23 2006-02-16 Homogeneiseur comportant un rotor, un inducteur (vis inducteur) pouvant tourner dans le sens oppose au rotor et un rotor a contre-courant pouvant tourner en direction opposee au rotor

Country Status (7)

Country Link
US (1) US8721168B2 (fr)
EP (1) EP2004315B1 (fr)
JP (1) JP4888866B2 (fr)
AT (1) ATE477047T1 (fr)
DE (2) DE202005018432U1 (fr)
PL (1) PL2004315T3 (fr)
WO (1) WO2007060501A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2305370A1 (fr) 2009-09-30 2011-04-06 AZO Holding GmbH Homogénéisateur et dispositif d'homogénéisation doté d'un tel homogénéisateur
DE102008049265B4 (de) * 2008-09-26 2012-12-13 Azo Holding Gmbh Mischer

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Publication number Priority date Publication date Assignee Title
JP5173977B2 (ja) * 2009-10-14 2013-04-03 アキラ機工株式会社 攪拌造粒装置
TWI422433B (zh) * 2011-09-30 2014-01-11 Yang Te Hsu 生物醫學均質裝置
WO2015032008A1 (fr) * 2013-09-06 2015-03-12 Miteco Ag Dispositif pour mélanger et/ou homogénéiser au moins un produit liquide
CN116870775B (zh) * 2023-08-22 2024-04-26 深圳市尚水智能股份有限公司 制浆机

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JP3188141B2 (ja) * 1995-05-19 2001-07-16 日立機電工業株式会社 スクリュー型曝気機
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DE102008049265B4 (de) * 2008-09-26 2012-12-13 Azo Holding Gmbh Mischer
EP2305370A1 (fr) 2009-09-30 2011-04-06 AZO Holding GmbH Homogénéisateur et dispositif d'homogénéisation doté d'un tel homogénéisateur

Also Published As

Publication number Publication date
US20090225624A1 (en) 2009-09-10
JP4888866B2 (ja) 2012-02-29
JP2009518185A (ja) 2009-05-07
ATE477047T1 (de) 2010-08-15
WO2007060501A1 (fr) 2007-05-31
PL2004315T3 (pl) 2011-04-29
US8721168B2 (en) 2014-05-13
EP2004315A1 (fr) 2008-12-24
DE202005018432U1 (de) 2006-08-24
DE502006007668D1 (de) 2010-09-23

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