Movatterモバイル変換


[0]ホーム

URL:


US3842562A - Interlocking precast concrete slabs - Google Patents

Interlocking precast concrete slabs
Download PDF

Info

Publication number
US3842562A
US3842562AUS00299683AUS29968372AUS3842562AUS 3842562 AUS3842562 AUS 3842562AUS 00299683 AUS00299683 AUS 00299683AUS 29968372 AUS29968372 AUS 29968372AUS 3842562 AUS3842562 AUS 3842562A
Authority
US
United States
Prior art keywords
slab
slabs
rods
rod
hooked
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US00299683A
Inventor
J Daigle
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
LARSEN V CO
Original Assignee
LARSEN V CO
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by LARSEN V COfiledCriticalLARSEN V CO
Priority to US00299683ApriorityCriticalpatent/US3842562A/en
Priority to IT53338/73Aprioritypatent/IT996329B/en
Application grantedgrantedCritical
Publication of US3842562ApublicationCriticalpatent/US3842562A/en
Anticipated expirationlegal-statusCritical
Expired - Lifetimelegal-statusCriticalCurrent

Links

Images

Classifications

Definitions

Landscapes

Abstract

Precast concrete slabs are joined together to form a walk or patio-like matrix by embedding a plurality of rods in each slab and providing cavities in the bottom faces of each slab. Each rod has a hooked end portion which projects beyond opposing end walls of the slab, the hooked end portions and the cavities being positioned such that the hooked end portions of one slab are receivable in the cavities of another slab, whereby the slabs may be interlocked end to end to form a strip of slabs. Similar cavities and rods having hooked ends may be positioned in each slab at right angles to the aforementioned rods and cavities to permit sidewise connection of the slabs along with the end-to-end connection.

