Lifting adjusting growth light supplementing lamp for plant planting

The inverted structure of the growth light can be adjusted by lifting, which solves the problems of cumbersome installation and inconvenient maintenance of existing plant lights, and realizes efficient lifting and adjusting and spectrum adjustment to meet the lighting needs of different plant growth periods.

CN223335141UActive Publication Date: 2025-09-16HEFEI CHUANGNONG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422609944.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-16
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

The lifting structure of existing plant lights is cumbersome to install, inconvenient to maintain, and difficult to adapt to the height requirements of different growth periods.

Method used

The inverted structure of the growth fill light is used for lifting and adjusting, including LED lights, fixing boxes, winding mechanisms and composite cables. The driving motor drives the lifting cables and cables to rewind synchronously, and the limit hinge and wire holder guide are combined to achieve stable lifting.

Benefits of technology

It simplifies the installation process, improves installation efficiency, enhances maintenance convenience, and can adjust the spectrum according to the growth period of plants to meet the supplementary lighting needs of different plants.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lifting adjusting growth light supplement lamp for plant cultivation, which comprises a hydroponic cultivation frame, and a lifting adjusting lamp is mounted at the upper end in the hydroponic cultivation frame; the lifting adjusting lamp comprises an LED lamp, a fixing box is installed on the upper surface of the LED lamp, limiting hinge frames are connected to the two sides of the fixing box in a clamped mode, a winding mechanism is fixedly installed in the fixing box, a lifting cable is wound in one side of the winding mechanism, and a composite cable is wound in the other side of the winding mechanism. The rolling mechanism is mounted on the upper surface of the LED lamp by adopting an inverted structure, so that the fixed connecting seat can be directly mounted at the upper end of the planting frame during mounting, lifting in the mounting process is reduced compared with a traditional lifting structure, meanwhile, the height is adjusted for lifting when the LED lamp is to be used, and the mounting efficiency is improved. The installation efficiency is greatly improved, and follow-up maintenance of the winding structure is more convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of plant growth lamps, in particular to a lifting and adjusting growth supplementary light for plant planting. Background Art

[0002] A grow light is an artificial light source, usually electric, designed to stimulate plant growth by emitting electromagnetic spectrum suitable for photosynthesis. Grow lights are used in applications where natural light is not available or supplemental light is required.

[0003] Plant growth lights are widely used for lighting purposes in plant cultivation places, etc. They can replace sunlight to provide supplementary light for indoor flowers, greenhouse vegetables, garden nurseries, etc. to promote growth, adjust flowering period, shorten plant growth cycle, etc., and the plant lights currently used are generally fixedly installed on the top of the hydroponic planting rack for fixed use. However, fixed plant lights are difficult to receive when supplementing light for plants at different heights during the growth period. For this reason, after upgrading, adjustable lifting plant lights are now used. However, the lifting structures of the currently used lifting plant lights are fixed inside the upper end of the planting cabinet. Therefore, the lifting structure needs to be lifted and installed on the upper end of the planting rack during installation. Usually, more than two people are required for installation, which makes the installation very cumbersome, and it is also difficult to disassemble and maintain the lifting structure during later maintenance. Utility Model Content

[0004] In response to the problems raised in the above background technology, the present invention proposes the following technical solutions:

[0005] A lifting and adjusting growth supplementary light for plant planting, comprising: a hydroponic planting frame, wherein a lifting and adjusting light is installed on the upper end of the hydroponic planting frame;

[0006] The lifting and adjusting lamp includes an LED lamp, a fixing box is installed on the upper surface of the LED lamp, and limited hinges are clamped on both sides of the fixing box. A winding mechanism is fixedly installed inside the fixing box, and a lifting cable is wound inside one side of the winding mechanism, and a composite cable is wound inside the other side of the winding mechanism;

[0007] The winding mechanism includes a winding box, a closing cover is installed at the upper end of the winding box, tension wire racks are installed on both sides of the winding box, a first winding drum is installed on one side of the interior of the winding box, a first driven winding gear is fixedly connected to the upper end of the first winding drum, a second winding drum is installed on the other side of the interior of the winding box, a second driven winding gear is fixedly connected to the upper end of the second winding drum, a driving motor is installed in the middle of the back end of the winding box, an output end of the driving motor is connected to a driving shaft, and driving gears are provided on both sides of the driving shaft, which are respectively meshed with the first driven winding gear and the second driven winding gear.

[0008] As an improvement of the above technical solution, the fixed box includes a fixed base plate, side panels are installed around the upper end of the fixed base plate, limiting wheel mounting frames are provided on the inner walls of the side panels on both sides, limiting wheels are installed inside the limiting wheel mounting frames, a closing plate is installed on the upper end of the side panel, and limiting hinge contraction grooves are provided on both sides of the side panels on both sides.

