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US3256670A - Prefabricated steel joist adapted for the reinforcement of floors - Google Patents

Prefabricated steel joist adapted for the reinforcement of floors
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US3256670A
US3256670AUS209510AUS20951062AUS3256670AUS 3256670 AUS3256670 AUS 3256670AUS 209510 AUS209510 AUS 209510AUS 20951062 AUS20951062 AUS 20951062AUS 3256670 AUS3256670 AUS 3256670A
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joist
reinforcement
floors
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joists
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Tersigni Ennio
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June 21, 1966 E. TERSIGNI 3,256,670
PREFABRICATED STEEL JOIST ADAPTED FOR THE REINFORCEMENT OFFLOORS 6 Sheets-Sheet 1 Filed July 15, 1962 INVENTOR MJJMM ATTORNEYS June 21, 1966 E. TERSIGNI 3,256,670
PREFABRICATED STEEL JOIST ADAPTED FOR THE REINFORCEMENT OF FLOORS Filed July 13, 1962 6 Sheets-Sheet 2 Y\ a 15 l INVENTOR BY wmwdw ATTORNEYS June 21, 1966 E. TERSIGNI 3,256,670
PREFABRICATED STEEL JOIST ADAPTED FOR THE REINFORCEMENT OF FLOORS Filed July 15, 1962 6 Sheets-Sheet 3 9W4 INVENTOR ATTORNEYS June 21, 1966 E. TERSIGNI 3,255,670
PREFABRIGATED STEEL JOIST ADAPTED FOR THE REINFORCEMENT 0F FLOORS Filed July 13, 1962 6 Sheets-Sheet 4 52 E e E 3 E"- "E a a E is E E N\ i E "-5 k INVENTOR ATTORNEY June 21, 1966 E. TERSIGNI 3,256,670
PREFABRICATED STEEL JOIST ADAPTED FOR THE REINFORCEMENT OF FLOORS Filed July 15, 1962 6 Sheets-Sheet 5 INVENTOR BY UJMWK-M,
ATTORNEYS June 21, 1966 TERs|GN| 3,256,670
PREFABRICATED STEEL JOIST ADAPTED FOR THE REINFORCEMENT OF FLOORS Filed July 13, 1962 6 Sheets-Sheet 6 Fly. [8 ii? INVENTOR BY MJLM MPM ATTORNEYS United States Patent 3,256,670 PREFABRICATED STEEL JOIST ADAPTED FOR THE REINFORCEMENT 0F FLOORS Ennio Tersigni, Via Salaria 330B, Rome, Italy Filed July 13, 1962, Ser. No. 209,510 Claims priority, application Italy, July 26, 1961, 13,507/ 61 1 Claim. (Cl. 52-634) The object of this invention is to provide girders made of steel sheets, for the reinforcement of building floors, suitable to be manufactured at low cost, in mass production to obtain uniformly sized elements adapted to be easily and quickly installed.
This invention provides a double tubular construction with a connection web, obtained from a steel sheet having a thickness from 1 mm. to 3 mm., by an automatically performed shaping process and having any desired length. The raw steel sheet can be previously punched in order to obtain a particular array of holes causing the metal joist to form, in reinforced concrete, an integral unit with the concrete mix which enters through said holes of both the punched tubular members forming the upper and lower wings, and of the web of the joists, so that these will :be entirely embedded within the concrete, particularly when vibration is used.
The particular profile of the joist allows it to be rigid even during the concrete casting and setting stages and to form a support for the casing made of a ribbed sheet for retaining the casting. The joists also form the skeleton and reinforcement of the floor structure.
Joists made of steel sheets for floor reinforcement can be utilized for the carrying structure of a building of reinforced concrete, or for buildings having bearing walls made of bricks or stones, by anchoring said joists to the reinforcing rods of the concrete in the first case or by arranging them within the connection seams in the second case.
The joists can also form the carrier units of the floor and relieve the stresses acting on cement pillars or on iron columns or on bearing walls.
This invention will be hereinafter described only by way of non-limitative example with reference to the attached drawings showing one preferred embodiment of the said invention.
