EP2556932A1 - Machine de coupe de pain - Google Patents

Machine de coupe de pain Download PDF

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Publication number
EP2556932A1
EP2556932A1 EP12005347A EP12005347A EP2556932A1 EP 2556932 A1 EP2556932 A1 EP 2556932A1 EP 12005347 A EP12005347 A EP 12005347A EP 12005347 A EP12005347 A EP 12005347A EP 2556932 A1 EP2556932 A1 EP 2556932A1
Authority
EP
European Patent Office
Prior art keywords
bread
drive
scissor
slicer
slide
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.)
Granted
Application number
EP12005347A
Other languages
German (de)
English (en)
Other versions
EP2556932B1 (fr
Inventor
Baudouin Van Cauwenberghe
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.)
Sa Jac Nv
Original Assignee
Sa Jac Nv
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 Sa Jac Nv filed Critical Sa Jac Nv
Publication of EP2556932A1 publication Critical patent/EP2556932A1/fr
Application granted granted Critical
Publication of EP2556932B1 publication Critical patent/EP2556932B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D1/00Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor
    • B26D1/01Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work
    • B26D1/547Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a wire-like cutting member
    • B26D1/553Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a wire-like cutting member with a plurality of wire-like cutting members
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/06Arrangements for feeding or delivering work of other than sheet, web, or filamentary form
    • B26D7/0608Arrangements for feeding or delivering work of other than sheet, web, or filamentary form by pushers