[0009] As an improvement of the above technical solution, the limiting hinge includes a scissor-type stabilizing frame, the lower end of the scissor-type stabilizing frame is connected to a limiting sliding pin, the upper end of the scissor-type stabilizing frame is connected to a fixed connecting seat, and the scissor-type stabilizing frame is located on one side of the fixed box and has wire seats installed at both ends.

[0010] As an improvement of the above technical solution, an annular groove is further provided on the surface of the limiting sliding pin, and the limiting sliding pin is clamped in the shrinkage groove of the limiting hinge through the annular groove to slide.

[0011] As an improvement to the above technical solution, a torsion spring is further clamped between the tension wire rack and the winding box.

[0012] As an improvement to the above technical solution, winding grooves are provided on the surfaces of the first winding drum and the second winding drum. The composite cable is passed through the tension wire rack on one side and is wound up by the first winding drum. The lifting cable is passed through the tension wire rack on the other side and is wound up by the two winding drums.

[0013] As an improvement of the above technical solution, the composite cable is clamped to the limiting wheel on one side and passed through the inside of the wire seat on one side, and the lifting cable is clamped to the limiting wheel on the other side and passed through the inside of the wire seat on the other side.

[0014] As an improvement to the above technical solution, the surface of the driving shaft is provided with a tooth groove that meshes with the driving gear, and the driving gear is fixedly installed inside the winding box through a fixed shaft.

[0015] As an improvement to the above technical solution, support shafts are provided on both sides of the interior of the winding box, and the first winding drum and the second winding drum are both plugged into the surface of the support shafts for rotation.

[0016] Beneficial effects of the utility model:

[0017] By adopting an inverted structure to install the winding mechanism on the upper surface of the LED lamp, the fixed connection seat can be directly installed on the upper end of the planting rack during installation. Compared with the traditional lifting structure, the lifting during the installation process is reduced. At the same time, the height can be adjusted and raised when ready for use, which greatly improves the installation efficiency and makes the subsequent maintenance of the winding structure more convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a three-dimensional schematic diagram of the installation of the lifting and adjusting lamp of the utility model;

[0019] Figure 2 This is a three-dimensional schematic diagram of the lifting and adjusting lamp of the utility model;

[0020] Figure 3 This is a disassembled three-dimensional diagram of the lifting and adjusting lamp of the utility model;

[0021] Figure 4 This is a top view of the winding mechanism installed in the fixed box of the utility model;

[0022] Figure 5 This is a disassembled three-dimensional schematic diagram of the winding mechanism of the utility model;

[0023] Figure 6 This is a disassembled top view of the winding mechanism of the present invention.

[0024] Figure numerals: 1. hydroponic planting rack; 2. lifting and adjusting lamp; 21. LED lamp; 22. fixing box; 221. fixed bottom plate; 222. side plate; 223. closing plate; 224. limiting wheel mounting frame; 225. limiting wheel; 226. limiting hinge frame retraction groove; 23. limiting hinge frame; 231. scissors-type stabilizing frame; 232. limiting slide pin; 233. fixed connecting seat; 234. wire seat; 24. winding mechanism; 241. winding box; 242. closing cover; 243. tension wire frame; 244. driving motor; 245. first winding drum; 246. first driven winding gear; 247. second winding drum; 248. second driven winding gear; 249. driving shaft; 2410. driving gear; 25. lifting cable; 26. composite cable. DETAILED DESCRIPTION

[0025] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0026] Example

[0027] A lifting and adjusting growth light for plant cultivation comprises: a hydroponic planting frame 1, wherein a lifting and adjusting light 2 is installed on the upper end of the hydroponic planting frame 1;

[0028] The lifting and adjusting lamp 2 includes an LED lamp 21. A fixing box 22 is mounted on the upper surface of the LED lamp 21. A limited hinge 23 is clamped on both sides of the fixing box 22. A winding mechanism 24 is fixedly mounted inside the fixing box 22. A lifting cable 25 is wound inside one side of the winding mechanism 24, and a composite cable 26 is wound inside the other side of the winding mechanism 24.

[0029] The winding mechanism 24 is enclosed by a fixed box 22, which can prevent external objects from entering the interior and causing damage during use, thereby improving the safety of the device. At the same time, the lifting cable 25 and the composite cable 26 are synchronously wound for lifting work, and the composite cable 26 is a cable with an internal cable, which can enhance the overall strength while achieving power transmission, so that the cable will not be damaged by tension during winding. The installation of a limit hinge 23 on one side of the fixed box 22 can make it more stable during lifting and avoid shaking. The LED lamp 21 used is a fill light whose spectrum can be adjusted according to different plants planted, meeting the growth needs of different plants.

