Pavilion mounting structure
By setting up the joints of the slots and hook plates on both sides of the load-bearing beam, the problem of low efficiency and inconsistent fixed connection between the corner code and the load-bearing beam is solved, and the rapid positioning and height consistency of the pavilion installation is achieved, which improves the construction efficiency and aesthetics.
Patent Information
- Application Number
- CN202422107731.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-08-28
AI Technical Summary
During the installation of existing pavilions, the fixed connection efficiency of the angle code and the load-bearing beam is low, and it is difficult to install and it is difficult to keep the height of each angle code consistent, resulting in uneven height of the connecting beams.
Set up card slots on both sides of the load-bearing beam, and design hook plates and slots on the corner codes to cooperate. Through the temporary fixation of the hook plates and slots, the quick positioning and height consistency of the angle codes are achieved, and the connection is fixed with screws.
It improves installation efficiency, ensures that the installation height of each corner code is the same and the height of the connecting beam is consistent, simplifies the installation process, and improves construction efficiency and aesthetics.
Smart Images

Figure CN223293453U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pavilions, in particular to a pavilion installation structure. Background Art
[0002] Pavilions are commonly found in gardens, parks, courtyards, etc., and are mainly used for people to cool off and rest outdoors. In order to improve construction efficiency and lightweight materials, current pavilions are all built with aluminum alloy profiles. First, the main structure of the pavilion is built with columns and load-bearing beams, and then the connecting thin beams are installed on the top and finally the roof is built. Referring to the public (announcement) number: CN218563157U, a modern pavilion structure can be seen. The load-bearing beams and the connecting thin beam profiles are fixedly connected by angle brackets. The angle brackets are first installed on the load-bearing beams, and then the ends of the connecting thin beams are connected to the angle brackets and screwed in to fix them. However, the current angle brackets and load-bearing beams do not have a positioning structure. The angle brackets are directly driven into the load-bearing beam profiles by through-screws to achieve the effect of fixing the angle brackets to the load-bearing beams. The installation efficiency is low, and since the installation requires workers in mid-air, it is very troublesome to install. At the same time, the heights of the angle brackets are difficult to keep on the same line, resulting in different heights of the connecting thin beams after installation. Utility Model Content
[0003] The utility model provides a pavilion installation structure to achieve the purpose of assisting installation and positioning, facilitating installation and ensuring that the installation heights of various corner brackets are the same.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a pavilion installation structure, comprising a load-bearing beam and a connecting beam perpendicular to the load-bearing beam, the load-bearing beam being connected to each connecting beam respectively through an angle code, the angle code comprising a vertical plate, a short plate and a long plate, the short plate and the long plate being arranged at both ends of one side of the vertical plate, the other side of the vertical plate being provided with a hook plate hooked in a slot, the load-bearing beam abuts against the vertical plate, and both side surfaces of the load-bearing beam for abutting against the vertical plate are provided with slots for the hook plate to hook and slide, the top of the connecting beam is provided with a top surface abutting against the short plate, the bottom is provided with a groove, the bottom of the groove is provided with an opening matching the short plate, and the long plate abuts against the bottom of the groove.
[0005] Furthermore, cover plates are provided at the bottoms of the connecting beams and the load-bearing beams.
[0006] Furthermore, a decorative groove is provided on the cover plate, and a cover strip is provided at the notch of the decorative groove.
[0007] Furthermore, both the vertical plate and the long plate are provided with mounting holes. The mounting holes of the vertical plate are used for screws to penetrate and fix the connection to the load-bearing beam, and the mounting holes of the long plate are used for screws to penetrate and fix the connection to the connecting beam.
[0008] Furthermore, the hook plate faces downward, and the slot is provided with a protrusion for the hook plate to hook.
[0009] Furthermore, the slots are arranged at the tops of both sides of the load-bearing beam, and the distance between the hook plate and the short plate corresponds to the slot width of the slot.
