Photovoltaic tea garden shed frame integrated cultivation equipment
By designing integrated cultivation equipment for photovoltaic tea garden sheds, the movable components and ejection components are used to solve the problem of difficult care for tea seedlings and low transplant survival rate, and the flexible adjustment and stable fixation of the placement seats, and the effect of complete ejection of the soil is achieved.
Patent Information
- Application Number
- CN202421468446.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-06-26
AI Technical Summary
The design of the existing photovoltaic tea garden makes it difficult to take care of tea seedlings, and the mounting frame covers a large area, which affects the health of the tea seedlings. The soil is fragile during transplanting, which affects the survival rate.
A photovoltaic tea garden trench integrated cultivation equipment is designed, using a semicircular annular structure of the trench body and movable components, adjust the position of the placement seat through the movable components, and completely eject the soil and tea seedlings using the ejection component.
The flexible adjustment and stable fixation of the placement seat are achieved to ensure the stable growth of tea seedlings, and the survival rate of transplanting is improved by fully ejecting the soil and reducing the area.
Smart Images

Figure CN222840167U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of tea tree planting, in particular to photovoltaic tea garden shed integrated cultivation equipment. Background Art
[0002] With the development of science and technology, many devices are used in the existing tea tree planting. For example, the existing photovoltaic tea garden can use solar energy to assist the cultivation of tea seedlings, which can make the cultivation of tea seedlings more environmentally friendly and reduce the cost of tea seedling cultivation. However, most of the existing photovoltaic tea gardens use cultivation racks to place culture pots for tea seedlings. However, this will cause the tea seedlings in the upper culture pots to be difficult to care for because they are high above the ground. In addition, when the cultivation rack is used to carry the culture pots or incubators, the carrying rack occupies a large area, and in the daily care of the young tea seedlings, the culture pots inside need to be frequently taken and placed. The taking and placing back and forth will cause the culture pots to shake back and forth, and the rhizomes of the tea seedlings are relatively fragile, which will have a negative impact on the rhizomes of the tea seedlings.
[0003] In order to address the above-mentioned problems, the national publication number CN219019697U discloses an "integrated trellis photovoltaic tea garden cultivation facility". The electric telescopic rod can adjust the distance between the cultivation box and the ground, making it suitable for gardeners of different heights. At the same time, when no care is needed, the cultivation box can be lifted away from the ground to prevent the ground environment from interfering with the cultivation process of young tea seedlings. The trellis body, photovoltaic frame, electric telescopic rod and cultivation box are used to improve the utilization rate of space resources and reduce the floor space. There is no need to take and place the cultivation box. The cultivation box needs to be adjusted only when the tea seedlings reach the soil planting conditions. However, the device still has certain defects when it is actually used. For example, although the device can adjust the position of the cultivation box by the cooperation of the sliding groove and the sliding rod, when the sliding rod needs to be moved, it is necessary to manually loosen the limit sleeves at one end of the two sliding rods. However, the limit sleeves are located at a high height, which is inconvenient to loosen the limit sleeves. In addition, the cultivation box of the device uses two halves of the cultivation box and puts them together to form a complete cultivation box. When the two halves of the cultivation box are separated and the soil inside and the tea seedlings are transplanted, the soil easily sticks to the inner wall of the cultivation box, resulting in the separation of the two halves of the cultivation box. The soil inside will be broken, resulting in the inability to completely transplant the soil with the tea seedlings to the planting site, thereby affecting the transplant survival rate of the tea seedlings. Utility Model Content
[0004] The utility model aims to solve the shortcomings of the background technology and provide photovoltaic tea garden trellis integrated cultivation equipment. The use position of the placement seat can be flexibly adjusted and fixed through the movable component, and the soil in the cultivation tank can be completely ejected through the ejection component.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a photovoltaic tea garden trellis integrated cultivation equipment, comprising: a trellis body with a semicircular ring structure, a horizontal block installed inside the trellis body, three cylindrical placement seats are arranged at the bottom of the horizontal block, a cylindrical placement hole is opened on the top of the placement seat, a cultivation pot is arranged inside the placement hole, an ejection assembly is arranged inside the cultivation pot to facilitate ejecting the soil and tea seedlings inside the cultivation pot, and a movable assembly is arranged between the placement seat and the horizontal block to facilitate adjusting the position of the placement seat.
[0006] Furthermore, the ejection assembly includes: a cylindrical cultivation groove opened on the top of the cultivation tank, an ejection block arranged inside the cultivation groove, a rotating rod connected to the bottom of the ejection block, an opening opened at the bottom of the placement seat and connected to the cultivation groove, horizontal plates are connected on both sides of the outer end of the placement seat, scrapers are connected on both sides of the top of the ejection block, a threaded hole threadedly connected to the rotating rod is opened at the bottom of the cultivation tank, and lifting blocks are connected on both sides of the outer end of the cultivation tank.
