US574434A - keithley - Google Patents

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US574434A
US574434A US574434DA US574434A US 574434 A US574434 A US 574434A US 574434D A US574434D A US 574434DA US 574434 A US574434 A US 574434A
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beams
girders
construction
floor
building
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/18Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons
    • E04B1/24Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons the supporting parts consisting of metal

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  • My invention relates to an improved construction for buildings; and the especial object of my invention is to provide a strong, efficient. and economical construction for comparatively low buildings.
  • Figure 1 is a perspective view, partially broken away, illustrating a building constructed according to my invention.
  • Fig. 2 is a detail view illustrating a modified form; and
  • Fig. 3 is a view similar to Fig. 1, illustrating the way a fireproof building may be constructed according to my invention.
  • a building constructed according to my present invention comprises hollow masonry walls and an iron or steel supporting-frame located within and inclosed by said hollow masonry walls, to which frame the horizontal floor girders or beams are secured.
  • the masonry walls are formed by inner and outer layers of bricks, which are bonded or tied together by headercourses formed of tying-bricks, so that a space is left between the inner and outer layers of the wall, in which space vertical supporting-beams are arranged, and to which beams the floor beams or girders for the successive floors are preferably connected or fas tened.
  • I may further support the floor beams or girders on the inner part of the masonry walls, and although this arrangement is preferably used it is not necessarily used in all buildings constructed according to my invention.
  • A designates a foundation which may be of any of the ordinary constructions.
  • a masonry wall B Built on the foundation A is a masonry wall B;
  • the Wall E comprises'an outer layer 10 and an inner layer 11 of brick. These layers or facings 8o 10 and 11 are bonded together by means of header-courses 12.
  • the bricks employed in the header-courses are preferably of extra or special length, so as to leave a space between the inner and outer layers.
  • the beams or girders for supporting the successive stories may be made of iron, steel, or wood, and, as illustrated, the same are connected to the vertical beams 13 by means of clamping-plates, as 17.
  • the floor beams or joists above the first floor may rest on the inner face of the masonry wall, if desired, to have an additional support thereby, although this feature is not necessary to the broad scope of my invention.
  • Fig. 1 I have illustrated a building construction in which the ordinary I or building beams are employed to form the vertical beams, which are inclosed. between the inner and outer layers 10 and 11.
  • I may use the ordinary T or railroad rails for this purpose. IVhen the tread or upper part of an ordinary track-rail has been slightly worn off, the rail is consideredas worn out and unlit for railroad purposes.
  • These second-hand rails can be purchased very cheaply on the market, and much more cheaply than the ordinary I-beams, and are equally applicable to building constructions of myinvention.
  • These discarded railroad-rails may be used either in the form in which they can be purchased on the market or can be rerolled to have a uniform or desired cross-section.
  • Fig. 2 I have illustrated a construction in which the vertical beams are inclosed or coated, so as to protect them from the atmosphere and prevent them from rusting.
  • the 'ailway-track rails 130 are placed between the layers 10 and 11 of the wall B in a manner similar to that described with reference to Fig. 1.
  • they may be inclosed or coated, so as to be protected from the atmosphere.
  • Vertical planks or boards 18 and 19 are arranged one on each side of each beam 130, and a filling of concrete 20 is employed to fill the space between the boards 18 and 19.
  • Fig. 3 I have shown a view similar to Fig. 1, except that all the floor girders or joists are made out of steel beams, as 2t 24., and are secured to the vertical beams 13 by means of clamping-plates 21, and between the floor beams or girders, the ordinary terracotta fireproof flooring is laid, as indicated at 23.
  • this construction 1 can economically construct a fireproof building which shall have all the advantages before described and shall be of low cost, as before specified.
  • a building constructed according to my invention possesses not only the advantages of great strength and economy in erection, but also that the Walls will present a smooth and uniform surface, which can'be very readily finished in the ordinary manner.
  • a masonry wall comprising inner and outer layers, a steel or iron frame located between said inner and outer layers, and floor beams or girders connected to the said frame, substantially as described.
  • a masonry wall comprising inner and outer layers, vertical beams located in the space between said layers, floor beams or girders for the various floors, and means for connecting said beams or girders to the vertical beams, substantially as described.
  • a masonry wall comprising inner and outer layers, headers or bricks for bonding said layers together, vertical beamslocated in the space between said layers, beams or girders for the various floors, and means for fastening said floor beams or girders to the vertical beams, substantially as described.
  • a masonry wall comprising inner and outer layers, a steel or iron frame located between said inner and outer layers, and floor beams or girders connected to the said frame, and resting on the inner layer of said masonry wall, substantially as described.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)

Description

2 sheets-$119815 1.
