Wood fibre based panel with a surface layer

Information

  • Patent Grant
  • 11318726
  • Patent Number
    11,318,726
  • Date Filed
    Monday, September 17, 2018
    5 years ago
  • Date Issued
    Tuesday, May 3, 2022
    2 years ago
Abstract
A building panel with a surface layer including a wood veneer, a wood fibre based core and a sub-layer between the surface layer and the core. The sub-layer includes wood fibres and a binder. The surface layer has surface portions including material from the sub-layer. The surface portions including material from the sub-layer extend into the wood veneer.
Description
TECHNICAL FIELD

The disclosure generally relates but is not limited to the field of wood fibre based building panels with a surface layer, preferably floor panels, wall panels and furniture components.


TECHNICAL BACKGROUND

Embodiments of the disclosure are particularly suitable for use in floating floors, which are formed of floor panels with a wood fibre core and a decorative wear resistant surface. The following description of known technique, problems of known systems and objects and features of the disclosure will therefore, as a non-restrictive example, be aimed above all at this field of application and in particular at floorings which are similar to traditional wood fibre based laminate floorings.


It should be emphasized that the embodiments of the disclosure can also be used in other applications as, for example, wall panels, ceilings, furniture components, and similar.


Known Technique and Problems Thereof

Several technologies are used to provide a floor panel, which is a copy of a solid floor panel. The reason is that copies may be produced more cost efficient and a floor with a separate layer attached to a core of for example HDF or plywood is more moisture stable than solid wood floors.


Wood fibre based direct pressed laminated flooring usually comprises a core of a 6-12 mm fibre board, a 0.2 mm thick upper decorative surface layer of laminate and a 0.1-0.2 mm thick lower balancing layer of laminate, plastic, paper or like material.


A laminate surface generally comprise two paper sheets, a 0.1 mm thick printed decorative paper and a transparent 0.05-0.1 mm thick overlay intended to protect the decorative paper from abrasion. The transparent overlay, which is made of custom character-cellulose fibres, comprises small hard and transparent aluminium oxide particles, which gives the surface layer a high wear resistance.


The printed decorative paper and the overlay are impregnated with melamine resin and laminated to a wood fibre based core under heat and pressure. The two papers have prior to pressing a total thickness of about 0.3 mm and they are after pressing compressed to about 0.2 mm.


Other common surface materials are wood veneer and foils, which are glued to a core. The surface may also be a powder layer comprising wood fibres, melamine resins, colour pigments and aluminium oxide particles.


Wood veneers may provide the most natural copies. The disadvantage is that a wood veneer generally has a lower impact resistance than laminate floors and the production cost is high when high quality veneers may be used


It is known that a wood veneer may be pressed on a powder layer as described above and that such a powder layer may provide increased impact resistance. This will not solve the cost problems.


U.S. Pat. No. 2,831,793 discloses a composite wood veneer panel. A thin veneer is applied to a composite fibrous core of ligno-cellulose particles and binder and openings of the veneer are filled with core material when pressed together to form the composite panel. In the manufacture of the plywood or veneered panels according to this document, the plugging of the surface layer opening defects is done simultaneously with the formation of the board.


SUMMARY

The objective of at least certain embodiments of the disclosure is to provide a building panel, such as a floor panel, with a wood based surface layer, which has a more attractive surface design and/or better surface properties and/or cost structure than present known floorings.


At least some of these and other objects and advantages that will be apparent from the description have been achieved by a building panel comprising a surface layer comprising a wood veneer, a wood fibre based core, and a sub-layer arranged between the surface layer and the wood fibre based core. The sub-layer comprises wood fibres and a binder. The surface layer has surface portions comprising material from the sub-layer extending into the wood veneer.


By extending into the wood veneer is meant that the material from the sub-layer extends, for example, at least into ⅓ of the thickness of the wood veneer. In one embodiment, the material of the sub-layer extends completely through the wood veneer.


The surface portions comprising material from the sub-layer may be flush with a remainder of the surface layer.


In an embodiment, the core may be a wood-based board, for example, a wood-fibre based board such as MDF or HDF, or plywood. The core may be a Wood Plastic Composite (WPC). In an embodiment, the core may be a mineral composite board, a fibre cement board, a magnesium oxide cement board, a ceramic board, or a plastic board such as a thermoplastic board.


Preferably, the core is a pre-fabricated core.


In an embodiment, the veneer layer may be a wood veneer, a cork veneer, or a stone veneer.


In an embodiment, the sub-layer may comprise a filler and a binder. The fillers may be particles or fibres, for example wood fibres or particles, or mineral particles or fibres. The wood particles may be lignocellulosic particles and/or cellulosic particles. The wood particles may be at least partially bleached. The fillers may be rice, straw, corn, jute, linen, flax, cotton, hemp, bamboo, bagasse or sisal particles or fibres. The filler may be starch such as maize starch, potato starch, etc.


The thickness of the veneer may be in the range of about 0.2 mm to about 1 mm.


The building panel may be provided with a thinner veneer than known building panels with veneer, since the sub-layer reinforces the veneer.


The building panel may be provided with a partly broken veneer that comprises holes, such as cracks, through the veneer. The sub-layer may protrude through the holes and level the surface layer. The sub-layer may be used as an alternative for putty for a building panel with a broken surface layer. Material from the sub-layer may fill holes, such as cracks, of the veneer.


The veneer may also be pre-treated prior to pressing, for example, be brushed.


The surface layer may comprise embossed portions and a part of the sub-layer may be more compressed under an embossed portion than under a non-embossed surface portion.


The embossed portions may be naturally occurring after pressing. For wood veneers having a porous structure, such as hard wood (e.g., angiosperm), porous portions of the veneer form embossed portions after pressing, since these portions do not spring back from their compressed state when the pressure is released. These porous portions are filled with the binder of the sub-layer during pressing. Then the binder cures and/or hardens, the binder locks the position of the porous portions in the compressed state.


The portions of veneer having high density, i.e. being non-porous, are compressed during pressing but spring back when the pressure is released, thus forming protrusions of the surface layer. The high-density portions do not absorb enough binder from the sub-layer to be locked by the hardened binder after pressing.


For wood veneer having a non-porous structure, such as soft wood (e.g., gymnosperm), the summer wood annual rings (also called late wood annual rings), having high density, are not compressible during pressing. Instead, the summer wood annual rings are pressed into the sub-layer such that the sub-layer is compressed. The summer wood annual rings form embossed portions of the surface layer. The spring wood annual rings (also called early wood annual rings) are compressible during pressing. During pressing, the spring wood annual rings are compressed. Then the pressure is released, the spring wood annual rings spring back, and form protrusions.


The embossed portions of the surface layer may also be formed by pressing by an embossed pressing device, such as an embossed press plate.


The building panel may comprise a powder based balancing layer. The powder based balancing layer may comprise cellulose or lignocellulosic particles and a binder. In one embodiment, the building panel comprises a balancing layer comprising a resin impregnated paper, preferably impregnated with a thermosetting binder.


The building panel may be a floor panel comprising a powder based balancing layer. The powder based balancing layer may comprise cellulose or lignocellulosic particles and a binder. In one embodiment, the floor panel comprises a balancing layer comprising a resin impregnated paper, preferably impregnated with a thermosetting binder.


The binder in the sub-layer may be a thermosetting resin.


