EP2942187B1 - Presse rotative - Google Patents

Presse rotative Download PDF

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Publication number
EP2942187B1
EP2942187B1 EP15164458.0A EP15164458A EP2942187B1 EP 2942187 B1 EP2942187 B1 EP 2942187B1 EP 15164458 A EP15164458 A EP 15164458A EP 2942187 B1 EP2942187 B1 EP 2942187B1
Authority
EP
European Patent Office
Prior art keywords
rotor
drive
rotary press
compression station
station
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.)
Active
Application number
EP15164458.0A
Other languages
German (de)
English (en)
Other versions
EP2942187A1 (fr
Inventor
Annett Janke
Sven Kolbe
Adam Hamdam
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.)
Fette Compacting GmbH
Original Assignee
Fette Compacting GmbH
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 Fette Compacting GmbH filed Critical Fette Compacting GmbH
Publication of EP2942187A1 publication Critical patent/EP2942187A1/fr
Application granted granted Critical
Publication of EP2942187B1 publication Critical patent/EP2942187B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B11/00Presses specially adapted for forming shaped articles from material in particulate or plastic state, e.g. briquetting presses, tabletting presses
    • B30B11/02Presses specially adapted for forming shaped articles from material in particulate or plastic state, e.g. briquetting presses, tabletting presses using a ram exerting pressure on the material in a moulding space
    • B30B11/08Presses specially adapted for forming shaped articles from material in particulate or plastic state, e.g. briquetting presses, tabletting presses using a ram exerting pressure on the material in a moulding space co-operating with moulds carried by a turntable
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B15/00Details of, or accessories for, presses; Auxiliary measures in connection with pressing
    • B30B15/0023Drive arrangements for movable carriers, e.g. turntables
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B15/00Details of, or accessories for, presses; Auxiliary measures in connection with pressing
    • B30B15/02Dies; Inserts therefor; Mounting thereof; Moulds
    • B30B15/026Mounting of dies, platens or press rams
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B15/00Details of, or accessories for, presses; Auxiliary measures in connection with pressing
    • B30B15/02Dies; Inserts therefor; Mounting thereof; Moulds
    • B30B15/028Loading or unloading of dies, platens or press rams
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B15/00Details of, or accessories for, presses; Auxiliary measures in connection with pressing
    • B30B15/30Feeding material to presses
    • B30B15/302Feeding material in particulate or plastic state to moulding presses