Description

0 r. Unite States Patent 1 1 1 1 3,342,562
Daigle Oct. 22, 1974 [54] INTERLOCKING PRECAST CONCRETE 3,236,991 2/l966 Graham et al. 404/41 X SLABS 3,301.147 1/1967 Clayton ct al. 52/588X 3,522,618 8/1970 Stranzinger 404/4l X ntor: John P. Daigle, Trumbull, Co 3,645,056 2/1972 Gerola 52/432 x [73] Assignee: The Veggo F. Larsen C0., Hamden,
Conn. Primary ExaminerFrank L. Abbott Assistant ExaminerCarl D. Friedman [22] Flled: 1972 Attorney, Agent, or Firm-DeLio and Montgomery [21] Appl. No.: 299,683
[57] ABSTRACT [52] US. Cl 52/583, 52/587, 52/604, Precast concrete slabs are joined together to form 21 404/50 walk or patio-like matrix by embedding a plurality of [51] Int. Cl. E04c 2/06 rods in each slab and providing cavities in the bottom [58] Field of Search 52/583, 587, 582, 436, faces of each slab. Each rod has a hooked end portion 52/43 I, 432, 593, 595, 604, 422, 588, 589; which projects beyond opposing end walls of the slab,
404/40, 41, 28, 29, 34, 50 the hooked end portions and the cavities being positioned such that the hooked end portions of one slab [56] References Cited are receivable in the cavities of another slab, whereby UNITED STATES PATENTS the slabs may be interlocked end to end to form a strip 850 74 4/1907 Staples v. 404/41 of Slabs' Similar calities and rods haying hooked ends :Z Leonard I 52/587 X may be positioned 1n each slab at right angles to the 1475346 11/1923 Marks n 52/483 X aforementioned rods and cavities to permit sidewise 2,310,426 2/1943 Greulich l 404/41 X connection of the slabs along with the end-to-end con- 2,559,l98 7/1951 Ogden 52/220 X nection. 2. 40.167 4 i956 Rowlc 52 589 2.7140150 2/1957 Yeomzi n 52/547 x 14 Claims, 15 Drawing Figures Z1 Z8 5'2 24 a INTERLOCKING PRECAST CONCRETE SLABS BACKGROUND OF THE INVENTION This invention relates to precast concrete slabs, and more particularly to precast concrete slabs of the reinforced type for use in the construction of generally hor izontal load-bearing surfaces, such as walks, roads, patios and the like.
It has long been recognized that precast concrete slabs must not only have inherent strength for good load bearing qualities and resistance to weathering and cracking, but also provision must be made for relative movement of the slabs and the expansion and contraction of individual slabs, due to various external or internal forces such as temperature differentials, weather conditions, natural expansion or contraction of the slab material, settling of the base or foundation material under the slabs, contours of the base or foundation, and characteristics of loads on the slabs, especially whether dead or alive.
For these and other reasons it has been the common practice to reinforce concrete slabs by embedding steel rods or the like in the slabs. Movement due to the foregoing forces often is accommodated simply by laying the "slabs loosely adjacent one another to provide sufficient clearance to permit the movement, or by grouting the clearance between the slabs with a material which will readily expand or contract. Various attempts have also been made to reduce movement by connecting the slabs with mechanical devices, as by steel hooks and eyes, or the like, as in US. Pat. No. 2,780,150 Yeoman.
Despite the foregoing improvements, substantial problems still exist with respect to the stability of the slabs (when laid end to end or even when connected so as to prevent undue movement or shifting) relative to one another in one or more of the three principal planes and intermediate planes. The problem of movementor shifting becomes especially acute when settling of base or foundation material occurs under some of the slabs but not under adjacent slabs, or when it is not practical to prepare a perfectly level or solid base or foundation. Moreover, while it may be possible to mechanically connect slabs so rigidly as to avoid such undue relative movement, these efforts tend to be too complicated for efficientconnection and laying of the slabs in many situations, such as the formation of walks and roads. Ease of placement and connection of concrete slabs is an extremely important consideration in the mass laying of roads, walks and the like.
OBJECTS AND SUMMARY the invention will be apparent from the specification which follows.
In summary outline, the precast concrete slabs of the invention satisfy the foregoing and other objects by the improvement of embedding in each slab a plurality of rods having hooked end portions projecting beyond opposing end walls of the slab, and by providing in each slab a plurality of cavities in the lower face of the slab corresponding in number to the hooked end portions, such that the hooked end portions of one slab are receivable in the cavities in another slab whereby the slabs are interlockable end to end to form a strip of slabs. Side-by-side connection of the strips of slabs to form a patio-like matrix is accomplished by providing similar hooked end portions and cavities at right angles to the first-mentioned hooked end portions and cavities.
The invention accordingly comprises an article of manufacture possessing the features, properties, and the relation of elements which will be exemplified in the article hereinafter described, and the scope of the invention will be indicated in the claims.
DETAILED DESCRIPTION For a fuller understanding of the nature and objects of the invention, reference is had to the following description taken in conjunction with the accompanying drawings, in which:
FIG. 1 is a partially diagrammatic perspective view of several slabs of the invention connected end-to-end to form a strip of slabs;
FIG. 2 is a'partially diagrammatic plan view of the bottom faces of the strip of slabs of FIG. 1;
FIG. 3 is a vertical section along the line 3-3 of FIG. 2.
FIG. 4 is the same view as FIG. 3 except for slight relative displacement of the slab sections shown;
FIG. 5 is a partially diagrammatic elevational view illustrating a methodof laying a strip of slabs of the invention;
FIG. 6 in bottom plan view of another embodiment of slab of the invention;
' FIGS. 7 and 8 are fragmentary bottom plan views of still other embodiments of concrete slabs of the invention;
FIG. 9 is a vertical section along the line 99 of FIG.
FIG. 10 is a vertical section similar to FIG. 9 showing a method of connection of two concrete slabs of the invention;
FIG. 11 is a partially diagrammatic bottom plan view of still another embodiment of concrete slabs of the invention joined together to form a strip of slabs;
FIG. 12 is a partially diagrammatic bottom plan view of a modification of the concrete slabs of FIG. 11 to illustrate how the slabs of FIG. 11 can be connected side by side as well as end to end;
FIG. 13 is a partially schematic top plan view of a plurality of the concrete slabs illustrated in FIG. 12 connected laterally and longitudinally to form a portion of a patio;
FIG. 14 is a partially diagrammatic vertical section along the line 14-14 of FIG. 13; and
FIG.'15 is a partially diagrammatic vertical section along the line l5-15 of FIG. 13.
With reference to FIGS. 1-4, one embodiment ofprecast concrete slab 20 of the invention, having atop face 21, abottom face 22,end walls 23 and 24, andside walls 25 and 26, has embedded therein a plurality of reinforcing rods such as the fourrods 27. As shown, therods 27 have hookedend portions 28 projecting from the end walls of theconcrete slab 20 so as to provide at least two such hookedend portions 28 projecting fromend wall 23 and two such hookedend portions 28 projecting fromend wall 24, in opposite directions. The pair of hookedend portions 28 projecting fromend wall 23 is axially offset from the pair of hookedend portions 28 projecting fromopposing end wall 24 so as to avoid interference with identical hooked portions extending from slabs placed adjacent one another to form a strip of slabs. Thus, in the arrangement of FIGS. l-4, therods 27 projecting fromend wall 23 are positioned axially inside therods 27 projecting fromend wall 24, but other arrangements are useful as explained below.
