EP3940174B1 - Zaunkonstruktion und montageverfahren - Google Patents

Zaunkonstruktion und montageverfahren Download PDF

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Publication number
EP3940174B1
EP3940174B1 EP21180339.0A EP21180339A EP3940174B1 EP 3940174 B1 EP3940174 B1 EP 3940174B1 EP 21180339 A EP21180339 A EP 21180339A EP 3940174 B1 EP3940174 B1 EP 3940174B1
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EP
European Patent Office
Prior art keywords
fence
horizontal
segment
vertical
crossbars
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EP21180339.0A
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English (en)
French (fr)
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EP3940174A1 (de
Inventor
Arturas Donskojus
Danielius DONSKOJUS
Marius DONSKOJUS
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Jape Lt Uab
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Jape Lt Uab
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H17/00Fencing, e.g. fences, enclosures, corrals
    • E04H17/14Fences constructed of rigid elements, e.g. with additional wire fillings or with posts
    • E04H17/1413Post-and-rail fences, e.g. without vertical cross-members
    • E04H17/1447Details of connections between rails and posts
    • E04H17/1452Details of connections between rails and posts the ends of the rails are fixed on the lateral sides of the posts
    • E04H17/1456Details of connections between rails and posts the ends of the rails are fixed on the lateral sides of the posts the ends of the rails being located in vertical channels extending along a substantial portion of the length of the post
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H17/00Fencing, e.g. fences, enclosures, corrals
    • E04H17/14Fences constructed of rigid elements, e.g. with additional wire fillings or with posts
    • E04H17/1413Post-and-rail fences, e.g. without vertical cross-members
    • E04H17/1447Details of connections between rails and posts
    • E04H17/1452Details of connections between rails and posts the ends of the rails are fixed on the lateral sides of the posts