Definitions

  • the invention relates to a rotary press comprising a press frame and a rotor arranged thereon with a die plate, with an upper punch holder for receiving a plurality of upper punches, with a lower punch holder for receiving a plurality of lower punches, with an upper cam carrier for supporting upper cam elements Guide the upper punch and with a lower cam carrier for supporting lower cam elements for guiding the lower punch, further comprising a rotor drive, with which the rotor is rotatably driven, further comprising at least one dosing, is filled in the material to be pressed in recordings of the die plate, and further comprising at least one upper printing station with at least one upper pressure roller and at least one lower printing station with at least one lower pressure roller.
  • the invention is therefore an object of the invention to provide a rotary press of the type mentioned above, wherein the rotor should be removed in comparison to the prior art simplified manner from the press frame.
  • the invention solves the problem in that coupling means are provided with which at least one used to operate the rotary press drive the rotary press is coupled to the rotor that used in a method of at least one for operating the rotary press Drive the rotor is lifted from its occupied for producing compacts operating position in a removal position, wherein the rotor from the removal position in the lateral direction of the press frame is removed.
  • the die plate of the rotor has recordings in a manner known per se, in which powder filled in the dosing station is pressed into compacts, in particular tablets.
  • the die plate may consist of ring segments or be formed in one piece annular.
  • the rotary press comprises in particular a plurality of revolving with the rotor, recorded in the upper punch recording upper punches and a plurality of rotating with the rotor, recorded in the lower punch receiving sub-punches, the upper and lower punches with the recordings in the die plate for producing the compacts interact.
  • the rotary press also includes in particular held on the upper cam carriers upper cam elements for guiding the upper punch and held on the lower cam carriers lower cam elements for guiding the lower punch.
  • coupling means are provided, via which a drive of the rotary press, which is already available and used for the operation of the rotary press, can be used to lift the rotor into its removal position.
  • the coupling means couple this drive with the rotor.
  • the rotor In the removal position, the rotor is lifted by the rotor shaft connected to the rotor drive such that it can be removed from the press frame in the lateral direction, for example with a corresponding removal device.
  • lifting forces no longer have to be exerted for lifting the rotor by the removal device. Accordingly, this sampling device requires no lifting drive.
  • the rotor can also be lowered from its removal position into its operating position by means of the drive of the rotary press, which is already present and used for the operation anyway, via the coupling means. This can be done without or with attachment of additional components to the drive.
  • the at least one drive which can be coupled to the rotor via the coupling means can drive at least one drive used for the operation of the rotary press Be Dosierstationsantrieb, which serves to adjust the height of at least one dosing.
  • the upper printing stations are usually moved upwards and the lower printing stations moved down so that the rotor between the upper and lower pressure rollers can be removed from the press frame.
  • the coupling means with the rotor at least one used for the operation of the rotary press drive at least one printing station drive, which serves to adjust the height of at least one upper and / or at least one lower printing station.
  • the press drives of the rotary press are capable of applying the forces required to lift the rotor. The anyway required for the removal of the rotor traversing movement of the printing stations in their respective parking position is advantageously used for raising the rotor in the removal position.
  • all upper printing station drives and / or all lower printing station drives can be coupled via the coupling means to the rotor for lifting (or lowering) the rotor.
  • the coupling means may comprise at least one tension element attached to at least one upper pressure station, in particular to at least one fork plate carrying an upper pressure roller, on the one hand and the rotor, in particular the upper cam carrier or the upper punch receptacle of the rotor.
  • at least one tension element can be attached to each upper pressure station drive, in particular to each upper fork plate. The tension elements are then all attached to the rotor. When moving the upper printing station drives or upper printing stations up into their parking position, they also pull the rotor upwards into its removal position.
  • the at least one tension element can be fastened to a support lug arranged on the upper cam carrier, wherein in the removal position of the rotor a removal arm of a removal device can engage the support lug for laterally removing the rotor from the press frame.
  • a support lug may be formed, for example mushroom-shaped.
  • the at least one tension member may be releasably attached to the at least one upper pressure station and / or releasably attached to the rotor.
  • the at least one tension element can furthermore be at least one tension rod.
  • the coupling means may comprise according to a further embodiment, at least one on at least one lower pressure station, in particular on at least one lower pressure roller bearing fork plate, on the one hand and on the rotor, in particular the lower cam carrier or the lower punch holder of the rotor, on the other hand fixed push element.
  • at least one pusher element can be attached to each lower printing station drive, if a plurality of lower printing station drives are provided. The pushers are then in turn all also attached to the rotor.
  • the lower pressure station drives push the rotor via the pushers in an upward movement also upwards in its removal position.