H. R. KEITHLEY BUILDING CONSTRUCTION.
No. 574,434. v Patented Jan. 5, 1897'.
ub Model.) 1 2 Sheets-Sheet 2.
H. R. KEITHLEY.
BUILDING CONSTRUCTION. v No. 574,434. Patented Jam 5, 1897.
I Witnesses.
UNITED STATES PATENT OFFICE.
HERBERT R. KEITHLEY, OF NEXV YORK, N. Y.
BUILDING CONSTRUCTION.
SPECIFICATION forming part of Letters Patent N 0. 574,434, dated January 5, 1897.
Application filed June 29,1896. Serial No. 597,296. (No model.)
T0 to whom it nut u concern: 7
Be it known that I, HERBERT R. KEITHLEY, a citizen of the United States, residing at New York, in the county of New York and State of New York, have invented a new and useful'lmprovement in Building Construction, of which the following is-a specification.
My invention relates to an improved construction for buildings; and the especial object of my invention is to provide a strong, efficient. and economical construction for comparatively low buildings.
To these ends my invention consists of the parts and combinations of parts, as herein described, and more particularly pointed out in the claims at the end of this specification.
In the accompanying two sheets of drawings, Figure 1 is a perspective view, partially broken away, illustrating a building constructed according to my invention. Fig. 2 is a detail view illustrating a modified form; and Fig. 3 is a view similar to Fig. 1, illustrating the way a fireproof building may be constructed according to my invention.
A building constructed according to my present invention comprises hollow masonry walls and an iron or steel supporting-frame located within and inclosed by said hollow masonry walls, to which frame the horizontal floor girders or beams are secured.
In practice preferably the masonry walls are formed by inner and outer layers of bricks, which are bonded or tied together by headercourses formed of tying-bricks, so that a space is left between the inner and outer layers of the wall, in which space vertical supporting-beams are arranged, and to which beams the floor beams or girders for the successive floors are preferably connected or fas tened. I may further support the floor beams or girders on the inner part of the masonry walls, and although this arrangement is preferably used it is not necessarily used in all buildings constructed according to my invention. By means of this construction it will be seen that the iron or steel frame or vertical beams will greatly reinforce and strengthen the masonry walls and that the floor beams or girders for the separate floors will perform the additional function of strongly bracing the structure. It also will be seen that my construction will not increase the space taken up by the walls and floors also by mounting the vertical supporting-beams upon a suitable foundation they will act to help support the structure.
7 By making the floor beams or girders of steel and placing them about six feet apart an d by using between them the ordinary terracotta fireproofing I can construct a fireproof building.
By making the wall hollow and inserting the steel supporting-frame therein about onethird of the brick in each wall is saved. This saving, together with the cost of wooden floorjoists, will about pay for the entire cost of the steel frame.
The cost of the pine flooring laid on theterra-cotta fireproofing remaining about the same, a fireproof building of this hollow-wall 7o construction can be built for about the only extra cost of the fireproof terra-cotta flooring, as the steel framing is paid for in the saving of brick and wood floor-joists.
Referring to the drawings and in detail, A designates a foundation which may be of any of the ordinary constructions. Built on the foundation A is a masonry wall B; The Wall E comprises'an outer layer 10 and an inner layer 11 of brick. These layers or facings 8o 10 and 11 are bonded together by means of header-courses 12. The bricks employed in the header-courses are preferably of extra or special length, so as to leave a space between the inner and outer layers. v
In practice I have employed bonding or tying bricks of such a length that substantially a five-inch space will be left between the inner and the outer layers of the wall. Located in the space between the outer layers 10 and the inner layers 11 are vertical beams 13, which vertical beams may be braced together or not laterally, as desired. At their lower ends the vertical beams 13 may be anchored or secured in any desired manner. As illus- 9 5 trated in Fig. 1, the beams 13 are connected at their lower ends to the floor beams or girders 14 for the first floor by means of clamping-plates, as 15. By this construction the vertical beams will act as supporting-beams to help sustain the weight of the building.
The beams or girders for supporting the successive stories may be made of iron, steel, or wood, and, as illustrated, the same are connected to the vertical beams 13 by means of clamping-plates, as 17.
The floor beams or joists above the first floor may rest on the inner face of the masonry wall, if desired, to have an additional support thereby, although this feature is not necessary to the broad scope of my invention. By adopting this construction the floor beams or girders for the successive floors'will form ties for connecting the outer walls of the building.
