DEVICE AND METHOD FOR PROCESSING DOUGH
20210298315 · 2021-09-30
Inventors
- Rudolf HIRSCH (Weingarten, DE)
- Daniel TEUFEL (Schemmerhofen, DE)
- Karlheinz KAESTLE (Laupheim, DE)
- Manfred Baechtle (Schemmerhofen, DE)
Cpc classification
A21C3/04
HUMAN NECESSITIES
International classification
Abstract
The invention relates to a device and a method for processing dough, in particular a dough divider, with a pump device and an adjoining tube. There is at least one ventilation device arranged in a region between the pump device and the outlet opening of the tube and can introduce a gaseous medium between the tube inner wall and the outer skin of the dough.
Claims
1. Device for processing dough, in particular dough divider with a pump device and an adjoining tube having a free tube cross-section through which a strand of dough can be transported, wherein a ventilation device is arranged in a region between said pump device and said outlet opening of said tube and can introduce a gaseous medium between a tube inner wall and a closed outer skin of said strand of dough.
2. The device according to claim 1, wherein said ventilation device comprises at least one opening in said tube through which said gaseous medium can be supplied, where said at least one opening is configured as a gap, in particular an annular gap, or as openings distributed around the circumference of said tube, in particular a perforated ring or in the form of sintered material.
3. The device according to claim 2, wherein said at least one opening is spaced approximately 2-150 mm from said outlet opening.
4. The device according to claim 1, wherein said ventilation device comprises a device which can supply said gaseous medium under pressure, in particular a pump, a compressor, or a pressure vessel.
5. The device according to claim 2, wherein said ventilation device comprises an annular distribution chamber through which said gaseous medium can be passed into said openings.
6. The device according to claim 4, wherein said tube comprises either an outlet tube, or a transport tube and a downstream outlet tube, where said outlet tube optionally comprises a mold part for shaping said dough and/or preferably a separating unit for dividing said strand of dough is arranged downstream of said outlet opening.
7. The device according to claim 6, wherein a mold part is inserted into said outlet tube and its inner wall forms the tube inner wall, where said at least one opening for introducing said gaseous medium extends through said mold part and/or said at least one opening is formed in the wall of said outlet tube upstream of said mold part inserted.
8. The device according to claim 6, wherein several ventilation devices are arranged consecutively in the direction of transport in said tube, in particular at least one ventilation device is arranged in said transport tube.
9. The device according to claim 1, wherein at least one additional nozzle is arranged in the direction of transport T downstream of said outlet opening and downstream of said separating device and is in particular directed such that gaseous medium can be blown onto at least one face side of said severed dough.
10. Method for processing, in particular dividing dough, in particular with a device according to claim 8, wherein a strand of dough is conveyed by a pump device through a tube having a free cross-section and a gaseous medium is introduced between the tube inner wall and the closed outer skin of said strand of dough by way of a ventilation device.
11. The method according to claim 10, wherein said gaseous medium moves in the direction of transport T in the direction of said outlet opening of said tube.
12. The method according to claim 10, wherein the gaseous medium is or comprises at least one gas from the following group: compressed air, purified compressed air, dried compressed air, inert gas, and/or an aerosol which comprises aerosol particles.
13. The method according to claim 10, wherein the pressure of said gaseous medium is adjustable, and in particular is higher than the pressure in said tube.
14. The method according to claim 10, wherein a separating device is provided at the outlet end of said tube and divides said strand of dough into individual portions.
15. The method according to claim 10, wherein an air cushion is created between said tube inner wall and said closed outer skin of said strand of dough around said outer skin of said strand of dough and in particular has a thickness of d=0.05 mm-3 mm, where said tube has a diameter of 30 mm-120 mm and said divided strand of dough has in particular a length which corresponds substantially to the diameter of said tube (+/−20%) or is longer than the diameter of said tube.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0042] The present invention shall be explained below in more detail with reference to the following figures.
