Claims
- 1. A method of forming the substructure of a building constructed by being assembled from prefabricated box-shaped elements each having dimensions compatible with being transported on highways by transport vehicles, the method comprising the steps of:
- excavating a building site at a desired level below that of the surrounding terrain;
- forming a concrete slab in said excavation which has a flat horizontal upper surface and a shape and area which substantially corresponds to the lower portion of the building to be erected;
- transporting on a transport vehicle which is provided with winch means, at least one elongated three-dimensional concrete substructure section intended for the substructure of the building to adjacent said excavation whereby the longitudinal axis of said substructure section is substantially parallel to the place it will occupy in the completed building and its shorter ends are substantially in the same plane as they will occupy in the completed building;
- providing at least two parallel bridge members directly between and connected to the portion of said transport vehicle carrying said substructure section and said concrete slab;
- connecting pulley means adjacent the remote end of said slab on either side of the place said substructure section will occupy in the finished building and providing a pair of flexible members each engaging a separate said pulley with one end of each said flexible member connected to the longer side of said substructure section which is most remote from said concrete slab, the other end of each said flexible member being connected to said winch means;
- displacing said substructure section across said bridge members and said concrete slab to its desired place in the building by winding each said flexible member by said winch means;
- disengaging said bridge members from said transport vehicle and transporting further concrete substructure sections to substantially the same position described for said first mentioned substructure section and by the same steps heretofore described for displacing said first mentioned substructure, displacing each said further substructure section to its desired position on said slab in the completed building whereby said substructure sections are in an abutting relationship with one another and the substructure of the building is substantially completed.
- 2. A method as claimed in claim 1 comprising the further step of closing the seams between said abutting substructure sections.
- 3. A method as claimed in claim 1, wherein metal beams are provided in said substructure sections so that the surfaces thereof are not exposed to the exterior of the assembled substructure.
- 4. A method as claimed in claim 1, wherein guiding slideways are provided on the tops of said substructure sections whereby building elements for the overlying portion of the building can be slidably displaced to their desired positions in the completed building over said assembled substructure.
- 5. A method as claimed in claim 1 wherein supporting columns are placed in said substructure sections for increasing the rigidity of said sections and contributing to the support of the overlying portion of the building.
- 6. A method as claimed in claim 1 wherein said concrete slab is precast in parts and said slab parts are moved to said excavation and laid therein with their flat horizontal surfaces in the same plane.
- 7. In a method of forming the substructure of a building, the use of at least one prefabricated three-dimensional substructure section, said method including excavating the ground at the building site, forming a foundation slab of concrete in the excavation which has a width greater than the length of said prefabricated section and a length greater than said width, anchoring a pulley in said slab at each of the longer edges thereof and nearer to a shorter edge of said slab than a distance equal to the width of said section, transferring said section into the excavation by transporting it on a truck bed to adjacent said excavation, placing a slideway so that it is connected to a longer side of said truck bed and an edge of said slab opposite the shorter edge near to which said pulleys are anchored, placing a cable on said section on said truck bed whereby said cable connects a side of said section opposite said slideway on one end and extends to a said pulley around which it is received and from whence it extends back to a winch on said truck and then by said winch drawing said section across said slideway and slab to its predetermined place on the latter, and subsequently transferring a further prefabricated three-dimensional section on top of said first mentioned section.
- 8. A method as claimed in claim 7, wherein said foundation slab is formed by arranging a plurality of prefabricated concrete plates in juxtaposed side-by-side relationship in said excavation.
- 9. A method as claimed in claim 7, wherein said slideway is arranged in an inclined position with its higher one end connected to said transporter and the opposite end bearing directly on said foundation.
- 10. A method as claimed in claim 7, wherein said first mentioned section is of oblong configuration, and wherein said first mentioned section is displaced onto and over said foundation in a direction substantially parallel to said first mentioned section's shorter sides.
- 11. A method as claimed in claim 10, wherein said cable is coupled to the rear of said first mentioned section with respect to the direction in which that section is to be displaced, said cable extending alongside a shorter side of said section.
- 12. A method as claimed in claim 7, wherein a plurality of prefabricated three-dimensional substructure sections are placed beside said first mentioned section and a plurality of prefabricated building sections intended to form part of a superstructure of a building that is to be erected are disposed on top of said sections of the substructure during further steps in the erection of the building.
- 13. A method of forming the substructure of a building constructed by being assembled from prefabricated box-shaped elements each of which has dimensions capatible with being transported on highways by transport vehicles, the method comprising, the steps of:
- providing a level building site;
- forming a concrete slab on said building site which has a flat horizontal upper surface and a shape and area which substantially corresponds to the lower portion of the building to be erected;
- transporting on a transport vehicle which is provided with winch means at least one elongated three-dimensional concrete substructure section intended for the substructure of the building adjacent said concrete slab whereby the longitudinal axis of said substructure section is substantially parallel to the place it will occupy in the completed building and its shorter ends are substantially in the same plane that they will occupy in the completed building;
- providing at least two parallel bridge members directly between and on one end connected to the portion of said transport vehicle carrying said substructure section and said concrete slab whereby it abuts against an edge of said concrete slab;
- connecting pulley means adjacent the remote end of said slab on both sides of the location said substructure section will occupy in the completed building and providing a pair of flexible members each engaging separate said pulley with one end of each said flexible member connected to the longer side of said substructure section which is most remote from said concrete slab, the other end of each said flexible member being connected to said winch means on said transport vehicle;
- displacing said substructure section across said bridge members and said concrete slab to its said location in the completed building by winding each said flexible member by said winch means;
- disengaging said bridge members from said transport vehicle; and
- transporting further concrete substructure sections by a transport vehicle to substantially the same position described for said first mentioned substructure section and by the same steps set forth above for displacing said first mentioned substructure, displacing each said further substructure section to its predetermined location on said slab in the completed building whereby said substructure sections are in an abutting relationship with one another and the substructure of the building is substantially completed.
