CAPSULE WEIGHING DEVICE AND CAPSULE FILLING DEVICE HAVING SUCH A CAPSULE WEIGHING DEVICE
20190162582 ยท 2019-05-30
Inventors
- Reiner Wurst (Allmersbach im Tal, DE)
- Michael Wildenhain (Allmersbach im Tal, DE)
- Thomas Puppich (Allmersbach im Tal, DE)
- Bernhard Handel (Allmersbach im Tal, DE)
Cpc classification
B65B7/28
PERFORMING OPERATIONS; TRANSPORTING
G01G17/00
PHYSICS
International classification
G01G17/00
PHYSICS
A61J3/07
HUMAN NECESSITIES
B65B1/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The disclosure relates to a capsule weighing device and to a capsule filling device having at least one such capsule weighing device. The capsule weighing device includes a measuring unit and a capsule measuring receiver for holding a capsule. The capsule measuring receiver is positioned at the side of the measuring unit with reference to the weight force direction and includes a capsule measuring channel which is continuous in the weight force direction and has a releasable locking mechanism for the capsule. The capsule filling device may include a receiving station for empty capsules and ejection station for filled capsules, wherein a first capsule weighing device is arranged on the input side of the receiving station for tare weighing, and wherein a second capsule weighing device is arranged on the output side of the ejection station for gross weighing.
Claims
1. A capsule weighing device for weighing capsules, the capsule weighing device comprising: a measuring unit; a capsule measuring receiver configured to hold a capsule during weighing in a weight force direction; said capsule measuring receiver being positioned laterally of the measuring unit relative to the weight force direction; and, a capsule measuring channel which is continuous in the weight force direction and has a releasable locking mechanism for the capsule.
2. The capsule weighing device of claim 1, wherein: said capsule measuring channel is a tube defining a circumferential direction; and, said tube is closed in the circumferential direction.
3. The capsule weighing device of claim 1, wherein said capsule measuring channel has an input end and an output end; the capsule weighing device further comprising: at least one draft shield for demand-dependent closing and opening of at least one of said input end and said output end of said capsule measuring channel.
4. The capsule weighing device of claim 1, wherein said capsule measuring channel is electrically shielded.
5. The capsule weighing device of claim 1, wherein: said locking mechanism includes a locking bar and a drive for said locking bar; said locking bar is mounted on said capsule measuring channel; and, said drive for said locking bar is separate from said capsule measuring receiver.
6. The capsule weighing device of claim 1, wherein said capsule measuring channel is configured to receive an upright capsule.
7. A capsule filling device comprising: at least one capsule weighing device having a measuring unit and a capsule measuring receiver configured to hold a capsule during weighing in a weight force direction; said capsule measuring receiver being positioned laterally of the measuring unit relative to the weight force direction; and, said at least one capsule weighing device further having a capsule measuring channel which is continuous in the weight force direction and has a releasable locking mechanism for the capsule.
8. The capsule filling device of claim 7 further comprising: a capsule guide channel; and, said capsule measuring channel forming a portion of said capsule guide channel.
9. The capsule filling device of claim 7 further comprising: a receiving station for empty capsules; an ejection station for filled capsules; said receiving station having an input side; said ejection station having an output side; the capsule filling device including a first capsule weighing device arranged on said input side of said receiving station for tare weighing; and, the capsule filling device further including a second capsule weighing device arranged on said output side of said ejection station for gross weighing.
10. The capsule filling device of claim 7, wherein: said capsule measuring channel is a tube defining a circumferential direction; and, said tube is closed in the circumferential direction.
11. The capsule filling device of claim 7, wherein said capsule measuring channel has an input end and an output end, the capsule weighing device further comprising: at least one draft shield for demand-dependent closing and opening of at least one of said input end and said output end of said capsule measuring channel.
12. The capsule filling device of claim 7, wherein said capsule measuring channel is electrically shielded.
13. The capsule filling device of claim 7, wherein: said locking mechanism includes a locking bar and a drive for said locking bar; said locking bar is mounted on said capsule measuring channel; and, said drive for said locking bar is separate from said capsule measuring receiver.
