Claims
- 1. A non-bonded, prestressed, rigid frame structure providing post-tension and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at each of its end faces to a side face of one of said column members by post-tensioned, moment-transferring connections, said beam members each having at least one adjustable tension connecting element and at leastt one compression connecting element on the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating connecting compression elements comprising the distending edge of a bias cut end face of said beam members engaging a compression bearing surface on a side face of said column members in unattached abutment to cause a spacing apart of said joined end and side faces at the locations of said mating tension connecting elements and serving as compression fulcrums for unrestricted relative rotation between saidd joined end and side faces, and said adjustable mating tension connecting elements comprise at least one threaded rod attached to the upper portion of the end faces of said beam members and extending therefrom through corresponding apertures in the spaced apart side faces of said column members, and secured thereto by nuts, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the tightening of said nuts produces and secures controlled relative rotation about said compression fulcrums between respective pairs of said joined members and tensions and cambers all of said joined beam and column members of said frame structure and renders said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 2. A non-bonded, prestressed, rigid frame structure providing post-tension and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at each of its end faces to a side face of one of said column members by post-tensioned, moment transferring connections, said beam members each having at least one tension connecting element and at least one adjustable compression connecting element on the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating connecting compression elements comprising at least one threaded rod secured to the lower side of said beam member at the lower edge of its end face and an associated threaded nut, one end of which extends from said rod to engage said compression bearing surfaces on the side faces of said column members in unattached abutment, said mating tension connecting elements comprising at least one tension member on end of which is fixedly secured to the upper portion of the end face of each said beam member and the other end of which is fixedly secured to the mating side face of said column members and serving as a tension fulcrum for unrestricted relative rotation between said joined end and side faces of said beam and column members, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the turning of said threaded nuts forces apart said joined end and side faces of said beam and column members at said compression connections to produce and secure controlled relative rotation about said tension fulcrums and post-tension and camber all of said joined beam and column members of said frame structure and render said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 3. A non-bonded, prestressed, rigid frame structure providing post-tensioning and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at each of its end faces to a side face of one of said column members by post-tensioned, moment transferring connections, said beam members each having at least one tension connection element and at least one adjustable compression connecting element associated with the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating connecting compression elements comprising a wedge the sloping surface of which is contiguous with the compression portion on the end face of said beam members and the other surface engages the compression bearing surface on the side faces of said column members in unattached abutment, and an associated threaded bolt one end of which extends through said tension connecting element and into a threaded hole in said wedge, and said mating tension connecting elements comprising at least one tension member one end of which is fixedly secured to the upper portion of the end face of said beam members and the other end of which is fixedly secured to the mating side face of said column members and serving as a tension fulcrum for unrestricted relative rotation between said joined end and side faces of said beam and column members, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the turning of said threaded bolt causes said wedge to force apart said joined end and side faces of said beam and column members at the location of said compression connection to produce and secure controlled relative rotation about said tension fulcrums and tension and camber all of said joined beam and column members of said frame structure and render said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 4. A non-bonded, prestressed, rigid frame structure providing post-tensioning and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at each of its end faces to a side face of one of said column members by post-tensioned, moment-transferring connections, said beam members each having at least one tension connecting element and at least one adjustable compression connecting element associated with the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating connecting compression elements comprising a pair of cooperating adjustable wedges having mating surfaces, the non-mating surface of one of said wedges being contiguous with the compression location on the end face of said beam members and the non-mating surface of said other wedge bearing against and engaging the compresssion bearing surface on the side faces of said column members in unattached abutment, and a threaded bolt positioned between said mating surfaces and engaging mating threads in both of said wedges, and said mating tension connecting elements comprising at least one tension member one end of which is fixedly secured to the upper portion of the end face of said beam members and the other end of which is fixedly secured to the mating side face of said column members and serving as a tension fulcrum for unrestricted relative rotation between said joined end and side faces of said beam and column members, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the turning of said threaded bolt causes said wedges to force apart said joined end and side faces of said beam and column members at the location of the compression element to produce and secure controlled rotation about said tension fulcrums and tensions and cambers all of said joined beam and column members of said frame structure and renders said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 5. A non-bonded, prestressed, rigid frame structure providing post tension and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at each of its end faces to a side face of one of said column members by post-tensioned, momement transferring connections, moment beam members each having at least one adjustable tension connecting element and at least one compression connecting element on the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating connecting compression elements comprising a butt plate secured to the lower portion of each end face of said beam members extending therefrom and engaging a compression bearing surface on a side face of one of said column members in unattached abutment to cause a spacing apart of said joined end and said faces at the locations of said mating tension connecting elements and serving as compression fulcrums for unrestricted relative rotation between said joined end and side faces, and said adjustable mating tension connecting elements comprising at least one threaded rod attached to the upper portion of each end face of said beam members and extending therefrom through corresponding apertures in the spaced apart side faces of said column members, and secured thereto by nuts, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the tightening of said nuts produces and secures controlled relative rotation about said compression fulcrums between respective pairs of said joined members and post-tensions and cambers all of said joined beam and column members of said frame structure and renders said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 6. The frame structure according to claim 5, wherein said butt plates are extended angularly downward to increase the distance between said threaded rod and said compression bearing surface on the side face of said column member at each said connection.
