US800655A - Tile floor, wall, &c. - Google Patents

Tile floor, wall, &c. Download PDF

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Publication number
US800655A
US800655A US19654904A US1904196549A US800655A US 800655 A US800655 A US 800655A US 19654904 A US19654904 A US 19654904A US 1904196549 A US1904196549 A US 1904196549A US 800655 A US800655 A US 800655A
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tiles
series
sections
floor
metallic
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US19654904A
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Isidor Kitsee
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/08Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements
    • E04F13/0801Separate fastening elements
    • E04F13/0803Separate fastening elements with load-supporting elongated furring elements between wall and covering elements

Definitions

  • Patented oet. 3, 1905 Patented oet. 3, 1905.
  • My invention relates to an improvement in tile iioors, walls, Sac.
  • the object of my invention is to provide means whereby a series of individual tiles are securely held together and whereby the laying' of said individual tiles is accomplished in a manner more elcient than is to-day practiced.
  • Figure l isa plan View of the covering' of a floor, showing the method of laying said covering' in sections,portions of the tiles being removed to show the manner of joining' the sections out of which said covering consists.
  • Fig. 2 is an end view of Fig. 1.
  • Fig' 3 is a perspective view of a tile used in forming the design of one of the sections.
  • Fig'. et ⁇ is a corner of the metal backing' in perspective, showing the means of securing the tile to same.
  • Fig 5 is a plan View showing' the method of assembling' the tiles in a geometrical pattern or design to form one section.
  • Fig. 6 is a section through Fig. illustrating' the method of applying the metal backing.
  • Fig. 7 is a plan view of a metal backing' in modified form, partially broken away.
  • Fig. 8 is an end view of Fig'. 7.
  • FIG. 5 and Fig. 6 in which figures A is the design as an entirety, consisting' of the single tiles t and d, respectively.
  • C and C are two parts of a frame in the inner space of which the individual tiles are assembled.
  • D represents the means, here shown in the form of screws, for the purpose of tightening together the two parts of the frame, thereby compressing theindividual tiles and holding' the same securely in place.
  • a series of metallic plates preferably sheets of steel of about twelve to fifteen one-thousandths of an inch in thickness and of the desired size, are prepared either by punching' holes at predetermined places, as illustrated in Fig'. 7, or by stamping out at predetermined places barbed prongs or projections, as illustrated in Fig'. 4.
  • a series of individual tiles are then assembled or arranged in a manner so as to form the desirell design inside of the space formed by the frame, preferably consisting of two halves, whereby the tiles may be tightly pressed and securely locked to each other.
  • the rIhe frame with its tilings, is then placed on a solid support, and it is preferred that the under side of the tiles should be liush with the under side of the frame, so that both shall firmly rest on said support; but the upper sides of the tiles should extend somewhat above the frame.
  • the metallic sheet is then placed on the upper sides of the tiles(which upper side afterward forms the under side when laid on the floor) and is secured to the tiles either with the aid of pegs or nails or with the aid of the integral projecting' prongs 7).
  • the nails or prongs shall be driven into the tiles at one and the same time, and this operation is preferably performed in the following' manner:
  • the frame with its assembled tiles and the metallic sheet placed on the upper side of said tiles in its proper position, is subjected in a power-press to enough pressure so as to drive the nails or prongs into the bodies of the tiles, thereby securely uniting one tile to the other.
  • the sheet of metal should not only cover all the assembled tiles, but should project on each side half the width of a tile, for the purpose as will hereinafter be more clearly explained.
  • cach section should be about one foot square; but it is obvious that the size of these sections may vary to suit requirements.
  • the following fmorZ/zs operen/Zr' is preferred:
  • the different sections are placed adjacent to each other in a manner so that the projectiilg ends of the different metallic sheets underlying' the different sections are in close contact with each other. and as on each section the metallic plate extends the width of half a tile it is obvious that the space covered by the free part of the metal plates of two adjoining ⁇ sections is equal to the width of one tile. To join, therefore, these two sections securely to each other, it is only necessary to cover the free space lengthwise with a series of individual tiles and drive the same so that the prongs or projections of the metallic plate are forced into the body ofthetile.
  • the method of covering floors, walls e., which consists in first uniting a series of individual tiles into one section, providing the under surface of said tiles with a continuous The continuousv metallic sheet, securing ⁇ each of said individual tiles with the aid of fasteners to said metallic sheet in a manner so that part of said metallic sheet remains 'free on each side of said section, covering the floor with a series of said sections, and uniting the different sections to each other through individual tiles secured with the aid of fasteners to thc adjoining free sides of the adjacent metallic plates.
  • a covering for floors, walls, &c. consisting of a series of sections, each section consisting' of a series of individual tiles, forming a geometrical design or figure, secured to each other and to a continuous metallic plate with the aid of fasteners, each section securely fastened to the adjacent section through tiles overbridging two adjacent metallic plates.
  • a covering for floors, walls, &c. consisting of individual and independent sections, each of said sections consisting of a continuous metallic plate and a series of individual tiles forming a geometrical design secured to said plate with the aid of fasteners so as to form one mechanical unit with each other and with said plate, the different metallic plates secured to each other with the aid of additional tiles fastened each to the ends of two adjoining plates.
  • a tiling or flooring consisting of aseries of metallic sheets joined together with the aid of tiles, each of said sheets provided with fasteners and a series of tiles forming a geometrical figure secured thereto with the aid of said fasteners.

