EP3483340A1 - Sols pour terrain d'équitation ou de sport et procédé de fabrication d'un sol pour terrain d'équitation ou de sport - Google Patents

Sols pour terrain d'équitation ou de sport et procédé de fabrication d'un sol pour terrain d'équitation ou de sport Download PDF

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Publication number
EP3483340A1
EP3483340A1 EP18198810.6A EP18198810A EP3483340A1 EP 3483340 A1 EP3483340 A1 EP 3483340A1 EP 18198810 A EP18198810 A EP 18198810A EP 3483340 A1 EP3483340 A1 EP 3483340A1
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EP
European Patent Office
Prior art keywords
layer
riding
floor
elasticity
shock absorption
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.)
Withdrawn
Application number
EP18198810.6A
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German (de)
English (en)
Inventor
Werner Otto
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of EP3483340A1 publication Critical patent/EP3483340A1/fr
Withdrawn legal-status Critical Current

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Classifications

    • A—HUMAN NECESSITIES
    • A63—SPORTS; GAMES; AMUSEMENTS
    • A63K—RACING; RIDING SPORTS; EQUIPMENT OR ACCESSORIES THEREFOR
    • A63K1/00—Race-courses; Race-tracks
    • E—FIXED CONSTRUCTIONS
    • E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C13/00—Pavings or foundations specially adapted for playgrounds or sports grounds; Drainage, irrigation or heating of sports grounds
    • E01C13/02—Foundations, e.g. with drainage or heating arrangements
    • E—FIXED CONSTRUCTIONS
    • E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C13/00—Pavings or foundations specially adapted for playgrounds or sports grounds; Drainage, irrigation or heating of sports grounds
    • E01C13/06—Pavings made in situ, e.g. for sand grounds, clay courts E01C13/003
    • E01C13/065—Pavings made in situ, e.g. for sand grounds, clay courts E01C13/003 at least one in situ layer consisting of or including bitumen, rubber or plastics
    • E—FIXED CONSTRUCTIONS
    • E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C13/00—Pavings or foundations specially adapted for playgrounds or sports grounds; Drainage, irrigation or heating of sports grounds
    • E01C13/08—Surfaces simulating grass ; Grass-grown sports grounds

