High-yield planting and cultivating device for cubilose fruits
By installing longitudinal moving troughs and supplemental lighting components in the bird's nest fruit cultivation device, the problem of insufficient light for the bottom branches was solved, thereby improving the yield and quality of the bird's nest fruit.
Patent Information
- Application Number
- CN202520362365.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-04
AI Technical Summary
Insufficient sunlight on the lower branches of the bird's nest fruit leads to low photosynthetic efficiency, affecting nutrient accumulation and flower bud differentiation, which in turn results in a decline in fruit quality.
Design a multi-yield cultivation device for bird's nest fruit. By setting longitudinal moving grooves and fixing holes on the support rod, a support frame is slidably connected and equipped with a supplementary lighting assembly. The rotation of multiple lever arms allows the supplementary lights to adjust their angle and position, ensuring that the bottom branches receive sufficient light.
It improves the yield and quality of bird's nest fruit, ensures that the lower branches receive sufficient sunlight, and enhances the size, sweetness, and appearance of the fruit.
Smart Images

Figure CN223786724U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bird's nest fruit cultivation technology, specifically a multi-yield bird's nest fruit cultivation device. Background Technology
[0002] Dragon fruit, also known as unicorn fruit or yellow dragon fruit, is a nutritious fruit with unique functions. It is light yellow in color with a smooth skin, soft and juicy flesh, and a sweet taste. The seeds in the flesh are large and soft, and do not interfere with the taste. However, the fruit is relatively small. It has the effects of preventing constipation, promoting eye health, increasing bone density, helping cell membrane formation, preventing anemia and fighting neuritis and angular cheilitis, lowering cholesterol, and whitening the skin and preventing dark spots.
[0003] The cultivation of bird's nest fruit is related to a variety of factors. It requires a warm and humid climate with a large temperature difference between day and night. The soil should ideally be loose, fertile, and well-drained sandy loam. It also needs ample sunlight, requiring at least 6 hours of direct sunlight daily. As the branches of the bird's nest fruit grow, they naturally droop downwards, especially when there are many branches and they are growing vigorously. The upper branches often cover the lower branches, preventing them from receiving sufficient sunlight. Insufficient sunlight directly affects the photosynthetic efficiency of the lower branches, thus affecting nutrient accumulation and flower bud differentiation. Ultimately, this leads to a decline in the quality of the bird's nest fruit produced from these branches, manifesting as smaller fruit, insufficient sweetness, or poor appearance and color. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a multi-yield cultivation device for bird's nest fruit, which solves the problem of insufficient sunlight for the bottom branches.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a multi-yield cultivation device for bird's nest fruit, comprising support rods, soil nails on the bottom surface of the support rods, two support rods symmetrically arranged, a longitudinal moving groove penetrating through the middle of the support rods, fixing holes evenly provided on the support rods on both sides of the longitudinal moving groove, a support frame slidably connected in the longitudinal moving groove between the support rods, support holes with the same diameter as the fixing holes being provided at both ends of the support frame, the fixing holes and support holes being fixedly connected by long bolts and fixing nuts, and a supplementary lighting assembly slidably connected in the moving groove on the support frame.
[0006] Furthermore, the supplementary lighting assembly includes a fixed plate slidably connected in the movable groove. The fixed plate has a limiting hole with the same diameter as the long rod bolt. The fixed plate has a first rotating arm that rotates around a horizontal axis at its end. The first rotating arm has a second rotating arm that rotates around a vertical axis at its end. The second rotating arm has a third rotating arm that rotates around a front-rear axis at its end. The third rotating arm has a placement block that rotates around a front-rear axis at its end. The placement block has a supplementary lighting lamp at its end.
[0007] Furthermore, a ball head is provided at the end of the placement block, and a rotation groove for the ball head to rotate is provided on the bottom surface of the supplementary light.
[0008] Furthermore, multiple lateral support plates are evenly arranged on both the front and rear sides of the support rod, and the spacing between adjacent lateral support plates corresponds to the spacing between adjacent fixing holes. The lateral support plates are arranged between the fixing holes.