The binder in the sub-layer may be a melamine resin. The binder in the sub-layer may be an amino resin, such as melamine formaldehyde resin, urea formaldehyde resin, phenol formaldehyde resin, or a combination thereof.


The binder in the sub-layer may be a thermoplastic binder. The thermoplastic binder may be polyvinyl chloride (PVC), polyethylene (PE), polypropylene (PP), polyurethane (PU), polyvinyl alcohol (PVOH), polyvinyl butyral (PVB), and/or polyvinyl acetate (PVAc), or a combination thereof.


The binder may be wood mastic, wood filler or any other type of putty-like paste.


The sub-layer may be substantially or completely formaldehyde free.


The wood fibres in the sub-layer may be lignocellulosic and/or cellulosic particles. The wood fibres may be at least partially bleached.


The sub-layer may comprise wear resistant particles.


The sub-layer may further comprise colour pigments and/or a colorant. The colour pigment may be of dark colour, or may be white, such as TiO2.


The wood veneer may comprise holes and/or cracks, wherein the sub-layer fills the holes and/or cracks of the wood veneer.


The surface layer may further comprise a protective overlay, comprising wear resistant particles, arranged on the wood veneer.


The sub-layer may comprise a foaming agent. Additives such as blowing agents may be included in the sub-layer. The blowing agents may be physical foaming agents such as Expancel® and/or chemical blowing agents such as AIBN (azoisobutyronitrile) or ADC (azodicarbonamide).


The surface layer may be a cork layer.


The building panel may be a floor panel, a wall panel, a ceiling panel, a furniture component, skirting boards, mouldings, edging profiles etc.


An alternative to the veneer may be a paper or a plastic foil provided with apertures that extends through the paper or the plastic foil.


A second aspect of the disclosure is a method to produce a building panel, comprising the step of:

    • applying a wood fibre powder and a binder on a wood fibre based core, to obtain a sub-layer;
    • applying a wood veneer, comprising holes through the veneer, on the sub-layer,
    • applying heat and pressure to bond the veneer, the sub-layer and the wood fibre based core together, wherein a portion of the wood fibre powder and the binder is pressed into the holes.


The method preferably comprises the step of applying a foaming agent. The foaming agent may facilitate the displacement of the wood fibre powder and the agent into the holes.


The wood fibre powder may comprise lignocellulosic particles or cellulose particles.


The method may comprise the step of applying different colour pigments, such that the colour of the visible sub-layer portion varies along the building panel, or such that the portion of the sub-layer in the holes forms a pattern.


After applying pressure, the surface layer may comprise embossed portions, and wherein a part of the sub-layer is more compressed under an embossed surface portion than under a non-embossed surface portion.


The method may further comprise applying a protective overlay with wear resistant particles on the wood veneer, preferably prior to pressing.


The sub-layer may further comprise colour pigments and/or a colorant.


The sub-layer may comprise wear resistant particles.


According to a third aspect of the disclosure, a building panel is provided. The building panel comprises a surface layer comprising a wood veneer, a core, and a sub-layer arranged between the surface layer and the core. The surface layer has surface portions comprising material from the sub-layer extending into the wood veneer.


Preferably, the core is a wood fibre based core. Preferably, the sub-layer comprises wood fibres and a binder.





BRIEF DESCRIPTION OF THE DRAWINGS

The disclosure will by way of example be described in more detail with reference to the appended schematic drawing, which shows an embodiment of the disclosure.



FIG. 1 illustrates a building panel according to an embodiment of the disclosure.





DETAILED DESCRIPTION


FIG. 1 shows a building panel with a surface layer 1 comprising a wood veneer, a core 2, and a sub-layer 3 arranged between the surface layer 1 and the core 2. The core 2 may be wood fibre based board such as MDF, HDF, particle board, plywood, OSB etc. The core 2 may be a WPC (Wood Plastic Composite). The core 2 may in one embodiment be a mineral board. The building panel may be a floor panel, a wall panel, a ceiling panel, a furniture component, skirting boards, mouldings, edging profiles, etc.


A low quality wood veneer is used as a surface layer 1. The veneer comprises cracks and other similar defects. The veneer is pressed against the core 2 with a powder based sub-layer 3 comprising wood fibres 4 and a binder 5 such that the powder floats and fills the cracks. The panel comprises after pressing a surface layer 1 with surface portions 6 comprising material from the sub-layer 3. The surface portions 6 comprising material from the sub-layer 3 extend into the wood veneer. The surface portions comprising material from the sub-layer may be flush with a remainder of the surface layer. A “surface portion” is a portion of the surface layer that is visible on the exposed surface of the surface layer facing away from the core.


In one embodiment, the sub-layer 3 comprises a binder applied in liquid form.


The panel may be pressed against an embossed press plate such that a part of the sub-layer 3 is more compressed under an embossed portion 8 than under a non-embossed surface portion.


Preferably the building panel is a floor panel that may have a powder based balancing layer 7. A powder based balancing layer 7 may also be applied on any other type of building panel. The powder based balancing layer 7 may comprise lignocellulosic particles or cellulose particles and a binder, preferably a thermosetting binder, more preferably an amino resin such as melamine formaldehyde resin. The binder may also be applied in powder form, the sub-layer 3 being a dry powder layer. In one embodiment, the sub-layer 3 is a pre-pressed layer, wherein the binder has not completely cured during the pre-pressing.


The binder of the sub-layer 3 may be a thermosetting resin, such as, for, example a melamine formaldehyde resin. The sub-layer 3 may also comprise colour pigments and wear resistant particles such as aluminium oxide particles. The wood fibres of the sub-layer 3 may be lignocellulosic particles or cellulose particles. The wood fibres of the sub-layer 3 may be at least partially bleached. The sub-layer may comprise a foaming agent. The wood veneer may be replaced by a cork veneer or a stone veneer.


The sub-layer 3 may be applied in an amount of 200-600 g/m2, preferably 300-500 g/m2 such as about 400 g/m2. The amount of binder applied for the sub-layer 3 may be 100-300 g/m2, preferably 150-250 g/m2 such as about 200 g/m2. The sub-layer 3 may comprise the binder in an amount of 30-80 wt %, preferably in an amount of 40-60 wt % such as about 50 wt %.


In an embodiment, a produced building panel may be 6-25 mm thick, preferably 8-15 mm thick after pressing, while the core may be 5-22 mm thick, preferably 7-14 mm thick. The sub-layer may be 0.1-2 mm thick after pressing.


Using a protective overlay with wear resistant particles applied on the veneer is not excluded and this could increase the wear resistance of a wood veneer. Dry and wet overlays, which are produced by production methods where for example thermosetting resins in dry or wet form are mixed with aluminium oxide, without any fibres could also be used. Aluminium oxide particles mixed with melamine powder could for example be applied on a wood veneer prior to pressing and a wear resistant surface could be obtained without any surface coating after pressing. Dry and wet overlays may be applied on the surface layer prior to pressing. Wax may be applied, for example, as a powder, prior to pressing on the veneer. A lacquer may also be applied on the surface layer after pressing. A protective foil may also be applied on the veneer prior to pressing or on the surface layer after pressing.


It is also contemplated that the building panel is provided with a second surface layer (not shown) comprising a wood veneer of the above described type. A sub-layer of the above described type is arranged between the second surface layer and a second surface of the core of the above described type. The second surface layer has surface portions comprising material from the sub-layer extending into the wood veneer. The second surface of the core faces away from the surface layer described above with reference to FIG. 1. In this embodiment, the surface layer described above with reference to FIG. 1 is considered as first surface layer.