[0010] Furthermore, the distance between the vertical plates corresponds to the distance between the top surface and the bottom of the groove.
[0011] Compared with the prior art, the beneficial effects of the present invention are: by arranging card slots on the mounting surfaces on both sides of the load-bearing beam, and arranging hook plates on the angle brackets to cooperate with the card slots, the angle brackets can be temporarily fixed to facilitate screwing, and the angle brackets and the load-bearing beam can be quickly positioned, thereby improving installation efficiency, ensuring that the installation heights of the angle brackets are the same, and thus making the heights of the connecting beams equal. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is an exploded view of the present invention.
[0013] Figure 2 It is a structural schematic diagram of the load-bearing beam in the utility model.
[0014] Figure 3 It is a three-dimensional diagram of the connecting beam in the present utility model.
[0015] Figure 4 It is a structural schematic diagram of the connecting beam in the utility model.
[0016] Figure 5 It is a three-dimensional diagram of the angle code in the present invention.
[0017] Figure 6 This is a schematic diagram of the connection of the load-bearing beam in the utility model.
[0018] Figure 7 This is a distribution diagram of the utility model.
[0019] Figure 8 This is another distribution diagram in the present invention.
[0020] In the figure: load-bearing beam 1, connecting beam 2, corner bracket 3, cover plate 4, slot 10, groove 20, vertical plate 31, short plate 32, long plate 33, decorative groove 40, protrusion 111, opening 201, hook plate 310, cover strip 401. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0022] As shown in the accompanying drawings, the utility model provides a pavilion installation structure, including a load-bearing beam 1 and a connecting beam 2 perpendicular to the load-bearing beam 1. Figure 7 Or as shown in 8, the existing pavilion is generally provided with two, four or more load-bearing beams 1, and two or more connecting beams 2 are installed on the load-bearing beam 1, depending on the size of the pavilion. The pavilion also includes columns, and the load-bearing beam 1 is connected to each connecting beam 2 through an angle code 3. The angle code 3 includes a vertical plate 31, a short plate 32 and a long plate 33. The short plate 32 and the long plate 33 are arranged at both ends of one side of the vertical plate 31, and a hook plate 310 is provided on the other side of the vertical plate 31 for hooking on the slot 10. The load-bearing beam 1 is abutted against the vertical plate 31, and the two side surfaces of the load-bearing beam 1 for abutting the vertical plate 31 are provided with a slot 10 for the hook plate 310 to hook and slide. Both sides of the load-bearing beam 1 can abut against the vertical plate 31, and the vertical plate 31 abuts against one side or both sides of the load-bearing beam 1, depending on the building structure. Figure 2 and 6 As shown, the angle bracket 3 is hung on the load-bearing beam 1, the hook plate 310 is hooked with the card slot 10, and the side of the vertical plate 31 facing the hook plate 310 is against the side of the load-bearing beam 1, so as to achieve the purpose of positioning and installing the angle bracket 3. At this time, the load-bearing beam 1 and the vertical plate 31 can be connected by screws, or the connecting beam 2 can be directly installed on the angle bracket 3 without driving screws, so that the connecting beam 2 can still move on the load-bearing beam 1 after installation; the top of the connecting beam 2 is provided with a top surface that abuts against the short plate 32, and the bottom is provided with a groove 20, and the groove 20 The notch faces downward, and the bottom of the groove 20 is provided with an opening 201 that matches the short plate 32. It should be noted that this opening 201 can be cut before installation and does not need to be cut during the production process. The long plate 33 abuts the bottom of the groove 20. That is, during installation, the end of the connecting beam 2 is placed into the angle bracket 3 from top to bottom, so that the short plate 32 on the angle bracket 3 first passes through the opening 201 and abuts the top surface, while the long plate 33 enters the groove 20 and abuts the bottom. At this time, the angle bracket 3 is then connected to the connecting beam 2 using screws. The distance between the short plate 32 and the long plate 33 on the angle bracket 3 is equal to the distance from the top surface to the bottom of the groove 20. Another size of angle bracket 3 can also be provided according to the load-bearing beam 1. The load-bearing beam 1 also includes a groove 20 on the top and bottom surfaces. The distance between the short plate 32 and the long plate 33 of the other angle bracket 3 is equal to the distance from the top surface of the load-bearing beam 1 to the bottom of the groove 20. This angle bracket 3 can be used to connect load-bearing beams 1.
