Glass fiber powder cross beam for assembled cultivation greenhouse

By using an assembled design of L-shaped rods and L-shaped grooves for interlocking and limiting components, the problem of complex fiberglass beam connections is solved, enabling rapid and stable construction of breeding sheds and meeting the needs of large-scale applications.

CN224022464UActive Publication Date: 2026-03-24JINAN APOLLO WOOD PLASTIC COMPOSITE MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing fiberglass powder beam connection method is complicated, requires high-precision operation, and the adhesive has a long curing time, which affects the installation cycle and structural stability. The adhesive is also susceptible to environmental factors, which can cause it to loosen.

Method used

The design employs an assembly-type structure, utilizing L-shaped rods and L-shaped slots for engagement, combined with limiting components and a rotating disk for fixation. This simplifies operation and improves connection stability. The crossbeam is connected via vertical rods, enabling rapid and efficient assembly of the overall structure.

Benefits of technology

It improves greenhouse assembly efficiency, ensures stable connections, saves labor costs, provides solid structural support, adapts to the needs of large-scale rapid construction, and enhances the overall strength and stability of the greenhouse.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cultivation greenhouses, and discloses an assembly type cultivation greenhouse glass fiber powder cross beam which comprises a mounting base, a cross beam body and a vertical rod, the side outer wall of the mounting base is fixedly connected with an L-shaped rod, and the outer wall of the side, away from the L-shaped rod, of the mounting base is provided with an L-shaped groove matched with the L-shaped rod; the outer wall, located on one side of the L-shaped groove, of the mounting base is provided with a limiting assembly for limiting the L-shaped rod, a mounting groove is formed in the upper surface of the mounting base, the outer walls of the bottoms of the cross beam bodies are rotationally connected with a rotating disc, the rotating disc is matched with the mounting groove, and the two cross beam bodies are mounted through a vertical rod. By means of installation and connection among the installation base, the cross beam rods and the vertical rods, the construction that a foundation is connected to an overall structure is achieved, the overall strength of a greenhouse is improved in all directions, and efficient installation and strong structural stability are also achieved.
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Description

TECHNICAL FIELD

[0001] The utility model application relates to the technical field of breeding greenhouse, especially to an assembled breeding greenhouse glass fiber powder crossbeam. BACKGROUND

[0002] In the modern large-scale breeding industry, breeding greenhouse as important infrastructure is widely used. The crossbeam of the breeding greenhouse is the key component of the whole structure of the greenhouse, and its performance is directly related to the stability of the greenhouse, service life and the quality of the internal breeding environment. In the field of breeding greenhouse, the glass fiber powder material crossbeam has unique advantages, its density is low, and the weight is relatively light, which not only reduces the transportation cost, but also reduces the carrying burden of workers during the construction of the greenhouse. At the same time, the glass fiber powder crossbeam has certain strength, which can support the weight of the top cover of the greenhouse and provide reliable structural support for the breeding greenhouse. Based on these advantages, the glass fiber powder crossbeam has been more and more widely used in the construction of breeding greenhouse in recent years

[0003] For the above related technology, the inventor believes that the common glass fiber powder crossbeam connection method adopts complex splicing structure or relies on special adhesive. These splicing structures often require workers to have high operation precision. In actual installation, slight deviation will affect the stability of the whole structure. The curing time of the adhesive is also relatively long, which greatly prolongs the installation period. Moreover, the adhesive may reduce the bonding strength due to environmental factors during long-term use, causing the crossbeam connection part to loosen. Therefore, an assembled breeding greenhouse glass fiber powder crossbeam is proposed to solve the above problems.

[0004] The above information disclosed in the background technology is only used to increase the understanding of the background technology of the application, and therefore, it can include prior art known by those skilled in the art. CONTENT OF THE UTILITY MODEL

[0005] In order to solve the above problems, the application provides an assembled breeding greenhouse glass fiber powder crossbeam.

[0006] The assembled breeding greenhouse glass fiber powder crossbeam provided by the utility model application adopts the following technical scheme:

[0007] The utility model provides an assembled breeding greenhouse glass fiber powder crossbeam, including installation base, crossbeam body and vertical rod, the side outer wall of installation base is fixedly connected with L shaped rod, and the outer wall of installation base side away from L shaped rod is equipped with the L shaped groove who is compatible with, the outer wall of installation base is equipped with the limit stopper of installation limit stopper L shaped rod one side of L shaped groove, the upper surface of installation base is equipped with the installation groove, the bottom outer wall of crossbeam body is rotatably connected with rotating disc, and the rotating disc is compatible with installation groove, two crossbeam bodies are installed through vertical rod, the side outer wall of installation base is equipped with the fixed group of fixed rotating disc.