Description

PATENTED 00T. 2, N05.
I. KITSLL.
TILL FLOOR, WALL, sw.
APPLICATION FILED MARA, 1904.
-Z SHEETS-SHEET l.
010.000,055. 'PATBNTED 00T. s, 1905. I. KITSBB.
TILE FLOOR, WALL, &o. APPLICATION FILED IIAR.4,1904.
2 SHEETS-SHEET 2.
)l/22606666." 5206125011: 5M @d www? f ISIDOR KITSEE, OF PHILADELPHIA, PENNSYLVANIA.
TILE FLOOR, WALL, &o.
Specification of Letters Patent,
Patented oet. 3, 1905.
Application find March 4, 1904. senti No. 196,549.
To rl/H whom, f1? n1/foy con/cern:
Be it known that I, lsrDo1 .I{iTsn11,of the city and county of Pl'iiladelphia, State of Pennsylvania, have invented certain new and useful Improvements in Tile Floors, IVallS, Sac., (Case No. 175,) of which the following is a specilication.
My invention relates to an improvement in tile iioors, walls, Sac.
The object of my invention is to provide means whereby a series of individual tiles are securely held together and whereby the laying' of said individual tiles is accomplished in a manner more elcient than is to-day practiced.
To this end my invention consists in the features and arrangements, as will hereinafter be described in this specification, illustrated in the accompanying drawings, and more particularly pointed out in the claims following the specification.
In the drawings, Figure lisa plan View of the covering' of a floor, showing the method of laying said covering' in sections,portions of the tiles being removed to show the manner of joining' the sections out of which said covering consists. Fig. 2 is an end view of Fig. 1. Fig' 3 is a perspective view of a tile used in forming the design of one of the sections. Fig'. et `is a corner of the metal backing' in perspective, showing the means of securing the tile to same. Fig 5 is a plan View showing' the method of assembling' the tiles in a geometrical pattern or design to form one section. Fig. 6 is a section through Fig. illustrating' the method of applying the metal backing. Fig. 7 is a plan view of a metal backing' in modified form, partially broken away. Fig. 8 is an end view of Fig'. 7.
I will first describe the method of producing' the separate sections out of which the entire floor-covering consists. This method is clearly illustrated in Fig. 5 and Fig. 6, in which figures A is the design as an entirety, consisting' of the single tiles t and d, respectively. C and C are two parts of a frame in the inner space of which the individual tiles are assembled. D represents the means, here shown in the form of screws, for the purpose of tightening together the two parts of the frame, thereby compressing theindividual tiles and holding' the same securely in place. B is the metallic backing, provided with the prongs L, having the barbed ends The modus oper/mdf of practicing this my invention is as follows: A series of metallic plates, preferably sheets of steel of about twelve to fifteen one-thousandths of an inch in thickness and of the desired size, are prepared either by punching' holes at predetermined places, as illustrated in Fig'. 7, or by stamping out at predetermined places barbed prongs or projections, as illustrated in Fig'. 4. A series of individual tiles are then assembled or arranged in a manner so as to form the desirell design inside of the space formed by the frame, preferably consisting of two halves, whereby the tiles may be tightly pressed and securely locked to each other. rIhe frame, with its tilings, is then placed on a solid support, and it is preferred that the under side of the tiles should be liush with the under side of the frame, so that both shall firmly rest on said support; but the upper sides of the tiles should extend somewhat above the frame. The metallic sheet is then placed on the upper sides of the tiles(which upper side afterward forms the under side when laid on the floor) and is secured to the tiles either with the aid of pegs or nails or with the aid of the integral projecting' prongs 7). It is preferred that the nails or prongs shall be driven into the tiles at one and the same time, and this operation is preferably performed in the following' manner: The frame with its assembled tiles and the metallic sheet placed on the upper side of said tiles in its proper position, is subjected in a power-press to enough pressure so as to drive the nails or prongs into the bodies of the tiles, thereby securely uniting one tile to the other. The sheet of metal should not only cover all the assembled tiles, but should project on each side half the width of a tile, for the purpose as will hereinafter be more clearly explained.
I call a series of tiles assembled as stated and secured to each other with the aid of one continuous sheet of metal a section 'here. therefore, in this specification or`in the claims following this specification I make use of the word section or sectional I understand under same a series of individual tiles securely fastened to each other and to a continuous metallic sheet with the aid of fasteners, thereby forming a mechanical unit of the desired dimension.
In practice it is preferred that cach section should be about one foot square; but it is obvious that the size of these sections may vary to suit requirements.
The assembling of a series of tilesa design, so to speak-into one mechanical unit and the securing together of the tiles with a IOO IIO