A common cause for the collapse of buildings has heretofore arisen from the fact that the girders or beams for the successive floors are ordinarily simply embedded or placed in sockets formed in the masonry of the outer walls. here this construction is used, there is nothing to prevent the outer walls from springing or warping, and when this happens the floor-beams will be drawn out of their sockets, causing the structure to collapse.
By fastening the ends of the floor beams or girders for the successive floors to vertical beams which are inclosed within the outer wall it will be seen that not only will the ertical beams strengthen and reinforce the outer walls, but the entire structure will be so firmly tied together that the outer walls can not spring or warp.
In Fig. 1 I have illustrated a building construction in which the ordinary I or building beams are employed to form the vertical beams, which are inclosed. between the inner and outer layers 10 and 11. In practice I may use the ordinary T or railroad rails for this purpose. IVhen the tread or upper part of an ordinary track-rail has been slightly worn off, the rail is consideredas worn out and unlit for railroad purposes. These second-hand rails can be purchased very cheaply on the market, and much more cheaply than the ordinary I-beams, and are equally applicable to building constructions of myinvention. These discarded railroad-rails may be used either in the form in which they can be purchased on the market or can be rerolled to have a uniform or desired cross-section.
In Fig. 2 I have illustrated a construction in which the vertical beams are inclosed or coated, so as to protect them from the atmosphere and prevent them from rusting. Referring to this figure, it will be seen that the 'ailway-track rails 130 are placed between the layers 10 and 11 of the wall B in a manner similar to that described with reference to Fig. 1. In order to prevent the beams 130 from rusting, they may be inclosed or coated, so as to be protected from the atmosphere. As illustrated, Vertical planks or boards 18 and 19 are arranged one on each side of each beam 130, and a filling of concrete 20 is employed to fill the space between the boards 18 and 19. By means of this construction it will be seen that the beams 130 will be fully protected from the atmosphere or moisture and will be prevented from rusting.
In Fig. 3 I have shown a view similar to Fig. 1, except that all the floor girders or joists are made out of steel beams, as 2t 24., and are secured to the vertical beams 13 by means of clamping-plates 21, and between the floor beams or girders, the ordinary terracotta fireproof flooring is laid, as indicated at 23. By this construction 1 can economically construct a fireproof building which shall have all the advantages before described and shall be of low cost, as before specified.
It will be seen that a building constructed according to my invention possesses not only the advantages of great strength and economy in erection, but also that the Walls will present a smooth and uniform surface, which can'be very readily finished in the ordinary manner.
I am aware that changes may be made in building constructions by those who are skilled in the art without departing from the scope of my invention as expressed in the claims. I do not wish, therefore, to be limited to the forms which I have herein shown and described; but
What I do claim, and desire to secure by Letters Patent, is-- 1. In a building construction, the combination of a hollow masonry wall, an iron or steel supporting-framework located Within and inclosed by said wall, and horizontal floor beams or girders secured to said vertical frame, substantially as described.
2. In a building construction, the combination of a masonry wall comprising inner and outer layers, a steel or iron frame located between said inner and outer layers, and floor beams or girders connected to the said frame, substantially as described.
3. In abuilding construction, the combination of a masonry wall comprising inner and outer layers, vertical beams located in the space between said layers, floor beams or girders for the various floors, and means for connecting said beams or girders to the vertical beams, substantially as described.
4. In a building construction, the combination of a masonry wall comprising inner and outer layers, headers or bricks for bonding said layers together, vertical beamslocated in the space between said layers, beams or girders for the various floors, and means for fastening said floor beams or girders to the vertical beams, substantially as described.
5. In a buildingconstruction, the combination of a masonry wall, comprising inner and outer layers, a steel or iron frame located between said inner and outer layers, and floor beams or girders connected to the said frame, and resting on the inner layer of said masonry wall, substantially as described.
6. In a building construction, the combination of a masonry wall comprising inner and outer layers, Vertical beams located in the 8. In a building construction the combination of a masonry Wall comprising inner and outer layers, Vertical beams located in the space between said layers, floor beams or girders connected to said vertical beams, and a fireproof flooring carried by said floor beams or girders, substantially as described.
In testimony whereof I have hereunto set my hand in the presence of two subscribing Witnesses.
HERBERT R. KEITI-ILEY.
Witnesses: 1
MURRAY OORRINGTON, MAUOE. SPILLANE.
