Directly printed panel having a two-layer design
10876292 · 2020-12-29
Assignee
Inventors
Cpc classification
Y10T428/24802
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E04F13/0889
FIXED CONSTRUCTIONS
E04F15/02038
FIXED CONSTRUCTIONS
B05D7/586
PERFORMING OPERATIONS; TRANSPORTING
B32B21/02
PERFORMING OPERATIONS; TRANSPORTING
E04F15/107
FIXED CONSTRUCTIONS
E04C2/50
FIXED CONSTRUCTIONS
B32B27/308
PERFORMING OPERATIONS; TRANSPORTING
B44C1/00
PERFORMING OPERATIONS; TRANSPORTING
B05D3/067
PERFORMING OPERATIONS; TRANSPORTING
E04F15/102
FIXED CONSTRUCTIONS
Y10T428/24868
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E04F13/16
FIXED CONSTRUCTIONS
International classification
B32B3/10
PERFORMING OPERATIONS; TRANSPORTING
B32B21/02
PERFORMING OPERATIONS; TRANSPORTING
B32B27/30
PERFORMING OPERATIONS; TRANSPORTING
B44C1/00
PERFORMING OPERATIONS; TRANSPORTING
B05D7/00
PERFORMING OPERATIONS; TRANSPORTING
E04F15/10
FIXED CONSTRUCTIONS
E04B5/02
FIXED CONSTRUCTIONS
E04B2/00
FIXED CONSTRUCTIONS
B32B7/02
PERFORMING OPERATIONS; TRANSPORTING
E04F13/08
FIXED CONSTRUCTIONS
E04F13/16
FIXED CONSTRUCTIONS
Abstract
A panel and a method for manufacturing of such a panel with a carrier plate, comprising a front side and a back side, and wherein the carrier plate comprises a layer system at least at the front side that is built from various polymer layers with different hardness values.
Claims
1. A panel comprising a carrier plate having a front side and a back side, wherein the carrier plate has a layer system at least at the front side, and the carrier plate comprises tongue and groove elements at its sides, enabling coupling of various similar panels in parallel direction to the front side and perpendicular to the front side by form fitting, wherein the layer system, originating of the front side, comprises: a first elastic layer S1 made of an polymer, having a thickness of 20 to 600 m and a Martens hardness M.sub.S1 of 0.5 to 120 N/mm.sup.2; a second layer S2 made of a polymer, having a thickness of 10 to 180 m and a Martens hardness M.sub.S2, wherein M.sub.S2>M.sub.S1; and a decor layer arranged between the front side and the layer S1, comprising a printing ink; the printing ink is based on a polymerizable acrylate and/or N-vinylcaprolactam.
2. The panel according to claim 1, wherein the polymer of the layer S1 is an aliphatic polymer.
3. The panel according to claim 1, wherein M.sub.S1 is between 2 and 50 N/mm.sup.2.
4. The panel according to claim 1, wherein M.sub.S2 is between 50 and 300 N/mm.sup.2.
5. The panel according to claim 1, wherein the first elastic layer S1 has a thickness of 40 to 500 m.
6. The panel according to claim 1, wherein the second elastic layer S2 has a thickness of 10 to 180 m.
7. The panel according to claim 1, wherein the polymer of the layer S1 is based on a radiation hardened aliphatic acrylate.
8. The panel according to claim 1, wherein a third elastic layer S3 is arranged between the front side and decor layer, having a Martens hardness M.sub.S3, wherein M.sub.S3M.sub.S1.
9. The panel according to claim 8, wherein the layer S3 has a thickness of 10 to 300 m.
10. The panel according to claim 1, wherein the printing ink of the decor layer and at least a part of the layer S1 have been hardened together.
11. The panel according to claim 1, wherein the decor layer has been applied by digital printing.
12. The panel according to claim 1, wherein the polymer of the layer S2 is based on one or more of the following acrylates: 1,6-hexandioldiacrylate, polyester acrylate, polyurethane acryl acid ester or dipropylene glycole diacrylate.
13. The panel according to claim 1, wherein the carrier plate has a thickness between 3 and 20 mm.
14. The panel according to claim 1, wherein the carrier plate is a MDF plate, a HDF plate, a PVC plate, a cement fiber plate, a WPC plate (wood powder composite), a thermoplastic recycling plate, wood plate, a wood veneer plate, or a parquet plate.
15. The panel according to claim 1, wherein no paper or plastic foil is applied to the front side of the panel.
16. The panel according to claim 8, wherein the source materials of the layers S1, S2, and S3 are radiation hardenable materials.