Definitions

  • the present invention relates to a riding or sports ground, in particular suitable for example for dressage or show jumping riding floor, and a method for producing such a riding or sports ground.
  • a conventional riding or sports ground has a laid on a substrate arrangement of plate-shaped, juxtaposed floor fasteners and a footing on the floor mounting elements.
  • the floor fasteners serve to create a stable foundation for the footing or a stable floor surface.
  • the riding surface eg show jumping, dressage, vaulting, western riding, lunging, etc.
  • the sports ground eg depending on different sports
  • must generally meet different special requirements in particular with regard to elasticity, shock absorption, sure-footedness, water balance, etc.). ), which can be influenced in part by the correct choice of floor fasteners.
  • Suitable floor fasteners for the construction of riding surfaces are for example in the EP 0 667 927 B1 and the DE 200 19 812 U1 described or known as so-called perforated mats, riding mats and tournament mats Otto Sport International GmbH, Altdorf, Germany.
  • the floor fasteners should also provide good water management, ie store water on the one hand to prevent the footing from drying out, and on the other hand remove excess water to prevent over-hardening or silting of the footing.
  • These perforated mats are usually laid on a water-permeable intermediate layer of gravel or split.
  • EP 2 599 916 B1 a riding or sports ground, which has a laid on a substrate layer of substantially plate-shaped, juxtaposed floor fasteners, wherein between the substrate and the location of floor fasteners a layer of elasticity of textile or Plastic chips is heaped up as a separate component from the ground fasteners.
  • the riding or sports ground floor comprises: a layer of substantially plate-shaped, juxtaposed floor fastening elements, which are laid on a substrate; a footing on the location of floor fasteners; and an elastic and shock absorbing layer of unbonded granules and / or flour of a rubber or plastic material between the substrate and the sheet of floor fasteners.
  • the riding or sports ground of the invention is characterized by the elasticity and shock absorption layer of an unbound granules / rubber / plastic flour under the location of soil fasteners.
  • Such elastic and shock absorption layer of an unbound granules / rubber / plastic flour has in addition to excellent elastic properties also excellent shock-absorbing properties compared to the conventionally used pure elastic layers, thereby protecting the health of the riding or sports ground using horses or athletes can be further improved.
  • the excellent elastic and shock absorbing properties can be permanently guaranteed.
  • Such elasticity and shock absorption layer of an unbound granules / flour made of rubber / plastic is also permeable to water and permanently weather-resistant and rot-resistant.
  • the elasticity and shock absorption layer is due to their choice of materials also able to compensate for any unevenness of the ground.
  • the riding or sports ground floor according to the invention is simple and inexpensive and can be produced.
  • the riding or sports ground of the invention is particularly suitable as a riding floor for dressage, as in this case a high elasticity of the riding floor, for. is desirable for a resilient gear of the horses, or for show jumping, since in this case a high shock absorption capacity of the riding is desired, without the invention being limited to these applications.
  • the riding or sports ground floor according to the invention is suitable both for outdoor and indoor use.
  • ground in this context includes any surface.
  • the substrate is preferably substantially flat, but may also have unevenness. It may be a natural subsoil (e.g., soil, gravel) or an artificial subsoil (e.g., concrete floor).
  • the substrate also includes indoor and outdoor surfaces.
  • floor fastening element is to be understood as meaning any type of element which is suitable for forming a substantially stable and substantially planar floor surface or a substantially stable and substantially flat base for a floor.
  • the floor fastening elements are preferably made of a rubber material, plastic material (eg PVC, PU, etc.) or fleece.
  • the floor fastening elements are substantially plate-shaped, ie as flat components with any basic shape.
  • the basic shape of the floor fastening elements is preferably rectangular or square.
  • the floor fastening elements of the layer are preferably designed to be identical to one another (ie the same board thickness and the same basic shape).
  • the plate-shaped floor fastening elements are preferably inherently stable plate elements, as are known, for example, as so-called perforated mats from Otto Sport International GmbH, Altdorf, Germany.
  • the thickness of such floor fasteners is preferably in the range of about 1 to 6 cm, preferably about 2 to 4 cm. In the context of the invention, however, plate-shaped floor fastening elements should also be understood to mean those plate-shaped or mat-shaped elements which can be rolled up and unwound (for example nonwoven mats, etc.).
  • the thickness of such floor fasteners is preferably in the range of about 0.2 to 4 cm, preferably about 0.5 to 2 cm.
  • the floor fasteners are arranged side by side, so that a preferably in Substantially closed surface results in the position of floor fasteners, ie there are substantially no gaps between the adjacent floor fasteners.
  • the floor fastening elements are preferably arranged substantially in the same plane and are preferably aligned substantially parallel to one another, so that a substantially planar surface results for the arrangement of the floor fastening elements. In order to achieve a stable connection of the floor fastening elements, these are in a preferred embodiment via a tongue and groove system interconnected or interlocked or locked together.
  • the elasticity and shock absorption layer of the riding or sports ground floor according to the invention is formed from an unbound granulate and / or flour from a rubber or plastic material.
  • the granules in this context have a grain size in the range of about 0.5 mm to about 5.0 mm, preferably from about 1.0 mm to about 4.0 mm, and the flour in this context has a grain size in the range of about 0.4 mm to about 0.6 mm.
  • the elastic and shock absorbing layer contains the granules and / or flour in unbound form, i. as a loose / loose material pile.
