Process for the production of a floor strip

Abstract
A thin abrasion resistant decorative thermosetting laminate of postforming quality is glued to a longitudinal carrier. The carrier preferably consists of a fiber board or a particle board with a rectangular cross section and at least two opposite rounded-off edges. One or more floor strips with the same or different cross section is machined from the laminate clad carrier.
Description

The present invention relates to a process for the production of a floor strip such as a dilatation profile, a transition profile or a finishing profile.


It is previously known to produce floor strips such as metal strips, wood veneer coated strips and strips of homogeneous wood.


There is a strong desire to bring about a floor strip with the same pattern as on a floor of thermosetting laminate. During the last years these floors have become very usual. For instance they are made with wood pattern, marble pattern and phantasy pattern. Possibly you can use a homogeneous wood strip or a wood veneer coated strip for a few of the wood patterned floors. Previously known strips do not go well together with all the other floor patterns.


In addition the purpose of the present invention is to provide a floor strip with improved abrasion resistance.


According to the present invention it has quite surprisingly been possible to meet the above needs and bring about a process for the production of floor strips such as a dilatation profile, a transition profile or a finishing profile. The process comprises gluing, preferably under heat and pressure a thin decorative thermosetting laminate of postforming quality having an abrasion resistance measured as IP-value >3000 revolutions, preferably >6000 revolutions, on a longitudinal carrier, which carrier preferably consists of a fibre board or a particle board with a rectangular cross-section and at least two opposite rounded-off edges. The postforming laminate is glued in one piece on the upper side and two long sides of the carrier via the rounded-off edges, whereupon one or more floor profiles having the same or different cross-section is machined from the laminate coated carrier.


According to one embodiment the carrier can be provided with a rectangular cross-section with three rounded-off edges.


One great advantage of the process or the production according to the invention is that it is very rational. From the same body, the laminate clad carrier, several profiles with varying shape can be machined. Usually a milling machine is used for machining the different kinds of profiles from the laminate coated carrier.


Preferably the carrier is water resistant. At a preferred embodiment the carrier consists of a high density fibre board made of fine fibres.


At a preferred embodiment the postforming laminate is glued in one piece on three of the four longitudinal sides of the carrier, preferably on the upper side and two long sides via the rounded-off edges. Advantageously, a hear and moisture resistant glue is used at the gluing. Preferably the gluing is carried out under heat and pressure. For instance the pressure can be regulated by means of rollers which press the laminate against the carrier. The temperature can for instance be regulated with heating nozzles which can give an even current of warm air.


At another embodiment the carrier can be provided with a rectangular cross-section and three rounded-off edges. The postforming laminate is then glued in one piece on all four sides of the carrier via the rounded-off edges.


Suitably the postforming laminate consists of at least one monochromatic or patterned paper sheer impregnated with a thermosetting resin, preferably melamine-formaldehyde resin and preferably one or more sheets for instance of parchment vulcanized fibres or glass fibres. The last mentioned sheets are preferably not impregnated with any thermosetting resin, but the thermosetting resin from the sheets situated above will enter these sheets at the laminating step, where all sheets are bonded together.


Generally the term postforming laminate means a laminate which is so flexible that it can be formed at least to a certain extent after the production thereof. Ordinary qualities of thermosetting decorative laminates are rather brittle and cannot be regarded as postforming laminates.


Usually the postforming laminate includes at least one uppermost transparent paper sheer made of α-cellulose and impregnated with a thermosetting resin, preferably melamine-formaldehyde resin. This so-called overlay is intended to protect an underlying decor sheet from abrasion.


Often at least one of the paper sheets of the postforming laminate impregnated with thermosetting resin, preferably the uppermost one is coated with hard particles for instance silica, aluminium oxide and/or silicon carbide with an average particle size or about 1-80 μm, preferably about 5-60 μm evenly distributed over the surface of the paper sheet.


In a preferred embodiment the hard particles are applied on the resin impregnated paper surface before the resin has been dried.


The hard particles improve the abrasion resistance of the laminate. Hard particles are used in the same way at the production of laminates which are subject to a hard wear such as flooring laminates.