The building panel may be produced by a method comprising the step of:

    • applying a wood fibre powder and a binder on a wood fibre based core, to obtain a sub-layer;
    • applying a wood veneer, comprising holes through the veneer, on the sub-layer,
    • applying heat and pressure to bond the veneer, the sub-layer and the wood fibre based core together, wherein a portion of the wood fibre powder and the binder is pressed into the holes.


The method preferably comprises the step of applying a foaming agent. The foaming agent may facilitate the displacement of the wood fibre powder and the agent into the holes.


The wood fibre powder may comprise lignocellulosic particles or cellulose particles.


The method may comprise the step of applying different colour pigments, such that the colour of the visible sub-layer portion varies along the building panel, or such that the portion of the sub-layer in the holes forms a pattern.


EMBODIMENTS

1. A building panel comprising:

    • a surface layer comprising a wood veneer,
    • a wood fibre based core, and
    • a sub-layer arranged between the surface layer and the wood fibre based core, wherein the sub-layer comprises wood fibres and a binder,
    • wherein the surface layer has surface portions comprising material from the sub-layer extending into the wood veneer.


2. The building panel as in embodiment 1, wherein the surface portions comprising material from the sub-layer are flush with a remainder of the surface layer.


3. The building panel as in embodiment 1, wherein the surface layer comprises embossed portions and wherein a part of the sub-layer is more compressed under an embossed portion than under a non-embossed surface portion.


4. The building panel as in embodiment 1, wherein the sub-layer comprises colour pigments and/or a colorant.


5. The building panel as in embodiment 1, wherein the sub-layer comprises wear resistant particles.


6. The building panel as in embodiment 1, further comprising a powder-based balancing layer.


7. The building panel as in embodiment 1, wherein the wood veneer comprises holes and/or cracks, wherein the sub-layer fills the holes and/or cracks of the wood veneer.


8. The building panel as in embodiment 1, further comprising a protective overlay comprising wear resistant particles arranged on the surface layer.


9. The building panel as in embodiment 1, wherein the binder in the sub-layer is a thermosetting resin.


10. The building panel as in embodiment 1, wherein the binder in the sub-layer is a melamine formaldehyde resin.


11. The building panel as in embodiment 1, wherein the sub-layer comprises a foaming agent.


12. The building panel as in embodiment 1, wherein the surface layer is a cork layer.


13. A building panel comprising:

    • a surface layer comprising a wood veneer,
    • a wood fibre based core, and
    • a sub-layer arranged between the surface layer and the wood fibre based core, wherein the sub-layer comprises wood fibres, a binder and wear resistant particles,
    • wherein the surface layer has surface portions comprising material from the sub-layer extending into the wood veneer.


14. A building panel comprising:

    • a surface layer comprising a wood veneer,
    • a wood fibre based core, and
    • a sub-layer arranged between the surface layer and the wood fibre based core, wherein the sub-layer comprises wood fibres, a binder and colour pigments and/or a colorant,
    • wherein the surface layer has surface portions comprising material from the sub-layer extending into the wood veneer.


15. A building panel comprising:

    • a surface layer comprising a veneer,
    • a core, and
    • a sub-layer arranged between the surface layer and core,
    • wherein the surface layer has surface portions comprising material from the sub-layer extending into the veneer.


16. A method to produce a building panel, the method comprising:

    • applying a wood fibre powder and a binder on a wood fibre based core, to obtain a sub-layer;
    • applying a wood veneer, comprising holes through the veneer, on the sub-layer,
    • applying heat and pressure to bond the veneer, the sub-layer and the wood fibre based core together, wherein a portion of the wood fibre powder and the binder is pressed into the holes.


17. The method as in embodiment 16, further comprising applying a foaming agent in the sub-layer.


18. The method as in embodiment 16, wherein the wood fibre powder comprises lignocellulosic particles or cellulose particles.


19. The method as in embodiment 16, further comprising applying different colour pigments, such that the colour of the visible sub-layer portion varies along the building panel, or such that the portion of the sub-layer in the holes forms a pattern.


20. The method as in embodiment 16, wherein after applying pressure, the wood veneer comprises embossed portions, and wherein a part of the sub-layer is more compressed under an embossed surface portion than under a non-embossed surface portion.


21. The method as in embodiment 16, further comprising applying a protective overlay with wear resistant particles on the wood veneer, preferably prior to pressing.


22. The method as in embodiment 16, wherein the sub-layer comprises colour pigments and/or a colorant.


23. The method as in embodiment 16, wherein the sub-layer comprises wear resistant particles.

Claims
  • 1. A method to produce a building panel, the method comprising: applying a wood fibre powder and a binder on a first side of a wood fibre based core, to obtain a first sub-layer;applying a first wood veneer, comprising holes through the first wood veneer, on the first sub-layer; andapplying heat and pressure to bond the first wood veneer, the first sub-layer and the wood fibre based core together, thereby material from the first sub-layer is pressed into the holes of the first wood veneer, to form a first surface layer,wherein the building panel comprises a second surface layer, wherein the second surface layer is on a second side opposite the first side of the wood fibre based core, wherein the second surface layer comprises a second sub-layer of a wood fibre powder and a binder, and a second wood veneer on the second sub-layer, andthe method further comprising, prior to applying heat and pressure to form the first surface layer, pre-pressing the first sublayer, wherein the binder of the first sub-layer is partially cured during the pre-pressing.
  • 2. The method as claimed in claim 1, further comprising applying a foaming agent in the first sub-layer.
  • 3. The method as claimed in claim 2, wherein the wood fibre powder comprises lignocellulosic particles or cellulose particles.
  • 4. The method as claimed in claim 1, further comprising applying different colour pigments, wherein portions of the first sub-layer are visible in the holes of the first veneer, wherein the colour of the visible first sub-layer portion varies along the building panel, or such that the portion of the first sub-layer in the holes forms a pattern.
  • 5. The method as claimed in claim 1, further comprising applying a protective overlay with wear resistant particles on the first wood veneer.
  • 6. The method as claimed in claim 1, wherein the first sub-layer comprises colour pigments and/or a colorant.
  • 7. The method as claimed in claim 1, wherein the first sub-layer comprises wear resistant particles.
  • 8. The method as claimed in claim 1, further comprising applying a protective overlay with wear resistant particles on the first wood veneer prior to pressing.
  • 9. The method as claimed in claim 1, further comprising pre-treating the first veneer, prior to applying heat and pressure.
  • 10. The method as claimed in claim 9, further comprising pre-treating the first veneer, prior to applying heat and pressure, by brushing.
  • 11. The method as claimed in claim 1, wherein after applying pressure, the first wood veneer comprises embossed portions, and wherein a part of the first sub-layer is more compressed under an embossed surface portion than under a non-embossed surface portion.
  • 12. The method as claimed in claim 1, wherein the first surface layer comprises embossed portions and protrusions, wherein the binder of the first sub-layer bonds porous portions of the first wood veneer in a compressed position to form the embossed portions, and wherein the binder does not bond non-porous portions of the first wood veneer in the compressed position so that non-porous portions of the first wood veneer form the protrusions.
  • 13. The method as claimed in claim 1, the method further comprising applying a protective overlay with wear resistant particles on the first wood veneer prior to pressing, wherein the first sub-layer comprises wear resistant particles, wherein the panel comprises, after pressing, the first surface layer with surface portions comprising material from the first sub-layer, wherein the surface portions comprising material from the first sub-layer are flush with a remainder of the first surface layer, to obtain an entire surface layer with wear resistant particles.
Priority Claims (3)
Number Date Country Kind
1450023-5 Jan 2014 SE national
1450552-3 May 2014 SE national
1451154-7 Sep 2014 SE national
CROSS REFERENCE TO RELATED APPLICATIONS

