EP1027500A2 - Pave, jeu de paves et dispositif de production correspondant - Google Patents

Pave, jeu de paves et dispositif de production correspondant

Info

Publication number
EP1027500A2
EP1027500A2 EP98950083A EP98950083A EP1027500A2 EP 1027500 A2 EP1027500 A2 EP 1027500A2 EP 98950083 A EP98950083 A EP 98950083A EP 98950083 A EP98950083 A EP 98950083A EP 1027500 A2 EP1027500 A2 EP 1027500A2
Authority
EP
European Patent Office
Prior art keywords
paving
stone
stones
paving stones
namely
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.)
Granted
Application number
EP98950083A
Other languages
German (de)
English (en)
Other versions
EP1027500B1 (fr
Inventor
Gerhard Hagenah
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.)
SF Kooperation GmbH Beton Konzepte
Original Assignee
SF Kooperation GmbH Beton Konzepte
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 SF Kooperation GmbH Beton Konzepte filed Critical SF Kooperation GmbH Beton Konzepte
Publication of EP1027500A2 publication Critical patent/EP1027500A2/fr
Application granted granted Critical
Publication of EP1027500B1 publication Critical patent/EP1027500B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C5/00Pavings made of prefabricated single units
    • E01C5/06Pavings made of prefabricated single units made of units with cement or like binders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B7/00Moulds; Cores; Mandrels
    • B28B7/0064Moulds characterised by special surfaces for producing a desired surface of a moulded article, e.g. profiled or polished moulding surfaces
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B7/00Moulds; Cores; Mandrels
    • B28B7/0064Moulds characterised by special surfaces for producing a desired surface of a moulded article, e.g. profiled or polished moulding surfaces
    • B28B7/0082Moulds characterised by special surfaces for producing a desired surface of a moulded article, e.g. profiled or polished moulding surfaces with surfaces for moulding parallel grooves or ribs
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C5/00Pavings made of prefabricated single units
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C2201/00Paving elements
    • E01C2201/02Paving elements having fixed spacing features
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C2201/00Paving elements
    • E01C2201/06Sets of paving elements