[0009] Furthermore, a ground support plate is installed between the support rod and the soil nail, and a fixing ring is installed at each corner of the ground support plate at an angle, with an inclined auxiliary support nail installed inside the fixing ring.
[0010] Furthermore, a storage rod is provided on the top surface of the support rod. The storage rod has a bolt storage groove for placing long bolts and a nut storage groove for placing fixing nuts. A cover plate is provided on the top surface of the storage rod.
[0011] Furthermore, eight support holes are evenly distributed at both the front and rear ends of the support frame.
[0012] Compared with the prior art, the present invention has the following beneficial effects:
[0013] By creating longitudinal moving grooves and evenly spaced fixing holes on the support rods, the support frame can slide within these grooves. Secured by long bolts and fixing nuts, the frame can support branches at different heights and extend outwards, ensuring that even the lower branches receive sunlight, thus improving the yield and quality of the bird's nest fruit. Furthermore, by installing supplemental lighting components within the longitudinal moving grooves, the rotation of multiple lever arms allows the supplemental lights to illuminate the branches when sunlight is insufficient, ensuring ample light, especially for the lower branches. This allows even the lower branches to produce high-quality bird's nest fruit. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the entire utility model;
[0015] Figure 2 This is a three-dimensional structural diagram of the support rod after disassembly.
[0016] Figure 3 This is a three-dimensional structural diagram of the supplementary lighting assembly of this utility model;
[0017] Figure 4 This is a three-dimensional structural diagram of the disassembled ground support plate of this utility model;
[0018] Figure 5 This is a three-dimensional structural diagram of the disassembled storage rod of this utility model.
[0019] In the diagram: 1. Support rod; 101. Longitudinal moving groove; 102. Fixing hole; 103. Support frame; 104. Support hole; 105. Long rod bolt; 106. Fixing nut; 107. Lateral support plate; 2. Soil nail; 3. Supplemental lighting assembly; 301. Fixing plate; 302. Limiting hole; 303. First rotating arm; 304. Second rotating arm; 305. Third rotating arm; 306. Placement block; 307. Supplemental light; 308. Spherical hinge joint; 309. Rotating groove; 4. Ground support plate; 401. Fixing ring; 402. Auxiliary support nail; 5. Storage rod; 501. Bolt storage groove; 502. Nut storage groove; 503. Cover plate. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0021] like Figures 1 to 5 As shown, a multi-yield cultivation device for bird's nest fruit includes a support rod 1, with soil nails 2 on the bottom surface of the support rod 1. Two support rods 1 are symmetrically arranged. A longitudinal moving groove 101 is opened through the middle of the support rod 1. Fixing holes 102 are evenly opened on both sides of the support rod 1 perpendicular to the longitudinal moving groove 101. A support frame 103 is provided between the support rods 1 and slidably connected in the longitudinal moving groove 101. Support holes 104 with the same diameter as the fixing holes 102 are opened at both ends of the support frame 103. The fixing holes 102 and the support holes 104 are fixedly connected by long bolts 105 and fixing nuts 106. A supplementary lighting assembly 3 is slidably connected in the longitudinal moving groove 101 on the support rod 1.
[0022] like Figure 1 As shown, the main improvement of this utility model lies in solving the problem of insufficient light for the bottom branches, such as... Figures 1 to 5As shown, the multi-yield cultivation device for bird's nest fruit of this utility model, when in use, first select a suitable position for the support rod 1 according to the branches to be supported, then insert the support rod 1 into the soil, and the soil nail 2 on the bottom of the support rod 1 will penetrate deep into the soil. At this time, take out the auxiliary support nail 402 and drive it into the soil from the fixing ring 401, so that the auxiliary support nail 402 provides auxiliary support for the ground support plate 4 and the support rod 1, enhancing the overall stability of the structure; then, according to the height of the branches, slide the support frame 103 into the longitudinal moving groove 101 of a suitable height, and let the long bolt 105 pass through the fixing hole 102 and the support hole 104, and then use the fixing nut 106 to fix the support frame 103. The branches are placed on the support frame 103 to support them. Then, the fixing plate 301 is slid laterally into the longitudinal moving groove 101 above the support frame 103. The fixing plate 301 is fixed to the support rod 1 with long bolts 105 and fixing nuts 106. Then, the first rotating arm 303, the second rotating arm 304 and the third rotating arm 305 are rotated to move the supplementary light 307 at the end of the placement block 306 in multiple directions. The angle of the supplementary light 307 is adjusted by the spherical hinge joint 308 so that the supplementary light 307 can be aligned with the branches supported on the support frame 103, thereby providing supplementary lighting to the branches and ensuring sufficient light during the growth of the bird's nest fruit.
