SLATTED PERGOLA WITH A NEW ASSEMBLY STRUCTURE
The new assembly structure for louvered pergolas addresses stability and aesthetic concerns by using embedded grooves and internal fixing mechanisms, ensuring quick and stable installation with concealed fasteners, enhancing durability and adaptability.
Patent Information
- Authority / Receiving Office
- FR · FR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-08-07
- Publication Date
- 2026-03-06
AI Technical Summary
Existing louvered pergolas face issues with complex and aesthetically compromising assembly structures that lack stability, particularly in outdoor environments, due to unreliable connections and exposed fasteners that are vulnerable to environmental damage.
A new assembly structure for louvered pergolas featuring a receiving seat with embedded assembly grooves, mounting units, and internal fixing mechanisms, including covers and mounting plates, that provide secure, concealed connections between posts and beams, enhancing stability and aesthetics.
The new assembly structure facilitates quick and stable installation, improves mechanical resistance to environmental factors, and extends the lifespan of the pergola by concealing fasteners, while allowing for versatile adaptation to different dimensions and extensions.
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Abstract
Description
Title of the invention: SLATTED PERGOLA WITH A NEW ASSEMBLY STRUCTURE technical field
[0001] The present invention relates to the technical field of louvered pergolas for outdoor use, and more particularly to a louvered pergola with a new assembly structure. STATE OF THE ART
[0002] Outdoor tent or shelter structures come in a variety of forms. Some are designed as folding tents for compact storage, while others are fixed structures intended for permanent installation in courtyards, gardens, or public parks. The louvered pergola, as a type of fixed structure, is characterized by a roof made of adjustable louvers. Thanks to a linkage mechanism, the louvers can pivot, thus providing shade or opening. The louvered pergola is particularly appealing to consumers because of its ability to modulate natural light.
[0003] For example, the document published under number CN217001180U discloses a quick-assembly tent structure comprising poles and perimeter beams assembled together. This structure is distinguished in that the end of the perimeter beam is equipped with an anchor-type connection module, while the lateral face of the pole has a longitudinal guide groove. The anchor-type module is designed to slide into this groove and be locked horizontally in place. In addition, a support element is provided to reinforce the connection between the pole and the perimeter beam. In this invention, the perimeter beam is attached to the pole by means of the support element and stabilized by the anchor-type module, which improves the strength of the assembly and facilitates assembly and disassembly. However, the assembly of the anchor-type connection module in this structure remains relatively complex.Furthermore, it requires the use of an additional support element to reinforce the fixing, which complicates the entire assembly. This support element is visible, detracts from the overall aesthetics, and the overall mechanical resistance of the installation remains average.
[0004] On the current market, the frame structures of louvered pergolas generally consist of perimeter beams and foot tubes fixed together. Since they are used primarily outdoors, they must withstand strong winds, heavy rain, and heavy snow, which imposes high requirements in terms of stability. Regarding the connections between The vertical posts and horizontal beams of existing louvered pergolas are joined, some using overlapping joints, others employing angle brackets. These unreliable connections can cause wobbling and instability during use. Furthermore, the connecting parts are often exposed, making them vulnerable to environmental damage and reducing their lifespan. PRESENTATION OF THE INVENTION
[0005] In order to solve the aforementioned problems, the present invention aims to provide a louvered pergola with a new assembly structure, optimizing the assembly structure between the peripheral beams and the posts in order to improve the overall stability of the pergola.
[0006] The technical problem that the present invention intends to solve can be achieved through the following technical solution:
[0007] Pergola with slats with a new assembly structure, comprising posts and peripheral beams, a receiving seat is embedded in the upper part of the post, an assembly groove is provided on the internal wall of the receiving seat, a mounting unit is arranged in cooperation in said assembly groove, a housing is formed inside the receiving seat, an assembly unit of the peripheral beam is arranged at the end of the peripheral beam, said assembly unit of the peripheral beam is received in said housing, said mounting unit is mounted in correspondence with said assembly unit of the peripheral beam.
[0008] Said mounting unit includes a cover and a first mounting plate, said cover is intended to be fixed in correspondence with the upper end of the post, said first mounting plate is inserted into said assembly groove, said first mounting plate is intended to cooperate with said assembly unit of the peripheral beam.
[0009] Said cover and said first mounting plate form a single-piece structure, the number of first mounting plates is two.
[0010] The first two mounting plates are arranged on two adjacent side faces located at the bottom of said cover, the first two mounting plates are respectively inserted into the corresponding assembly grooves provided on two adjacent side walls of the receiving seat.
