Novel spliced stand structure

Through the modular design of the support frame, load-bearing frame, support plate assembly and seat assembly, combined with aluminum profiles and fixers, the existing stand operation problems are solved, and rapid installation and disassembly are achieved to meet a variety of venue needs.

CN223089001UActive Publication Date: 2025-07-11广州天霄实业有限公司
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Patent Information

Application Number
CN202421063461.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-15
Publication Date
2025-07-11
Estimated Expiration
2034-05-15

AI Technical Summary

Technical Problem

The existing assembled stands have problems such as numerous components, difficult operation, high cost and low utilization.

Method used

The modular design of support frames, load-bearing frames, support plate components, seat components and fixing components is adopted, and the use of aluminum profiles and connected through fixers for rapid installation and disassembly.

Benefits of technology

It realizes rapid installation and disassembly of the stands, reduces operation difficulty, meets the needs of different venues, meets the needs of various sports events and performances, and complies with the German DIN4112 standard.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel spliced stand structure. The novel spliced stand structure comprises a supporting frame, a bearing frame, a supporting plate assembly, a seat assembly and a fixing assembly. The bottom of the supporting frame is connected with the ground, the other end of the supporting frame is connected with the bearing frame, the supporting plate assembly is arranged on the bearing frame, and the seat assembly is arranged on the supporting plate assembly; the supporting frame and the bearing frame are connected through the fixing assembly, and the bearing frame and the supporting plate assembly are connected through the fixing assembly. By means of the novel splicing type stand structure, through cooperation of the supporting frame, the bearing frame, the supporting plate assembly, the seat assembly and the fixing assembly, the novel splicing type stand structure is convenient to build, small in assembly and disassembly difficulty and capable of meeting the requirements of various sports event performance movable stands. And different site requirements are met. Flexible splicing, rapid installation and modular design are realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of stand structures, in particular to a novel spliced stand structure. Background Art

[0002] Sports activities, competitions and viewing activities require stands that can accommodate a large number of audiences. However, building fixed venues and stands has problems such as high costs and low utilization rates. The combined mobile stands that can be assembled and disassembled have stronger adaptability. However, most of the existing assembled stands have complex components. The variety of components and the fixed combinations between various components greatly increase the operation difficulty of building the stand. Therefore, the loading and unloading of the existing assembled stands is very difficult. Content of the Utility Model

[0003] To solve the above problems, the utility model adopts the following technical scheme: a novel spliced stand structure, including: a support frame, a load-bearing frame, a support plate assembly, a seat assembly and a fixing assembly;

[0004] The bottom of the support frame is connected to the ground, and the other end is connected to the load-bearing frame. The support plate assembly is arranged on the load-bearing frame, and the seat assembly is arranged on the support plate assembly;

[0005] The support frame and the load-bearing frame, and the load-bearing frame and the support plate assembly are all connected by the fixing assembly.

[0006] Further, the fixing assembly includes a number of first fixators, a number of second fixators and a number of third fixators, and the number of first fixators, the number of second fixators and the number of third fixators are all used for fixed installation connection.

[0007] Further, the support frame includes a number of cross bars, a number of columns and a number of diagonal tension rods. One end of each cross bar is connected to a column through a first fixator, and the other end is connected to another column through another first fixator. Two second fixators are arranged on each cross bar. One end of each diagonal tension rod is arranged on a second fixator on one cross bar, and the other end is arranged on another second fixator on another cross bar.

[0008] Further, the load-bearing frame includes a number of inclined beams. One end of each column is provided with a third fixator, and each inclined beam is movably arranged on a number of third fixators.

[0009] Further, the support plate assembly includes a number of cross beams and a number of pedals. Both ends of each cross beam are respectively arranged on an inclined beam, and each pedal is installed between two cross beams.

[0010] Further, the seat assembly includes a plurality of seat bodies, and the plurality of seat bodies are all arranged on the pedal.

[0011] Further, the plurality of cross bars, the plurality of vertical columns, the plurality of diagonal tension rods, the plurality of diagonal beams and the plurality of cross beams are all made of aluminum profiles.

