GATE OF A TABLET DISCHARGE OF A TABLET PRESS
20200023602 ยท 2020-01-23
Assignee
Inventors
- Sven Kolbe (Buechen, DE)
- Stefan Mallon (Kollow, DE)
- Friedrich Meissner (Schwarzenbek, DE)
- Jan Naeve (Kehrsen, DE)
- Stefan Luedemann (Hamburg, DE)
Cpc classification
B30B11/08
PERFORMING OPERATIONS; TRANSPORTING
B29C43/08
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A tablet discharge gate for a tablet press comprises a tablet channel having an inlet and an outlet and comprising one of a tube shape and a trough shape, a first outlet channel, and a second outlet channel. A gate chamber is positioned between the outlet of the tablet channel and the first and second outlet channels. A drive apparatus is configured to move the tablet discharge gate between a first position in which tablets are supplied from the tablet channel to the gate chamber and into the first outlet channel of the gate, and a second position in which tablets are supplied to the tablet discharge gate chamber and into the second outlet channel.
Claims
1. A tablet discharge gate for a tablet press comprising: a tablet channel having an inlet and an outlet and comprising one of a tube shape and a trough shape; a first outlet channel; a second outlet channel; a gate chamber positioned between the outlet of the tablet channel and the first and second outlet channels; and a drive apparatus configured to move the tablet discharge gate between a first position in which tablets are supplied from the tablet channel to the gate chamber and into the first outlet channel of the gate, and a second position in which tablets are supplied from the table channel to the gate chamber and into the second outlet channel.
2. The tablet discharge gate according to claim 1, wherein the tablet channel is configured to rotate about a rotary axis, and wherein the inlet of the tablet channel is positioned coaxial to the rotary axis and the outlet of the tablet channel is positioned non-coaxial to the rotary axis.
3. The tablet discharge gate according to claim 1, further comprising a guiding apparatus positioned in the gate chamber and configured to prevent tablets from unintentionally moving between the first outlet channel and the second outlet channel.
4. The tablet discharge gate according to claim 3, wherein the guiding apparatus comprises at least one stationary guiding element positioned in the gate chamber.
5. The tablet discharge gate according to claim 3, wherein the guiding apparatus comprises at least one guide body configured to be adjusted between an active position and a passive position within the gate chamber, and wherein a guide body drive is configured to adjust the guide body into the passive position during movement of the tablet channel between the first and the second position.
6. The tablet discharge gate according to claim 5, wherein the active positioned is defined when the at least one guide body separates the first outlet channel from the second outlet channel
7. The tablet discharge gate according to claim 1, wherein at least one of the first outlet channel and the second outlet channel comprises one of a trough-shape and a tube-shape.
8. The tablet discharge gate according to claim 2, wherein the tablet channel comprises a curved tube.
9. The tablet discharge gate according to claim 8, wherein the outlet of the tablet channel is defined on a rotary disk configured to be rotatably driven by the drive apparatus.
10. The tablet discharge gate according to claim 9, wherein the rotary disk is configured to block one side of the gate chamber.
11. The tablet discharge gate according to claim 1, wherein the drive apparatus comprises one of an electric motor, a pneumatic drive, and an electromagnetic drive.
12. The tablet discharge gate according to claim 1, further comprising a housing.
13. A rotary tablet press comprising: a tablet discharge comprising at least one gate, the at least one gate comprising, a tablet channel having an inlet and an outlet and comprising one of a tube shape and a trough shape, a first outlet channel, a second outlet channel, a gate chamber positioned between the outlet of the tablet channel and the first and second outlet channels, and a drive apparatus configured to move the at least one gate between a first position in which tablets are supplied from the tablet channel to the gate chamber and into the first outlet channel of the gate, and a second position in which tablets are supplied from the tablet channel to the gate chamber and into the second outlet channel.
14. The rotary tablet press according to claim 13, wherein the tablet discharge comprises a gate arrangement comprising at least two gates arranged consecutively along a direction of tablet flow.
15. The rotary tablet press according to claim 14, wherein the gate arrangement is positioned within a housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Exemplary embodiments of the invention are explained in greater detail below based on figures. Schematically:
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035] The same reference numbers refer to the same objects in the figures unless indicated otherwise.
DETAILED DESCRIPTION OF THE INVENTION
[0036] The rotary tablet press shown in
[0037] Moreover, the rotary tablet press comprises a pressing apparatus 30. The pressing apparatus 30 possesses a pre-pressing apparatus with an upper pre-pressing roller 32 and a lower pre-pressing roller 34, as well as a main pressing apparatus with an upper main pressing roller 36 and a lower main pressing roller 38. Furthermore, the rotary tablet press comprises an ejection apparatus 40, in the present case with a scraper 42 which supplies the tablets 75 produced in the rotary tablet press to a tablet discharge 46.
[0038] A control apparatus for operating the rotary press is shown with reference number 48. The control apparatus 48 is in communication with, inter alia, the rotary drive of the rotor. The control apparatus 48 can for example comprise a computer processor, microprocessor, microcontroller, or similar device.
[0039] According to an embodiment, the gate 50 shown in
[0040] As can be seen in
[0041] In an embodiment, the gate 50 comprises a first outlet channel 66, that is also tubular in the shown example, with a circular cross-section, and a second outlet channel 68, that is also tubular in the shown example, with a circular cross-section. The first outlet channel 66 can for example lead to a good channel for good tablets. The second outlet channel 68 can for example lead to a bad channel for bad tablets.
[0042] A gate chamber 70 is formed between the outlet 56 of the tubular tablet channel 52 and the first and second outlet channel 66, 68. A stationary guiding element 72 such as a guide plate is arranged in the gate chamber 70 in the shown example. As shown, the guiding element 72 comprises a substantially V-shaped cross-section, wherein the tip of the V points upward in
[0043] A gate arrangement according to the invention that can be arranged in the tablet discharge 46 of the rotary tablet press shown in
[0044] As discernible in particular in
LIST OF REFERENCE NUMBERS
[0045] 10 Die plate [0046] 12 Cavities [0047] 14 Upper punches [0048] 16 Lower punches [0049] 18 Upper control cam elements [0050] 20 Lower control cam elements [0051] 22 Filling apparatus [0052] 24 Filling chamber [0053] 26 Filling material reservoir [0054] 28 Feed section [0055] 30 Pressing apparatus [0056] 32 Upper pre-pressing roller [0057] 34 Lower pre-pressing roller [0058] 36 Upper main pressing roller [0059] 38 Lower main pressing roller [0060] 40 Ejection apparatus [0061] 42 Scraper [0062] 46 Tablet discharge [0063] 48 Control apparatus [0064] 50 Gate [0065] 52 Tablet channel [0066] 54 Inlet [0067] 56 Outlet [0068] 58 Rotary disk [0069] 60 Drive shaft [0070] 62 Electric motor [0071] 64 Rotary axis [0072] 66 First outlet channel [0073] 68 Second outlet channel [0074] 70 Gate chamber [0075] 72 Guiding element [0076] 74 Side walls [0077] 75 Tablets [0078] 76 Front wall [0079] 78 Housing [0080] 80 Mounting section [0081] 82 Housing cover [0082] 84 Discharge channel