[0011] Said cover has post fixing holes and perimeter beam fixing holes; the cover joining holes are provided on the upper face of the perimeter beam assembly unit; the lateral fixing holes are provided on the side wall of the perimeter beam; the holes of The fixing holes for the perimeter beam are intended to correspond with the connecting holes in the cover; the fixing holes for the post are intended to correspond with the fixing holes in the cover located on the receiving seat; the lateral fixing holes are intended to correspond with the lateral connecting holes provided on the first mounting plate.
[0012] Said cover and said first mounting plate form a separate structure, the first mounting plate is inserted into the corresponding assembly groove, said first mounting plate is intended to cooperate with the assembly unit of the peripheral beam, said cover is intended to be fixed in correspondence with the upper end of the post.
[0013] Said peripheral beam assembly unit also includes a second mounting plate, said second mounting plate is inserted into the inner cavity of said peripheral beam assembly unit, said second mounting plate is mounted in correspondence with said first mounting plate.
[0014] Said first mounting plate includes a lateral connection hole; a lateral fixing hole is provided on said peripheral beam assembly unit; a lateral mounting hole is provided on said second mounting plate; said lateral connection, lateral mounting and lateral fixing holes are mounted in correspondence.
[0015] Said cover includes post fixing holes and peripheral beam fixing holes; the cover joining holes are provided on the upper face of the peripheral beam assembly unit; the peripheral beam fixing holes are intended to correspond with the cover joining holes; the post fixing holes are intended to correspond with the cover fixing holes located on the receiving seat.
[0016] Several protruding ribs are arranged on the inner wall of the post, said protruding ribs engage by snapping into grooves provided on the outer wall of the receiving seat; a fixing cavity with an insertion groove is provided at the top of the post, said cavity is used to insert and fix the receiving seat.
[0017] Said reception seating comprises a corner reception seat and a central reception seat.
[0018] The base of the post is arranged with a foot, said foot comprising a foot base and a foot cover; said foot base comprising a lower foot plate and a foot fixing bracket provided on the underside of said lower foot plate, said foot fixing bracket is intended to cooperate with the post; said The foot cover is fitted onto the post, and said foot cover covers the upper part of the foot base.
[0019] Said foot cover comprises a first foot cover and a second foot cover, the first foot cover and the second foot cover are fitted together, and the first foot cover and the second foot cover are installed around the outside of the post after fitting together.
[0020] The peripheral posts and beams form lateral cavities, at least one of which of said lateral cavities receives a roller blind mechanism.
[0021] The peripheral posts and beams form lateral cavities, at least one of which of said lateral cavities receives a sliding door mechanism.
[0022] The peripheral posts and beams form lateral cavities, at least one of which of said lateral cavities receives a lateral slatted blind.
[0023] Said side slat blind comprises a side blind frame and several side slats arranged inside said side blind frame, said side slats are arranged horizontally or vertically in said side blind frame.
[0024] Said side slat comprises a main side slat body and a side slat end support located at each end of the main side slat body; a connecting rack is associated with at least one of said side slat end supports, said connecting rack is positioned in the side blind frame; said side slat end support comprises an end body, a rotation shaft portion and a toothed portion, said toothed portion is intended to mesh with said connecting rack; said connecting rack enables said toothed portion to be driven in synchronization and ensures the coordinated rotation of several side slats.
[0025] An arched outer side wall is provided on said post.
[0026] A set of blades is arranged inside the peripheral beam, a drainage gutter is provided on the inner wall of said peripheral beam, and an insertion groove for the light strip is provided on the side wall of said drainage gutter.
[0027] The advantages of the present invention, compared to the prior art, are as follows: the receiving seat is recessed into the upper part of the post, the first mounting plate is securely attached to this receiving seat, which allows for quick assembly of the perimeter beam by the perimeter beam assembly unit. Combined with the assembly of the top cover, a two-way longitudinal and transverse fixing is thus obtained, considerably improving the stability of the installation. The structure of the mounting unit is optimized thanks to a modular or monobloc design, making adaptation to different pergola dimensions easier, which improves the assembly suitability of the product. In addition, the design of the reception seat is also optimized, divided into corner reception seat or central reception seat depending on the assembly requirements, facilitating the extension of the installation of the louvered pergola.