[0012] Further, a guardrail assembly is further included, and the guardrail assembly is arranged around the outside of the seat assembly.

[0013] Further, the seat assembly is detachably arranged on the support plate assembly through a bolt.

[0014] Further, the plurality of seat bodies are arranged on the plurality of pedals in a stepped manner.

[0015] The beneficial effects of the present utility model are as follows: By using this new type of spliced grandstand structure, through the cooperation between the support frame, the load-bearing frame, the support plate assembly, the seat assembly and the fixing assembly, it is convenient to build, has a small loading and unloading difficulty, can meet the needs of grandstands for various sports events and performances, and can meet different site requirements. It can be flexibly spliced, quickly installed, and is modularly designed. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The drawings further illustrate the present utility model, but the embodiments in the drawings do not constitute any limitation to the present utility model.

[0017] Figure 1 is a schematic diagram of the overall structure of a new type of spliced grandstand structure provided for an embodiment;

[0018] Figure 2 is a schematic view in one direction of the support frame provided for an embodiment;

[0019] Figure 3 is Figure 2 an enlarged schematic view of part A in

[0020] Figure 4 is a schematic view of the connection in one direction between the support frame and the load-bearing frame provided for an embodiment;

[0021] Figure 5 is Figure 4 an enlarged schematic view of part B in

[0022] Figure 6 is a schematic view of the connection in another direction between the support frame and the load-bearing frame provided for an embodiment;

[0023] Figure 7 is a schematic view in one direction of the support frame, the load-bearing frame, the support plate assembly and the seat assembly provided for an embodiment;

[0024] Figure 8 A schematic diagram of the one-way connection of the support plate assembly provided for an embodiment. Detailed implementation manners

[0025] The technical solutions of the present utility model will be further described below in conjunction with the drawings of the embodiments of the present utility model. The present utility model is not limited to the following specific implementation manners. It should be noted that, without conflict, the embodiments in the present utility model and the features in the embodiments may be combined with each other.

[0026] As Figures 1 to 8 shown, a novel spliced grandstand structure includes: a support frame, a load-bearing frame, a support plate assembly, a seat assembly, and a fixing assembly; the bottom of the support frame is connected to the ground, and the other end is connected to the load-bearing frame. The support plate assembly is arranged on the load-bearing frame, and the seat assembly is arranged on the support plate assembly; the support frame and the load-bearing frame, and the load-bearing frame and the support plate assembly are all connected by the fixing assembly.

[0027] Specifically, the fixing assembly includes a plurality of first fixators 510, a plurality of second fixators 520, and a plurality of third fixators 530. The plurality of first fixators 510, the plurality of second fixators 520, and the plurality of third fixators 530 are all used for fixed installation connection. The support frame includes a plurality of cross bars 110, a plurality of vertical columns 120, and a plurality of diagonal tension rods 130. One end of each cross bar 110 is connected to a vertical column 120 through a first fixator 510, and the other end is connected to another vertical column 120 through another first fixator 510. Two second fixators 520 are arranged on each cross bar 110. One end of each diagonal tension rod 130 is arranged on a second fixator 520 on one cross bar 110, and the other end is arranged on another second fixator 520 on another cross bar 110. The load-bearing frame includes a plurality of inclined beams 200. One end of each vertical column 120 is provided with a third fixator 530, and each inclined beam 200 is movably arranged on a plurality of third fixators 530. The support plate assembly includes a plurality of cross beams 310 and a plurality of pedals 320. Both ends of each cross beam 310 are respectively arranged on an inclined beam 200, and each pedal 320 is installed between two cross beams 310. The seat assembly includes a plurality of seat bodies 400, and the plurality of seat bodies 400 are all arranged on the pedals 320.

[0028] In the above embodiments, the materials of several cross bars 110, several vertical columns 120, several diagonal tension rods 130, several diagonal beams 200 and several cross beams 310 are all aluminum profiles. That is to say, all cross bars 110, vertical columns 120, diagonal tension rods 130, diagonal beams 200 and cross beams 310 are customized in a factory. That is, during installation, modular installation is adopted, and the whole can be quickly installed and disassembled. It is worth mentioning that using aluminum profiles as the processing materials makes the overall weight light, facilitating the handling before installation or after disassembly, saving time and effort.