- 7. A non-bonded, prestressed, rigid frame structure providing post-tensioned and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at each of its end faces to a side face of one of said column members by post-tensioned, moment transferring connections, said beam members each having at least one adjustable tension connecting element and at least one compression connecting element on the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating connecting compression elements comprising a butt plate secured to the compression bearing surface of the side face of said column members and extending therefrom to engage the compression bearing portion of the end faces of said beam members in unattached abutment to cause a spacing apart of said joined end and side faces at the locations of said mating tension connecting elments and serving as compression fulcrums for unrestricted relative rotation between said joined end and side faces, and said adjustable mating tension connection elements comprising at least one threaded rod attached to the upper portion of each end face of said beam members and extending therefrom through corresponding apertures in the spaced apart side faces of said column members, and secured thereto by nuts, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the tightening of said nuts produces and secures controlled relative rotation about said compression fulcrums between respective pairs of said joined members and tensions and chambers all of said joined beam and column members of said frame structure and renders said connections therebetween capable of immediate moment transfer and said frame structure capable of supportiing vertical and horizontal service loads in rigid frame action.
- 8. The frame structure according to claim 7, wherein said butt plate comprises the secured upwardly disposed leg of an angle and the other leg of said angle provides vertical support for said beam.
- 9. A method of constructing a non-bonded, prestressed, rigid frame structure having post-tensioned, post-cambered beam and column members joined by post-tensioned, moment transferring connections, which comprise the steps of:
- a. providing beam members having at least one adjustable tension connecting element and at least one compression connecting element extending from the end faces thereof, said tension connecting element comprising at least one threaded rod attached to the upper portion of each end face of said beam members and said compression connecting element comprising a butt plate secured to the lower portion of each end face of said beam members;
- b. providing column members having corresponding tension and compression connecting elements on the side faces thereof for forming mating connections with said connecting elements on the end faces of said beam members, said corresponding tension connecting element comprising apertures and said corresponding compression connecting element comprising a compression bearing surface;
- c. placing at least three spaced column members;
- d. connecting each end face of each said beam member by said connections to the mating connections on a side face of one of said column members;
- e. mating said butt plate and said compression bearing surface in each said connection in unattached abutment to cause a spacing apart of said joined end and side faces at the location of said mating tension connecting elements of each said connection and to provide an unrestricted compression fulcrum for unobstructed relative rotation between said joined end and side faces at each of said connections;
- f. passing said threaded rod on the end face of each said beam through said corresponding aperture in the spaced apart side face of said column member in each said connection and securing the end thereof by a nut;
- g. tightening said nut at each said connection to produce and secure controlled relative rotation between said joined beam and column members about each said compression fulcrum, said relative rotation in each said connection being resisted only by the deadweight of said joined beam member and the connections at the other ends of said beam and column members;
- thereby tensioning and cambering all of said joined beam and column members of said frame structure and rendering said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 10. A method of constructing a non-bonded, pre-stressed, rigid frame structure having post-tensioned, post-cambered beam and column members joined by post-tensioned, moment-transferring connections, which comprise the steps of:
- a. providing beam members having at least one tension connecting element and at least one adjustable compression connecting element from the end faces thereof, said tension connecting element comprising a tension member fixedly secured to the upper portion of the end face of each said beam member and said compression connecting element comprising at least one threaded rod secured to the lower side of said beam member at the lower edge of each end face thereof and an associated threaded nut which extends from said rod;
- b. providing column members having corresponding tension and compression connecting elements on the side faces thereof for forming mating connections with said connecting elements on the end faces of said beam members, said corresponding compression connecting element comprising a compression bearing surface on the side face of said column member;
- c. placing at least three spaced column members;
- d. connecting each end face of each said beam member by said connections to the mating connections on a side face of one of said column members;
- e. fixedly securing the other end of said tension member on the end face of said beam member to the side face of said column member in each said connection to provide an unrestricted tension fulcrum for unobstructed relative rotation between said joined end and side faces at each of said connection;
- f. extending one end of said threaded nut at each end face of said beam member to engage said corresponding compression bearing surface on the side face of said column member in each said connection in unattached abutment;