[0030] The fixed box 22 includes a fixed bottom plate 221, and side plates 222 are installed around the upper end of the fixed bottom plate 221. The inner walls of the side plates 222 on both sides are provided with limit wheel mounting brackets 224, and limit wheels 225 are installed inside the limit wheel mounting brackets 224. A closing plate 223 is installed on the upper end of the side plate 222, and limit hinge contraction grooves 226 are provided on both sides of the side plates 222.

[0031] The fixed base plate 221 can be connected and fixed to the LED lamp 21 to ensure tightness after installation and avoid falling and damage during use. At the same time, by installing side panels 222 around the upper end and cooperating with the closing plate 223 at the upper end, a box body can be formed to protect the internal winding mechanism 24 and avoid external structures entering the interior and causing damage. By arranging limiting wheel mounting frames 224 on both sides of the interior and the limiting wheels 225 installed internally, the lifting cable 25 and the composite cable 26 can be guided to improve stability during the winding process.

[0032] The limit hinge frame 23 includes a scissor-type stabilizing frame 231, the lower end of the scissor-type stabilizing frame 231 is connected to a limit sliding pin 232, the upper end of the scissor-type stabilizing frame 231 is connected to a fixed connecting seat 233, and the upper and lower ends of the scissor-type stabilizing frame 231 on one side of the fixed box 22 are both installed with wire holders 234;

[0033] The scissor-type stabilizer frame 231 can be retracted and stabilized during the lifting process to avoid large-scale shaking during the lifting process and damage to the planted plants. The limiting slide pin 232 connected at the lower end can slide during retraction, so that the whole structure can be retracted to the smallest size. The fixed connecting seat 233 set at the upper end can be more convenient to install and fix, which improves the efficiency of installation. By installing the wire seat 234 on the inside, the lifting cable 25 and the composite cable 26 can be limited and guided during the winding process to avoid wear on the plants or other internal items due to offset.

[0034] In order to ensure that it can be retracted to the minimum and maximum positions during the lifting process, an annular groove is also provided on the surface of the limiting slide pin 232. At the same time, the limiting slide pin 232 is connected to the inside of the limiting hinge retraction groove 226 through the annular groove and slides to avoid falling off during the retraction process and improve the stability of the retraction.

[0035] The winding mechanism 24 includes a winding box 241, a closing cover 242 is installed on the upper end of the winding box 241, tension wire racks 243 are installed on both sides of the winding box 241, a first winding drum 245 is installed on one side of the winding box 241, the upper end of the first winding drum 245 is fixedly connected to a first driven winding gear 246, a second winding drum 247 is installed on the other side of the winding box 241, the upper end of the second winding drum 247 is fixedly connected to a second driven winding gear 248, a driving motor 244 is installed in the middle of the back end of the winding box 241, the output end of the driving motor 244 is connected to a driving shaft 249, and both sides of the driving shaft 249 are provided with driving gears 2410 that mesh with the first driven winding gear 246 and the second driven winding gear 248 respectively;

[0036] The winding box 241 is used in conjunction with the closing cover 242 to close the overall structure of the winding mechanism 24, thereby preventing it from being affected by external structures. At the same time, it can also ensure the stability of the winding and lifting. Through the tension wire racks 243 installed on both sides, and a torsion spring is clamped between the tension wire racks 243 and the winding box 241, the lifting cable 25 and the composite cable 26 can be abutted when winding, so that the lifting cable 25 and the composite cable 26 can have tension when they are wound inside, thereby preventing the cables from being entangled due to looseness. At the same time, the driving motor 244 is used to drive the driving shaft 249, and since the driving shaft 249 has a tooth groove on its surface, the tooth groove and the driving gear 2410 are meshed with each other, and the driving gear 2410 is fixedly installed inside the winding box 241 through a fixed shaft, so that shaking and falling off can be avoided during driving work. The other side of the driving gear 2410 is connected to a winding drum 245 and a second The winding drum 247 is meshed so that after being driven, it can drive the first driven winding gear 246 and the second driven winding gear 248 to rotate, so that the first winding drum 245 and the second winding drum 247 can rotate during the lifting process. In order to be able to reel in the lifting cable 25 and the composite cable 26 during the lifting process, the first winding drum 245 and the second winding drum 247 are provided with winding grooves on the surfaces of the lifting cable 25 and the composite cable 26 to be clamped inside for reeling, so as to avoid damage to the surface of the reel box 241 caused by excessive winding at the same position during the reeling process, effectively protecting the integrity of the lifting cable 25 and the composite cable 26, and further improving the overall service life. The composite cable 26 is passed through the tension wire rack 243 on one side and is reeled by the first winding drum 245. The lifting cable 25 is passed through the tension wire rack 243 on the other side and is reeled by the two reel drums 247.

