EP3486379A1 - Wall structure in monolithic design for completing a system of plastic-reinforced soil and grid structure for same as functional location - Google Patents
Wall structure in monolithic design for completing a system of plastic-reinforced soil and grid structure for same as functional location Download PDFInfo
- Publication number
- EP3486379A1 EP3486379A1 EP18207602.6A EP18207602A EP3486379A1 EP 3486379 A1 EP3486379 A1 EP 3486379A1 EP 18207602 A EP18207602 A EP 18207602A EP 3486379 A1 EP3486379 A1 EP 3486379A1
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- European Patent Office
- Prior art keywords
- grid
- gabion
- wall structure
- horizontal
- vertical
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- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02D—FOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
- E02D29/00—Independent underground or underwater structures; Retaining walls
- E02D29/02—Retaining or protecting walls
- E02D29/0208—Gabions
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02D—FOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
- E02D29/00—Independent underground or underwater structures; Retaining walls
- E02D29/02—Retaining or protecting walls
- E02D29/0225—Retaining or protecting walls comprising retention means in the backfill
Definitions
- a well-known KBE system for forming a natural stone façade consists, for example, of a reinforced earth body with a curtain wall made of corrosion-protected steel grids and a stone filling. Such a facade can be done later, after the KBE has sat down.
- Steel gratings are fastened at a distance as a front grid with anchor rods at the KBE and backfilled with stones.
- the front grilles are interconnected with ring clamps. The front grilles overlap.
- gabions are also known as a means to put attractive fronts as panels as well.
- the stone baskets are often delivered with pre-compacted stone fillings and put basket on basket.
- DE 10 2017 100 392 A1 shows how gabions are thinned upwards to build up a heavy duty wall and how a fall protection succeeds.
- Gabions are also used to reduce noise on a traffic route as a protective wall, cf. for example DE 10 2010 004 266 A1 ,
- gabions are usually closed with a gabion lattice cover before another gabion plane is deposited thereon.
- the upper gabion has a gabion grid floor, so that at least one at least roughly horizontal grid intercepts the fillings level by level.
- a retaining wall termination is still to be developed, which holds compacted filling material and offers an attractive appearance, if possible also with simultaneous suitability as a noise protection system.
- the structure should be safe and sustainable.
- a 20 cm deep front shell for a sound-absorbing material is suspended by means of a vertical partition grid construction about 20 cm offset backwards into the lateral vertical partition grille.
- FIG. 1 shows a wall structure 1 according to the invention in a sectional view in a function as a support wall for a slope. Illustrated is a wall structure 1, which is formed of six horizontal planes of the same size and a seventh smaller plane.
- the wall structure 1 is formed from Gabionengittern and side rails 4.
- Two side rails 4 and at least one each Gabionengitter on the front 11 and the back 12 form a frame, similar to a wire cage without floor and ceiling, with only vertical or at least approximately vertical walls.
- Such frames are arranged side by side and one above the other to form a gabion wall structure according to the invention. Because the wall structure according to the invention but not just as usual in gabions horizontal Gabionengitter has, except possibly in the lowest on a foundation (2) remote location, this application uses in the main claim the term wall structure.
- each frame is in the advantageous embodiment of FIG. 1 and 2 a vertical partition grid 6 connected in parallel or at least approximately parallel to the front side 11 with the side grilles 4.
- the interior of a frame is thereby divided into a front shell 7 and a back chamber 10.
- the front shell 7 has less space than the back chamber 10.
- the space within a frame freely or at least approximately freely on the front shell 7 and the back chamber 10 are divided, since the vertical divider 6 attached to almost anywhere positions on the side rails 4 even if the frame is already set.
- the separating grid 6 has hooks 19 which are open exclusively at horizontal connecting ends, with which hooks 19 vertical wire rods 17 of the side rails 4 are unvarnished.
- one or more of such side rails 4, front 11 and back 12 formed frames are arranged side by side and form a first level of the wall structure 1.