17. The panel according to claim 1, wherein the layers S1 and S2 are transparent.
18. The panel according to claim 1, wherein the panel is not provided with abrasion-resistant particles.
19. The panel according to claim 1, wherein the layer system has a damping effect of at least 5 dB, compared to the uncoated carrier plate, measured according to EPLF norm.
20. The panel according to claim 1, wherein the hardness of the elastic layer S1 is substantially constant over the total thickness, and in that the hardness differences within the layer are less than 20 N/mm.sup.2.
21. The panel according to claim 1, wherein the panel is a wall panel, ceiling panel, or floor panel.
22. The panel according to claim 1, wherein M.sub.S1 is between 2 and 40 N/mm.sup.2.
23. The panel according to claim 1, wherein M.sub.S2 is between 15 and 150 N/mm.sup.2.
24. The panel according to claim 1, wherein the first elastic layer S1 has a thickness of 80 to 450 m.
25. The panel according to claim 1, wherein the second elastic layer S2 has a thickness of 20 to 100 m.
26. The panel according to claim 1, wherein the polymer of the layer S1 is based on a radiation hardened aliphatic urethane acrylate.
27. The panel according to claim 1, wherein the printing ink of the decor layer and at least a part of the layer S1 have been hardened together by radiation.
Description
4. DESCRIPTION OF PREFERRED EMBODIMENTS
(1) In the following, the present invention is explained in more detail with reference to the attached figures. At this:
(2)
(3)
(4) In
(5) In the shown layer system of panel 10, a primer coating 16 with a thickness of, for example, 50-200 m is provided which is based on a watery acrylate system. Beneath the primer, further very thin primer coatings and/or filler layers may be applied as known by the skilled person from the area of direct imprinted panels. A decor layer or a decor 18 is imprinted onto the primer 16. The decor 18 or the decor layer 18 have been applied, for example, by means of a polymerizable printing ink by a digital four color printing. A first elastic layer S1 is located above the decor layer 18 with a thickness of 200 m and a Martens hardness M.sub.S1 of 15 N/mm.sup.2. A second layer S2 is applied onto the first elastic layer S1, which has a thickness of 80 m and a Martens hardness of about 25 N/mm.sup.2.
(6) The example of
(7) In the following, the manufacturing of a panel according to the invention is exemplarily shown in
(8) In the first shown station 30, a grounding mass is applied onto the front side (main side) of the carrier plates 11 by means of a liquid curtain 31 of coating material. The liquid curtain 31 ranges among the complete width of the plate and the plates are transported through this curtain and are coated at the same time. Below the device 30 for outputting the curtain, a collection container 32 is located, in which the liquid curtain drops, when no plate is passed through the curtain, as for example, at a gap between two consecutive plates. Preferably, a watery acrylate dispersion is used as a coating material for the grounding. In a subsequently arranged drying station 40, the applied grounding is dried by means of hot air, i.e. water is extracted from the watery acrylate dispersion. After drying the grounding, a decor layer is imprinted onto the grounding by means of a digital printing device 45. This decor layer, for example, can imitate real wood, but nowadays commercial digital printing works are able to nearly print every desired decor or pattern on the plates. Preferably, a printing ink is utilized in printing device 45 that is polymerizable by means of radiation, i.e. a printing ink that is based on a polymerizable acrylate and/or N-vinylcaprolactam. It is apparent for the skilled person that the illustration of the digital printing device 45 is only purely schematic and that such printing devices commonly consist of several stations. After imprinting the desired decor, a first coating device 50 applies a first layer of liquid radiation hardenable aliphatic acrylate. The material is chosen in such a way that it comprises a Martens hardness M.sub.S1 of 0.5-120 N/mm.sup.2 after the curing. The device 50 is a roller application device and is able to apply a layer thickness of about 40-100 m in one process step. In the subsequent station 60, the applied layer of liquid radiation hardenable aliphatic acrylate is cured at least in part by means of UV radiation. Subsequently, a second device 50 follows in order to apply a second layer of the same liquid radiation hardenable acrylate compared to the first layer. Also here, the station 50 is a roller application station which is commonly able to apply layer thicknesses of 30-100 m. In station 60 this second layer is at least cured in part by UV radiation. Subsequently, in a third coating device 50 a third layer of the same liquid radiation hardenable acrylate is applied and in the third radiation station 60 it is at least in part cured by means of UV radiation. In the schematic view of