  • the at least one thrust element can be at least one thrust angle. About such a thrust angle, the high forces can be transmitted safely.
  • the at least one pusher element may be releasably attached to the at least one lower pressure station and / or releasably attached to the rotor.
  • the rotary press comprises a rotor shaft coupled to the rotor drive on the one hand and the rotor on the other hand, wherein the coupling means comprise a rotor shaft surrounding, rotatably mounted and on the rotor, in particular the lower cam carrier or the lower punch receiving the rotor, fitting Hubmanschette, is provided on the at least one engaging element which by rotation of the lifting sleeve selectively engaged and disengaged at least one lower printing station can be brought, wherein in an engagement between the at least one lower printing station and the at least one engagement element by a method of at least one lower printing station up the lifting sleeve and thus the rotor are raised.
  • the coupling means comprise a rotor shaft surrounding, rotatably mounted and on the rotor, in particular the lower cam carrier or the lower punch receiving the rotor, fitting Hubmanschette
  • the engagement element or possibly the plurality of engagement elements can be brought into engagement with all the lower pressure station drives, in particular one of the lower pressure rollers respectively holding fork plate of the lower pressure station drives in several lower pressure station drives.
  • the coupling means comprise a rotatably mounted cam ring on which at least one engagement element is provided, which is selectively engageable by rotation of the cam ring into engagement and out of engagement with the rotor, wherein in an engagement between the rotor and the at least one engagement element by a method of at least one lower pressure station of the lifting ring and thus the rotor are raised.
  • the coupling means comprise at least one with at least one lower pressure station drive on the one hand and the rotor, in particular the lower cam carrier or the lower punch receiving the rotor, on the other hand coupled lifting lever, wherein the rotor in a method of at least one lower printing station by the at least one lower pressure station drive is lifted down by the at least one lifting lever.
  • the lifting levers are then in turn all coupled to the rotor.
  • a lever mechanism in the manner of a rocker is realized via the lifting lever.
  • a process of the lower pressure station drives down to the park position causes a lifting of the rotor in its removal position.
  • the lever mechanism By the lever mechanism, a translation can be realized, which realizes short travels and travel times on the print station side.
  • the at least one lifting lever can be coupled to the rotor via at least one suitable element acting on the rotor, in particular on the lower cam carrier or on the lower punch seat of the rotor, for example at least one lifting rod.
  • the at least one printing station drive may be a spindle drive.
  • Spindle drives can transmit high forces in a precise manner. They usually each have a spindle and a spindle nut, wherein the spindle or the spindle nut are driven in rotation usually by an electric motor. As a result, the spindle or the spindle nut is moved axially.
  • the lifting lever is then coupled to the respectively axially moving component, that is to say the spindle or the spindle nut.
  • the spindle for example, each of the lower pressure station drives then actuates the lever mechanism via the lifting lever, which acts on the rotor and raises or lowers it.
  • FIG. 1 For example, an upper support plate 10 and a lower support plate 12 of a press frame of a rotary press are shown.
  • a rotor 16 of the rotary press is arranged on a rotor shaft 14 connected to a rotor drive.
  • the rotor 16 comprises a die plate 18 and an upper punch holder 20 for receiving a plurality of upper punches, not shown, and a lower punch holder 22 for receiving a plurality of lower punches also not shown.
  • the rotor 16 includes an upper cam carrier 24 for supporting upper cam elements, not shown, for guiding the upper punches and a lower cam carrier 26 for supporting lower cam elements, not shown, for guiding the lower punches.
  • the rotary press also includes two pairs of upper printing stations and two pairs of lower printing stations.
  • the two upper printing stations each comprise an upper pre-printing station with an upper pre-pressure guide housing 28.
  • the two lower printing stations each include a lower pre-printing station with a lower pre-pressure guide housing 30.
  • the upper printing stations each have an upper main printing station with an upper main printing guide housing 32.
  • the two lower printing stations comprise The upper printing stations each further comprise an upper pre-pressure roller 35 and an upper main pressure roller 36.
  • the lower pressure stations respectively comprise a lower pre-pressure roller 37 and a lower main pressure roller 38.
  • the pressure rollers 35, 36, 37 , 38 are each held by an upper fork plate 40 and a lower fork plate 42.
  • tie rods 44 are fixed with one end, which are secured with its other end to the upper cam carrier 24 of the rotor 16. So there are a total of four tie rods 44 are provided, of which in Fig. 1 only two are visible.
  • the upper and lower printing stations of the rotary press each comprise an upper or lower printing station drive, each comprising an in Fig. 2 to be recognized upper and lower drive motor 46, 48, wherein the drive motors 46, 48 via gear 50, 52 act on the upper and lower pressure stations.
  • the printing station drives are in the interests of clarity in the FIGS. 1 and 3 to 5 not shown.
  • the upper and lower printing stations can be moved up and down, as is well known.
  • Fig. 1 the rotor 16 is shown in its operating position, which it occupies for the production of compacts.
  • the rotor 16 can now be raised above the tie rods 44 by moving the upper printing station drives, and thus the upper printing stations be in its removal position in which it can be removed laterally from the press frame, for example by means of a removal device.