- the number of juxtaposed frame depends on the desired length of the wall structure 1. It is but also idea of invention, just not to have to think in terms of gabions, but free to distribute side rails along the course of the wall. It comes in such an embodiment just not to otherwise accepted side rails double doubling.
- the desired height of a wall structure 1 is achieved by the vertical or at least approximately vertical arrangement of several layers or planes of frames one above the other.
- the wall structure 1 is not divided over its entire height over all levels by horizontal horizontal shelves in individual floors or levels, but can be filled vertically in a vertical direction, at least in the back chambers 10 vertically filled with filling material and this compacted throughout.
- a cleanliness layer 14 is wedge-shaped above the foundation 2, resulting in an inclination of the wall structure 1.
- the tendency of the increase in the support effect of a backfill 3 or a landfill to be supported serves contrary.
- the inclination is based on the in FIG. 1 recognizable as a dashed line perpendiculars 13 recognizable.
- a reinforcement of the backfill 3 is made in the embodiment shown with a geosynthetics 16, which in FIG. 1 is indicated as a thick dashed line.
- FIG. 2 shows a sectional view in a detailed view of an outbreak of a wall structure according to the invention 1.
- side rails 4 which form the wall structure.
- the side rails 4 form connections between the front sides 11 and the rear sides 12.
- the wall structure 1 is not divided by continuous horizontal intermediate floors. Also in the area of the plane connection 5 no flat horizontal boundaries of the planes are provided. Illustrated are vertical divider grid 6, which give both the wall structure 1 additional rigidity in a dual function and the interior of the wall structure 1 vertically in diee front shell 7 and the back chamber 10 divide.
- the front shell 7 is designed lower volume than the back chamber 10. It is intended to fill the front shell 7 with a first filler 8 and the back chamber 10 with a second filler 9.
- first filling material 8 in particular materials come into consideration, which meet optically or functionally special requirements.
- a special functionality can exist, for example, in very good noise insulation properties.
- a second filling material 9 are in particular materials into consideration, which are economically useful, which are easy to fill and compress and which support the strength of the Gabionenwandiedes 1.
- the back chambers 10 of the wall structure 1 in the region of the vertical separating grid 6 and the back 12 are provided with separating elements 15, which are preferably formed from nonwoven fabric.
- the separating elements 15 prevent the passage of foreign substances or in particular of filler material 8, 9 or backfill 3 through the back 12 and the vertical separation grid 6.
- the separating elements 15 are graphically in FIG. 2 indicated as a short dashed line.
- the backfill 3 is reinforced with geosynthetic material 16, which as a long dashed line in FIG. 2 is indicated.
- FIG. 3 shows a side rail 4, in FIG. 3a in a frontal view, in FIG. 3b in a plan view and in Figure 3c in a side view.
- the side rail 4 is formed of vertical wire rods 17 and horizontal wire rods 18.
- the diameter 21 of the vertical and horizontal wire rods 17, 18 is defined and is in the illustrated embodiment 4.5 mm.
- the horizontal wire rods 18 are provided on both sides with eyelets 30 to achieve a simple yet durable connection of side rails 4 with front sides 11 and rear sides 12.
- the eyelets 30 are bent in the embodiment shown from the two-sided ends of the horizontal wire rods 18, resulting in a length 27 of 1150 mm in the embodiment shown for the horizontal wire rods 18 results.
- the horizontal wire rods 18 are each mounted with a height distance 24 spaced from each other on the vertical wire rods 17 of a side rail 4.
- the horizontal wire rods 18 by spot welding with a height distance 24, which is 197 mm in the embodiment shown, mounted on the vertical wire rods 17.
- the height grid 25 corresponds to five times the distance of the horizontal wire rods 18 to each other and is in the illustrated embodiment 985 mm.
- FIG. 3b the distances of the vertical wire rods 17 of a side rail 4 are shown to each other recognizable.
- the respective outer vertical wire rods 17 of a side rail 4 are at a first width spacing 22, which is 200 mm in the illustrated embodiment, spaced from the nearest vertical wire rod 17.
- FIG. 3c A side view of a side rail 4, the orientation of the eyelets 30 is shown recognizable.