Definitions

  • the present invention relates to fence structures, in particular having vertical posts with horizontal crossbars, and to their assembly, as generaly shown in EP1655428B .
  • the invention discloses the structure of the segmental fence comprising rigid crossbars made of sheet material (e.g., profiled sheet metal) and an efficient method of assembling such a fence.
  • the most common structure of fences consists of a series of vertical posts connected by horizontal crossbars or panel elements mounted between the pairs of posts, or other types, design and structure segments installed between the posts of the fence.
  • U.S. Pat. US3195864A (15-03-1962 ) describes a fence constructed of posts and crossbars, which is all metal, easy to assemble, solid structure, attractive and pleasing to the eye.
  • Another object of the present invention is to provide factory-made high quality and economical components that can be easily assembled outdoors and thus enabling to assemble a strong metal fence from the crossbars, suitable for a variety of situations and with minimal labor costs.
  • the structure of the fence consists of: the vertical, rectangular cross-section post with at least one engagement groove on the surface; a horizontal tube connected to the post and capable of moving sideways and vertically; a first connecting bracket movably connected to the post engagement groove and movable sideways; a pair of second connecting brackets mounted on the horizontal end of the tube and suspended from the first connecting bracket to move vertically; and a hinge pin for coupling the first and the second connecting brackets.
  • FIG. 1 Another U.S. patent US7090201B2 describes a fence structure system, consisting of strong and durable polymeric components, provided as an integrated modular kit that is easy to assemble in a DIY way.
  • the modular fence is an integrated system of compatible vinyl components using a unique polycarbonate or ABS-plastic clamp.
  • the fence consists of vertical posts with horizontal elements mounted between them. The horizontal elements have grooves for pressing in and holding the fence panels. Horizontal elements are connected to vertical elements using a new and uniquely configurable connecting element.
  • aluminum fences are known similar in structure to those described in KR101910532B1 and US7090201B2 , but differ in that the horizontal crossbars of the fence are not round or square aluminum tubes but elements of other cross-sectional shapes, such as flat blind-shaped aluminum profiles.
  • fence structures made of sheet metal and profiled sheet metal panels.
  • Profiled sheet metal structures, rails and panels are light but durable, they can be galvanized and painted with special durable and resistant paints.
  • Profiled sheet metal improves the strength of the fence structure.
  • U.S. Pat. US20180058092A1 A fence that completely covers the view is described in U.S. Pat. US20180058092A1 , in which the structure consists of interconnected vertical fence panels mounted between horizontal guide rails.
  • an improved connector of the vertical panel elements is disclosed, which connects the vertical panels into a single fence panel between the horizontal rails, while the vertical panels interlock and are no longer separate, thus enhancing the integrity and stability of the fence.
  • the fence plinth is made of a sheet material, which in one embodiment is pre-painted galvanized steel, has end edges and is profiled with stiffening formations running along the sheet between the end edges.
  • the plinth is ideal for use in conjunction with a fence consisting of posts connected by horizontal channels in which the edge of the plinth can be inserted.
  • the method of forming the plinths is also described.
  • profiled sheet metal segmental fences assembled using rivets and professional tools.
  • the assembled and riveted profiled sheet metal segments are transported to the destination and installed in the fence line, each segment being installed between the pairs of vertical posts of the fence.
  • the production, assembly and transportation of such structure segments is complex, requires professional tools and skills, and can only be serviced by qualified professionals.
  • the structure and method of assembly of such a fence segment comprising horizontal profiled sheet metal crossbars joined by rivets or screws are known and are shown in Fig. 1 .
  • fence structures are numerous and differ in functional characteristics, such as contemporary fashion, design and adaptability to customer tastes, safety, durability, resistance to adverse climatic conditions and an efficient delivery and assembly process.
  • Profiled sheet metal fence structures and kits have recently become popular because they have many advantages over other fence structures.
  • profiled sheet metal fence structures and assembly methods are not efficient enough and require professional technical actions, such as: riveting, special transportation of assembled segments, teams of several qualified specialists to properly install the delivered segment in the fence line.
  • Warranty and post-warranty service is also complicated.
  • fence segments assembled by riveting from profiled sheet metal have disadvantages in terms of durability and resistance to climatic factors such as seasonal temperature fluctuations. For example, after a few years, a riveted segment of a fence may come apart due to breakage / rupture of the rivets under influence of climatic thermo-mechanical stress.
  • the present invention discloses the structure and assembly method of a segmental fence made of profiled lamellas.
  • the segment of the fence consists of horizontal crossbars, or lamellas, made of profiled sheet metal or metal sheets folded in cross-sectional profiles of the chosen shape.
  • the cross-sectional shape of the lamellas is chosen by taking into account the design and functional factors of the fence, such as visibility through the fence or transmission of sunlight.
  • the fence segment consists of two vertical trough-shaped metal rails attached to the fence posts.
  • the structure uses special connecting elements to ensure firm stacking of the horizontal lamellas on top of each other and rigid connection within the segment; also, the base structure, the top cover (covers for posts and / or covers for the whole segments), and the protective and fixing elements.
