US3185129A - Apparatus for decorating filled chocolates, pastry, and the like - Google Patents

Apparatus for decorating filled chocolates, pastry, and the like Download PDF

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Publication number
US3185129A
US3185129A US159325A US15932561A US3185129A US 3185129 A US3185129 A US 3185129A US 159325 A US159325 A US 159325A US 15932561 A US15932561 A US 15932561A US 3185129 A US3185129 A US 3185129A
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United States
Prior art keywords
nozzle
nozzles
tube
nozzle tube
decoration
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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.)
Expired - Lifetime
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US159325A
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English (en)
Inventor
Sollich Helmut
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Baker Perkins Holdings Ltd
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Baker Perkins Holdings Ltd
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Publication date
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    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21CMACHINES OR EQUIPMENT FOR MAKING OR PROCESSING DOUGHS; HANDLING BAKED ARTICLES MADE FROM DOUGH
    • A21C15/00Apparatus for handling baked articles
    • A21C15/002Apparatus for spreading granular material on, or sweeping or coating the surface of baked articles
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G3/00Sweetmeats; Confectionery; Marzipan; Coated or filled products
    • A23G3/02Apparatus specially adapted for manufacture or treatment of sweetmeats or confectionery; Accessories therefor
    • A23G3/28Apparatus for decorating sweetmeats or confectionery
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T74/00Machine element or mechanism
    • Y10T74/18Mechanical movements
    • Y10T74/18544Rotary to gyratory

