US2748592A - Building construction - Google Patents

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US2748592A
US2748592A US252159A US25215951A US2748592A US 2748592 A US2748592 A US 2748592A US 252159 A US252159 A US 252159A US 25215951 A US25215951 A US 25215951A US 2748592 A US2748592 A US 2748592A
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posts
boards
building
grooves
strips
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US252159A
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Kelly William
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/56Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members

Definitions

  • This invention relates .to building construction, and :pertains in particular to -an improved manner of forming rconcrete buildings.
  • object of this invention is :to provide -a -building composed of preformed concrete elements which may be readily assembled -at theconstruction site.
  • a further :object of this invention is to 1 provide a build- ;ing.in.whichithe-necessity-for a specially prepare'cl foundation is eliminated.
  • Still another object of .-this invention is to devise structural details enabling the speedy assemblage of .buildings made I of preformed "interfitting elements.
  • Figure 1 is a perspective view of the side of a completed building.
  • Figure 2 is an elevational view partly in section showing a portion of a building.
  • Figure 3 is a sectional view showing a manner of afiixing insulation and siding to the building.
  • Figure 4 is a fragmentary view in plan illustrating the manner of inserting concrete boards into posts forming a part of this invention.
  • Figure 5 is a fragmentary plan view of a modified form of my invention.
  • numeral indicates a building.
  • the building is formed of concrete boards 11, concrete posts 12, a beam 13 and a roof 14.
  • a base member 15 is formed along the ground surface; however, such a member is not necessary.
  • precast line posts 12 each has a shallow groove 16 and a deeper groove 17 formed on opposite sides thereof.
  • the corner posts 12a have their grooves 16a and 17a formed in adjacent sides.
  • the boards 11 have a groove 18 formed in the bottom thereof, and a tongue 19 on the upper surface. Both the tongue and groove run the full length of the boards.
  • holes suitably spaced apart are dug along the perimeter of the building and posts 12 are inserted in the holes.
  • the holes are dug to at least a depth suflicient to insure that the grooves or channels 16 and 17 will extend slightly below ground level if no base member 15 is to be used. If the base member is used the holes need not be so deep. In any event the holes are deep enough and the portion of the posts below the grooves are long enough to insure adequate strength after assemblage.
  • a post is placed in -:each .hole.
  • the posts are so positioned that grooves in the posts are aligned witheach other with ,the shallow .grooves 16facing the deeper grooves .17, as :shownin Figure 2.
  • Thespace between the shallow groove and.the.board is made water-tight by inserting a .plastic cement 21a .therein.
  • a cement 19a is also placedbetween the tongues and grooves of the boards, and cement can be placed below the bottom "board, if desired.
  • cement or mineral wool or some other suitable material could be used in all three instances.
  • the posts 12 have reinforcing elements 20 therein which extend upwardly and outwardly from the top.
  • the reinforced beam 13 is poured along the top of the structure.
  • the poured beam forms a continuous member which is intimately united to the upper boards and the top of the posts, thus forming a continuous bearing member for connecting a roof.
  • Bolts 21 are set into this beam, and are used to fasten the roof 14 to the side walls. Any desired roof such as a conventional hip or gable roof may be fastened to the beam.
  • the posts and boards may be of any suitable length and thickness. For small buildings 8 to 10' high 6" x 6" posts and boards 4' long by 1 /2" thick have been found satisfactory.
  • the boards may be reinforced with longitudinally extending rods such as two #9 wires, or heavier. For taller buildings heavier posts and boards may be used.
  • the boards may have holes 22 formed therein for use in securing insulation and/or siding in place.
  • the insulation and siding may be seecured by strips of wood or other material bolted or wired on by passing bolts or Wire through the holes 22.
  • insulation 23 is held in place by wooden strips 24, bolts 25 and nuts 26.
  • Wooden strips 27 fastened to the outer side of the boards are also shown. Strips 27 are used when shingles or siding are to be used. As shown, strips 27 run horizontally, being placed in this manner for retaining shingles. If siding is to be used the strips 27 are placed vertically.
  • the strips and insulation can be placed inside or outside the boards or on both sides.
  • the strips as shown are of a thickness to bring them flush with the posts. They may of course be thicker if desired. Any internal finishing surface can be used. Lath and plaster for instance, can be placed over the wood strips 24.
  • the posts 28 are wider than posts 12 and have two grooves in each side for receiving two sets of boards 29 and 30.
  • Insulation 31 may be placed between the 3 double walls. Wooden strips may be bolted or wired in place, as as in the previously described modification.
  • each post having at least one deep groove formed in one side thereof and having at least one shallower groove formed in another side thereof, said posts being so arranged that the shallower groove in each post faces the deep groove of the adjacent post, concrete boards inserted in said grooves and spanning the distance between posts, an expansion joint comprising mineral wool arranged in the space between said boards and said deep grooves in said posts, cement between the ends of said boards and said shallower grooves, said boards having a groove in the bottom surface thereof and a tongue on the upper surface thereof and cement between adjacent boards, said boards having spaced holes therein, bolts extending through said boards, insulating material on one side of said boards, strips extending between said posts on said one side of said boards and lying against said insulating material, strips for supporting shingles extending on the other side of said boards and lying thereagainst, said bolts s