In the drawings:
FIG. 1 is a cross-sectional view of the joist according to this invention;
FIG. 2 is a partial side elevation;
FIG. 3 is a bottom plan view;
FIG. 4 is a top plan view;
FIG. 5 is a perspective view;
FIG. 6 is a cross-sectional view of two coupled carrying joists, with a relief joist and associated connecting plates:
FIG. 7 is a top plan view corresponding to FIG. 6;
FIG. 8 shows the detail of the upper connecting plate, in top plan view;
FIG. 9 shows a cross-sectional View taken along the plane IXIX of FIG. 8;
FIG. 10 shows a cross-sectional view taken along the plane X-X of FIG. 8;
FIG. 11 shows the lower connecting plate, in bottom plan view;
FIG. 12 shows a cross-sectional View of FIG. 11 taken along the plane XIIXII of said figure;
FIG. 13 shows a cross-sectional view taken along the plane XIII-XIII of FIG. 11;
FIG. 14 shows a longitudinal section-a1 view of the plate of FIG. 11;
FIG. 15 shows the profile of a relief joist with a lower channel for a simple rest;
3,256,670 Patented June 21, 1966 FIG. 16 is a side elevational view;
FIG. 17 is a perspective view of the joist of FIG. 15;
FIG. 18 is a front elevational view of the relief joist with a reversed V plate;
FIG. 19 is a side view corresponding to that of FIG. 18;
FIG. 20 is a top plan view.
With reference to FIGS. 1 to 5, this invention provides a metal joist manufactured from steel sheet, sheared and bent by an industrial, continuous and automatic machining. The joist comprises a base or supportingportion 1 which is connected to theweb 2 by means of the twoinclined sides 3, and ends at its top with a tubular rib i, the top of which is provided with acontinuous ridge 5.
As shown in the FIGURES 3 and 4,holes 6 can be provided in the base plate, whileother holes 7 start from thesides 3, and pass through theweb 2 and thetubular upperrib 4, so as to obtain a light-weight shape without affecting its strength. As aforesaid, the joist is manufactured from a single steel sheet which is bent and welded along thejunction edge 8.
FIGURES 6 and 7 show two coupledjoists 22 in twin arrangement, connected to athird joist 21 arranged transversely to thejoists 22 to relieve the stresses acting thereon.
The connection of thejoist 22 with thetransverse joist 21 is obtained by anupper plate 9 and a lower plate It) which are shaped to engage both thejoists 22 andtransverse joist 21 so as to form a rigid unit thus avoiding punching, bolting or other connection devices requiring difficult operations.
The upper plate 9 (shown also in FIGURES 8 to 10) is provided with alongitudinal rib 11 resting on theridge 5 of the relief joist and with twoparallel ribs 12 which rest on the ridges of the two carrying joists located sideby-side. The connection of the upper joist portion is completed by folding theflange 13 against the associated side of therib 4 of the outer joist.
Thelower connecting plate 10 (shown also in FIGURES 11 to 14) consists of twostiffening ribs 14 provided under the flange of the relief joist, twoflanges 15 which are bent against the sides of said joist, and twocross-flanges 16 which are folded onto the outer sides of the two carrier joists located side-by-si-de, as shown in FIGURE 6. In FIGURES l5, l6 and 17 the joist rests on ametal support channel 17 to be used in case of simple support.
If the joist is to be connected to a support metal structure, as for instance a pillar or a girder of metal shape, a connecting plate It is provided having an inverted V shape and located transversely with respect to the head of the joist, saidplate 18 being provided with fasteningflanges 19 havingholes 20 for the direct fixing by means of bolts or any other equivalent means.
This invention has been disclosed in one preferred embodiment and it will be apparent that various changes might be made in the form, construction and arrangement of the parts without departing from the scope of the invention.
What is claimed is:
A joist structure for reinforcement of building floors in concrete mixes comprising in combination a pair of joists arranged side by side and having a hollow lower support portion having in cross section an isosceles triangle shape, the apex of said triangle being directed upwardly, a hollow upper portion having in cross section an isosceles triangle shape, the apex of said triangle being directed downwardly and the leg of said last named portion opposite said apex having a dihedral shape with its apex extending upwardly, a pair of contiguous webs connecting said port-ions to one another, one of said webs forming a unit with said portions and the other web comprising projections of both portions welded to one another, said webs and portions having holes for embedding the joist within the concrete, a third similar joist arranged perpendicularly to said pair of joists, an upper plate having a central longitudinal groove engaging the upper portion of said third joist and two cross grooves engaging the upper portions of said joist pair, a lower plate having two upwardly turned pliable flanges for engaging the lower portions of said joist pair and two upwardly turned rigid flanges engaging the lower portion of said third joist, said upper and lower plate rigidly connecting said joist to :form a unit.
