Flooring board with a thin veneer wood aesthetic and durable surface
10576715 ยท 2020-03-03
Assignee
Inventors
Cpc classification
B32B37/14
PERFORMING OPERATIONS; TRANSPORTING
E04F15/042
FIXED CONSTRUCTIONS
B32B2317/16
PERFORMING OPERATIONS; TRANSPORTING
B32B21/02
PERFORMING OPERATIONS; TRANSPORTING
B32B21/14
PERFORMING OPERATIONS; TRANSPORTING
International classification
B32B21/04
PERFORMING OPERATIONS; TRANSPORTING
B32B21/02
PERFORMING OPERATIONS; TRANSPORTING
B32B21/14
PERFORMING OPERATIONS; TRANSPORTING
B32B37/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A flooring board having a plurality of layers may have a sufficiently high modified Janka hardness rating for use in general flooring applications. The flooring board may comprise a fiberboard core layer having a thin veneer layer of a natural wood species adhered to a surface of the core layer. The veneer layer may be a gymnosperm (softwood) or angiosperm (hardwood) having a low Janka hardness rating. Surprisingly, the flooring board has a high modified Janka hardness rating significantly higher than the Janka hardness rating of the natural wood species and sufficient for use in general flooring applications when the veneer layer is sufficiently thin.
Claims
1. A flooring board comprising: a core layer comprising a fiberboard material, wherein said fiberboard material comprises compressed ground wood fibers and a binder material, and wherein said fiberboard material is selected from the group consisting of: medium-density fiberboard and high-density fiberboard; a veneer layer adhered to the core layer such that the veneer layer defines an aesthetic and durable surface of the flooring board, wherein the veneer layer comprises a natural wood species having a Janka side hardness rating between about 350 lbf and about 850 lbf when tested in block form, and wherein the veneer layer has a thickness between about 0.6 mm and about 2.0 mm; an adhesive heat-cured between the core layer and the veneer layer to secure the veneer layer to the core layer; and wherein the flooring board has a modified Janka hardness rating measured on the aesthetic and durable surface of the flooring board of at least about 120% of the Janka side hardness rating of the wood species tested in block form.
2. The flooring board of claim 1, wherein the natural wood species is a gymnosperm.
3. The flooring board of claim 2, wherein the natural wood species is selected from the group consisting of: pine and fir.
4. The flooring board of claim 1, wherein the natural wood species is selected from the group consisting of: sweetgum, poplar, and aspen.
5. The flooring board of claim 1, wherein the veneer layer has a thickness between about 0.6 mm and about 1.75 mm.
6. The flooring board of claim 5, wherein the flooring board has a modified Janka hardness rating measured on the aesthetic and durable surface of the flooring board of at least about 130% of the Janka side hardness rating of the wood species tested in block form.
7. The flooring board of claim 1, wherein the veneer layer has a thickness between about 0.6 mm and about 1.50 mm.
8. The flooring board of claim 7, wherein the flooring board has a modified Janka hardness rating measured on the aesthetic and durable surface of the flooring board of at least about 135% of the Janka side hardness rating of the wood species tested in block form.
9. The flooring board of claim 1, wherein the flooring board has a modified Janka hardness rating measured on the aesthetic and durable surface of the flooring board of at least about 200% of the Janka side hardness rating of the wood species tested in block form.
10. The flooring board of claim 1, wherein the core layer has a thickness between about 6.25 mm and about 6.75 mm.
11. The flooring board of claim 1, further comprising a backing layer adhered to a side of the core layer opposite the veneer layer.
12. The flooring board of claim 11, wherein the backing layer has a thickness between about 0.96 mm and about 2.12 mm.
13. A flooring board comprising: a core layer comprising a fiberboard material; a veneer layer adhered to the core layer such that the veneer layer defines an aesthetic and durable surface of the flooring board, wherein the veneer layer comprises sweetgum, and wherein the veneer layer has a thickness between about 0.6 mm and about 2.0 mm; an adhesive heat-cured between the core layer and the veneer layer to secure the veneer layer to the core layer; and wherein the flooring board has a modified Janka hardness rating measured on the aesthetic and durable surface of the flooring board of at least about 120% of the Janka side hardness rating of the sweetgum tested in block form.