The present application is a continuation of U.S. application Ser. No. 14/593,521, filed on Jan. 9, 2015, which claims the benefit of Swedish Application No. 1450023-5, filed on Jan. 10, 2014, the benefit of Swedish Application No. 1450552-3, filed on May 12, 2014, and the benefit of Swedish Application No. 1451154-7, filed on Sep. 29, 2014. The entire contents of each of U.S. application Ser. No. 14/593,521, Swedish Application No. 1450023-5, Swedish Application No. 1450552-3, and Swedish Application No. 1451154-7 are hereby incorporated herein by reference in their entirety.

US Referenced Citations (354)
Number Name Date Kind
2018712 Elmendorf Oct 1935 A
2419614 Welch Apr 1947 A
2587064 Rapson Feb 1952 A
2630395 McCullough Mar 1953 A
2634534 Brown Apr 1953 A
2695857 Lewis et al. Nov 1954 A
2720478 Hogg Oct 1955 A
2831793 Elmendorf Apr 1958 A
2831794 Elmendorf Apr 1958 A
2932596 Rayner Apr 1960 A
2962081 Dobry et al. Nov 1960 A
2992152 Chapman Jul 1961 A
3032820 Johnson May 1962 A
3135643 Michl Jun 1964 A
3286006 Annand Nov 1966 A
3308013 Bryant Mar 1967 A
3325302 Hosfeld Jun 1967 A
3342621 Point et al. Sep 1967 A
3345234 Jecker et al. Oct 1967 A
3392082 Lloyd Jul 1968 A
3426730 Lawson et al. Feb 1969 A
3463653 Letter Aug 1969 A
3486484 Bullough Dec 1969 A
3533725 Bridgeford Oct 1970 A
3540978 Ames Nov 1970 A
3565665 Stranch et al. Feb 1971 A
3578522 Rauch May 1971 A
3615279 Ward, Jr. Oct 1971 A
3673020 De Jaeger Jun 1972 A
3729368 Ingham Apr 1973 A
3844863 Forsythe Oct 1974 A
3846219 Kunz Nov 1974 A
3880687 Elmendorf et al. Apr 1975 A
3895984 Cone et al. Jul 1975 A
3897185 Beyer Jul 1975 A
3897588 Nohtomi Jul 1975 A
3914359 Bevan Oct 1975 A
3950599 Board, Jr. Apr 1976 A
3956542 Roberti May 1976 A
3961108 Rosner et al. Jun 1976 A
4052739 Wada et al. Oct 1977 A
4093766 Scher et al. Jun 1978 A
4115178 Cone et al. Sep 1978 A
4126725 Shiflet Nov 1978 A
4131705 Kubinsky Dec 1978 A
4263373 McCaskey, Jr. et al. Apr 1981 A
4277527 Duhl Jul 1981 A
4311621 Nishizawa et al. Jan 1982 A
4313857 Blount Feb 1982 A
4337290 Kelly et al. Jun 1982 A
4361612 Shaner Nov 1982 A
4420351 Lussi Dec 1983 A
4420525 Parks Dec 1983 A
4430375 Scher et al. Feb 1984 A
4430380 Hönel Feb 1984 A
4474920 Kyminas et al. Oct 1984 A
4743484 Robbins May 1988 A
4863777 Callaway et al. Sep 1989 A
4872825 Ross Oct 1989 A
4890656 Ohsumi et al. Jan 1990 A
4911969 Ogata et al. Mar 1990 A
4942084 Prince Jul 1990 A
5034272 Lindgren et al. Jul 1991 A
5059472 LeBell et al. Oct 1991 A
5085930 Widmann et al. Feb 1992 A
5147486 Hoffman Sep 1992 A
5206066 Horacek Apr 1993 A
5246765 Lussi et al. Sep 1993 A
5258216 Von Bonin et al. Nov 1993 A
5292576 Sanders Mar 1994 A
5314554 Owens May 1994 A
5354259 Scholz et al. Oct 1994 A
5405705 Fujimoto Apr 1995 A
5422170 Iwata et al. Jun 1995 A
5447752 Cobb Sep 1995 A
5466511 O'Dell et al. Nov 1995 A
5543193 Tesch Aug 1996 A
5569424 Amour Oct 1996 A
5601930 Mehta et al. Feb 1997 A
5604025 Tesch Feb 1997 A
5609966 Perrin et al. Mar 1997 A
5755068 Ormiston May 1998 A
5766522 Daly et al. Jun 1998 A
5827788 Miyakoshi Oct 1998 A
5855832 Clausi Jan 1999 A
5891564 Schultz et al. Apr 1999 A
5925211 Rakauskas Jul 1999 A
5925296 Leese Jul 1999 A
5942072 McKinnon Aug 1999 A
5976689 Witt et al. Nov 1999 A
5985397 Witt et al. Nov 1999 A
6036137 Myren Mar 2000 A
6089297 Shibagaki et al. Jul 2000 A
6103377 Clausi Aug 2000 A
6238750 Correll et al. May 2001 B1
6291625 Hosgood Sep 2001 B1
6468645 Clausi Oct 2002 B1
6481476 Okamoto Nov 2002 B1
6521326 Fischer et al. Feb 2003 B1
6528437 Hepfinger et al. Mar 2003 B1
6537610 Springer et al. Mar 2003 B1
6620349 Lopez Sep 2003 B1
6667108 Ellstrom Dec 2003 B2
6769217 Nelson Aug 2004 B2
6773799 Persson et al. Aug 2004 B1
6803110 Drees et al. Oct 2004 B2
6926954 Shuren et al. Aug 2005 B2
6991830 Hansson et al. Jan 2006 B1
7022756 Singer Apr 2006 B2
7485693 Matsuda et al. Feb 2009 B2
7568322 Pervan Aug 2009 B2
7678425 Oldorff Mar 2010 B2
7811489 Pervan Oct 2010 B2
7918062 Chen Apr 2011 B2
8021741 Chen Sep 2011 B2
8206534 McDuff et al. Jun 2012 B2
8245477 Pervan Aug 2012 B2
8302367 Schulte Nov 2012 B2
8349234 Ziegler et al. Jan 2013 B2
8349235 Pervan et al. Jan 2013 B2
8407963 Schulte Apr 2013 B2
8419877 Pervan et al. Apr 2013 B2
8431054 Pervan et al. Apr 2013 B2
8480841 Pervan et al. Jul 2013 B2
8481111 Ziegler et al. Jul 2013 B2
8499520 Schulte Aug 2013 B2
8617439 Pervan et al. Dec 2013 B2
8635829 Schulte Jan 2014 B2
8650738 Schulte Feb 2014 B2
8663785 Ziegler et al. Mar 2014 B2
8728564 Ziegler et al. May 2014 B2
8752352 Schulte Jun 2014 B2
8784587 Lindgren et al. Jul 2014 B2
8920874 Ziegler et al. Dec 2014 B2
8920876 Vetter et al. Dec 2014 B2
8993049 Pervan Mar 2015 B2
9085905 Persson et al. Jul 2015 B2
9109366 Schulte Aug 2015 B2
9181698 Pervan et al. Nov 2015 B2
9255405 Pervan et al. Feb 2016 B2
9296191 Pervan et al. Mar 2016 B2
9352499 Ziegler et al. May 2016 B2
9403286 Vetter et al. Aug 2016 B2
9410319 Ziegler et al. Aug 2016 B2