- the length of the vertical wire rods 17 is indicated with a rod height 26, which in the embodiment shown is 990 mm.
- FIG. 4 shows a vertical divider 6, in FIG. 4a in a frontal view, in FIG. 4b in a plan view and in Figure 4c in a side view.
- the vertical divider grid 6 is formed of vertical wire rods 17 'and horizontal wire rods 18'.
- the diameter 21 'of the vertical and horizontal wire rods 17', 18 ' is defined and is in the illustrated embodiment 4.5 mm.
- the horizontal wire rods 18 ' as in FIG.
- the horizontal wire rods 18 ' are in each case with a height distance 24' spaced from each other on the vertical wire rods 17 'of a vertical separating grid 6 attached.
- the horizontal wire rods 18 ' by spot welding with a height distance 24', which is 197 mm in the illustrated embodiment, mounted on the vertical wire rods 17 '.
- the height grid 25 ' corresponds to five times the distance of the horizontal wire rods 18' to each other and is in the illustrated embodiment 985 mm.
- FIG. 4b shows in a plan view shown the hooks 19 of the horizontal wire rods 18 '.
- the hooks 19 are in the illustrated embodiment of the two-sided ends of the horizontal wire rods 18 'bent, resulting in a Rohley 27 'of 1100 mm in the embodiment shown for the horizontal wire rods 18' results.
- the hooks 19 have a defined hook opening, which results from a radius hook 28, which is 6 mm in the embodiment shown.
- a length hook 29 is 29.5 mm in the embodiment shown. Less the wire thickness of 4.5 mm, this results in a rear grip of the hook 19 of 25 mm, whereby a secure connection of the vertical divider grid 6 is achieved, for example, with side rails 4.
- a vertical separating grid 6 From the distance of the receiving points of the left hooks 19 to the right hooks 19 of the horizontal wire rods 18 'of a vertical separating grid 6 results in an inner width 20' which is 1010 mm in the embodiment shown.
- a first width distance 22 ' is the distance from the contact point in a hook 19 to the nearest vertical wire rod 17' of a vertical separation grid 6, which is 205 mm in the illustrated embodiment.
- a second width distance 23 ' designates the spacing of the vertical wire rods 17' from each other, which in the exemplary embodiment shown is 300 mm.
- FIG 4c A side view of a vertical separation grid 6, the orientation of the hook 19 is shown recognizable.
- the length of the vertical bars 17 ' is indicated with a bar height 26', which in the embodiment shown is 991 mm.
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- Engineering & Computer Science (AREA)
- Environmental & Geological Engineering (AREA)
- Life Sciences & Earth Sciences (AREA)
- General Life Sciences & Earth Sciences (AREA)
- Mining & Mineral Resources (AREA)
- Paleontology (AREA)
- Civil Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Structural Engineering (AREA)
- Revetment (AREA)
- Pit Excavations, Shoring, Fill Or Stabilisation Of Slopes (AREA)
Abstract
Die Anmeldung betrifft einen Wandaufbau (1) aus Gabionengittern und eine Verwendung einer Gitterkonstruktion im monolithischen Verbau als Funktionsfront, wobei bei dem Wandaufbau (1) sind ohne jegliche Horizontalböden zwischen den Gabionenzwischenebenen im Inneren des Wandaufbaus (1) ausschließlich zumindest grob vertikale ausgerichtete Seitengitter (4) zwischen die Gabionengitterelemente der Frontseite (11) und der Rückseite (12) eingesetzt, wobei zumindest zwischen jeweils den Front-Gabionengitterelementen untereinander und den Rücken-Gabionengitterelementen zumindest grob entlang einer zumindest grob horizontal verlaufenden Linie eine Ebenenverbindung (5) ausgebildet ist. The application relates to a wall structure (1) of gabion and a use of a grid construction in monolithic shoring as a functional front, wherein in the wall structure (1) are without any horizontal bottoms between the intermediate Gabionenzwischenen inside the wall structure (1) exclusively at least roughly vertically aligned side rails (4 ) between the Gabionengitterelemente the front side (11) and the back (12) is used, at least between each of the front-Gabionengitterelementen and the back-Gabionengitterelementen at least roughly along an at least roughly horizontal line a plane connection (5) is formed.