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Forms Removed On Construction Sites Or Auxiliary Members Thereof (AREA)

Description

June 5, 1956 w. KELLY 2,748,592
BUILDING CONSTRUCTION Filed Oct. 19, 1951 INVENTOR VV/LL/AM A4514 y,
g v/uw ATTORNEYS United States Patent BUILDING CONSTRUCTION William Kelly,Grand Island, Nebr.
Application October 19, 1951, Serial No. 252,159
'IClaim. (CL 72-16) This invention relates .to building construction, and :pertains in particular to -an improved manner of forming rconcrete buildings.
object of this invention is :to provide -a -building composed of preformed concrete elements which may be readily assembled -at theconstruction site.
A further :object of this invention is to 1 provide a build- ;ing.in.whichithe-necessity-for a specially prepare'cl foundation is eliminated.
Still another object of .-this inventionis to devise structural details enabling the speedy assemblage of .buildings made I of preformed "interfitting elements.
It is also an "object of this invention to provide a cheaply constructed building which is nevertheless of adequate strength, and which has desirable ornamental Characteristics.
These and other objects and advantages will become apparent from the following description of the present invention illustrated in the accompanying drawings, in which:
Figure 1 is a perspective view of the side of a completed building.
Figure 2 is an elevational view partly in section showing a portion of a building.
Figure 3 is a sectional view showing a manner of afiixing insulation and siding to the building.
Figure 4 is a fragmentary view in plan illustrating the manner of inserting concrete boards into posts forming a part of this invention.
Figure 5 is a fragmentary plan view of a modified form of my invention.
Similar reference characters in the several figures represent similar parts.
In the preferred form of the invention, as illustrated in the drawing, numeral indicates a building. The building is formed of concrete boards 11, concrete posts 12, a beam 13 and a roof 14. As shown in Figure 1, a base member 15 is formed along the ground surface; however, such a member is not necessary.
As shown in Figures 2 and 4, precast line posts 12 each has a shallow groove 16 and a deeper groove 17 formed on opposite sides thereof. The corner posts 12a have their grooves 16a and 17a formed in adjacent sides. The boards 11 have a groove 18 formed in the bottom thereof, and a tongue 19 on the upper surface. Both the tongue and groove run the full length of the boards.
In constructing the building, holes suitably spaced apart are dug along the perimeter of the building and posts 12 are inserted in the holes. The holes are dug to at least a depth suflicient to insure that the grooves or channels 16 and 17 will extend slightly below ground level if no base member 15 is to be used. If the base member is used the holes need not be so deep. In any event the holes are deep enough and the portion of the posts below the grooves are long enough to insure adequate strength after assemblage.
Patented .J une15, 11956 .After the .holes are dug ,a postis placed in -:each .hole. The posts are so positioned that grooves in the posts are aligned witheach other with ,the shallow .grooves 16facing the deeper grooves .17, as :shownin Figure 2.
Next concrete grout 15a is placed .in the .holes and the posts are thus secured in position whentthe .grout sets. If desired, the :basemember .15.-is.also pouredand .allowed to set. After the grout has set sufficiently the .concrete .boards are connected to the .posts in the .following manner: Each board is first inserted into .the deep groove in a post with the groove 18 facing downwardly (see Figure 4) and the .board .is .then .swung in line with both grooves. Then the .one .end of .the board is moved outwardly of .the deep .groove in .the
p,ost vuntil .the other end of the board is .engagedin the opposing shallow groovein theadjacent post. Thespace between the .end of the board and the deep groove is .packed with mineral wool 18:: or other suitable material.to seal the void and act as an expansionjoint.
Thespace between the shallow groove and.the.board ,is made water-tight by inserting a .plastic cement 21a .therein. As the boards are .put in position a cement 19a is also placedbetween the tongues and grooves of the boards, and cement can be placed below the bottom "board, if desired. Of course, cement or mineral wool or some other suitable material could be used in all three instances.
The use of the alternate deep and shallow grooves in the posts and the above procedure makes it unnecessary to raise each board to the top of the posts and lower it into position.
The posts 12 have reinforcing elements 20 therein which extend upwardly and outwardly from the top. After the boards are in place the reinforced beam 13 is poured along the top of the structure. The poured beam forms a continuous member which is intimately united to the upper boards and the top of the posts, thus forming a continuous bearing member for connecting a roof. Bolts 21 are set into this beam, and are used to fasten the roof 14 to the side walls. Any desired roof such as a conventional hip or gable roof may be fastened to the beam.
The posts and boards may be of any suitable length and thickness. For small buildings 8 to 10' high 6" x 6" posts and boards 4' long by 1 /2" thick have been found satisfactory. The boards may be reinforced with longitudinally extending rods such as two #9 wires, or heavier. For taller buildings heavier posts and boards may be used.
As shown in Figs. 2 and 3, the boards may have holes 22 formed therein for use in securing insulation and/or siding in place. The insulation and siding may be seecured by strips of wood or other material bolted or wired on by passing bolts or Wire through the holes 22. As shown, insulation 23 is held in place by wooden strips 24, bolts 25 and nuts 26. Wooden strips 27 fastened to the outer side of the boards are also shown. Strips 27 are used when shingles or siding are to be used. As shown, strips 27 run horizontally, being placed in this manner for retaining shingles. If siding is to be used the strips 27 are placed vertically. The strips and insulation can be placed inside or outside the boards or on both sides. The strips as shown are of a thickness to bring them flush with the posts. They may of course be thicker if desired. Any internal finishing surface can be used. Lath and plaster for instance, can be placed over the wood strips 24.
In the modified form of my invention shown in Figure 5 the posts 28 are wider than posts 12 and have two grooves in each side for receiving two sets of boards 29 and 30. Insulation 31 may be placed between the 3 double walls. Wooden strips may be bolted or wired in place, as as in the previously described modification.
From the foregoing description it will be seen that I have devised a building which is made of inexpensive, preformed materials and which can be quickly and easily assembled. My building, in addition, has the advantage of being resistant to fire and insect damage. Other desirable features of my building are that it has great strength and that little or no repairs will be necessary to keep it in satisfactory condition.
While I have shown and described a preferred form of my invention, it will be understood that variations in details of form may be made without departure from the invention as defined in the appended claim.
I claim:
In a structure of the kind described comprising preformed concrete posts inserted into spaced holes in a ground surface, and concrete grout surrounding said posts in said holes, and maintaining said posts in upright position, the improvement comprising each post having at least one deep groove formed in one side thereof and having at least one shallower groove formed in another side thereof, said posts being so arranged that the shallower groove in each post faces the deep groove of the adjacent post, concrete boards inserted in said grooves and spanning the distance between posts, an expansion joint comprising mineral wool arranged in the space between said boards and said deep grooves in said posts, cement between the ends of said boards and said shallower grooves, said boards having a groove in the bottom surface thereof and a tongue on the upper surface thereof and cement between adjacent boards, said boards having spaced holes therein, bolts extending through said boards, insulating material on one side of said boards, strips extending between said posts on said one side of said boards and lying against said insulating material, strips for supporting shingles extending on the other side of said boards and lying thereagainst, said bolts securing said strips and insulating material to said boards and a beam formed along the upper end of said posts and the upper board members and being integral therewith.
References Cited in the file of this patent UNITED STATES PATENTS 1,057,674 Sauber et a1. Apr. 1, 1913 1,563,598 Wakeman Dec. 1, 1925 1,591,948 Adams July 13, 1926 1,661,128 Mankedick Feb. 28, 1928 2,008,775 Staman July 23, 1935 2,094,635 Brooks Oct. 5, 1937 2,102,443 Thorn Dec. 14, 1937 2,114,048 Davis Apr. 12, 1938 2,245,611 Schultz June 17, 1941 2,281,967 Zazvorka May 5, 1942 2,351,856 Henderson June 20, 1944 FOREIGN PATENTS 522,151 France of 1921 176,027 Great Britain of 1922
US252159A 1951-10-19 1951-10-19 Building construction Expired - Lifetime US2748592A (en)