Definitions

  • This invention relates to an apparatus for the partly automatic or fully automatic decoration of filled chocolates, pastry, and the like with a mass which in the working condition is liquid or viscous but later hardens spontaneously or is hardened by a suitable process, and which is applied to the objects to be decorated in the form of dots or simple or artistically intertwined lines.
  • the apparatus according to the present invention eliminates these shortcomings and permits rationalisation of the respective production operation by automation, the degree of which can be selected to any desired extent up to completely automatic decoration, with any belt width and with a saving in personnel.
  • the present invention consists in a device for decorating confectionery products, wherein a number of adjustable nozzles are suspended above the products for movement in a generally horizontal plane, and means are provided for adjusting the opening of the nozzles during the ejection of a decorating material through the nozzles onto the products.
  • a plurality of nozzles which can be opened and closed to any desired extent by means of a nozzle needle, are inserted in the underside of a nozzle tube, side by side, while through their corresponding shape and through their points which when the nozzles are closed project out of the nozzle mouth the nozzle needles simultaneously clean the nozzles, when the latter are opened and closed, by removing impurities in the decoration mass or any decoration mass which has coagulated.
  • the decoration mass is pressed into the nozzle tube and distributed by the latter to the nozzles under pressure, and the nozzle tube is so suspended over the objects to be decorated as to be horizontally movable and by means of a mechanism moving it can be caused to perform a circu lar movement or a reciprocating movement in any direction, which can be regulated as desired.
  • the nozzle tube can be fed from the centre of the tube, but is preferably fed from one end of the tube, while the opposite end can be provided with an outlet aperture for excess mass, which is then fed back to the tempering machine or to a storage vessel.
  • the apparatus according to the invention can be used both over a decorating table on which the objects to be decorated are not in movement, and also preferably over a conveyor belt on which the objects to be decorated are transported. If the apparatus according to the invention is used for example in conjunction with a coating machine, the apparatus can be disposed both above the grid belt of the coating machine and also at another point, for example above the cooling belt following the coating machine.
  • FIGURE 1 shows a section through the nozzle tube with a nozzle in section and with the nozzle needle situated therein
  • FIGURE 2 shows a detail of FIGURE 1 on a larger scale with the nozzle in section and the bottom part of the nozzle needle
  • FIGURE 3 shows a longitudinal view, partly in section, of the nozzle tube according to the invention
  • FIGURE 4 shows a section corresponding to FIGURE 1 of another form of construction of the apparatus according to the invention
  • FIGURE 5 shows a detail on a larger scale, corresponding to FIGURE 2, of the embodiment illustrated in FIG- URE 4,
  • FIGURE 6 shows a longitudinal view corresponding to FIGURE 3 of the embodiment illustrated in FIGURE 4,
  • FIGURE 7 is a plan view of the nozzle tube, showing the suspension and moving device
  • FIGURE 8 is a view in section on the line VIII-VIII in FIGURE 7, and
  • FIGURE 9 is a longitudinal view corresponding to FIGURE 3 and FIGURE 6, showing the suspension and moving device for the nozzle tube.
  • FIGURES 1 and 2 show a nozzle tube 1 on the underside of which a nozzle 2 is situated.
  • the nozzle 2 carries at its top end a screwthread 11 by which the nozzle can be screwed to any selectable depth into the nozzle tube.
  • the nozzle itself converges conically in the known manner in the direction away from the nozzle tube and ends in a nozzle mouth 12.
  • a nozzle needle 3 is mounted in the nozzle 2, passing through the nozzle tube 1 and slightly projecting out of the nozzle tube 1, in relation to the nozzle 2, through an opening in the nozzle tube 1.
  • a guide cap 4 is screwed into the said opening and closes the opening in the nozzle tube 1 tightly, the nozzle needle 3 being guided in its hollow cylindrical interior.
  • the cylindrical nozzle needle 3 converges conically at its lower end lying in the nozzle 2 and in the lowered position closes the nozzle mouth 12.
  • the bottom end 10 of the nozzle needle projects slightly out of the nozzle mouth 12.
  • the nozzle needle 3 is provided with a plate disc 5. Between the plate disc 5 and the lower edge, extending into the interior of the nozzle tube 1, of the guide cap 4 the nozzle needle is surrounded by a restoring coil spring 6.
  • a forked lever 7 embraces the plate disc 5 by the prongs of its fork and is fastened on a shaft 13.
  • the shaft 13 runs through the nozzle tube 1 in the longitudinal direction, strikes at one end against the closure plate of the nozzle tube 1, and outside the latter carries a lever 8 which can be rocked by means of a Bowden cable 9 or of a corresponding linkage or other suitable devices, thereby imparting a rocking movement to the forked lever 7 fastened thereon, through the shaft 13.
  • FIGURE 3 shows the arrangement according to the invention of a number of juxtaposed nozzles in a nozzle tube 1 and the arrangement of the shaft 13, with the forked levers 7 fastened thereon and the lever 8 with the Bowden cable 9.