Description
Bauprojekte zum Verbau eines Systems kunststoffbewehrte Erde (KBE-System) schließen im Stand der Technik mit beispielsweise einer Natursteinfassade oder mit einem Betonstein-Facing ab. Die Errichtung von Lärmschutzwällen, Brückenwiderlagern oder die Sicherung von Böschungen bleiben dennoch anspruchsvolle Aufgaben des Ingenieurbaus. Bisher hierbei verwendete Komponenten bieten bereits Spielraum und Anpassungsfähigkeit an projektspezifische Gegenebnheiten, vgl. Huesker: "#Kunststoff-Bewehrte-Erde Systemübersicht", 07/15B Huesker Synthetic GmbH. Stahlgitterwinkel werden als integrierte Schalung verwendet, wenn Gewebe als Erosionsschutz zum Einsatz kommen. Begrünungen der KBE sind bis zu einem Neigungswinkel von 70° realisierbar. Auch bei Brückenwiderlagern greift der Stand der Technik zu einem Geogitter als Bewehrungselement. Es entstehen beinahe vertikale Quaderwände. Bei später begrünten Frontausbildungen sind anfangs Gitterelemente im Verbau erkennbar. Ein bekanntes KBE-System zur Ausbildung einer Natursteinfassade besteht beispielsweise aus einem bewehrten Erdkörper mit einer vorgehängten Fassade aus korrosionsgeschützten Stahlgittern sowie einer Steinfüllung. Eine solche Fassade könne später erfolgen, nachdem sich die KBE gesetzt hat. Dabei werden Stahlgitter als Frontgitter mit Ankerstäben am KBE beabstandet befestigt und mit Steinen hinterfüllt. Die Frontgitter untereinander werden mit Ringklammern verbunden. Die Frontgitter überlappen.Construction projects for the installation of a system reinforced plastic earth (KBE system) conclude in the prior art with, for example, a natural stone facade or with a concrete block facing. The erection of noise barriers, bridge abutments or the protection of slopes still remain demanding tasks of civil engineering. Previously used components already offer scope and adaptability to project-specific aspects, cf. Huesker: "# Plastic Reinforced Earth System Overview", 07 / 15B Huesker Synthetic GmbH. Steel grid angles are used as integrated formwork when fabric is used as erosion protection. Greening of the CFU can be achieved up to an inclination angle of 70 °. Even with bridge abutments, the prior art uses a geogrid as a reinforcing element. It creates almost vertical cuboid walls. In later green front training grid elements are initially visible in the shoring. A well-known KBE system for forming a natural stone façade consists, for example, of a reinforced earth body with a curtain wall made of corrosion-protected steel grids and a stone filling. Such a facade can be done later, after the KBE has sat down. Steel gratings are fastened at a distance as a front grid with anchor rods at the KBE and backfilled with stones. The front grilles are interconnected with ring clamps. The front grilles overlap.
Außer diesen Systemen zum Wandaufbau sind Gabionen als Mittel bekannt, um ansprechende Fronten auch als Verkleidungen zu setzen. Die Steinkörbe werden oft mit vorverdichteten Steinfüllungen angeliefert und Korb auf Korb gesetzt.
Zum Schutz von Ingenieurbauwerken ist weiterhin ein Stützwandabschluss zu entwickeln, der verdichtetes Füllmaterial hält und eine ansprechende Optik bietet, möglichst auch mit gleichzeitiger Eignung als Lärmschutzsystem. Der Aufbau soll sicher und nachhaltig sein.For the protection of engineering structures, a retaining wall termination is still to be developed, which holds compacted filling material and offers an attractive appearance, if possible also with simultaneous suitability as a noise protection system. The structure should be safe and sustainable.