14. The flooring board of claim 13, wherein the sweetgum has a Janka side hardness rating of about 850 lbf measured in block form.
15. The flooring board of claim 13, wherein the veneer layer has a thickness between about 0.6 mm and about 1.75 mm.
16. The flooring board of claim 15, wherein the flooring board has a modified Janka hardness rating measured on the aesthetic and durable surface of the flooring board of at least about 130% of the Janka side hardness rating of the sweetgum tested in block form.
17. The flooring board of claim 13, wherein the veneer layer has a thickness between about 0.6 mm and about 1.50 mm.
18. The flooring board of claim 17, wherein the flooring board has a modified Janka hardness rating measured on the aesthetic and durable surface of the flooring board of at least about 135% of the Janka side hardness rating of the sweetgum tested in block form.
19. The flooring board of claim 13, wherein the core layer has a thickness between about 6.25 mm and about 6.75 mm.
20. The flooring board of claim 13, wherein the fiberboard material is selected from the group consisting of: medium-density fiberboard and high-density fiberboard.
21. The flooring board of claim 13, further comprising a backing layer adhered to a side of the core layer opposite the veneer layer.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) Reference will now be made to the accompanying drawings, which are not necessarily drawn to scale, and wherein:
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DETAILED DESCRIPTION
(6) The present invention will now be described more fully hereinafter with reference to the accompanying drawings, in which some, but not all embodiments of the invention are shown. Indeed, the invention may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will satisfy applicable legal requirements. Like numbers refer to like elements throughout.
(7) The flooring boards described herein, as well as materials included in the flooring boards were tested to determine their hardness according to well-known hardness testing methods. The raw wood materials were tested according to the established Janka hardness testing method as described in ASTM D 143. In brief, the Janka hardness testing method measures the force required to embed an 11.28 mm (0.444 in) steel ball into a 6-inch long by 2-inch wide by 2-inch deep solid block of material to a depth equal to half the ball's diameter. The steel ball is pressed into the surface of the test block at a set velocity of 0.25 in/min. The amount of force necessary to embed the steel ball in the material to a depth equal to half the ball's diameter is the Janka hardness rating of the material. When testing the hardness of wood species, the Janka hardness testing method tests all sides of the solid block of wood to determine the side hardness rating (indicative of the hardness of the wood in a direction perpendicular to the grain of the wood) and end hardness rating of the wood (indicative of the hardness of the wood in a direction parallel to the grain of the wood). Because wood flooring generally includes wood having the grain parallel to the surface of the floor, the Janka side hardness rating of various wood species is often considered when determining whether the wood species is suitable for use as a flooring material.
(8) For flooring boards that are not formed from a homogenous block of natural wood, a modified Janka hardness test (utilized by North Carolina State University) is commonly used to measure the hardness of a flooring board. The modified Janka hardness test may be used to measure the hardness of a flooring board, such as a laminate board, an engineered wood board, a solid wood board, and/or the like. Accordingly, the modified Janka hardness test may be utilized to measure the hardness of a board having one or more layers therein.
(9) As utilized herein, the modified Janka test is substantially similar to the Janka test defined in ASTM D 143 and comprises steps for measuring the force required to embed an 11.28 mm steel ball into the aesthetic and durable surface of a flooring board. The modified Janka test comprises steps for moving the steel ball into the aesthetic and durable surface of the flooring board at 0.25 in/min, the same set velocity used in the Janka test defined in ASTM D 143. The amount of force necessary to embed the steel ball in the flooring board is the modified Janka hardness rating of the flooring board. Rather than testing various sides of a test sample as recited in the ASTM 143 standard, which would not yield useful results in the case of a nonhomogeneous flooring board, the modified Janka test method involves testing multiple points on the aesthetic and durable surface of the flooring board along the length of the flooring board.
