A louvered gazebo

CN224799992UActive Publication Date: 2026-09-25NINGBO SENFU SHADING EQUIP CO LTD
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Patent Information

Application Number
CN202522380180.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-10
Publication Date
2026-09-25
Estimated Expiration
2035-11-10

AI Technical Summary

Technical Problem

[0003]针对现有技术中存在的缺陷,本实用新型的目的在于提供一种百叶凉亭,以解决现有的百叶凉亭在安装易出现部件丢失或错配以及引发漏雨、漏光问题,本实用新型采用的技术方案如下:

Benefits of technology

1、通过第一连接部的定位部与第二连接部的定位槽相互配合,实现了初步限位。同时,锁紧条与锁紧槽的配合构成了锁紧机制,锁紧条对锁紧槽内壁的持续挤压产生了预紧力,使得连接非常紧密,不易因风载或热胀冷缩而松动,这种定位加锁紧的双重保障机制确保了整个顶棚刚性和稳定性;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a louvered pavilion, it includes support frame and fixed on support frame's ceiling, the ceiling is spliced from a plurality of louver, every louver is equipped with first connecting part and second connecting part, and the first connecting part and the second connecting part of one of the boards of adjacent louver are mutually abutted and are buckled to realize the connection, first connecting part has the positioning portion that protrudes downward and the locking groove that recesses inward, and second connecting part is equipped with the positioning groove that is adapted with the positioning portion and the locking strip that extends inward, when installing, the positioning portion is embedded in the positioning groove, and the locking strip is inserted and extruded locking groove inner wall, realizes the close locking, in addition, the first and / or second connecting part is provided with the sheltering portion, is used for covering the clearance of connecting place after connecting, has improved the whole rain -proof, the light -leaking performance.
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Description

Technical Field

[0001] This utility model relates to the field of outdoor products technology, specifically to a louvered gazebo. Background Technology

[0002] Existing products generally adopt a "multi-component step-by-step assembly" model, which requires the use of various scattered parts such as positioning pins, sealing strips, and locking parts. During the assembly process, parts are prone to being lost or mismatched, leading to installation interruptions. Moreover, the installation must strictly follow the fixed process of "positioning and alignment, fixing, and connecting and supplementing auxiliary parts," which requires a high level of technical proficiency from the operators. It is difficult for a single person to complete the assembly efficiently, especially in outdoor high-altitude operation scenarios, which further increases the construction difficulty and labor costs. Since the precision of component matching and connection stability are difficult to guarantee during installation, the louvered pavilion is exposed to outdoor wind, rain, and temperature fluctuations for a long time. Gaps may easily form at the splicing of the louvered panels due to poor sealing or misalignment, causing rain and light leakage problems, which seriously affect the user experience and shorten the overall lifespan of the pavilion. Utility Model Content

[0003] To address the shortcomings of existing technologies, the purpose of this utility model is to provide a louvered gazebo to solve the problems of missing or mismatched parts, as well as leaks and light penetration during installation. The technical solution adopted by this utility model is as follows: A louvered gazebo includes a support frame and a canopy fixedly installed on the support frame. The canopy is composed of multiple louvered panels spliced ​​together. The louvered panel includes a panel body, a first connecting part and a second connecting part. In two adjacent louvered panels, the first connecting part of one louvered panel abuts and engages with the second connecting part of the other louvered panel. The first connecting part and / or the second connecting part are provided with a blocking part, which is used to block the gap between the first connecting part and the second connecting part after the adjacent louvered panels are connected. The first connecting portion includes a locking groove recessed inward along the plate and a positioning portion protruding vertically downward from the plate and connected to the locking groove. The second connecting portion includes a locking strip extending inward along the plate, and a positioning groove adapted to the positioning portion is formed between the locking strip and the inner sidewall of the second connecting portion. When the first connecting portion and the second connecting portion are installed, the positioning portion is embedded in the positioning groove, and the outer sidewall of the first connecting portion is in contact with the inner sidewall of the second connecting portion. At the same time, the locking strip extends into the locking groove and presses against the inner wall of the locking groove.

