Wooden composite board with at least one depression imprinted into the upper side
Patent Information
- Authority / Receiving Office
- EP · EP
- Patent Type
- Applications
- Current Assignee / Owner
- FLOORING TECH LTD
- Filing Date
- 2024-06-28
- Publication Date
- 2026-05-06
AI Technical Summary
Wood-based panels, particularly fiberboards, exhibit a spring-back effect during pressing, resulting in reduced structural depth and susceptibility to cracking and transparency defects, especially when using deeply structured embossing and melamine resin papers, which also face positioning challenges due to the design of short-cycle presses.
A mixed resin of phenolic resin and melamine resin is used, with a preferred ratio of 2:1, applied to the backing sheet, which significantly reduces the spring-back effect and minimizes cracking and transparency issues, while higher grammage papers coated with this resin allow deeper structuring without altering pressing conditions.
The solution achieves deeper embossed recesses with reduced cracking and transparency defects, maintaining the structural integrity and visual quality of the wood-based panels, with the phenolic-melamine resin mixture and appropriate paper weights enhancing the embossing process.
Smart Images

Figure EP2024068364_02012025_PF_FP_ABST
Abstract
Description
[0001] Wood-based panel with at least one recess embossed into the top surface
[0002] The invention relates to a wood-based panel with a core, at least one decorative layer lying on an upper side above the core, under which at least one underlay sheet made of paper coated with a resin is provided, at least one cover layer lying above the decorative layer and at least one depression embossed into the upper side.
[0003] Modern laminate flooring incorporates a variety of design effects to visually enhance the product or to create a floor that is even more similar to that of parquet or real wood flooring. Technical modifications are also being made to the product to make it more trouble-free to use over longer periods of time. Examples include the use of digital printers to produce wood reproductions without repeating designs, improved joining profiles to prevent water penetration, and beveling element edges. This design element, too, was borrowed from real wood flooring. It serves two functions. Firstly, the bevel visually breaks up the installation pattern, and secondly, it conceals machine-related height tolerances. However, the bevel also creates a weak point that makes it easier for water to penetrate the joining area of the flooring elements.Although the bevel can be sealed with colored varnishes, this seal is usually not waterproof. This means that frequent exposure to water in this area, e.g., during maintenance, can cause swelling. To avoid this problem, an attempt was made to pre-structure the coating of the wood-based substrates in a short-cycle press with melamine impregnated materials, using deeply textured embossed plates. The bevel should then remain as a melamine coating during processing or profiling of the side edges.
[0004] EP 3 578 383 A1 discloses a method by which a relief is embossed into the top side of an HDF board in a first embossing step as at least one strip-shaped depression. First, a coating agent is applied to the top side, followed by an underlay sheet made of resin-impregnated paper, then a decorative paper is applied to this, and an overlay paper is applied to the decorative paper as an abrasion-resistant layer. This structure is fed into a press and pressed under high pressure and high temperature. During pressing, the at least one strip-shaped depression is embossed again in a second embossing step without changing the depth. Finally, the pressed HDF board is divided into individual panels by sawing along the depressions. Such panels can be used as floor panels or as wall and ceiling panels.They are often decorated with wood, stone or fantasy motifs with an overlaid, three-dimensional surface.
[0005] For a chamfer to be clearly visible, the depth of the recess must be between 0.4 and 0.5 mm. Embossing calender rolls can be used to create the recess, which can be applied at a pressure of up to 600 N / mm 2 and a surface temperature of up to 220°C. A short-cycle press with a deeply structured press plate, preferably with strip-shaped elevations on the press plate, can also be used.
[0006] While the known process provides the technology for pressing the bevel, further problems remain. The wood-based panels, particularly fiberboards, which form the core and serve as the carrier material, exhibit a so-called spring-back effect when pressed with deeply structured sheets. This means that after pressing, the wood-based panels do not exhibit the structural depth of the sheet, but only approximately 60% of the embossed structural depth. This is due to the elasticity of the wood-based panels, which are compressed in the short-cycle press and partially expand again after the pressure is released. This makes it necessary to structure the pressed sheets significantly more deeply in order to create the desired structural depth in the final product.