  • An elastic tube 14 leads into the head plate of the nozzle tube 1 for the purpose of feeding into the nozzle tube the decorating material to be distributed through the nozzles.
  • the apparatus works in the following manner:
  • the decoration material coming from a tempering machine or from a storage container or the like is delivered under superatmospheric pressure through the tube 14 into the nozzle tube 1.
  • the amount of the superatmospheric pressure is advantageous for the amount of the superatmospheric pressure to be regulable for the purpose of adaptation to the viscosity of the decoration mass and for the purpose of regulating the amount of the mass passing out of the nozzles and the thickness of the decorative strip.
  • another tube (FIGURE 9) to be provided at the opposite end of the nozzle tube for the purpose of removing the excess decoration mass.
  • the restoring springs 6 press the nozzle needles 3 so far into the nozzle mouth 12 that through their conical shape the nozzle needles 3 tightly close the nozzles 2.
  • the lever 8 is raised by pulling the Bowden cable 9.
  • the shaft 13 is thus rotated to the same extent in the upward direction, thereby rocking the forked lever 7 in the upward direction;
  • the prongs of the forked lever 7 which engage around that plate discs 5 of the nozzle needles 3 push the nozzle needles 3 upwards, when they are rocked, by means of the plate discs 5 and against the action of the restoring springs 6, so that the nozzles are opened and the decoration material which is under pressure can pass out of the nozzles.
  • the upper end of the nozzle needles 3 is pushed more deeply into the guide caps 4, the latter simultaneously effecting the vertical guiding of the needles.
  • the thickness of the strip of decoration material passing out is naturally dependent not only on the magnitude of the superatmospheric pressure in the nozzle tube, but also on the magnitude of the upward movement of the nozzle needle 3, that is to say on the selective raising of the lever 8 by the Bowden cable 9.
  • the nozzle needles 3 When the Bowden cable is released again, the nozzle needles 3 are lowered by the restoring springs 6 and close the nozzles 2. Through their fit in the nozzles and through the. projecting ends 16 of the nozzle needles, the latter clean the nozzle cavities by removing any coagulated decoration mass attached there, and push out any crumbs or small lumps of decorating material which may be hanging in the nozzles.
  • the objects to be decorated are preferably guided past under the nozzles on a conveyor belt B.
  • the material can then pass continuously out of the nozzles, but is preferably efiected by rhythmic opening and closing of the nozzles, while not only the interruption of the decorating operation but also the very important cleaning of the nozzle apertures are carried out automatically.
  • the interruption of the decorating current can take place once, in order to eject decoration material only when an object to be decorated is actually under the nozzle.
  • the interruption of the decoration current can also be effected when material to be decorated is under the nozzles, in order to achieve special effects by means of interrupted decorative lines.
  • the operations can be controlled both by hand and by periodic timing means, electrical or mechanical sensing, or the like, while in the case of such automatic control of the operation by sensing it is in any case advantageous for the opening time of the nozzles to be made adjustable, so that it is possible to determine not only the previously determinable timing of the commencement of the opening but also the ejection time of the nozzles.
  • the nozzle months 12 can have sizes and shapes determined by requirements, in order to obtain suitably shaped decorative strips.
  • the screwthreads 11 ensure rapid and easy exchangeability of the nozzles. Similarly, it is easily possible, for the purpose of obtaining different decorative effects and for adaptation to decoration requirements, for certain of the nozzles disposed side by side in the nozzle tube 1 to be put out of operation by the insertion of blind nozzles or by other suitable means.
  • FIGURES 4 to 6 another form of construction of the nozzle tube according to the invention is illustrated, the particular advantage of which consists in that the nozzle tube can be taken apart very simply if cleaning should be required.
  • the modification as compared with the previously described embodiment consists in that the nozzle needle 3 now does not pass through the nozzle tube 1 but inside the nozzle tube in the form of a spherical head 45.
  • a shaft 47 running longitudinally through the nozzle tube is provided with a bar 49 which carries panlike depressions 46 above the nozzles 2.
  • a bore 52 is'provided.
  • the nozzle needles 3 engage in these bores 52 in such a manner that the spherical heads 45 come to lie in the respective depressions 46, while the bores 52 on the one hand allow the nozzle needles 3 sufficient play for their movability, but on the other hand guide them and hold the heads 45 securely.
  • the depressions 46 are covered from above by a cover bar 48.
  • the shaft 47 passes out of the nozzle tube on one side and there carries a lever 8 with a Bowden cable 9 or other suitable moving device, as already described with reference to the first embodiment.
  • a single restoring spring 50, which acts on the lever 8, is fastened on a lever 51 which is jointed rigidly to the nozzle tube.
  • the lever 8 is raised against the action of the spring by pulling the Bowden cable 9.