Definitions

  • the invention relates to a bread slicing machine, in particular gate bread slicer, comprising a stationary bread tray surface associated with a machine frame and a movable shover having a pushing surface extending transversely of the bread tray surface and a slider drive connected to the shovers via at least two coupling points is coupled and drives the bread pusher along a linear slide path, wherein due to the at least two spaced mutually spaced coupling points a tilting of the bread pusher leader is counteracted.
  • a bread slicer of the type mentioned goes out of the EP-A2 0 030 061 out.
  • Such breadboard type bread slicing machines make it possible to cut a whole bread into a plurality of bread slices in one operation.
  • an operator puts all the bread on a bread tray, then sets the or the cutting knife of the bread slicer in motion and operates a bread pusher, which applies laterally to the bread and pushes it through the or the knife.
  • the bread pusher can also be displaced by means of a preferably electric drive unit.
  • a slide drive is provided, which is designed as a lever drive.
  • the lever drive has two parallel with spaced lever arrangements, wherein the lever assemblies couple the drive unit with the bread slide so that the latter can perform a linear reciprocating motion.
  • the two lever arrangements have joint axes on, which lie in levels, which run parallel to the Brotablage2-1.
  • the lever drive of the breadboard has a variety of movably coupled parts and is therefore structurally complex and expensive. Furthermore, there is the difficulty to move the two lever assemblies synchronously to each other to avoid tilting of the bread pusher. The aforementioned synchronous movement requires a corresponding design effort.
  • the invention is therefore an object of the invention to provide a bread slicer of the type mentioned in such a way that with a simple and inexpensive construction, a safe and precise operation of the bread slipper is possible.
  • a scissor hinge assembly is used wherein opening and at least partially closing a "scissor" causes linear displacement of the screed by coupling the scraper with two scissor ends and the other two scissors ends stationary with respect to the direction of movement of the screed the machine frame of the bread slicer are arranged.
  • the rope In the case of the formation of the slider drive as a cable drive a linear displacement movement of the bread slider is effected by a rope, the rope is connected via the two, mutually spaced coupling points with the bread slider and transmits tensile forces on the bread slide at the two coupling points, so that this shifts ,
  • the drive of the scissor hinge assembly or the rope by means of a drive unit which operates the scissors in the former case and in the second case causes a pulling movement of the rope.
  • the scissor joint drive has two scissor arms which, crossing each other, are connected to one another via a rotary joint.
  • the swivel joint shifts when opening or closing the scissors in a scissor plane, in which the two scissor arms lie.
  • the arrangement is such that the rotary joint performs a displacement movement in the operation of the scissor joint drive, that is, it is not arranged machine frame fixed.
  • the scissors front arms are connected via the coupling points with the bread slider.
  • the two coupling points move in the region of the scissor front arms relative to the bread pusher, with the result that the bread pusher moves accordingly.
  • the two coupling points move towards and away from each other.
  • the coupling points are arranged transversely, in particular perpendicularly, to the slide movement so as to be displaceable on the bread slide in order to permit movement of the scissor arms about the rotary joint.
  • a further development of the invention provides that one of the scissor-type trailing arms forms a first scissor-type rear arm, which is displaceably mounted on the machine frame, in particular being displaceably mounted transversely to the slider movement on the machine frame.
  • the first scissor rear arm is thus fixedly mounted on the machine frame in the direction of movement of the bread pusher, but it can be displaced transversely to the slider movement relative to the machine frame, to allow an opening or closing movement of the scissors.
  • the other of the scissor trailing arms forms a second scissor rear arm, which is pivotally mounted by means of a pivot bearing on the machine frame.
  • the second scissor-type rear arm is consequently pivoted about the pivot bearing which is fixedly arranged on the machine frame.
  • the bread slicer preferably has a drive unit which, for a slider movement, drives the second scissor rear arm about the pivot bearing in a pivoting manner. This drive takes place in an alternating pivoting direction to move the breadboard back and forth.
  • the scissor movement of the scissors joint drive lies in a plane which extends parallel or substantially parallel to the bread-depositing surface.
  • the invention thus advantageously implements another design principle in which the plane spanned by the scissor movement is parallel or approximately parallel to the bread-depositing surface.
  • a development of the invention provides that in the case of the cable drive as a rope - as already mentioned - a limp traction means is used, in particular in the form of an endless loop. Preferably, only a single endless loop is provided.
  • the two coupling points lie on the traction means, the two coupling points.
  • the traction means itself is connected to the bread pusher and this at two spaced locations, which can be understood as a direct connection, or - alternatively - that the traction means is connected to driving means, which are connected to the bread pusher, so that a displacement of the entrainment means by train of the traction means leads to a corresponding displacement of the bread pusher.