(10) Various embodiments of the present invention are directed to a flooring board having a thin veneer layer comprising a natural wood species adhered to a core layer. In various embodiments, the core layer may comprise a High-Density Fiberboard (HDF) or a Medium-Density Fiberboard (MDF). The veneer layer may comprise a wood having a low hardness rating determined according to the Janka test methods defined in ASTM D 143 (e.g., a gymnosperm or an angiosperm having a low hardness rating). Although the veneer layer may comprise a wood species having a low hardness that is itself generally insufficient to resist denting as a flooring material, when a sufficiently thin veneer layer is adhered to a solid core layer comprising fiberboard material, the overall flooring board combines the desirable and often exotic appearance of the wood species utilized in the veneer with a high modified Janka hardness adequate for general flooring applications.
(11) As non-limiting examples, the veneer layer may comprise sweetgum having a Janka hardness rating in solid block form of about 850 lbf, poplar having a Janka hardness rating in solid block form of about 540 lbf, or aspen having a Janka hardness rating in solid block form of about 350 lbf. In embodiments, the veneer layer has a thickness between about 0.6 mm and about 2.0 mm, a thickness between about 0.6 mm and about 1.75 mm, or a thickness between about 0.6 mm and about 1.5 mm.
(12) When the veneer layer is adhered to the core layer to form the flooring board, the flooring board has a modified Janka hardness rating substantially greater than the Janka side hardness rating of the wood species of the veneer layer alone when tested in sold block form. For example, a flooring board having a veneer layer of sweetgum may have a modified Janka hardness between about 1,075 lbf and about 1,170 lbf compared to a Janka side hardness rating of about 850 lbf for sweetgum when measured in block form. Accordingly, the flooring board may have an aesthetic and durable surface defined by a veneer layer of a wood species having a low Janka hardness rating while the aesthetic and durable surface of the overall flooring board has a high modified Janka hardness rating as determined using a modified Janka hardness test method. Thus, the flooring board provides the aesthetic qualities of a wood species having a low Janka side hardness rating while maintaining a high modified Janka hardness rating sufficient for use as a flooring board.
(13) In various embodiments, the flooring board may have an elongated shape to define a plank, however, the flooring board may have any of a variety of shapes, including square, rectangular, triangular, and/or any other shape and may take the form of a tile. For example, the flooring board may have a shape permitting interlocking of a plurality of flooring boards to form a continuous flooring surface with no substantial gaps or holes extending between flooring boards.
(14) As will be described in greater detail herein, various embodiments of the flooring board may additionally comprise a coating over the wood veneer (e.g., a polyurethane coating) and/or a backing layer adhered to the core layer on a surface opposite the veneer layer.
(15) Flooring Board
(16) Referring now to
(17) As illustrated in
(18) Referring again to
(19) In various embodiments, the veneer layer 12 may be a veneer formed from a natural wood species having a low Janka side hardness rating, such as a wood species having a Janka side hardness rating between about 350 lbf and about 850 lbf. The veneer layer may thus provide the aesthetic qualities of gymnosperms and low-Janka side hardness angiosperms to thereby provide an exotic or otherwise desirable appearance for the flooring board 10. In various embodiments, the veneer layer 12 is a veneer of a gymnosperm species (softwood), such as pine or fir. In various embodiments, the veneer layer 12 is a veneer of an angiosperm species (hardwood) having a Janka side hardness rating between about 350 lbf and about 850 lbf. For example, the veneer layer 12 is a veneer of aspen, poplar, or sweetgum. However, other species could also be used to provide a desirable appearance for an aesthetic and durable surface of a flooring board 10.