  • the shaft 47 is thus rotated to the same extent upwards and with it raises the bar 49 and the nozzle needles 3 held in the bar 49, so that the nozzle openings are freed and decoration material fiows out.
  • the thickness of the strip of decoration material passing out is here again regulable through the magnitude of the movement of the lever 8.
  • this arrangement permits easy dismantling of the apparatus according to the invention for cleaning purposes, and also rapid re-assembly.
  • the shaft 47 with the bar 49 is swung completely upwards, so that the nozzle needles 3 pass out of the nozzles 2.
  • the shaft 47 with the nozzle needles 3 suspended on it can then be drawn sideways out of the nozzle tube 1 and cleaned. Re-assembly takes place in the reverse manner.
  • FIGURES 7 to 9 illustrate the suspension of the nozzle tube 1 by means of two knurled screws 43 on a rod 44 which in turn is fastened by two plates and 26 to four swingin rods 21, 22, 23, 24.
  • the free movability of the rod 44 and hence of the nozzle tube 1 resulting from the swinging rods is restricted by a parallel guide linkage 27, in such a manner that the nozzle tube 1 always performs translatory movements.
  • a regulable motor 28 drives an eccentric 31, which through a connecting rod 32 guided in the three spherical bearings 33, 34 and 35, a lever 38, and a segment 39 mounted on the rod 44 transmits its movements to the rod 44 and the nozzle tube 1 rigidly joined to it.
  • the middle spherical bearing 34 is mounted on a threaded bush 37, which can be screwed over the threaded bush 36 in the directions of the arrow A (FIGURE 9).
  • the threaded bush 36 is fastened rigidly on a support over the nozzle tube.
  • the bearing 34 is displaced, which slidably embraces the connecting rod 32 in the manner indicated in broken lines in FIGURE 9, whereby the defiection of the bottom end of the connecting rod 32 is varied accordingly.
  • a fastening screw 40 which is mounted on the rod 44 the bearing can be held fast at the bottom end of the connecting rod 32.
  • the connecting rod 32 articulated on it moves on a path which corresponds to the surface of a double cone with apices resting on one another.
  • the apices of these cones lie in the middle hearing 34 of the connecting rod 32
  • the magnitude of the deflection of the bearing 35 is dependent on the vertical position of the middle bearing 34, the height of which is determined by screwing the bush 37 up and down. When the bearing 34 is in its highest position, the deflection of the bearing 35 is at its greatest value.
  • the nozzle tube 1 can be given any type of horizontal movement, while these movements can be both circular with different radii and also oscillatory with varying amplitude and speed.
  • the regulability of the motor 28 permits not only regulation of the speed but of course also periodic interruption of the movement.
  • the entire apparatus can also be mounted on rollers, in order to move, at the time of the decoration operation, in the direction of the conveyor belt carrying the objects to be decorated and at the speed of the said belt, and finally to return to the position of rest, until the operation is repeated.
  • the nozzle tube can be rapidly and easily detached from the moving device and replaced by another nozzle tube, in the event of other nozzles or another nozzle arrangement being required to produce a new decorative effect.
  • tube means for decorating confectionery products; tube means; a plurality of nozzles therein; axially reciprocable needles for said nozzles for opening and closing said nozzles; means for reciprocating said needles; means mounting said tube means for swinging translatory movements in a substantially horizontal plane in paths angularly disposed to one another; and adjustable means for effecting said movements.
  • said means mounting said tube means and means effecting said movements comprise drive motor means; a depending connecting rod connected with said tube means through a rod attached to said tube means; vertically adjustable support means for said connecting rod intermediate the ends of said connecting rod; and spherical bearings connecting said connecting rod with said drive motor means, said support means, and said tube means.
  • a device for decorating confectionery articles with a mass in liquid working condition comprising a nozzle tube, a plurality of nozzles mounted on the under side of said tube, axially reciprocable needles for said nozzles for opening and closing said nozzles, means for reciprocating said needles between a nozzle closing position and a nozzle opening position, means for introducing a decorating mass into said tube, means suspending said tube for swinging translatory movements in a substantially horizontal plane in paths angularly disposed to one another, and means for effecting said movements.
  • a device as claimed in claim 6 wherein the rod is connected to a regulable motor through a linkage comprising an eccentric operably connected with the motor shaft, a connecting rod attached at one end of the eccentric by a first spherical bearing, a lever attached at one extremity to the other end of said connecting rod by a second spherical bearing, a curved segment rigidly attached to the rod and adjust-ably mounting the opposite extremity of said lever, and a third spherical bearing forming a pivot for said connecting rod at an intermediate point on the length of said connecting rod.
  • a device as claimed in claim 7 which includes an adjusting screw mounted on the rod with its axis horizontal, for selectively restricting pivotal movement of said second spherical bearing.