  • two spaced apart driving means are provided.
  • a preferred embodiment of the invention provides that the traction means is guided over stationary deflection points, that it has two preferably parallel to each other, in the direction or approximately in the direction of the slider movement extending loop portions and that at these loop portions are the coupling points.
  • the loop sections are preferably designed as straight loop sections.
  • the drive means is preferably a drive roller, which is looped around by the traction means.
  • a development of the invention provides that the traction means is guided X-shaped in the area between the two loop sections. This intersection makes it possible that the displacement movement of the rope along the two straight loop sections takes place synchronously and in the same direction.
  • the bread slider has at least one additional guide for displacement along the slide path.
  • the additional guide is provided in particular on the two sides of the bread pusher.
  • a further development of the invention provides that the scissor joint drive or the cable drive is arranged below the bread tray.
  • the arrangement is preferably made such that the scissor plane lies below the bread-depositing surface, wherein preferably the surface of the bread-depositing surface and the scissor plane are parallel or approximately parallel to one another.
  • the cable is located in a cable plane, wherein the cable level is also arranged in a corresponding manner as the scissor plane relative to the bread tray surface.
  • the scissors joint drive or the cable drive has axes of rotation which extend at right angles or approximately at right angles to the bread deposit surface.
  • the axes of rotation are determined by the coupling points between the scissor front arms and the bread slider, the storage of the scissors trailing arms on the machine frame, the pivot bearing and the scissor arms interconnecting pivot, which are aligned at right angles or substantially perpendicular to the Brotablage2-1.
  • the axes of rotation aligned at right angles thereto are defined by the cable plane extending parallel or approximately parallel to the bread tray surface.
  • the axes of rotation are articulated axes in the scissors joint drive or that the axes of rotation in the cable drive are rotary axes of cable guide rollers.
  • the axes of rotation are through joints educated. Such joints are provided between the scissor ends of the scissor front arms and the bread pusher and between the scissor ends of the scissor trailing arms and the machine frame. They are designed such that they enable a pivoting of the components connected by them to one another - about the corresponding joint axis.
  • the axes of rotation are determined by the cable guide rollers about which the traction means is guided, in particular for the formation of said endless loop.
  • FIGS. 1 and 2 each show a longitudinal section of a bread slicer 1, which is designed as a gate bread slicer 2, according to a first embodiment.
  • the bread slicer 1 has a housing 3 which is provided on the underside 3 'with a plurality of wheels 4.
  • the wheels 4 serve that the bread slicer 1 can be moved in a simple manner.
  • a locking device 5 of the wheels 4 at least a few of the wheels 4 can be blocked, so that the bread slicer 1 can be positioned safely on a mounting floor during its operation.
  • the bread slicer 1 has a cutting knife device 6, which is arranged at least partially in the housing 3 on a machine frame, not shown in the figures.
  • the cutting knife device 6 comprises a plurality of vertically oriented cutting blades 7, which - as in the Figures 3 and 4 can be seen - are arranged parallel and uniformly spaced and form a gate 7 '.
  • the cutting blades 7 are held by means of a cutting knife holder 8, which is operatively connected to a fixedly arranged on the machine frame cutter blade drive 9.
  • the cutting knife drive 9 is an eccentric drive 10 formed, which comprises a motor 11, wherein in the operation of the motor 11, a rotational movement of the output shaft 12 by means of a control arm 13 in an oscillating up / down movement of the cutting blade holder 8 and thus the cutting blade 7 is transformed to the cutting of a whole bread 18th to allow in a variety of slices of bread.
  • the bread slicer 1 further has a fixedly arranged on the machine frame Brotablagetisch 14.
  • the cutting knife drive 9 is disposed below the Brotablageticians 14 and the Schneidemesserhalterung 8 and the cutting blade 7 pass through openings in the Brotablagetisch 14 so that the cutting blades 7 are located substantially above the Brotablagetischs 14.
  • a BrotzuMHz Colour 15 and a bread removal area 16 of the bread slicer 1 is defined, wherein the BrotzuMHz Colour 15 is an automatically and / or manually accessible to an operator and the cutting sides of the cutting blade 7 facing area above the Brotablageticians 14 and the bread removal area 16 an automatically and / or manually accessible to the operator and the cutting sides of the cutting blade 7 facing away from above the Brotablage exams 14 is.
  • the surface of the bread tray table 14 forms a bread tray 17 on which the bread 18 is positionable for cutting.
  • the bread slicer 1 also has a movable pusher 19 which serves to feed the bread 18 from the bread feed area 15, in which it is fed as a whole bread 18 to the bread slicer 1, into the bread removal area 16, where it is cut bread 18 of the bread slicer 1 is taken, to relocate.