- 14. A method in accordance with claim 13, wherein performing the step of forming said concrete slab, anchor means for each said pulley are provided on said slab remote from the edge said parallel bridge members will abut and on both sides of the location said substructure will occupy in the completed building.
- 15. A method in accordance with claim 13, wherein said building site is provided at a lower level than the bed of said transport vehicle when it is in place for receiving said bridge members.
- 16. A method in accordance with claim 13, wherein said concrete slab comprises a plurality of prefabricated concrete plates which are placed in a juxtaposed side-by-side relationship at said building site whereby their length is substantially perpendicular to said longitudinal axis of said substructure section.
- 17. In a method of forming the substructure of a building, the use of a plurality of prefabricated three-dimensional elongated substructure sections, each of which includes a continuous floor, a ceiling and supporting walls, and a further plurality of elongated rectangular concrete foundation slabs, said method including the preparation of the ground at the building site for receiving said slabs, the placing of said slabs on said building site in a coplanar side-by-side adjoining relationship whereby they form and completely cover on the prepared building site a rectangle of the approximate area in plan of the completed building, and have their longitudinal axes perpendicular to the longitudinal axes of the section to be received thereon, the transferring of said sections onto said slabs by bringing them one by one to the building site by transport vehicles and connecting a slideway with one end directly mounted on said transport vehicle where it carries said section and the other end received by said slabs, sliding said sections across said slideway and across said slabs individually to their location in the completed building, and providing a seal around the foot of said sections at their juncture thereof with the upper surface of said slabs whereby moisture is excluded from entering between the floor of the substructure formed by said floors of said sections and the underlying slabs.
- 18. A method in accordance with claim 17, wherein said building site is prepared by excavating the ground and providing a level place in said excavated area for receiving said slabs.
- 19. A method in accordance with claim 18, comprising the further step of closing seams between said abutting substructure sections.
- 20. A method in accordance with claim 18, wherein supporting columns are initially located in each substructure section for increasing the rigidity of said sections and contributing to the support of the overlying portion of the building, said supporting columns in each said substructure section abutting a supporting column in an adjacent substructure section when said substructure sections have been displaced to their predetermined position in the completed building.
- 21. A method of forming the substructure of a building constructed by being assembled from prefabricated box-shaped elements each of which has dimensions compatible with being transported on highways by transport vehicles, the method comprising the steps of:
- forming a concrete slab on said building site which has a flat horizontal upper surface and a shape and area which substantially corresponds to the lower portion of the building to be erected;
- transporting on a transport vehicle to adjacent said concrete slab at least one elongated three-dimensional substructure section in which supporting columns are initially located for increasing the rigidity of the section and contributing to the support of an overlying portion of the building whereby said section is intended for the substructure of the building, said section being transported to along side of said concrete slab with its longitudinal axis substantially parallel to the place it will occupy in the completed building and with its shorter ends substantially in the same plane that they will occupy in the completed building;
- providing at least two parallel bridge members between said transport vehicle carrying said substructure section and said concrete slab;
- connecting pulley means adjacent that end of the slab remote from where the transport vehicle is situated and on both sides of the location said substructure section will occupy in the completed building, said pulley means being situated nearer to that end of said slab than a distance equal to the width of said section, providing a pair of flexible members each engaging a separate said pulley means with one end of each said flexible member connected to the longer side of said substructure section which is remote from both said pulley means, said flexible means extending from said section along its shorter sides to and around said pulley means and being connected to winch means;
- displacing said substructure section across said bridge members and said concrete slab to its said location in the completed building by winding each said flexible member by said winch means;
- transporting further concrete substructure sections by a transport vehicle to substantially the same position described for said first mentioned substructure section and by the same steps set forth above for displacing said first mentioned substructure, displacing each said further substructure section to its predetermined location on said slab in the completed building whereby said substructure sections are in an abutting relationship with one another and the substructure of the building is substantially completed.
- 22. A method in accordance with claim 21, wherein said winch means is located spaced from the end of said slab opposite said pulley means.
- 23. A method in accordance with claim 22, wherein each said flexible member is turned around said pulley means substantially 180.degree..
Priority Claims (1)
Number |
Date |
Country |
Kind |
7211909 |
Sep 1972 |
NL |
|
SUMMARY OF THE INVENTION
This is a continuation of application Ser. No. 393,023 filed Aug. 30, 1973, now abandoned.
US Referenced Citations (12)
Foreign Referenced Citations (3)
Number |
Date |
Country |
1,518,637 |
Jul 1966 |
FR |
269,923 |
Jun 1964 |
NL |
1,083,552 |
Sep 1967 |
UK |
Continuations (1)
|
Number |
Date |
Country |
Parent |
393023 |
Aug 1973 |
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