Machine for filling bags with a granular product and corresponding filling method
11814202 · 2023-11-14
Assignee
Inventors
Cpc classification
B65B39/06
PERFORMING OPERATIONS; TRANSPORTING
B65B51/32
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B39/06
PERFORMING OPERATIONS; TRANSPORTING
B65B51/14
PERFORMING OPERATIONS; TRANSPORTING
B65B51/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to a machine for filling bags with a granular product comprising a filling station, a welding station, and a cooling station. The machine comprises a supporting device for supporting the bags below the stations. The device comprises a supporting surface assembled in a pivoting manner on a pivot shaft, and actuating means. The supporting surface has a first supporting segment for supporting the bags of the filling and welding stations on one side of the pivot shaft and a second segment for supporting the bag of the cooling station on the opposite side of said pivot shaft. The supporting surface can pivot in an alternating manner around said pivot shaft for moving the base of the bag which, in operation, is located in the filling station during filling. The invention also relates to a filling method.
Claims
1. A machine for filling bags with a granular product, the machine comprising a filling station, a welding station, and a cooling station, wherein the machine further comprises: [a] a supporting device for supporting the bags, which forms a unit arranged below said filling, welding, and cooling stations for supporting, during operation, a base of each of the bags that are located in each of said filling, welding, and cooling stations, said supporting device comprising: [b] a supporting surface, [c] a pivot shaft, and [d] actuating means, [e] said supporting surface being assembled on said pivot shaft such that said supporting surface has a first supporting segment facing said welding and filling stations on one side of said pivot shaft, and a second supporting segment facing said cooling station on an opposite side of said pivot shaft, and wherein [f] said supporting surface, said pivot shaft, and said actuating means are functionally associated with one another such that said supporting surface can pivot in an alternating manner around said pivot shaft through said actuating means between [i] an upper position of said first supporting segment and a lower position of said second supporting segment, and [ii] a lower position of said first supporting segment and an upper position of said second supporting segment, for moving a base of a bag which, in operation, is located in said filling station during filling.
2. The machine according to claim 1, wherein at an end of said first supporting segment opposite to the pivot shaft, said supporting device has a transverse projection which is transverse to a forward movement direction of the bags and which projects from said first supporting segment and is located upstream away from said filling station in the forward movement direction of the bags, such that in operation, before the filling of a bag begins, said projection holds a base of a base of bag away from said filling station.
3. The machine according to claim 1, wherein said supporting device is a conveyor belt.
4. The machine according to claim 1, wherein said cooling station and said welding station are at the same distance from said pivot shaft.
5. The machine according to claim 1, wherein in the cooling station there is provided gas actuating means arranged for insufflating cooling gas at weld spots of a bag that is located in the cooling station.
6. A method for filling bags with a granular product comprising a filling step performed at a filling station, a welding step performed at a welding station, and a cooling step performed at a cooling station for the bags, wherein during said filling, welding, and cooling steps, [a] each of the bags is supported at its base on a supporting device for supporting the bags which is assembled in a pivoting manner around a pivot shaft, [b] said pivot shaft being located between said welding station and said cooling station, such that a supporting surface of the supporting device has a first supporting segment arranged facing said welding and filling stations on one side of said pivot shaft, and a second supporting segment facing said cooling station on an opposite side of said pivot shaft, and wherein [c] said method further comprises a tapping step in which said supporting surface pivots in an alternating manner around said pivot shaft through an actuating means, between [i] an upper position of said first supporting segment and a lower position of said second supporting segment, and [ii] a lower position of said first supporting segment and an upper position of said second supporting segment, for moving a base of a bag which is located in said filling station during the filling step for filling said bag.
7. The method according to claim 6, wherein the method further comprises a holding step for holding the base of the bag, in which, before the filling of said bag begins, the base of said bag is held away from said filling station and upstream of said filling station, in a forward movement direction of the bags.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages and features of the invention will become apparent from the following description, in which, without any limiting character, preferred embodiments of the invention are disclosed, with reference to the accompanying drawings in which:
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DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
(7) The drawings show an embodiment of a machine 1 for filling bags 100 with a granular product according to the invention.
(8) In the upper part, the machine 1 comprises a filling station 2, a welding station 4, and a cooling station 6. These stations are only schematically shown in the drawings.
(9) Some known non-limiting examples of machines having these filling, welding, and cooling stations are bag filling machines using pre-formed bags or machines in which the bags are manufactured in the machine itself from a film material, known in the art by its acronym FFS, i.e., Form, Fill, and Seal. This would be the example of the view shown in
(10) As discussed, the issue with bag filling machines that has still not been satisfactorily solved in the art consists of providing a machine for filling bags at high filling speeds, but said machine must have, despite the high speed, a lower power consumption and in said machine the full closed bags must have a uniform shape, and accordingly be such that they can be easily palletized.
(11) To solve this problem, the machine 1 according to the invention has a supporting device 8 for supporting the bags 100 which forms a common unit. In the embodiment, this supporting device 8 is a conveyor belt. Nevertheless, other solutions, such as a stationary supporting surface, or other solutions which facilitate the transition of the bags 100 between each of the stations of the machine, such as a polished surface, rollers, or other mechanisms, for example, can be conceived.
