Greenhouse skylight aluminum alloy profile capable of being provided with insect-proof net

By designing a greenhouse skylight aluminum alloy profile that can be installed with insect-proof nets, the combination of traction components and insect-proof nets can realize the expansion and folding control of insect-proof nets, which solves the problem of small and unappreciative ventilation area in the prior art, improves the ventilation and environmental control capabilities of the greenhouse, and maintains the aesthetics and stability of the skylight.

CN223067624UActive Publication Date: 2025-07-08QINGDAO LANTIAN GREENHOUSE
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Patent Information

Application Number
CN202422348657.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-07-08
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

When the existing greenhouse skylight aluminum alloy profile is installed with ordinary insect-proof nets, the ventilation area is small and not beautiful, and the insect-proof effect is not good.

Method used

A greenhouse skylight aluminum alloy profile that can be installed with insect-proof net is designed. Through the cooperation of the traction component and insect-proof net assembly, the expansion and folding control of the insect-proof net is realized, and the rotation mechanism and support mechanism are combined to ensure the stability and aesthetics of the skylight.

Benefits of technology

It improves the ventilation and environmental control capabilities of the greenhouse, enhances the adaptability to external conditions, and maintains the aesthetics and stability of the skylight.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a greenhouse skylight aluminum alloy profile capable of being provided with an insect-proof net, and relates to the technical field of greenhouse skylights. Comprising a mounting plate, a traction assembly is arranged at the bottom of the mounting plate, an insect-proof net assembly is arranged on one side of the traction assembly, the traction assembly comprises a sliding groove formed in the bottom of the mounting plate, a sliding block is slidably connected into the sliding groove, and a traction frame is fixedly connected to the surface of the sliding block; the insect-proof net assembly comprises a storage frame fixedly connected to the bottom of the mounting plate, a folding insect-proof net is arranged in the storage frame, and one end of the folding insect-proof net is fixedly connected with the traction frame. According to the aluminum alloy profile for the greenhouse skylight, the traction assembly and the insect-proof net assembly are arranged in a matched mode, the traction assembly can be used for controlling unfolding and folding of the insect-proof net assembly, accordingly, ventilation and attractiveness of a greenhouse are guaranteed, meanwhile, pests are effectively prevented from entering the greenhouse, the environment control capacity of the greenhouse is improved, and the service life of the greenhouse is prolonged. And the adaptability to external conditions is enhanced.
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Description

Technical Field

[0001] The present application relates to the technical field of greenhouse skylights, and specifically to an aluminum alloy profile for greenhouse skylights that can be installed with insect-proof nets. Background Technique

[0002] The aluminum alloy profile for greenhouse skylights is a kind of aluminum alloy material specially used for the structure of greenhouse skylights. It usually has good strength, corrosion resistance and thermal insulation performance, and is suitable for long-term use in greenhouse environments. The design and manufacture of this profile are aimed at meeting the requirements of greenhouse skylights for lighting, ventilation and temperature regulation.

[0003] The commonly used aluminum alloy profiles for greenhouse skylights generally install ordinary insect-proof nets, with a small ventilation area. And when the skylight is closed, the insect-proof nets are piled up together, which is very unsightly. To solve the above problems, an aluminum alloy profile for greenhouse skylights that can be installed with insect-proof nets is hereby proposed. Content of the Utility Model

[0004] (1) Technical Problems to be Solved

[0005] In view of the deficiencies of the prior art, the present application provides an aluminum alloy profile for greenhouse skylights that can be installed with insect-proof nets, and solves the problems mentioned in the above background technique.

[0006] (2) Technical Solutions

[0007] To achieve the above object, the present application is realized through the following technical solutions: An aluminum alloy profile for greenhouse skylights that can be installed with insect-proof nets includes a mounting plate. A traction assembly is provided at the bottom of the mounting plate, and an insect-proof net assembly is provided on one side of the traction assembly. The traction assembly includes a sliding groove opened at the bottom of the mounting plate, a sliding block is slidably connected inside the sliding groove, a traction frame is fixedly connected to the surface of the sliding block, the insect-proof net assembly includes a storage frame fixedly connected to the bottom of the mounting plate, a folding insect-proof net is arranged inside the storage frame, and one end of the folding insect-proof net is fixedly connected to the traction frame.