Das Problem wird gelöst mit einem Wandaufbau nach Anspruch 1 bzw. der Verwendung einer Gitterkonstruktion im monolithischen Verbau als Funktionsfront nach Anspruch 4.The problem is solved with a wall structure according to claim 1 or the use of a grid construction in monolithic shoring as a functional front according to
Vorteilhafte Ausführungsformen sind in jeweiligen Unteransprüchen angegeben.Advantageous embodiments are specified in respective subclaims.
Die erfindungsgemäße Bauweise, in nachfolgenden Beschreibungsseiten als ein Ausführungsbeispiel beschrieben, mit Gabionenelementen ohne Zwischenböden gestattet ein mehrfaches Verdichten in beliebiger Häufigkeit über der Höhe verteilt, bevorzugt mittels eines Baggerarms, der am freien Ende eine Rüttelplatte aufweist. So gelingen Verdichtungen des Füllmaterials zwischen zumindest grob vertikalen Gabionengitterelementen auch in höheren Ebenen der Zug um Zug aufgebauten Gabionengitterwand nach den Forderungen des FGSV Merkblattes Nr. 555 m GAB Abschnitt 6.2.5.The construction according to the invention, described in the following description pages as an embodiment, with gabion elements without shelves allows multiple compression in any frequency distributed over the height, preferably by means of a Baggerarms having a vibrating plate at the free end. For example, compaction of the filling material between at least roughly vertical gabion grid elements also succeeds in higher levels of the gabion grid wall constructed in accordance with the requirements of FGSV Merkblatt No. 555 m GAB Section 6.2.5.
Nachträgliche Setzungen des Füllmaterials, und sei es nur in eine stützende Rückenkammer eingefüllt, sind vermieden, weil keine zumindest grob horizontalen Zwischenböden mehr das mechanische Verdichten beim Wandaufbau blockieren. Zu nachträglichem natürlichen Verdichten kommt es allenfalls noch in sehr viel weniger großem Ausmaß. Wenn es doch zu natürlichen Setzungen kommt, beispielsweise durch Füllfehler, wird ein Sacken nach unten ohne Blockade durch Zwischenböden stattfinden können. Deformierungen durch Kraftausleitungen aus mit Setzungskräften beaufschlagten Zwischenböden sind vermieden, weil entgegen bekannten Gabionenaufbauten auf jegliche horizontale Gitterböden oder - deckel verzichtet wird.Subsequent settling of the filling material, and if it is filled only in a supporting back chamber, are avoided because no at least roughly horizontal intermediate floors block more mechanical compaction during wall construction. To At a later date, natural compression is still occurring to a much lesser extent. If it comes to natural subsidence, for example, by Füllfehler, a sagging down without blockade by intermediate floors can take place. Deformations caused by force discharges from compartments subjected to settling forces are avoided because, contrary to known gabion structures, any horizontal grid floors or lids are dispensed with.
Bevorzugt werden je 50 cm Wandbreite ein vertikales Zwischengitter vertikal zwischen ein oder zwei Frontwände und einer Rückenwand verbunden. Im Fall einer vorteilhaft vorgestellten zusätzlichen Frontschale ist bevorzugt eine 20 cm tiefe Frontschale für ein schallabsorbierendes Material mittels einer vertikalen Trenngitterkonstruktion etwa 20 cm nach hinten versetzt in die seitlichen vertikalen Trenngitter eingehängt.Preferably, each 50 cm wall width, a vertical intermediate grid connected vertically between one or two front walls and a back wall. In the case of an advantageously presented additional front shell, preferably a 20 cm deep front shell for a sound-absorbing material is suspended by means of a vertical partition grid construction about 20 cm offset backwards into the lateral vertical partition grille.
Die Konstruktion solcher Trenngitter für den vertikalen Einbau ist wesentlich weniger problematisch im Verbau verglichen zu Ankerstäben zum Abstützen von überlappenden Frontgittern. Außerdem dienen sie materialsparend im Vergleich zu üblichen Gabionengittern als Haltekonstruktion für Naturgewebe.The construction of such divider grilles for vertical installation is much less problematic in terms of installation compared to tie rods for supporting overlapping front grilles. In addition, they serve to save material compared to conventional gabion as a support structure for natural fabric.