  • the horizontal bars (lamellas) of the fence segment are bent from high-quality sheet metal or other sheet and / or metal material.
  • the sheet metal can be galvanized and coated with special paints, which give the lamella a good appearance
  • the assembly process of this segmental fence is efficient, starting with preparation of the structural elements (the vertical rails, the horizontal lamellas, the connecting elements, the base, the covers and the protective fastening elements).
  • the fence segment kit is provided in a compact package that can be conveniently delivered to the destination by one person.
  • the assembly of the fence segments is performed according to a simple instruction that does not require professional tools or operations (such as bending, painting, drilling or riveting).
  • Sufficient tools are a standard electric screwdriver and a level measuring tool (spirit level). According to these instructions, the fence installation technician or the customer himself, who has minimal technical skills, can independently install any segment of such structure.
  • the assembled and installed fence segment is resistant to adverse climatic conditions, such as sudden changes in temperature, humidity, and wind.
  • the segment is rigid and resistant to deformations due to short-term mechanical impact, such as the impact of a children's play ball.
  • the vertical sheet metal rails and horizontal lamellas are coated with special anti-corrosion materials that protect the surfaces and ensure a long-term service life of the components.
  • the structure of the segment and the method of assembly allow for a variety of fence shapes and designs. This variety is characterized by the different shapes of the horizontal lamella profile, which allows the implementation of different fence configurations, such as roofs, blinds, with clear acrylic inserts (boxes) and the like.
  • the fence of this structure is disassembled as easily as it is assembled, so it can be moved and re-installed in another location. As with the assembly, disassembly does not require professional tools and skills.
  • the fence consists of a series of vertical posts or poles (3) spaced at a predetermined distance from each other.
  • Posts (3) can be made or built of brick, concrete, wood, metal or other suitable structures and materials.
  • the material and structure of the vertical posts (3) is not essential for the installation of the fence segment (1), since the fence segment (1) is assembled (arranged) into two vertical rails (6) belonging to the segment, which are previously attached to said vertical posts (3).
  • the fence may also have a base or foundation (2).
  • the base / foundation (2) is usually cast of concrete and can also be constructed or formed of wood, metal, brick or other suitable materials.
  • the foundation (2) may be useful / suitable as a base for placing (arranging) on it the horizontal crossbars / lamellas (4) of the fence segment together with the connecting elements (5).
  • an important feature of the fence base (2) is its smooth and horizontal upper surface, so that the crossbars / lamellas (4) of the fence segment, laid and stacked on the surface of the base (2), are exactly horizontal. Otherwise, if the foundation of the fence is not horizontal and level, then the horizontality of the crossbars / lamellas (4) must be ensured by other means.
  • the vertical rails (6) of the fence segment (1) are designed to make a stack of horizontal crossbars / lamellas (4) and their connecting elements (5).
  • the vertical rail (6) is U-shaped and its width corresponds to the width of the horizontal crossbar / lamella (4) and the connecting element (5).
  • the profile of the vertical rail (6) may have the cross-sections shown in Figures 8 a-b .
  • the vertical rails (6) can be made of thick (for example, 1.5 to 2 millimeters thick) sheet metal, which is preferably galvanized and painted with paint for durability.
  • the vertical rail (6) may have a lower support (10) for supporting and holding the stack of horizontal crossbars / lamellas (4) with connecting elements (5).
  • the support (10) is required if there is no cast fence foundation (2), or if the cast foundation (2) is uneven, or if the top surface is not horizontal enough to support and put horizontal crossbars / lamellas (4).
  • the vertical rail (6) is attached to the vertical post (3) of the fence with bolts, screws, nails or other suitable means. Accurate alignment of the two vertical rails (6) is required when the vertical rails (6) are used not only to place the horizontal crossbars / lamellas (4) in the stack, but also to ensure the horizontal alignment of said stack using the lower supports (10) of the vertical rails (6).
  • the set of horizontal crossbars / lamellas (4) are arranged in two vertical rails (6) by means of connecting elements (5).
  • the choice of design and shape of the fence segment (1) and the horizontal lamella (4) can take into account the direct visibility through the fence and the transmission of sunlight at different times of the year.
  • the connecting elements (5) are one of the essential elements of the present invention. These elements ensure easy assembly of the segment (1), as well as give the horizontal crossbars / lamellas (4) a "freedom" clearance (9) for thermal expansion and contraction.
  • the connecting elements (5) are made or cast or 3D-printed from polyvinyl, polyethylene, polypropylene plastics or their composites or other suitable materials. In one suitable embodiment, the plastic composite comprises a mixture of 80% polyethylene and 20% polychlorovinyl.
  • the assembled stack of horizontal crossbars / lamellas (4) is fastened from above with lids (8) or with the upper beam or cover (14) of the segment.
  • the fastening lid (8) is fixed above the connecting element (5), and no longer allows the elements (5) below the vertical rail (6) to move, and at the same time no longer allows the fence segment (1) to be dismantled.
  • the fence segment (1) comprises horizontal crossbars / lamellas (4). These are the components that perform the essential function of the fence segment (1). Where appropriate, they are made (folded) of profiled sheet metal, but can be cast from aluminum, made of sheet metal, of glued moisture-resistant wood, plastic and other suitable materials.