[0028] The features of the present invention will be better understood in the light of the accompanying figures and the detailed description of the preferred embodiments below. PRESENTATION OF THE FIGURES
[0029] The [Fig. 1] is a first diagram of the overall structure of the slatted pergola according to the present invention;
[0030] Fig. 2 is a first diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0031] The [Fig.3] is a second diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0032] The [Fig.4] is a third diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0033] Fig. 5 is a diagram of the mounting structure between the post and the receiving seat according to the present invention;
[0034] The [Fig.6] is a first cross-sectional diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0035] The [Fig.7] is a second cross-sectional diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0036] Fig. 8 is a diagram of the mounting structure between the post, the receiving seat and the first mounting plate according to the present invention;
[0037] Fig. 9 is a first diagram of the mounting structure between the post, the receiving seat and the mounting unit according to the present invention;
[0038] The [Fig. 10] is a second diagram of the mounting structure between the post, the receiving seat and the mounting unit according to the present invention;
[0039] The [Fig. 11] is a diagram of the structure of the mounting unit according to the present invention;
[0040] The [Fig. 12] is a fourth diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0041] The [Fig. 13] is a fifth diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0042] The [Fig. 14] is a sixth diagram of the mounting structure between the post and the peripheral beam according to the present invention;
[0043] The [Fig. 15] is a first diagram of the mounting structure between the post and the base according to the present invention;
[0044] The [Fig. 16] is a second diagram of the mounting structure between the post and the base according to the present invention;
[0045] The [Fig. 17] is a second diagram of the overall structure of the slatted pergola according to the present invention;
[0046] The [Fig. 18] is a third diagram of the overall structure of the slatted pergola according to the present invention;
[0047] The [Fig. 19] is a fourth diagram of the overall structure of the slatted pergola according to the present invention;
[0048] The [Fig.20] is a fifth diagram of the overall structure of the louvered pergola according to the present invention;
[0049] The [Fig.21] is a sixth diagram of the overall structure of the slatted pergola according to the present invention;
[0050] The [Fig.22] is a seventh diagram of the overall structure of the slatted pergola according to the present invention;
[0051] Fig. 23 is a diagram of the structure of the lateral slat blind according to the present invention;
[0052] The [Fig.24] is an exploded diagram of the side blade and connecting rack;
[0053] Figure 25 is a diagram of the assembly of the side blade and the rack of connection ;
[0054] The [Fig.26] is a cross-sectional diagram of the installation of the lateral slat blind;
[0055] The [Fig.27] is a diagram of the upright frame structure;
[0056] Figure 28 is a schematic diagram of the structure of the crossmember frame and guide rail. the sliding door;
[0057] The [Fig.29] is a diagram of the structure of the drainage gutter;
[0058] Fig. 30 is a cross-sectional diagram of the peripheral beam section. DETAILED DESCRIPTION OF THE INVENTION
[0059] In order to better understand the technical means implemented, the design characteristics, the objectives achieved and the technical effects of the present invention, it will be described in more detail below with the help of the associated figures.
[0060] Example of implementation 1
[0061] With reference to [Fig. 1] and [Fig. 9] to [Fig. 14], the present invention discloses a louvered pergola with a novel assembly structure, comprising posts 100 and perimeter beams 300. Integrated within the perimeter beam 300 is a set of louvers 500, serving as an opening / closing module for the pergola louvers. This set of louvers 500 corresponds to a known and commonly used technology, generally comprising several adjustable louvers. associated with a linking mechanism and a drive device enabling the rotation of the blades.
[0062] In a preferred embodiment, an arched outer side wall 103 is arranged on the post 100; this arched outer side wall 103 is used to improve the exterior aesthetics; in other embodiments, the cross-section of the post adopts a rectangular shape.
[0063] With reference to the above, the upper part of the post 100 is embedded with a receiving seat 110. The receiving seat 110 is, in general, securely fixed to the post 100, so as to form a single piece, preferably, the receiving seat can be made in separate form, using a snap-fit to obtain a firm fit, or it can be a single piece; the inner wall of the receiving seat 110 is provided with an assembly groove 111, a mounting unit 200 is inserted into the assembly groove 111, a housing 101 is formed inside the receiving seat 110, the end of the peripheral beam 300 is equipped with a peripheral beam assembly unit, this peripheral beam assembly unit is housed in the housing 101, the mounting unit 200 is installed in correspondence with the peripheral beam assembly unit;The structure of the mounting unit 200 is designed in an optimized manner, and based on the fit between the mounting unit 200 and the receiving seat 110, an assembly base is formed; the peripheral beam assembly unit is designed to facilitate its fit in correspondence with the mounting unit 200; the whole assembly is stably fixed by means of a fixing element 900.
[0064] In the specific structure, the mounting unit 200 comprises a cover 210 and two first mounting plates 220. The cover 210 and the first mounting plates 220 form a single-piece structure. There are two first mounting plates 220.The cover 210 is intended to be fixed to the upper end of the post 100, while the first mounting plates 220 are inserted into the assembly grooves 111, and these first mounting plates 220 serve to ensure the fit in correspondence with the assembly unit of the perimeter beam; the first two mounting plates 220 are arranged on two adjacent lateral faces located under the cover 210; the first two mounting plates 220 are inserted respectively into an assembly groove 111 provided on the adjacent lateral faces of the receiving seat 110; this configuration allows for convenient installation at the corners of the junction between the perimeter beam 300 and the post 100. In this context, the mounting unit 200 is preferably designed as a single piece, which improves the ease and stability of the overall assembly.The first two mounting plates 220 are inserted downwards into the assembly grooves 111, and in association with the cover 210. which fits securely with the receiving seat 110, a complete installation is achieved. This design also allows the position of the first mounting plates 220 to be maintained, and enables precise alignment of the holes with the peripheral beam assembly unit, thus improving positioning accuracy during installation.