[0023] like Figure 1 and Figure 3 As shown, the supplementary lighting assembly 3 includes a fixed plate 301 slidably connected in the longitudinal moving groove 101. The fixed plate 301 has a limiting hole 302 with the same diameter as the long rod bolt 105. The fixed plate 301 has a first rotating arm 303 that rotates around a horizontal axis at its end. The first rotating arm 303 has a second rotating arm 304 that rotates around a vertical axis at its end. The second rotating arm 304 has a third rotating arm 305 that rotates around a front-rear axis at its end. The third rotating arm 305 has a placement block 306 that rotates around a front-rear axis at its end. The placement block 306 has a supplementary lighting lamp 307 at its end.
[0024] Specifically, after selecting a suitable height, the fixing plate 301 is slid laterally into the longitudinal moving groove 101, and with the cooperation of the limiting hole 302 and the fixing hole 102, the fixing plate 301 will be fixed on the support rod 1. At this time, rotating the first rotating arm 303, the second rotating arm 304 and the third rotating arm 305 can move the supplementary light 307 at the end of the placement block 306 in multiple directions, so that the supplementary light 307 can be aligned with the branches supported on the support frame 103, thereby achieving supplementary lighting for the branches and ensuring sufficient light during the growth of the bird's nest fruit.
[0025] like Figure 3As shown, a spherical hinge joint 308 is provided at the end of the placement block 306, and a rotating groove 309 for the spherical hinge joint 308 to rotate is provided on the bottom surface of the supplementary light 307. The spherical hinge joint 308 and the rotating groove 309 constitute a universal adjustment mechanism.
[0026] Specifically, by setting a spherical hinge joint 308 for rotation, the fill light 307 at the end of the placement block 306 can be adjusted in all directions, thereby expanding the fill light range of the fill light 307.
[0027] like Figure 1 and Figure 2 As shown, multiple lateral support plates 107 are evenly arranged on the front and rear sides of the support rod 1. The spacing between adjacent lateral support plates 107 corresponds to the spacing between adjacent fixing holes 102. The lateral support plates 107 are arranged between the fixing holes 102.
[0028] Specifically, in order to make the support frame 103 more securely placed in the longitudinal moving groove 101, a lateral support plate 107 is provided to provide horizontal support force when the support frame 103 is fixed. At the same time, the lateral support plate can set the support frame 103 when needed. Two support frames 103 can be placed by symmetrically arranged lateral support plates 107, and they are fixedly connected by long bolts 105 and fixing nuts 106, thereby realizing the support of multiple support frames 103.
[0029] like Figure 1 and Figure 4 As shown, a ground support plate 4 is provided between the support rod 1 and the soil nail 2. Each corner of the ground support plate 4 is provided with a fixing ring 401 at an angle, and an inclined auxiliary support nail 402 is provided inside the fixing ring 401.
[0030] Specifically, by setting up the ground support plate 4, the support rod 1 can be more firmly fixed on the ground. Similarly, by setting up the inclined fixing ring 401, after the soil nail 2 is inserted into the soil, the auxiliary support nail 402 is also driven into the soil along the fixing ring 401. At this time, the inclined outward auxiliary support nail 402 will provide auxiliary support for the ground support plate 4 and the support rod 1, thereby enhancing the overall stability of the structure.
