DEVICE FOR COATING CONTAINERS
20200216222 ยท 2020-07-09
Inventors
Cpc classification
C23C16/045
CHEMISTRY; METALLURGY
C23C16/54
CHEMISTRY; METALLURGY
International classification
Abstract
Device for coating containers by a coating method. The device includes a carrier frame having outer dimensions less than the inner dimensions of an ISO container. The carrier frame includes within its outer dimensions: a conveying region where a conveying device for the containers is arranged; a treatment region where a container treatment unit for coating the containers is arranged; a transfer region where a transfer device is arranged; which moves the containers between the conveying device and the container treatment unit; a maintenance region accessible from outside, in which no components are arranged; an electronics region, where a switchgear cabinet for the electronics of the components of the device is arranged; a process-gas processing region, where the components for handling the process gas for the coating method are arranged; and a vacuum pump region, where vacuum pumps for producing the vacuum needed for a coating method are arranged.
Claims
1. A device for coating containers by means of a coating method, with a carrier frame, of which the outer dimensions are smaller than the inner dimensions of an ISO container, wherein the following regions are present within the carrier frame: a conveying region, arranged in which is at least one conveying device for the containers, a treatment region is provided, arranged in which is at least one container treatment unit for coating the containers, a transfer region, arranged in which is a transfer device, which moves the containers between the conveying device and the container treatment unit, a maintenance region, easily accessible from the outside, which is arranged on the rear side of the at least one container treatment unit, an electronics region, arranged in which is a switchgear cabinet for the electronics of the components of the device, a process-gas processing region, arranged in which are the components for the handling of the process gas for the coating method and process, a vacuum pump region, arranged in which are vacuum pumps for producing the vacuum required for the coating method and process.
2. The device according to claim 1, wherein the carrier frame is configured in such a way that it encloses the components in the individual regions on at least four sides, and preferably on all six sides, in the form of a cage or grid.
3. The device according to claim 1, wherein the sequence of the regions in the longitudinal direction is as follows: Conveying region, transfer region, treatment region, maintenance region; and connecting to them a process segment is arranged, which encloses in any desired arrangement to one another the electronics region, the process-gas processing region, and the vacuum pump region.
4. The device according to claim 3, wherein connected to the process segment in the longitudinal direction are further regions, in the following sequence: A further maintenance region, a further treatment region, a further transfer region, and a further conveying region, wherein the components in the process segment supply both the regions already present as well as the regions which are added.
5. The device-Device according to claim 3, wherein further regions are connected between the maintenance region (6) and process segment (12) in the following sequence: A further treatment region (5), a further transfer region (4), and a further conveying region (3).
6. The device according to claim 1, wherein the components arranged in the said regions do not project over the region determined by the outer dimensions of the carrier frame.
7. The device according to claim 1, wherein the maintenance region, easily accessible from the outside, is arranged on the rear side of the treatment unit and no components are arranged therein
8. The device according to claim 1, wherein the transfer device in the transfer region and/or further transfer region comprises in each case at least one gripper carriage, and the treatment unit in the treatment region and/or further treatment region comprises in each case a vacuum chamber with a predetermined number of places, preferably four places.
9. The device according to claim 8, wherein a first gripper carriage is arranged between a first conveying region and a first treatment region and a second gripper carriage is arranged between a further conveying region and a further treatment region, wherein the first conveying region is arranged along a face surface of the carrier frame and the further conveying region is arranged between the treatment regions and the process segment, wherein a further maintenance region for the further treatment region (5) is arranged at the same face surface of the carrier frame as the first conveying region, and the maintenance region for the first treatment region, like the second conveying region, is arranged between the treatment regions and the process segment.
10. The device according to claim 1, wherein at least one of the conveying devices comprises an adjustment device for the width of its channels.
11. The device according to claim 1, wherein the conveying region and/or the further conveying region in each case comprise two part conveying devices uncoupled from one another, a delivery conveying device (3b), and an output conveying device.
12. The device according to claim 1, wherein the process-gas processing region comprises an unheated region, arranged in which are a carrier gas mass flow regulator and an absolute pressure detector.
13. The device according to claim 1, wherein the vacuum pump region comprises two spatially separated part regions: A pre-vacuum part region for producing a pre-vacuum and a process vacuum part region for producing a process vacuum.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0017] Further details and advantages of the invention are explained in greater detail on the basis of exemplary embodiments represented in the drawings.
[0018] The figures show:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF INVENTION
[0026]
[0027] The outer dimensions of the carrier frame 1 are selected in such a way that they are slightly smaller in width and height than the inner dimensions indicated above of the ISO container. For example, the exemplary embodiment represented in
[0028] Formed in the carrier frame are different regions, which are either delimited from one another by corresponding frame members or of which several are grouped together by corresponding frame members. Starting from its face side 2, the sequence of these regions is as follows:
[0029] A conveying region 3; connected to this, a transfer region 4, and connected to this a treatment region 5. These three regions extend over the entire width of the carrier frame 1. They are formed between the first and second vertical members of the carrier frame 1.