Definitions

  • the invention relates to a (concrete) paving stone for the creation of soil coverings, in particular paving slabs, the paving stones being laid between adjacent paving stones to form (longitudinal and transverse) joints and the joints being filled with joint filling material. Furthermore, the invention relates to a kit made of paving stones and a device for producing paving stones for curve sets.
  • the demands placed on the design of concrete paving stones are increasing.
  • the external appearance should be appealing.
  • the paving stones should form vertical and horizontal interlocking with neighboring paving stones - horizontally and vertically - to protect the ground from the stresses of rolling traffic.
  • the invention is concerned with paving stones which, due to their design, ensure a horizontal alliance and a vertical cal alliance within the pavement. It is about the special design of such paving stones as well as the production of paving stones for a curve set.
  • the invention has for its object to form paving stones with horizontal and Verti kal alliance so that a load-bearing, resilient soil cover is made and special designs of paving slabs are possible.
  • the paving stone according to the invention is characterized in that the joints formed between the adjacent paving stones have a cross-section diverging from a stone top down to a stone underside due to the corresponding configuration of side surfaces of the paving stones.
  • the design of the paving stone according to the invention ensures that the longitudinal joints and / or transverse joints between the adjacent paving stones enable reliable filling with joint filling material, in particular sand or gravel.
  • the gap width of the joints increases downwards, so that wedging of particles of the joint filling material is avoided.
  • the joints are delimited by corresponding inclined surfaces of the paving stones, they have an angle which is smaller than the angle of repose of the joint filling material, that is to say in particular less than 30 °.
  • the paving stones on certain, selected areas of the side surfaces, namely exclusively in the area of a stone base, are provided with Spacers.
  • a kit of curbs according to the invention is proposed to form a pavement with slanted rows of paving stones.
  • the invention consists in the special design of a concrete block mold for the production of wedge-shaped paving stones.
  • converging shaped webs are arranged on a drawing plate in the same direction of drawing.
  • the (wedge-shaped) paving stones of different sizes are arranged in rows so that the (transverse) dimensions decrease in the direction of drawing of the drawing plate.
  • FIG. 1 is a paving stone with horizontal and vertical composite in plan view, 2 the paving stone of FIG. 1 in a view from a Untersei te,
  • FIG. 3 shows a cross section through the paving stone according to FIGS. 1 and 2 in a central transverse plane
  • FIGS. 1 and 2 shows a cross section through the paving stone according to FIGS. 1 and 2 in a lateral transverse plane
  • FIG. 7 is a bottom view of the pavement according to FIG. 6,
  • FIG. 8 is a paving stone, namely a curb, for a paving according to FIG. 7 in bottom view,
  • FIG. 9 is a further curb for the pavement according to FIG. 7 in bottom view
  • 10 is a kit made of paving stones, namely a set of curves in bottom view,
  • FIG. 11 shows a device, namely a stone mold, for producing paving stones in a top view
  • FIG. 12 shows a detail of the device according to FIG. 11, namely a drawing plate, likewise in a top view
  • Fig. 14 paving stones resting on a drawing sheet in cross section.
  • Fig. 1 to Fig. 5 show details of a specially designed paving stone 10 made of concrete.
  • This is basically Rectangular design with long sides 11 and 12 and transverse sides 13 and 14.
  • the paving stone 10 forms a "toothing" through projections and depressions, such that adjacent paving stones 10 within a paving slab in the horizontal and vertical directions Composite are laid (horizontal composite and vertical composite).
  • the upright transverse sides 13 and 14 have a smooth surface, that is to say without a composite effect.
  • the paving stone 10 consists of a stone upper part 15 and a stone lower part 16.
  • the stone upper part 15 is rectangular in plan view or is provided with a rectangular stone top 17.
  • the stone lower part 16 has projections and depressions which enable the mutual interlocking of adjacent paving stones 10 and thus the horizontal and vertical allies. This bond is not recognizable from the outside or from the top in the finished pavement (e.g. Fig. 7) because the stone tops 17 are exclusively e.g. are rectangular.
  • the lower stone part 16 is provided with a central projection 18 in the region of the one long side 11. Opposite this, a correspondingly designed recess 19 is formed. Projection 18 and corresponding recess 19 are trapezoidal, that is to say with an outer surface 20 running parallel to the long side 11 and a corresponding inner surface 21 and also with corresponding oblique flanks 22, 23. Lateral corner recesses 24 and corresponding corner projections 25 are associated with the projection 18 as (Part 1 -) delimitation of the recess 19.
  • the transition from the (rectangular) stone upper part 15 to the complexly designed stone lower part 16 takes place via inclined intermediate surfaces, namely inclined surfaces 26 in the area of the corner recesses 24 on the one hand and an inclined surface 27 in the area the recess 19. Also between the projection 18 on the one hand and the stone upper part 15 on the other hand or between the corner projections 25 on the one hand and the stone upper part 15 on the other hand, sloping surfaces 28, 29 are formed in each case. The latter are visible from a top view of the paving stone 10 (FIG. 1), while the inclined surfaces 26, 27 appear as visible surfaces from a bottom view of the paving stone 10 (FIG. 2).
  • the paving stones 10 laid to form a pavement are mutually interlocked.
  • the projection 18 of a paving stone 10 positively enters the recess 19 of an adjacent paving stone.
  • the corner protrusions 25 protrude into corner recesses 24 of an adjacent paving stone 10. Due to the vertical offset between the stone upper part 15 and areas of the stone lower part 16, the vertical surfaces between the inclined surfaces 26 and the inclined surfaces 29 and the inclined surface 27 on the inclined surface 28 additionally form a vertical joint.
  • Upright stone surfaces 30 of the upper stone part 15 and stone surfaces 31 of the lower stone part 16 are formed, as are inclined surfaces 26.29.29, in such a way that the laid paving stones 10 form diverging joints downwards, that is to say widening from the stone top side 17 downwards.
  • the relevant stone surfaces of the paving stones 10, which form opposite one another to form a longitudinal joint 32 or a transverse joint 33, are for this purpose slightly inclined to an (imaginary) vertical plane, for example by an angle of 1 ° to 2 °.