[0004] By adopting the above solution: the louvered panel includes a panel body, a first connecting part and a second connecting part. Two louvered panels are fixedly connected by abutting and fastening each other through the first connecting part of one louvered panel and the second connecting part of the other louvered panel. The first connecting part is recessed along the inner side of the panel to form a locking groove, and a positioning part is raised vertically downward along the panel body and connected to the locking groove. The second connecting part has a locking strip extending inward along the panel body. The locking strip and the inner side wall of the second connecting part form a positioning groove that matches the positioning part. When the first connecting part and the second connecting part are installed, the positioning part is embedded in the positioning groove, and the outer side of the first connecting part is in contact with the inner side of the second connecting part. At the same time, the locking strip extends into the locking groove and squeezes the locked inner wall. The first connecting part and / or the second connecting part are provided with a shielding part, which is used to shield the gap between the first connecting part and the second connecting part after the adjacent louvered panels are connected, thereby ensuring the sealing performance of the louvered pavilion roof and improving the reliability and service life of the product.

[0005] Furthermore, the first connecting part and the second connecting part are located on both sides of the plate body, and the upper end surface of the plate body, the inner side surface of the first connecting part and the inner side surface of the second connecting part together form a concave water channel; the water channel is used to guide rainwater to flow along the water channel.

[0006] Furthermore, a transition surface is provided at the connection between the locking groove and the positioning part, and guide slopes are provided at both ends of the locking strip; during assembly, the transition surface and the guide slopes cooperate with each other to guide the locking strip to smoothly engage in the locking groove.

[0007] Furthermore, a limiting opening is provided between the plate and the locking groove, and a fixing part that cooperates with the limiting opening is provided between the plate and the locking strip.

[0008] Furthermore, the shielding portion includes an extension section and a vertical section. The extension section extends horizontally toward the plate and one end is connected to the first connecting portion and / or the second connecting portion, and the other end is connected to the vertical section. One end of the vertical section abuts against the top of the plate and the other end is connected to the extension end.

[0009] Furthermore, the louvered panel is a one-piece molded structure.

[0010] Furthermore, the supporting frame includes multiple columns, multiple longitudinal beams, and multiple transverse beams; one end of each column is fixedly connected to the longitudinal beams to form the supporting foundation for the roof of the pavilion; the transverse beams are evenly spaced along the length of the longitudinal beams, and the roof is laid as a whole and fixed to the transverse beams.

[0011] The beneficial effects of this utility model are as follows: 1. The positioning part of the first connecting part and the positioning groove of the second connecting part cooperate with each other to achieve initial positioning. At the same time, the cooperation between the locking strip and the locking groove constitutes a locking mechanism. The continuous compression of the locking strip against the inner wall of the locking groove generates a pre-tightening force, making the connection very tight and not easy to loosen due to wind load or thermal expansion and contraction. This dual guarantee mechanism of positioning and locking ensures the rigidity and stability of the entire roof. 2. By providing a shielding part on the first connecting part and / or the second connecting part, the gap between the two can be effectively shielded after the first connecting part and the second connecting part are fastened together, effectively preventing rainwater from seeping through the gap, ensuring the sealing performance of the pavilion roof, and improving the reliability and service life of the product. Attached Figure Description

[0012] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0013] Figure 1 This is a schematic diagram of the frame structure of the louvered pavilion in this application.

[0014] Figure 2 This is a schematic diagram of the structure of the louvered pavilion in this application.

[0015] Figure 3 This is a schematic diagram of the louvered panel in Embodiment 1 of this application.

[0016] Figure 4 for Figure 3 A magnified view of a portion of area A.

[0017] Figure 5 for Figure 3 A magnified view of a portion of area B.

[0018] Figure 6 This is a schematic diagram showing the installation of the first and second connecting parts of this application.

[0019] Figure 7 for Figure 6 A magnified view of a portion of area C.

[0020] Figure 8 This is a schematic diagram of the louvered structure in Embodiment 2 of this application.