  • the lower printing stations can be moved by means of their printing station drives down to a parking position. It is thus used in a simple manner, the method in this case, the upper pressure station drives in their parking position up to simultaneously raise the rotor 16 in its removal position.
  • Fig. 2 shows a further embodiment of a non-inventive rotary press, wherein the in Fig. 2 shown rotary press largely in Fig. 1 shown rotary press corresponds.
  • rotary press shown differs from the in Fig. 1 shown merely in that instead of the attached to the upper cam carrier 24 tie rods 44 tie rods 54 are provided, which are fastened on the one hand to the upper fork plates 40 of the upper pressure stations and on the other hand to a central support lug 56 on the upper cam carrier 24.
  • This support lug 56 may for example be configured mushroom-shaped and serves for engaging a removal device for lateral removal of the rotor in its removal position from the press frame.
  • Such a mushroom-shaped projection 56 is for example in Fig. 3 to recognize. It can be provided in all embodiments.
  • the rotor 16 in the in Fig. 2 example shown by a method of the upper pressure station drives raised to its removal position, as already Fig. 1 were explained.
  • a further embodiment of a non-inventive rotary press is shown, in which case, for illustrative reasons, the upper support plate 10 and the upper printing stations are not shown. Again, this corresponds to Fig. 3 embodiment shown largely the embodiment of Fig. 1 .
  • Tie rods 44 connected to the upper pressure stations are in the embodiment of FIG Fig. 3 a total of four thrust angles 58 are provided, one of which is fixed on the one hand on the Voryak arrangementsgephasephin 30 and the main pressure guide housings 34 of the lower printing stations and on the other hand on the underside of the rotor 16, in particular the lower punch seat 22 engages.
  • About the thrust angle 58 can be moved from its operating position to its removal position by a process of the lower pressure stations, in particular the Vorpecializingsgephaseouse 30 and the main pressure guide housing 34 of the rotor 16.
  • Fig. 4 is a further embodiment of a non-inventive rotary press shown, which in turn largely from the embodiment Fig. 3 equivalent.
  • the upper support plate 10 and the upper printing stations are not shown.
  • a rotatably mounted on the lower support plate 12 cam ring 60 is provided which engages over a plurality of lifting rods 62 on the lower cam carrier 26 of the rotor 16.
  • On the lifting ring 60 four engaging rods 64 are pivotally mounted in the illustrated example, which project from the surface of the cam ring 60 upwards and are angled at its free end to the outside.
  • the engagement bars 64 can be brought by suitable pivoting into engagement with the fork plates 42 of the lower pressure stations, in particular pivoted over the top of the fork plates 42. Be moved in this engaged position, the lower pressure stations by means of the lower pressure station drives up, they take mediated by the engaging rods 64 with the cam 60, which in turn via the lifting rods 62, the rotor 16 moves up into its removal position. By corresponding pivoting back the engagement rods 64 can be brought out of engagement with the fork plates 42 of the lower printing stations again.
  • FIG. 5 An alternative embodiment shows this Fig. 5 , This Ausfrumbleungsbeispiel largely corresponds to the in Fig. 4 shown embodiment.
  • no lifting ring 60 is provided with lifting rods 62 and engaging rods 64, but a surrounding the rotor shaft 14 manually or by means of a suitable drive rotatable lifting sleeve 68.
  • the lifting sleeve 68 has in the example shown four pressure angle 70, starting from the top of the lifting sleeve 68th extend to the outside.
  • Fig. 5 This Ausfrumbleungsbeispiel largely corresponds to the in Fig. 4 shown embodiment.
  • no lifting ring 60 is provided with lifting rods 62 and engaging rods 64, but a surrounding the rotor shaft 14 manually or by means of a suitable drive rotatable lifting sleeve 68.
  • the lifting sleeve 68 has in the example shown four pressure angle 70, starting from the top of the lifting sleeve 68th extend to the outside.
  • the pressure angles 70 can be brought by suitable rotation of the lifting sleeve 68 into engagement with the fork plates 42 of the lower printing stations, in particular such that they are similar to the top of the fork plates 42 as in the embodiment of Fig. 4 cover provided engaging rods.
  • Analogous to the embodiment in FIG Fig. 4 take the lower pressure stations in a process above the pressure angle 70, the lifting sleeve 68 and thus the rotor 16 with in the removal position.
  • FIG. 6 An inventive embodiment is in Fig. 6 shown, which in turn largely the embodiment of Fig. 4 equivalent.
  • a rotatable cam ring 71 is provided.
  • the cam ring 71 may be both manually rotatable and by means of a suitable drive.
  • the lifting lever 72 is provided.
  • a respective spindle 73 of a lower printing station spindle drive engages at one end of one of the lifting levers 72, wherein the spindle 73 and the lifting lever 72 are articulated to one another.
  • the other end of the lifting lever 72 is also connected in each case with an attacking on the rotatable cam ring 71 lifting rod 74 hingedly.
  • By turning the cam ring 71 it can be selectively engaged with the rotor 16 or disengaged from the rotor 16.
  • the embodiment of the Fig. 6 is in a process of lower pressure station drives, in particular the spindles 73 down over the lifting lever 72 and the lifting rods 74 of the cam ring 71 and with appropriate engagement with the rotor 16 of the rotor 16 moved upward in its removal position.
  • the rotor can be raised both from its operating position to its removal position and lowered from its removal position to its operating position. All of the above-described coupling means between the printing station drives and the rotor can be permanently provided on the rotary press or temporarily, so dismountable, so that they are mounted only for raising or lowering of the rotor on the rotary press.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Press Drives And Press Lines (AREA)
  • Rotary Presses (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)