[0008] Preferably, the two side outer walls of the rotating disc are provided with clamping grooves, the clamping grooves are matched with the fixing assembly, the two sides of the installation groove are provided with semicircular grooves, and the two side outer walls of the rotating disc are fixedly connected with the pull rods.

[0009] Preferably, the fixing assembly comprises an external connecting block, the external connecting block is fixedly connected to the side outer wall of the installation base, a spring member one is fixedly connected in the inner cavity of the external connecting block, the end of the spring member one is fixedly connected with a trapezoidal block, the trapezoidal block slides through the installation base, a pull rod is slidably connected to the outer wall of the external connecting block, and the pull rod is fixedly connected with the trapezoidal block.

[0010] Preferably, the limit stopper comprises an inner groove, the inner groove is formed in the outer wall of the L-shaped groove, a spring member two is fixedly connected to the outer wall of the inner groove, a limiting plate is fixedly connected to the outer wall of the spring member two, the limiting plate is slidably connected to the inner groove, a sliding block is fixedly connected to the outer wall of the limiting plate, and a connecting hook is rotatably connected to the outer wall of the sliding block, a fixed column is fixedly connected to the outer wall of the installation base on one side of the L-shaped groove.

[0011] Preferably, the end outer wall of the crossbeam body away from the rotating disc is fixedly connected with a butt block, and the outer wall of the butt block is provided with a stabilizing groove.

[0012] Preferably, a plurality of stabilizing blocks are linearly arrayed and fixedly connected to the outer wall of the vertical rod, and the plurality of stabilizing blocks are matched with the stabilizing groove.

[0013] In summary, the present application has the following beneficial technical effects:

[0014] The device is clamped by the L-shaped rod and the L-shaped slot through the mounting base, and cooperates with the design of the limiting assembly, which is simple and convenient to operate. At the same time, the beam body and the mounting base are connected through the rotating disc, the mounting slot and the fixing assembly, from embedding the rotating disc to fixing, which greatly improves the overall assembly efficiency of the greenhouse, fully meets the needs of large-scale breeding greenhouse rapid construction, and ensures the stable connection under the impact of strong wind and other external forces. The limiting assembly of the mounting base lays a solid foundation for subsequent construction, the beam bodies are connected through the vertical rods, and the installation connection between the mounting base, the beam rod and the vertical rod realizes the construction from the basic connection to the overall structure, which improves the overall strength of the greenhouse in all directions, realizes efficient installation and strong structural stability, provides a solid and reliable infrastructure for breeding activities, and effectively promotes the stable development of the breeding industry. In addition, the whole assembly process is simple to operate, which greatly saves the labor cost. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is the overall schematic diagram of the application embodiment one;

[0016] Figure 2 is the schematic diagram of the mounting base structure of the application embodiment one;

[0017] Figure 3 is the sectional view of the L-shaped slot structure of the application embodiment one;

[0018] Figure 4 is the schematic diagram of the beam rod structure of the application embodiment one;

[0019] Figure 5 is the schematic diagram of the vertical rod structure of the application embodiment one.

[0020] Explanation of reference numerals: 1, mounting base; 2, beam body; 3, vertical rod; 5, external block; 6, L-shaped slot; 7, L-shaped rod; 8, mounting slot; 9, semicircular slot; 10, pull rod; 11, trapezoidal block; 12, spring part one; 13, limiting plate; 14, sliding block; 15, connecting hook; 16, fixed column; 17, inner slot; 18, spring part two; 19, rotating disc; 20, clamping groove; 21, push rod; 22, butt joint block; 23, stabilizing groove; 25, stabilizing block. DETAILED DESCRIPTION

[0021] The following will be described in detail in combination with the accompanying Figure 1 - Figure 5 The application is further described in detail.

[0022] The utility model provides a kind of assembled culture greenhouse glass fiber powder crossbeam, including installation base 1, crossbeam body 2 and vertical pole 3, the side outer wall of installation base 1 is fixedly connected with L-shaped rod 7, and the outer wall of the side of installation base 1 away from L-shaped rod 7 is equipped with the L-shaped slot 6 compatible with it, the L-shaped rod 7 of one installation base 1 is aligned the L-shaped slot 6 of another installation base 1, two installation base 1 are pulled outwards each other, to make L-shaped rod 7 and L-shaped slot 6 tightly clamping connection, to connect and assemble multiple installation base 1, improve assembly efficiency, while ensure its stability, the outer wall of the side of installation base 1 in L-shaped slot 6 is provided with the limiting assembly of installation limiting L-shaped rod 7, the installed L-shaped rod 7 is limited by limiting assembly and blocked, avoid its separation, affect the connection stability between two installation base 1, the upper surface of installation base 1 is equipped with installation slot 8, the bottom outer wall of crossbeam body 2 is rotatably connected with rotating disc 19, and rotating disc 19 is compatible with installation slot 8, by the butt joint installation of rotating disc 19 on the bottom of crossbeam body 2 and installation slot 8, to be fixed rotating disc 19 by subsequent fixed assembly, to complete the assembly between crossbeam body 2 and installation base 1, two crossbeam body 2 are installed by vertical pole 3, by making two crossbeam body 2 be connected and fixed by vertical pole 3, to complete the assembly of whole greenhouse, greatly improve overall assembly efficiency, while installation base 1, crossbeam body 2 and vertical pole 3 constitute the main support structure of greenhouse, provide stable contact for subsequent greenhouse overall building, guarantee the long-term safe use of greenhouse, the side outer wall of installation base 1 is provided with the fixed assembly of fixed rotating disc 19, the assembly between crossbeam body 2 and installation base 1 is facilitated by fixed assembly.