[0007] Furthermore, the movable component includes: an movable cavity opened inside the transverse block, a slide groove opened at the bottom of the transverse block and connected to the movable cavity, three movable blocks arranged inside the movable cavity, a slider connected to the bottom of the movable block and slidably connected to the slide groove, a through groove opened on one side of the outer end of the movable block, a lifting plate opened inside the through groove, magnet blocks connected on both sides of the bottom of the lifting plate, two metal blocks magnetically attracted to the magnet blocks installed on one side of the inner wall of the movable cavity, a lifting rod connected to the bottom of the lifting plate, a side rod connected on one side of the outer end of the lifting rod, an opening opened on one side of the inner wall of the through groove, three connecting plates arranged at the bottom of the transverse block, the bottoms of the three sliding blocks are respectively connected to the three connecting plates, electric telescopic rods are installed on both sides of the bottom of the connecting plate, a through groove is opened on the top of the connecting plate, a slot is opened on the top of the sliding block, a storage box is installed on the top of the transverse block, a battery is installed inside the storage box, and a lighting lamp is installed between the two electric telescopic rods.
[0008] Furthermore, a groove is provided on the outer side of the shelf body, and a photovoltaic panel is installed inside the groove.
[0009] The advantage of the utility model is that the position of the placement seat can be easily adjusted through the movable component, and the placement seat can be easily fixed after the position is adjusted through the magnet block and the metal block, thereby ensuring the stability of the placement seat, and the soil in the cultivation trough can be completely pushed out along with the tea seedlings through the ejection component, thereby enhancing the transplant survival rate of the tea seedlings. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1It is a schematic diagram of the overall structure of the utility model.
[0011] Figure 2 It is a sectional view of the overall structure of the utility model.
[0012] Figure 3 It is a cross-sectional view of the placement seat structure of the utility model.
[0013] Figure 4 This is a schematic diagram of the structure of the cultivation tank of the present utility model.
[0014] Figure 5 It is a schematic diagram of the ejector block structure of the utility model.
[0015] Figure 6 It is a side cross-sectional view of the transverse block structure of the utility model.
[0016] Figure 7 This is a schematic diagram of the lifting plate structure of the utility model
[0017] Figure 8 This is a schematic diagram of the structure of the movable block of the utility model
[0018] Figure 1-8 In: 1- scaffolding body; 101- horizontal block; 102- placement seat; 103- placement hole; 104- cultivation tank; 2- cultivation tank; 201- ejector block; 202- rotating rod; 203- opening hole; 204- horizontal plate; 3- scraper; 301- lifting block; 4- movable cavity; 401- slide groove; 4011- movable block; 402- slider; 5- through groove; 501- lifting plate; 502- magnet block; 503- metal block; 504- lifting rod; 505- side rod; 6- connecting plate; 601- electric telescopic rod; 7- storage box; 701- battery; 702- lighting lamp; 8- groove; 801- photovoltaic panel. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.
[0020] The embodiment of the present application provides a photovoltaic tea garden trellis integrated cultivation device, which can realize the convenient adjustment of the position of the placement seat through the movable component, and the convenient fixation of the placement seat after the adjustment position through the magnet block and the metal block, thereby ensuring the stability of the placement seat, and the soil in the cultivation tank can be completely ejected along with the tea seedlings through the ejection component, thereby enhancing the transplant survival rate of the tea seedlings. It should be noted that the description order of the following embodiments is not intended to limit the preferred order of the embodiments.
[0021] The present application is described in detail below with reference to the accompanying drawings and specific implementation methods. Embodiment 1:
[0022] See also Figure 1-8 In this embodiment, a photovoltaic tea garden trellis integrated cultivation equipment is provided, including: a trellis body 1 with a semicircular ring structure, a horizontal block 101 installed inside the trellis body 1, three cylindrical placement seats 102 are arranged at the bottom of the horizontal block 101, and a cylindrical placement hole 103 is opened on the top of the placement seat 102. A cultivation tank 104 is arranged inside the placement hole 103, and an ejection component is arranged inside the cultivation tank 104 to facilitate ejecting the soil and tea seedlings inside the cultivation tank 104. A movable component is arranged between the placement seat 102 and the horizontal block 101 to facilitate adjusting the position of the placement seat 102.
[0023] In this embodiment, the position of the placement seat 102 is conveniently adjusted through the movable component, and the placement seat 102 after the adjustment is conveniently fixed through the magnet block 502 and the metal block 503, thereby ensuring the stability of the placement seat 102, and the soil in the cultivation trough 2 can be completely pushed out along with the tea seedlings through the ejection component, thereby enhancing the transplant survival rate of the tea seedlings.
