APPARATUS AND METHOD FOR SHAPING A STRAND-SHAPED FOODSTUFF
20230052932 · 2023-02-16
Assignee
Inventors
Cpc classification
A23L13/03
HUMAN NECESSITIES
A23V2002/00
HUMAN NECESSITIES
International classification
Abstract
An apparatus for shaping a strand-shaped foodstuff, in particular a piece of meat, is disclosed. The apparatus includes a pressing chamber which is delimited by walls, at least one of which is movable by means of a pressing device and is designed as a ram, whereby the pressing chamber can be transitioned from an initial state with a first enclosed volume into a final state with a second enclosed volume. The apparatus also includes a feed device for feeding the foodstuff into the pressing chamber, and a discharge device for discharging the foodstuff from the pressing chamber. In order to provide an apparatus which is suitable for simple integration into a conveyor system, the feed device and/or the discharge device is a transport belt which at least partially covers one of the walls in an interior of the pressing chamber. In addition, a method for shaping a strand-shaped foodstuff is also disclosed.
Claims
1. An apparatus for shaping a strand-shaped foodstuff comprising a piece of meat, comprising: a pressing chamber which is delimited by walls, at least one of which is movable by a pressing device and is designed as a ram, whereby the pressing chamber is transitioned from an initial state with a first enclosed volume into a final state with a second enclosed volume; a feed device for feeding the foodstuff into the pressing chamber; and a discharge device for discharging the foodstuff from the pressing chamber, wherein the feed device and/or the discharge device is a transport belt which at least partially covers one of the walls in an interior of the pressing chamber.
2. The apparatus according to claim 1, wherein the transport belt is movable parallel to a direction in which the pressing chamber has a greatest longitudinal extent.
3. The apparatus according to claim 1, wherein the transport belt encloses a wall of the pressing chamber between a carrying run and a return run.
4. An apparatus according to claim 1, wherein a width of the transport belt measured transverse to a movement direction of the transport belt is greater than a width of the pressing chamber measured transverse to the movement direction of the transport belt, in the final state of said pressing chamber, or in the initial state of said pressing chamber.
5. A method for shaping a strand-shaped foodstuff comprising a piece of meat, comprising: opening a pressing chamber delimited by walls by way of at least one of the walls is moved relative to at least one other of the walls , whereby an opening cross-section is uncovered, introducing the foodstuff through the opening cross-section into the pressing chamber, closing the opening cross-section of the pressing chamber again, and transitioning the foodstuff from an unshaped state into a shaped state by moving walls, configured as rams, of the pressing chamber, uncovering an opening cross-section of the pressing chamber, and discharging the shaped foodstuff is discharged from the pressing chamber through this opening cross-section; and conveying the foodstuff by a transport belt into the pressing chamber and/or out of the pressing chamber, wherein the transport belt at least partially covers a wall of the pressing chamber.
6. The method according to claim 5, wherein at least one wall of the pressing chamber is arranged on opposite sides of the pressing chamber is moved transverse to a direction in which the respective wall is movable during the transition of the pressing chamber from the initial state into the final state, whereby an opening cross-section for feeding the unshaped foodstuff and/or discharging the shaped foodstuff is created.
7. The method according to claim 5, wherein a temperature of the foodstuff is lower at least in edge regions than a temperature of the foodstuff in a core region.
8. The method according to claim 5, wherein during the shaping process, pressing forces are transmitted from the foodstuff via the transport belt into a wall supporting said transport belt.
9. The method according to claim 5, wherein the foodstuff is transferred by the transport belt to a further transport belt which transfers the foodstuff to an apparatus, and/or the transport belt takes over the foodstuff from a further transport belt onto which the foodstuff is placed.
10. The method according to claim 5, wherein a feed position of the foodstuff on the transport belt substantially corresponds to a discharge position of the foodstuff on the transport belt after completion of the shaping process.
11. The method according to claim 5, wherein , during the introduction of the foodstuff into the pressing chamber , at least one wall configured as a ram is moved perpendicular and/or parallel to a movement direction of the foodstuff in which the foodstuff is fed to the pressing chamber in the movement direction or perpendicular thereto, so that a distance between the wall and an opposite wall of the pressing chamber is reduced.
12. The method according to claim 5, wherein the transport belt is stationary during the transition of the foodstuff from the unshaped into the shaped state.
Description
EXEMPLARY EMBODIMENT
[0050] The invention described above is explained in more detail below using an exemplary embodiment which is illustrated in Figures.