[0023] The two side outer walls of rotating disc 19 are equipped with clamping groove 20, and clamping groove 20 is compatible with fixed assembly, and the two sides of installation slot 8 are equipped with semicircular groove 9, and the two side outer walls of rotating disc 19 are fixedly connected with lever 21, and the rotating disc 19 on the bottom of crossbeam body 2 is aligned installation slot 8 on installation base 1 and is embedded, and the clamping groove 20 on rotating disc 19 is docked and inserted by fixed assembly by operator, to facilitate the fixing of rotating disc 19.

[0024] The fixed assembly comprises an external block 5 fixedly connected to the side outer wall of the mounting base 1, the inner cavity of the external block 5 is fixedly connected with a spring member 12, the end of the spring member 12 is fixedly connected with a trapezoidal block 11, the trapezoidal block 11 is slidably penetrated through the mounting base 1, the outer wall of the external block 5 is slidably connected with a pull rod 10, the pull rod 10 is fixedly connected with the trapezoidal block 11, the operator pulls the pull rod 10, the pull rod 10 drives the trapezoidal block 11 to contract, and the spring member 12 is compressed, at this time, the rotating rod 21 is rotated, the rotating rod 21 drives the rotating disc 19 to rotate along the track of the semicircular groove 9, until the clamping groove 20 on the rotating disc 19 is aligned with the trapezoidal block 11, then the pull rod 10 is loosened, under the elastic force of the spring member 12, the trapezoidal block 11 is clamped into the clamping groove 20 of the rotating disc 19, thereby the connection of the beam body 2 and the mounting base 1 is quickly completed, the assembly is completed through simple operation, and the installation time is greatly shortened.

[0025] The limiting assembly comprises an inner groove 17 formed in the outer wall of one side of the L-shaped groove 6, the outer wall of the inner groove 17 is fixedly connected with a spring member 18, the outer wall of the spring member 18 is fixedly connected with a limiting plate 13, the limiting plate 13 is slidably connected with the inner groove 17, the outer wall of the limiting plate 13 is fixedly connected with a sliding block 14, and the outer wall of the sliding block 14 is rotatably connected with a connecting hook 15, the outer wall of one side of the mounting base 1 located in the L-shaped groove 6 is fixedly connected with a fixed column 16, after the clamping is completed, the connecting hook 15 is manually operated, the operator pinches the holding part of the connecting hook 15 with fingers, and uniformly drives the sliding block 14 to slide outward, the sliding block 14 further drives the limiting plate 13 to synchronously move, until the limiting plate 13 forms a blocking limit to the L-shaped rod 7, the L-shaped rod 7 is effectively prevented from being separated from the L-shaped groove 6, then the connecting hook 15 is hooked on the fixed column 16, at this time, the hooking tightness of the connecting hook 15 and the fixed column 16 needs to be checked, so as to prevent the limiting plate 13 from rebounding due to the unfirm hooking, through the above steps, the quick connection of multiple mounting bases 1 can be realized, and the stability of the connection between them is significantly improved.

[0026] The end of the beam body 2 away from the rotating disc 19 is fixedly connected with a butt joint block 22, the outer wall of the butt joint block 22 is provided with a stabilizing groove 23, the outer wall of the vertical rod 3 is linearly fixedly connected with multiple stabilizing blocks 25, the multiple stabilizing blocks 25 are matched with the stabilizing groove 23, the two beam bodies 2 mounted on the mounting bases 1 are butt jointed, the two butt joint blocks 22 are adhered, and then the stabilizing blocks 25 on the vertical rod 3 are inserted into the stabilizing groove 23 on the butt joint block 22, so that the stable connection between the two beam bodies 2 is realized, the assembly capacity of the greenhouse is significantly improved, the tightness and stability of the connection are greatly enhanced through the connection between the beam bodies 2 by the vertical rod 3, and the connection between the vertical rod 3 and the two beam bodies 2 is completed by aligning the screw holes on the butt joint block 22 and the stabilizing block 25 through the bolt, and the fixation is improved.