continuous piece of metal can be performed by skilled hands in the place where such tiles are manufactured or sold, and the securing together of individual tiles, therefore, need not be placed in the hands of the unskilled labor usually employed in laying fioorings. This is found in practice of great advantage, and vpersons versed in the art will readily understand that the shipping of sections and the handling of same at places of destination are not accompanied with the disadvantages that a series of small individual tiles and a series of fasteners and the necessity of assembling' the same in designs at the place of destination entails. After a. series of such sections as above described are provided they are laid on the fioor to be covered with the metallic plate resting directly on the floor. The part of the tile, therefore, which while assembling into one section was designated as the under side now becomes the upper side or surface of the floor-covering.
To cover the whole space of a iioor, the following fmorZ/zs operen/Zr' is preferred: The different sections are placed adjacent to each other in a manner so that the projectiilg ends of the different metallic sheets underlying' the different sections are in close contact with each other. and as on each section the metallic plate extends the width of half a tile it is obvious that the space covered by the free part of the metal plates of two adjoining` sections is equal to the width of one tile. To join, therefore, these two sections securely to each other, it is only necessary to cover the free space lengthwise with a series of individual tiles and drive the same so that the prongs or projections of the metallic plate are forced into the body ofthetile. In Fig. l these eonnecting-tiles are designated by the letter A. In this manner the whole covering of the ioor, no matter of what dimensions, will then consist of practically one unit, and the tiles, specially if the same are of rubber, do not, as is now the case, touch the floor proper-a great advantage when it is taken into consideration that in many of the new buildings the laying of rubber tiling is prohibited for the reason that, according to the architects, the sulfur in the rubber slowly deteriorates the wood of the floor proper. sheet of metal also acts in case of conflagration to a great extent as a shield to prevent the spread of the liames.
It is obvious that should the floor not be of equal dimensions one or more sections may be cut into the desired shape and of the desired dimensions to suit requirements.
Having now described my invention, what I claim as new, and desire to secure by Letters Patent, is
l. The method of covering floors, walls, e., which consists in first uniting a series of individual tiles into one section, providing the under surface of said tiles with a continuous The continuousv metallic sheet, securing` each of said individual tiles with the aid of fasteners to said metallic sheet in a manner so that part of said metallic sheet remains 'free on each side of said section, covering the floor with a series of said sections, and uniting the different sections to each other through individual tiles secured with the aid of fasteners to thc adjoining free sides of the adjacent metallic plates.
2. The method of coveringfloors, walls, Snc., which consists in causing to be driven through pressure into the bodies of a series of separate and independent tiles so as to form a section," a series of prongs or fasteners integral to one continuous sheet of metal, thereby forming one mechanical unit constituting one independent section, in causing the floor to be covered with a series of said sections, and causing all of said sections to be united through tiles fastened to the adjacent ends of two metallic supports.
3. The method of covering floors, walls, Sac., which consists in causing to be united a series of individual tiles 'forming a design into one mechanical unit, with the aid of one continuous sheet of metal provided with fasteners in a manner so as to leave part of said sheet free at each side of said unit, causing a floor to be covered with a series of said mechanical units secured to their metallic plates and causing the adjacent mechanical units to be united toV4 gether with the aid of additional tiles, secured to the free parts of the metallic plates.
4. A covering for floors, walls, &c., consisting of a series of sections, each section consisting' of a series of individual tiles, forming a geometrical design or figure, secured to each other and to a continuous metallic plate with the aid of fasteners, each section securely fastened to the adjacent section through tiles overbridging two adjacent metallic plates.
5. A covering for floors, walls, &c., consisting of individual and independent sections, each of said sections consisting of a continuous metallic plate and a series of individual tiles forming a geometrical design secured to said plate with the aid of fasteners so as to form one mechanical unit with each other and with said plate, the different metallic plates secured to each other with the aid of additional tiles fastened each to the ends of two adjoining plates.
6. A tiling or flooring consisting of aseries of metallic sheets joined together with the aid of tiles, each of said sheets provided with fasteners and a series of tiles forming a geometrical figure secured thereto with the aid of said fasteners.
In testimony whereof I hereby sign my name, in the presence of two subscribing witncsses, this 1st day of March, A. D. 190e.
ISIDOR KITSEE.
l'itnesses:
EDITH R. STILLEY, Jaune B. HoBuNsAoK..
US19654904A 1904-03-04 1904-03-04 Tile floor, wall, &c. Expired - Lifetime US800655A (en)