  • the area of the inclined surfaces 26 to 29 is formed analogously, that is to say also with a gap which gradually widens downwards. Furthermore, the inclination of the inclined surfaces 26..29 is selected such that the angle of inclination is not greater than the angle of repose of joint filler material, for example sand or gravel, relative to an (imaginary) vertical plane. This means that in practice the angle of the inclined surfaces 26..29 is not greater than 30 °. This cross-sectional shape of the joints, which opens downwards, ensures that the joint filling material is correctly inserted over the entire height of the joints.
  • spacers are molded on at selected positions. These are located exclusively in the area of the lower stone part 16 and are therefore not visible from the top of a paving.
  • two spacers 36 are arranged on the outer surface 20 of the projection 18 at a distance from one another. These lie in the area of the recess 19 on an adjacent paving stone.
  • the two corner projections 25 are each provided with a spacer 37.
  • Smaller spacers 38 and 39 are attached to the flanks 22 and 23 of the projection 18 on the one hand and the recess 19 on the other.
  • the spacers 38, on the one hand, and 39, on the other hand, are positioned such that they are spaced apart when the paving stones are laid.
  • a spacer 40 is attached to a transverse side 13, 14. These spacers 40 are also staggered so that they abut against adjacent paving stones 10 at a distance from one another.
  • FIG. 6 shows a view from the stone top 17
  • Fig. 7 shows a bottom view with the horizontal and vertical teeth.
  • Edge stones 42, 43 are formed in a special way.
  • the curbs 42, 43 are designed in the area of the lower stone part 16 in such a way that they form-fittingly connect to two obliquely directed rows of stones 41 and terminate in a straight line form the outside.
  • the Curbs 42, 43 are designed to match, namely with a rectangular and a triangular section (FIG. 6). The triangular area adjoins two adjacent rows of stones 41.
  • the stone lower parts 16 are designed differently.
  • a part 1 projection 44 is formed, which fits into the area of a corner recess 24 of an adjacent paving stone 10.
  • the other curb 43 is instead provided with a corner projection 45 - analogous to the corner projection 25 of a paving stone.
  • the corner projection 45 - with a corner projection 25 of an adjacent paving stone 10 - enters a recess 19 of a paving stone 10 of the adjacent row of stones 41.
  • This design of the curbs 42, 43 applies to the laying of the paving stones 10 with an offset from the row of stones 41 to the row of stones.
  • the paving stones 10 are laid in a semi-bond, two corner projections 25 of adjacent paving stones 10 each entering a recess 19 of a paving stone 10 of the adjacent row of stones 41.
  • Another special feature relates to the design and manufacture of paving stones with converging longitudinal sides 11, 12, namely cam disks.
  • a set of geometrically coordinated, namely wedge-shaped increasing curve stones 46 results in a curve set 47 according to FIG. 11.
  • By laying a plurality of curve sets 47 next to one another, an arcuate route of a paving can be produced.
  • both longitudinal sides 11, 12 of the curve stones 46 are arranged obliquely, that is to say they run in a wedge shape. This applies both to the stone upper part 15 and to the stone lower part 16. This gives a full composite effect, namely with horizontal and vertical connections, also in the area of the curve sets 47.
  • a special feature is the production of such curved blocks 46. Concrete blocks are usually manufactured in concrete molds which have a number of mold nests which are open from above and below. The fresh concrete is poured into this. The mold nests are closed on the underside by a base board. Form stamps enter the individual mold nests from above in order to ensure an upper limit for the concrete blocks.
  • Fig. 11 shows such a concrete form in plan view.
  • the mold cavities 48 are designed so that the upper stone part 15, ie the upper side 17 of the stone, faces downwards and the lower stone part 16 with the toothings upwards. From above, form stamps enter the mold nests which have the outline contour of the lower stone part 16, that is to say form the latter.
  • the lower stone part 16 rests on a special drawing plate 49, a plate-shaped, thin-walled organ which, after the paving stones 10 or the curved stones 46 have been formed, is pulled out laterally within the mold nests 48, so that the (fresh) stones then lie on an underlying one Rest the underlay (underlay board).
  • the drawing plate 49 has the task of forming the areas of the stone upper part 15 on the long sides 11, 12 and also fertilizing the undercut, namely inclined surfaces 28 and 29.
  • shaped webs 51 are arranged on the top of the drawing plate 49 in the direction of the drawing movement according to arrow 50. These are upright ribs which run transversely to the drawing plate 49 and which, with side faces, form the shape of a lower partial region of the paving stones 10 or curved stones 46, namely the stone upper part 15.
  • the shaped webs 51 are roof-shaped for this purpose in the upper cross-sectional region.
  • the oblique shaped surfaces 52 formed in this way lie against undercut or downwardly directed oblique surfaces 28, 29 (FIG. 14).
  • the upward sloping surfaces 26, 27, on the other hand, are formed by the individual shaping dies (not shown) assigned to each mold cavity 48.
  • the drawing plate 49 is oriented in the present case to the design of curved stones 46.
  • the Shaped webs 51 a cross-sectional shape diverging in the direction of drawing (FIG. 14).
  • the width of the shaped webs 51 increases in the direction of drawing.
  • This design of the mold webs corresponds to the positioning of the mold cavities 48 within the concrete mold (FIG. 11).
  • the form nests arranged in longitudinal and transverse rows are distributed in terms of size such that the transverse dimension of the wedge-shaped curve blocks 46 decreases in the direction of drawing according to arrow 50.
  • each transverse row 53 of the mold cavities 48 the width decreases in the drawing direction according to arrow 50, specifically in a wedge-shaped manner, so that correspondingly wedge-shaped shaped webs 51 each have an increasing width in the drawing direction on the mutually facing longitudinal sides 11, 12 of the curve stones 46 of adjacent transverse rows 53
  • This relative position also enables trouble-free demolding, namely pulling out the drawing plate 49 in the direction of the arrow 50.
  • the width of the molding webs 51 which decreases in the opposite direction to the drawing direction, allows them to be pulled out between the transverse rows 53.
  • the shape of the long sides 11, 12 This remains in the area of the lower stone part 16 and the undercut sloping surfaces 28, 29.
  • the construction principle of the concrete form or of the drawing plate 49 can also be used for wedge-shaped concrete blocks with undercuts that are designed in a different way.