[0024] Among them, the ejection component includes: a cylindrical cultivation groove 2 opened at the top of the cultivation pot 104, an ejection block 201 arranged inside the cultivation groove 2, a rotating rod 202 connected to the bottom of the ejection block 201, an opening 203 connected to the cultivation groove 2 is opened at the bottom of the placement seat 102, and both sides of the outer end of the placement seat 102 are connected with horizontal plates 204. When the device is used, soil is filled into the cultivation groove 2, and tea seedlings are planted in the soil in the cultivation groove 2, and then the cultivation pot 104 is placed in the placement hole 103. When the soil and tea seedlings in the cultivation groove 2 need to be removed for transplanting, the rotating rod 202 can be threadedly rotated in the threaded hole, so that the rotating rod 202 can drive the ejection block 201 to rotate and lift, and the soil in the cultivation groove 2 can be ejected as a whole, thereby facilitating the transplanting of the tea seedlings, wherein the opening 203 is used to ensure that the bottom end of the rotating rod 202 can protrude from the bottom of the placement seat 102.
[0025] Among them, scrapers 3 are connected to both sides of the top of the ejection block 201, and a threaded hole threadedly connected to the rotating rod 202 is opened at the bottom of the cultivation tank 104. Lifting blocks 301 are connected to both sides of the outer end of the cultivation tank 104. When the ejection block 201 rotates and rises and falls, it will drive the scraper 3 to rotate on the inner wall of the cultivation tank 2, so that the scraper 3 can separate the soil in the cultivation tank 2 from the inner wall of the cultivation tank 2, thereby facilitating the ejection of the soil in the cultivation tank 2 as a whole, and the lifting block 301 facilitates the cultivation tank 104 to be lifted out of the placement hole 103. Embodiment 2:
[0026] Among them, the movable component includes: an movable cavity 4 opened inside the horizontal block 101, a slide groove 401 opened at the bottom of the horizontal block 101 and connected to the movable cavity 4, three movable blocks 4011 arranged inside the movable cavity 4, and a slider 402 connected to the bottom of the movable block 4011 and slidably connected to the slide groove 401. When it is necessary to adjust the position of the placement seat 102, the lifting rod 504 and the lifting plate 501 are lifted up by applying force upward to the side rod 505, and the lifting plate 501 drives the magnet block 502 to separate from the metal block 503. At this time, the placement seat 102 can be pushed so that the placement seat 102 can slide in the movable cavity 4 through the movable block 4011. Through this method, it is convenient to flexibly adjust the positions of the three placement seats 102 separately, wherein the slider 402 is used to connect the movable block 4011 and the connecting plate 6, and its slide groove 401 is used to ensure the sliding of the slider 402.
[0027] Among them, a through groove 5 is opened on one side of the outer end of the movable block 4011, and a lifting plate 501 is arranged inside the through groove 5. Magnet blocks 502 are connected to both sides of the bottom of the lifting plate 501, and two metal blocks 503 magnetically attracted to the magnet block 502 are installed on one side of the inner wall of the movable cavity 4. A lifting rod 504 is connected to the bottom of the lifting plate 501, and a side rod 505 is connected to one side of the outer end of the lifting rod 504. An opening is opened on one side of the inner wall of the through groove 5. After the placement seat 102 is moved to a suitable position, the side rod 505 is no longer forced upward, so that the lifting plate 501 and the magnet block 502 move downward by their own gravity until the bottom of the magnet block 502 is attached to the metal block 503 and magnetically attracted to each other. Through the magnetic attraction between the metal block 503 and the magnet block 502, the position of the movable block 4011 can be fixed, and the position of the placement seat 102 after the position adjustment can be fixed.
[0028] Among them, three connecting plates 6 are arranged at the bottom of the horizontal block 101, and the bottoms of the three sliding blocks 402 are respectively connected to the three connecting plates 6, and electric telescopic rods 601 are installed on both sides of the bottom of the connecting plates 6. A through groove is opened on the top of the connecting plate 6, and a slot is opened on the top of the sliding block 402. Since the bottom end of the electric telescopic rod 601 is connected to the horizontal plate 204, when the placement seat 102 moves, the placement seat 102 can drive the electric telescopic rod 601, the connecting plate 6, the sliding block 402 and the movable block 4011 to move through the horizontal plate 204, and the electric telescopic rod 601 can adjust the use height of the placement seat 102, so that the placement seat 102 can be kept away from the ground to prevent the ground environment from affecting the growth of the tea seedlings, wherein the opening, the through groove and the slot are used to ensure that the lifting rod 504 slides up and down. Embodiment 3:
[0029] Among them, a storage box 7 is installed on the top of the horizontal block 101, and a battery 701 is installed inside the storage box 7. A lighting lamp 702 is installed between the two electric telescopic rods 601, wherein the lighting lamp 702 can provide supplementary lighting for the tea seedlings in the cultivation trough 2 at night, thereby enhancing the cultivation effect of the tea seedlings, and the battery 701 supplies energy to the electric telescopic rod 601 and the lighting lamp 702 to ensure the normal use of the electric telescopic rod 601 and the lighting lamp 702, and the storage box 7 is used to protect the battery 701.