[0065] With reference to the foregoing, the cover 210 is provided with mounting holes for the post 212 and mounting holes for the perimeter beam 211. The upper face of the perimeter beam assembly unit has mounting holes for the cover 302. The side wall of the perimeter beam 300 has lateral mounting holes 301. The mounting holes for the perimeter beam 211 are designed to fit into the mounting holes for the cover 302. The mounting holes for the post 212 are designed to fit into the mounting holes for the cover 112 located on the receiving seat 110. The lateral mounting holes 301 are designed to fit into the lateral mounting holes 221 of the first mounting plate 220.The correspondences between the holes — fixing holes of the peripheral beam 211 with connecting holes of the cover 302, fixing holes of the post 212 with fixing holes of the cover 112, and lateral fixing holes 301 with lateral connecting holes 221 — are all ensured by fixing elements 900. The fixing elements 900 are clamping screws, passing vertically and horizontally through the parts to ensure a complete and stable fixing of the cover 210, the receiving seat 110 and the peripheral beam 300.
[0066] Example of implementation 2
[0067] With reference to [Fig. 1] to [Fig. 8], compared to Example 1, the embodiment of the present invention discloses a louvered pergola with a new assembly structure. In this embodiment, the cover 210 and the first mounting plate 220 are separate structures. The first mounting plate 220 is inserted into the corresponding assembly groove 111, and the first mounting plate 220 serves to ensure a precise fit with the assembly unit of the perimeter beam. The cover 210 is intended to be fixed to the upper end of the post 100. The separation of the cover 210 and the first mounting plate 220 allows for adaptation to other products of different specifications, thus improving versatility.
[0068] With reference to the above, the peripheral beam assembly unit is also equipped with a second mounting plate 230. This second mounting plate 230 is recessed into the inner cavity of this peripheral beam assembly unit. The second mounting plate 230 is designed to fit in correspondence with the first mounting plate 220; the first plate of The mounting 220 has lateral connecting holes 221, the perimeter beam assembly unit has lateral fixing holes 301, and the second mounting plate 230 has lateral mounting holes 231. The lateral connecting holes 221, the lateral mounting holes 231, and the lateral fixing holes 301 are arranged to fit together correspondingly and are preferably secured through-bolted with clamping screws. In this optimized design, a second mounting plate 230 is added inside the perimeter beam assembly unit. The combination of the first mounting plate 220 and the second mounting plate 230 creates a bilateral clamping of the perimeter beam assembly unit, which improves the stability of the perimeter beam 300's attachment.
[0069] With reference to the above, the cover 210 has mounting holes for the post 212 and mounting holes for the peripheral beam 211. The upper face of the peripheral beam assembly unit has connecting holes for the cover 302. The mounting holes for the peripheral beam 211 are designed to fit into the connecting holes of the cover 302, while the mounting holes for the post 212 are designed to fit into the mounting holes of the cover 112 located on the receiving seat 110. Preferably, all corresponding holes are secured through-bolted with clamping screws.
[0070] Example of implementation 3
[0071] By combining embodiments 1 and 2, the present invention discloses a peripheral beam assembly structure for a louvered pergola with a new assembly structure, comprising a post 100 and a peripheral beam 300. The upper part of the post 100 is inserted with a receiving seat 110, and the inner wall of the post 100 is provided with several projecting ribs 102, which interlock by clipping with grooves 113 located on the outer wall of the receiving seat 110.
[0072] The inner wall of the reception seat 110 is provided with an assembly groove 111. A first mounting plate 220 is slidably inserted and snapped into place in this assembly groove 111. The first mounting plate 220 is fixed in correspondence with a second mounting plate 230 located at the end of the peripheral beam 300.
[0073] More specifically, the top of the post 100 is provided with a grooved fixing cavity 120, and the receiving seat 110 is provided with a housing 101, this housing 101 is intended to accommodate the peripheral beam 300.
[0074] In a preferred embodiment, with reference to [Fig. 8], the first mounting plate 220 comprises a front plate 221 and a rear plate 222 formed in one piece. The front plate 221 is fixed by means of a fastener 900 corresponding to the second mounting plate 230 located at the end of the peripheral beam 300. The rear plate 222 is inserted into the assembly groove 111 by sliding and locking by interlocking.