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Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2807057A (en) * 1955-05-25 1957-09-24 Sectional Flooring Corp Flooring
WO1985000397A1 (en) * 1983-07-06 1985-01-31 Insulhold, Inc. System for supporting and retaining insulation
US4512130A (en) * 1982-03-22 1985-04-23 Pepin Jean P Insulation support
US4606156A (en) * 1983-08-04 1986-08-19 C-Tec, Inc. Access flooring panel
WO1987002088A1 (en) * 1985-09-30 1987-04-09 Porter William H Brick support structure
US4947600A (en) * 1989-05-22 1990-08-14 Porter William H Brick wall covering
US5125204A (en) * 1990-05-14 1992-06-30 Porter William H Snap-in panel mounting arrangement
US6122890A (en) * 1995-08-15 2000-09-26 Cairn Holdings (Uk) Limited Tiles and floor surfaces
US20040144051A1 (en) * 1999-11-05 2004-07-29 Garcia Eugenio Cruz Direct laminated floor
US7350337B1 (en) * 2004-03-29 2008-04-01 Orosz Gabor W Tile protector platform
US8099919B2 (en) 2002-05-03 2012-01-24 Faus Group Flooring system having microbevels
US8112958B2 (en) 2002-05-03 2012-02-14 Faus Group Flooring system having complementary sub-panels
US8181407B2 (en) 2002-05-03 2012-05-22 Faus Group Flooring system having sub-panels
US8201377B2 (en) 2004-11-05 2012-06-19 Faus Group, Inc. Flooring system having multiple alignment points
US8209928B2 (en) 1999-12-13 2012-07-03 Faus Group Embossed-in-registration flooring system
US8448400B2 (en) 2002-05-03 2013-05-28 Faus Group Flooring system having complementary sub-panels
US9512621B1 (en) * 2015-07-02 2016-12-06 Ronald Trezza Structure connection system
US11060278B2 (en) * 2019-02-07 2021-07-13 Kenneth Huber Precursors for impaling clips and impaling clips formed therefrom for mounting acoustic panels onto structural components

Cited By (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2807057A (en) * 1955-05-25 1957-09-24 Sectional Flooring Corp Flooring
US4512130A (en) * 1982-03-22 1985-04-23 Pepin Jean P Insulation support
WO1985000397A1 (en) * 1983-07-06 1985-01-31 Insulhold, Inc. System for supporting and retaining insulation
US4606156A (en) * 1983-08-04 1986-08-19 C-Tec, Inc. Access flooring panel
WO1987002088A1 (en) * 1985-09-30 1987-04-09 Porter William H Brick support structure
US4662140A (en) * 1985-09-30 1987-05-05 Ronald B. Losse Brick support structure
US4947600A (en) * 1989-05-22 1990-08-14 Porter William H Brick wall covering
US5125204A (en) * 1990-05-14 1992-06-30 Porter William H Snap-in panel mounting arrangement
US6122890A (en) * 1995-08-15 2000-09-26 Cairn Holdings (Uk) Limited Tiles and floor surfaces
US20040144051A1 (en) * 1999-11-05 2004-07-29 Garcia Eugenio Cruz Direct laminated floor
US8875460B2 (en) 1999-11-05 2014-11-04 Faus Group, Inc. Direct laminated floor
US8209928B2 (en) 1999-12-13 2012-07-03 Faus Group Embossed-in-registration flooring system
US8112958B2 (en) 2002-05-03 2012-02-14 Faus Group Flooring system having complementary sub-panels
US8181407B2 (en) 2002-05-03 2012-05-22 Faus Group Flooring system having sub-panels
US8099919B2 (en) 2002-05-03 2012-01-24 Faus Group Flooring system having microbevels
US8448400B2 (en) 2002-05-03 2013-05-28 Faus Group Flooring system having complementary sub-panels
US7350337B1 (en) * 2004-03-29 2008-04-01 Orosz Gabor W Tile protector platform
US8201377B2 (en) 2004-11-05 2012-06-19 Faus Group, Inc. Flooring system having multiple alignment points
US9512621B1 (en) * 2015-07-02 2016-12-06 Ronald Trezza Structure connection system
US11060278B2 (en) * 2019-02-07 2021-07-13 Kenneth Huber Precursors for impaling clips and impaling clips formed therefrom for mounting acoustic panels onto structural components
US11585085B2 (en) 2019-02-07 2023-02-21 Kenneth Huber Precursors for impaling clips and impaling clips formed therefrom for mounting acoustic panels onto structural components
US11891797B2 (en) 2019-02-07 2024-02-06 Kenneth Huber Precursors for impaling clips and impaling clips formed therefrom for mounting acoustic panels onto structural components

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