[0023] The utility model provides a pavilion installation structure. By arranging card slots 10 on the installation surfaces on both sides of the load-bearing beam 1, and arranging hook plates 310 on the corner brackets 3 to cooperate with the card slots 10, the corner brackets 3 can be temporarily fixed to facilitate screwing. The hook plates 310 can also slide in the card slots 10. Workers can slide to the appropriate position before performing subsequent installation, and the corner brackets 3 and the load-bearing beam 1 can be quickly positioned, thereby improving installation efficiency, ensuring that the installation heights of the corner brackets 3 are the same, and thus making the heights of the connecting beams 2 equal.
[0024] In this embodiment, a cover plate 4 is provided at the bottom of the connecting beam 2 and the load-bearing beam 1. The cover plate 4 is mainly used to cover the groove 20, keep the bottom of the connecting beam 2 and the load-bearing beam 1 flat, and protect the internal structure including the corner code 3. Further, a decorative groove 40 can be provided on the cover plate 4, and a cover strip 401 is provided at the notch of the decorative groove 40. The decorative groove 40 can be used to install decorations such as light strips to enhance the beauty. The cover strip 401 is used to hide the decorative groove 40. The cover strip 401 can be made of transparent material. The cover plate 4 is snap-fitted and connected to the notch of the groove 20 on the connecting beam 2 or the load-bearing beam 1, and the cover strip 401 is also snap-fitted and connected to the notch of the decorative groove 40.
[0025] In this embodiment, both the vertical plate 31 and the long plate 33 are provided with mounting holes. The mounting holes of the vertical plate 31 are used for screws to penetrate and fix the connection to the load-bearing beam 1, and the mounting holes of the long plate 33 are used for screws to penetrate and fix the connection to the connecting beam 2. The screws penetrate the mounting holes on the vertical plate 31 and are fixedly connected to the load-bearing beam 1, thereby achieving a fixed connection between the angle code 3 and the load-bearing beam 1. The screws penetrate the mounting holes on the long plate 33 and are fixedly connected to the connecting beam 2 or another load-bearing beam 1. Further, mounting holes can also be provided on the short plate 32 to facilitate driving screws into the top surface of the connecting beam 2 or the load-bearing beam 1 for fixed connection.
[0026] In this embodiment, the hook plate 310 faces downward, and the slot 10 is provided with a protrusion 111 for hooking the hook plate 310. The protrusion 111 is mainly used to cooperate with the hook plate 310 to prevent the hook plate 310 from being unhooked. The slot 10 is provided at the top of both sides of the load-bearing beam 1. The distance between the hook plate 310 and the short plate 32 corresponds to the slot width of the slot 10, ensuring that the top of the connecting beam 2 is flush with the top of the load-bearing beam 1, and also ensuring that the heights of the load-bearing beams 1 and 2 are flush when connected.
[0027] In this embodiment, the distance between the vertical plates 31 corresponds to the distance between the top surface and the bottom of the groove 20, ensuring that the short plate 32 abuts against the top surface of the connecting beam 2 through the opening 201, while the long plate 33 enters the groove 20 and abuts against the bottom of the groove 20.