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Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4151694A (en) * 1977-06-22 1979-05-01 Roll Form Products, Inc. Floor system
WO1996018774A1 (en) * 1994-12-13 1996-06-20 Houghton David L Steel moment resisting frame beam-to-column connections
US5617694A (en) * 1994-04-27 1997-04-08 Kabushiki Kaisha Kenchiku Shiryo Kenkyusha Beam or girder joint element
US5660017A (en) * 1994-12-13 1997-08-26 Houghton; David L. Steel moment resisting frame beam-to-column connections
US6138427A (en) * 1998-08-28 2000-10-31 Houghton; David L. Moment resisting, beam-to-column connection
US6516583B1 (en) * 1999-03-26 2003-02-11 David L. Houghton Gusset plate connections for structural braced systems
US6591573B2 (en) 2001-07-12 2003-07-15 David L. Houghton Gusset plates connection of beam to column
US20040025458A1 (en) * 2002-05-01 2004-02-12 Nam Byung Hee Set structure for wooden building
US20080022623A1 (en) * 2006-07-28 2008-01-31 Paul Brienen Coupling beam and method of use in building construction
US20100043348A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Building metal frame, and method of making, and components therefor including column assemblies and full-length beam assemblies
US20100043338A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Building metal frame, and method of making, and components therefor including column assemblies and full-length beam assemblies
US20100043347A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Building metal frame, and method of making, and components therefor including column assemblies and full-length bean assemblies
US20100043316A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Steel-frame building and method of making
US20110030305A1 (en) * 2008-08-21 2011-02-10 Mitek Holdings, Inc. Building Structure, Method of Making, and Components
US20150052839A1 (en) * 1998-10-19 2015-02-26 International Steel Corporation Bracket for concrete forms

Cited By (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4151694A (en) * 1977-06-22 1979-05-01 Roll Form Products, Inc. Floor system
US5617694A (en) * 1994-04-27 1997-04-08 Kabushiki Kaisha Kenchiku Shiryo Kenkyusha Beam or girder joint element
WO1996018774A1 (en) * 1994-12-13 1996-06-20 Houghton David L Steel moment resisting frame beam-to-column connections
US5660017A (en) * 1994-12-13 1997-08-26 Houghton; David L. Steel moment resisting frame beam-to-column connections
US6138427A (en) * 1998-08-28 2000-10-31 Houghton; David L. Moment resisting, beam-to-column connection
US9038338B2 (en) * 1998-10-19 2015-05-26 Bailey Metal Products Limited Insulated concrete form wall having a bracket attaching a rim joist thereto
US20150052839A1 (en) * 1998-10-19 2015-02-26 International Steel Corporation Bracket for concrete forms
US6516583B1 (en) * 1999-03-26 2003-02-11 David L. Houghton Gusset plate connections for structural braced systems
US6591573B2 (en) 2001-07-12 2003-07-15 David L. Houghton Gusset plates connection of beam to column
US20040025458A1 (en) * 2002-05-01 2004-02-12 Nam Byung Hee Set structure for wooden building
US7934347B2 (en) * 2006-07-28 2011-05-03 Paul Brienen Coupling beam and method of use in building construction
US20080022623A1 (en) * 2006-07-28 2008-01-31 Paul Brienen Coupling beam and method of use in building construction
US20100043338A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Building metal frame, and method of making, and components therefor including column assemblies and full-length beam assemblies
US20110030305A1 (en) * 2008-08-21 2011-02-10 Mitek Holdings, Inc. Building Structure, Method of Making, and Components
US20100043316A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Steel-frame building and method of making
US8122671B2 (en) * 2008-08-21 2012-02-28 Mitek Holdings, Inc. Steel-frame building and method of making
US8122672B2 (en) 2008-08-21 2012-02-28 Mitek Holdings, Inc. Building metal frame, and method of making, and components therefor including column assemblies and full-length beam assemblies
US8146322B2 (en) * 2008-08-21 2012-04-03 Mitek Holdings, Inc. Building structure, method of making, and components
US8176706B2 (en) 2008-08-21 2012-05-15 Mitek Holdings, Inc. Column assembly for a building framework
US8205408B2 (en) * 2008-08-21 2012-06-26 Mitek Holdings, Inc. Building metal frame, and method of making, and components therefor including column assemblies and full-length beam assemblies
US8635834B2 (en) 2008-08-21 2014-01-28 Mitek Holdings, Inc. Building metal frame, and method of making, and components therefor including column assemblies and full-length beam assemblies
US20100043347A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Building metal frame, and method of making, and components therefor including column assemblies and full-length bean assemblies
US20100043348A1 (en) * 2008-08-21 2010-02-25 Houghton & Myers Llc Building metal frame, and method of making, and components therefor including column assemblies and full-length beam assemblies

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