[0021] Explanation of reference numerals in the attached drawings: 10, ceiling; 101, louvered panel; 101a, panel body; 20, support frame; 201, column; 202, longitudinal beam; 203, transverse beam; 30, first connecting part; 301, positioning part; 302, locking groove; 303, limiting port; 304, transition surface; 40, second connecting part; 401, positioning groove; 402, locking groove; 403, fixing part; 404, guide slope; 50, shielding part; 501, extension section; 502, vertical section; 60, water channel. Detailed Implementation

[0022] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0023] Example 1 See appendix Figure 1 , Figure 2 As shown, this embodiment provides a louvered pavilion 200 including a support frame 20 and a roof 10. The roof 10 is laid on the support frame 20, which serves as the core load-bearing structure of the pavilion. The support frame 20 includes multiple uprights 201, multiple longitudinal beams 202, and multiple transverse beams 203. The uprights 201 are vertically fixed to the foundation, forming the vertical support of the pavilion. The other end of each upright is fixedly connected to the longitudinal beams 202, forming the edge outline of the pavilion's top. The transverse beams 203 are fixedly mounted on the longitudinal beams 202 at predetermined parallel intervals, thus forming a stable load-bearing skeleton for laying the roof 10. The uprights 201, longitudinal beams 202, and transverse beams 203 are typically made of aluminum alloy, steel, or high-strength composite materials to ensure the overall structural strength and durability. Reference Figure 2 , Figure 3 , Figure 4 , Figure 5 As shown, the ceiling 10 includes multiple louvered panels 101; the louvered panels 101 are sequentially spliced ​​together by connecting with adjacent louvered panels 101, and are laid and fixed as a whole on the crossbeam 203 of the support frame 20. The arrangement direction of the louvered panels 101 is usually arranged in the length direction of the crossbeam 203.

[0024] Each louver panel 101 is a long rectangular component, preferably made of aluminum alloy or high-performance engineering plastic injection molding to ensure its structural integrity and dimensional accuracy. The louver panel 101 includes a panel body 101a, a first connecting part 30 and a second connecting part 40. Two adjacent louver panels 101 are connected and fastened to each other by the first connecting part 30 of one louver panel 101 and the second connecting part 40 of the other louver panel 101. Through a simple fastening method, a fixed connection between adjacent louver panels 101 is achieved.

[0025] Reference Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 As shown, a certain gap will be generated after the first connecting part 30 and the second connecting part 40 are connected. By providing a shielding part 50 in the first connecting part 30 and / or the second connecting part 40, in this embodiment, the shielding part 50 is provided on the second connecting part 40. The shielding part 50 is used to shield the gap between the first connecting part 30 and the second connecting part 40 after the adjacent louvers 101 are connected. The shielding part 50 includes an extension section 501 and a vertical section 502. The extension section 501 extends horizontally towards the plate body 101a, and one end is connected to the second connecting part 40, and the other end is connected to the vertical section 502. One end of the vertical section 502 abuts against the top end face of the plate body 101a, and the other end is connected to the extension section 501. Reference Figure 3 , Figure 4 As shown, the first connecting part 30 includes a locking groove 302 recessed inward along the plate 101a, and a positioning part 301 protruding vertically downward from the plate 101a and connected to the locking groove 302. A limiting opening 303 is also provided at the connection between the locking groove 302 and the plate 101a. The groove wall of the locking groove 302 adopts a rounded transition design, which can effectively disperse local stress during assembly and avoid cracking or deformation of the groove due to stress concentration. The groove edge is rounded, which can significantly reduce the frictional resistance when the locking strip 402 is inserted, making the splicing process smoother. The positioning part 301 plays a crucial role: it provides a clear alignment reference for construction personnel during assembly, allowing them to quickly determine the relative positions of adjacent louvered panels 101 without relying on advanced operating skills, fundamentally avoiding mismatch problems. The limiting opening 303 and the fixing part 403 work together to effectively prevent the excessive extension of adjacent plates 101a.

[0026] Reference Figure 3 , Figure 4 , Figure 5 , Figure 6As shown, the second connecting part 40 includes a locking strip 402 extending inward along the plate 101a. Its surface is specially smoothed to reduce frictional resistance when in contact with the locking groove 302, laying the foundation for smooth insertion. Simultaneously, guide ramps 404 are provided at both ends of the locking strip 402, and a transition surface 304 is correspondingly provided at the connection between the locking groove 302 and the positioning part 301 of the first connecting part 30. During assembly, the guide ramps 404 and the transition surface 304 form a natural guiding relationship, not only guiding the locking strip 402 smoothly into the locking groove 302 along a preset trajectory but also further reducing resistance during insertion, effectively avoiding misalignment problems caused by misalignment. This structural design significantly reduces the reliance on the operator's skill level, allowing even non-professionals to easily complete the assembly, significantly improving the smoothness and efficiency of locking strip 402 insertion.