  • the main feature of the element / lamella (4) is the use of a three-dimensional thin-walled profile, which allows to obtain a large covering area, lamella strength and stiffness, low weight and various functional shapes with a small amount of raw material.
  • the thickness of the sheet metal suitable for the production of horizontal lamellae profiles (4) can be selected from 0.4 to 1.00 millimeters.
  • the outer surface of the tin profile is covered with paint: polyester, imitation of wood or other.
  • the sheet metal can be galvanized, in which case the surface is extremely resistant to environmental influences, such as rain, wind and temperature changes.
  • the segment of the profiled sheet metal fence is rigid and light. It is resistant to many typical mechanical impacts (for example, impacts when children play with the ball, strong winds, etc.).
  • the length of the horizontal crossbars / lamellas and fence segment using sheet metal profiling technology can reach 3-4 meters. Proper coating, painting and element materials ensure the longevity of the fence up to 30 years.
  • the horizontal crossbar / lamella (4) is made by folding the sheet metal into the selected cross-sectional profile.
  • Each particular cross-sectional shape can also perform a specific function.
  • a fence with horizontal crossbars / lamellas (4), the profiles of which are shown in Figures 5a, 5b, 5c can be used:
  • the shape of the horizontal crossbar / lamella (4) is selectable. This means that the lamella (4) and its connecting elements (5) can be designed and manufactured according to individual shapes desired by the customer. Practical versions of profiles are presented in Figure 5 . (a-k). Some profiles can be reinforced and stiffer in structure. For example, Figure 5c shows a reinforced modification of profile depicted in Figure 5b. Figures 5 i, k show the changes for strengthening the profile structure depicted in Figure 5g . In the fence segments, any of the profile versions shown can be used for horizontal crossbars (4) with a standard length (1800 millimeters) or less. For crossbars / lamellas (4) with a selected length exceeding 1800 millimeters, only reinforced versions are recommended ( Fig.
  • the connecting element (5) is essential in the present invention and is shown in Figure 3 . It ensures the assembly and vertical alignment of the horizontal crossbars / lamellas (4) into the fence segment (1), and there is also a connection between the vertical rails (6) and the horizontal crossbars / lamellas (4).
  • the connecting element (5) can be molded or 3D printed from polyvinyl, polyethylene, polypropylene plastics or their composites, or other suitable materials. In the most preferred embodiment, this element (5) has a rectangular parallelepiped shape and has dimensions that ensure its sliding along the vertical rail (6) and is adapted to the horizontal crossbar / lamella (4) cross-sectional profile, as shown in Figure 2 .
  • the element (5) has notches / grooves (7) corresponding to the cross-sectional shape of the horizontal crossbar / lamella (4).
  • the horizontal crossbar / lamella (4) the cross-sectional profile of which is shown in Figure 5
  • the element (5) has a vertical groove (15) on the back side for the head of the bolt (16) to pass, when the vertical rail (6) is attached by bolts (16) to the post (3) and the connecting elements (5) with lamellas (4) are inserted one after another into the rail (6).
  • the notch / groove (7) coincides with the profile of the horizontal rail (4).
  • the connecting element (5) it is possible for the connecting element (5) to have a cavity / groove (7) corresponding to horizontal rails of several different shapes.
  • Figures 5 (g, h) show lamella profiles that can coincide with a notch / groove (7) of a single connecting element.
  • the dimensions of the connecting element (5) may differ in each case.
  • the thermal gap DTSG (9) of the horizontal crossbar / lamella (4) is selected from 3 to 5 millimeters at each end of the horizontal crossbar / lamella (4), depending on the length of the lamella (4), which in most embodiments can be from 1.5 to 3.2 m. These specific dimensions are one practical example, and in the embodiments of the invention the connecting elements (5) may have different numerical dimensions.
  • the connecting element (5) may be not only a rectangular parallelepiped, but, for example, a rhomboidal parallelepiped or a trapezoidal parallelepiped.
  • the single lamella connecting element (5) can be cast not in one piece, but in more than one piece (18), as shown in Figure 12 .
  • Various versions and shapes of this element (5) are possible as long as they ensure the functions and characteristics of joining and reinforcing the elements of the fence segment described above.
  • Disassembly of the segment Disassembly of the fence segment (1) is performed in reverse order:
  • the fence segments can be conveniently transported in compact packages, as shown in Figure 7 .
  • the assembly and disassembly of the segments described above can be carried out quickly by one person, such as fence technician or by the customer himself, who has minimal technical skills.
  • the fence consists of standard 180 cm wide fence segments (1).
  • the top of the fence foundation (2) is exactly flat and horizontal.
  • the connecting element (5) is molded from a plastic composite consisting of 80% polypropylene and 20% polyethylene.
  • the horizontal crossbars / lamellas (4) are cut to a fixed length of 1800 millimeters.
  • the fence post (3) is a metal or wooden beam of square cross-section with a side length of 100 millimeters.
  • all fence segments (1) are assembled according to the assembly instructions described above.
  • the fence segment (1) is adapted to the constraints already present on the construction site.
  • the distance between adjacent fence posts (3) is fixed at 3100 millimeters.
  • the fence foundation (2) is not flat and / or insufficiently horizontal.
  • reinforced profile versions e.g., Fig. 5 (c, h, i) are used for this lamella length in excess of the standard 1800 mm length.
  • the vertical rails (6) are made with a lower support (10) and fastened to the posts (3) by leveling the heights of both supports (10) with a spirit level so that the horizontal crossbars (4) then lie exactly horizontally on the supports (10).
  • all fence segments (1) are assembled according to the assembly instruction described above.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Fencing (AREA)