[0027] The implementation principle of the assembled breeding greenhouse glass fiber powder crossbeam of the utility model application embodiment is as follows: firstly, the L-shaped rod 7 on the other mounting base 1 is butted into the L-shaped groove 6 of the assembled mounting base 1, so that the two mounting bases 1 are pulled outward, the L-shaped rod 7 is connected with the L-shaped groove 6, when the connection is completed, the connecting hook 15 is used to drive the sliding block 14 to slide outward, so that the sliding block 14 drives the limiting plate 13 to move synchronously, and then the limiting plate 13 blocks the L-shaped rod 7, avoiding the disconnection of the L-shaped rod 7 from the L-shaped groove 6, the connecting hook 15 is hooked on the fixed column 16, so that the limiting plate 13 is fixed, avoiding the rebound of the limiting plate 13, and the above steps are repeated to quickly connect the multiple mounting bases 1, and the stability of the connection between the multiple mounting bases 1 is improved.

[0028] When the multiple mounting bases 1 are installed, the rotating disc 19 at the bottom of the crossbeam body 2 is butted with the installation groove 8, and is inserted into the installation groove 8, the operator pulls the pull rod 10, the pull rod 10 drives the trapezoidal block 11 to contract, so that the spring part one 12 is compressed, the pull rod 21 is rotated, the pull rod 21 drives the rotating disc 19 to rotate along the track of the semicircular groove 9, the clamping groove 20 on the rotating disc 19 is butted with the trapezoidal block 11, so that the pull rod 10 is loosened, under the elastic force of the spring part one 12, the trapezoidal block 11 is clamped into the clamping groove 20 on the rotating disc 19, and then the quick installation between the crossbeam body 2 and the mounting base 1 is completed, the two crossbeam bodies 2 are butted, the stable block 25 on the vertical rod 3 is inserted into the stable groove 23 on the butt joint block 22, and then the stable connection between the two crossbeam bodies 2 is realized, and the assembly capacity of the greenhouse is improved.

Claims

1. A modular fiberglass crossbeam for a livestock shed, comprising a mounting base (1), a crossbeam body (2), and a vertical rod (3), characterized in that: An L-shaped rod (7) is fixedly connected to the outer side wall of the mounting base (1), and an L-shaped groove (6) adapted to the outer side wall of the mounting base (1) away from the L-shaped rod (7) is provided. A limiting component for installing the limiting L-shaped rod (7) is provided on the outer side wall of the mounting base (1) located on the side of the L-shaped groove (6). An installation groove (8) is provided on the upper surface of the mounting base (1). The bottom outer wall of the crossbeam (2) is rotatably connected to the rotating disk (19), and the rotating disk (19) is adapted to the installation groove (8). The two crossbeams (2) are installed together by a vertical rod (3). A fixing component for fixing the rotating disk (19) is provided on the outer side wall of the mounting base (1).

2. The assembled fiberglass beam for a livestock shed according to claim 1, characterized in that: The rotating disk (19) has slots (20) on both outer walls. The slots (20) are adapted to the fixing components. The mounting groove (8) has semi-circular grooves (9) on both sides. The rotating disk (19) has levers (21) fixedly connected to both outer walls.

3. The assembled fiberglass beam for a livestock shed according to claim 1, characterized in that: The fixing component includes an external block (5), which is fixedly connected to the outer side wall of the mounting base (1). A spring element (12) is fixedly connected to the inner cavity of the external block (5). A trapezoidal block (11) is fixedly connected to the end of the spring element (12), and the trapezoidal block (11) slides through the mounting base (1). A pull rod (10) is slidably connected to the outer wall of the external block (5), and the pull rod (10) is fixedly connected to the trapezoidal block (11).

4. The assembled fiberglass beam for a livestock shed according to claim 1, characterized in that: The limiting component includes an inner groove (17), which is opened on the outer wall of one side of the L-shaped groove (6). A spring element two (18) is fixedly connected to the outer wall of the inner groove (17), and a limiting plate (13) is fixedly connected to the outer wall of the spring element two (18). The limiting plate (13) is slidably connected to the inner groove (17). A slider (14) is fixedly connected to the outer wall of the limiting plate (13), and a connecting hook (15) is rotatably connected to the outer wall of the slider (14). A fixing post (16) is fixedly connected to the outer wall of the mounting base (1) located on one side of the L-shaped groove (6).

5. The assembled fiberglass beam for a livestock shed according to claim 1, characterized in that: A docking block (22) is fixedly connected to the outer wall of the end of the beam body (2) away from the rotating disk (19), and a stabilizing groove (23) is provided on the outer wall of the docking block (22).

6. The assembled fiberglass beam for a livestock shed according to claim 1, characterized in that: The outer wall of the vertical rod (3) is fixedly connected with multiple stabilizing blocks (25) in a linear array, and the multiple stabilizing blocks (25) are adapted to the stabilizing groove (23).