Intermediate portions 29 of each ofrods 27 are of a length sufficient to bridge a slight gap betweenadjacent slabs 20 and to support part of the weight of the adjacent slab, as explained below. Conventional reinforcingrods 31 may be embedded in the concrete slabs angularly to rods 27, if desired.
Corresponding in number to therods 27 in each slab are cavities orrecesses 32. The cavities orrecesses 32 are dimensioned to receive in locking engagement the hookedend portions 28 of next-adjacent concrete slabs. With reference particularly to FIGS. 3 and 4, it will be noted that in this embodiment theintermediate rod portion 29 extends below eachslab 20 and supports a portion of thebottom face 22 of the next adjacent slab. By reason of this support it will be evident that the next adjacent slab is stabilized with respect to relative vertical movement, while at the same time the engagement of the hookedend portion 28 incavity 32 prevents undue movement in a horizontal (lateral and longitudinal) direction. Accordingly, upon connection of adjacent slabs in the manner illustrated, the slabs are held together so as to minimize relative movement, thereby stabilizing the connected slabs against undue movement. Since in this embodiment of the invention theintermediate rod portions 29 extend below thebottom faces 22 of the slabs, such slabs are more usually employed on a relatively soft foundation so that theintermediate rod portions 29 may sink into the foundation.
FIGS. 4 and illustrate a method of connection and placement of slabs of the invention on asurface 33. One end wall of a slab of the invention is inclined slightly upwardly from thesurface 33, either by lifting or by placement thereunder of a block 34. While so oriented, the hookedend portions 28 of another slab are inserted under the raised end wall of the first slab, and the second slab is then lowered slowly into generally co-planar relative position such that the hookedend portions 28 slide into thecavities 32 of the other slab, the interengagement being effected by a scissor-like action of the slabs, with the edge of wall 23 (FIG. 4) rest ing on therod 29 of the adjacent slab, as a pivot point. The opposing end wall of the second'slab similarly then may be held in a slightly inclined position, again as 'by insertion of a block 34 thereunder, and the operation repeated. By this method, the rods-27 facilitate quick joinder of the slabs to form a stable strip, as in a roadway or walk.
FIGS. 6 and 7 show other arrangements of rods and cavities of concrete slabs of the invention. With reference to FIG. 6, there is embedded in a concrete slab 35 a pair ofrods 36 wherein the ends of each rod form hookedend portions 37 and 38. Eachrod 36 also includesintermediate portions 39 and 41 which project together with the hooked end portions from opposing end walls of theslab 35, providing the same functions as therods 27 of FIGS. 1-5. As in the embodiment of FIGS. 1-5, the hookedend portions 37 are slightly offset with respect to the opposing hookedend portions 38 so that when the slabs are joined end to end, there will be no interference as between therods 36. In the embodiment of FIG. 6, the hooked end portions are arranged such that hookedend portions 37 are axially outside of hookedend portions 38. Thecavities 42 of this embodiment also are correspondingly offset slightly so as to mate with the corresponding hooked end portions of rods of another slab of this embodiment, in formation of a strip of such slabs, essentially as described with reference to FIGS. l-5. One differencee, of course, from the embodiment of FIGS. 1-5 is that the concrete slab of FIG. 6 requires only twosuch rods 36, thus simplifying manufacture.
The offset feature of therods 36 may be provided in many ways, one of which may be the angular or bent design of therod 43 illustrated in FIG. 7.
For placement of slabs of the invention on a solid surface where it is desired to avoid clearance between the surface and the bottom face of the slabs, aslot 44 extending from each of thecavities 42 to an adjacent end wall of the slabs is provided, as illustrated in FIGS. 8-10. It will be noted that theslot 44 is positioned such that theintermediate portion 39 of therod 36 of the next adjacent slab is received in the slot and such that the bottom surface of theportion 39 is co-planar with the bottom face of the slab. At the same time, theintermediate portion 39 retains its function of supporting the weight of the next adjacent slab so as to stabilize the next adjacent slab against undue vertical movement. Of course, in this embodiment, therod 36 is embedded in the slab to a slightly greater depth than it is in theslabs 20 of FIGS. 1-5 in order to avoid projection of theintermediate portion 39 below the bottom face of the slab.
The inconvenience of carefully orienting each slab so that the appropriate end walls are made adjacent for engagement, as required in the embodiments of FIGS. l-8, is avoided by a preferred arrangement of therods 36 as illustrated in FIG. 11. In the embodiment of FIG. 11, it will be noted that the distance between thehooked end portions 37 is equal to the distance between thehooked end portions 38, although the pair ofhooked end portions 37 is offset slightly from the pair ofhooked end portions 38 so as to avoid interference between the hooked portions when the slabs are adjacent. By the equidistant positioning of the hooked end portions, each slab is interlockable from either end with either end of another slab, as illustrated in FIG. 1 l with respect to the adjacent end walls A-B and adjacent end walls B-B.
The slabs can also be modified in another embodiment of the invention to permit side-by-side engagement as well as the end-to-end engagement depicted in FIGS. l-S and 11. With reference to FIGS. 12-15, it will be noted that at least oneadditional rod 47 is embedded in each concrete slab at generally right angles to the above-describedrods 36, and also that each slab is provided with the same number ofadditional cavities 45 asadditional rods 47, for mating withhooked end portions 48 ofrods 47 of next adjacent slabs. Theintermediate rod portions 49 may extend below each of the slabs, as illustrated in FIGS. 1-5, but preferably aslot 46 is provided from thecavity 45 to the next adjacent side wall of the slab so that theintermediate rod portion 49 of the next adjacent slab will be carried in the slot and spacing between the bottom face of the slabs and a foundation surface is avoided, analogous to the embodiments described with reference to FIGS. 8-10. Theadditional rods 47, of course, are positioned offset fromcavities 42 androds 36 so that interference between the rods and cavities is avoided upon joinder of slabs. Such orientations are shown in FIGS. 14 and 15.