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Road Paving Structures (AREA)
  • Road Repair (AREA)
  • Details Of Garments (AREA)
  • Floor Finish (AREA)
EP98950083A 1997-10-27 1998-09-25 Pave, jeu de paves et dispositif de production correspondant Expired - Lifetime EP1027500B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE19747421 1997-10-27
DE19747421A DE19747421A1 (de) 1997-10-27 1997-10-27 (Beton-)Pflasterstein, Bausatz aus (Beton-)Pflastersteinen und Vorrichtung zum Herstellen derselben
PCT/EP1998/006118 WO1999022072A2 (fr) 1997-10-27 1998-09-25 Pave, jeu de paves et dispositif de production correspondant

Publications (2)

Publication Number Publication Date
EP1027500A2 true EP1027500A2 (fr) 2000-08-16
EP1027500B1 EP1027500B1 (fr) 2005-07-13

Family

ID=7846768

Family Applications (1)

Application Number Title Priority Date Filing Date
EP98950083A Expired - Lifetime EP1027500B1 (fr) 1997-10-27 1998-09-25 Pave, jeu de paves et dispositif de production correspondant

Country Status (9)

Country Link
US (1) US6263633B1 (fr)
EP (1) EP1027500B1 (fr)
AT (1) ATE299542T1 (fr)
AU (1) AU9628398A (fr)
CA (1) CA2307228C (fr)
DE (2) DE19747421A1 (fr)
DK (1) DK1027500T3 (fr)
ES (1) ES2245045T3 (fr)
WO (1) WO1999022072A2 (fr)

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Also Published As

Publication number Publication date
ATE299542T1 (de) 2005-07-15
EP1027500B1 (fr) 2005-07-13
US6263633B1 (en) 2001-07-24
DE59812925D1 (de) 2005-08-18
CA2307228C (fr) 2007-05-22
WO1999022072A2 (fr) 1999-05-06
WO1999022072A3 (fr) 1999-07-15
DK1027500T3 (da) 2005-11-14
CA2307228A1 (fr) 1999-05-06
DE19747421A1 (de) 1999-04-29
AU9628398A (en) 1999-05-17
ES2245045T3 (es) 2005-12-16

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