  • the bread pusher 19 has a pusher block 19 'which can be displaced forwards and backwards on the bread-depositing surface 17 within the bread-feeding region 15 and the region of the cutting knives 7, the directions of movement of its displacement being indicated by a double arrow 33.
  • the slider block 19 ' has a thrust surface 20 which extends perpendicular to the BrotablageTECH 17 and the direction of movement 33 of the linear displacement of the Brotschiebers 19 and which rests on the BrotablageTECH 17 for displacing the bread 18 at this.
  • the bread pusher 19 also has at least two, not shown in the figures holding struts, which are formed on the lying on the BrotablageTECH 17 bottom of the slide block 19 '.
  • the retaining struts pass through slots of the Brotablagetischs 14, not shown in the figures, to allow the linear displacement of the Brotschiebers 19.
  • the support struts are connected to each other by means of a crossbeam 19 "below the Brotablage ancients 14.
  • the bread pusher 19 is operatively connected to a slider drive 21, which is arranged below the Brotablage Chemistry 17.
  • the slider drive 21 is designed as a scissors joint drive 22.
  • the scissors articulated drive 22 has a pair of scissors 23, which is composed of two scissor arms 24, 25, which - are intersecting - connected to each other via a rotary joint 26, wherein the rotary joint defines an axis of rotation 26 '.
  • the scissor arms 24, 25 form on one side of the rotary joint 26 scissor front arms 27, 28, each having a coupling point 29, 30 with the bread slide 19 are connected.
  • the coupling points 29, 30 are each formed below the Brotablagetischs 14.
  • an unillustrated longitudinal guide in the cross-beam 19 "of the Brotschiebers 19 is formed, in each of which an unillustrated, at the end of the Scherenvorderarme 27, 28 engages the guide element and perpendicular to the direction of movement 33 and parallel to the Brotablage matters 17 is linearly guided is rotatably mounted in the longitudinal guide to form a rotary joint, so that the scissor arm 24, 25 about a, preferably perpendicular to the Brotablage matters 17 extending, rotation axis 29 ', 30' is rotatable.
  • the scissor arms 24, 25 form a first scissor-type rear arm 31 and a second scissor-type rear arm 32.
  • the first scissor rear arm 31 is mounted at right angles to the direction of movement 33 of the bread slider 19 on the machine frame, in particular on the Brotablagetisch 14, linearly displaceable. This purpose is served in the bread tray 14 transverse to the direction of movement 33 aligned slot 34 into which a trained at the end of the first scissor rear arm 31 guide member 35, for example, a pin, engages and is guided.
  • the guide element 35 is also rotatably mounted in the slot 34 for the formation of a rotary joint, so that the scissor arm 25 about a, preferably perpendicular to the Brotablage Chemistry 17 extending axis of rotation 35 'is rotatable.
  • the second scissors rear arm 32 is pivotally mounted about a rotation axis 36 'on the machine frame, in particular on the bread depositing table 14, by means of a pivot bearing 36.
  • the second scissor rear arm 32 splits on the pivot bearing 36 in two sub-arms 32 'and 32 ", the ends of which are connected to each other via an arcuate web 32', which is formed on the side facing away from the pivot 26 of the pivot bearing 36.
  • Of the Arcuate web 32 '" has on its outer side a circular arc toothing 37.
  • the circular arc toothing 37 interacts with a drive unit 38, which has a drive pinion 39 mounted on the machine frame.
  • the design of the slider drive 21 as a "scissors" allows the displacement of the bread slide 19 in the direction of movement 33 and thereby guarantees a linear guide of this, so a parallel guide the thrust surface 20 to prevent tilting or tilting the bread slide 19.
  • the bread pusher 19 is also associated with an additional guide 42. This comprises two arranged on the machine frame guide rails 43, 44, which are arranged parallel to the direction of movement 33 side of the bread pusher 19, and two on the bread pusher 19, in particular on the cross-beam 19 ", formed sliding elements 45, 46, in the guide rails 43, 44th are slidably mounted and this lead linearly in a shift of the slide valve 19.
  • the bread pusher 19, in particular the pusher block 19 ', has at its side facing the cutting knives 7, so the thrust surface 20, slots 54 which are also formed according to the cutting blade 7 parallel and by means of webs 54' spaced from each other. This makes it possible that the webs 54 'are moved during the displacement of the bread pusher 19 between the cutting blade 7 and thus the thrust surface 20 is displaced into the bread removal area 16 and thus the bread 18 can be completely cut.
  • the result is the following function of the bread slicer 1:
  • the operator first places all the bread 18 on the bread tray 17 in the bread feed area 15 or the bread 18 is automatically fed to this.
  • the bread slider 19 is located as far away from the cutting knives 7 and the scissors 23 in a strong open position, that is, a large angle ⁇ is enclosed by the scissor front arms 27, 28, which in the present case is about 180 °.
  • the coupling points 29, 30 are at a large distance from each other
  • the guide element 35 is located in an end region of the oblong hole 34 and the sliding elements 45, 46 are located in each case in one end region of the guide rails 43, 44. This constitutes a first operating position of the bread slicing machine 1 that is in the FIGS. 1 and 3 can be seen.
  • the slider drive 21 which is designed as a pair of scissors 23 with two mutually spaced coupling points 29, 30, a tilting of the bread pusher 19 is counteracted in terms of its displacement in the direction of movement 33.
  • the thrust surface 20 of the bread pusher 19 always has an orientation of 90 ° to the direction of movement 33.