[0027] The locking strip 402 and the inner wall of the second connecting part 40 form a positioning groove 401. The shape and size of the positioning groove 401 are perfectly matched with the positioning part 301 of the first connecting part 30. This provides a visual alignment reference for the construction personnel during assembly, helping to quickly determine the relative positions of adjacent louvers 101 and effectively avoiding mismatch problems caused by alignment deviations. After the positioning part 301 is inserted, the groove wall and the positioning part 301 fit together to restrict its lateral and longitudinal displacement, reducing the risk of loosening of the positioning part 301 from the source. At the same time, the diameter of the locking groove 302 is larger than the diameter of the locking strip 402. This size design leaves a reasonable assembly allowance, allowing the locking strip 402 to be smoothly inserted without extremely high operating precision. This reduces the dependence on the construction personnel's skills and ensures that the locking strip 402 forms a stable contact with the inner wall of the locking groove 302 after being inserted, achieving a precise and firm connection.

[0028] Reference Figure 6 , Figure 7 As shown, when the first connecting part 30 and the second connecting part 40 are assembled, the positioning part 301 of the first connecting part 30 is first aligned and embedded into the positioning groove 401 of the second connecting part 40. At this time, the outer side wall of the first connecting part 30 and the inner side wall of the second connecting part 40 are tightly fitted. The precise fit between the positioning groove 401 and the positioning part 301 achieves the alignment and calibration of the adjacent louvers 101, and the wall fit forms a preliminary compression fixation. At the same time, the locking strip 402 of the second connecting part 40 extends into the locking groove 302 of the first connecting part 30. By compressing the inner wall of the locking groove 302, the connection stability after splicing is further strengthened, and the risk of loosening is eliminated.

[0029] The first connecting part 30 and the second connecting part 40 of the louvered panel 101 are located on both sides of the panel 101a. The inner side of the first connecting part 30, the upper end face of the panel 101a and the inner side of the second connecting part 40 together form a concave water channel 60. When it rains outdoors, the water channel 60 can guide and direct the rainwater, preventing rainwater from accumulating at the joint of the louvered panel 101, thereby reducing the risk of rainwater leakage.

[0030] Reference Figures 1 to 7 As shown, during the installation process, the support frame 20 is the core load-bearing structure of the pavilion. It needs to be installed in the order of columns 201, longitudinal beams 202, and crossbeams 203 to ensure overall stability. The columns 201 are aligned with the pre-drilled holes or embedded parts in the foundation one by one. After the columns 201 are positioned, they are tightened by grouting or bolts. The longitudinal beams 202 are moved to the top of the columns 201. The position of the longitudinal beams 202 is adjusted according to the baseline to ensure that the connecting surfaces of both ends of the longitudinal beams 202 and the top of the columns 201 are completely in contact. The longitudinal beams 202 are fixed to the columns 201 using bolts or self-connecting parts. The installation position of the crossbeams 203 is marked on the longitudinal beams 202 to ensure the direction of the crossbeams 203. The crossbeams 203 are erected at the marked positions on the longitudinal beams 202. The horizontality of the crossbeams 203 is adjusted, while ensuring that the connecting surfaces of both ends of the crossbeams 203 are tightly in contact with the connecting surfaces of the longitudinal beams 202. Finally, a stable load-bearing frame for the roof 10 is formed.

[0031] The louvers 101 are spliced ​​using a snap-fit ​​method, requiring installation starting from a reference piece. Select one louver 101 as the reference piece and place it at the preset starting position on the crossbeam 203 of the support frame 20, ensuring the length of the louver 101 aligns with the length of the crossbeam 70. Based on the preset position of the louver 101, fasteners are used to insert the louver 101 and fix it to the crossbeam 203. Align the first connecting part 30 of the second louver 101 with the second connecting part 40 of the first louver 101 for splicing. First, align and embed the positioning part 301 of the first connecting part 30 into the positioning groove 401 of the second connecting part 40. At this point, the outer wall of the first connecting part 30 and the inner wall of the second connecting part 40 are tightly fitted. Gently push the second louver 101 so that the second connecting part 40... The locking strip 402 slides into the locking groove 302 of the first connecting part 30 along the preset trajectory. The guide slope 404 of the locking strip 402 cooperates with the transition surface 304 of the locking groove 302 to reduce frictional resistance. If resistance is encountered, the edge of the louver 101 can be tapped lightly to ensure that the locking strip 402 is engaged. The diameter of the locking groove 302 is larger than that of the locking strip 402, leaving an assembly allowance. It can be engaged smoothly without extremely high precision. Check the limiting status. The limiting port 303 of the first connecting part 30 and the second connecting part 40 should be properly engaged to prevent the second louver 101 from extending too far into the first louver 101. Ensure that the surfaces of the two plates 101a are flat after splicing. Confirm that the gaps between the first connecting parts 30 and the second connecting parts 40 of all adjacent louver 101 are completely covered by the blocking part 50, with no gaps exposed to the outside.

