The invention relates to a device for producing three-dimensional objects by the successive solidifying of layers of a powdery, structural material that is solidifiable by means of radiation or particle radiation, at the points corresponding to the respective cross section of the object, in particular a generative laser sintering or laser melting device.
Known devices of this type have a housing, in which a process chamber and a building chamber are disposed. Provided inside the building chamber is a height-adjustable supporting means for supporting the object, and in addition a metering chamber for storing the structural material is disposed in most cases next to the building chamber. A coating device is used for applying the structural material, and an irradiation means is used for irradiating the applied layers of the structural material inside the building chamber, wherein the coating device is supported so as to be capable of being displaced back and forth at least over the building chamber, for which purpose the coating device is supported at least unilaterally in a guiding means.
A suchlike device is known, for example, from DE 10 2012 012 412. There, the guiding means for the coater is disposed in the lateral region of the process chamber.
It is known in principle from other technical fields to configure guiding elements for technical apparatuses and devices, for example X-ray machines in a room for X-ray examinations, as a gantry and to arrange a suchlike gantry either as a floor-mounted structure or also suspended beneath a ceiling of the room. Suspended gantry arrangements have not yet gained acceptance in the field of generative production technology.
The invention has as its object to configure a device having the characterizing features of the preamble to the claims in such a way that the building fields in the region of the process chamber can be configured flexibly on the respective building job. This object is accomplished in that the guiding devices for a coater device or other elements that is capable of displacement inside the process chamber is configured as a gantry arranged in the ceiling area of the process chamber, in particular of suspended configuration, in particular as a multiple gantry.
A suspended gantry in the region of a process chamber of a generative building device, such as an SLM device or an SLS device, is particularly advantageous in the respect that the building area of a process chamber can be kept completely free of guiding elements, on which coaters, scanners, sensors, diode arrays, powder feeds, powder extractors or other cleaning elements for the building chamber and the process chamber, air injector nozzles and the like can be disposed so as to be capable of free displacement. Because of the overhead configuration of the gantry in the ceiling area of the building chamber, the bottom building chamber region remains freely accessible, and supports, strut elements or elongated guiding elements can be dispensed with in the floor of the process chamber or in the lateral region of the building chamber. The guiding elements are situated in the upper region of the building chamber and are consequently also relatively easily accessible for servicing purposes.
The gantry in an advantageous further development of the invention can be configured in a complex manner as a multiple gantry and can exhibit a plurality of guiding regions disposed above one another or next to one another for different elements that are capable of displacement independently of one another. It is also possible in principle to displace different elements, such as a camera and a sensor, separately in one and the same guiding element, for example the camera from a left-hand side of the gantry over the entire gantry range of travel and a sensor from the right-hand side of the gantry over an entire range of travel of the gantry.
The gantry can also be exchangeably disposed in the ceiling area of the process chamber. In particular, a gantry insertion technique or suspension technique is offered, such that a gantry in the region of a process chamber can be adapted to the respective guiding and attachment requirements of the building job concerned. The gantry can also be disposed displaceably beneath the ceiling area of the process chamber, i.e. it can be displaced according to need to the left, to the right, pushed to the front or to the rear or can even be configured so as to be capable of being withdrawn outwards in the manner of a drawer through an opening in the process chamber or of being lifted upwards through a ceiling opening in the process chamber, on the one hand in order for it to be freely accessible for servicing purposes, but on the other hand for it also to be free for equipping with sensor modules, coater modules and the like. If a gantry is designed to be completely removable from a process chamber, it can then also be used as a “change gantry” in another process chamber.
The gantry can be disposed advantageously so as to be capable of rotation at least partially beneath the ceiling area of the process chamber, and one or a plurality of change/installation modules or elements that are capable of different displacement can be disposed on the gantry. The change/installation modules can be perforated plates, for example, which are disposed in a slidable and automatically displaceable manner on the gantry, but which are configured in such a way that sensors, cameras, scanners, cleaning elements, coaters and the like can be positioned there in a simple manner.
The gantry as a whole, or at least a section thereof, can be disposed in a non-horizontal position or can be brought into a non-horizontal position. In other words, a gantry for particular purposes can also be disposed obliquely beneath the ceiling of the building space, if the building job makes this appear to be advantageous. The gantry can constitute a basic gantry, on which one or a plurality of sub-gantries or change gantries are disposed. This results in a complex sliding system for the mounting of different elements beneath the ceiling, so that each point of the building field can be positioned independently of one another by different elements as the need arises. The at least one sub-gantry or change gantry can be disposed displaceably, rotatably, tiltably and the like on the basic gantry.
The sub-gantries or change gantries can be distributed or disposed in a distributable manner in groups over the surface of the building space.
The guiding elements of a plurality of gantries can be disposed inside one another in such a way that elements guided thereon that are capable of displacement back and forth in the process chamber are capable of displacement over the entire region of the process chamber.
It can be of considerable advantage, furthermore, if the ceiling area of the process chamber above the gantry is of upwardly foldable or removable configuration, such that the gantry is freely accessible from above. It is also useful, where appropriate, to mount the gantry so that it is likewise capable of being folded out upwards from the resulting ceiling opening, such that—as already mentioned below—it is readily accessible for the purpose equipping it with new or other modules.
The invention is explained in more detail on the basis of illustrative embodiments.
In these embodiments:
The device 1 schematically represented in the figures in the drawings is used for producing three-dimensional objects 2 by the successive solidifying of layers of a powdery, structural material 3 that is solidifiable by means of radiation or particle radiation, which material is held in readiness in a metering chamber 4 of the device 1. The building process takes place in two building chambers 5, 6, wherein a device having only one building chamber or having more than two building chambers likewise lies within the scope of the invention.
Customary devices of this kind exhibit a housing 7, in which a process chamber 8 are disposed with the building chambers 5 and 6. A supporting means, which is of height-adjustable configuration and can be moved downwards in the course of the building process, is allocated to the building chambers 5, 6 in each case. The structural material 3 from the metering chamber 4 is applied by means of a coating device 10 in layers inside the building chambers 5, 6 and is caused to melt by an irradiation device 11, for example comprising a laser 12 and a scanner 13, such that the object 2 is produced after cooling and curing of the melt.
Disposed in the ceiling area 14 of the process chamber 8 is a suspended gantry 15, which has a guiding device, for example for the coating device 10, a scanner 13 that is capable of displacement, or further elements that are capable of displacement, for example sensors, powder feeds, diode arrays, powder extractors, air injector nozzles, etc., that can be disposed in a freely displaceable manner.
It is possible in principle, on a gantry 15, to provide a plurality of guiding regions 16 disposed above one another or disposed next to one another for different movable elements of the aforementioned kind.
It can be appreciated from the illustrative embodiment represented in
In the illustrative embodiment represented in
In the illustrative embodiment represented in
The sub-gantries or change gantries 26 can also be positioned rotatably or tiltably in each case on the basic gantry 25 according to
Number | Date | Country | Kind |
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10 2015 122 460.7 | Dec 2015 | DE | national |
This application is a United States national stage entry of an International Application serial no. PCT/EP2016/078654 filed Nov. 24, 2016 which claims priority to German Patent Application serial no. 10 2015 122 460.7 filed Dec. 21, 2015. The contents of these applications are incorporated herein by reference in their entirety as if set forth verbatim.
Filing Document | Filing Date | Country | Kind |
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PCT/EP2016/078654 | 11/24/2016 | WO | 00 |