[0051] Shown are:
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[0060]
[0061] An exemplary embodiment that is shown in
[0062] The apparatus 1 according to the invention comprises a housing 4 which encloses an interior 5 and which is provided with a respective closable opening 7 on two opposite side walls 6. The openings 7 form a feed opening 8 and a discharge opening, wherein only the feed opening 8 is shown in Figures. A respective transport belt 9 is arranged at the openings 7, wherein only the transport belt 9 associated with the feed opening 8 is shown in Figures. The transport belt 9 is hereby provided for the initial placement of the foodstuff 2. In order to hereby ensure a positioning of the foodstuff 2 on the transport belt 9 that is suitable for a subsequent shaping and cutting process, the apparatus 1 is provided with a stationary positioning device 10 in the form of a guide rail, which transitions the placed foodstuff 2 into an initial position in which it rests centrally on the transport belt 9. A movement direction 11 of the transport belt 9 is hereby oriented parallel to a front side 12 of the apparatus 1, wherein the movement direction 11 of the transport belt 9 defines an X-direction 13. Upon placement of the foodstuff 2 onto the transport belt 9, the foodstuff 2 is conveyed in the X-direction 13 to the feed opening 8. In the event that the foodstuff 2 does not hereby already rest centrally — relative to a width 14 of the transport belt 9 — on the transport belt 9, a correction of the position takes place by means of the positioning device 10, in that the foodstuff 2 slides along the positioning direction 10 during the movement and is hereby displaced transverse to the movement direction 11 and oriented. A bearing of the positioning device 10 relative to the transport belt 9 is adjustable so that the position of the foodstuff 2 can be corrected depending on a width of said foodstuff 2.
[0063] Moreover, the apparatus 1 according to the invention has a feed device 15 as well as a discharge device 16 in the form of a single transport belt 17 running through the interior 5 of the apparatus 1, wherein, by means of the transport belt 17, the strand-shaped foodstuff 2 can be fed to a pressing chamber 18 arranged in the interior 5 of the apparatus 1 and can be discharged from the pressing chamber 18. A movement direction 19 of the transport belt 17 hereby likewise runs in the X-direction 13.
[0064] By means of the third transport belt, which is arranged at the discharge opening, the foodstuff 2 can be conveyed to a cutting device (likewise not shown in Figures) which divides the shaped foodstuff 2 into slices.
[0065] The foodstuff 2 is passed from the first transport belt 9 to the second transport belt 17, from which the foodstuff 2 is passed to the last transport belt, wherein a respective width 14 of the transport belts 9, 17 coincides. The first transport belt 9 hereby extends partially into the interior 5 of the apparatus 1, so that a passing of the foodstuff 2 takes place in the interior 5 of the apparatus 1. A feed of the foodstuff 2 into the pressing chamber 18 and a discharge of said foodstuff 2 thus take place on two opposite sides of the pressing chamber 18. The foodstuff 2 is thereby moved continuously in the X-direction 13 so that the initial position of the foodstuff 2 — relative to the width of the transport belts 9, 17 — coincides with an end position of the same after passing through the apparatus 1, so that the initial position can also already be substantially prespecified for the subsequent cutting device upon placement onto the first transport belt 9. All three transport belts run in the horizontal direction, and surfaces of the carrying runs are located at the same level in the Z-direction.
[0066] The pressing chamber 18 is arranged in the interior 5 of the apparatus 1, said pressing chamber 18 consisting of six walls 20, four of which are designed as rams 28, 29, 30, 31 and are respectively movable in different directions by means of an associated pressing device 21, 22, 23, 24.
[0067] A wall 20 forming a front side 25 of the pressing chamber 18 and a wall 20 forming a floor 26 of the pressing chamber 18 are hereby fixedly connected to the apparatus 1 and the machine frame thereof, whereas the other walls 20 form movable rams 28, 29, 30, 31 which are respectively displaceable in one direction relative to the machine frame and to the foodstuff 2. For this purpose, the rams 28, 29, 30, 31 are respectively coupled to a pressing device 21, 22, 23, 24 respectively in the form of an electromechanical cylinder which is driven by a servomotor. By means of the pressing devices 21, 22, 23, 24, a pressure-controlled movement of the associated rams 28, 29, 30, 31 takes place, wherein the movement is automatically ended upon reaching a prespecified final pressure. A thickness of the wall 20 forming the front side 25 of the pressing chamber 18 is hereby designed to be adjustable to adapt to a cutting cross-section of the apparatus 1, so that the pressing chamber 18 can be adapted to a width of the foodstuff 2 to be shaped.