  • the granules and / or flour of the elastic and shock absorbing layer is preferably made of a recycled material (e.g., truck tires, shoe soles, etc.).
  • a recycled material e.g., truck tires, shoe soles, etc.
  • the plastic from which the granules or flour can be made it is basically any plastic material; preferably PC, PE, PA, PP, PTFE, PS, PVC, PU and the like are used.
  • the invention includes embodiments in which the elasticity and shock absorption layer is disposed directly or indirectly on the substrate, and embodiments in which the floor attachment elements are disposed directly or indirectly on the elasticity and shock absorption layer.
  • the arranging or laying of a component on another component in each case in general generally involves arranging the components directly on one another, but also arranging the components on top of each other with at least one further component in between.
  • the elasticity and shock absorption layer preferably has a layer thickness of at least about 2 cm and / or at most about 10 cm, preferably in the range of about 3 to 8 cm, more preferably in the range of about 4 to 6 cm.
  • the granules and / or flour of the elasticity and shock absorption layer is at least partially filled in flexible bags.
  • the bags are preferably tear-resistant.
  • the bags are preferably permeable to water.
  • the bags are preferably designed as jute or linen bags. These filled with the granules and / or flour bags are preferably laid side by side and / or one above the other on the ground.
  • the pockets are preferably pillow-shaped or tubular.
  • all or at least part of the pockets of the elasticity and shock absorption layer have a single internal space filled with the granules and / or flour.
  • all or at least part of the pockets of the elasticity and shock absorption layer have a plurality of mutually separate internal spaces which are each filled with the granules and / or flour.
  • the pockets may be made from pockets having a single interior, which are seamed to form a plurality of separate internal spaces.
  • the nonwoven fabric or the geotextile preferably has a layer thickness of at least 0.5 mm and / or at most 1.5 mm.
  • a road construction fleece of the GRK class 2, 3, 4 or 5 is preferably used.
  • the footing on the location of floor fasteners is preferably formed of sand, a sand-fleece mixture or a sand-wood shavings mixture.
  • the layer thickness of the tread layer is preferably at least about 2 cm, more preferably at least about 3 cm, even more preferably at least about 4 cm, and / or at most about 20 cm, more preferably at most about 15 cm, even more preferably at most about 10 cm. It is thus preferably in the range of about 2 to 20 cm, more preferably about 3 to 15 cm, more preferably about 4 to 10 cm.
  • the footing on its upper side facing away from the ground also carry a lawn or artificial turf.
  • a water-permeable retention layer is additionally provided between the layer of floor fastening elements and the footing layer.
  • This water-permeable retention layer is preferably formed from gravel, split, gravel and / or coarse sand.
  • the retention layer is intended to serve as a water-guiding layer on the floor fastening elements and, on the other hand, to prevent the footing material from penetrating into perforations, etc. in the floor fastening elements and clogging them.
  • the layer thickness of the retention layer is preferably about 5 to 30 mm. If the floor fasteners are provided with projections on their upper side, the retention layer preferably extends to at least the upper edges of the highest projections.
  • all or at least part of the floor fastening elements of the layer of floor fastening elements are water-permeable.
  • the water permeability of the floor fasteners is preferably achieved through apertures, through holes, slots or the like which preferably extend therethrough substantially in the thickness direction of the floor fasteners.
  • the water permeability of the floor fastening elements may alternatively or additionally be effected by a choice of material, a material condition, a porosity or the like.
  • all or at least a part of the floor fastening elements of the position of floor fastening elements at their Surface facing away from the top a variety of protrusions.
  • the projections are preferably formed like a knob.
  • the plurality of protrusions on the top of the bottom attachment member on projections in at least two different heights are each distributed in a matrix-like manner and mutually offset relative to one another on the upper side of the floor fastening element, so that in each case low projections and high projections alternate.
  • This embodiment increases the slip resistance, for example, for horses in a riding floor.
  • all or at least part of the floor fastening elements of the layer of floor fastening elements can be provided with at least one water storage element on their upper side facing away from the substrate.
  • the floor fastening elements of the layer of floor fastening elements can have a multiplicity of projections on their underside facing the base.
  • the floor fastening elements of the layer of floor fastening elements can have a flat underside facing the base.
  • one or both embodiments may be present in the location of floor fasteners.
  • the floor fasteners of the layer of floor fasteners are preferably at least partially made of recycled material.
  • a waterproof film is provided between the substrate and the elasticity and shock absorption layer.
  • the waterproof film is preferably made of a weather-resistant plastic material.
  • an elasticity and shock absorption layer is made of an unbound granulate and / or flour of a rubber or plastic material disposed on a substrate, a layer of plate-shaped, juxtaposed floor fasteners is laid on the elasticity and shock absorbing layer, and then a footing layer is placed on the layer of floor fasteners.
  • the elastic and shock absorbing layer is preferably configured as described above in connection with the riding or sports ground.
  • a nonwoven fabric or geotextile is additionally arranged between the elasticity and shock absorption layer and the layer of floor fastening elements.
  • the nonwoven fabric or the geotextile are preferably designed as described above in connection with the riding or sports ground.
  • a water-permeable retention layer is additionally arranged between the layer of floor fastening elements and the footing layer.
  • This retention layer is preferably configured as described above in connection with the riding or sports ground.