[0075] In one of the preferred embodiments, the grooved mounting cavity 120 has a right-angled structure, and the receiving seat 110 has a right-angled structure corresponding to that of the grooved mounting cavity 120. The two internal side walls of the receiving seat 110 are each provided with an assembly groove 111, which are used to assemble, respectively, in cooperation with the first mounting plate 220, two adjacent peripheral beams 300, thus enabling a horizontal connection. The upper part of the post 100 is equipped with a cover 210, which covers the ends of the two adjacent peripheral beams 300, thus enabling a vertical connection.
[0076] In combination with embodiment 1, the use of a fastener 900, preferably a set of bolts, allows the perimeter beam 300 to be passed directly through to fix it to the first mounting plate 220. The first mounting plate 220 is fitted and positioned against the inside of the receiving seat 110, which allows the perimeter beam 300 to be fixed to the post 100. This not only improves the stability of the installation, but also adopts an internal fixing structure, avoiding the exposure of the fasteners, improving the aesthetics while protecting the components from environmental influences, thus extending the product's service life.
[0077] In combination with embodiment 2, the use of a fastener 900, preferably a set of bolts, allows the second mounting plate 230 and the peripheral beam 300 to be passed directly through to fix it to the first mounting plate 220. The first mounting plate 220 is fitted and positioned against the inside of the receiving seat 110, which allows the peripheral beam 300 to be fixed to the post 100. This not only improves the stability of the installation, but also adopts an internal fixing structure, avoiding the exposure of the fasteners, improving the aesthetics while protecting the components from environmental influences, thus extending the product's service life.
[0078] Example of implementation 4
[0079] With reference to [Fig. 1] to [Fig. 14], the present invention discloses a peripheral beam assembly structure for an outdoor louvered pergola, in which the reception seat 110 is divided into a corner reception seat 1101 and a seat of central reception 1102; the corner reception seat 1101 is used to ensure the assembly between the perimeter beam 300 and the post 100 at the four corners, while the central reception seat 1102 is intended to achieve the assembly and fixing between two parallel perimeter beams as part of an extension of the louvered pergola.
[0080] In a specific structure, at the end corners of the louvered pergola, the grooved mounting cavity 120 has a right-angled structure, and the corner seating area 1101 has a right-angled structure corresponding to the grooved mounting cavity 120. The two internal side walls of the corner seating area 1101 are each provided with an assembly groove 111, into which the first mounting plates 220 are respectively fitted, allowing two adjacent perimeter beams 300 to be joined. The upper part of the post 100 is provided with a cover 210, covering the ends of the two adjacent perimeter beams 300.
[0081] In a specific structure, with reference to [Fig. 3] and [Fig. 18], at the extension point of the louvered pergola, the grooved mounting cavity 120 adopts an L-shaped structure, and the central receiving seat 1102 has an L-shaped structure corresponding to that of the grooved mounting cavity 120. The central receiving seat 1102 is provided with an assembly groove 111, which cooperates with the first mounting plate 220 to simultaneously assemble two adjacent perimeter beams 300. The ends of the two perimeter beams 300 are aligned in linear contact, thus achieving the extension of the louvered pergola. The fastening structure between the perimeter beam 300 and the post 100 can be compared to the corresponding fastening structures described in embodiments 1 and 2.
[0082] At the pergola's end corner, the optimized structure of the seating area allows for stable attachment of the perimeter beam assembly structure. At the pergola's extension point, the optimized structure of the seating area allows for unlimited extension of the louvered pergola.
[0083] Example of implementation 5
[0084] With reference to [Fig. 15] and [Fig. 16], and in combination with any one of the embodiments described above, the present invention discloses a perimeter beam assembly structure for an outdoor louvered pergola, in which the lower part of the post 100 is associated with a foot 400. The foot 400 comprises a foot base 410 and a foot cover 420. The foot base 410 comprises a lower foot plate 411 and a foot mounting bracket 412 disposed on the lower foot plate 411. The foot mounting bracket 412 is intended to be mounted in cooperation with the post 100, generally by fitting it into the inner cavity or by fastening it with screws. The foot cover 420 is fitted onto the post 100; and foot cover 420 covers the upper part of foot base 410.
[0085] Preferably, the foot cover 420 comprises a first foot cover 421 and a second foot cover 422, adopting a separate structure design. The first foot cover 421 and the second foot cover 422 are nested one inside the other, so that after mutual interlocking, the first foot cover 421 and the second foot cover 422 wrap together around the outer face of the post, which facilitates the assembly and installation of the foot cover 420.