FIG. 13 illustrates a method of laying the slabs of FIG. 12 to form a patio-like matrix. In constructing the matrix, it is convenient first to form a strip of the slabs I, II and III, as described above with reference to FIGS. 4 and 5. In the next step, since theadditional rod 47 extends downwardly from slab I in the view of FIG. 13, and slab IV has aslot 46 running from the adjacent side wall to thecavity 45, the slab IV is simply placed adjacent slab I so that therod 47 fits into theslot 46 andhooked end portion 48 fits intocavity 45. Each additional slab, such as slabs IV, V, VI and VII, may then be placed side-by-side with other slabs in the same manner. However, the end-to-end connection, as between slabs IV, V and VI is achieved as described with reference to the first strip of slabs I, II and III. If desired, upon completion of the matrix, the projectinghooked end portions 37 and 38 may be severed, especially in layouts where a border or curb co-planar with the upper face of the slabs is not used.
Many variations of the foregoing embodiments will be evident. For example, the dimensions of the cavities and hooked end portions may be such as to provide a tight engagement. Preferably, however, some clearance is desirable to accommodate slight relative movements as between adjacent slabs and to facilitate layout of the slabs. Also, while the number and arrangements of rods as shown in the drawings ordinarily will be sufficient, a greater number of rods and cavities other than those illustrated may be employed, especially when the dimensions of the slabs require greater reinforcement and stronger locking engagement. Still further, many variations are possible upon the slabs and rods themselves, such as different curvatures to accommodate placement of the slabs on inclined or curved foundations. Also, while the connecting rods in some instances need be the only reinforcing members embedded in the concrete, in some applications it may be desirable to enhance the reinforcement by embedding additional reinforcing rods in the slabs.
It will thus be seen that the objects set forth above, among those made apparent from the preceding description, are efficiently attained and, since certain changes may be made in the above article without departing from the spirit and scope of the invention, it is intended that all matter contained in the above description and shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.
It is also to be understood that the following claims are intended to cover all of the generic and specific features of the invention herein described, and all statements of the scope of the invention which, as a matter of language, might be said to fall therebetween.
What is claimed is:
1. In a precast concrete slab for connection with other said slabs to form a generally horizontal, stable, load bearing surface, the improvement which comprises a plurality of rods firmly embedded in said slab and a plurality of cavities in the lower face of said slab and spaced from the adjacent edges thereof, said rods providing a plurality of first hooked end portions projecting beyond a first end wall of said slab adjacent the plane of said lower face and a plurality of second hooked end portions projecting beyond an opposing end wall of said slab also adjacent the plane of said lower face, said end walls corresponding to said adjacent edges, said hooked end portions being adapted to lie beneath a peripheral edge portion and to be received in said cavities of an adjacent slab having similar hooked end portions and cavities, said cavities and said hooked end portions of each slab corresponding in number, whereby a plurality of said slabs are interlockable end to end by a scissor action to form a strip of slabs.
2. A concrete slab as in claim 1 wherein said plurality of rods comprises first and second pairs of rods, the hooked end portions of saidfirst pair projecting beyond an end wall of said slab opposite the end wall beyond which project the hooked end portions of said second pair.
3. A concrete slab as in claim 2 wherein the hooked end portions of said first pair of rods are spaced farther apart than the hooked end portions of said second pair of rods.
4. A concrete slab as in claim 2 wherein the hooked end portions of said first pair of rods are spaced apart substantially the same distance as the hooked end portions of said second pair of rods.
5.-A concrete slab as in claim 1 wherein said plurality of rods comprises a pair of rods, each end of each rod defining a said hooked end portion and the end portions of each rod projecting beyond opposite end walls of said slab.
6. A concrete slab as in claim 5 wherein said rods are embedded generally parallel in said slab such that each rod passes between a pair of said cavities.
7. A concrete slab as inclaim 6 wherein the hooked end portion of each rod is equidistant from the hooked end portion of the other rod which projects beyond the same end wall, whereby said slab is interlockable from either end with either end of another said slab.
8. A concrete slab as in claim 1 further including a slot corresponding to each cavity extending from each cavity to the adjacent end wall of said slab, and wherein said hooked end portions include projecting intermediate rod portions, said slots being positioned to receive said intermediate rod portions of others of said slabs whereby said intermediate rod portions, when said slabs are interlocked end to end, lie in a plane no lower than the lower faces of said slabs.
9. A concrete slab as in claim 1 further including an additional rod embedded in said slab, said slab having an additional cavity in the lower face thereof, said additional rod having a hooked end portion and an intermediate portion each projecting beyond a side wall at a generally right angle to said other hooked end portions, said cavity being positioned to receive said additional hooked end portion of an adjacent slab, whereby said slabs are interlockable side by side to form a matrix with others of said slabs which are interlocked end to end.
10. A concrete slab as inclaim 9 further including a slot corresponding to each said additional cavity extending from each said additional cavity to an adjacent end wall of said slab, said slot being positioned to receive said projecting intermediate rod portion of another of said slabs whereby said intermediate rod portion, when said slabs are interlocked side by side to form said matrix, lies in a plane no lower than the lower faces of said slabs.
11. A precast slab for constructional use which comprises a slab body having substantially parallel first and second surfaces and end walls lying substantially normal to said surfaces, and at least one metal rod, said rod having an extended portion firmly embedded in said slab, an end portion bent to exit from the slab through said second surface, bent again to lie adjacent the plane of said second surface and to project beyond the adjacent end wall, the projecting end being further bent to lie substantially parallel to said end wall and having a length less than the thickness of the slab between the first and second surfaces, said second surface being provided with a recess spaced from said end wall and having a depth at least equal to the length of said last named rod bent end.
12. A precast slab according to claim 11 wherein the recess is spaced from the end wall by a distance equal to the length of the projecting rod from said end wall to said last named bent end.
13. A precast slab according to claim 11 which includes two rods as claimed lying substantially parallel and projecting beyond the same end of the slab and two recesses as claimed.
14. A precast slab according to claim 13 which includes another two rods as claimed lying substantially parallel and projecting beyond an opposite end wall and another two recesses spaced from said opposite end wall as claimed.