The abrasion resistance of the postforming laminates are tested according to the European standard EN 438-2/6:1991. According to this standard the abrasion of the decor sheet of the finished laminate to the so-called IP-point (initial point) is measured, where the starting abrasion takes place.


The IP-value suitably lies within the interval 3000-70000, preferably 3000-10000 revolutions.


Thus, the manufacturing process according to the invention makes it possible to produce laminate clad profiles with the same surface pattern and about the same abrasion resistance as the laminate floorings they are intended to no together with.


Of course the pattern of the profiles can also be adapted to other flooring materials than laminate floorings, such as parquette floorings and soft plastic floorings.





The present invention will be explained further in connection with the embodiment example below and the enclosed figures of which



FIG. 1 shows a postforming laminate 1 glued to a longitudinal carrier 2.



FIG. 2 shows a dilatation profile 3 with a postforming laminate 1 glued thereto, while



FIG. 3 illustrates a finishing profile 4 with a postforming laminate 1 glued thereto. Finally



FIG. 4 shows a transition profile 5 with a postforming laminate 1 glued thereto.





On the figures the thickness of the postforming laminate 1 has been magnified as compared to the size of the carrier 2 and the profiles 3-5 respectively to better illustrate that a postforming laminate 1 is glued to the carrier 2 and the profiles 3-5 respectively.


Of course the FIGS. 1-4 only show one embodiment of the carrier and the profiles 3-5 respectively which can be produced according to the invention. Various other designs are possible.


EXAMPLE

A oil of transparent so-called overlay paper of α-cellulose with a surface weight of 25 g/m2 was impregnated with an aqueous solution of melamine-formaldehyde resin to a resin content of 70 percent by weight calculated on dry impregnated paper. Immediately after the impregnation, aluminium oxide particles with an average particle size of 50 μm were applied to the upper side of the paper in an amount of 7 g/m2 by means of a doctor-roll placed above the paper web.


Thus, the hard aluminium particles were applied in the melamine-formaldehyde resin which had not been dried yet.


The impregnated paper web was then fed continuously into a heating oven, where the solvent was evaporated. At the same time the resin was partially cured to so-called B-stage. Thereby the aluminium oxide particles were enclosed in the resin layer and accordingly concentrated to the surface of the product obtained which is usually called prepreg. The prepreg web obtained was then rolled again.


A roll of conventional nontransparent so-called decor paper with a decor pattern printed thereon and having a surface weight of 80 g/m2 was treated in the same way as the overlay paper except for the fact that no aluminium oxide particles were applied and that the resin content was 50 percent by weight calculated on dry impregnated paper.


A roll of unimpregnated parchment with a surface weight of 120 g/m2 was used at the production of the postforming laminate.


The two prepreg webs impregnated with melamine-formaldehyde resin and the unimpregnated parchment web were pressed between two press bands of a continuous laminating press to a decorative postforming laminate.


At the pressing a prepreg web of α-cellulose was placed on top with the side with the hard particles directed upwards. Underneath followed a prepreg web of decor paper and at the bottom a web of parchment. The prepreg webs and the parchment web were pressed together at a pressure of 35 kp/cm2 and at a temperature or 170° C.


The decorative postforming laminate obtained was cut with roller knives to strips of suitable length and width.


A longitudinal carrier 2 with a rectangular cross-section and two opposite rounded-off edges according to FIG. 1 was machined from a fibre board by means of a milling machine. The fibre board was a water resistant board of so-called MDF-quality (medium density fibre board quality) of high density made of finely divided fibres.


A strip of postforming laminate 1 was glued under heat and pressure to the longitudinal carrier 2 with a heat and moisture resistant glue. The pressure was regulated with rolls which pressed the laminate against the carrier and the temperature was regulated with heating nozzles which blew an even current of warm air.


A dilation profile 3 according to FIG. 2 was machined from the laminate clad carrier by milling.


Instead two finishing profiles 4 according to FIG. 3 or one transition profile 5 according to FIG. 4 can be produced from the same carrier. This results in a rational and cost-saving production.


The abrasion resistance of the postforming laminate obtained was measured. Then a value for the IP-point amounting to 7000 revolutions was obtained.


The present invention is not limited to the embodiments disclosed, since these can be modified in different ways within the scope of the present invention.