[0030] Between the second and third vertical member is a maintenance region 6, which likewise extends over the entire width of the carrier frame 1.
[0031] Arranged next to one another, between the third and fourth vertical members, are two regions: In the representation, seen from the face side 2, on the left is an electronics region 7 and on the right a process-gas processing region 8.
[0032] Formed between the fourth and sixth (last) members is a vacuum pump region 9, in which the components are located which are necessary for producing the vacuum required for the coating process. The vacuum pump region 9 in this situation is divided by the fifth vertical member into two part regions. Seen from the face side 2 of the carrier frame 1, in front of this frame member is a part region, designated within the framework of this Application as the pre-vacuum part region 10, which serves to produce the pre-vacuum; behind the fifth vertical member is a part region, designated within the framework of this Application as the process vacuum part region 11, which serves to produce the process vacuum.
[0033] The member grid, i.e. the position and number of the vertical members, can of course be varied as may be required.
[0034] Represented in
[0035] In
[0036] Arranged in the transfer region 4 is a transfer device, such as, for example, a gripper carriage 4a, 4b, 4c (see
[0037] The maintenance region 6 formed behind the treatment region 5 is easily accessible from the outside (for example by way of a door). There are no components arranged in it, and it is easy to access the treatment unit in order to be able to maintain or repair it.
[0038] In order to carry out the coating method and process, appropriate process gases are needed, which in part need to be processed. These are then conveyed via pipes (not represented) from the process-gas processing region 8 to the treatment unit. Advantageously, in the process-gas processing region 8 is a region which in particular is not heated, arranged in which are all the technical method and process components required for this purpose, such as a carrier gas mass flow regulator and an absolute pressure detector. These devices can accordingly be operated within their specifications. This would be perceptibly more difficult, or not the case at all, if these devices were arranged together with the mass flow regulators of the monomers in another heated part region of the process-gas processing region 8; the higher temperature with the mass flow regulators last referred to is necessary in the region of the process-gas system, in order to attain higher volume flows of the process gas.
[0039] Since the process-gas processing region 8 does not extend over the entire width of the carrier frame 1, it is arranged in the other part of the vacuum pump region 9. In this the vacuum is produced which is likewise needed for the coating method. A number of vacuum pumps are required for this. These are arranged in separate part regions, depending on their function; there are vacuum pumps which are required for producing a pre-vacuum, these being grouped together in the pre-vacuum part region 10, and there are vacuum pumps which are necessary for producing a process vacuum, these being grouped together in the process vacuum part region 11. The vacuum pumps are connected to one another and to the treatment unit by way of pipes, not shown. Due to the modular grouping, the components which belong together can be replaced more easily.
[0040] In order to provide electric current to all the components arranged inside the carrier frame 1, to control their function, etc., all the corresponding electrical and electronic components are grouped together in a switchgear cabinet. For this purpose, all such components are arranged readily accessible in immediate proximity to one another, which is maintenance-friendly and repair-friendly.
[0041] The last-named regions, the electronics region 7, the process-gas processing region 8, and the vacuum pump region 9, grouped together, are also designated as the process segment.
[0042] The exemplary embodiment represented in
[0043] The difference between the exemplary embodiment from
[0044] The difference between the fourth exemplary embodiment from
[0045] The difference between the fifth exemplary embodiment from
[0046] The sixth exemplary embodiment from
[0047] The difference in relation to all the other exemplary embodiments lies in the fact that each of the two conveying devices arranged in the conveying regions 3, 3, the first conveying device 3c and the second conveying device 3c, must be capable of being driven in both directions, in order to be able to carry out both the delivery conveying of the uncoated containers as well as the output containing of the coated containers. This represents a further possibility for a compact device with, at the same time, efficient use of the components of the process segment 12, as was already the case heretofore with the two other embodiments with two treatment regions 5a, 5b in each case. With regard to the advantages, reference is made to the descriptions provided there. In a comparable manner to the fifth exemplary embodiment from
[0048] It is of course possible for alternative delivery conveyors and output conveyors to be provided for, such as, for example, parallel belts, wherein the associated grippers and a gripper carriage would have to be adapted accordingly.
REFERENCE NUMBER LIST
[0049] 1 Carrier frame [0050] 2 Face surface [0051] 3 (First) conveying region [0052] 3a Delivery conveying device [0053] 3b Output conveying device [0054] 3c First conveying device [0055] 3 Further conveying device [0056] 3c Second conveying device [0057] (First) transfer region [0058] 4a Individual gripper carriage [0059] 4b First gripper carriage [0060] 4c Second gripper carriage [0061] 4 Further transfer region [0062] 5 (First) treatment region [0063] 5a First container treatment unit [0064] 5b Second container treatment unit [0065] 5 Further treatment region [0066] 6 (First) maintenance region [0067] 6 Further maintenance region [0068] 7 Electronics region [0069] 8 Process-gas processing region [0070] 9 Vacuum pump region [0071] 10 Pre-vacuum part region [0072] 11 Process vacuum part region [0073] 12 Process segment