BOTTLE CAPPING STATION, IN PARTICULAR FOR PRODUCTS OF THE PHARMACEUTICAL INDUSTRY
20220212820 ยท 2022-07-07
Inventors
- Luca MARIANI (Bologna, IT)
- Luca Testoni (Bologna, IT)
- Andrea Dondini (Bologna, IT)
- Luca Federici (Bologna, IT)
Cpc classification
B65B7/28
PERFORMING OPERATIONS; TRANSPORTING
B65B51/142
PERFORMING OPERATIONS; TRANSPORTING
B65B51/14
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B7/28
PERFORMING OPERATIONS; TRANSPORTING
B65B51/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A capping station has a first conveying system designed to move a plurality of full bottles; a second conveying system, arranged above the first conveying system, designed to move a plurality of caps; a capping device designed to pick up at least one cap from the second conveying system to apply the cap to a bottle carried by the first conveying system; and a heating unit comprising at least one heating device, a support beam carrying the heating device, a main operating device designed to move the support beam between a rest position in which the heating device is far from the bottles and a work position in which the heating device is close to the bottles to heat at least the neck of the bottles, and a safety operating device independent of the main operating device, designed to move the support beam between the work and rest positions.
Claims
1. A capping station (7) for a filling machine to fill bottles (1); the capping station (7) comprising: a first conveying system, which is designed to move a plurality of full bottles (1) in an upright position; a second conveying system, which is arranged above the first conveying system and is designed to move a plurality of caps (3), each designed to close a respective bottle (1); a capping device, which is designed to pick up at least one cap (3) from the second conveying system in order to apply the cap (3) to a bottle (1) carried by the first conveying system; and a heating unit (8) comprising at least one heating device (17), a support beam (16), which carries the heating device (17), and a main operating device (18), which is designed to move the support beam (16) between a rest position, in which the heating device (17) is far from a corresponding bottle (1), and a work position, in which the heating device (17) is close to a corresponding bottle (1) so that the heat of the heating device (17) heats at least the neck (4) of the bottle (1); wherein the heating unit (8) comprises a safety operating device (23), which is independent of the main operating device (18) and is designed to move the support beam (16) between the work position and a rest position, in which the heating device (17) is far from a corresponding bottle (1).
2. The capping station (7) according to claim 1 and comprising a control device, which is designed to detect a fault of the main operating device (18) and to operate the safety operating device (23) in case of fault of the main operating device (18).
3. The capping station (7) according to claim 2, wherein the control device is provided with at least one position sensor, which is designed to detect the position of the support beam (16) and detects a fault of the main operating device (18) depending on a reading of the position sensor.
4. The capping station (7) according to claim 1, and comprising: at least one guide; and at least one carriage (14), which carries the support beam (16) and is coupled to the guide (11) in a sliding manner so as to move the support beam between the work position and the rest position.
5. The capping station (7) according to claim 4, wherein both the main operating device (18) and the safety operating device (23) are designed to cause the carriage (14) to slide along the guide (11).
6. The capping station (7) according to claim 5, wherein the safety operating device (23) is interposed between the main operating device (18) and the carriage (14) in order to transmit the movement caused by the main operating device (18) to the carriage (14).
7. The capping station (7) according to claim 6 and comprising: two guides (11), which are parallel to one another; two carriages (14), which are each coupled to a corresponding guide (11); and an intermediate bracket (15), which joins the two carriages (14) to one another and is connected to the safety operating device (18).
8. The capping station (7) according to claim 6, wherein the safety operating device (23) comprises at least one pneumatic cylinder (24), which normally is expanded, at an end is connected to the carriage (14) and at the opposite end is connected to the main operating device (18).
9. The capping station (7) according to claim 8, wherein the pneumatic cylinder (24) is a single-acting cylinder and there is an elastic element (25), which is arranged in parallel to the pneumatic cylinder (24) and is countered by the pneumatic cylinder (24).
10. The capping station (7) according to claim 9, wherein the elastic element (25) pushes the carriage (14) towards the rest position.
11. The capping station (7) according to claim 5, wherein the main operating device (18) comprises: a shaft (12), which is mounted so as to rotate around a rotation axis (X); at least one arm (13), which at an end is rigidly mounted on the shaft (12) and at the opposite end is hinged to the safety operating device (23); and a rotary electric motor (19), which rotates the shaft (12) around the rotation axis (X);
12. The capping station (7) according to claim 11, wherein the main operating device (18) comprises: an eccentric pin (20), which is caused to rotate by the rotary electric motor (19); and a connecting rod-crank mechanism, which transmits the motion from the eccentric pin (20) to the shaft (12);
13. The capping station (7) according to claim 12, wherein the connecting rod-crank mechanism comprises: a connecting rod (21), which at an end is hinged to the eccentric pin (20); and a crank (22), which at an end is hinged to the connecting rod (21) and at the opposite end is rigidly connected to the shaft (12).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The present invention will now be described with reference to the accompanying drawings, which show a non-limiting example thereof, wherein:
[0011]
[0012]
[0013]
[0014]
[0015]
PREFERRED EMBODIMENTS OF THE INVENTION
[0016] In
[0017] In particular, the bottle 1 shown in
[0018] The present description is focused on a capping station 7, partly illustrated in
[0019] In order to facilitate the application operation of the cap 3, the capping station 7 also comprises a heating unit 8, illustrated in figures from 2 to 5, which is designed for heating at least a neck 4 of each of the bottles 1 to be capped, so as to determine the welding between neck 4 and cap 3 when these are brought into contact with one other.