Claims
  • 1. The product produced by the process for the production of a floor profile strip, said process comprising gluing a thin decorative thermosetting laminate of postforming quality comprising hard particles on a longitudinal carrier, which carrier consists of at least one member selected from the group consisting of a fiber board and a particle board, said carrier having a cross-section with at least two rounded-off edges, wherein, in said gluing step, the thermosetting laminate of postforming quality in one piece is glued on an upper side and on two long sides of the carrier via the rounded-off edges to form a laminate coated carrier, and subsequently machining said laminate coated carrier into one or more floor profiles, which may be the same or different cross-section, from the laminate coated carrier to produce a floor profile strip.
  • 2. A floor comprising the floor profile strip of claim 1 and at least one other flooring element.
  • 3. The floor of claim 2, further comprising at least one floor element of thermosetting laminate, wherein the at least one floor element comprises a decorative upper surface, the decorative surface has at least one color and pattern and the thermosetting laminate of the floor profile strip comprises a decorative surface, wherein the decorative surface has at least one color and pattern corresponding to the at least one color and pattern of the decorative surface of the at least one other floor element.
  • 4. A floor element comprising: a longitudinal carrier, anda thermosetting laminate affixed to said carrier,wherein the floor element comprises glass fibers.
  • 5. The floor element of claim 4, wherein the thermosetting laminate comprises glass fibers.
  • 6. The product of claim 1, where the carrier has a rectangular cross-section with at least three rounded-off edges and the thermosetting laminate of postforming quality in one piece is glued on all four sides of the carrier via the rounded-off edges.
Priority Claims (1)
Number Date Country Kind
9403620 Oct 1994 SE national
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a divisional application of U.S. application Ser. No. 10/360,802, filed Feb. 10, 2003, now U.S. Pat. No. 6,805,951 which, in turn, is a continuation application of U.S. application Ser. No. 08/817,391, filed Apr. 25, 1997, now U.S. Pat. No. 6,517,935 which, in turn is a §371 application of PCT/SE95/01206, filed Oct. 17, 1995, claiming the priority of Swedish Application No. 9403620-9, filed Oct. 24, 1994, the entire disclosures of which are incorporated herein in their entirety.

