SCREENING DEVICE FOR THE GENERATIVE MANUFACTURING OF COMPONENTS
20190054501 · 2019-02-21
Assignee
Inventors
Cpc classification
B07B1/4609
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B07B13/16
PERFORMING OPERATIONS; TRANSPORTING
B29C64/153
PERFORMING OPERATIONS; TRANSPORTING
International classification
B07B1/46
PERFORMING OPERATIONS; TRANSPORTING
B29C64/153
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention concerns a sieve device 10 for use in a device 1 for generative manufacture of components 2 by means of successive solidification of individual layers 3 of powdered solidifiable construction material 4 by exposure to radiation, in particular laser radiation 5, through sector by sector melting or fusing and binding of the construction material 4, comprising a coating device 6 for application of the layers 3 on a carrier 7, a dosing device 8 for preparing the powdered construction material 4 for the coating device 6, an overflow container 9 for receipt of construction material 4 not needed in the coating process that can be fed to the sieve device 10 for sieving the powder material into the overflow container 9 during the construction process, wherein a sieve 12 of the sieve device 10 is configured at least in sections to be inclined in a way that the construction material 4 after appearance on the sieve to be sieved is first brought across the surface of the sieve with an initial velocity and then the transport velocity of the construction material 4 slows or is reduced to a lower velocity over the surface of the sieve.
Claims
1. A sieve device (10) for application in a device (1) for generative manufacture of components (2) by sequential solidification of individual layers (3) from powdered solidifiable construction material (4) by exposure to radiation, in particular laser radiation (5) by means of sector by sector melting or fusing and binding the construction material (4) comprising a coating device (6) for application of the layers (3) on a carrier (7), a dosing device (8) for preparation of the powdered construction material (4) for the coating device (6), an overflow container (9) for intake of construction material (4) not needed for the coating process that can be fed to the sieve device (10) for sieving the powder material diverted into the overflow container (9) during the construction process, characterized in that a sieve (12) of the sieve device (10) is at least in sections configured to be inclined so that the construction material (4) to be sieved after impinging on the sieve (12) is at first brought with an initial velocity over the surface of the sieve (12) and then the transport velocity of the construction material (4) is reduced or brought to a lower speed across the surface of the sieve.
2. A sieve device (10) according to claim 1, characterized in that the sieve (12) is curved in the transport direction (20) of the construction material (4) on the surface of the sieve.
3. A sieve device (10) according to claim 1, characterized in that the surface of the sieve (12) in the area of a powder feed opening (11) comprises a greater incline than in a powder discharge area (18) of the sieve (12).
4. A sieve device (10) according to claim 2, characterized in that the sieve (12) comprises a uniform curve.
5. A sieve device (10) according to claim 1, characterized in that the sieve (12) consists of several particularly angular or articulated sieve sections (12.1-12.4) bordering on each other, or comprises such sieve sections.
6. A sieve device (10) according to claim 5, characterized in that the sieve sections (12.1-12.4) are configured each to be level, and/or with a separate curve, respectively.
7. A sieve device (10) according to claim 1, characterized in that the longitudinal side edges of the sieve or of the sieve sections (12.1-12.4) have raised sides.
8. A sieve device (10) according to claim 1, characterized in that the sieve (12) or the sieve sections (12.1-12.4) is or are adjustable in its or their inclination.
9. A sieve device (10) according to claim 1, characterized in that the powder feed opening (11) in the longitudinal direction (20) of the sieve (12) or of the sieve sections (12.1-12.4) is adjustable.
10. A sieve device (10) according to claim 5, characterized in that the angle between the sieve sections (12.1-12.4) is adjustable.
11. A sieve device (10) according to claim 1, characterized in that the sieve (12) or the sieve sections (12.1-12.4) together or individually or each separately are provided with an oscillating drive (13).
12. A sieve device (10) according to claim 1, characterized in that at least one grain container (14) is installed under the sieve (12) or the sieve sections (12.1-12.4), the outlet of which is connected or can be connected with a dosing container or a supply container of the device (1).
13. A device (1) for generative manufacture of components (2) by sequential solidification of individual layers (3) from powdered solidifiable construction material (4) by exposure to radiation, in particular laser radiation (5), by means of sector by sector melting or fusing and binding the construction material (4) comprising a coating device (6) for application of the powder layers (3) on a carrier (7), a dosing device (8) for preparation of the powdered construction material (4) for the coater, and an overflow container (9) for intake of construction material (4) not needed for the coating process, characterized by a sieve device (10) with features according to claim 1.
Description
[0007] The invention is explained in more detail in the exemplary embodiments in the drawings. The following are shown:
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016] Reference will first be made to drawing
[0017] In
[0018] The oversized grain, i.e. powder particles that cannot penetrate the mesh of the sieve, is directed to a powder discharge area 18 on the end of the sieve and is collected there in an oversized grain container.
[0019] According to the invention, the sieve 12 of the sieve device 10 is configured according to
[0020] As shown in
[0021] For the exemplary embodiment shown in Fig. a step is provided in an area of the sieve 12, because the sieve section 12.2 comprises a slighter declination than the following sieve section 12.3 in the transport direction 20.
[0022] Such a step can naturally also be adjusted in the exemplary embodiment according to
[0023] In
[0024] An oscillating drive 13 is also indicated in the drawing and is configured so that it can be put into oscillating motion by means of drive elements 13 of the sieve 12 or the individual sieve sections 12.1-12.4.
REFERENCE NUMBER LIST
[0025] 1. Device [0026] 2. Component [0027] 3. Layers [0028] 4. Construction material [0029] 5. Laser radiation [0030] 6. Coating device [0031] 7. Carrier [0032] 8. Dosing device [0033] 9. Overflow container [0034] 10. Sieve device [0035] 11. Powder feed opening [0036] 12. Sieve [0037] 13. Oscillating drive [0038] 13. Drive elements [0039] 14. Coarse grain container [0040] 15. Grain discharge opening [0041] 16. Powder line [0042] 17. Powder discharge area [0043] 18. Oversized gain container [0044] 19. Transport direction [0045] 20. Longitudinal direction [0046] 20. End edges/Lower edges