[0031] like Figure 5 As shown, the top surface of the support rod 1 is provided with a storage rod 5. The storage rod 5 has a bolt storage groove 501 for placing the long rod bolt 105 and a nut storage groove 502 for placing the fixing nut 106. The top surface of the storage rod 5 is provided with a cover plate 503.
[0032] Specifically, by setting up the storage rod 5 and opening the bolt storage slot 501 and nut storage slot 502, excess or unused long bolts 105 and fixing nuts 106 can be stored in the support rod 1, making it convenient for staff to access and store them, and ensuring that the parts will not be lost or damaged due to separate storage; at the same time, by setting up the cover plate 503, the long bolts 105 and fixing nuts 106 can be sealed and protected to prevent them from being corroded by rainwater and air.
[0033] like Figure 2 As shown, eight support holes 104 are evenly provided along the length direction at both the front and rear ends of the support frame 103.
[0034] Specifically, by setting multiple evenly spaced support holes 104, staff can easily adjust the distance between support rods 1 according to their needs, thereby providing better support for the branches.
[0035] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A kind of Acrocomia aculeata multi-species planting cultivation device, including support rod (1), the bottom surface of support rod (1) is provided with soil nail (2), it is characterized by, Two support rods (1) are symmetrically arranged, a longitudinal moving groove (101) is arranged through the middle of the support rod (1), a plurality of fixing holes (102) are uniformly arranged on the two sides of the support rod (1) which are perpendicular to the longitudinal moving groove (101), a support frame (103) is arranged between the support rods (1) and is slidably connected in the longitudinal moving groove (101), support holes (104) with the same diameter as the fixing holes (102) are arranged at the two ends of the support frame (103), the fixing holes (102) and the support holes (104) are fixedly connected through long rod bolts (105) and fixing nuts (106), and a light supplement assembly (3) is slidably connected in the longitudinal moving groove (101) of the support rod (1).
2. The device according to claim 1, wherein the device is characterized by: The light supplement assembly (3) comprises a fixed plate (301) which is slidably connected in the longitudinal moving groove (101), the fixed plate (301) is provided with a limiting hole (302) with the same diameter as the long rod bolt (105), a first rotating arm (303) which rotates around a horizontal axis is arranged at the end of the fixed plate (301), a second rotating arm (304) which rotates around a vertical axis is arranged at the end of the first rotating arm (303), a third rotating arm (305) which rotates around a front-back axis is arranged at the end of the second rotating arm (304), a placing block (306) which rotates around a front-back axis is arranged at the end of the third rotating arm (305), and a light supplement lamp (307) is arranged at the end of the placing block (306).
3. The device according to claim 2, wherein the device is characterized by: A spherical hinge joint (308) is arranged at the end of the placing block (306), a rotating groove (309) for the rotation of the spherical hinge joint (308) is arranged on the bottom surface of the light supplement lamp (307), and the spherical hinge joint (308) and the rotating groove (309) form a universal adjusting mechanism.
4. The device according to claim 2, wherein the device is characterized by: A plurality of lateral support plates (107) are uniformly arranged on the front and back sides of the support rod (1), the distance between adjacent lateral support plates (107) corresponds to the distance between adjacent fixing holes (102), and the lateral support plates (107) are arranged between the fixing holes (102).
5. The device according to claim 1, wherein the device is characterized by: A ground support plate (4) is arranged between the support rod (1) and the soil nail (2), and a fixing ring (401) is arranged at each inclined corner of the ground support plate (4), and an auxiliary support nail (402) is arranged in the fixing ring (401).
6. The device according to claim 1, wherein the device is characterized by: A receiving rod (5) is arranged on the top surface of the support rod (1), the receiving rod (5) is provided with a bolt receiving groove (501) for placing the long rod bolt (105) and a nut receiving groove (502) for placing the fixing nut (106), and a cover plate (503) is arranged on the top surface of the receiving rod (5).
7. The device according to claim 1, wherein the device is characterized by: Eight support holes (104) are uniformly arranged on the front and back ends of the support frame (103) along the length direction.