[0068] The wall 20 forming the floor 26 of the pressing chamber 18 is hereby fixedly mounted in the machine frame and covered with the second transport belt 17, wherein the floor 26 is enclosed between a carrying run 32 and a return run 33 of the second transport belt 17. A width 14 of the second transport belt 17 is hereby larger than a width 34, measured transverse to the movement device 11 of the transport belt 17, of the pressing chamber 18 in a final state, which is described in detail in conjunction with
[0069] The fourth ram 31 forming a rear side 35 of the pressing chamber 18 is movable in a Y-direction 36 running perpendicular to the X-direction 13, wherein the first ram 28 forming an upper side 37 of the pressing chamber 18 is movable in a Z-direction 38 which is oriented perpendicular to the X-direction 13 and to the Y-direction 36. The upper side 37 of the pressing chamber 18 is thereby designed in the shape of a circular arc as viewed in a vertical cross-section. The second and third rams 29, 30 forming the two remaining sides 27 of the pressing chamber 18 are movable in the X-direction 13 or counter to the X-direction 13, wherein the same with their pressing devices 22, 23 are coupled to the first ram 28 and its associated pressing device 21 in such a way that they also move in the Z-direction 36 given a movement of the upper side 37. Furthermore, the respective ram 29, 30 has a contact element 42 which is arranged on an end facing toward the foodstuff 2. In the final state of the pressing chamber 18, the contact element 42 forms a contact surface which is in contact with the foodstuff 2. The respective contact surface 41 of the second and third rams 29, 30 is hereby designed to be variable in size. The contact element 42 is thereby designed as a folded metal sheet, which is fastened movably by means of a spring on the respective ram 29, 30 on the one hand and firmly on the first ram 28 on the other hand, so that a relative movement between the respective ram 29, 30 and the first ram 28 is enabled. The ram 28 is, with its pressing device 21, hereby respectively coupled by means of a linear guide to the second and third rams 29, 30 and the associated pressing device 22, 23. In the initial state of the pressing chamber 18, the spring is deflected by the respective ram 29, 30 due to gravity in such a way that a segment of the contact element 42 projects beyond a surface of the respective ram 29, 30. In an initial state of the pressing chamber 18 which is shown in
[0070] As a result of a translational displacement of the four rams 28, 29, 30, 31, the pressing chamber 18 can be transitioned from its initial state into a final state in which it has a second enclosed volume. The walls 20 of the pressing chamber 18, which walls are designed as rams 28, 29, 30, 31 and overall form a “half chamber”, are moved relative to the foodstuff 2. The final state of the pressing chamber is shown in
[0071] In order to shape the foodstuff 2, the pressing chamber 18 is first transitioned into its initial state in that the pressing chamber 18 is opened. For this purpose, the first ram 28 of the pressing chamber 18 is moved with the second and third rams 29, 30 counter to the Y-direction 36, so that an opening cross-section 40 is uncovered, which can be clearly seen in
[0072] The foodstuff 2, which has been tempered for better shaping capability in such a way that a temperature, at least in edge regions of the foodstuff 2, is reduced in comparison to a temperature of the foodstuff 2 in a core region, is subsequently introduced by means of the first transport belt 9 into the pressing chamber 18. The foodstuff 2 has thereby been placed by means of the positioning device 10 onto the first transport belt 9 in such a way that, upon being introduced into the pressing chamber 18, it rests close to the wall 20 forming the rear side 35, as shown in
[0073] As soon as the foodstuff 2 is arranged centrally in the apparatus 1, the feed opening 8 is closed again by means of a closure element, and the foodstuff is transferred to the second transport belt and is oriented centrally with respect to the transport belt, relative to the pressing chamber. The second and third rams 29, 30 are hereby already moved in the X-direction 13 and counter to the X-direction 13 so that a distance between the two rams 29, 30 is reduced in such a way that said distance substantially corresponds to, preferably slightly exceeds, a length of the foodstuff 2. The second conveyor belt 17 is stopped. Subsequently — as is readily apparent in
[0074] Subsequently, the walls 20 designed as rams 28, 29, 30, 31 are removed in reverse order from the foodstuff 2, wherein the latter remains substantially in its shaped state.
[0075] Lastly, the foodstuff 2 is conveyed by means of the second transport belt 17 in the X-direction 13, out of the pressing chamber 18 and the interior 5 of the apparatus 1. The first ram 28 of the pressing chamber 18 is thereby moved again with the second and third rams 29, 30 counter to the Y-direction 36, so that a second opening cross-section opposite the first opening cross-section 40 is uncovered, which second cross-section exceeds a cross-section of the foodstuff 2 so that the latter can be discharged from the pressing chamber 18. Finally, the foodstuff 2 is transferred to the third transport belt, by means of which the foodstuff 2 can be transported to the cutting machine.
LIST OF REFERENCE SIGNS
[0076] 1 Apparatus [0077] 2 Foodstuff [0078] 3 Piece of meat [0079] 4 Housing [0080] 5 Interior [0081] 6 Side wall [0082] 7 Opening [0083] 8 Feed opening [0084] 9 First transport belt [0085] 10 Positioning device [0086] 11 Movement direction [0087] 12 Front side [0088] 13 X-direction [0089] 14 Width [0090] 15 Feed device [0091] 16 Discharge device [0092] 17 Transport belt [0093] 18 Pressing chamber [0094] 19 Movement direction [0095] 20 Wall [0096] 21 First pressing device [0097] 22 Second pressing device [0098] 23 Third pressing device [0099] 24 Fourth pressing device [0100] 25 Front side [0101] 26 Floor [0102] 27 Side [0103] 28 First ram [0104] 29 Second ram [0105] 30 Third ram [0106] 31 Fourth ram [0107] 32 Carrying run [0108] 33 Return run [0109] 34 Width [0110] 35 Rear side [0111] 36 Y-direction [0112] 37 Upper side [0113] 38 Z-direction [0114] 39 Interior [0115] 40 Opening cross-section [0116] 41 Contact surface [0117] 42 Contact element