References Cited by the Examiner UNITED STATES PATENTS FOREIGN PATENTS 5/1960 France.
OTHER REFERENCES 10 The Lewen System:page 14, copyright 1912.
FRANK L. ABBOTT, Primary Examiner.
HENRY C. SUTHERLAND, Examiner.
15 M. O. WARNECKE, Assistant Examiner.
US209510A1962-07-231962-07-13Prefabricated steel joist adapted for the reinforcement of floorsExpired - LifetimeUS3256670A (en)

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
FR904775AFR1329412A (en)1962-07-231962-07-23 Prefabricated steel sheet beams intended to constitute the reinforcement of floors

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Cited By (46)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3381439A (en)*1965-10-211968-05-07United States Gypsum CoStructural member
US3479777A (en)*1968-03-221969-11-25Concrete Conduit Co IncUnderground utility vault with a ventilator-type grate
US3698224A (en)*1970-11-161972-10-17Siderurgica Occidental C AProcess for the production of steel structural shapes
US3761046A (en)*1971-07-091973-09-25Stelmo LtdTable for concrete casting
US4394807A (en)*1974-04-041983-07-26Carroll Frank ESheet metal structural shape
US4507901A (en)*1974-04-041985-04-02Carroll Frank ESheet metal structural shape and use in building structures
US4731560A (en)*1970-08-061988-03-15Owens-Illinois Television Products, Inc.Multiple gaseous discharge display/memory panel having improved operating life
WO1991017328A1 (en)*1990-05-031991-11-14Ram NavonStructural beam
US5163225A (en)*1988-07-251992-11-17Tube Technology Pty Ltd.Process for forming a structural member utilizing high frequency electrical induction or resistance welding
US5403986A (en)*1990-09-281995-04-04Tube Technology Pty. Ltd.Structural member and method of making by cold rolling followed by induction or resistance welding
US5501053A (en)*1990-09-281996-03-26Tube Technology Pty., Ltd.Interengageable structural members
US6115986A (en)*1996-08-302000-09-12Bhp Steel (Jla) Pty LtdStackable box stud
US6131362A (en)*1998-02-042000-10-17Buecker Machine & Iron Works, Inc.Sheet metal beam
US20020108345A1 (en)*1999-11-122002-08-15Walker Steven H.Metal structural member
US20040182041A1 (en)*2001-07-182004-09-23Bodnar Ernest R.Sheet metal stud and composite construction panel and method
WO2007134790A1 (en)*2006-05-232007-11-29Airbus FrancePressure-sealed floor for aircraft
US20080134611A1 (en)*2005-11-212008-06-12Usg Interiors, Inc.Grid tee for suspension ceiling
US20080155934A1 (en)*2006-12-292008-07-03Usg Interiors, Inc.Easy cut suspension grid
US20080196332A1 (en)*2007-02-152008-08-21Surowiecki Matt FSheet metal header beam
US20080264936A1 (en)*2007-03-052008-10-30Christian GodenziContainer for air freight transport and fuselage of an aircraft for freight transport
US20090013628A1 (en)*2005-12-072009-01-15Stefan KrestelGirder-like structural element composed of individual parts connected to one another
US20100032523A1 (en)*2006-10-102010-02-11Airbus FranceAircraft fuselage made from longitudinal panels and method of producing such a fuselage
US20110078968A1 (en)*2005-08-052011-04-07James FerrellSingle Strip - Double Web Ceiling Grid Member
US20110162320A1 (en)*2003-06-232011-07-07Smorgon Steel Litesteel Products Pty LtdBeam
EP2527554A1 (en)*2011-05-232012-11-28Vbi Ontwikkeling B.V.Beam and block floor
US20120328898A1 (en)*2009-07-222012-12-27Best Joist Inc.Roll formed steel beam
US8397462B2 (en)2011-06-032013-03-19Usg Interiors, LlcOpen web grid runner
US9021759B2 (en)2012-06-132015-05-05Usg Interiors, LlcSerpentine insert for open web grid
US9525685B2 (en)2014-02-072016-12-20Bank Of America CorporationUser authentication based on other applications
US9600844B2 (en)2014-03-042017-03-21Bank Of America CorporationForeign cross-issued token
US9600817B2 (en)2014-03-042017-03-21Bank Of America CorporationForeign exchange token
US9628495B2 (en)2014-02-072017-04-18Bank Of America CorporationSelf-selected user access based on specific authentication types
