Dough dividing device and dough processing plant having such a dough dividing device
20190069559 · 2019-03-07
Assignee
Inventors
Cpc classification
A21C5/04
HUMAN NECESSITIES
International classification
Abstract
A dough dividing device has a housing. Arranged therein is a feed chamber, for feeding dough, and a delivery chamber, which is arranged downstream and in delivery communication with the feed chamber. A delivery piston is arranged in a displaceably driven manner inside the delivery chamber for delivering dough. A measuring chamber is arranged downstream of the delivery chamber. In an extended delivery position a face of the delivery piston is arranged in a passage chamber between the delivery chamber and the measuring chamber. The passage chamber is delimited by a wall which extends circumferentially around the piston face. At least one degassing channel serves for degassing the measuring chamber. In the delivery position of the delivery piston the degassing channel is arranged between the piston face and the passage-chamber wall and creates a gas connection between the measuring chamber and a surrounding area.
Claims
1. A dough dividing device, comprising: a housing; a feed chamber for feeding dough; a delivery chamber which is arranged downstream of and in delivery communication with the feed chamber; at least one measuring chamber which is arranged downstream of the delivery chamber; a delivery piston which is arranged in a displaceably driven manner inside the delivery chamber for delivering dough from the feed chamber to the at least one measuring chamber, wherein in an extended delivery position a face of the delivery piston is arranged in a passage chamber between the delivery chamber and the at least one measuring chamber, the passage chamber being delimited by a passage-chamber wall which extends circumferentially around the face of the delivery piston; and at least one degassing channel, for degassing the at least one measuring chamber, which in the extended delivery position of the delivery piston is arranged between the face of the delivery piston and the passage-chamber wall and creates a gas connection between the at least one measuring chamber and a surrounding area.
2. The dough dividing device according to claim 1, comprising a plurality of degassing channels.
3. The dough dividing device according to claim 1, wherein a cross section of the degassing channel is smaller than 10 mm.sup.2.
4. The dough dividing device according to claim 1, wherein the passage-chamber wall includes an upper wall section, a lower wall section, and two oppositely disposed side wall sections, and wherein the at least one degassing channel is arranged in a region of the upper wall section.
5. The dough dividing device according to claim 1, wherein the at least one degassing channel is a groove in a casing wall of the delivery piston.
6. The dough dividing device according to claim 5, wherein the groove is of such length that it extends from a piston-face groove outlet to the feed chamber when the delivery piston is in the extended delivery position.
7. A dough processing plant having a dough dividing device according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION
[0018] A dough dividing device 1 serves for the exact portioning of dough pieces, starting for a dough mass which is fed to the dough dividing device. The dough dividing device 1 has a housing 2.
[0019] A dough feed chamber 3, which is designed as a feed hopper, serves for feeding the dough. A dough delivery chamber 4 is located downstream of the dough feed chamber 3. Imaginary lateral limits of the dough delivery chamber 4 beneath the dough feed chamber 3 are shown by dashed lines in
[0020] Displaceably arranged inside the delivery chamber 4 is a dough delivery piston 5 which is driven by a drive crank 5a via a crank drive for delivering dough. The delivery piston 5 is shown in more detail in
[0021] Via the crank drive, the delivery piston 5 can be displaced between an extended delivery position, shown in
[0022] A dough measuring chamber 6 is in turn arranged downstream of the dough delivery chamber 4 in delivery communication.
[0023] In the delivery position of the delivery piston 5, its end-side piston face 7 is arranged in a passage chamber 8 between the delivery chamber 4 and the measuring chamber 6. The passage chamber 8, with regard to a dough delivery direction 9, is circumferentially delimited by a wall 10 which extends circumferentially around the piston face 7 in the delivery position. The encompassing passage-chamber wall 10, in the operating position of the dough dividing device 1, has an upper wall section 10o, a lower wall section 10u and two oppositely disposed side wall sections 10s, of which the side wall section 10s facing the viewer is visible in
[0024] The measuring chamber 6 is delimited by a cylinder 6 which can pivot around an axis which is perpendicular to the drawing plane of
[0025] The previously described principle components of a dough dividing device 1 are basically known from the prior art, for example from DE 42 43 840 A1, DE 41 00 243 A1 and DE 196 40 176 A1.
[0026] The delivery piston 5 can supply a plurality of measuring chambers 6, which are arranged in a row next to each other perpendicularly to the drawing plane of
[0027] The dough dividing device 1 has at least one degassing channel 11 (cf.
[0028] The degassing channels 11 are designed as grooves in a casing wall 12 of the delivery piston 5 and open out into the piston face 7 of the delivery piston 5 (cf.
[0029] Alternatively or additionally, the at least one degassing channel can be constructed in the passage-chamber wall 10.
[0030] The at least one degassing channel 11 is arranged in the region of the upper passage-chamber wall section 10o. Alternatively or additionally, the at least one degassing channel 11 can be arranged in the region of the lower passage-chamber wall section 10u and/or in the region of at least one of the two side passage-chamber wall sections 10s.
[0031] The groove of the respective degassing channel 11 is of such length along the delivery direction 9 of the delivery piston 5 that it extends from the piston-face groove outlet 13 to the dough feed chamber 3 in the delivery position of the delivery piston 5.
[0032] A channel length K (cf.
[0033] In these positions, a reliable deaeration (degassing) of the measuring chamber 6 results during the portioning of dough compressed in the measuring chamber 6. As a result of this, a precise portioning accuracy is ensured.
[0034] A cross section of the respective degassing channel 11 is smaller than 10 mm.sup.2. This ensures that dough is not undesirably pushed back through the degassing channels 11 from the passage chamber 8 into the dough feed chamber 3.
[0035] For dough positioning, the delivery piston 5 is first of all in the neutral position, completely retracted from the delivery chamber 4. Dough is then fed from above, that is to say from the feed chamber 3. The delivery piston 5, with the aid of the crank drive, is then displaced into the delivery position shown in
[0036] A cross section of the respective degassing channel 11 can be round, can be cornered, can be oval, can be trapezoidal, can be polygonal, can have the shape of an ellipse or of an elongated hole, can be dovetail shaped, can be T-shaped and/or can have the shape of a trapezoidal groove.