Claims (14)

1. In a precast concrete slab for connection with other said slabs to form a generally horizontal, stable, load bearing surface, the improvement which comprises a plurality of rods firmly embedded in said slab and a plurality of cavities in the lower face of said slab and spaced from the adjacent edges thereof, said rods providing a plurality of first hooked end portions projecting beyond a first end wall of said slab adjacent the plane of said lower face and a plurality of second hooked end portions projecting beyond an opposing end wall of said slab also adjacent the plane of said lower face, said end walls corresponding to said adjacent edges, said hooked end portions being adapted to lie beneath a peripheral edge portion and to be received in said cavities of an adjacent slab having similar hooked end portions and cavities, said cavities and said hooked end portions of each slab corresponding in number, whereby a plurality of said slabs are interlockable end to end by a scissor action to form a strip of slabs.
US00299683A1972-10-241972-10-24Interlocking precast concrete slabsExpired - LifetimeUS3842562A (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US00299683AUS3842562A (en)1972-10-241972-10-24Interlocking precast concrete slabs
IT53338/73AIT996329B (en)1972-10-241973-10-24 PREFABRICATED CONCRETE PLATES WITH RECIPROCAL INTERLOCKING

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US00299683AUS3842562A (en)1972-10-241972-10-24Interlocking precast concrete slabs

Publications (1)

Publication NumberPublication Date
US3842562Atrue US3842562A (en)1974-10-22

Family

ID=23155805

Family Applications (1)

Application NumberTitlePriority DateFiling Date
US00299683AExpired - LifetimeUS3842562A (en)1972-10-241972-10-24Interlocking precast concrete slabs

Country Status (2)

CountryLink
US (1)US3842562A (en)
IT (1)IT996329B (en)