[0007] A further problem is that in the areas where deep structuring occurs, the melamine resin papers used for the at least one underlay sheet, the decor, and the overlay tend to tear due to overstretching. Attempts have been made to use strip-shaped impregnates for this purpose, but these are difficult to position on the wood-based panel. Ultimately, the targeting devices on the short-cycle presses are not designed for applying strip-shaped impregnates. The upstream impregnation channels cannot produce such strip-shaped impregnates, which leads to an additional work step after impregnation.
[0008] It is also often observed that transparency defects appear in the deeply structured areas of the wood-based panel. Microcracks may also be found in the structure.
[0009] Based on this, a generic wood-based panel is to be improved so that at least one embossed depression is as deep as possible and its depth is at least 0.4 mm, without significantly changing the pressing conditions usually used on a short-cycle press or making significant technical changes to the precursors (impregnates, wood-based panels, fiberboards).
[0010] To solve the problem, a generic wooden tool board is characterized by the fact that the resin is a mixed resin of phenolic resin and melamine resin.
[0011] As surprisingly demonstrated during the pressing tests, this leads to significantly improved results. Compared to conventional embossed wood-based panels, not only is there a significantly reduced spring-back effect, but the problems of cracking and transparency impairment were also significantly reduced or even eliminated.
[0012] A 2:1 ratio of phenolic resin to melamine resin has proven particularly beneficial. This is preferably the weight ratio of the phenolic resin to the melamine resin.
[0013] Tests have shown that the solution to the problem is significantly dependent on the grammage of the underlay sheet. The heavier the grammage, the deeper the structure could be formed and the less cracking or transparency impairment was observed. Therefore, the paper sheet weight is preferably between 80 and 260 g / m. 2 and preferably the coating (impregnation) of the paper with the mixed resin is carried out in an amount of 60 to 200 g / m 2 .
[0014] If the paper weight is 80 g / m 2 it is advantageous to use at least 60 g / m 2 mixed resin to coat.
[0015] If the paper weight is 100 g / m 2it is advantageous to use paper with at least 75 g / m 2 mixed resin and if the paper weight is, for example, 160 g / m 2 It is particularly advantageous if the paper is 120 g / m 2 mixed resin is coated.
[0016] It is advantageous if at least one additional recess is provided, embossed at an angle of 90° perpendicular to the recess. Panels can then be cut out of the wood-based panel along these recesses. It is particularly advantageous if a plurality of recesses running parallel to one another are provided. This increases the number of panels that can be cut from the wood-based panel.
[0017] The recesses preferably have a depth of at least 0.4 mm. This ensures that the bevel is clearly visible on the final product. The decorative layer is preferably made of a resin-impregnated decorative paper, which preferably has a weight of 60 to 160 g / m². 2 The cover layer also preferably consists of a resin-impregnated overlay paper.
[0018] It has proven particularly advantageous to use an HDF board (high-density fiberboard) as the core.
[0019] A floor panel obtained after dividing the wood-based panel along the recesses and, if necessary, further machining steps for edge profiling, is characterized by a bevel on the side edges of the decoration, which runs in the direction of the edge profiling and is sunk to a depth of at least 0.4 mm.
[0020] An embodiment of the invention will be described in more detail with the help of a drawing.
[0021] They show:
[0022] Figure 1 - a section through a large-format wood-based panel in
[0023] longitudinal direction;
[0024] Figure 2 - a section through a large-format wood-based panel in
[0025] transverse direction;
[0026] Figure 3 - the top view of a large-format wood-based panel with
[0027] Longitudinal and transverse embossed recesses;
[0028] Figure 4 - the simplified representation of a large-format
[0029] Wood-based panel divided panel
[0030] Figure 5 - a section through a large-format wood-based panel in
[0031] Transverse direction.