[0037] In order to ensure greater stability during the winding process and avoid contact friction between the first winding drum 245 and the second winding drum 247 and the inner wall of the winding box 241, support shafts are provided on both sides of the winding box 241, and the first winding drum 245 and the second winding drum 247 are both inserted into the surface of the support shaft for rotation, so as to fix the first winding drum 245 and the second winding drum 247 and improve stability during rotation.

[0038] As an improvement of the above technical solution, the composite cable 26 is clamped to the limiting wheel 225 on one side and passed through the inside of the wire seat 234 on one side, and the lifting cable 25 is clamped to the limiting wheel 225 on the other side and passed through the inside of the wire seat 234 on the other side, so that it can be guided to the winding box 241 for winding during the winding process, avoiding damage caused by friction with the internal structure during the winding process, and avoiding wear of the cable, thereby further improving the overall stability.

[0039] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.

Claims

1. Lift-adjustable grow light for plant cultivation, including: A hydroponic planting rack (1), characterized in that a lifting and adjusting lamp (2) is installed at the upper end of the hydroponic planting rack (1); The lifting and adjusting lamp (2) comprises an LED lamp (21), a fixing box (22) is installed on the upper surface of the LED lamp (21), both sides of the fixing box (22) are clamped with limited hinges (23), a winding mechanism (24) is fixedly installed inside the fixing box (22), a lifting cable (25) is wound inside one side of the winding mechanism (24), and a composite cable (26) is wound inside the other side of the winding mechanism (24); The winding mechanism (24) includes a winding box (241), a closing cover (242) is installed on the upper end of the winding box (241), tension wire racks (243) are installed on both sides of the winding box (241), a first winding drum (245) is installed on one side of the winding box (241), a first driven winding gear (246) is fixedly connected to the upper end of the first winding drum (245), and a second winding drum is installed on the other side of the winding box (241). (247), the upper end of the second winding drum (247) is fixedly connected to the second driven winding gear (248), a driving motor (244) is installed in the middle of the back end of the winding box (241), the output end of the driving motor (244) is connected to the driving shaft (249), and both sides of the driving shaft (249) are provided with driving gears (2410) that are respectively engaged with the first driven winding gear (246) and the second driven winding gear (248).

2. The lift-adjustable grow light for plant cultivation according to claim 1, characterized in that: The fixed box (22) comprises a fixed bottom plate (221), side plates (222) are installed around the upper end of the fixed bottom plate (221), and the inner walls of the side plates (222) on both sides are provided with limit wheel mounting frames (224), and the limit wheels (225) are installed inside the limit wheel mounting frames (224). A closing plate (223) is installed on the upper end of the side plates (222), and limit hinge contraction grooves (226) are provided on both sides of the side plates (222).

3. The lift-adjustable grow light for plant cultivation according to claim 1, characterized in that: The position-limiting hinge frame (23) comprises a scissor-type stabilizing frame (231), the lower end of the scissor-type stabilizing frame (231) is connected to a position-limiting sliding pin (232), the upper end of the scissor-type stabilizing frame (231) is connected to a fixed connecting seat (233), and the upper and lower ends of the scissor-type stabilizing frame (231) on one side of the fixed box (22) are both equipped with a wire seat (234).

4. The lift-adjustable grow light for plant cultivation according to claim 3, characterized in that: An annular clamping groove is also provided on the surface of the limiting sliding pin (232), and the limiting sliding pin (232) is clamped in the interior of the limiting hinge contraction groove (226) through the annular clamping groove to slide.

5. The lift-adjustable grow light for plant cultivation according to claim 1, characterized in that: A torsion spring is also clamped between the tension wire frame (243) and the winding box (241).

6. The lift-adjustable grow light for plant cultivation according to claim 1, characterized in that: The surfaces of the first winding drum (245) and the second winding drum (247) are both provided with winding grooves. The composite cable (26) is passed through the tension wire rack (243) on one side and is wound through the first winding drum (245). The lifting cable (25) is passed through the tension wire rack (243) on the other side and is wound through the second winding drum (247).

7. The lift-adjustable grow light for plant cultivation according to claim 1, characterized in that: The composite cable (26) is clamped to the limiting wheel (225) on one side and is passed through the inside of the wire seat (234) on one side. The lifting cable (25) is clamped to the limiting wheel (225) on the other side and is passed through the inside of the wire seat (234) on the other side.

8. The lift-adjustable grow light for plant cultivation according to claim 1, characterized in that: The surface of the driving shaft (249) is provided with a tooth groove that meshes with the driving gear (2410), and the driving gear (2410) is fixedly installed inside the winding box (241) via a fixed shaft.

9. The plant cultivation lift-adjustable growth light according to claim 1, characterized in that: Support shafts are provided on both sides of the interior of the winding box (241), and the first winding drum (245) and the second winding drum (247) are both plugged into the surface of the support shafts for rotation.