Cited By (37)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4727701A (en)*1982-01-291988-03-01Figari Andres GBuilding panel
US4869643A (en)*1982-08-121989-09-26501 Stork Pompen B.V.Pump housing, mould parts of a mould wall for a pump housing and method of manufacturing a pump housing
US5332191A (en)*1992-10-261994-07-26Nolan Terry LApparatus for making concrete slabs
US20020046528A1 (en)*1999-04-302002-04-25Darko PervanLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US20020178674A1 (en)*1993-05-102002-12-05Tony PervanSystem for joining a building board
USD480819S1 (en)2003-02-142003-10-14Cyrille J. BarbierLeaf paver
US6688805B1 (en)*2001-07-192004-02-10Edmund T. KochlingPre-cast curbside access ramp and methods of making and installing the same
US6962462B2 (en)*2000-09-052005-11-08The Fort Miller Co., Inc.Method of forming, installing and a system for attaching a pre-fabricated pavement slab to a subbase and the pre-fabricated pavement slab so formed
US20080000182A1 (en)*1998-06-032008-01-03Valinge Innovation AbLocking system and flooring board
US20080005999A1 (en)*2004-01-132008-01-10Valinge Innovation AbFloor covering and locking systems
US20080028707A1 (en)*1998-06-032008-02-07Valinge Innovation AbLocking System And Flooring Board
US20080060308A1 (en)*2000-04-102008-03-13Valinge Innovation AbLocking system for floorboards
US20080168737A1 (en)*2004-01-132008-07-17Valinge Innovation AbFloor covering and locking systems
US20080256890A1 (en)*2001-07-272008-10-23Valinge Innovation AbFloor panel with sealing means
US7454875B2 (en)2004-10-222008-11-25Valinge Aluminium AbMechanical locking system for floor panels
US20090151291A1 (en)*1993-05-102009-06-18Valinge Innovation AbFloor panel with a tongue, groove and a strip
US20090297267A1 (en)*2008-06-022009-12-03B Green Innovations, Inc.Recycled tire paver blocks
US7637068B2 (en)2002-04-032009-12-29Valinge Innovation AbMechanical locking system for floorboards
US7677001B2 (en)2003-03-062010-03-16Valinge Innovation AbFlooring systems and methods for installation
US7779596B2 (en)2000-01-242010-08-24Valinge Innovation AbLocking system for mechanical joining of floorboards and method for production thereof
US7841144B2 (en)2005-03-302010-11-30Valinge Innovation AbMechanical locking system for panels and method of installing same
US7845140B2 (en)2003-03-062010-12-07Valinge Innovation AbFlooring and method for installation and manufacturing thereof
US7886497B2 (en)2003-12-022011-02-15Valinge Innovation AbFloorboard, system and method for forming a flooring, and a flooring formed thereof
US7926234B2 (en)2002-03-202011-04-19Valinge Innovation AbFloorboards with decorative grooves
US8042484B2 (en)2004-10-052011-10-25Valinge Innovation AbAppliance and method for surface treatment of a board shaped material and floorboard
US8061104B2 (en)2005-05-202011-11-22Valinge Innovation AbMechanical locking system for floor panels
US8215078B2 (en)2005-02-152012-07-10Välinge Innovation Belgium BVBABuilding panel with compressed edges and method of making same
US8245477B2 (en)2002-04-082012-08-21Välinge Innovation ABFloorboards for floorings
US8250825B2 (en)2001-09-202012-08-28Välinge Innovation ABFlooring and method for laying and manufacturing the same
US8850769B2 (en)2002-04-152014-10-07Valinge Innovation AbFloorboards for floating floors
US20150068138A1 (en)*2013-09-112015-03-12Aditazz, Inc.Concrete deck for an integrated building system assembly platform
US20160258163A1 (en)*2015-03-042016-09-08Normand SavardConcrete slab attachment device and method
US9506266B2 (en)2014-09-112016-11-29Aditazz, Inc.Concrete deck with lateral force resisting system
US20180320362A1 (en)*2017-05-032018-11-08Donald E. WheatleyParking deck connecting system
US20200199889A1 (en)*2018-12-192020-06-25Gordon NeustaeterDeck system and method of installing
US10801213B2 (en)2018-01-102020-10-13Valinge Innovation AbSubfloor joint
US11578495B2 (en)2018-12-052023-02-14Valinge Innovation AbSubfloor joint