(20) In embodiments, the veneer layer 12 has a thickness t.sub.v between about 0.6 mm and about 2.0 mm; a thickness t.sub.v between about 0.6 mm and about 1.75 mm; or a thickness t.sub.v between about 0.6 mm and about 1.5 mm. The thickness t.sub.v of the veneer layer 12 may be selected based at least in part on the ability to form a veneer of a particular wood species, the cost of the wood species, the hardness of the wood species, the size of visible pores extending through the wood species, the ability to form a veneer from a trunk of the wood species, the ability to perform further processing (e.g., sanding, planning, jointing, coating, and/or the like) on the wood species, and/or the like. For example, the veneer layer thickness t.sub.v may sufficiently thick the avoid cracking or splitting during processing.
(21) As discussed in the testing section herein, it was determined that a flooring board 10 having a veneer layer 12 with a thickness t.sub.v less than about 2.0 mm has a hardness adequate for use in general flooring applications, and flooring boards 10 having thin wood veneers with a thickness t.sub.v less than about 1.75 mm provide exceptional strength for use in general flooring applications. For example, using the modified Janka test, a flooring board 10 having an HDF core layer 11 and a sweetgum veneer layer 12 having a thickness t.sub.v of about 1.62 mm was found to have a modified Janka hardness rating of about 1,078 lbf. As yet another example, a flooring board 10 having an HDF core layer 11 and a sweetgum veneer layer 12 having a thickness t.sub.v of about 1.21 mm was found to have a modified Janka hardness of about 1,161 lbf. As yet another example, a flooring board 10 having an HDF core layer 11 and a poplar veneer layer 12 having a thickness t.sub.v of about 1.40 mm was found to have a modified Janka hardness rating of about 1,148 lbf. As yet another example, a flooring board 10 having an HDF core layer 11 and an aspen veneer layer 12 having a thickness t.sub.v of about 1.5 mm was found to have a modified Janka hardness rating of about 1,109 lbf.
(22) As shown in
(23) Moreover, in the illustrated embodiment of
(24) Method of Manufacture
(25) In various embodiments, the flooring board 10 may be manufactured by adhering the various layers through a cold-press and hot-press process. In various embodiments, the process may begin by obtaining a veneer layer 12 having an initial thickness. In various embodiments, the veneer layer 12 is adhered to the first surface of the core layer 11. If a backing layer 14 is additionally included in the flooring board 10, the backing layer 14 is adhered to the second surface of the core layer 11 opposite the veneer layer 12 either before or after the veneer layer 12 is adhered to the core layer 11. The combined core layer 11, veneer layer 12, and backing layer 14 with adhesive therebetween are cold pressed for a first period of time before the combined core layer 11, veneer layer 12, backing layer 14, and adhesive are heated and heat pressed for a second period of time to cure the adhesive between the various layers. However, the veneer layer 12 and the backing layer 14 may be adhered to the core layer 11 in separate steps (e.g., consecutively).
(26) In various embodiments, after the adhesive is cured, the veneer layer 12 is reduced to a final thickness that is less than the initial thickness. For example, the veneer layer 12 may have an initial thickness of 1.75 mm when adhered to the core layer, and may have a final thickness less than 1.75 mm, but greater than 0.6 mm after reducing. The veneer layer 12 may be reduced in thickness by sanding the veneer layer 12 after it is adhered to the core layer 11. However, the veneer layer 12 may be reduced using a variety of other methods, such as planing and/or jointing the veneer layer 12 in addition to, or as an alternative to, the sanding.
(27) After the thickness of the veneer layer 12 is reduced to the final thickness, one or more finishing processes may be performed on the combination of the core layer 11, veneer layer 12, and backing layer 14 to form the final flooring board 10. For example, the various layers may be cut to a desired length and/or width, tongue-and-groove features 11a, 11b may be machined (e.g., routed) into sides of the core layer 11, one or more coatings 13 may be applied to the surface of the veneer layer 12, and/or the like.
(28) Hardness Testing Results
(29) Several flooring boards 10 as described herein were tested according to the modified Janka test method described herein and utilized by North Carolina State University.