US9641539B1 (en)2015-10-302017-05-02Bank Of America CorporationPassive based security escalation to shut off of application based on rules event triggering
US9647999B2 (en)2014-02-072017-05-09Bank Of America CorporationAuthentication level of function bucket based on circumstances
US9721248B2 (en)2014-03-042017-08-01Bank Of America CorporationATM token cash withdrawal
US9729536B2 (en)2015-10-302017-08-08Bank Of America CorporationTiered identification federated authentication network system
US9820148B2 (en)2015-10-302017-11-14Bank Of America CorporationPermanently affixed un-decryptable identifier associated with mobile device
US9819680B2 (en)2014-02-072017-11-14Bank Of America CorporationDetermining user authentication requirements based on the current location of the user in comparison to the users's normal boundary of location
US9965606B2 (en)2014-02-072018-05-08Bank Of America CorporationDetermining user authentication based on user/device interaction
US10021565B2 (en)2015-10-302018-07-10Bank Of America CorporationIntegrated full and partial shutdown application programming interface
US10268635B2 (en)2016-06-172019-04-23Bank Of America CorporationSystem for data rotation through tokenization
US10313480B2 (en)2017-06-222019-06-04Bank Of America CorporationData transmission between networked resources
US10460367B2 (en)2016-04-292019-10-29Bank Of America CorporationSystem for user authentication based on linking a randomly generated number to the user and a physical item
US10511692B2 (en)2017-06-222019-12-17Bank Of America CorporationData transmission to a networked resource based on contextual information
US10524165B2 (en)2017-06-222019-12-31Bank Of America CorporationDynamic utilization of alternative resources based on token association
USD1070124S1 (en)*2023-02-182025-04-08Pravin NanayakkaraAnchor joist for architectural structures

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US774484A (en)*1902-11-011904-11-08Chauncey F LufkinMetallic railway-tie.
US991603A (en)*1910-09-221911-05-09George William BrooksFireproof beam.
US1351615A (en)*1920-01-281920-08-31Brown Edward EugeneMetal construction
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US1924880A (en)*1930-02-071933-08-29Budd Edward G Mfg CoOpen truss girder
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US774484A (en)*1902-11-011904-11-08Chauncey F LufkinMetallic railway-tie.
US991603A (en)*1910-09-221911-05-09George William BrooksFireproof beam.
US1357073A (en)*1920-01-091920-10-26Mooney Dermot JosephMetal construction
US1351615A (en)*1920-01-281920-08-31Brown Edward EugeneMetal construction
US1924880A (en)*1930-02-071933-08-29Budd Edward G Mfg CoOpen truss girder
US2092472A (en)*1936-12-041937-09-07Rafter Machine CompanyStud and rafter
FR1235452A (en)*1959-05-271960-07-08 Improvement in prefabricated constructions

Cited By (66)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3381439A (en)*1965-10-211968-05-07United States Gypsum CoStructural member
US3479777A (en)*1968-03-221969-11-25Concrete Conduit Co IncUnderground utility vault with a ventilator-type grate
US4731560A (en)*1970-08-061988-03-15Owens-Illinois Television Products, Inc.Multiple gaseous discharge display/memory panel having improved operating life
US3698224A (en)*1970-11-161972-10-17Siderurgica Occidental C AProcess for the production of steel structural shapes
US3761046A (en)*1971-07-091973-09-25Stelmo LtdTable for concrete casting
US4394807A (en)*1974-04-041983-07-26Carroll Frank ESheet metal structural shape
US4507901A (en)*1974-04-041985-04-02Carroll Frank ESheet metal structural shape and use in building structures
US5163225A (en)*1988-07-251992-11-17Tube Technology Pty Ltd.Process for forming a structural member utilizing high frequency electrical induction or resistance welding
US5373679A (en)*1988-07-251994-12-20Tube Technology Pty LtdStructural member and process for forming same
WO1991017328A1 (en)*1990-05-031991-11-14Ram NavonStructural beam
US5403986A (en)*1990-09-281995-04-04Tube Technology Pty. Ltd.Structural member and method of making by cold rolling followed by induction or resistance welding