Nachfolgend wird die Erfindung anhand folgender Zeichnungen ausführlich erläutert.
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Figur 1 - zeigt in einer Seitenansicht ein vorteilhaftes Ausführungsbeispiel eines erfindungsgemäßen Wandaufbaues aus Gabionengittern. -
Figur 2 - zeigt in einer Detailansicht als Seitenansicht eine Ebene eines erfindungsgemäßen Wandaufbaues aus Gabionengittern mit einer erkennbaren Darstellung der Gitteranordnung und der Verfüllmaterialien. -
Figur 3 - zeigt in alphabetischer Reihenfolge eine Frontalansicht 3a, eine Draufsicht 3b und eine Seitenansicht 3c eines Seitengitters für einen erfindungsgemäßen Wandaufbau aus Gabionengittern. - und
-
Figur 4 - zeigt in alphabetischer Reihenfolge eine Frontalansicht 4a, eine Draufsicht 4b und eine Seitenansicht 4c eines vertikalen Trenngitters für einen erfindungsgemäßen Wandaufbau aus Gabionengittern.
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FIG. 1 shows a side view of an advantageous embodiment of a wall structure according to the invention from Gabionengittern. -
FIG. 2 shows in a detailed view as a side view of a plane of a wall structure according to the invention of gabion with a recognizable representation of the grid assembly and the filling materials. -
FIG. 3 shows in alphabetical order a frontal view 3a, a top view 3b and a side view 3c of a side grid for a wall construction according to the invention of gabions. - and
-
FIG. 4 shows in alphabetical order a frontal view 4a, a plan view 4b and a side view 4c of a vertical separation grid for a wall construction according to the invention from gabionic gratings.
Innerhalb jedes Rahmens ist im vorteilhaften Ausführungsbeispiel nach
Auf das Fundament 2 sind ein oder mehrere solcher aus Seitengittern 4, Frontseiten 11 und Rückseiten 12 gebildete Rahmen nebeneinander angeordnet und bilden eine erste Ebene des Wandaufbaus 1. Die Anzahl der nebeneinander angeordneten Rahmen richtet sich dabei nach der gewünschten Länge des Wandaufbaus 1. Es ist aber ebenfalls Erfindungsgedanke, eben nicht in Rahmen als Gabionen denken zu müssen, sondern frei davon Seitengitter entlang des Wandverlaufs zu verteilen. Es kommt bei einer solchen Ausführungsform eben auch nicht zu sonst in Kauf genommenen Seitengitterdoppeln. Die gewünschte Höhe eines Wandaufbaues 1 wird durch die vertikale oder zumindest annähernd vertikale Anordnung mehrerer Lagen oder Ebenen von Rahmen übereinander erreicht.On the
In der gezeigten Ansicht sind sechs Ebenen gleicher Größe und eine siebte, kleiner ausgeführte Ebene übereinander angeordnet. In der gewählten Schnittansicht von
Der Wandaufbau 1 ist dabei in seiner gesamten Höhe über alle Ebenen nicht durch flächige horizontale Zwischenböden in einzelne Stockwerke respektive Ebenen unterteilt, sondern kann in einer vertikalen Richtung zumindest in den Rückenkammern 10 vertikal durchgängig mit Füllmaterial befüllt und dieses durchgängig verdichtet werden.The wall structure 1 is not divided over its entire height over all levels by horizontal horizontal shelves in individual floors or levels, but can be filled vertically in a vertical direction, at least in the
Im gezeigten Ausführungsbeispiel ist oberhalb des Fundamentes 2 eine Sauberkeitsschicht 14 keilförmig ausgeführt, woraus sich eine Neigung des Wandaufbaus 1 ergibt. Im dargestellten Ausführungsbeispiel dient die Neigung der Erhöhung der Stützwirkung einer Hinterfüllung 3 beziehungsweise einem abzustützenden Geländeabfall entgegen. Die Neigung ist anhand der in