  • a waterproof film is additionally arranged between the substrate and the elasticity and shock absorption layer.
  • the floor fasteners are preferably configured as described above in connection with the riding or sports ground.
  • Fig. 1 shows the construction of a first embodiment of a riding floor according to the invention.
  • a layer of unbound rubber granules 14 having a layer thickness of, for example, about 5 cm is poured up in order to form an elasticity and shock absorption layer 12.
  • the rubber granulate 14 is preferably made of a recycled material, for example truck tires.
  • the rubber granule 14 has, for example, a (mixed) grain size in the range of 1.0 to 4.0 mm.
  • a flour or a granule-flour mixture can be used;
  • a plastic material may also be used.
  • the elasticity and shock absorption layer 12 also forms a drainage layer.
  • a water-permeable nonwoven fabric 30 is then placed, for example in the form of a road construction fleece quality GRK 2, 3, 4 or 5 with a thickness of, for example, about 1.0 mm.
  • the road construction web is, for example, unrolled in a plurality of webs side by side on the elasticity and shock absorption layer 12.
  • a layer 16 of plate-shaped, juxtaposed bottom attachment elements 18 is provided on the nonwoven fabric 30.
  • These floor fastening elements 18 are, for example, so-called perforated mats from Otto Sport International GmbH, Altdorf, Germany, as they are exemplified in US Pat DE 200 19 812 U1 are disclosed.
  • the floor fasteners 18 are made of a rubber or plastic material and have a thickness of, for example, 3 to 5 cm (based on the base plate, ie without the projections described below).
  • the bottom attachment elements 18 in this embodiment on its upper side facing away from the base 10 (top in Fig. 1 ) each have a plurality of projections 26a, 26b in two different heights (relative to the base plate of the floor fasteners 18).
  • the higher projections 26a and the lower projections 26b are in each case distributed in a matrix-like manner on the upper side of the floor fastening elements 18, the two matrix-like distributions being offset from one another, so that a higher projection 26a always follows a lower projection 26b and vice versa.
  • This embodiment of the floor fastening elements 18 offers a high slip resistance for the horses.
  • the higher protrusions 26a have a height of about 30 mm
  • the lower protrusions 26b have a height of about 20 mm.
  • the bottom attachment elements 18 also on its underside 10 facing bottom (bottom in Fig. 1 illustrated, the bottom attachment elements 18 also on its underside 10 facing bottom (bottom in Fig. 1 ).
  • Each of these protrusions 28 has the same height (relative to the base plate of the floor fasteners 18) and is shorter than the lower protrusions 26b formed on the upper surface of the floor fasteners 18. With the aid of these projections 28 on the underside, the floor fasteners 18 can be better anchored to the underlying elasticity and shock absorbing layer 12.
  • the floor fasteners 18 are designed to be permeable to water.
  • the floor fastening elements 18 each have a plurality of apertures 24 that extend through the floor fastening elements 18 in the layer thickness direction.
  • the nonwoven fabric 30 under the floor attachment elements 18 prevents the rubber granules 14 of the elasticity and shock absorption layer 12 from penetrating into these openings 24 and clogging them.
  • a footing layer 20 of fine-grained sand or a sand-fleece mixture is provided on the layer 16 of the floor fastening elements 18.
  • the layer thickness of this footing layer 20 is for example about 4 to 10 cm.
  • this footing 20 usually forms the uppermost layer of the riding floor, but optionally this footing 20 can also wear a (artificial) lawn or the like.
  • an optional retention layer 22 is provided between the floor attachment elements 18 and the tread layer 20.
  • the retention layer 22 is formed, for example, of gravel, split, gravel and / or coarse sand and is intended to prevent the finer material of the footing 20 penetrates into the openings 24 of the floor fasteners 18 and clogged them.
  • the layer thickness of this retention layer 22 is for example about 30 mm; it is preferably dimensioned such that the higher projections 26a of the floor fastening elements 18 no longer protrude from the retaining layer 22.
  • the riding floor thus constructed offers the horses on the one hand a high degree of slip resistance (esp. By the bottom fasteners provided with the projections 26a, 26b) and on the other hand a high elasticity and shock absorption (esp. By the elasticity and shock absorption layer 12 under the layer 16 of floor fastening elements 18).
  • the riding surface is water-permeable, so that optimal irrigation (i.e., neither too dry nor too wet) can be achieved.
  • Fig. 2 shows the structure of a second embodiment of a riding floor according to the invention.
  • the same or corresponding components are identified by the same reference numerals as in the first embodiment.
  • the floor fasteners 18 have a substantially planar underside 32 (bottom in FIG Fig. 2 ) and the nonwoven fabric 30 is omitted between the elasticity and shock absorption layer 12 and the layer 16 of bottom attachment elements 18.
  • the rubber granulate 14 is not poured loose on the substrate 10, but filled in flexible pockets 34 made of a water-permeable and tear-resistant material, for example in jute sacks. These pockets 34 are laid side by side and possibly also one above the other on the substrate 10.
  • This embodiment variant of the elasticity and shock absorption layer 12 offers, in particular, during storage, transport and laying of the rubber granulate 14. Since the pockets 34 are permeable to water, the function of the elasticity and shock absorption layer 12 remains as a drainage layer.
  • the rubber granules 14 may be filled in a plurality of tubular pockets 34 with a single interior.
  • the rubber granulate 14 can also be filled in pockets 34 with a plurality of separate internal spaces. These can be formed, for example, starting from pockets 34 with a single interior through corresponding seams.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Road Paving Structures (AREA)
EP18198810.6A 2017-10-24 2018-10-05 Sols pour terrain d'équitation ou de sport et procédé de fabrication d'un sol pour terrain d'équitation ou de sport Withdrawn EP3483340A1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202017005493.0U DE202017005493U1 (de) 2017-10-24 2017-10-24 Reit- oder Sportplatzboden