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3133322A (en) * 1960-02-26 1964-05-19 David D Douglas Wall panels for prefabricated buildings and coupling joints and anchoring means therefor
US3140565A (en) * 1961-03-13 1964-07-14 Cold Spring Granite Company Wall construction
US3238682A (en) * 1963-12-23 1966-03-08 Misceramic Tile Inc Composite floor and process
US3299594A (en) * 1963-12-16 1967-01-24 Paul H Kellert Multi-walled structure and method of assembly
US3350826A (en) * 1966-07-28 1967-11-07 Monowall Corp Wall with a footing and method for constructing same
FR2695152A1 (en) * 1992-08-28 1994-03-04 Guibert Victor Assembly of construction elements - comprises blocks and junction posts having male/female coupling parts with concrete blocks being placed side by side or superposed to form construction walls and facades with openings
US5404685A (en) * 1992-08-31 1995-04-11 Collins; Dennis W. Polystyrene foamed plastic wall apparatus and method of construction
US20110023394A1 (en) * 2009-04-15 2011-02-03 Duratek Precast Technologies, Inc. Precast structure and method of construction
US7975439B1 (en) * 2006-06-23 2011-07-12 Cude Herman E Bulk storage building
US20180245340A1 (en) * 2015-09-09 2018-08-30 Università degli Studi "G. D'Annunzio" Chieti-Pescara Building system with a load-resisting frame made of reinforced concrete or steel integrated with wooden infill panels