(12) The supporting device 8 for supporting the bags 100 is arranged below the filling, welding, and cooling stations 2, 4, 6. Therefore during normal operation of the machine 1, the base of each of the bags 100 that are located in each of said filling, welding, and cooling stations 2, 4, 6 can be supported on the supporting device 8.
(13) The supporting device 8 comprises as its main elements an upper supporting surface 10, a pivot shaft 12, and actuating means 14 for actuating the supporting surface.
(14) It can be seen in the drawings that the supporting surface 10 is assembled such that it can rotate around the pivot shaft 12 in a manner known to one skilled in the art. The supporting surface 10 has a first supporting segment 16 on one side of the pivot shaft 12, whereas the supporting surface has a second supporting segment 18 on the opposite side.
(15) The first segment 16 is arranged facing the welding and filling stations 2, 4. The second supporting segment 18 is facing the cooling station 6 and is on the opposite side of said pivot shaft 12. As can be seen in the drawings, as a result of this, the base of the bags 100 of the filling and welding stations is supported on the first segment 16, whereas the base of the bag of the cooling station 6 is supported on the second segment 18.
(16) It can be seen in
(17) The actuating means 14 are formed by a geared motor 22 actuating a second shaft 28. The second shaft 28 is assembled such that it can rotate on a stationary frame 30 of the supporting device 8. An articulated connecting rod 24 and crank 26 mechanism is assembled at each of the ends of the secondary shaft. Each of the cranks 26 is assembled articulated on a third shaft 32 mounted on the side walls of the conveyor belt.
(18) In this manner, the pivot shaft 12 and the actuating means 14 are functionally associated with one another. Therefore, the supporting surface 10 can pivot in an alternating manner around the pivot shaft 12 through the actuating means 14 between an upper position of said first segment 16 and a lower position of said second segment 18, and a lower position of the first segment 16 and an upper position of said second segment 18. This pivoting movement during the filling step is indicated with the double-headed arrow B of
(19) As a result of these elements, the supporting surface 10 can pivot in an alternating manner for moving the base of the bag 100 which, in operation, is located in the filling station 2 during filling. These positions are depicted through the end positions of
(20) Optionally and to reduce the eventual risk of wrinkles forming at the base of the bag, it is provided in the machine 1 that at the end of the first segment 16 opposite the end of the pivot shaft 12 in the supporting device 8, there is assembled a transverse projection 20 which is transverse to the forward movement direction of the bags 100. This projection 20 projects from the first segment 16 and is located upstream away from the filling station 2 in the forward movement direction of the bags 100, i.e., before the filling station 2. This arrangement can be seen clearly in
(21) When the machine 1 is in operation, the base of the bag 100 ready to be filled, particularly before the filling of said bag 100 begins, is held at the transverse projection away from said filling station 2. This arrangement can be observed in
(22) The method for filling bags 100 with a granular product according to the invention is explained below.
(23) The method comprises a filling step, a welding step, and a cooling step for the bags 100 which are consecutive and simultaneous. In other words, during normal operating conditions of the machine 1, while a bag 100 is filled in the filling station, another bag 100 is closed in the welding station, and finally, the bag 100 that entered first is in standby in the cooling station to assure proper closing of the bag.
(24) During operation, each of the bags 100 which is located in each of the mentioned steps is supported at the base on the supporting device 8 for supporting the bags 100 which forms a unit, i.e., it is a one-piece unit. As discussed above, the supporting device 8 is assembled in a pivoting manner around the pivot shaft 12.
(25) The pivot shaft 12 is located on a plane between the welding step and the cooling step. Therefore, the supporting surface 10 has a first supporting segment 16 arranged facing the welding and filling stations on one side of said pivot shaft 12. In turn, the supporting surface 10 has a second supporting segment 18 facing the cooling station 6 on the opposite side of the pivot shaft 12.
(26) The method further comprises a tapping step in which the supporting surface 10 can pivot in an alternating manner around the pivot shaft 12 through the actuating means 14, between the upper position of the first segment 16 and a lower position of said second segment 18 described above, and a lower position of the first segment 16 and an upper position of said second segment 18. The base of the bag 100 which is located in the filling station 2 during the filling step for filling said bag 100, i.e., during the period in which the granular product is falling into the bag 100, can thereby be moved.
(27) The method further comprises a holding step for holding the base of the bag 100 in which, before the filling of the bag 100 begins, the base of the bag 100 is held away from the filling step, upstream of the filling step, in the forward movement direction of the bags 100 to prevent unnecessary wrinkles before filling of the bag begins.
(28) Moreover, once the bag 100 of the filling station is full and the bag 100 of the welding station 4 is closed, and in the bag 100 of the cooling station the weld has been sufficiently cooled, the three bags 100 are shifted in the forward movement direction of arrow A in
(29) The machine 1 and method according to the invention allow obtaining production speeds greater than those that are common in the state of the art, but with an identical or lower consumption than those of the state of the art.