Publications (1)

Publication Number Publication Date
EP3483340A1 true EP3483340A1 (fr) 2019-05-15

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EP18198810.6A Withdrawn EP3483340A1 (fr) 2017-10-24 2018-10-05 Sols pour terrain d'équitation ou de sport et procédé de fabrication d'un sol pour terrain d'équitation ou de sport

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EP (1) EP3483340A1 (fr)
DE (1) DE202017005493U1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111254777A (zh) * 2020-02-22 2020-06-09 北京正升建设工程有限公司 一种塑胶跑道改造工程的施工方法
EP3957795A1 (fr) * 2020-08-19 2022-02-23 Otto Arena System GmbH Plaque de fond de manège et procédé de fabrication d'une plaque de fond de manège

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113463467B (zh) * 2021-06-25 2022-10-21 苏州大乘环保新材有限公司 一种水性eau全塑地面用弹性基层及其施工工艺和应用
DE202023103154U1 (de) 2023-06-07 2023-11-28 terra-bausysteme GmbH Reitboden
DE102023115033A1 (de) 2023-06-07 2024-12-12 terra-bausysteme GmbH Schichtboden

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0667927B1 (fr) 1993-09-02 1997-12-10 OTTO, Werner Mat de consolidation pour sols
DE20019812U1 (de) 2000-11-22 2002-04-04 Otto, Werner, 90518 Altdorf Bodenbefestigungsmatte
EP1726715A1 (fr) * 2005-05-27 2006-11-29 Mondo S.p.A. Sous-couche élastique pour plancher et méthode de fabrication
WO2008122580A2 (fr) * 2007-04-04 2008-10-16 Vlaamse Instelling Voor Technologisch Onderzoek (Vito) Gazon artificiel
US20100124633A1 (en) * 2008-11-14 2010-05-20 Playsafer Surfacing Llc Unitary mat for playgrounds and the like and method for forming same
EP2599916A2 (fr) * 2011-11-29 2013-06-05 Werner Otto Sol de terrain de sport ou de terrain équestre et son procédé de fabrication

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0667927B1 (fr) 1993-09-02 1997-12-10 OTTO, Werner Mat de consolidation pour sols
DE20019812U1 (de) 2000-11-22 2002-04-04 Otto, Werner, 90518 Altdorf Bodenbefestigungsmatte
EP1726715A1 (fr) * 2005-05-27 2006-11-29 Mondo S.p.A. Sous-couche élastique pour plancher et méthode de fabrication
WO2008122580A2 (fr) * 2007-04-04 2008-10-16 Vlaamse Instelling Voor Technologisch Onderzoek (Vito) Gazon artificiel
US20100124633A1 (en) * 2008-11-14 2010-05-20 Playsafer Surfacing Llc Unitary mat for playgrounds and the like and method for forming same
EP2599916A2 (fr) * 2011-11-29 2013-06-05 Werner Otto Sol de terrain de sport ou de terrain équestre et son procédé de fabrication
EP2599916B1 (fr) 2011-11-29 2015-11-25 Werner Otto Sol de terrain équestre ou de sport et procédé de fabrication de celui-ci

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111254777A (zh) * 2020-02-22 2020-06-09 北京正升建设工程有限公司 一种塑胶跑道改造工程的施工方法
EP3957795A1 (fr) * 2020-08-19 2022-02-23 Otto Arena System GmbH Plaque de fond de manège et procédé de fabrication d'une plaque de fond de manège

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