[0030] A groove 8 is provided on the outside of the shelf body 1 , and a photovoltaic panel 801 is installed inside the groove 8 . The photovoltaic panel 801 converts solar energy into electrical energy to charge the battery 701 , and the groove 8 is used to install the photovoltaic panel 801 .
[0031] In the above embodiments, the description of each embodiment has its own emphasis. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0032] The above is a detailed introduction to a photovoltaic tea garden trellis integrated cultivation equipment provided in the embodiment of the present application. This article uses specific examples to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the technical solution and its core idea of the present application; ordinary technicians in this field should understand that: it is still possible to modify the technical solutions recorded in the aforementioned embodiments, or to replace some of the technical features therein with equivalents; and these modifications or replacements do not make the essence of the corresponding technical solution deviate from the scope of the technical solution of the embodiments of the present application.
Claims
1. A photovoltaic tea garden trellis integrated cultivation equipment, characterized in that: include: A scaffolding body (1) having a semicircular ring structure; A horizontal block (101) installed inside the scaffold body (1), wherein three cylindrical placement seats (102) are arranged at the bottom of the horizontal block (101), and a cylindrical placement hole (103) is opened at the top of the placement seat (102), and a cultivation tank (104) is arranged inside the placement hole (103); An ejection assembly is arranged inside the cultivation tank (104) to facilitate ejecting the soil and tea seedlings inside the cultivation tank (104); The movable component arranged between the placement seat (102) and the horizontal block (101) facilitates the adjustment of the position of the placement seat (102).
2. The photovoltaic tea garden trellis integrated cultivation equipment according to claim 1 is characterized in that: The ejection assembly comprises: A cylindrical cultivation tank (2) disposed on the top of the cultivation tank (104); An ejection block (201) disposed inside the cultivation tank (2); A rotating rod (202) is connected to the bottom of the ejection block (201); an opening (203) communicating with the cultivation tank (2) is provided at the bottom of the placement seat (102); and horizontal plates (204) are connected to both sides of the outer end of the placement seat (102).
3. The photovoltaic tea garden trellis integrated cultivation equipment according to claim 2 is characterized in that: Scrapers (3) are connected to both sides of the top of the ejection block (201), a threaded hole threadedly connected to the rotating rod (202) is provided at the bottom of the cultivation tank (104), and lifting blocks (301) are connected to both sides of the outer end of the cultivation tank (104).
4. The photovoltaic tea garden trellis integrated cultivation equipment according to claim 1, characterized in that: The activity components include: An active cavity (4) provided inside the transverse block (101); A slide groove (401) provided at the bottom of the horizontal block (101) and communicating with the movable cavity (4); Three movable blocks (4011) arranged inside the movable cavity (4); A sliding block (402) is connected to the bottom of the movable block (4011) and is slidably connected to the sliding groove (401).
5. The photovoltaic tea garden trellis integrated cultivation equipment according to claim 4 is characterized in that: A through groove (5) is provided on one side of the outer end of the movable block (4011), a lifting plate (501) is arranged inside the through groove (5), both sides of the bottom of the lifting plate (501) are connected to magnet blocks (502), two metal blocks (503) magnetically attracted to the magnet blocks (502) are installed on one side of the inner wall of the movable cavity (4), a lifting rod (504) is connected to the bottom of the lifting plate (501), a side rod (505) is connected to one side of the outer end of the lifting rod (504), and an opening is provided on one side of the inner wall of the through groove (5).
6. The photovoltaic tea garden trellis integrated cultivation equipment according to claim 5, characterized in that: Three connecting plates (6) are arranged at the bottom of the transverse block (101), the bottoms of the three sliding blocks (402) are respectively connected to the three connecting plates (6), electric telescopic rods (601) are installed on both sides of the bottom of the connecting plates (6), the top of the connecting plates (6) is provided with a through slot, and the top of the sliding block (402) is provided with a slot.
7. The photovoltaic tea garden trellis integrated cultivation equipment according to claim 6, characterized in that: A storage box (7) is installed on the top of the horizontal block (101), a storage battery (701) is installed inside the storage box (7), and a lighting lamp (702) is installed between the two electric telescopic rods (601).
8. The photovoltaic tea garden trellis integrated cultivation equipment according to claim 1, characterized in that: A groove (8) is provided on the outside of the shelf body (1), and a photovoltaic panel (801) is installed inside the groove (8).
Citation Information
Patent Citations
Shed frame integrated photovoltaic tea garden cultivation facility
CN219019697U