GATE FOR A TABLET DISCHARGE OF A TABLET PRESS, AND METHOD FOR ACTUATING A GATE
20200009058 ยท 2020-01-09
Assignee
Inventors
Cpc classification
B65G47/766
PERFORMING OPERATIONS; TRANSPORTING
B65G43/08
PERFORMING OPERATIONS; TRANSPORTING
B30B11/08
PERFORMING OPERATIONS; TRANSPORTING
B30B11/02
PERFORMING OPERATIONS; TRANSPORTING
B30B15/304
PERFORMING OPERATIONS; TRANSPORTING
International classification
B30B11/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A tablet press comprises a gate and a control apparatus configured to generate a switching signal. A drive apparatus is configured to move the gate in response to the switching signal received from the control apparatus between a first switching position and at least a second switching position. At least one sensor is configured to generate a detection signal when the gate reaches one of the switching positions. The control apparatus receives the detection signal and is configured to output a switching signal to the drive apparatus to at least partially move the gate back into a home position when there is a switching signal to move the gate out of the home position and there is no detection signal received from the at least one sensor. The control apparatus subsequently outputs a switching signal to again move the gate out of the home position to a target position.
Claims
1. A tablet press with a tablet discharge, the tablet press comprising: a gate; a control apparatus configured to generate a switching signal; a drive apparatus configured move the gate in response to the switching signal received from the control apparatus, wherein the gate is moved between a first switching position in which tablets are fed to a first tablet outlet and at least a second switching position in which tablets are fed to at least one second tablet outlet; and at least one sensor configured to generate a detection signal when the gate reaches at least one of the first switching position and the at least a second switching, wherein the detection signals from the at least one sensor are transmitted to the control apparatus, wherein the control apparatus is configured to output a switching signal to the drive apparatus to at least partially move the gate back into a home position when there is a switching signal to move the gate out of the home position and there is no detection signal received from the at least one sensor, and wherein the control apparatus subsequently outputs a switching signal to again move the gate out of the home position to a target position, and wherein the home position is defined as the one of the first switching position and the at least a second switching position that the gate is initially in and the target position is defined as the one of the first switching position and the at least a second switching position that the gate is being moved to.
2. The tablet press according to claim 1, wherein the tablet discharge comprises at least one discharge channel.
3. The tablet press according to claim 2, wherein the gate comprises at least one gate flap pivotably mounted within the at least one discharge channel of the tablet discharge and configured to direct tablets into the at least one discharge channel.
4. The tablet press according to claim 3, wherein the at least one discharge channel comprises at least one section that expands along a tablet discharge direction.
5. The tablet press according to claim 4, wherein the at least one section expands in a stepwise fashion.
6. The tablet press according to claim 4, wherein at least one the at least one sections that expands located upstream from a region swept by the gate flap during its pivoting movement.
7. The tablet press according to one of claim 4, wherein the at least one section expands on opposing walls of the discharge channel.
8. The tablet press according to claim 4, wherein the at least one section expands to a width of at least 10 mm.
9. A rotary tablet press comprising: a rotor configured to be rotated by a rotary drive, the rotor comprising, an upper punch guide configured to guide upper punches of the rotary tablet press, a lower punch guide configured to guide lower punches of the rotary tablet press, and a die plate arranged between the upper and lower punch guides, wherein the upper and lower punches are configured to interact with cavities defined on the die plate; a filling apparatus configured to dispense filling material into the cavities in the die plate; at least one upper pressing apparatus and at least one lower pressing apparatus that are each configured to interact with the upper punches and the lower punches to press the filling material in the cavities into tablets; an ejection apparatus configure to eject the tablets formed in the cavities; and a tablet discharge comprising at least two discharge channels and configured to receive ejected tablets, wherein at least one gate is positioned in the tablet discharge and comprises at least one gate flap pivotably mounted within the tablet discharge and configured to direct tablets into one of the at least two discharge channels.
10. A method for actuating a gate for a tablet discharge of a tablet press, the method comprising: moving the gate between a first switching position in which tablets are fed to a first tablet outlet, and at least a second switching position in which tablets are fed to at least one second tablet outlet; detecting when at least one of the first switching position and the at least a second switching position is reached by the gate using at least one sensor, wherein the gate is at least partially moved into its previous switching position when the at least one sensor does not detect the reaching of the one of the first switching position and the at least a second switching position, and wherein the gate is subsequently moved out of its previous switching position.
11. The method according to claim 10, wherein movement of the gate stops when the at least one sensor detects that a target position is reached, wherein the target position is defined as one of the at least one of the first switching position and the at least a second switching position that is the target position the gate is to be moved from its previous switching position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] An exemplary embodiment of the invention is explained below in greater detail with reference to figures. Schematically:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031] The same reference numbers refer to the same objects in the figures unless indicated otherwise.
DETAILED DESCRIPTION OF THE INVENTION
[0032] The rotary tablet press shown in
[0033] 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 ejecting apparatus 40, in the present case with a scraper 42 which supplies the tablets 74 produced in the rotary tablet press to a tablet discharge 46.
[0034] A control apparatus for operating the rotary press is shown with reference number 48. The control apparatus 48 can for example comprise a computer processor, microprocessor, microcontroller, or similar device. The control apparatus 48 is connected by lines (not shown) to, inter alia, the rotary drive of the rotor.
[0035] A gate 50 shown in
[0036] Tablets 74 which are discharged through the gate 50 for different operating states of the gate 50 are shown in
[0037] The second discharge channel 54 can for example lead to a tablet outlet for good tablets. The third discharge channel 72 can for example lead to a tablet outlet for a sampling. The first discharge channel 52 can for example lead to a tablet outlet for bad tablets.
[0038] In
[0039]
[0040] It can also be seen in
[0041] There are also expanded sections 90, 92 in the second discharge channel 54 on opposing sides directly upstream from the region swept by the free end 88 of the second gate flap 66 during its pivoting movement. In this context, the expanded section 92 is formed by the end of the first gate flap 58the bottom end in
LIST OF REFERENCE NUMBERS
[0042] 10 Die plate [0043] 12 Cavities [0044] 14 Upper punches [0045] 16 Lower punches [0046] 18 Upper control cam elements [0047] 20 Lower control cam elements [0048] 22 Filling apparatus [0049] 24 Filling chamber [0050] 26 Filling material reservoir [0051] 28 Feed section [0052] 30 Pressing apparatus [0053] 32 Upper pre-pressing roller [0054] 34 Lower pre-pressing roller [0055] 36 Upper main pressing roller [0056] 38 Lower main pressing roller [0057] 40 Ejection apparatus [0058] 42 Scraper [0059] 46 Tablet discharge [0060] 48 Control apparatus [0061] 50 Gate [0062] 52 First discharge channel [0063] 54 Second discharge channel [0064] 56 Partition wall [0065] 58 First gate flap [0066] 60 First pivot axis [0067] 62 Free end [0068] 64 Wall [0069] 66 Second gate flap [0070] 68 Second pivot axis [0071] 70 Partition wall [0072] 72 Third discharge channel [0073] 74 Tablets [0074] 76 Tablet [0075] 78 Tablet [0076] 80 Expanded section [0077] 82 Expanded section [0078] 84 Wall projection [0079] 86 Wall section [0080] 88 Free end [0081] 90 Expanded section [0082] 92 Expanded section