- g. turning said threaded nut at each said connection to force apart said joined end and side faces of said beam and column members to produce and secure controlled relative rotation between said joined beam and column members about said tension fulcrums, said relative rotation in each said connection being resisted only by the deadweight of said joined beam member and the connections at the other ends of said beam and column members; thereby tensioning and cambering all of said joined beam and column members of said frame structure and rendering said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 11. A non-bonded, prestressed, rigid frame structure providing post-tensioning and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at its end faces to a side face of one of said column members by post-tensioned, moment-transferring connections, said beam members each having at least one tension connecting element and at least one compression connecting element on the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating connecting compression elements comprising at least one protuberance extending from said joined end face of said beam member and engaging the side face of the column member in unattached abutment to cause a spacing apart of said joined end and side faces at the locations of said mating tension connecting elements and serving as compression fulcrums for unrestricted relative rotation between said joined end and side faces, and said mating tension connecting elements comprising individually adjustable fastening means connecting with and between said spaced apart portions of said end and side faces being joined, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the tightening of said adjustable fastening means post-tensions and cambers all of said joined beam and column members of said frame and renders said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 12. A non-bonded, prestressed, rigid frame structure providing post-tension and resulting camber in all flexural members comprising beam members and at least three spaced column members with each said beam member being joined at its end faces to a side face of one of said column members by post-tensioned, moment transferring connections, said beam members each having at least one tension connecting element and at least one compression connecting element on the end faces thereof, said column members each having corresponding tension and compression connecting elements on the side faces thereof for mating with said connecting elements on the end faces of said beam members, said mating compression connecting elements comprising individually adjustable force displacement means positioned between and engaging the end face of one said beam member and the side face of one said column member, said mating tension connecting elements comprising a member connecting with and between said mating portions of said end and side faces being joined and forming a tension fulcrum for unobstructed relative rotation between said joined end and side faces, and resistance to said relative rotation comprising only the deadweight of said members and their connections at the other ends of said beam and column members, whereby the activation of said adjustable force displacement means of said compression connecting elements force apart said joined end and side faces to produce and secure relative rotation therebetween about said tension fulcrums and tension and camber all of said joined beam and column members of said frame structure and render said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 13. A method of constructing a non-bonded, prestressed, rigid frame structure having post-tensioned, post-cambered beam and column members joined by post-tensioned moment-transferring connections, which comprises the steps of:
- a. providing beam and column members, said beam members having at least one adjustable tension connecting element on and at least one compression connecting element extending from the end faces thereof, and said column members each having tension and compression connecting elements on the side faces thereof for forming mating connections with said connecting elements on the end faces of said beam members;
- b. placing at least three spaced column members;
- c. connecting each end face of each said beam member by said connection to a side face of one of said column members;
- d. mating said extending connecting compression elements in each said connection to cause a spacing apart of said joined end and side faces at the location of said mating tension connecting elements of each said connection to provide an unrestricted compression fulcrum for unobstructed relative rotation between said joined end and side faces at each of said connections;
- e. mating said adjustable tension connecting elements with and between said spaced apart portions of said end and side faces of said beam and column members being joined in each said connection;
- f. tightening said adjustable tension connecting element at each said connection to produce and secure controlled relative rotation between said joined beam and column members about each said compression fulcrum, said relative rotation in each connection being resisted only by the deadweight of said joined beam member and the connections at the other ends of said beam and column members;
- thereby tensioning and cambering all of said joined beam and column members of said frame structure and rendering said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
- 14. A method of constructing a non-bonded, prestressed, rigid frame structure having post-tensioned, post-cambered beam and column members joined by post-tensioned, moment-transferring connections, which comprises the steps of:
- a. providing beam and column members, said beam members having at least one adjustable compression element on and at least one tension connecting element extending from the end faces thereof, and said column members each having tension and compression connecting elements on the side faces thereof for forming mating connections with said connecting elements on the end faces of said beam members;
- b. placing at least three spaced column members;
- c. connecting each end face of each said beam member by said connection to a side face of one said column member;
- d. mating said extending adjustable compression elements in each said connection,
- e. mating said tension connecting elements with and between said mating portions of said end and side faces of said beam and column members being joined in each said connection, to provide an unrestricted fulcrum for unobstructed relative rotation between said joined end and side faces at each said connections;
- f. tightening said adjustable compression connecting element at each said connection to produce and secure controlled relative rotation between said joined beam and column members about each said tension fulcrum, said relative rotation in each connection being resisted only by the dead-weight of said joined beam member and the connections at the other ends of said beam and column members;
- thereby tensioning and cambering all of said joined beam and column members of said frame structure and rendering said connections therebetween capable of immediate moment transfer and said frame structure capable of supporting vertical and horizontal service loads in rigid frame action.
CROSS-REFERENCES TO RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 849,787, filed Aug. 13, 1969, now abandoned, in the names of Bodocsi, Hoge, Hubbard, Hubbard and Roberto.
US Referenced Citations (11)
Foreign Referenced Citations (3)
Number |
Date |
Country |
96,982 |
May 1924 |
OE |
928,623 |
Jun 1947 |
FR |
121,365 |
Oct 1918 |
UK |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
849787 |
Aug 1969 |
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