Claims (11)

  1. Zaunkonstruktionssystem, umfassend:
    - ein Zaunfundament (2),
    - Zaunpfosten (3),
    - ein Zaunsegment (1), das zwei vertikale Schienen (6) umfasst, die an den Pfosten (3) angebracht sind, in die eine oder mehrere horizontale Querstangen (4) von oben zusammen mit Paaren von Verbindungselementen (5) an den Enden jeder Querstange (4) eingesetzt werden,
    - obere Verriegelungen (8) oder obere Balken (14), die den Stapel horizontaler Querstangen (4) sichern und / oder verriegeln,
    wobei
    - die horizontale Querstange (4) eine starre Lamelle ist, die aus einem Plattenmaterial gebildet ist und ein dreidimensionales Profil aufweist,
    - das Verbindungselement (5) der Form der vertikalen Schiene (6) auf der Rückseite entspricht und auf der Vorderseite Kerben und / oder Rillen (7) aufweist, deren Form der Form des Profils der horizontalen Querstange (4) zum Einsetzen des Profils in die Kerben / Rillen entspricht.
  2. System nach Anspruch 1, dadurch gekennzeichnet, dass die Kerbe / Rille (7) des Verbindungselements (5) so tief ist, dass die horizontale Querstange (4) mit einem ausreichenden Spiel ihrer thermischen Längsverschiebung zwischen den in die vertikalen Schienen (6) eingesetzten Verbindungselementen (5) versehen ist.
  3. System nach Anspruch 1, dadurch gekennzeichnet, dass das Verbindungselement (5) aus Polyvinyl-, Polyethylen-, Polypropylen-Kunststoffen oder deren Verbundstoffen oder anderen geeigneten Materialien hergestellt ist.
  4. System nach Anspruch 1, dadurch gekennzeichnet, dass das Verbindungselement (5) Konfigurationen aufweisen kann, in denen
    - das Verbindungselement (5) einen Teil einer Lamelle (4) und einen Teil einer anderen hält;
    - zwei Verbindungselemente (18) eine Lamelle (4) halten;
    - ein Verbindungselement eine Lamelle (4) hält;
  5. System nach Anspruch 1, dadurch gekennzeichnet, dass die räumlichen Profile der horizontalen Querstange (4) durch Verwendung von zusätzlichen inneren profilverstärkenden Trennwänden und Elementen verstärkt werden.
  6. System nach Anspruch 1, dadurch gekennzeichnet, dass das Profil der horizontalen Querstange (4) aus verzinktem Blech hergestellt ist und mit Polyester-, Holzimitations- oder anderen Außenanstrichen bedeckt ist.
  7. System nach Anspruch 1, dadurch gekennzeichnet, dass das Profil der horizontalen Querstange (4) aus Blech, aus verleimtem, feuchtigkeitsbeständigem Holz, Kunststoff oder anderen für die Außenbedingungen geeigneten Materialien hergestellt ist.
  8. System nach Anspruch 1, dadurch gekennzeichnet, dass die vertikale Schiene (6) Folgendes umfasst
    - eine Außenschiene (6.1), die am Zaunpfosten (3) angebracht ist;
    - eine Innenschiene (6.2), die innerhalb der Außenschiene (6.1) platziert ist, und horizontale Querstangen / Lamellen (4) zusammen mit den Verbindungselementen (5) in die Innenschiene (6.2) eingesetzt sind;
    - zwei oder mehr gebogene Federstahlplatten (6.3), die Längsverschiebungen des Zaunsegments (1), thermische Längenänderungen der Lamellen (4) und Abweichungen der Zaunpfosten (3) von der vertikalen Achse ausgleichen.
  9. System nach Anspruch 8, dadurch gekennzeichnet, dass die vertikale Schiene (6) und die vertikale Außenschiene (6.1) einen unteren Träger (10) des Zaunsegments (1) zum Stützen und Halten der horizontalen Zaunquerstangen (4) zusammen mit deren Verbindungselementen (5) aufweisen.
  10. System nach den Ansprüchen 1-9, dadurch gekennzeichnet, dass die vertikalen Schienen (6) der montierten Zaunsegmente (1) zusammen mit den Zaunpfosten (3) von den Seiten durch Schutzabdeckungen (17) bedeckt sind, die
    - gebogene Kanten zum Einhaken hinter den Kanten der vertikalen Schienen (6) aufweisen;
    - durch Absenken derselben von oben angeordnet sind, sodass die gefalteten Kanten der Abdeckung (17) hinter die Kanten der vertikalen Schienen (6) eingreifen;
    - die installierten Abdeckungen (17) mit oberen Verriegelungen (8) oder oberem Balken (14) zusammen mit der gesamten Struktur des Zaunsegments (1) befestigt/verriegelt sind.
  11. Verfahren zum Zusammenbauen eines Zaunbausystems nach den Ansprüchen 1-10, wobei ein Zaunfundament (2) und mindestens zwei angrenzende Zaunpfosten (3) bereitgestellt sind, dadurch gekennzeichnet, dass das Verfahren die folgenden Schritte umfasst:
    - Befestigen von zwei vertikalen Schienen (6) an den Zaunpfosten (3) mit Schrauben, Bolzen oder Nägeln;
    - Einführen einer horizontalen Querstange (4) mit zwei Verbindungselementen (5) in die zwei vertikalen Schienen (6), Wiederholen des Schrittes mit einer vorbestimmten Anzahl von horizontalen Querstangen (4), oder bis das Zaunsegment (1) gefüllt ist;
    - Sichern des zusammengebauten Zaunsegments (1) durch Montieren von Deckeln (8) auf den vertikalen Schienen (6) oder durch Anbringen eines oberen Balkens oder einer Abdeckung (14) auf der Oberseite des Segments (1).
EP21180339.0A 2020-06-19 2021-06-18 Zaunkonstruktion und montageverfahren Active EP3940174B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
LT2020531A LT6822B (lt) 2020-06-19 2020-06-19 Segmentinės tvoros konstrukcija ir surinkimo būdas