[0029] In one embodiment, the novel spliced grandstand structure further includes a guardrail assembly 600, and the guardrail assembly 600 is disposed around the outside of the seat assembly. The seat assembly is detachably disposed on the support plate assembly through a bolt. Several seat bodies 400 are arranged in a stepped manner on several pedals 320.

[0030] That is to say, when the staff builds this novel spliced grandstand structure, they first build it according to the specific situation of the site, such as the size of the site or the allowable building height of the site. That is to say, the staff first connect and install several vertical columns 120, several cross bars 110 and several diagonal tension rods 130 to form the entire support frame. Specifically, two first fixators 510 are detachably installed on one side of each vertical column 120, and two first fixators 510 are also detachably installed on the other side. Moreover, one end of each vertical column 120 is provided with an inclined block, and a third fixator 530 is detachably disposed on one inclined block. It is worth mentioning that each first fixator 510 is fixed to the vertical column 120 by threaded connection, and each third fixator 530 is fixed to the inclined block by threaded connection. Further, two second fixators 520 are provided on each cross bar 110, one second fixator 520 is disposed at one end of the cross bar 110, and the other second fixator 520 is disposed at the other end of the cross bar 110, and each second fixator 520 is detachably disposed on the cross bar 110 by threaded connection.

[0031] That is to say, according to specific requirements, first use a number of vertical columns 120, a number of cross bars 110 and a number of diagonal tension rods 130 to build the entire support frame, and then install the inclined beam 200 on the support frame. That is to say, the inclined beam 200 is supported by a number of third fixators 530 and then fixed with pins. That is to say, after all the inclined beams 200 are fixed, the cross beam 310 can be placed on the inclined beam 200. That is to say, one end of the cross beam 310 is placed on one inclined beam 200 and the other end is placed on another inclined beam 200. In order to support the cross beam 310 well, the middle of the cross beam 310 is also placed on an inclined beam 200. That is to say, a number of cross beams 310 are placed at equal intervals on every three inclined beams 200. Specifically, the cross beam 310 is fixed to each inclined beam 200 with pins. Further, a support block 311 is provided on one side of each cross beam 310, and a limit hook 312 is provided at one end of each cross beam 310 away from the inclined beam 200. That is to say, after the cross beam 310 is installed, it is necessary to install the pedal 320 between two adjacent cross beams 310. Further, a connecting hook 321 is provided on one side of each pedal 320. That is to say, when placing the pedal 320, the side of the pedal 320 with the connecting hook 321 is inserted into the limit hook 312 of an inclined beam 200, and the other side of the pedal 320 is placed on the support block 311 of another inclined beam 200. Then push the entire pedal 320 to make the pedal 320 completely placed between two adjacent inclined beams 200, and the installation of the pedal 320 can be completed. That is to say, after all the pedals 320 are installed, a stepped shape is formed. It is worth mentioning that all the cross bars 110, vertical columns 120, diagonal tension rods 130, inclined beams 200 and cross beams 310 are made of hollow aluminum alloy and directly customized in the factory. That is to say, when carrying them separately, they are easy to carry because they are relatively light as a whole. After being assembled into a whole, the overall weight also meets the standards.

[0032] Further, the seat assembly includes a number of seat bodies 400, and the seat bodies 400 are strung together by installation rods 410. That is to say, each seat body 400 is arranged adjacent to each other and fixed to the installation rod 410. It is worth mentioning that each seat body 400 is threadedly connected to the installation rod 410, and a number of insertion blocks 420 and a number of limiting blocks 430 are provided on the installation rod 410.

[0033] Further, each cross beam 310 is also provided with a receiving groove 313 and a limiting groove 314. That is to say, each insertion block 420 is movably inserted into the receiving groove 313, and each limiting block 430 is movably located in the limiting groove 314. Therefore, when installing all the seat bodies 400 after installing the pedal 320, the staff needs to place the installation rod 410 on one side of the pedal 320. Then, first align the insertion block 420 with the receiving groove 313 and align the limiting block 430 with the limiting groove 314. Then, push the installation rod 410, that is, push the installation rod 410 and all the seat bodies 400 on the installation rod 410 to the correct position. That is to say, the seat body 400 will be located between the upper and lower stepped pedals 320. It is worth mentioning that after all the seat bodies 400 are installed, only the positions at both ends of the installation rod 410 need to be restricted to restrict all the seat bodies 400, making the installation firm. And by assembling in this way, the overall disassembly and assembly are simple.