  • the additional guide 42 also supports this. Thus, a safe operation and a precise function of the bread slicer 1 is ensured.
  • FIGS. 5 to 8 each show views of a bread slicer 1 according to a second embodiment.
  • the reference numerals used for the first exemplary embodiment denote the same elements, so that reference is made in the above to the above and will be discussed below only the differences from the first embodiment.
  • the slider drive 21 is designed as a cable drive 55, which is arranged below the Brotablage Chemistry 17.
  • a view of a portion of the bread slicer 1 is shown, which shows the Brotzu réelle Schemes 15 and in which the cable drive 55 can be seen in detail.
  • the cable drive 55 has a slippery traction means 56, in particular a cable, which forms an endless loop 57.
  • the traction means 56 is guided over stationary, the machine frame associated deflection points 58, which are formed by six cable guide rollers 59, 60, 61, 62, 63, 64 and below the Brotablagetischs 14 on the machine frame, in particular on the Brotablagetisch 14, are rotatably mounted.
  • Each cable guide roller 59, 60, 61, 62, 63, 64 has an axis of rotation 59 '.
  • the axes of rotation 59 ' extend parallel to each other and perpendicular to the bread tray 17.
  • the cable guide rollers 59, 60, 61, 62, 63, 64 are embodied by two truncated cones, whose top surfaces adjoin one another and thereby form a guide groove 59 "in which the traction means 56 are guided
  • the cable guide rollers 59, 60, 61, 62 form guide rollers and are arranged in pairs such that between the guide rollers 59 and 60 or 61 and 62, respectively, a rectilinear loop section 65 or 66 of the traction means 56 is stretched, wherein the two loop sections 65, 66 extend parallel to each other and to the double arrow 33.
  • the traction means 56 is further from the guide roller 59 to the guide roller 62 and the guide roller 60 is guided to the guide roller 61, wherein the sections between the guide rollers 59 and 62 and the guide rollers 60 and 61 intersect.
  • the two further cable guide rollers 63, 64 form guide rollers and are within the between the four cable guide rollers 59, 60, 61, 62.
  • the deflection rollers 63, 64 deflect the traction means 56 between them and the guide rollers 59 and 62 or 60 and 61 such that between the guide rollers 59 and 61 and the guide rollers 63 and 64 respectively a straight loop portion 67, 68 of the traction means 56 is generated, the loop portions 67, 68 parallel to the double arrow 33 , Between the pulleys 63 and 64 and the guide rollers 62 and 60, the traction means 56 is guided substantially X-shaped. Thus, two rectilinear loop sections 69, 70 are produced which do not run parallel to the double arrow 33, for example angled with respect to this.
  • a drive means 71 for the traction means 56 is arranged.
  • the drive means 71 is designed as a drive roller 73 which can be driven by a drive unit 72 and which likewise is rotatably mounted on the machine frame, in particular on the bread delivery table 14 is.
  • the drive roller 73 is arranged in the region of the loop section 70, ie between the cable guide rollers 62 and 63.
  • the drive roller 73 is looped by the traction means 56, in particular the loop section 70, at least once, preferably several times.
  • the two ends of the traction means 56 are hinged / fastened to the drive roller 73 such that upon rotation of the drive roller 73 in one direction of rotation, the first end is wound and the second end unwound and the second end wound in an opposite direction of rotation and the first End is settled.
  • the length of the traction means 56 must be chosen in the latter case to be large enough to unwinding or winding over the to enable the entire route.
  • a tension means is also provided, which is associated with the drive roller 73, for example.
  • the Switzerlandstoffspanner serves to the traction means 56 foundedspannen on the cable guide rollers 59, 60, 61, 62, 63, 64, so as to prevent slipping out of the traction means 56 from the guide grooves 59 ".
  • the traction means 56 has in the region of the straight loop portions 65, 66 in each case a fixedly connected to the traction means 56 entrainment means 74, 75.
  • the entrainment means 74, 75 are each attached to the side of the bread sliders 19, in particular the cross-beam 19 ", and so far form the coupling points 29, 30, so that the bread sliders 19 can be displaced by means of the cable drive 55 and is linearly guided in the direction of the double arrow 33 As a result, a tilting or tilting of the bread slider 19 is prevented. This means that in the displacement of the bread slide 19, the thrust surface 20 of the bread pusher 19 is always perpendicular to the direction of movement 33 of the bread pusher 19.
  • the entrainment means 74, 75 are preferably designed as sliding elements 45, 46 which are additionally guided by means of the guide rails 43, 44 arranged on the machine frame.
  • the additional guide 42 thus formed counteracts in addition the tilting or tilting of the bread pusher 19.
  • the bread slicer 1 First, the bread to be cut 18 is placed on the bread tray 17 in the Brotzu réelle Society 15. The bread slide 19 is located as far as possible from the cutting knives 7, that is, the sliding elements 45, 46 are located in the respective end region of the guide rails 43, 44, which faces the guide rollers 60, 62. This represents a first operating position of the bread slicer 1, which in the Figures 5 and 7 can be seen.
  • FIGS. 6 and 8th illustrates, wherein the FIG. 6 shows a second operating position of the bread slicer 1, in which the bread 18 is partially located between the cutting knives 7 and partially cut, and the FIG. 8 shows a third operating position of the bread slicer 1, in which the bread 18 is now completely cut.