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Chemical & Material Sciences (AREA)
  • Polymers & Plastics (AREA)
  • Coating Apparatus (AREA)
  • Confectionery (AREA)
US159325A 1960-12-16 1961-12-14 Apparatus for decorating filled chocolates, pastry, and the like Expired - Lifetime US3185129A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DES71698A DE1151723B (de) 1960-12-16 1960-12-16 Vorrichtung zum Dekorieren von Pralinen, Gebaeck u. dgl.

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US3185129A true US3185129A (en) 1965-05-25

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DE (1) DE1151723B (de)
GB (1) GB971758A (de)

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3509849A (en) * 1965-08-21 1970-05-05 George S Blair Molten adhesive dispensing apparatus
US3513784A (en) * 1967-06-07 1970-05-26 Samuel A Kesselman Machine for continuously making fillings for sandwiches
US3824950A (en) * 1972-03-20 1974-07-23 G Woody Confection decorating machine and drive transfer
US3857363A (en) * 1972-08-14 1974-12-31 Olivetti & Co Spa Device for the mist lubrication of dies for sintering
US4278045A (en) * 1979-01-25 1981-07-14 Owens-Corning Fiberglas Corporation Dispensing foamable material
US4458626A (en) * 1981-11-09 1984-07-10 Teresio Dessilani Machine for spray painting a material being carried on a blanket
WO1997040948A1 (en) * 1996-05-01 1997-11-06 Kellogg Company Apparatus for depositing a viscous fluid material
US5855670A (en) * 1996-09-27 1999-01-05 The Pillsbury Company Liquid distribution apparatus for a dough processing line
US6125787A (en) * 1997-02-05 2000-10-03 Meiji Seika Kaisha, Ltd. Automatic spray apparatus for oily confectionery raw material
EP1229268A1 (de) * 2001-02-02 2002-08-07 WYMBS Engineering Limited Vorrichtung zur Erzeugung einer Antriebsbewegung
EP3586635A1 (de) * 2018-06-26 2020-01-01 WYMBS Engineering Limited Antriebsmechanismus für ein abscheidersystem
BE1026760A1 (nl) 2018-11-07 2020-06-03 C&B Logistics Bvba Inrichting en werkwijze voor het decoreren van confiserieproducten en / of voor het inkleuren van een mal

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3427650A (en) * 1966-01-05 1969-02-11 George D Woody Decorator
CH672046A5 (de) * 1987-06-04 1989-10-31 Nestle Sa
DE19618482C1 (de) * 1996-05-08 1997-09-04 Sollich Gmbh & Co Kg Verfahren und Vorrichtung zum Aufbringen eines Dekors aus flüssiger Masse auf ein Süßwarenstück
GB9718978D0 (en) * 1997-09-09 1997-11-12 Apv Uk Plc Improvements in or relating to biscuit handling machines
JP6130963B1 (ja) * 2016-11-02 2017-05-17 株式会社エポック社 絞出具、補助部材、装飾体形成玩具及び装飾体形成玩具セット
CN106388606B (zh) * 2016-11-15 2019-01-25 同济大学 一种咖啡拉花机
EP4233550A1 (de) * 2022-02-28 2023-08-30 Albert Handtmann Maschinenfabrik GmbH & Co. KG Füllstromteiler

Citations (9)

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US497763A (en) * 1893-05-23 Machine for flooding fabrics with oil
US1489516A (en) * 1923-07-24 1924-04-08 Alphonse Emile Verge Color-projecting machine
US1709969A (en) * 1929-04-23 Color-depositing apparatus for paper-making machines
US1987046A (en) * 1932-03-10 1935-01-08 Rodas Maschinen Fabrik Roderic Device for spraying freshly printed sheets with a subsequently solidifying liquid
US2010195A (en) * 1934-06-23 1935-08-06 Douglas P Clark Washing apparatus
US2145861A (en) * 1935-06-13 1939-02-07 Lloyd V Casto Coating or decorating apparatus
US2343034A (en) * 1940-12-27 1944-02-29 Fred A Weber Apparatus for the recovery of byproducts of coking ovens
US2770216A (en) * 1955-08-10 1956-11-13 Alexander Smith Inc Spraying apparatus for web material
US2834218A (en) * 1957-07-01 1958-05-13 Gen Electric Scanning device