[0008] By adopting the above technical solutions, the sliding of the sliding block inside the sliding groove can drive the folding insect-proof net to extend or retract inside the storage frame through the traction frame fixedly connected to the surface of the sliding block, thereby controlling the unfolding and folding of the folding insect-proof net, so as to effectively prevent pests from entering while ensuring greenhouse ventilation and aesthetics, not only improving the greenhouse environment control ability, but also enhancing its adaptability to external conditions.

[0009] Preferably, a handle assembly is provided on the surface of the traction frame. The handle assembly includes a grip bolted to the surface of the traction frame, and an anti-slip sleeve is sleeved on the surface of the grip.

[0010] By adopting the above technical solution, the staff can hold the handle to drive the sliding block to slide inside the sliding groove, and the anti-slip sleeve sleeved on the surface of the handle can effectively prevent slipping.

[0011] Preferably, a fixing component is arranged on the surface of the traction frame. The fixing component includes a fixing knob threadedly connected to the surface of the traction frame. One end of the fixing knob is fixedly connected to a fixing block. A fixing groove is formed at the bottom of the mounting plate, and the fixing groove is adapted to the fixing block.

[0012] By adopting the above technical solution, when the traction frame moves to a suitable position, the fixing knob can be screwed to make the fixing block extend into the fixing groove, thereby fixing the traction frame at the current position and ensuring the stability of the traction frame.

[0013] Preferably, a skylight mechanism is arranged on the upper surface of the mounting plate. The skylight mechanism includes a rotating frame fixedly connected to the upper surface of the mounting plate. A first motor is fixedly installed on the surface of the rotating frame. The output end of the first motor is connected to a rotating shaft, and a skylight is fixedly connected to the surface of the rotating shaft.

[0014] By adopting the above technical solution, when the skylight needs to be opened, the first motor fixedly installed on the surface of the rotating frame can be used to drive the rotating shaft and drive the skylight to rotate to a suitable angle, so that the skylight is opened.

[0015] Preferably, a rotating mechanism is arranged on the surface of the skylight. The rotating mechanism includes a second motor fixedly installed on the side surface of the skylight. A receiving groove is formed on the surface of the skylight. The output end of the second motor extends into the receiving groove and is connected to a rotating shaft, and a rotating block is fixedly connected to the surface of the rotating shaft.

[0016] By adopting the above technical solution, the second motor can be used to drive the rotating shaft and drive the rotating block to rotate out of the receiving groove to a suitable angle.

[0017] Preferably, a supporting mechanism is arranged on the surface of the rotating block. The supporting mechanism includes an electric push rod fixedly installed on the surface of the rotating block. One end of the electric push rod is fixedly connected to a supporting block.

[0018] By adopting the above technical solution, the electric push rod is used to push the supporting block to contact the surface of the mounting plate, thereby supporting the skylight and ensuring the stability of the skylight.

[0019] (III) Beneficial effects

[0020] This application provides an aluminum alloy profile for a greenhouse skylight that can be installed with an insect-proof net. The beneficial effects are as follows:

[0021] 1. The aluminum alloy profile for the greenhouse skylight, through the cooperative setting of the traction component and the insect-proof net component, can use the traction component to control the unfolding and folding of the insect-proof net component, thereby effectively preventing pests from entering while ensuring the ventilation and beauty of the greenhouse, not only improving the environmental control ability of the greenhouse but also enhancing its adaptability to external conditions.

[0022] 2. The aluminum alloy profile for the greenhouse skylight, through the cooperative setting of the rotating mechanism and the supporting mechanism, when the skylight rotates to a suitable position, the rotating mechanism can be used to rotate the supporting mechanism to a suitable angle, and then the supporting mechanism can be used to support the skylight to ensure the stability of the skylight. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The drawings are used to provide a further understanding of the present utility model and constitute a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model and do not constitute a limitation to the present utility model. In the drawings:

[0024] Figure 1 is a three-dimensional structural schematic diagram of the present application;

[0025] Figure 2 is a structural schematic diagram of the skylight mechanism, rotating mechanism and supporting mechanism of the present application;

[0026] Figure 3 is a structural schematic diagram of the traction component and the insect-proof net component of the present application;

[0027] Figure 4 is a structural schematic diagram of the fixing component and the handle component of the present application.