9556622 Pervan et al. Jan 2017 B2
9783996 Pervan et al. Oct 2017 B2
10017950 Pervan Jul 2018 B2
10100535 Pervan et al. Oct 2018 B2
10214913 Persson et al. Feb 2019 B2
10286633 Lundblad et al. May 2019 B2
10315219 Jacobsson Jun 2019 B2
10344379 Pervan et al. Jul 2019 B2
10364578 Pervan Jul 2019 B2
10392812 Pervan Aug 2019 B2
10442152 Schultz Oct 2019 B2
10442164 Schultz Oct 2019 B2
10493729 Pervan et al. Dec 2019 B2
10513094 Persson et al. Dec 2019 B2
10800186 Pervan et al. Oct 2020 B2
10828881 Bergelin et al. Nov 2020 B2
10857765 Schulte Dec 2020 B2
10899166 Pervan et al. Jan 2021 B2
10913176 Lindgren et al. Feb 2021 B2
10926509 Schulte Feb 2021 B2
10981362 Ziegler et al. Apr 2021 B2
10988941 Ziegler et al. Apr 2021 B2
11040371 Jacobsson Jun 2021 B2
11046063 Persson et al. Jun 2021 B2
11072156 Schulte Jul 2021 B2
11090972 Persson et al. Aug 2021 B2
11135814 Pervan et al. Oct 2021 B2
11167533 Ziegler et al. Nov 2021 B2
20010006704 Chen et al. Jul 2001 A1
20010009309 Taguchi et al. Jul 2001 A1
20020031620 Yuzawa et al. Mar 2002 A1
20020054994 Dupre et al. May 2002 A1
20020100231 Miller Aug 2002 A1
20020155297 Schuren Oct 2002 A1
20030008130 Kaneko Jan 2003 A1
20030056873 Nakos et al. Mar 2003 A1
20030059639 Worsley Mar 2003 A1
20030102094 Tirri et al. Jun 2003 A1
20030108760 Haas et al. Jun 2003 A1
20030208980 Miller et al. Nov 2003 A1
20040035078 Pervan Feb 2004 A1
20040088946 Liang et al. May 2004 A1
20040123542 Grafenauer Jul 2004 A1
20040137255 Martinez et al. Jul 2004 A1
20040191547 Oldorff Sep 2004 A1
20040202857 Singer Oct 2004 A1
20040206036 Pervan Oct 2004 A1
20040237436 Zuber et al. Dec 2004 A1
20040250911 Vogel Dec 2004 A1
20040255541 Thiers Dec 2004 A1
20050003099 Quist Jan 2005 A1
20050016107 Rosenthal et al. Jan 2005 A1
20050079780 Rowe et al. Apr 2005 A1
20050136234 Hak et al. Jun 2005 A1
20050153150 Wellwood et al. Jul 2005 A1
20050166514 Pervan Aug 2005 A1
20050193677 Vogel Sep 2005 A1
20050208255 Pervan Sep 2005 A1
20050227040 Toupalik Oct 2005 A1
20050252130 Martensson Nov 2005 A1
20060008630 Thiers et al. Jan 2006 A1
20060024465 Briere Feb 2006 A1
20060032175 Chen et al. Feb 2006 A1
20060048474 Pervan et al. Mar 2006 A1
20060070321 Au Apr 2006 A1
20060070325 Magnusson Apr 2006 A1
20060145384 Singer Jul 2006 A1
20060154015 Miller et al. Jul 2006 A1
20060156672 Meersseman et al. Jul 2006 A1
20060172118 Han et al. Aug 2006 A1
20060182938 Oldorff Aug 2006 A1
20060183853 Sczepan Aug 2006 A1
20070055012 Caldwell Mar 2007 A1
20070066176 Wenstrup et al. Mar 2007 A1
20070102108 Zheng May 2007 A1
20070125275 Bui Jun 2007 A1
20070148339 Wescott Jun 2007 A1
20070166516 Kim et al. Jul 2007 A1
20070184244 Doehring Aug 2007 A1
20070207296 Eisermann Sep 2007 A1
20070218260 Miclo et al. Sep 2007 A1
20070224438 Van Benthem et al. Sep 2007 A1
20070256804 Garcis Espino et al. Nov 2007 A1
20080000179 Pervan et al. Jan 2008 A1
20080000190 Håkansson Jan 2008 A1
20080000417 Pervan et al. Jan 2008 A1
20080032120 Braun Feb 2008 A1
20080090032 Perrin et al. Apr 2008 A1
20080093013 Muller Apr 2008 A1
20080152876 Magnusson Jun 2008 A1
20080176039 Chen et al. Jul 2008 A1
20080263985 Hasch et al. Oct 2008 A1
20090056257 Mollinger et al. Mar 2009 A1
20090124704 Jenkins May 2009 A1
20090135356 Ando May 2009 A1
20090145066 Pervan Jun 2009 A1
20090155612 Pervan et al. Jun 2009 A1
20090165946 Suzuki Jul 2009 A1
20090208646 Kreuder et al. Aug 2009 A1
20090294037 Oldorff Dec 2009 A1
20090311433 Wittmann Dec 2009 A1
20100092731 Pervan Apr 2010 A1
20100136303 Kreuder Jun 2010 A1
20100196678 Vermeulen Aug 2010 A1
20100223881 Kalwa Sep 2010 A1
20100239820 Buhlmann Sep 2010 A1
20100291397 Pervan et al. Nov 2010 A1
20100300030 Pervan et al. Dec 2010 A1
20100304089 Magnusson Dec 2010 A1
20100307675 Buhlmann Dec 2010 A1
20100307677 Buhlmann Dec 2010 A1
20100311854 Thiers et al. Dec 2010 A1
20100314368 Groeke Dec 2010 A1
20100319282 Ruland Dec 2010 A1
20100323187 Kalwa Dec 2010 A1
20100330376 Trksak Dec 2010 A1
20110027501 Guo Feb 2011 A1
20110175251 Ziegler et al. Jul 2011 A1
20110177319 Ziegler et al. Jul 2011 A1
20110177354 Ziegler et al. Jul 2011 A1
20110189448 Lindgren et al. Aug 2011 A1
20110247748 Pervan et al. Oct 2011 A1
20110250404 Pervan et al. Oct 2011 A1
20110262720 Riebel et al. Oct 2011 A1
20110274872 Yu Nov 2011 A1
20110283642 Meirlaen et al. Nov 2011 A1
20110283650 Pervan et al. Nov 2011 A1
20110287211 Bailey et al. Nov 2011 A1
20110293823 Bruderer et al. Dec 2011 A1
20110293906 Jacobsson Dec 2011 A1
20120048487 Brewster Mar 2012 A1
20120124932 Schulte et al. May 2012 A1
20120263878 Ziegler et al. Oct 2012 A1
20120263965 Persson et al. Oct 2012 A1
20120264853 Ziegler et al. Oct 2012 A1
20120276348 Clausi et al. Nov 2012 A1
20120279161 Håkansson et al. Nov 2012 A1
20120288689 Hansson et al. Nov 2012 A1
20120308774 Persson et al. Dec 2012 A1
20130025216 Reichwein et al. Jan 2013 A1
20130092314 Zeigler et al. Apr 2013 A1
20130095315 Pervan et al. Apr 2013 A1
20130111845 Pervan et al. May 2013 A1