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EP3940174A1 EP3940174A1 (de) 2022-01-19
EP3940174B1 true EP3940174B1 (de) 2023-03-29

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114396200B (zh) * 2022-02-25 2024-02-20 上海市浦东新区建设(集团)有限公司 一种多功能装配式围挡
CN115653392B (zh) * 2022-12-10 2023-02-28 承德中拓路桥建设有限公司 一种公路施工防护装置
CN115680373B (zh) * 2023-01-03 2023-03-28 山东德实建筑工程有限公司 一种小区建筑围栏结构

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3195864A (en) 1962-03-15 1965-07-20 Anchor Post Prod Post and rail fence
FR2651523B1 (fr) * 1989-09-05 1994-06-24 Cecege Ste Civile Rech Ensemble de profiles d'assemblage pour la realisation de structures principalement verticales telles que des barrieres et plus generalement des enceintes.
US5702090A (en) * 1995-08-07 1997-12-30 Vinylex Corporation Snap together plastic fence
US7090201B2 (en) 2002-10-18 2006-08-15 Simplicity Products, Llc Modular vinyl fencing system
GB2423535B (en) 2003-11-24 2008-02-27 Gram Engineering Pty Ltd Fence plinth
FR2877364B1 (fr) * 2004-10-29 2008-04-11 Agorespace Soc Par Actions Sim Assemblage destine au montage d'une paroi constituee de montants et de lisses et procede de montage d'une paroi mettant en oeuvre cet assemblage
US9347191B2 (en) * 2014-07-15 2016-05-24 Ross Technology Corporation Structural tube based vehicle crash fence
CA2932078C (en) 2016-06-03 2020-07-21 Harvey Parisien Fence system
FR3065979B1 (fr) * 2017-05-05 2019-06-07 Zhejiang Yotrio Group Co Ltd Kit pour realiser une cloture, procede de montage de la cloture a l'aide de ce kit et cloture ainsi montee
KR101910532B1 (ko) 2018-05-18 2018-10-22 이성재 펜스 조립체

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EP3940174A1 (de) 2022-01-19
LT6822B (lt) 2021-06-10
LT2020531A (lt) 2021-04-12

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