[0028] In the figures:

[0029] 1. Mounting plate;

[0030] 2. Skylight mechanism; 201. Rotating frame; 202. First motor; 203. Skylight;

[0031] 3. Rotating mechanism; 301. Second motor; 302. Storage groove; 303. Rotating block;

[0032] 4. Supporting mechanism; 401. Electric push rod; 402. Supporting block;

[0033] 5. Traction component; 501. Sliding groove; 502. Sliding block; 503. Traction frame;

[0034] 6. Fixing component; 601. Fixing knob; 602. Fixing block; 603. Fixing groove;

[0035] 7. Handle component; 701. Grip; 702. Anti-slip sleeve;

[0036] 8. Insect-proof net assembly; 801. Storage rack; 802. Folding insect-proof net. Detailed implementation mode

[0037] It should be noted that in the description of the embodiments of the present application, the orientation or positional relationship indicated by terms such as "front, back", "left, right", "up, down", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, so it should not be construed as a limitation to the present application. The terms "installation", "connection", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0038] The present application will be further elaborated in detail below through the drawings and embodiments.

[0039] Refer to Figures 1 to 4 , the embodiments of the present application provide an aluminum alloy profile for a greenhouse skylight that can be installed with an insect-proof net, including an installation plate 1. A traction assembly 5 is arranged at the bottom of the installation plate 1, and an insect-proof net assembly 8 is arranged on one side of the traction assembly 5. The traction assembly 5 includes a sliding groove 501 opened at the bottom of the installation plate 1. A sliding block 502 is slidably connected inside the sliding groove 501. A traction frame 503 is fixedly connected to the surface of the sliding block 502. The insect-proof net assembly 8 includes a storage rack 801 fixedly connected to the bottom of the installation plate 1. A folding insect-proof net 802 is arranged inside the storage rack 801. One end of the folding insect-proof net 802 is fixedly connected to the traction frame 503. By sliding the sliding block 502 inside the sliding groove 501, the folding insect-proof net 802 can be driven by the traction frame 503 fixedly connected to the surface of the sliding block 502 to extend or retract inside the storage rack 801, thereby controlling the unfolding and folding of the folding insect-proof net 802. Thus, while ensuring the ventilation and aesthetics of the greenhouse, it can effectively prevent pests from entering, not only improving the environmental control ability of the greenhouse, but also enhancing its adaptability to external conditions.

[0040] Refer to Figure 4 , in one aspect of this embodiment, a handle assembly 7 is arranged on the surface of the traction frame 503. The handle assembly 7 includes a grip 701 bolted to the surface of the traction frame 503, and an anti-slip sleeve 702 is sleeved on the surface of the grip 701.

[0041] The surface of the traction frame 503 is provided with a fixing component 6. The fixing component 6 includes a fixing knob 601 threadedly connected to the surface of the traction frame 503. One end of the fixing knob 601 is fixedly connected with a fixing block 602. A fixing groove 603 is formed at the bottom of the mounting plate 1, and the fixing groove 603 is adapted to the fixing block 602. The staff can hold the grip 701 to drive the sliding block 502 to slide inside the sliding groove 501, and the anti-slip sleeve 702 sleeved on the surface of the grip 701 can effectively prevent slipping. When the traction frame 503 moves to a suitable position, the fixing knob 601 can be rotated to make the fixing block 602 extend into the fixing groove 603, thereby fixing the traction frame 503 at the current position and ensuring the stability of the traction frame 503.

[0042] Refer to Figure 2 , in one aspect of this embodiment, a skylight mechanism 2 is provided on the upper surface of the mounting plate 1. The skylight mechanism 2 includes a rotating frame 201 fixedly connected to the upper surface of the mounting plate 1. A first motor 202 is fixedly installed on the surface of the rotating frame 201. The output end of the first motor 202 is connected with a rotating shaft, and a skylight 203 is fixedly connected to the surface of the rotating shaft.

[0043] A rotating mechanism 3 is provided on the surface of the skylight 203. The rotating mechanism 3 includes a second motor 301 fixedly installed on the side surface of the skylight 203. A storage groove 302 is formed on the surface of the skylight 203. The output end of the second motor 301 extends into the storage groove 302 and is connected with a rotating shaft, and a rotating block 303 is fixedly connected to the surface of the rotating shaft.