[0020] Hereinafter, reference will be made to a heating unit 8 designed for heating in particular the neck 4 of the bottle 1 before it receives the cap 3; however, such heating unit 8 could also heat the cap 4 to be applied on each bottle 1 to be capped, or alternatively it could heat only the cap 4 to be applied on each bottle 1 to be capped.
[0021] In detail, the heating unit 8 shown in figures from 2 to 5 comprises a movable frame 9 which is connected to a fixed support body 10 by means of two horizontal guides 11 parallel to one another carried by the fixed support body 10 and by means of a shaft 12 mounted on the fixed support body 10 so as to be rotatable around a horizontal rotation axis X. With particular reference to
[0022] With particular reference to
[0023] Furthermore, the heating unit 8 made according to the invention comprises a safety operating device 23, which is independent of the main operating device 18, and can be operated in emergency conditions, i.e. when a fault of the main operating device 18 occurs (for example of the electric motor 19) to move the support beam 16 from the work position to a rest position, wherein the support beam 16 is at a distance from the bottles 1 such as to ensure that the heat of the heating devices 17 does not excessively heat the bottles 1. Such rest position can coincide with the aforementioned rest position, i.e. that which the support beam 16 assumes following the activation of the main operating device 18, or it can be a different rest position (but in any case more or less close to the rest position assumed due to the activation of the main operating device 18).
[0024] The presence of the safety operating device 23 allows eliminating the risk of damage of the bottle 1 or of the cap 3 due to an excessive heating of the bottle 1 or of the cap 3, i.e. to an excessively prolonged heating, ensuring that in the event of a fault of the main operating device 18, the movable frame 9 of the heating unit 8, and therefore the support beam 16, can be promptly removed all the same, advantageously avoiding damaging, or in the worst cases burning, the bottles 1.
[0025] In detail, the safety operating device 23 comprises at least one control device which is arranged for detecting a fault of the main operating device 18 and for operating the safety operating device 23. In particular, the main operating device 18 will be configured for ensuring that at each heating cycle the support beam 16 is operated in movement up to the work position and after a predetermined time interval it is again operated in movement up to a rest position. The control device will then be programmed for detecting any faults of the main operating device 18 by checking if the support beam 16 remains in the work position for a time longer than the predetermined time interval.
[0026] According to an embodiment of the invention, the control device comprises a position sensor (not shown) which detects instant by instant the position of the support beam 16, a timer (not shown) which counts the time starting from the moment in which the support beam 16 assumes the work position and resets each time the support beam 16 returns to the rest position, and a processing unit (not shown) which compares instant by instant the time measured by the timer with the predetermined time interval and as soon as the value measured by the timer exceeds the predetermined time value it activates the safety operating device 23, so as to induce, independently of the main operating device 18, the support beam 16 to assume a rest position, inducing in particular the sliding of the carriages 14 along the guides 11 so as to move the support beam 16 away from the bottles 1.
[0027] With particular reference to
[0028] With particular reference to
[0029] Alternatively, the safety operating device 23 could also comprise a single pneumatic cylinder 24 and/or a single elastic element 25. Each elastic element 25 could also be incorporated in a corresponding pneumatic cylinder 24.
[0030] It is understood that the capping station 7 object of the present invention could be used for capping any type of bottle 1 and/or phial and/or flask, for example bottles 1 suitable for cosmetic products, for food products, for cleaning products, etc. Likewise, it is clear that for the purposes of the invention the bottles 1 could be made of glass, instead of plastic, or of a glass-plastic composite material, etc.
[0031] It is also understood that the main operating device 18 described above could be made with any other equivalent mechanism, for example the electric motor 19 could be connected directly to the shaft 12, without thereby losing functionality.
[0032] The capping station 7 described above has numerous advantages.
[0033] First, the capping station 7 allows heating efficiently at least the neck 4 of the bottle 1 so as to facilitate the application of the cap 3 in conditions of maximum safety, minimizing the risk of damage of the bottle 1 and/or of the cap 3. In this way, it will be possible to reduce the percentage of waste (i.e. defective bottles 1) without compromising the speed of the capping station 7 and therefore the hourly productivity.
[0034] Finally, the capping station 7 described above is simple and cost-effective to manufacture, as it is composed of few additional elements with respect to the known capping stations and said additional elements are structurally simple, just as the movements of the operating devices are simple and easy to implement.