Im dargestellten Ausführungsbeispiel ist die Frontschale 7 geringvolumiger ausgeführt als die Rückenkammer 10. Es ist vorgesehen, die Frontschale 7 mit einem ersten Füllmaterial 8 und die Rückenkammer 10 mit einem zweiten Füllmaterial 9 aufzufüllen. Als erstes Füllmaterial 8 kommen insbesondere Materialien in Betracht, die optisch oder funktional besonderen Ansprüchen genügen. Eine besondere Funktionalität kann dabei beispielsweise in sehr guten Lärmdämmeigenschaften bestehen.In the illustrated embodiment, the
Als zweites Füllmaterial 9 kommen insbesondere Materialien in Betracht, die wirtschaftlich sinnvoll einsetzbar sind, die gut verfüllbar und verdichtbar sind und die die Festigkeit des Gabionenwandaufbaues 1 unterstützen.As a
In einem zweiten, hier nicht dargestellten Ausführungsbeispiel, ist es möglich, die Frontschale 7 und die Rückenkammer 10 mit gleichartigem Material zu befüllen. In der dargestellten Ausführungsform sind die Rückenkammern 10 des Wandaufbaues 1 im Bereich der vertikalen Trenngitter 6 und der Rückseite 12 mit Trennelementen 15, welche bevorzugt aus Vliesstoff gebildet sind, ausgestattet. Die Trennelemente 15 verhindern den Durchtritt von Fremdstoffen oder insbesondere auch von Füllmaterial 8, 9 oder Hinterfüllung 3 durch die Rückseite 12 beziehungsweise die vertikalen Trenngitter 6. Die Trennelemente 15 sind zeichnerisch in
In
In
In
- 11
- Wandaufbauwall construction
- 22
- Fundamentfoundation
- 33
- Hinterfüllungbackfill
- 44
- Seitengitterside rails
- 55
- Ebenenverbindungplane connection
- 66
- Vertikales TrenngitterVertical divider grid
- 77
- Frontschalefront shell
- 88th
- Erstes FüllmaterialFirst filling material
- 99
- Zweites FüllmaterialSecond filling material
- 1010
- Rückenkammerback chamber
- 1111
- Frontseitefront
- 1212
- Rückseiteback
- 1313
- Senkrechtevertical
- 1414
- Sauberkeitsschichtsubbase
- 1515
- Trennelementseparating element
- 1616
- Geokunststoffgeosynthetic
- 1717
- Senkrechte DrahtstäbeVertical wire rods
- 1818
- Waagrechte DrahtstäbeHorizontal wire rods
- 1919
- Hakenhook
- 2020
- Innenweiteinner width
- 2121
- Durchmesserdiameter
- 2222
- Erster BreitenabstandFirst width distance
- 2323
- Zweiter BreitenabstandSecond width distance
- 2424
- Höhenabstandheight distance
- 2525
- Höhe GitterHeight grid
- 2626
- Stabhöhebar height
- 2727
- RohlängeRaw length
- 2828
- Radius HakenRadius hook
- 2929
- Länge HakenLength hook
- 3030
- Öseeyelet
Claims (5)
dadurch gekennzeichnet, dass ohne jegliche Horizontalböden zwischen gedachten Gabionenzwischenebenen im Inneren des Wandaufbaus (1) ausschließlich zumindest grob vertikal ausgerichtete Seitengitter (4) zwischen die Gabionengitterelemente der Frontseite (11) und der Rückseite (12) eingesetzt sind und dass zumindest zwischen jeweils den Front-Gabionengitterelementen untereinander und den Rücken-Gabionengitterelementen zumindest grob entlang einer zumindest grob horizontal verlaufenden Linie eine Ebenenverbindung (5) ausgebildet ist.Wall structure (1) of gabion lattices, with an at least roughly parallel front side (11) and a slope-facing rear side (12) made of gabion lattice elements,
characterized in that without any horizontal bottoms between imaginary intermediate gabionic planes in the interior of the wall structure (1) exclusively at least roughly vertically aligned side rails (4) between the gabion grid elements of the front (11) and the back (12) are used and that at least between each front Gabion grid elements with each other and the back-Gabionengitterelementen at least roughly along a line at least roughly horizontally extending a plane connection (5) is formed.