[0044] A support mechanism 4 is provided on the surface of the rotating block 303. The support mechanism 4 includes an electric push rod 401 fixedly installed on the surface of the rotating block 303. One end of the electric push rod 401 is fixedly connected with a support block 402. When it is necessary to open the skylight 203, the first motor 202 fixedly installed on the surface of the rotating frame 201 can be used to drive the rotating shaft and drive the skylight 203 to rotate to a suitable angle, so that the skylight 203 is opened. When the skylight 203 rotates to a suitable position, the second motor 301 can be used to drive the rotating shaft and drive the rotating block 303 to rotate out of the storage groove 302 to a suitable angle, and then the electric push rod 401 is used to push the support block 402 to contact the surface of the mounting plate 1, thereby supporting the skylight 203 and ensuring the stability of the skylight.

[0045] All electrical equipment in this solution is powered by an external power supply.

[0046] Working principle: When in use, the staff can hold the grip 701 to drive the sliding block 502 to slide inside the sliding groove 501, and then drive the folding insect-proof net 802 to extend or retract in the storage rack 801 through the traction frame 503 fixedly connected to the surface of the sliding block 502, thereby controlling the unfolding and folding of the folding insect-proof net 802. When the traction frame 503 moves to a suitable position, the fixing knob 601 can be turned to make the fixing block 602 extend into the fixing groove 603, thereby fixing the traction frame 503 at the current position. When it is necessary to open the skylight 203, the first motor 202 fixedly installed on the surface of the rotating frame 201 can be used to drive the rotating shaft and drive the skylight 203 to rotate to a suitable angle to open the skylight 203. When the skylight 203 rotates to a suitable position, the second motor 301 can be used to drive the rotating shaft and drive the rotating block 303 to rotate out of the storage groove 302 to a suitable angle, and then the electric push rod 401 is used to push the support block 402 to contact the mounting plate 1, thereby supporting the skylight 203.

[0047] Although the embodiments of the present application have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present application. The scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An aluminum alloy profile for a greenhouse skylight with an insect-proof net installable thereon, comprising a mounting plate (1), characterized in that: A traction component (5) is provided at the bottom of the mounting plate (1). An insect-proof net component (8) is provided on one side of the traction component (5). The traction component (5) includes a sliding groove (501) opened at the bottom of the mounting plate (1). A sliding block (502) is slidably connected inside the sliding groove (501). A traction frame (503) is fixedly connected to the surface of the sliding block (502). The insect-proof net component (8) includes a storage frame (801) fixedly connected to the bottom of the mounting plate (1). A folding insect-proof net (802) is arranged inside the storage frame (801). One end of the folding insect-proof net (802) is fixedly connected to the traction frame (503).

2. The aluminum alloy profile for greenhouse skylight capable of installing insect-proof net according to claim 1, wherein: A handle component (7) is provided on the surface of the traction frame (503). The handle component (7) includes a grip (701) bolted to the surface of the traction frame (503). An anti-slip sleeve (702) is sleeved on the surface of the grip (701).

3. The aluminum alloy profile for greenhouse skylight with insect-proof net installable according to claim 1, characterized in that: A fixing component (6) is provided on the surface of the traction frame (503). The fixing component (6) includes a fixing knob (601) threadedly connected to the surface of the traction frame (503). A fixing block (602) is fixedly connected to one end of the fixing knob (601). A fixing groove (603) is opened at the bottom of the mounting plate (1). The fixing groove (603) is adapted to the fixing block (602).

4. The aluminum alloy profile for greenhouse skylight with insect screen installable according to claim 1, characterized in that: A skylight mechanism (2) is provided on the upper surface of the mounting plate (1). The skylight mechanism (2) includes a rotating frame (201) fixedly connected to the upper surface of the mounting plate (1). A first motor (202) is fixedly installed on the surface of the rotating frame (201). The output end of the first motor (202) is connected to a rotating shaft. A skylight (203) is fixedly connected to the surface of the rotating shaft.

5. The aluminum alloy profile for greenhouse skylight with an insect-proof net installable according to claim 4, characterized in that: A rotating mechanism (3) is provided on the surface of the skylight (203). The rotating mechanism (3) includes a second motor (301) fixedly installed on the side surface of the skylight (203). A storage groove (302) is opened on the surface of the skylight (203). The output end of the second motor (301) extends into the storage groove (302) and is connected to a rotating shaft. A rotating block (303) is fixedly connected to the surface of the rotating shaft.

6. The aluminum alloy profile for greenhouse skylight with insect-proof net installable according to claim 5, characterized in that: A support mechanism (4) is provided on the surface of the rotating block (303). The support mechanism (4) includes an electric push rod (401) fixedly installed on the surface of the rotating block (303). A support block (402) is fixedly connected to one end of the electric push rod (401).