[0086] Example of implementation 6
[0087] As illustrated in [Fig. 17], and in combination with any of the preceding embodiments, in the present embodiment, the posts and perimeter beams form lateral cavities, at least one of which houses a roller blind mechanism 600. This allows a roller blind mechanism 600 to be installed on at least one side of the louvered pergola. The two ends of the roller blind mechanism 600 cooperate respectively with the two posts and the corresponding upper perimeter beam 300.
[0088] The roller blind mechanism 600 is a common device in the prior art, and will therefore not be described in detail here.
[0089] Example of implementation 7
[0090] As illustrated in [Fig. 18] to [Fig. 22], and in combination with any of the preceding embodiments, in the present embodiment, the posts and perimeter beams form lateral cavities, at least one of which houses a sliding door mechanism 700. This allows a sliding door mechanism 700 to be installed on at least one side of the louvered pergola. The two ends of the sliding door mechanism 700 cooperate respectively with two posts 100 and the corresponding perimeter beam 300.
[0091] The sliding door mechanism used in conjunction with the louvered pergola is a device known from the prior art. This sliding door mechanism may include, for example, a louvered sliding door or a glass sliding door, and will therefore not be described in detail here.
[0092] Example of implementation 8
[0093] As illustrated in [Fig. 18] to [Fig. 28], and in combination with any of the preceding embodiment examples, in the present embodiment example, the peripheral posts and beams form lateral cavities, at least one of which of said lateral cavities receives a side blind with slats 800. The side blind with slats 800, in combination with a guide rail for the sliding door 850, can be used as a sliding slat door.
[0094] In combination with the above, the side blind with slats 800 comprises a side blind frame 810 and a number of side slats 820 arranged inside the side blind frame 810. The side slats 820 are arranged horizontally or vertically inside the side blind frame 810, and some of these side slats 820 can be moved in a synchronized manner by means of a linkage mechanism.
[0095] In a specific structure, as illustrated in [Fig. 1] to [Fig. 6], the system comprises a side blind frame 810 and a number of side slats 820 arranged inside the side blind frame 810. Each side slat 820 comprises a side slat body 821 and, at each end of the side slat body 821, a side slat end support 822. At any one end, the side slat end support 822 is coupled to a connecting rack 830, this connecting rack 830 being positioned inside the side blind frame 810. The side slat end support 822 comprises an end body 8221, a rotation shaft portion 8222, and a toothed portion 8223. The toothed portion 8223 is designed to mesh with the rack. connection 830.The connecting rack 830 allows the corresponding toothed parts 8223 to rotate simultaneously, thus ensuring the synchronized rotation of several side slats 820. The assembly employs an optimized gear transmission mechanism designed to improve the stability of the synchronized drive of the side slats 820. Furthermore, the connecting rack 830 is integrated into the side blind frame 810, forming an integrated connecting structure. This enhances the stability of the transmission mechanism, prevents external interference that could cause synchronization failure, and strengthens the overall stability of the product. Moreover, the recessed and concealed design of this structure contributes to excellent visual aesthetics.
[0096] In combination with the above, the connecting rack 830 is preferably arranged on one side only, i.e. positioned at one end only of the side blades 820. In another embodiment, the connecting rack 830 can also be arranged on both sides, i.e. at both ends of the side blades 820.
[0097] In one preferred embodiment, several sections of travel rack 831 are arranged on the connecting rack 830, each travel rack section 831 corresponding to a toothed portion 8223. The length of the travel rack 831 allows the toothed portion 8223 to make at least half a turn, which facilitates the rotation of the side blades 820, thus allowing these side blades 820 to close or open vertically. In another preferred embodiment, the length of the travel rack 831 allows the part toothed 8223 to make a complete turn, facilitating the integral rotation of the lateral blades 820.
[0098] In another embodiment, the travel racks 831 of the connecting rack 830 can be made of a single piece, and the connecting rack 830 then adopts a monobloc structure.
[0099] In combination with the above, the side blind frame 810 comprises a cross frame 811 and a stile frame 812. The connecting rack 830 is installed inside the stile frame 812. Inside the stile frame 812, a mounting groove 8123 is provided. A clamping bar 8124 is mounted in the mounting groove 8123. The connecting rack 830 is equipped with a clamping groove 834. A portion of the connecting rack 830 is inserted into the mounting groove 8123, and the clamping groove 834 is designed to fit the clamping bar 8124. The cross-section of the stile frame 812 is optimized: the mounting groove 8123 facilitates the insertion of the connecting rack 830, and the interaction between the clamping groove 834 and the bar The 8124 clamping allows the 830 connecting rack to slide vertically with ease, which improves the stability of the transmission.