20130189534 Pervan et al. Jul 2013 A1
20130196119 Dobecz Aug 2013 A1
20130269863 Pervan et al. Oct 2013 A1
20130273244 Vetter et al. Oct 2013 A1
20130273245 Ziegler et al. Oct 2013 A1
20140027020 Klaeusler et al. Jan 2014 A1
20140044872 Pervan Feb 2014 A1
20140075874 Pervan et al. Mar 2014 A1
20140147585 Smith May 2014 A1
20140171554 Ziegler et al. Jun 2014 A1
20140178630 Pervan et al. Jun 2014 A1
20140018661 Pervan Jul 2014 A1
20140199558 Pervan et al. Jul 2014 A1
20140234531 Ziegler et al. Aug 2014 A1
20140290171 Vermeulen Oct 2014 A1
20140329064 Döhring et al. Nov 2014 A1
20150017461 Lindgren et al. Jan 2015 A1
20150072111 Rischer et al. Mar 2015 A1
20150079280 Vetter et al. Mar 2015 A1
20150093502 Ziegler et al. Apr 2015 A1
20150111055 Persson et al. Apr 2015 A1
20150118456 Carlborg et al. Apr 2015 A1
20150159382 Pervan Jun 2015 A1
20150197942 Pervan et al. Jul 2015 A1
20150197943 Ziegler et al. Jul 2015 A1
20150275526 Persson et al. Oct 2015 A1
20150298433 Kalwa Oct 2015 A1
20160031189 Pervan et al. Feb 2016 A1
20160114495 Pervan et al. Apr 2016 A1
20160186318 Pervan et al. Jun 2016 A1
20160230400 Pervan et al. Aug 2016 A9
20160297174 Kim Oct 2016 A1
20160322041 Kim Nov 2016 A1
20160326744 Dohring et al. Nov 2016 A1
20160368180 Ziegler et al. Dec 2016 A1
20160369507 Pervan et al. Dec 2016 A1
20160375674 Schulte Dec 2016 A1
20170120564 Schulte May 2017 A1
20170165936 Schulte Jun 2017 A1
20170190156 Lundblad et al. Jul 2017 A1
20170305119 Bergelin et al. Oct 2017 A1
20170348984 Pervan et al. Dec 2017 A1
20180002934 Pervan et al. Jan 2018 A1
20180291638 Pervan Oct 2018 A1
20180370278 Persson et al. Dec 2018 A1
20190202178 Ziegler Jul 2019 A1
20190210329 Ziegler et al. Jul 2019 A1
20190210330 Ziegler et al. Jul 2019 A1
20190277039 Håkansson et al. Sep 2019 A1
20190284821 Pervan Sep 2019 A1
20190292796 Pervan et al. Sep 2019 A1
20190338534 Pervan Nov 2019 A1
20200055287 Lundblad et al. Feb 2020 A1
20200078825 Jacobsson Mar 2020 A1
20200079059 Schulte Mar 2020 A1
20200094512 Schulte Mar 2020 A1
20200164622 Pervan et al. May 2020 A1
20200215799 Hedlund et al. Jul 2020 A1
20200223197 Hedlund et al. Jul 2020 A1
20210001647 Pervan et al. Jan 2021 A1
20210008863 Bergelin et al. Jan 2021 A1
20210078305 Schulte Mar 2021 A1
20210010131 Lindgren et al. Apr 2021 A1
20210197534 Ziegler et al. Jul 2021 A1
20210277670 Ziegler et al. Sep 2021 A1
20210323297 Slottemo et al. Oct 2021 A1
20220009248 Ryberg et al. Jan 2022 A1
Foreign Referenced Citations (194)
Number Date Country
8028475 Jun 1975 AU
2011236087 Oct 2011 AU
298894 May 1954 CH
1709717 Dec 2005 CN
102166775 Aug 2011 CN
202200608 Apr 2012 CN
104084994 Oct 2014 CN
1 815 312 Jul 1969 DE
7148789 Apr 1972 DE
29 39 828 Apr 1981 DE
33 34 921 Apr 1985 DE
36 34 885 Apr 1988 DE
42 33 050 Apr 1993 DE
42 36 266 May 1993 DE
202 14 532 Feb 2004 DE
102 45 914 Apr 2004 DE
103 00 247 Jul 2004 DE
103 31 657 Feb 2005 DE
20 2006 007 797 Aug 2006 DE
10 2005 046 264 Apr 2007 DE
10 2006 024 593 Dec 2007 DE
10 2006 058 244 Jun 2008 DE
10 2007 043 202 Mar 2009 DE
20 2009 008 367 Sep 2009 DE
10 2010 045 266 Mar 2012 DE
20 2013 011 776 Jul 2014 DE
20 2014 102 031 Jul 2014 DE
20 2013 012 020 Feb 2015 DE
10 2013 113 125 May 2015 DE
0 129 430 Dec 1984 EP
0 234 220 Sep 1987 EP
0 129 430 Jan 1990 EP
0 355 829 Feb 1990 EP
0 611 408 Dec 1993 EP
0 592 013 Apr 1994 EP
0 656 443 Jun 1995 EP
0 611 408 Sep 1996 EP
0 732 449 Sep 1996 EP
0 744 477 Nov 1996 EP
0 914 914 May 1999 EP
0 732 449 Aug 1999 EP
0 744 477 Jan 2000 EP
0 993 934 Apr 2000 EP
1 035 255 Sep 2000 EP
1 125 971 Aug 2001 EP
1 136 251 Sep 2001 EP
1 209 199 May 2002 EP
1 249 322 Oct 2002 EP
1 262 607 Dec 2002 EP
1 454 763 Sep 2004 EP
1 242 702 Nov 2004 EP
1 498 241 Jan 2005 EP
1 584 378 Oct 2005 EP
1 657 055 May 2006 EP
1 681 103 Jul 2006 EP
1 690 603 Aug 2006 EP
1 847 385 Oct 2007 EP
1 961 556 Aug 2008 EP
1 997 623 Dec 2008 EP
2 025 484 Feb 2009 EP
1 454 763 Aug 2009 EP
2 105 320 Sep 2009 EP
2 119 550 Nov 2009 EP
2 246 500 Nov 2010 EP
2 263 867 Dec 2010 EP
2 264 259 Dec 2010 EP
2 272 667 Jan 2011 EP
2 272 668 Jan 2011 EP
2 305 462 Apr 2011 EP
2 353 861 Aug 2011 EP
1 847 385 Sep 2011 EP
2 263 867 Mar 2012 EP
2 902 196 Aug 2015 EP
2 902 196 Aug 2016 EP
801 433 Aug 1936 FR
2 873 953 Feb 2006 FR
785008 Oct 1957 GB
984 170 Feb 1965 GB
1090450 Nov 1967 GB
1 561 820 Mar 1980 GB
2 238 983 Jun 1991 GB
2 248 246 Apr 1992 GB
2 464 541 Apr 2010 GB
S51-128409 Nov 1976 JP
S52-087212 Jul 1977 JP
S53-148506 Dec 1978 JP
S56-049259 May 1981 JP
S56-151564 Nov 1981 JP
S58-084761 May 1983 JP
S59-101312 Jun 1984 JP
S64-062108 Mar 1989 JP
H02-188206 Jul 1990 JP
H02-198801 Aug 1990 JP
H02-229002 Sep 1990 JP
H03-030905 Feb 1991 JP
H03-211047 Sep 1991 JP
H03-267174 Nov 1991 JP
H04-107101 Apr 1992 JP
H04-247901 Sep 1992 JP
H04-269506 Sep 1992 JP
H05-077362 Mar 1993 JP
H05-237809 Sep 1993 JP
H06-312406 Nov 1994 JP
H07-060704 Mar 1995 JP
H08-207012 Aug 1996 JP
H09-164651 Jun 1997 JP
H10-002098 Jan 1998 JP