Cited By (88)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4727701A (en)*1982-01-291988-03-01Figari Andres GBuilding panel
US4869643A (en)*1982-08-121989-09-26501 Stork Pompen B.V.Pump housing, mould parts of a mould wall for a pump housing and method of manufacturing a pump housing
US5332191A (en)*1992-10-261994-07-26Nolan Terry LApparatus for making concrete slabs
US7823359B2 (en)*1993-05-102010-11-02Valinge Innovation AbFloor panel with a tongue, groove and a strip
US20020178674A1 (en)*1993-05-102002-12-05Tony PervanSystem for joining a building board
US20090151291A1 (en)*1993-05-102009-06-18Valinge Innovation AbFloor panel with a tongue, groove and a strip
US7775007B2 (en)1993-05-102010-08-17Valinge Innovation AbSystem for joining building panels
US7856785B2 (en)1993-05-102010-12-28Valinge Innovation AbFloor panel with a tongue, groove and a strip
US7954295B2 (en)1998-06-032011-06-07Valinge Innovation AbLocking system and flooring board
US8033075B2 (en)1998-06-032011-10-11Välinge Innovation ABLocking system and flooring board
US7913471B2 (en)1998-06-032011-03-29Valinge Innovation AbLocking system and flooring board
US20080000182A1 (en)*1998-06-032008-01-03Valinge Innovation AbLocking system and flooring board
US9528276B2 (en)1998-06-032016-12-27Valinge Innovation AbLocking system and flooring board
US20080005992A1 (en)*1998-06-032008-01-10Valinge Innovation AbLocking system and flooring board
US20080028707A1 (en)*1998-06-032008-02-07Valinge Innovation AbLocking System And Flooring Board
US8429869B2 (en)1998-06-032013-04-30Valinge Innovation AbLocking system and flooring board
US7386963B2 (en)1998-06-032008-06-17Valinge Innovation AbLocking system and flooring board
US7444791B1 (en)1998-06-032008-11-04Valinge Innovation AbLocking system and flooring board
US8869486B2 (en)1998-06-032014-10-28Valinge Innovation AbLocking system and flooring board
US20110203214A1 (en)*1998-06-032011-08-25Valinge Innovation AbLocking system and flooring board
US7484338B2 (en)1999-04-032009-02-03Valinge Innovation AbLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US20110072754A1 (en)*1999-04-302011-03-31Valinge Innovation AbLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US20020046528A1 (en)*1999-04-302002-04-25Darko PervanLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US20080000189A1 (en)*1999-04-302008-01-03Valinge Innovation AbLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US8615955B2 (en)1999-04-302013-12-31Valinge Innovation AbLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US7874119B2 (en)1999-04-302011-01-25Valinge Innovation AbLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US9567753B2 (en)1999-04-302017-02-14Valinge Innovation AbLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US8215076B2 (en)1999-04-302012-07-10Välinge Innovation ABLocking system, floorboard comprising such a locking system, as well as method for making floorboards
US8234831B2 (en)2000-01-242012-08-07Välinge Innovation ABLocking system for mechanical joining of floorboards and method for production thereof
US8011155B2 (en)2000-01-242011-09-06Valinge Innovation AbLocking system for mechanical joining of floorboards and method for production thereof
US7779596B2 (en)2000-01-242010-08-24Valinge Innovation AbLocking system for mechanical joining of floorboards and method for production thereof
US8590253B2 (en)2000-04-102013-11-26Valinge Innovation AbLocking system for floorboards
US20100229491A1 (en)*2000-04-102010-09-16Valinge Innovation AbLocking system for floorboards
US7398625B2 (en)2000-04-102008-07-15Valinge Innovation AbLocking system for floorboards
US20080060308A1 (en)*2000-04-102008-03-13Valinge Innovation AbLocking system for floorboards
US7845133B2 (en)2000-04-102010-12-07Valinge Innovation AbLocking system for floorboards
US6962462B2 (en)*2000-09-052005-11-08The Fort Miller Co., Inc.Method of forming, installing and a system for attaching a pre-fabricated pavement slab to a subbase and the pre-fabricated pavement slab so formed
US6688805B1 (en)*2001-07-192004-02-10Edmund T. KochlingPre-cast curbside access ramp and methods of making and installing the same
US7073973B2 (en)2001-07-192006-07-11Kochling Edmund TPre-cast curbside access ramp and methods of making and installing the same
US20040161297A1 (en)*2001-07-192004-08-19Kochling Edmund T.Pre-cast curbside access ramp and methods of making and installing the same
US8584423B2 (en)2001-07-272013-11-19Valinge Innovation AbFloor panel with sealing means
US8028486B2 (en)2001-07-272011-10-04Valinge Innovation AbFloor panel with sealing means
US7802415B2 (en)2001-07-272010-09-28Valinge Innovation AbFloor panel with sealing means
US20080256890A1 (en)*2001-07-272008-10-23Valinge Innovation AbFloor panel with sealing means
US8250825B2 (en)2001-09-202012-08-28Välinge Innovation ABFlooring and method for laying and manufacturing the same
US7926234B2 (en)2002-03-202011-04-19Valinge Innovation AbFloorboards with decorative grooves
US8683698B2 (en)2002-03-202014-04-01Valinge Innovation AbMethod for making floorboards with decorative grooves
US8733410B2 (en)2002-04-032014-05-27Valinge Innovation AbMethod of separating a floorboard material
US7637068B2 (en)2002-04-032009-12-29Valinge Innovation AbMechanical locking system for floorboards
US7841150B2 (en)2002-04-032010-11-30Valinge Innovation AbMechanical locking system for floorboards
US7757452B2 (en)2002-04-032010-07-20Valinge Innovation AbMechanical locking system for floorboards
US8245477B2 (en)2002-04-082012-08-21Välinge Innovation ABFloorboards for floorings
US8850769B2 (en)2002-04-152014-10-07Valinge Innovation AbFloorboards for floating floors
USD480819S1 (en)2003-02-142003-10-14Cyrille J. BarbierLeaf paver
US7845140B2 (en)2003-03-062010-12-07Valinge Innovation AbFlooring and method for installation and manufacturing thereof
US7677001B2 (en)2003-03-062010-03-16Valinge Innovation AbFlooring systems and methods for installation
US8293058B2 (en)2003-12-022012-10-23Valinge Innovation AbFloorboard, system and method for forming a flooring, and a flooring formed thereof
US8613826B2 (en)2003-12-022013-12-24Valinge Innovation AbFloorboard, system and method for forming a flooring, and a flooring formed thereof
US7886497B2 (en)2003-12-022011-02-15Valinge Innovation AbFloorboard, system and method for forming a flooring, and a flooring formed thereof
US9970199B2 (en)2003-12-022018-05-15Valinge Innovation AbFloorboard, system and method for forming a flooring, and a flooring formed thereof
US9605436B2 (en)2003-12-022017-03-28Valinge Innovation AbFloorboard, system and method for forming a flooring, and a flooring formed thereof
US20080168737A1 (en)*2004-01-132008-07-17Valinge Innovation AbFloor covering and locking systems
US9322183B2 (en)2004-01-132016-04-26Valinge Innovation AbFloor covering and locking systems
US20080005999A1 (en)*2004-01-132008-01-10Valinge Innovation AbFloor covering and locking systems
US7762293B2 (en)2004-01-132010-07-27Valinge Innovation AbEquipment for the production of building panels
US7516588B2 (en)2004-01-132009-04-14Valinge Aluminium AbFloor covering and locking systems
US10138637B2 (en)2004-01-132018-11-27Valinge Innovation AbFloor covering and locking systems
US8495849B2 (en)2004-01-132013-07-30Valinge Innovation AbFloor covering and locking systems
US9623433B2 (en)2004-10-052017-04-18Valinge Innovation AbAppliance and method for surface treatment of a board shaped material and floorboard
US8042484B2 (en)2004-10-052011-10-25Valinge Innovation AbAppliance and method for surface treatment of a board shaped material and floorboard
US7454875B2 (en)2004-10-222008-11-25Valinge Aluminium AbMechanical locking system for floor panels
US8215078B2 (en)2005-02-152012-07-10Välinge Innovation Belgium BVBABuilding panel with compressed edges and method of making same
US7841144B2 (en)2005-03-302010-11-30Valinge Innovation AbMechanical locking system for panels and method of installing same
US8061104B2 (en)2005-05-202011-11-22Valinge Innovation AbMechanical locking system for floor panels
US8733065B2 (en)2005-05-202014-05-27Valinge Innovation AbMechanical locking system for floor panels
US8171692B2 (en)2005-05-202012-05-08Valinge Innovation AbMechanical locking system for floor panels
US20090297267A1 (en)*2008-06-022009-12-03B Green Innovations, Inc.Recycled tire paver blocks
US20150068138A1 (en)*2013-09-112015-03-12Aditazz, Inc.Concrete deck for an integrated building system assembly platform
US9506266B2 (en)2014-09-112016-11-29Aditazz, Inc.Concrete deck with lateral force resisting system
US9797139B2 (en)*2015-03-042017-10-24Normand SavardConcrete slab attachment device and method
US20160258163A1 (en)*2015-03-042016-09-08Normand SavardConcrete slab attachment device and method
US20180320362A1 (en)*2017-05-032018-11-08Donald E. WheatleyParking deck connecting system
US10689839B2 (en)*2017-05-032020-06-23Donald E. WheatleyParking deck connecting system
US10801213B2 (en)2018-01-102020-10-13Valinge Innovation AbSubfloor joint
US10941578B2 (en)2018-01-102021-03-09Valinge Innovation AbSubfloor joint
US11578495B2 (en)2018-12-052023-02-14Valinge Innovation AbSubfloor joint
US12116787B2 (en)2018-12-052024-10-15Välinge Innovation ABSubfloor joint
US20200199889A1 (en)*2018-12-192020-06-25Gordon NeustaeterDeck system and method of installing