[0032] An HDF board with a thickness D of 7 mm forms the core 1 of a large-format wood-based panel. A backing sheet 4 made of paper coated with a mixed resin is placed on the upper side 1.1 of the core 1. The mixed resin is a mixture of phenolic resin and melamine resin. The mixing ratio of phenolic resin to melamine resin is two to one. A decorative layer 2 is applied on top, and a cover layer 3 is applied on top of this. The underside 1.2 of the core 1 is provided with a counter-layer 7. This structure is produced in a short-cycle press at a pressure of 60 kg / cm 2and a temperature of 200°C for 30 seconds. In order to impress the depressions 5 running in the transverse direction Q and the depressions 6 running in the longitudinal direction L into the upper side 10.1, a press plate is used in the short-cycle press, on which trough-shaped elevations are applied as webs. The width of the webs is approximately 2 cm, their height 0.55 mm. During pressing, these webs press through the cover layer 3, the decorative layer 2 and the underlay sheet 4 into the core 1 and form slightly V-shaped depressions 5, 6 in cross-section. The side walls 5.3, 6.3 of the depressions 5.6 run from the upper side 10.1 into the depth T at an angle a of 20° to 60°, preferably 45°. The steeper the angle, the better.
[0033] The decorative layer 2 is formed by a resin-impregnated paper. A resin-impregnated overlay paper is also used for the cover layer 3, into which abrasion-resistant particles, particularly corundum particles, can be mixed to increase abrasion resistance. The weight of the underlay sheet is 80 to 260 g / m². 2 , preferably maximum 160 g / m 2 The paper is printed with 60 to 200 g / m 2 Mixed resin coated (impregnated).
[0034] Pressings were performed using underlay sheets 4 with pure melamine resin and with the mixed resin. The depth T of the recesses (structure depth) was between 0.4 and 0.48 mm, as shown in the table below:
[0035] The grammages indicated in the column headings of the table are the respective paper weights.
[0036] An overlay and a decorative impregnated layer were used, along with various underlay sheets. The pressings were carried out using identical pressing parameters. As can be seen, a flawless surface cannot be produced with an underlay sheet coated with pure melamine. Furthermore, only a limited structural depth was achieved, even when two underlay sheets were used instead of a single underlay sheet (medium test).
[0037] Underlay sheets 4 were all impregnated with a phenol-melamine resin, with a phenolic resin to melamine resin ratio of 2:1. The other impregnates (2, 3, 7) were impregnated under standard conditions, which also applies to the resin applications, etc. This, of course, does not preclude the other impregnates (decorative paper 2, overlay 3, and / or backing sheet 7) from being impregnated with the same mixed resin as underlay sheet(s) 4. The overlays 3 used are intended for service class 23 of DIN EN 13329.
[0038] To confirm this surprising finding, pressing tests were also carried out with and without underlay sheets 4, using pure melamine resin and the mixed resin. The depth T of the recesses (structure depth) was between 0.32 and 0.41 mm.
[0039] The following table shows the results of a finished wood-based panel with a core made of a 7 mm thick HDF board and a counter-layer, without underlay sheet, compared to three other wood-based panels also with a core made of a 7 mm thick HDF board with a counter-layer, with underlay sheets 4 with grammages of 80 g / m 2 , 100 g / m 2 and 160 g / m 2 . With a paper weight of 80 g / m 2 impregnation with 140 g / m 2 Phenol-melamine mixed resin (2:1), with a paper weight of 100 g / m 2 was the underlay sheet 4 with 75 g / m 2 Phenol-melamine mixed resin (2:1) impregnated and at the paper weight of 160 g / m 2 the underlay sheet 4 was printed with 120 g / m 2 Impregnated with a phenol-melamine resin mixture (2:1). The pressings were carried out using identical pressing parameters. The overlay and decorative papers used were also identical.
[0040] *NKP paper weight: 80g / m2, final weight: 140g / m2, resin coating: mixed resin phenol /
[0041] Melamine (2:1)
[0042] ** NKP paper weight: 100g / m2, final weight: 175g / m2, resin: mixed resin phenol /
[0043] Melamine (2:1)
[0044] *** NKP paper weight: 160g / m2, final weight: 280g / m2, resin: mixed resin phenol / melamine (2:1)
[0045] As can be seen from this table, for a backing sheet 4 with a grammage of 80 g / m 2 a depth of 0.32 mm of the depressions 5, 6 was achieved and slight transparent defects could still be seen during the visual assessment, whereas with a conventional plate only a structure depth of 0.3 mm was achievable and the visual assessment revealed cracks and transparency defects.