[0043]
[0044]
[0045]
[0046]
[0047]
[0048]
[0049]
DETAILED DESCRIPTION
[0050]
[0051] Device 1, presently configured e.g. as a dough divider, also comprises a separating device 6, presently, for example, in the form of a movable knife, which can sever dough in portions from the strand of dough conveyed.
[0052] According to the present invention, it is therefore possible that an air cushion shown in
[0053] According to the present invention, at least one ventilation device 7 is provided in a region between pump device 2 and outlet opening 5 of tube 3 and is configured such that a gaseous medium can be introduced between the tube inner wall and the outer skin of the dough.
[0054]
[0055] In the case of a gap, the latter has, for example, a width in a range from 0.02 to 5 mm. The gap width can be fixed or adjustable in that outlet tube 4 is connected to transport tube 3 by way of a thread. An annular distribution chamber 8, through which the gaseous medium can be passed into at least one opening 11, is arranged around gap 11. Annular distribution chamber 8 can be connected by a line 12 to a device that can supply the gaseous medium under pressure, in particular a pump, for example, a compressor for compressed air or a pressure vessel, for example, a gas cylinder. The pressure and/or the volume flow of the gaseous medium can there be adjusted. Annular distribution chamber 8 is only one possible embodiment. However, it is particularly advantageous for distributing the gaseous medium uniformly around the circumference of the outer skin of strand of dough 10.
[0056] In this embodiment, ventilation device 7 is arranged on the outlet tube, meaning presently in an outlet region, such that opening 11, meaning end E, which when viewed in the axial direction L is the leading one, is about 2 to 150 mm away from outlet opening 5. The selective ventilation within the outlet region results in a greater reduction in surface moisture with less effort than would be the case, for example, with ventilation on a downstream conveyor belt 9. Overall, ventilation device 7 entails the following advantages:
[0057] An air buffer 16 is created, as shown in
[0058] Overall, discard can thus also be reduced, thereby also reducing the raw material costs. Furthermore, an increase in productivity, process stability and improved hygiene arises for the reason that there is no adhesion of dough to the tube inner wall.
[0059]
[0060]
[0061]
[0062] This can ensure that the air flow between dough 10 and the tube inner wall does is not interrupted to the degree possible. The distance between two adjacent ventilation devices 7a, b, c is, for example, in a range of 5 cm to 50 cm of the transport path of the dough.
[0063]
[0064] The method according to the invention shall be described below in more detail with reference to
[0065] First, a dough, for example, a bread dough, can be produced in a container (not shown) by mixing and kneading the individual components of the dough. The dough is then pumped into tube 3, 4 in direction of transport T by pump device 2, for example, presently the vane pump.
[0066] In the outlet region of the tube, for example, presently in an outlet tube 4, a gaseous medium is introduced between the tube inner wall and the outer skin of dough 10 by way of a ventilation device 8.
[0067] The gaseous medium can be or comprise at least one medium from the following group: compressed air, purified compressed air, inert gas, or an aerosol, etc. The pressure of the gaseous medium supplied is higher than the pressure in tube 4.
[0068] The pressure of the gaseous medium is, for example, in a range from 1 to 10 bar, whereas the pressure in outlet tube 4 is in a range from 0.1 bar to 8 bar. The delivery rate can be in a range of 10-120 1/min. The pressure of the gaseous medium supplied is adjustable and can therefore be adapted to the different processes, in particular also to the diameter of the strand of dough. However, this also means that if there are different ventilation devices 7 in the direction of transport, as shown for example in
[0069] Due to the fact that the gaseous medium is supplied, a gas cushion 16 forms between the outer skin of the dough and the tube inner wall, where the gaseous medium also flows in the direction of outlet opening 5. A separating device 6 is provided downstream of outlet opening 5 and can severe the dough from the strand of dough to form individual portions. The dough can then be transported onwards on transport device 9, presently on conveyor belt 9, for further processing.
[0070] As has been explained in the context of