US5501053A (en)*1990-09-281996-03-26Tube Technology Pty., Ltd.Interengageable structural members
US6115986A (en)*1996-08-302000-09-12Bhp Steel (Jla) Pty LtdStackable box stud
US6131362A (en)*1998-02-042000-10-17Buecker Machine & Iron Works, Inc.Sheet metal beam
US20020108345A1 (en)*1999-11-122002-08-15Walker Steven H.Metal structural member
US20040182041A1 (en)*2001-07-182004-09-23Bodnar Ernest R.Sheet metal stud and composite construction panel and method
US7231746B2 (en)*2001-07-182007-06-19Bodnar Ernest RSheet metal stud and composite construction panel and method
US8181423B2 (en)2003-06-232012-05-22Smorgon Steel Litesteel Products Pty Ltd.Beam
US20110162320A1 (en)*2003-06-232011-07-07Smorgon Steel Litesteel Products Pty LtdBeam
US20110078968A1 (en)*2005-08-052011-04-07James FerrellSingle Strip - Double Web Ceiling Grid Member
US8266860B2 (en)2005-11-212012-09-18Usg Interiors, LlcGrid tee for suspension ceiling
US20080134611A1 (en)*2005-11-212008-06-12Usg Interiors, Inc.Grid tee for suspension ceiling
US7832168B2 (en)*2005-11-212010-11-16Usg Interiors, Inc.Grid tee for suspension ceiling
US20090158684A1 (en)*2005-11-212009-06-25Usg Interiors, Inc.Grid tee for suspension ceiling
US8201384B2 (en)*2005-12-072012-06-19Stefan KrestelGirder-like structural element composed of individual parts connected to one another
US20090013628A1 (en)*2005-12-072009-01-15Stefan KrestelGirder-like structural element composed of individual parts connected to one another
US8567150B2 (en)*2006-05-232013-10-29Airbus Operations SasAircraft pressurized floor
RU2452656C2 (en)*2006-05-232012-06-10Эрбюс Операсьон (Сас)Aircraft sealed floor
WO2007134790A1 (en)*2006-05-232007-11-29Airbus FrancePressure-sealed floor for aircraft
US20100282903A1 (en)*2006-05-232010-11-11Airbus FranceAircraft pressurized floor
US20100032523A1 (en)*2006-10-102010-02-11Airbus FranceAircraft fuselage made from longitudinal panels and method of producing such a fuselage
US20080155934A1 (en)*2006-12-292008-07-03Usg Interiors, Inc.Easy cut suspension grid
US7891155B2 (en)*2007-02-152011-02-22Surowiecki Matt FSheet metal header beam
US20080196332A1 (en)*2007-02-152008-08-21Surowiecki Matt FSheet metal header beam
US20080264936A1 (en)*2007-03-052008-10-30Christian GodenziContainer for air freight transport and fuselage of an aircraft for freight transport
US8672265B2 (en)2007-03-052014-03-18Airbus Operations SasContainer for air freight transport and fuselage of an aircraft for freight transport
US9975577B2 (en)*2009-07-222018-05-22Ispan Systems LpRoll formed steel beam
US20120328898A1 (en)*2009-07-222012-12-27Best Joist Inc.Roll formed steel beam
EP2527554A1 (en)*2011-05-232012-11-28Vbi Ontwikkeling B.V.Beam and block floor
EP2527554B1 (en)2011-05-232015-03-18Vbi Ontwikkeling B.V.Beam and block floor
EP2899328A3 (en)*2011-05-232015-08-12Vbi Ontwikkeling B.V.Beam and block floor
US8397462B2 (en)2011-06-032013-03-19Usg Interiors, LlcOpen web grid runner
US9021759B2 (en)2012-06-132015-05-05Usg Interiors, LlcSerpentine insert for open web grid
US10050962B2 (en)2014-02-072018-08-14Bank Of America CorporationDetermining user authentication requirements along a continuum based on a current state of the user and/or the attributes related to the function requiring authentication
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US9819680B2 (en)2014-02-072017-11-14Bank Of America CorporationDetermining user authentication requirements based on the current location of the user in comparison to the users's normal boundary of location
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US9794299B2 (en)2015-10-302017-10-17Bank Of America CorporationPassive based security escalation to shut off of application based on rules event triggering
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USD1070124S1 (en)*2023-02-182025-04-08Pravin NanayakkaraAnchor joist for architectural structures

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