(30) Surprisingly, by performing the modified Janka test on a plurality of flooring boards, it was found that a flooring board 10 having a veneer layer 12 with a thickness t.sub.v less than about 2.0 mm and adhered to a fiberboard core layer 11 has a modified Janka hardness rating sufficient for use as a flooring material. Further flooring boards 10 having a veneer layer having a thickness t.sub.v less than about 1.75 mm provide exceptional hardness for use as a flooring material. In contrast to conventional wisdom, by decreasing the thickness t.sub.v of the veneer layer 12, the overall hardness of the flooring board 10 having a fiberboard core layer 11 increases. Thus, flooring boards 10 having a veneer layer 12 of a wood species having a low hardness rating may have a modified Janka hardness rating greater than about 120% of the Janka hardness rating of the wood species measured in block form, or greater than about 200% of the Janka hardness rating of the wood species measured in block form. For example, a flooring board 10 comprising a sweetgum wood veneer layer 12 having a thickness of about 1.21 mm adhered to an HDF core layer 11 was determined to have a modified Janka hardness rating of about 1,161 lbf, compared to a Janka side hardness rating of about 850 lbf for the sweetgum wood species alone. As yet another example, a flooring board 10 comprising a poplar wood veneer layer 12 having a thickness of about 1.40 mm adhered to an HDF core layer 11 was determined to have a modified Janka hardness rating of about 1,148 lbf, compared to a Janka side hardness rating of about 540 lbf for the poplar wood species alone. As yet another example, a flooring board 10 comprising an aspen wood veneer layer 12 having a thickness of about 1.5 mm adhered to an HDF core layer 11 was determined to have a modified Janka hardness rating of about 1,109 lbf, compared to a Janka side hardness rating of about 350 lbf for the aspen wood species alone.
(31) The modified Janka hardness test was performed on four sets of 30 sample flooring boards for each veneer layer natural wood species adhered to an HDF core layer having a Janka hardness of about 965 lbf, each set having a selected target veneer layer thickness. In total, 120 sample boards of varying thicknesses were tested at 4 sample locations along the length of each board, for a total of 480 measurements for each wood species utilized in the veneer layer. Each of the tested boards comprises a veneer layer of the tested wood species and thickness, an HDF core layer having an average thickness of about 6.41 mm, and a southern red oak backing layer having an average thickness of about 1.63 mm.
(32) Identical tests were performed on four sets of 30 sample boards for each veneer layer natural wood species adhered to a three-layer plywood core layer. The multi-layer plywood core layer included a first poplar layer adjacent the veneer layer having an average thickness of about 2.06 mm, a sweetgum center layer adhered to the first poplar layer having an average thickness of about 2.02 mm, and a second poplar layer adhered to the sweetgum center layer having an average thickness of about 2.07 mm. Each flooring board additionally included a southern red oak backing layer adhered to the plywood core layer and having an average thickness of about 1.73 mm. The results of the tests are summarized in Tables 1-3, below, and graphically in
(33) TABLE-US-00001 TABLE 1 Test results for flooring boards having a sweetgum veneer layer. Sweetgum Avg. Veneer Avg. Modified Janka Side Thickness Janka hardness Hardness Hardness Sample Name (mm) (lbf) (lbf) Increase Sweetgum-HDF 2.03 1062 850 123% Sample Set 1 Sweetgum-HDF 1.71 1124 850 131% Sample Set 2 Sweetgum-HDF 1.62 1078 850 125% Sample Set 3 Sweetgum-HDF 1.21 1161 850 135% Sample Set 4 Sweetgum- 2.03 865 850 101% Plywood Sample Set 1 Sweetgum- 1.78 897 850 104% Plywood Sample Set 2 Sweetgum- 1.73 902 850 105% Plywood Sample Set 3 Sweetgum- 1.29 893 850 104% Plywood Sample Set 4