14. The capsule filling device of claim 7, wherein said capsule measuring channel is configured to receive an upright capsule.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The invention will now be described with reference to the drawings wherein:
[0021]
[0022]
DESCRIPTION OF THE PREFERRED EMBODIMENTS OF THE INVENTION
[0023]
[0024] A capsule measuring channel 6, which extends continuously from above to below in the weight force direction 5 and receives or guides through a capsule 1, is formed in the capsule measuring receiver 4. In the embodiment shown, the capsule measuring channel 6 extends parallel to the weight force direction 5, that is, vertically. It can, however, also be inclined with a lateral direction component at an angle to the weight force direction 5. In an embodiment, a progression in the weight force direction 5 should only be provided insofar as the respective capsule 1 is able to pass through automatically from above to below on account of the weight force which acts on it. Where applicable, however, supporting the passage of the capsule, for example with compressed air, can also be advantageous in order to overcome a deadlock or the like. As an alternative to this or in addition to it, however, other mechanisms can also be considered for movement of the capsules 1, movement directions counter to the weight force direction 5 also being possible within the framework of the invention.
[0025] In addition, it can also be seen that the capsule measuring channel 6 is configured for receiving an upright capsule 1. To this end, it includes an, in particular, circular cross section that is matched to the diameter of the capsule 1. Other cross sectional forms can also be expedient. In all cases, the cross section of the capsule measuring channel 6 is dimensioned in such a manner that the capsule 1 located therein is held in its shown upright position.
[0026] The capsule measuring receiver 4 additionally has a locking mechanism 7 which includes a locking bar 9 mounted on the capsule measuring channel 6 and a drive 10 for the locking bar 9 which is separate from the capsule measuring receiver 4. The locking bar 9 can be switched back and forth between a locking position, which locks the passage of the capsule measuring channel 6, and an unlocking position, which releases the passage of the capsule measuring channel 6, via the drive 10 in particular in a contactless manner and, for example, as a result of magnetic influence. No mechanical interaction exists between the locking bar 9 and its drive 10 in terms of time outside the switching operations such that the drive 10 then has no effect on the weighing operation of the capsule measuring receiver 4 with the capsule 1.
[0027] The capsule measuring channel 6 is realized in a preferred manner as a tube which is closed at least largely in the circumferential direction. This includes the possibility of the presence of a longitudinal slot, through which the capsule 1 could be moved upward or downward via an entrainer (not shown). In the shown embodiment, however, it is a tube which is entirely closed in the circumferential direction. Furthermore, the capsule weighing device 2 also has at least one draft shield 8 for demand-related closing and opening of the input side and/or the output side of the capsule measuring channel 6. In the embodiment shown, one draft shield 8 each is arranged at the upper input side and at the lower output side of the capsule measuring channel 6. Each draft shield 8 is shown in the open position, but can, where required, be moved into a closed position corresponding to an arrow 26 and also back out of it again. As soon as the capsule 1 has reached the weighing position thereof corresponding to the representation according to
[0028] In an associated method, the upper draft shield 8 according to
[0029] After successful weighing, at least the lower draft shield 8 is opened, and the locking bar 9 is unlocked via the drive 10 thereof. The weighed capsule 1 then falls downward out of the capsule measuring receiver 4 and can be supplied for further processing. Overall, in this case, the capsule 1 runs through the capsule measuring receiver 4 from above to below without experiencing any direction reversal in so doing and without changing its upright position in so doing. Where the cross section of the capsule measuring channel is correspondingly adapted, the described method can also be carried out consistently for horizontal capsules without time-consuming rotation being necessary.
[0030] Furthermore, the capsule measuring channel 6 is electrically shielded, which is why it is realized in the embodiment shown in an electrically conducting manner as a tube produced from a metal material. An electrically conducting plastics material, an embedded wire grid or the like can also be used. The same can also apply analogously to the upper and/or the lower draft shield 8. At all events, as a result the capsule measuring channel 6 acts as a Faraday cage for shielding against external electromechanical or electrostatic influences.
[0031]
[0032] The capsule filling device additionally includes a first capsule weighing device 2 and a second capsule weighing device 2, both capsule weighing devices 2, 2 corresponding identically to the configuration according to
[0033] In the method sequence, empty capsules 1 are supplied to the first capsule weighing device 2 and are weighed there in the above described manner. As empty capsules 1 are weighed here, this is a so-called tare weighing operation. The weighed empty capsules 1 are guided downward through the capsule guide channel 21 (
[0034] The filled capsules 1 are ejected out of the capsule receiver 23 of their capsule holders 22 at the following eject station 19 and are then introduced from above, analogously to the representation according to
[0035] It is understood that the foregoing description is that of the preferred embodiments of the invention and that various changes and modifications may be made thereto without departing from the spirit and scope of the invention as defined in the appended claims.