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1057674A (en) * 1911-02-27 1913-04-01 Herbert W Sauber Method of constructing reinforced concrete structures.
FR522151A (en) * 1919-09-03 1921-07-27 Louis Genoni Economic construction in reinforced cement and plaster
GB176027A (en) * 1921-05-20 1922-03-09 Thomas Gibson Improvements in concrete or like building construction
US1563598A (en) * 1925-04-13 1925-12-01 Delbert G Wakeman Building construction
US1591948A (en) * 1925-01-26 1926-07-13 James F Adams Concrete-building system for dwellings
US1661128A (en) * 1925-10-12 1928-02-28 Elmer D Mankedick Wall construction
US2008775A (en) * 1932-11-29 1935-07-23 Llewellyn L Staman Building construction
US2094635A (en) * 1937-04-30 1937-10-05 Ludowici Celadon Company Insulating wall construction
US2102443A (en) * 1935-01-17 1937-12-14 Lawrence T Thorn Building construction
US2114048A (en) * 1933-05-10 1938-04-12 American Cyanamid & Chem Corp Precast slab with insulating insert
US2245611A (en) * 1938-05-07 1941-06-17 Frederick W Schultz Building construction
US2281967A (en) * 1939-09-01 1942-05-05 Joseph R Zazvorka Wall construction
US2351856A (en) * 1941-10-04 1944-06-20 William P Witherow Panel-wall building construction

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1057674A (en) * 1911-02-27 1913-04-01 Herbert W Sauber Method of constructing reinforced concrete structures.
FR522151A (en) * 1919-09-03 1921-07-27 Louis Genoni Economic construction in reinforced cement and plaster
GB176027A (en) * 1921-05-20 1922-03-09 Thomas Gibson Improvements in concrete or like building construction
US1591948A (en) * 1925-01-26 1926-07-13 James F Adams Concrete-building system for dwellings
US1563598A (en) * 1925-04-13 1925-12-01 Delbert G Wakeman Building construction
US1661128A (en) * 1925-10-12 1928-02-28 Elmer D Mankedick Wall construction
US2008775A (en) * 1932-11-29 1935-07-23 Llewellyn L Staman Building construction
US2114048A (en) * 1933-05-10 1938-04-12 American Cyanamid & Chem Corp Precast slab with insulating insert
US2102443A (en) * 1935-01-17 1937-12-14 Lawrence T Thorn Building construction
US2094635A (en) * 1937-04-30 1937-10-05 Ludowici Celadon Company Insulating wall construction
US2245611A (en) * 1938-05-07 1941-06-17 Frederick W Schultz Building construction
US2281967A (en) * 1939-09-01 1942-05-05 Joseph R Zazvorka Wall construction
US2351856A (en) * 1941-10-04 1944-06-20 William P Witherow Panel-wall building construction

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3133322A (en) * 1960-02-26 1964-05-19 David D Douglas Wall panels for prefabricated buildings and coupling joints and anchoring means therefor
US3140565A (en) * 1961-03-13 1964-07-14 Cold Spring Granite Company Wall construction
US3299594A (en) * 1963-12-16 1967-01-24 Paul H Kellert Multi-walled structure and method of assembly
US3238682A (en) * 1963-12-23 1966-03-08 Misceramic Tile Inc Composite floor and process
US3350826A (en) * 1966-07-28 1967-11-07 Monowall Corp Wall with a footing and method for constructing same
FR2695152A1 (en) * 1992-08-28 1994-03-04 Guibert Victor Assembly of construction elements - comprises blocks and junction posts having male/female coupling parts with concrete blocks being placed side by side or superposed to form construction walls and facades with openings
US5404685A (en) * 1992-08-31 1995-04-11 Collins; Dennis W. Polystyrene foamed plastic wall apparatus and method of construction
US7975439B1 (en) * 2006-06-23 2011-07-12 Cude Herman E Bulk storage building
US20110023394A1 (en) * 2009-04-15 2011-02-03 Duratek Precast Technologies, Inc. Precast structure and method of construction
US20180245340A1 (en) * 2015-09-09 2018-08-30 Università degli Studi "G. D'Annunzio" Chieti-Pescara Building system with a load-resisting frame made of reinforced concrete or steel integrated with wooden infill panels

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