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  • Life Sciences & Earth Sciences (AREA)
  • Forests & Forestry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing And Processing Devices For Dough (AREA)
  • Food-Manufacturing Devices (AREA)
EP12005347.5A 2011-08-11 2012-07-21 Machine de coupe de pain Not-in-force EP2556932B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102011109997A DE102011109997A1 (de) 2011-08-11 2011-08-11 Brotschneidemaschine

Publications (2)

Publication Number Publication Date
EP2556932A1 true EP2556932A1 (fr) 2013-02-13
EP2556932B1 EP2556932B1 (fr) 2016-02-10

Family

ID=46603501

Family Applications (1)

Application Number Title Priority Date Filing Date
EP12005347.5A Not-in-force EP2556932B1 (fr) 2011-08-11 2012-07-21 Machine de coupe de pain

Country Status (2)

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EP (1) EP2556932B1 (fr)
DE (1) DE102011109997A1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3466622A1 (fr) * 2017-10-09 2019-04-10 Freek Arie Herman Machine de découpe de pain
CN114932691A (zh) * 2022-05-19 2022-08-23 青岛亚森特机械有限公司 帽檐芯成型剪裁生产线烘干剪切装置
US11465790B2 (en) * 2020-02-27 2022-10-11 Jac S.A. Bread slicer with a packing system

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1305296A (fr) * 1970-07-29 1973-01-31
US3875840A (en) * 1972-10-31 1975-04-08 Haagse Bakkerijmach Device for cutting loaves and the like
EP0030061A2 (fr) 1979-12-03 1981-06-10 William François Joseph van Lierde Machine à découper le pain
EP1520665A1 (fr) * 2003-10-02 2005-04-06 S.A. Jac N.V. Dispositif de découpe automatisée de pain en tranches

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1953277A (en) * 1930-12-20 1934-04-03 Papendick Inc Slicing machine
GB514000A (en) * 1938-04-25 1939-10-27 Alfred German Rose Improvements in or relating to bread slicing machines
GB670144A (en) * 1949-11-18 1952-04-16 Record Bakery Equipment Compan Improvements in and relating to bread slicing machines
DE8610692U1 (de) * 1986-04-18 1986-06-05 Warnke, Kurt, 5657 Haan Gatterschneidemaschine für Lebensmittel, insbesondere Brot

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1305296A (fr) * 1970-07-29 1973-01-31
US3875840A (en) * 1972-10-31 1975-04-08 Haagse Bakkerijmach Device for cutting loaves and the like
EP0030061A2 (fr) 1979-12-03 1981-06-10 William François Joseph van Lierde Machine à découper le pain
EP1520665A1 (fr) * 2003-10-02 2005-04-06 S.A. Jac N.V. Dispositif de découpe automatisée de pain en tranches

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3466622A1 (fr) * 2017-10-09 2019-04-10 Freek Arie Herman Machine de découpe de pain
NL2019688B1 (en) * 2017-10-09 2019-04-17 Arie Herman Freek Bread cutting machine
US10695936B2 (en) 2017-10-09 2020-06-30 Freek Arie HERMAN Bread cutting machine
US11465790B2 (en) * 2020-02-27 2022-10-11 Jac S.A. Bread slicer with a packing system
CN114932691A (zh) * 2022-05-19 2022-08-23 青岛亚森特机械有限公司 帽檐芯成型剪裁生产线烘干剪切装置

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DE102011109997A1 (de) 2013-02-14
EP2556932B1 (fr) 2016-02-10

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