H10-18562 Jan 1998 JP
H10-086107 Apr 1998 JP
2925749 Jul 1999 JP
11-291203 Oct 1999 JP
2000-226931 Aug 2000 JP
2000-263520 Sep 2000 JP
2001-287208 Oct 2001 JP
2001-329681 Nov 2001 JP
2003-311717 Nov 2003 JP
2003-311718 Nov 2003 JP
2004-068512 Mar 2004 JP
2004-076476 Mar 2004 JP
2005-034815 Feb 2005 JP
2005-074682 Mar 2005 JP
2005-170016 Jun 2005 JP
2005-219215 Aug 2005 JP
3705482 Oct 2005 JP
2005-307582 Nov 2005 JP
2007-098755 Apr 2007 JP
2007-216692 Aug 2007 JP
2007-268843 Oct 2007 JP
2008-188826 Aug 2008 JP
2010-017963 Jan 2010 JP
2011-110768 Jun 2011 JP
10-0997149 Nov 2010 KR
10-1439066 Sep 2014 KR
225556 Feb 1992 NZ
469 326 Jun 1993 SE
WO 9206832 Apr 1992 WO
WO 9400280 Jan 1994 WO
WO 9506568 Mar 1995 WO
WO 0022225 Apr 2000 WO
WO 0044576 Aug 2000 WO
WO 0100409 Jan 2001 WO
WO 0164408 Sep 2001 WO
WO 0168367 Sep 2001 WO
WO 0192037 Dec 2001 WO
WO 0242167 May 2002 WO
WO 0242373 May 2002 WO
WO 03078761 Sep 2003 WO
WO 2004042168 May 2004 WO
WO 2004050359 Jun 2004 WO
WO 2004067874 Aug 2004 WO
WO 2005035209 Apr 2005 WO
WO 2005054599 Jun 2005 WO
WO 2005054600 Jun 2005 WO
WO 2005066431 Jul 2005 WO
WO 2005097874 Oct 2005 WO
WO 2005116337 Dec 2005 WO
WO 2005116361 Dec 2005 WO
WO 2006007413 Jan 2006 WO
WO 2006013469 Feb 2006 WO
WO 2006042651 Apr 2006 WO
WO 2006043893 Apr 2006 WO
WO 2006066776 Jun 2006 WO
WO 2006126930 Nov 2006 WO
WO 2007042258 Apr 2007 WO
WO 2007059294 May 2007 WO
WO 2008004960 Jan 2008 WO
WO 2008148771 Dec 2008 WO
WO 2009050565 Apr 2009 WO
WO 2009065768 May 2009 WO
WO 2009065769 May 2009 WO
WO 2009080772 Jul 2009 WO
WO 2009080813 Jul 2009 WO
WO 2009116926 Sep 2009 WO
WO 2009124704 Oct 2009 WO
WO 2010046698 Apr 2010 WO
WO 2010087752 Aug 2010 WO
WO 2011058233 May 2011 WO
WO 2011129755 Oct 2011 WO
WO 2011129757 Oct 2011 WO
WO 2011141851 Nov 2011 WO
WO 2012004699 Jan 2012 WO
WO 2012154113 Nov 2012 WO
WO 2013056745 Apr 2013 WO
WO 2013079950 Jun 2013 WO
WO 2013167576 Nov 2013 WO
WO 2013182191 Dec 2013 WO
WO 2014017972 Jan 2014 WO
WO 2014109699 Jul 2014 WO
WO 2015078434 Jun 2015 WO
WO 2015078444 Jun 2015 WO
WO 2015105455 Jul 2015 WO
WO 2015105456 Jul 2015 WO
WO 2015174909 Nov 2015 WO
WO 2016151435 Sep 2016 WO
Non-Patent Literature Citations (64)
Entry
U.S. Appl. No. 16/556,289, Guido Schulte, filed Aug. 30, 2019.
U.S. Appl. No. 16/571,547, Guido Schulte, filed Sep. 16, 2019.
U.S. Appl. No. 16/556,289, Schulte—See Information Below.
U.S. Appl. No. 16/571,547, Schulte—See Information Below.
Schulte, Guido, U.S. Appl. No. 16/556,289 entitled “Floorboard,” filed in the U.S. Patent and Trademark Office Aug. 30, 2019.
Schulte, Guido, U.S. Appl. No. 16/571,547 entitled “Floor, Wall, or Ceiling Panel and Method for Producing Same,” filed in the U.S. Patent and Trademark Office Sep. 16, 2019.
U.S. Appl. No. 14/593,458, Göran Ziegler, filed Jan. 9, 2015.
U.S. Appl. No. 15/183,424, Darko Pervan, filed Jun. 15, 2016.
U.S. Appl. No. 15/308,737, Christer Lundblad, filed Nov. 3, 2016.
U.S. Appl. No. 15/496,357, Marcus Bergelin, filed Apr. 25, 2017.
U.S. Appl. No. 15/039,504, Guido Schulte, filed May 26, 2016.
U.S. Appl. No. 15/039,638, Guido Schulte, filed May 26, 2016.
U.S. Appl. No. 15/039,748, Guido Schulte, filed May 26, 2016.
U.S. Appl. No. 16/223,708, Göran Ziegler, filed Dec. 18, 2018.
U.S. Appl. No. 16/223,833, Göran Ziegler, filed Dec. 18, 2018.
U.S. Appl. No. 16/325,543, Göran Ziegler, filed Feb. 14, 2019.
U.S. Appl. No. 16/365,764, Christer Lundblad, filed Mar. 27, 2019.
U.S. Appl. No. 16/223,708, Zeigler, et al.—see information below.
U.S. Appl. No. 16/223,833, Zeigler, et al.—see information below.
U.S. Appl. No. 16/325,543, Zeigler—see information below.
U.S. Appl. No. 16/365,764, Lundblad et al.—see information below.
International Search Report (Form PCT/ISA/210) issued in corresponding PCT/SE2015/050007, dated Apr. 17, 2015, 7 pages, ISA/SE, Patent-och registreringsverket, Stockholm, SE.
Extended European Search Report issued in EP 15735032.3, dated Aug. 30, 2017, European Patent Office, Munich, DE, 11 pages.
Parquet International, “Digital Printing is still an expensive process,” Mar. 2008, cover page/pp. 78-79, www.parkettmagazin.com.
Floor Daily, “Shaw Laminates: Green by Design,” Aug. 13, 2007, 1 pg, Dalton, GA.
BTLSR Toledo, Inc. website, http://www.btlresins.com/more.html. “Advantages to Using Powdered Resins,” May 26, 2007, 2 pages, per the Internet Archive WayBackMachine.
Nimz, H.H., “Wood,” Ullmann's Encyclopedia of Industrial Chemistry, published online Jun. 15, 2000, pp. 453-505, vol. 39, Wiley-VCH Verlag GmbH & Co. KgaA, Weinheim, DE.
Le Fur, X., et al., “Recycling melamine-impregnated paper waste as board adhesives,” published online Oct. 26, 2004, pp. 419-423, vol. 62, Springer-Verlag, DE, XP055332791.
Odian, George, “Principles of Polymerization,” 1991, 3rd Edition, 5 pages incl. pp. 122-123, John Wiley & Sons, Inc., New York, NY, USA.
Engstrand, Ola (Contact)/Valinge Innovation, Technical Disclosure entitled “Fibre Based Panels With a Wear Resistance Surface,” Nov. 17, 2008, IP.com No. IPCOM000176590D, IP.com PriorArtDatabase, 76 pages.