Also Published As

Publication numberPublication date
IT996329B (en)1975-12-10

Similar Documents

PublicationPublication DateTitle
US3842562A (en)Interlocking precast concrete slabs
US5702208A (en)Grid-locked block panel system
US4167840A (en)Reinforced masonry wall construction
US3640191A (en)Decking system
US8800236B2 (en)Construction block
AU2003213487A1 (en)Retaining wall system
US4040225A (en)Building block and wall construction
CA1275359C (en)Structural blocks and structural system utilizing same
US5205675A (en)Precast cribbing wall system
US4703599A (en)Concrete masonry footer block foundation system and blocks therefor
US4798036A (en)Concrete masonry footer block foundation system and blocks therefor
US2844024A (en)Combination preformed and cast-in-situ reinforced flooring structure
US4930283A (en)Brick
US4613255A (en)Embankment stabilizing brick
CA1040471A (en)Sealing member
US2419843A (en)Building construction
US2820349A (en)Wall elements
NL8901218A (en) SUPPORT STRUCTURE FOR STABILIZING THE SOIL.
US2906113A (en)Interconnected lightweight floor slabs
US4586302A (en)Construction-type support system
KR0136773Y1 (en) Base Block Block for Block Reinforced Earth Retaining Wall Construction
US3063202A (en)Interlocking concrete construction
CN210712914U (en)High slope friction pile and retaining wall combined supporting structure
GB2266740A (en)Arch structure
GB2216933A (en)Retaining wall composed of prefabricated concrete elements

[8]ページ先頭

©2009-2025 Movatter.jp