[0046] From a grammage of 100 g / m 2A qualitatively flawless product was obtained for underlay sheet 4. A depth T of 0.40 mm was achievable for recesses 5 and 6, and when using underlay sheet 4 with a grammage of 160 g / m 2 depressions 5, 6 with a depth T of 0.41 mm were achieved and the visual assessment revealed no complaints.
[0047] Soda kraft or recycled paper can be used as backing sheets 4. Even though the tests were carried out with a phenol-melamine resin, the impregnation can also be carried out with a pure melamine resin. Individual panels 10 are cut out of the coated wooden tool board shown in Figure 3 by sawing along the recesses 5, 6. The cut-out profile is machined on the side edges. In this way, a tongue 11 and a corresponding groove 12 are machined on opposite side edges. The embossed recesses 5, 6 form a resin-coated bevel 13 extending from the top side 10.1. Figure 5 shows an alternative embodiment of the embossed large-format wood-based panel. Here, two closely spaced recesses 6.1, 6.2 are embossed into the top side 10.1 of the large-format wood-based panel.When dividing the large-format wood-based panel into individual panels 10, the saw cut is made along the web 1.3 formed between the recesses 6.1, 6.2, and then the side edge is profiled. The recesses can be formed in pairs, closely adjacent to one another, not only in the longitudinal direction L, but also in the transverse direction Q. The number of recesses 5, 6; 6.1, 6.2 is determined by the desired final size for the panels 10 and the format of the large-format wood-based panel.
[0048] List of reference symbols
[0049] 1 core
[0050] 1.1 Top
[0051] 1.2 Bottom
[0052] 1.3 Bridge
[0053] 2 decorative layers
[0054] 3 Overlay
[0055] 4 backing sheets
[0056] 5 Deepening
[0057] 5.3 Side wall
[0058] 6 Deepening
[0059] 6.1 Deepening
[0060] 6.2 Deepening
[0061] 6.3 Side wall
[0062] 7 Countermove
[0063] 10 panels
[0064] 10.1 Top
[0065] 11 spring
[0066] 13 Chamfer a Angle
[0067] D Thickness
[0068] L longitudinal direction
[0069] Q transverse direction
[0070] T Depth
Claims
Patent claims 1. Wood-based panel with a core (1), at least one decorative layer (2) lying on an upper side (1.1) above the core (1), under which at least one underlay sheet (4) made of paper coated with a resin is provided, at least one cover layer (3) lying above the decorative layer (2) and at least one depression (5) embossed into the upper side (1.1), characterized in that the resin is a mixed resin of phenolic resin and melamine resin.
2. Wood-based panel according to claim 1, characterized in that the ratio of phenolic resin to melamine resin is 2:
1.
3. Wood-based panel according to claim 1 or 2, characterized in that the weight of the paper is 80 to 260 g / m 2 and preferably the resin coating is 60 to 200 g / m 2 amounts. 4 Wood-based panel according to claim 1 or 2, characterized in that the resin coating contains at least 60 g / m 2, preferably at least 75 g / m 2 , particularly preferably at least 120 g / m 2 amounts.
5. Wood-based panel according to one of the preceding claims, characterized in that at least one further recess (6) embossed at an angle of 90° transverse to the recess (5) is provided.
6. Wood-based panel according to claim 5, characterized in that a plurality of recesses (5, 6) running parallel to one another are provided.
7. Wood-based panel according to one of the preceding claims, characterized in that the recesses (5, 6) have a depth of at least 0.4 mm.
8. Wood-based panel according to one of the preceding claims, characterized in that the decorative layer (2) consists of a resin-impregnated decorative paper.
9. Wood-based panel according to claim 8, characterized in that the weight of the decorative paper is 60 to 160 g / m 2 amounts.
10. Wood-based panel according to one of the preceding claims, characterized in that the cover layer (3) consists of a resin-impregnated overlay paper. 11 . Wood-based panel according to one of the preceding claims, characterized in that the side walls (5.3, 6.3) of the recesses (5, 6) extend from the upper side (1.1) into the depth (T) at an angle a of 20°-60°, preferably 45°.
12. Wood-based panel according to one of the preceding claims, characterized in that the core (1) is an HDF panel.
13. Floor panel obtained after dividing the wood-based panel according to one of the preceding claims along the recesses (5, 6) and, if necessary, further machining steps for edge profiling.