[0034] In one embodiment, using this new type of assembled grandstand structure can meet the needs of grandstands for various sports events and performances. It can meet different site requirements. It can be flexibly spliced, quickly installed, and is modularly designed. The product indicators meet the German DIN4112 standard. That is to say, this new type of assembled grandstand structure adopts a modular splicing method. According to the needs of performance activities, it can be flexibly spliced. The number of layers, length, and seats can meet the needs of different events and performance sites. It is safe and reliable, completely waterproof, environmentally friendly, and recyclable.

[0035] In one embodiment, by arranging a guardrail assembly 600 around the pedal 320, the guardrail assembly 600 is arranged to surround the outside of the seat assembly. Further, after forming the steps, the height of each layer is 0.25 m, the height of the overall guardrail is 1.1 m, the width of each pedal 320 is 0.77 m, and the distance between each seat body 400 is 0.5 m. Further, the load-bearing parameter of the pedal 320 is 5 KN / ㎡, and the load-bearing parameter of the guardrail is 1.5 KN / ㎡.

[0036] In summary, the above embodiments are not restrictive embodiments of the present invention. Any modification or equivalent deformation made by those skilled in the art based on the substantial content of the present invention is within the technical scope of the present invention.

Claims

1. A novel spliced grandstand structure, characterized in that Comprising: A support frame, a load-bearing frame, a support plate assembly, a seat assembly, and a fixing assembly; The bottom of the support frame is connected to the ground, and the other end is connected to the load-bearing frame. The support plate assembly is arranged on the load-bearing frame, and the seat assembly is arranged on the support plate assembly; The support frame and the load-bearing frame, and the load-bearing frame and the support plate assembly are all connected by the fixing assembly; The fixing assembly includes a plurality of first fixators, a plurality of second fixators, and a plurality of third fixators. The plurality of first fixators, the plurality of second fixators, and the plurality of third fixators are all used for fixed installation connection.

2. The novel spliced stand structure according to claim 1, characterized in that: The support frame includes a plurality of cross bars, a plurality of vertical columns, and a plurality of diagonal tie rods. One end of each cross bar is connected to a vertical column through a first fixator, and the other end is connected to another vertical column through another first fixator. Two second fixators are arranged on each cross bar. One end of each diagonal tie rod is arranged on one of the second fixators on a cross bar, and the other end is arranged on another second fixator on another cross bar.

3. The novel spliced stand structure according to claim 2, characterized in that: The load-bearing frame includes a plurality of inclined beams. One end of each vertical column is provided with a third fixator, and each inclined beam is movably arranged on a plurality of third fixators.

4. The novel spliced grandstand structure according to claim 3, characterized in that: The support plate assembly includes a plurality of cross beams and a plurality of pedals. Both ends of each cross beam are respectively arranged on an inclined beam, and each pedal is installed between two cross beams.

5. The novel spliced stand structure according to claim 4, characterized in that: The seat assembly includes a plurality of seat bodies, and the plurality of seat bodies are all arranged on the pedals.

6. The novel spliced stand structure according to claim 5, characterized in that: The materials of the plurality of cross bars, the plurality of vertical columns, the plurality of diagonal tie rods, the plurality of inclined beams, and the plurality of cross beams are all aluminum profiles.

7. The novel spliced stand structure according to claim 1, characterized in that: It further includes a guardrail assembly, and the guardrail assembly is arranged around the outside of the seat assembly.

8. The novel spliced stand structure according to claim 1, characterized in that: The seat assembly is detachably arranged on the support plate assembly through a bolt.

9. The novel spliced stand structure according to claim 5, characterized in that: The plurality of seat bodies are arranged on the plurality of pedals in a stepped manner.