[0028] refer to Figure 7As shown, two load-bearing beams 1 are used for construction. The two load-bearing beams 1 are parallel and not connected to each other, and angle codes 3 are arranged on the sides facing each other. Preferably, the intervals between adjacent angle codes 3 are equal. The angle codes 3 on the two load-bearing beams 1 correspond to each other one by one. At this time, each angle code 3 can be temporarily fixed on the load-bearing beam 1 due to the cooperation of the hook plate 310 and the card slot 10. The worker drives screws to fix the angle code 3 and the load-bearing beam 1, and puts one end of the connecting beam 2 on the angle code 3, and the other end on the corresponding angle code 3 of the other load-bearing beam 1, and fixes the connection by screws.
[0029] refer to Figure 6-7 As shown, four load-bearing beams 1 are used. The four load-bearing beams 1 are distributed in a rectangular shape, and two adjacent load-bearing beams 1 are connected end to end through another angle code 3. The cross-section of the load-bearing beam 1 and the cross-section of the connecting beam 2 correspond to each other and both include a top surface and a groove 20. The distance from the top surface of the load-bearing beam 1 to the groove 20 is greater than the distance from the top surface of the connecting beam 2 to the groove 20. Therefore, another angle code 3 is as follows Figure 6 As shown, the distance between the vertical plate 31 corresponds to the distance from the top surface of the load-bearing beam 1 to the bottom of the groove 20. An angle code 3 is hung on one load-bearing beam 1 and fixedly connected by screws. Then the adjacent load-bearing beam 1 is placed on the angle code 3 and fixedly connected. In this way, the four load-bearing beams 1 are assembled into a rectangular structure, and it is ensured that the heights of the load-bearing beams 1 are equal. Then two parallel load-bearing beams 1 are selected and the angle codes 3 are hung on them for installing the connecting beam 2. If the pavilion is too large, the following method can be used: Figure 8 As shown, at least one more load-bearing beam 1 is arranged in parallel between the two parallel load-bearing beams 1 .
[0030] The above embodiments are preferred embodiments of the present invention. All structures similar to those of the present invention and equivalent changes made thereto should fall within the scope of protection of the present invention.
Claims
1. A pavilion installation structure, comprising a load-bearing beam and a connecting beam perpendicular to the load-bearing beam, wherein the load-bearing beam is connected to each connecting beam via an angle bracket, wherein the angle bracket comprises a vertical plate, a short plate, and a long plate, wherein the short plate and the long plate are arranged at both ends of one side of the vertical plate, characterized in that: A hook plate hooked in the slot is provided on the other side of the vertical plate, the load-bearing beam abuts against the vertical plate, and both side surfaces of the load-bearing beam used to abut the vertical plate are provided with slots for the hook plate to hook and slide, the top of the connecting beam is provided with a top surface abutting against the short plate, and the bottom is provided with a groove, the bottom of the groove is provided with an opening matching the short plate, and the long plate abuts against the bottom of the groove.
2. The pavilion installation structure according to claim 1, characterized in that: The bottoms of the connecting beams and the load-bearing beams are both provided with cover plates.
3. The pavilion installation structure according to claim 2, characterized in that: The cover plate is provided with a decorative groove, and a cover strip is provided at the notch of the decorative groove.
4. The pavilion installation structure according to claim 1, characterized in that: The vertical plate and the long plate are both provided with mounting holes. The mounting holes of the vertical plate are used for screws to penetrate and fix the connection to the load-bearing beam, and the mounting holes of the long plate are used for screws to penetrate and fix the connection to the connecting beam.
5. The pavilion installation structure according to claim 1, characterized in that: The hook plate faces downward, and the slot is provided with a protrusion for the hook plate to be hooked.
6. The pavilion installation structure according to claim 5, characterized in that: The clamping slots are arranged at the tops of both sides of the load-bearing beam, and the distance between the hook plate and the short plate corresponds to the slot width of the clamping slots.
7. The pavilion installation structure according to claim 1, characterized in that: The distance between the vertical plates corresponds to the distance between the top surface and the bottom of the groove.
Citation Information
Patent Citations
Modern pavilion structure
CN218563157U