Powder provisioning device for a powder doser
11279502 ยท 2022-03-22
Assignee
Inventors
Cpc classification
B01F29/83
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A powder provisioning device is for a powder doser, in particular for a tamping pin station. The powder provisioning device comprises a powder container, which can be driven in rotation, for receiving a powder bed, and a stationarily mounted smoothing device for the powder bed. The stationarily mounted smoothing device includes a stirring unit having at least one stirrer which projects into the interior of the powder container and can be driven in rotation.
Claims
1. A method of operating a powder provisioning device for a powder doser, the powder provisioning device having a powder container, which can be driven in rotation, for receiving a powder bed, and the powder provisioning device further having a stationarily mounted smoothing device for the powder bed, the stationarily mounted smoothing device including a stirring unit having at least one stirrer which projects into the interior of the powder container, the method comprising the step of: driving the at least one stirrer which projects into the interior of the powder unit in rotation.
2. The method of claim 1, wherein the at least one stirrer has a vertically oriented axis of rotation.
3. The method of claim 1, wherein the stirring unit has two interengaging stirrers which can be driven in opposite directions.
4. The method of claim 1, wherein the stirrer has at least one axial mixing element.
5. The method of claim 1, wherein the stirrer has at least one radial mixing element.
6. The method of claim 1, wherein the rotating movement of the stirrer is coupled in a synchronized manner to a rotating movement of the powder container.
7. The method of claim 1, wherein the powder doser is a tamping pin station.
8. A powder provisioning device for a powder doser, the powder provisioning device comprising: a powder container for receiving a powder bed; said powder container defining an interior and being configured to be driven in rotation in a first rotating movement; a stationarily mounted smoothing device for said powder bed; said stationarily mounted smoothing device including a stirring unit having at least one stirrer which projects into said interior of said powder container; said at least one stirrer being configured to be driven in rotation in a second rotating movement; said second rotating movement of said at least one stirrer being coupled in a synchronized manner to said first rotating movement of said powder container.
9. The powder provisioning device of claim 8, wherein said powder doser is a tamping pin station.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described with reference to the drawings wherein:
(2)
(3)
DESCRIPTION OF THE PREFERRED EMBODIMENTS OF THE INVENTION
(4)
(5) In addition to the mentioned cup-shaped powder container 5, the powder provisioning device 4 includes a smoothing device 6 for the powder bed 3, further details of which will become apparent from considering
(6) The mentioned rotating movement of the powder container 5 and the powder bed 3 about the axis of rotation 12 is intermittent or cyclic. During the measuring of the individual powder dosing quantities as outlined above, that is, when the tamping pin sleeve plunges into the powder bed 3 and until the withdrawal thereof, the rotating movement is stopped. The rotating movement of the unit including the powder container 5 and the powder bed 3 is then started and again stopped after a defined angular step has been executed, whereupon the measuring and dosing step begins again. According to the representation of
(7) Any craters present in the surface 19, or also other disturbances in the powder bed 3 caused by the powder doser 1, initially travel with the rotating movement of the powder container 5 in the direction of the arrow 13. In order to eliminate such disturbances, the smoothing device 6 already mentioned above for the powder bed 3 is positioned behind the powder doser 1 in the direction of rotation (arrow 13). The smoothing device 6 includes a stirring unit 7, which in turn includes at least one, here two stirrers 8, 9. The two stirrers 8, 9 have drive shafts via which they are rotatably mounted in a stationary bearing plate 18 which does not rotate with the powder container. One stirrer 8 has a vertical axis of rotation 14 and the other stirrer 9 has a vertical axis of rotation 16. The two axes of rotation 14, 16 of the stirrers 8, 9 are axially parallel to one another and also axially parallel to the axis of rotation 12 of the powder container 5.
(8) The two stirrers 8, 9 each have at least one, here four axial mixing elements 10 and, optionally, also at least one, here four radial mixing elements 11, each made of bent wire. The axial mixing elements 10 run parallel to the respective axis of rotation 14, 16, but they can also lie at an oblique angle thereto and extend, for example, helically. The radial mixing elements run radially to the respective axis of rotation 14, 16. They also do not have to have exactly that profile but can also lie at an oblique angle thereto and extend, for example, spirally. The stirrers 8, 9 are so positioned that they project with their axial and radial mixing elements 10, 11 into the interior of the powder container 5 and there into the powder bed 3. The depth of penetration of the stirrers 8, 9 beneath the surface 19 of the powder bed 3 reaches almost to the bottom of the powder container 5. In any case, it is preferably at least as great as the depth of penetration of the tamping pins 2.
(9) It is also apparent from the top view according to
(10) The rotating movement of the two stirrers 8, 9 is coupled to the rotating movement of the powder container 5. This can be effected, for example, by a common drive and a mechanical forced coupling via toothed wheels, but also via a suitable electronic control system with separate drives. In any case, the stirrers 8, 9 stop when the powder container 5 stops. And they rotate when the powder container 5 also performs a rotating movement. In acceleration and retardation phases of the powder container 5, the stirrers 8, 9 also perform correspondingly accelerated or retarded rotating movements.
(11) Overall, via the stirring unit 7, disturbances of the powder bed 3 in the wake of the powder doser 1 are eliminated, and the powder doser 1 is continuously supplied with a powder bed 3 having homogeneous powder properties and having a surface 19 at a constant height.
(12) 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.