Trennelemente (15) aufzunehmen oder abzustützen.Use according to claim 4, characterized in that parallel to the front side (11) about 20 cm from the front gabion grid vertical separating grille (6) between the side rails (4) are mounted, in particular with open hooks (19) to
To receive or support separating elements (15).
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE202017006007.8U DE202017006007U1 (en) | 2017-01-10 | 2017-11-21 | Wall construction made of gabions |
Publications (2)
Publication Number | Publication Date |
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EP3486379A1 true EP3486379A1 (en) | 2019-05-22 |
EP3486379B1 EP3486379B1 (en) | 2022-12-07 |
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EP18207602.6A Active EP3486379B1 (en) | 2017-11-21 | 2018-11-21 | Monolithic wall structure for completing a system of plastic-reinforced soil and grid structure for same as functional location |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR102373227B1 (en) * | 2021-08-18 | 2022-03-11 | 대한민국 | Mesh type roofing tile fixture system and tile roof including the same |
EP4050158A1 (en) * | 2021-02-24 | 2022-08-31 | Wolfgang Schmauser | Gabion noise barrier |
RU2797999C1 (en) * | 2022-10-21 | 2023-06-13 | Федеральное государственное казенное военное образовательное учреждение высшего образования "ВОЕННАЯ АКАДЕМИЯ МАТЕРИАЛЬНО-ТЕХНИЧЕСКОГО ОБЕСПЕЧЕНИЯ имени генерала армии А.В. Хрулева" Министерства обороны Российской Федерации | Reinforced soil cone of temporary bridge abutment with gabion retaining wall |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE3917756A1 (en) * | 1988-06-09 | 1989-12-21 | Ruwa Drahtschweisswerk Ag | Set of structural elements for a ballast basket |
DE3936957A1 (en) * | 1988-10-01 | 1991-05-08 | Czinki Laszlo | Sound barrier for motorways - is made up of revetment wall of coffers with sides and linking ends made of wire mesh mats |
DE102010054364A1 (en) * | 2010-12-13 | 2012-06-14 | Rk Landschaftsbau Dittersdorf Gmbh | Method for constructing gabion wall used in construction of e.g. road, involves forming sound-absorbing boundary layer between concrete core and fill material after partial penetration of fresh concrete of core through fill material |
-
2018
- 2018-11-21 EP EP18207602.6A patent/EP3486379B1/en active Active
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE3917756A1 (en) * | 1988-06-09 | 1989-12-21 | Ruwa Drahtschweisswerk Ag | Set of structural elements for a ballast basket |
DE3936957A1 (en) * | 1988-10-01 | 1991-05-08 | Czinki Laszlo | Sound barrier for motorways - is made up of revetment wall of coffers with sides and linking ends made of wire mesh mats |
DE102010054364A1 (en) * | 2010-12-13 | 2012-06-14 | Rk Landschaftsbau Dittersdorf Gmbh | Method for constructing gabion wall used in construction of e.g. road, involves forming sound-absorbing boundary layer between concrete core and fill material after partial penetration of fresh concrete of core through fill material |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP4050158A1 (en) * | 2021-02-24 | 2022-08-31 | Wolfgang Schmauser | Gabion noise barrier |
KR102373227B1 (en) * | 2021-08-18 | 2022-03-11 | 대한민국 | Mesh type roofing tile fixture system and tile roof including the same |
RU2797999C1 (en) * | 2022-10-21 | 2023-06-13 | Федеральное государственное казенное военное образовательное учреждение высшего образования "ВОЕННАЯ АКАДЕМИЯ МАТЕРИАЛЬНО-ТЕХНИЧЕСКОГО ОБЕСПЕЧЕНИЯ имени генерала армии А.В. Хрулева" Министерства обороны Российской Федерации | Reinforced soil cone of temporary bridge abutment with gabion retaining wall |
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EP3486379B1 (en) | 2022-12-07 |
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