[0100] Also in combination with the above, the connecting rack 830 comprises several rack units 8301, and the travel racks 831 are positioned on these rack units 8301. Each rack unit 8301 also includes a clip-on portion 832 located at the front end and a snap-on portion 833 located at the rear end. The rack units 8301 are joined end to end to form a continuous assembly. The connecting rack 830 thus designed adopts a modular structure, making it suitable for products of different dimensions, reducing overall manufacturing costs, and offering excellent product compatibility.
[0101] Furthermore, the upright frame 812 comprises a main upright frame body 8121 and a side upright cover 8122. The outer face of the main upright frame body 8121 includes a side cover fastening portion 8126, while the side upright cover 8122 includes a side cover locking portion 8125. The side cover locking portion 8125 is designed to cooperate with the side cover fastening portion 8126 for assembly. The use of a removable side structure for the side upright cover 8122 facilitates the internal installation of the connecting rack 830, thereby improving the ease of product assembly. The inner face of the main body of the upright frame 8121 is provided with several shaft holes 8127, the shaft holes 8127 are designed to cooperate with the rotating shaft part 8222, thus facilitating the rotation of the side blades 820.
[0102] In combination with the above, both ends of the side blade body 821 are provided with interlocking grooves 8211. The interlocking grooves 8211 are designed to fit fixedly into the end body 8221. This configuration facilitates the installation of the side blades 820.
[0103] In one of the preferred embodiments, the side blind frame 810 also includes an intermediate cross tube 840. This intermediate cross tube 840 is intended to divide the side blind frame 810 into at least two side slat cavities. Each side slat cavity is configured to receive a side slat unit, which comprises several side slats 820 and a connecting rack 830 for ensuring their synchronized movement. The optimized addition of the intermediate cross tube 840 makes it possible to form two separate cavities—upper and lower—for the side slats, thus facilitating the modular assembly of the side slat units.
[0104] The present invention adopts a recessed type connecting rack, using a gear transmission, which improves the stability of the synchronized movement of the side slats. This design also allows for a more stable and efficient transmission of the connecting rack, reducing external interference that could cause a failure of the mechanism, and enhancing the overall stability of the product. In addition, the recessed and concealed design gives the product an excellent aesthetic appearance. This structure is easily adaptable to form a side sliding slat door or a side slat partition, thus facilitating integration with a slatted pergola with a side structure.
[0105] In another embodiment, the connecting rack can be replaced by a connecting rod, which can be installed outside.
[0106] Example of implementation 9
[0107] In combination with any of the preceding embodiments, and with reference to [Fig. 29] and [Fig. 30], in the present embodiment, the inner side wall of the perimeter beam 300 is equipped with a drainage gutter 303, while the upper part of the post 100 includes a housing 101. The housing 101 has a hollow structure, allowing direct connection to the drainage gutter 303. The drainage gutter 303 facilitates water flow in coordination with the blade assembly 500. The side wall of the drainage gutter 303 is provided with an insertion groove for the light strip 304; this insertion groove for the light strip 304 is designed to integrate a light strip, thereby improving the aesthetics of the product.
[0108] The above descriptions are merely preferred embodiments of the present invention and shall not limit its scope in any way. Any simple modification, equivalent change or adaptation made the above examples in accordance with the technical principles of the present invention still fall within the scope of protection of the present technical solution.
Claims
Demands
1. A slatted pergola characterized in that it comprises posts (100) and peripheral beams (300): a receiving seat (110) is embedded in the upper part of the post (100), an assembly groove (111) is provided on the inner wall of the receiving seat (110), a mounting unit (200) is arranged in cooperation in said assembly groove (111), a housing (101) is formed inside the receiving seat (110), an assembly unit of the peripheral beam is disposed at the end of the peripheral beam (300), said assembly unit of the peripheral beam is received in said housing (101), said mounting unit (200) is mounted in correspondence with said assembly unit of the peripheral beam.
2. Blade pergola according to claim 1: said mounting unit (200) comprises a cover (210) and a first mounting plate (220), said cover (210) is intended to be fixed in correspondence with the upper end of the post (100), said first mounting plate (220) is inserted into said assembly groove (111), said first mounting plate (220) is intended to cooperate with said assembly unit of the perimeter beam.
3. Blade pergola according to claim 2: said cover (210) and said first mounting plate (220) form a single-piece structure, the number of first mounting plates (220) is two.
4. Blade pergola according to claim 3: the first two mounting plates (220) are arranged on two adjacent side faces located at the bottom of said cover (210), the first two mounting plates (220) are respectively inserted into the corresponding assembly grooves (111) provided on two adjacent side walls of the reception seat (110).