Claims (5)

  1. Presse rotative comportant un châssis de presse et un rotor (16) disposé sur celui-ci avec un disque à matrice (18), avec un logement de poinçon supérieur (20) destiné à recevoir une pluralité de poinçons supérieurs, avec un logement de poinçons inférieurs (22) destiné à recevoir une pluralité de poinçons inférieurs, avec un support de came supérieur (24) destiné à supporter des éléments de came supérieurs pour le guidage des poinçons supérieurs et avec un support de came inférieur (26) destiné à supporter des éléments de came inférieurs pour guider les poinçons inférieurs, comportant en outre un entraînement de rotor permettant d'entraîner le rotor (16) en rotation, comportant en outre au moins une station de dosage, dans laquelle un matériau à presser est rempli dans des logements du disque à matrice (18), et comportant en outre au moins une station de presse supérieure avec au moins un rouleau presseur supérieur (35, 36) et au moins une station de presse inférieure avec au moins un rouleau presseur inférieur (37, 38), dans laquelle il est prévu des moyens d'accouplement permettant d'accoupler de telle façon au moins un entraînement de la presse rotative utilisé pour le fonctionnement de la presse rotative avec le rotor (16), que lors d'un déplacement de l'au moins un entraînement utilisé pour le fonctionnement de la presse rotative, le rotor (16) est relevé hors de sa position de fonctionnement adoptée pour la fabrication de comprimés vers une position de retrait, le rotor (16) pouvant être sorti de la position de retrait dans une direction latérale hors du châssis de presse, caractérisée en ce que l'au moins un entraînement utilisé pour le fonctionnement de la presse rotative, apte à être accouplé au rotor (16) par les moyens d'accouplement, est au moins un entraînement de station de presse inférieur, lequel sert à régler la hauteur d'au moins une station de presse inférieure, et en ce que les moyens d'accouplement comportent au moins un levier de levage (72) apte à être accouplé d'une part à l'au moins un entraînement de station de presse inférieur et au rotor (16) d'autre part, le rotor (16) étant relevé par l'au moins un levier de levage (72) lors d'un déplacement de l'au moins une station de presse inférieure par l'au moins un entraînement de station de presse inférieur vers le bas.
  2. Presse rotative selon la revendication 1, caractérisée en ce que les moyens d'accouplement comportent un anneau de levage (71) monté de façon rotative, sur lequel il est prévu au moins un élément d'engagement apte à être sélectivement engagé avec le rotor (16) ou désengagé de celui-ci par une rotation de l'anneau de levage (71), sachant que l'anneau de levage (71) et donc le rotor (16) sont relevés par un déplacement de l'au moins une station de presse inférieure lors d'un engagement entre le rotor (16) et l'au moins un élément d'engagement.
  3. Presse rotative selon l'une des revendications précédentes, caractérisée en ce que l'au moins un levier de levage (72) est accouplé au rotor (16) par au moins un élément agissant sur le rotor (16).
  4. Presse rotative selon l'une des revendications précédentes, caractérisée en ce que l'au moins un entraînement de station de presse est un entraînement à broche.
  5. Presse rotative selon l'une des revendications précédentes, caractérisée en ce qu'une broche (73) ou un écrou de broche de l'au moins un entraînement de station de presse inférieur est accouplé(e) à l'au moins un levier de levage (72).
EP15164458.0A 2014-05-07 2015-04-21 Presse rotative Active EP2942187B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102014106405 2014-05-07
DE102014113211.4A DE102014113211B4 (de) 2014-05-07 2014-09-12 Rundläuferpresse