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Publication number Priority date Publication date Assignee Title
DE327272C (de) * 1915-06-09 1920-10-12 Myron Arthur Smith Maschine zum UEberziehen von Zuckerwerk o. dgl.
US1618471A (en) * 1923-10-15 1927-02-22 Piccardo Dionisio Candy-coating machine
US1771117A (en) * 1929-06-27 1930-07-22 Frederick W Greer Confection stringing or decorating machine
FR1178248A (fr) * 1956-07-06 1959-05-05 Distributeur de pâte malléable pour confiserie

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US497763A (en) * 1893-05-23 Machine for flooding fabrics with oil
US1709969A (en) * 1929-04-23 Color-depositing apparatus for paper-making machines
US1489516A (en) * 1923-07-24 1924-04-08 Alphonse Emile Verge Color-projecting machine
US1987046A (en) * 1932-03-10 1935-01-08 Rodas Maschinen Fabrik Roderic Device for spraying freshly printed sheets with a subsequently solidifying liquid
US2010195A (en) * 1934-06-23 1935-08-06 Douglas P Clark Washing apparatus
US2145861A (en) * 1935-06-13 1939-02-07 Lloyd V Casto Coating or decorating apparatus
US2343034A (en) * 1940-12-27 1944-02-29 Fred A Weber Apparatus for the recovery of byproducts of coking ovens
US2770216A (en) * 1955-08-10 1956-11-13 Alexander Smith Inc Spraying apparatus for web material
US2834218A (en) * 1957-07-01 1958-05-13 Gen Electric Scanning device

Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3509849A (en) * 1965-08-21 1970-05-05 George S Blair Molten adhesive dispensing apparatus
US3513784A (en) * 1967-06-07 1970-05-26 Samuel A Kesselman Machine for continuously making fillings for sandwiches
US3824950A (en) * 1972-03-20 1974-07-23 G Woody Confection decorating machine and drive transfer
US3857363A (en) * 1972-08-14 1974-12-31 Olivetti & Co Spa Device for the mist lubrication of dies for sintering
US4278045A (en) * 1979-01-25 1981-07-14 Owens-Corning Fiberglas Corporation Dispensing foamable material
US4458626A (en) * 1981-11-09 1984-07-10 Teresio Dessilani Machine for spray painting a material being carried on a blanket
GB2331943A (en) * 1996-05-01 1999-06-09 Kellog Co Apparatus for depositing a viscous fluid material
WO1997040948A1 (en) * 1996-05-01 1997-11-06 Kellogg Company Apparatus for depositing a viscous fluid material
US5951766A (en) * 1996-05-01 1999-09-14 Kellogg Company Apparatus for depositing a viscous fluid material
GB2331943B (en) * 1996-05-01 2000-03-08 Kellog Co Apparatus for depositing a viscous fluid material
US5855670A (en) * 1996-09-27 1999-01-05 The Pillsbury Company Liquid distribution apparatus for a dough processing line
US6125787A (en) * 1997-02-05 2000-10-03 Meiji Seika Kaisha, Ltd. Automatic spray apparatus for oily confectionery raw material
US6401651B1 (en) * 1997-02-05 2002-06-11 Keizo Mochizuki Automatic spray apparatus for oily confectionery raw material
EP1229268A1 (de) * 2001-02-02 2002-08-07 WYMBS Engineering Limited Vorrichtung zur Erzeugung einer Antriebsbewegung
US7252490B2 (en) 2001-02-02 2007-08-07 Wymbs Engineering Ltd. Movement output apparatus
EP3586635A1 (de) * 2018-06-26 2020-01-01 WYMBS Engineering Limited Antriebsmechanismus für ein abscheidersystem
BE1026760A1 (nl) 2018-11-07 2020-06-03 C&B Logistics Bvba Inrichting en werkwijze voor het decoreren van confiserieproducten en / of voor het inkleuren van een mal

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Publication number Publication date
DE1151723B (de) 1963-07-18
GB971758A (en) 1964-10-07

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