5. Louvered pergola according to claim 4: said cover (210) has fixing holes for the post (212) and fixing holes for the perimeter beam (211); connecting holes for the cover (302) are provided on the upper face of the assembly unit of the perimeter beam; lateral fixing holes (301) are provided on the side wall of the beam peripheral (300); the fixing holes of the peripheral beam (211) are intended to correspond with the junction holes of the cover (302); the fixing holes of the post (212) are intended to correspond with fixing holes of the cover (112) located on the receiving seat (110); the lateral fixing holes (301) are intended to correspond with lateral junction holes (221) provided on the first mounting plate (220).
6. Blade pergola according to claim 2: said cover (210) and said first mounting plate (220) form a separate structure, the first mounting plate (220) is inserted into the corresponding assembly groove (111), said first mounting plate (220) is intended to cooperate with the assembly unit of the peripheral beam, said cover (210) is intended to be fixed in correspondence with the upper end of the post (100).
7. Blade pergola according to claim 6: said perimeter beam assembly unit also includes a second mounting plate (230), said second mounting plate (230) is inserted into the inner cavity of said perimeter beam assembly unit, said second mounting plate (230) is mounted in correspondence with said first mounting plate (220).
8. Blade pergola according to claim 7: said first mounting plate (220) includes a lateral connection hole (221); a lateral fixing hole (301) is provided on said peripheral beam assembly unit; a lateral mounting hole (231) is provided on said second mounting plate (230); said lateral connection hole (221), lateral mounting hole (231) and lateral fixing hole (301) are mounted in correspondence.
9. Blade pergola according to claim 6: said cover (210) includes fixing holes for the post (212) and fixing holes for the perimeter beam (211); junction holes of the cover (302) are provided on the upper face of the assembly unit of the perimeter beam; the fixing holes of the perimeter beam (211) are intended to correspond with the junction holes of the cover (302); the fixing holes for the post (212) are intended to correspond with fixing holes of the cover (112) located on the receiving seat (110).
10. Slatted pergola according to any one of claims 1 to 9: several projecting ribs (102) are arranged on the inner wall of the post (100), said projecting ribs (102) engage by snapping into grooves (113) provided on the outer wall of the receiving seat (110); a grooved fixing cavity (120) is provided at the top of the post (100), said cavity is used to insert and fix the receiving seat (110).
11. Blade pergola according to claim 10: said reception seat (110) comprises a corner reception seat (1101) and a central reception seat (1102).
12. Blade pergola according to claim 10: the base of the post (100) is arranged with a foot (400), said foot (400) includes a foot base (410) and a foot cover (420); said foot base (410) includes a foot bottom plate (411) and a foot fixing support (412) provided on the underside of said foot bottom plate (411), said foot fixing support (412) is intended to cooperate with the post (100); said foot cover (420) is fitted onto the post (100), and said foot cover (420) covers the upper part of the foot base (410).
13. Blade pergola according to claim 12: said foot cover (420) comprises a first foot cover (421) and a second foot cover (422), the first foot cover (421) and the second foot cover (422) are fitted together, and the first foot cover (421) and the second foot cover (422) are installed around the outside of the post after fitting together.
14. Slatted pergola according to claim 10: the posts (100) and the peripheral beams (300) form lateral cavities, at least one of which of said lateral cavities receives a roller blind mechanism (600).
15. Blade pergola according to claim 10: the posts (100) and the peripheral beams (300) form lateral cavities, at least one of which of said lateral cavities receives a sliding door mechanism (700).
16. Bladed pergola according to claim 10: the posts (100) and the peripheral beams (300) form lateral cavities, at least one of which of said lateral cavities receives a lateral bladed blind (800).
17. Blade pergola according to claim 16: said blade side blind (800) comprises a side blind frame (810) and several side blades (820) arranged inside said side blind frame (810), said side blades (820) are arranged horizontally or vertically in said side blind frame (810).
18. Pergola with slats according to claim 17: said side slat (820) comprises a main side slat body (821) and a side slat end support (822) located at each end of the main side slat body (821); a connecting rack (830) is associated with at least one of said side slat end supports (822), said connecting rack (830) is positioned in the side blind frame (810); said side slat end support (822) comprises an end body (8221), a rotation shaft portion (8222) and a toothed portion (8223), said toothed portion (8223) is intended to mesh with said connecting rack (830); said connecting rack (830) allows said toothed part (8223) to be driven in synchronization and to ensure the coordinated rotation of several lateral blades (820).
19. Blade pergola according to claim 10: an arched outer side wall (103) is provided on said post (100).
20. Blade pergola according to claim 10: a set of blades (500) is arranged inside the perimeter beam (300), a drainage gutter (303) is provided on the inner wall of said perimeter beam (300), and an insertion groove for a light strip (304) is provided on the side wall of said drainage gutter (303).