Publications (2)

Publication Number Publication Date
EP2942187A1 EP2942187A1 (fr) 2015-11-11
EP2942187B1 true EP2942187B1 (fr) 2019-02-06

Family

ID=52997329

Family Applications (1)

Application Number Title Priority Date Filing Date
EP15164458.0A Active EP2942187B1 (fr) 2014-05-07 2015-04-21 Presse rotative

Country Status (5)

Country Link
US (1) US9840055B2 (fr)
EP (1) EP2942187B1 (fr)
JP (1) JP6335837B2 (fr)
CN (1) CN105082602B (fr)
DE (1) DE102014113211B4 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015012005A1 (de) * 2015-09-18 2017-03-23 Gkn Sinter Metals Engineering Gmbh Stempelwerkzeug einer Sinterpresse und Verfahren hierzu
JP6561776B2 (ja) 2015-10-30 2019-08-21 株式会社デンソー 尿素水噴射装置
CN114981058A (zh) 2020-05-22 2022-08-30 工业制药资源公司 具有可移除转塔的旋转式压片机
CN113752360A (zh) * 2021-08-09 2021-12-07 广东鑫信智能装备有限公司 一种改良型旋转式粉末成型压机
CN113910668B (zh) * 2021-10-04 2022-07-01 丽申药业股份有限公司 一种复合酶片剂生产制备方法

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Publication number Priority date Publication date Assignee Title
DE8815075U1 (de) 1988-12-03 1990-04-05 Manesty Machines Ltd., Liverpool, Lancashire Tablettiermaschine
JPH0775799B2 (ja) * 1990-09-13 1995-08-16 日本ニユクリア・フユエル株式会社 回転式粉末圧縮成形機
JP2992529B1 (ja) * 1999-02-03 1999-12-20 株式会社菊水製作所 回転式粉末圧縮成形機
DE10113586A1 (de) 2001-03-20 2002-09-26 Kilian Gmbh & Co Kg Verfahren zur Demontage oder Montage der Maschinenteile von Rundlauf-Tablettenpressen und Rundlauf-Tablettenpresse
DE60126355T2 (de) 2001-09-05 2007-10-31 Courtoy N.V. Rundlauf-tablettierpresse und verfahren zum reinigen einer presse
DE102007057790B4 (de) * 2007-11-30 2011-02-10 Fette Gmbh Rundlaufpresse
DE102007057791B4 (de) * 2007-11-30 2010-12-16 Fette Gmbh Rundlaufpresse
DE102008006045B4 (de) * 2008-01-25 2010-06-24 Fette Gmbh Tablettenpresse
EP2262638A1 (fr) 2008-03-12 2010-12-22 Gea Courtoy NV Presse à comprimer rotative comprenant une tourelle dotée de pièces remplaçables et procédé de remplacement des pièces de la tourelle
JP5199718B2 (ja) * 2008-04-07 2013-05-15 モリマシナリー株式会社 ロータリプレス
JP4774423B2 (ja) * 2008-05-09 2011-09-14 株式会社畑鉄工所 回転盤着脱支援設備を備えた回転式粉末圧縮成型機
DE102009020196A1 (de) 2009-05-07 2010-11-11 Korsch Ag Rundlaufpresse insbesondere zur Herstellung von Tabletten

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Title
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Also Published As

Publication number Publication date
JP6335837B2 (ja) 2018-05-30
DE102014113211B4 (de) 2020-01-23
CN105082602A (zh) 2015-11-25
US9840055B2 (en) 2017-12-12
CN105082602B (zh) 2017-12-12
JP2015213959A (ja) 2015-12-03
DE102014113211A1 (de) 2015-11-12
US20150321435A1 (en) 2015-11-12
EP2942187A1 (fr) 2015-11-11

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