(34) TABLE-US-00002 TABLE 2 Test results for flooring boards having a poplar veneer layer. Poplar Janka Avg. Veneer Avg. Modified Side Thickness Janka hardness Hardness Hardness Sample Name (mm) (lbf) (lbf) Increase Poplar-HDF 1.93 1123 540 208% Sample Set 1 Poplar-HDF 1.77 1142 540 211% Sample Set 2 Poplar-HDF 1.55 1120 540 207% Sample Set 3 Poplar-HDF 1.40 1148 540 213% Sample Set 4 Poplar-Plywood 2.06 896 540 166% Sample Set 1 Poplar-Plywood 1.95 919 540 170% Sample Set 2 Poplar-Plywood 1.76 976 540 181% Sample Set 3 Poplar-Plywood 1.56 1015 540 188% Sample Set 4
(35) TABLE-US-00003 TABLE 3 Test results for flooring boards having an aspen veneer layer. Aspen Janka Avg. Veneer Avg. Modified Side Thickness Janka hardness Hardness Hardness Sample Name (mm) (lbf) (lbf) Increase Aspen-HDF 2.06 1050 350 300% Sample Set 1 Aspen-HDF 1.96 1009 350 288% Sample Set 2 Aspen-HDF 1.54 1064 350 304% Sample Set 3 Aspen-HDF 1.5 1109 350 317% Sample Set 4 Aspen-Plywood 2.09 805 350 230% Sample Set 1 Aspen-Plywood 2.06 814 350 232% Sample Set 2 Aspen-Plywood 1.66 813 350 232% Sample Set 3 Aspen-Plywood 1.58 840 350 240% Sample Set 4
(36) As shown in Tables 1-3, flooring boards 10 comprising a fiberboard core layer 11 and a veneer layer 12 of a wood species having a low Janka side hardness rating may have a modified Janka hardness rating higher than the wood species and sufficient for use as a flooring material. With specific reference to Table 1 and
(37) Referring to Table 2 and
(38) Referring to Table 3 and
(39) Such flooring boards 10 may thus provide an aesthetic and durable surface having a modified Janka hardness rating adequate to endure normal use associated with flooring materials (e.g., forces associated with persons walking on the flooring material in high-heel shoes), while providing the appearance of a gymnosperm or other low-hardness wood species. Flooring boards 10 having a fiberboard core layer 11 and a veneer layer 12 having a thickness between about 0.6 mm and about 2.0 mm may thus have a modified Janka hardness rating adequate for use as a flooring material. Advantageously, flooring boards having a fiberboard core layer 11 and a veneer layer 12 having a thickness between about 0.6 mm and about 1.75 mm provide a modified Janka hardness rating sufficient for use as a flooring material. Even more advantageously, flooring boards having a fiberboard core layer 11 and a veneer layer 12 having a thickness between about 0.6 mm and about 1.5 mm provide a modified Janka hardness rating sufficient for use as a flooring material
(40) Although described herein as generally used with gymnosperms and angiosperms having a low hardness rating, a veneer layer of any of a variety of wood species may be utilized in a flooring board 10 as described herein in order to provide a flooring board 10 having an aesthetic and durable surface having an enhanced hardness rating greater than the hardness of the wood species alone. For example, a veneer layer of Brazilian rosewood, cherry, maple, and/or the like may be utilized herein. Moreover, flooring boards 10 as described herein may comprise a veneer layer 12 of a wood material having an inconsistent Janka hardness rating across the surface of the material. For example, veneer layers of one or more figured wood varieties, ambrosia wood varieties, and/or spalted wood varieties may be utilized. As yet another alternative, the veneer layer 12 may comprise stabilized and/or impregnated wood varieties. Although wood species having a low Janka hardness rating need not be stabilized and/or impregnated with strengthening materials (e.g., resins) in order to provide a flooring board 10 having an aesthetic and durable surface having a high modified Janka hardness rating, the veneer layer 12 may be stabilized and/or impregnated to provide an alternative appearance of the flooring board 10.
CONCLUSION
(41) Many modifications and other embodiments of the inventions set forth herein will come to mind to one skilled in the art to which these inventions pertain having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. Therefore, it is to be understood that the inventions are not to be limited to the specific embodiments disclosed and that modifications and other embodiments are intended to be included within the scope of the appended claims. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.