US Referenced Citations (86)
Number Name Date Kind
1357713 Lane Nov 1920 A
1576527 McBride Mar 1926 A
1736539 Lachman Nov 1929 A
1966020 Rowley Jul 1934 A
2100238 Burgess Nov 1937 A
2194086 Horn Mar 1940 A
2363429 Lowry Nov 1944 A
2758044 Terry Aug 1956 A
2875467 De Vault Mar 1959 A
2926401 Place Mar 1960 A
2996751 Roby et al. Aug 1961 A
3028938 Schorr Apr 1962 A
3162906 Dudley Dec 1964 A
3199258 Jentoft et al. Aug 1965 A
3286425 Brown Nov 1966 A
3296056 Bechtold Jan 1967 A
3298056 Bechtold Jan 1967 A
3329329 Berg Jul 1967 A
3331171 Hallock Jul 1967 A
3339329 Berg Sep 1967 A
3362127 McGowan Jan 1968 A
3363382 Forest Jan 1968 A
3430402 Gaiser Mar 1969 A
3488828 Gallagher Jan 1970 A
3501879 Roach et al. Mar 1970 A
3508369 Tennison Apr 1970 A
3570205 Payne Mar 1971 A
3665666 Delcroix May 1972 A
3670470 Thom Jun 1972 A
3671369 Kavlheim et al. Jun 1972 A
3696461 Kelly Oct 1972 A
3696575 Armstrong Oct 1972 A
3745726 Thom et al. Jul 1973 A
3758650 Hurst Sep 1973 A
3760544 Hawes et al. Sep 1973 A
3810707 Tungseth et al. May 1974 A
3928706 Gibbons Dec 1975 A
3953661 Gulley Apr 1976 A
4059933 Funk et al. Nov 1977 A
4067155 Ruff et al. Jan 1978 A
4198455 Spiro et al. Apr 1980 A
4292774 Mairle Oct 1981 A
4445306 Schauffele May 1984 A
4455803 Kornberger Jun 1984 A
4461131 Pressell Jul 1984 A
4504347 Munk et al. Mar 1985 A
4520062 Ungar et al. May 1985 A
4594347 Ishikawa et al. Jun 1986 A
4643237 Rosa Feb 1987 A
4653138 Carder Mar 1987 A
4698258 Harkins, Jr. Oct 1987 A
4736563 Bilhorn Apr 1988 A
4747197 Charron May 1988 A
4757657 Mitchell Jul 1988 A
4806435 Athey Feb 1989 A
4940503 Lindgren Jul 1990 A
5034272 Lindgren et al. Jul 1991 A
5074089 Kemmer et al. Dec 1991 A
5155952 Herwegh et al. Oct 1992 A
5365713 Nicholas et al. Nov 1994 A
5581967 Glatz Dec 1996 A
5657598 Wilbs et al. Aug 1997 A
5688569 Gilmore et al. Nov 1997 A
5695875 Larsson et al. Dec 1997 A
5706623 Brown Jan 1998 A
5744220 Ringo Apr 1998 A
5888017 Corrie Mar 1999 A
6141920 Kemper Nov 2000 A
6146252 Martensson Nov 2000 A
6158915 Kise Dec 2000 A
6219982 Eyring Apr 2001 B1
6230385 Nelson May 2001 B1
6253514 Jobe et al. Jul 2001 B1
6345480 Kemper Feb 2002 B1
6421970 Martensson et al. Jul 2002 B1
6517935 Kornfalt et al. Feb 2003 B1
6550205 Neuhofer Apr 2003 B2
6588165 Wright Jul 2003 B1
6647680 Daly et al. Nov 2003 B2
6745534 Kornfalt Jun 2004 B2
6745553 Raasch Jun 2004 B2
6805951 Kornfalt et al. Oct 2004 B2
6860074 Stanchfield Mar 2005 B2
6898911 Kornfalt et al. May 2005 B2
7065931 Kornfalt et al. Jun 2006 B2
20070125021 Thiers et al. Jun 2007 A1
Foreign Referenced Citations (53)
Number Date Country
1010487 Oct 1998 BE
991373 Jun 1976 CA
2159042 Nov 1971 DE
2238660 Feb 1974 DE
2502992 Jan 1975 DE
3041781 Jun 1982 DE
3343601 Feb 1983 DE
3544845 Jun 1987 DE
3640822 Jun 1988 DE
3932980 Mar 1989 DE
467150 Jun 1992 DE
502994 Mar 1996 DE
29600057 Apr 1996 DE
29618803 Feb 1997 DE
29703962 Apr 1997 DE
19951516 Oct 1999 DE
19821938 Nov 1999 DE
29920645 Mar 2000 DE
20100413 Apr 2002 DE
517353 May 2002 DE
10131248 Jan 2003 DE
0592013 Aug 1989 EP
1111155 Dec 1999 EP
424057 Mar 1935 GB
812671 Apr 1959 GB
1348272 Apr 1971 GB
1430423 May 1974 GB
2088280 Jun 1982 GB
2117813 Oct 1983 GB
2256023 Nov 1992 GB
3169967 Jul 1991 JP
467150 Jun 1992 SE
501014 Oct 1994 SE
9904533 Jun 2001 SE
WO 9301378 Jan 1993 WO
9313280 Jul 1993 WO
9401628 Jan 1994 WO
9612857 May 1996 WO
9822678 May 1998 WO
9901628 Jan 1999 WO
9901628 Jan 1999 WO
9966151 Dec 1999 WO
0014351 Mar 2000 WO
0120101 Mar 2001 WO
0131141 May 2001 WO
0131141 May 2001 WO
03016657 Feb 2003 WO
03093686 Nov 2003 WO
2005083195 Feb 2004 WO
2005083196 Feb 2004 WO
2005116364 Mar 2005 WO
2005083196 Sep 2005 WO
2005122667 Dec 2005 WO
Related Publications (1)
Number Date Country
20040258907 A1 Dec 2004 US
Divisions (1)
Number Date Country
Parent 10360802 Feb 2003 US
Child 10895329 US
Continuations (1)
Number Date Country
Parent 08817391 US
Child 10360802 US