Engstrand, Ola (Contact)/Valinge Innovation, Technical Disclosure entitled “WFF Embossing,” May 15, 2009, IP.com No. IPCOM000183105D, IP.com PriorArtDatabase, 36 pages.
Engstrand, Ola (Contact)/Valinge Innovation, Technical Disclosure entitled “VA063 VA064 Scattering and Powder Backing,” Nov. 11, 2011, IP.com No. IPCOM000212422D, IP.com PriorArtDatabase, 34 pages.
Lstiburek, Joseph, “BSD-106: Understanding Vapor Barriers,” Apr. 15, 2011, Building Science Corporation, pp. 1-18; (retrieved Sep. 26, 2018 https://buildingscience.com/documents/digests/bsd-106-understanding-vapor-barriers).
Mercene Labs, official home page, retrieved Feb. 23, 2017, retrieved from the Internet: http://www.mercenelabs.com/technology/, according to the Internet Archive WayBack Machine this page was available on Jan. 22, 2013.
Ziegler, Göran, et al., U.S. Appl. No. 16/223,708 entitled “A Method to Produce a Veneered Element and a Veneered Element,” filed in the U.S. Patent and Trademark Office Dec. 18, 2018.
Ziegler, Göran, et al., U.S. Appl. No. 16/223,833 entitled “A Method to Produce a Veneered Element and a Veneered Element,” filed in the U.S. Patent and Trademark Office Dec. 18, 2018.
Ziegler, Göran, U.S. Appl. No. 16/325,543 entitled “A Method to Coat a Building Panel and Such a Coated Building Panel,” filed in the U.S. Patent and Trademark Office Feb. 14, 2019.
Lundblad, Christer, et al., U.S. Appl. No. 16/365,764 entitled “A Method of Producing a Veneered Element and Such a Veneered Element,” filed in the U.S. Patent and Trademark Office Mar. 27, 2019.
Fang, Chang-Hua, et al., “Densification of wood veneers by compression combined with heat and steam,” Eur. J. Wood Prod., 2012, pp. 155-163, vol. 70, Springer-Verlag, Germany (available online Feb. 1, 2011).
Mercene Labs, “Industrial coatings,” retrieved Mar. 28, 2020, 2 pages, retrieved from the Internet https://web.archive.org/web/20140825055945/http://www.mercenelabs.com/products/coating-of-difficult-substrates/ according to the Internet Archive WayBack Machine this page was available on Aug. 25, 2014 (XP055674250).
U.S. Appl. No. 16/738,334, Anette Hedlund and Sofia Nilsson, filed Jan. 9, 2020.
U.S. Appl. No. 16/738,334, Hedlund et al.—See Information Below.
Hedlund, Anette, et al., U.S. Appl. No. 16/738,334 entitled “Method to Produce a Veneer Element and a Veneer Element,” filed in the U.S. Patent and Trademark Office Jan. 9, 2020.
U.S. Appl. No. 17/038,567, Marcus Bergelin, filed Sep. 30, 2020.
U.S. Appl. No. 17/090,511, Guido Schulte, filed Nov. 5, 2020.
U.S. Appl. No. 17/038,567, Bergelin, et al.—See Information Below.
U.S. Appl. No. 17/090,511, Schulte—See Information Below.
Bergelin, Marcus, et al., U.S. Appl. No. 17/038,567 entitled “Veneered Element and Method of Producing Such a Veneered Element,” filed in the U.S. Patent and Trademark Office Sep. 30, 2020.
Schulte, Guido, U.S. Appl. No. 17/090,511 entitled “Floor, Wall, or Ceiling Panel and Method for Producing Same,” filed in the U.S. Patent and Trademark Office Nov. 5, 2020.
U.S. Appl. No. 17/202,836, Göran Ziegler, filed Mar. 16, 2021.
U.S. Appl. No. 17/204,469, Göran Ziegler, filed Mar. 18, 2021.
U.S. Appl. No. 17/232,687, Andreas Slottemo, filed Apr. 16, 2021.
U.S. Appl. No. 17/202,836, Ziegler et al.—See Information Below.
U.S. Appl. No. 17/205,469, Ziegler et al.—See Information Below.
U.S. Appl. No. 17/232,687, Slottemo et al.—See Information Below.
Ziegler, Göran, et al., U.S. Appl. No. 17/202,836 entitled “Method to Produce a Veneered Element and a Veneered Element,” filed in the U.S. Patent and Trademark Office Mar. 16, 2021.
Ziegler, Göran, et al., U.S. Appl. No. 17/205,469 entitled “Method of Producing a Veneered Element,” filed in the U.S. Patent and Trademark Office Mar. 18, 2021.
Slottemo, Andreas, et al., U.S. Appl. No. 17/232,687 entitled “Method for Producing a Building Element, a Pressing Device and a Method of Embossing a Wooden Surface,” filed in the U.S. Patent and Trademark Office Apr. 16, 2021.
U.S. Appl. No. 17/352,942, Guido Schulte, filed Jun. 21, 2021.
Schulte, Guido, U.S. Appl. No. 17/352,942 entitled “Method for Producing a Floorboard,” filed in the U.S. Patent and Trademark Office Jun. 21, 2021.
U.S. Appl. No. 17/496,441, Göran Ziegler, filed Oct. 7, 2021.
Ziegler, Göran, et al., U.S. Appl. No. 17/496,441 entitled “Method to Produce a Veneered Element and a Veneered Element,” filed in the U.S. Patent and Trademark Office on Oct. 7, 2021.
U.S. Appl. No. 17/543,962, Magnus Nilsson, filed Dec. 7, 2021.
Nilsson, Magnus, et al., U.S. Appl. No. 17/543,962 entitled “Method to Produce a Veneered Element and a Veneered Element,” filed in the U.S. Patent and Trademark Office Dec. 7, 2021.
Related Publications (1)
Number Date Country
20190010711 A1 Jan 2019 US
Continuations (1)
Number Date Country
Parent 14593521 Jan 2015 US
Child 16132977 US