[0032] Example 2 Reference Figure 8 As shown, the main difference between this embodiment and Embodiment 1 lies in the placement of the blocking portion 50. In this embodiment, the blocking portion 50 is disposed on the first connecting portion 30. The blocking portion 50 also includes a horizontal extension section 501 and a vertical section 502. After the first connecting portion 30 and the second connecting portion 40 are engaged, the vertical section of the blocking portion 50 extends downwards and abuts against the top end face of the adjacent louver panel 101. This arrangement effectively blocks the connection gap, providing another feasible technical solution for splicing the louver panels 101 and increasing design flexibility. The remaining structures, connection methods, and installation steps of this embodiment are the same as in Embodiment 1.

[0033] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.

Claims

1. A louvered pavilion, characterized in that, include: A support frame (20) and a canopy (10) fixedly installed on the support frame (20), the canopy (10) comprising multiple louvered panels (101) spliced ​​together; The louver (101) includes a panel (101a), a first connecting part (30), and a second connecting part (40). In two adjacent louver panels (101), the first connecting part (30) of one louver panel (101) abuts and engages with the second connecting part (40) of the adjacent louver panel (101). The first connecting part (30) and / or the second connecting part (40) are provided with a blocking part (50), which is used to block the gap between the first connecting part (30) and the second connecting part (40) after the adjacent louver panels (101) are connected. The first connecting part (30) includes a locking groove (302) recessed inward along the plate (101a) and a positioning part (301) protruding downward from the plate (101a) and connected to the locking groove (302). The second connecting part (40) includes a locking strip (402) extending inward along the plate (101a). A positioning groove (401) adapted to the positioning part (301) is formed between the locking strip (402) and the inner wall of the second connecting part (40). When the first connecting part (30) and the second connecting part (40) are installed, the positioning part (301) is embedded in the positioning groove (401), and the outer wall of the first connecting part (30) is in contact with the inner wall of the second connecting part (40). At the same time, the locking strip (402) extends into the locking groove (302) and squeezes the inner wall of the locking groove (302).

2. The louvered pavilion according to claim 1, characterized in that, The first connecting part (30) and the second connecting part (40) are located on both sides of the plate (101a). The upper end surface of the plate (101a), the inner side surface of the first connecting part (30) and the inner side surface of the second connecting part (40) together form a concave water channel (60).

3. The louvered pavilion according to claim 1, characterized in that, The connection between the locking groove (302) and the positioning part (301) is provided with a transition surface (304), and the two ends of the locking bar (402) are provided with guide slopes; the transition surface (304) and the guide slope (404) cooperate with each other to guide the locking bar (402) to slide smoothly into the locking groove (302).

4. The louvered pavilion according to claim 1, characterized in that, A limiting opening (303) is provided between the plate (101a) and the locking groove (302), and a fixing part (403) that cooperates with the limiting opening (303) is provided between the plate (101a) and the locking strip (402).

5. The louvered pavilion according to claim 1, characterized in that, The shielding part (50) includes an extension section (501) and a vertical section (502). The extension section (501) extends horizontally toward the plate body (101a) and is connected at one end to the louver (101), and at the other end to the vertical section (502). One end of the vertical section (502) is used to abut against the top of the plate body (101a) of the adjacent louver (101).

6. The louvered pavilion according to claim 1, characterized in that, The louvered panel (101) is a one-piece molded structure.

7. The louvered pavilion according to claim 1, characterized in that, The supporting frame (20) includes multiple columns (201), multiple longitudinal beams (202), and multiple transverse beams (203); one end of each column (201) is fixedly connected to the multiple longitudinal beams (202) to form the supporting frame (20) of the pavilion roof; the multiple transverse beams (203) are evenly spaced along the length of the longitudinal beams, and the canopy (10) is laid and fixed on the transverse beams (203).