A seedling-raising device convenient for seedling lifting
By designing a seedling cultivation device that is convenient for seedlings, and using mobile control mechanisms and auxiliary seedling cultivation devices to automatically plant seedlings, the problems of artificial seedling damage and low efficiency are solved, and a fast, safe and efficient seedling cultivation process is achieved.
Patent Information
- Application Number
- CN202411439712.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2044-10-15
AI Technical Summary
When artificially raising seedlings, it is easy to damage the seedling body and rhizomes, and the seedling plate is large in size, so it is time-consuming and labor-intensive to raise seedlings one by one and is inefficient.
A seedling cultivation device for easy seedlings is designed, including a mobile control mechanism, an auxiliary seedling cultivation device, a conveying device and a nutritional conveying mechanism. The movement control mechanism assists the seedling lifting device to move to the appropriate position of the plant seedling. The auxiliary seedling lifting device automatically moves upward through the seedling lifting push plate to push the plant seedlings to slide upward as a whole, quickly separate the seedlings from the cultivation groove to avoid damage caused by manual pulling.
It effectively avoids damage during artificial seedlings, saves a lot of time and labor, improves seedling efficiency, and evenly and quickly conveys nutrient solution to plant seedlings through nutritional conveying mechanisms to promote healthy growth.
Smart Images

Figure CN119096823B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of garden seedling cultivation, and particularly relates to a seedling cultivation device convenient for lifting seedlings. Background Art
[0002] Artificial seedling cultivation is a very important link in the growth of garden plants. It can not only reduce production investment, but also easily cultivate strong seedlings. There are many advantages to artificial seedling cultivation. It is convenient for management in the early stage of centralized seedling cultivation; there is no slow seedling stage after transplanting the seedlings, and the plants grow neatly; the nutrient formula of the substrate used for seedling cultivation is reasonable, the cultivated seedlings are strong, have well-developed roots, grow fast, and have good flower bud differentiation; the special substrate for seedling cultivation is free of germs and toxins, reducing the occurrence of soil-borne diseases; when cultivating seedlings artificially, the soil and plant seedlings are placed in separated seedling trays. When lifting the seedlings, it is necessary to manually pull out the plant seedlings. Manual operation is prone to damage the surface of the seedling body and the root system during seedling lifting, affecting the development of the seedlings. Moreover, the seedling trays are usually large in volume, and it is time-consuming, laborious, slow, and inefficient to lift the seedlings one by one manually. Summary of the Invention
[0003] An embodiment of the present disclosure relates to a seedling cultivation device convenient for lifting seedlings, which has a movement control mechanism that can assist the seedling lifting device to move to a suitable position of the plant seedlings, facilitating subsequent seedling lifting and transportation after seedling lifting; an auxiliary seedling lifting device, the seedling lifting push plate can automatically move upward to push the whole plant seedlings to slide upward, smoothly controlling the rapid separation of the seedlings from the cultivation tank, effectively avoiding damage caused by manual pulling of seedlings, and the machine-controlled seedling lifting is time-saving and labor-saving, simple and convenient; a conveying device that can control multiple groups of plant seedlings to move simultaneously, eliminating the need for manual repositioning for seedling lifting, saving a large amount of time, reducing labor, being time-saving and labor-saving, and having high efficiency; a nutrient conveying mechanism that can evenly and quickly convey nutrient solution to each cultivation tank to assist in cultivating and planting the plant seedlings.
[0004] In the first aspect of the present disclosure, a seedling cultivation device convenient for lifting seedlings is provided, which specifically includes: a cultivation mechanism, a nutrient conveying mechanism, a movement control mechanism, a conveying device, and an auxiliary seedling lifting device;
[0005] The cultivation mechanism is a cuboid structure as a whole; one end of the nutrient conveying mechanism is fixedly connected to the cultivation mechanism; the movement control mechanism is installed on the surface of the cultivation mechanism; one end of the bottom of the conveying device is connected to the movement control mechanism; the top of the auxiliary seedling lifting device is inserted into the cultivation mechanism, and one side of the auxiliary seedling lifting device is connected to the movement control mechanism.
[0006] In at least some embodiments, the cultivation mechanism includes: a cultivation support box, a support plate, and a cultivation tank; the cultivation support box is a cuboid structure as a whole; one side of the support plate is fixedly connected to the cultivation support box; the cultivation tank is opened inside the cultivation support box, and the cultivation tank is used for carrying out soil seedling cultivation.
[0007] In at least some embodiments, the nutrient delivery mechanism includes: an injection frame, a delivery frame, a bearing cylinder, a control push plate, an injection hopper, and a threaded push rod; one end of the top of the injection frame is fixedly in contact with the cultivation tank; one side of the delivery frame is fixedly connected to the injection frame, and the injection frame and the delivery frame can assist in delivering the nutrient solution; the bearing cylinder is fixedly connected to the delivery frame; the control push plate is slidably installed inside the bearing cylinder, and the control push plate can control the flow of the nutrient solution; the bottom of the injection hopper is fixedly connected to the bearing cylinder; the threaded push rod rotates through the thread of the bearing cylinder and is connected to the control push plate.
[0008] In at least some embodiments, the movement control mechanism includes: a fixed plate, a threaded rotating rod A, a motor box A, a sliding block A, a driving frame, a limiting slide rod, an electric control rod, and a lifting frame; the fixed plate is a cuboid structure with a T-shaped chute on its surface, and the fixed plate is fixedly installed on the surface of the support plate; one end of the threaded rotating rod A rotates and inserts into the chute of the fixed plate; the motor box A is installed on one side of the fixed plate and is connected to the threaded rotating rod A; the sliding block A is slidably installed inside the chute of the fixed plate and is threadedly connected to the threaded rotating rod A, and the rotation of the threaded rotating rod A can control the sliding of the sliding block A; the driving frame is a U-shaped structure, and the driving frame is fixedly installed on the top of the sliding block A; the bottom of the limiting slide rod slides and inserts into the chute of the driving frame; the bottom of the electric control rod is installed inside the driving frame; the overall lifting frame is a U-shaped structure, and the bottom of the lifting frame is fixedly connected to the limiting slide rod and the electric control rod.
[0009] In at least some embodiments, the conveying device includes: a clamping and moving assembly, a power assembly, and a transfer assembly; one end of the bottom of the clamping and moving assembly is connected to the movement control mechanism; the power assembly is installed inside the clamping and moving assembly; the number of transfer assemblies is set to two groups, and the bottom of the transfer assembly is connected to the power assembly.
[0010] In at least some embodiments, the clamping and moving assembly further includes: a threaded rotating rod B, a sliding block B, and a motor box B; two groups of threads with opposite directions are provided on the surface of the threaded rotating rod B, and the threaded rotating rod B is rotatably installed inside the T-shaped chute of the lifting frame; the number of sliding blocks B is set to two groups, and the sliding blocks B are slidably installed inside the chute of the lifting frame and are threadedly connected to the threaded rotating rod B. The rotation of the threaded rotating rod B can control the simultaneous movement of the two groups of sliding blocks B; the motor box B is installed on one side of the lifting frame and is connected to the threaded rotating rod B.
[0011] In at least some embodiments, the power assembly further includes: a support rod A, a driving control column, a bevel gear assembly, a linkage rotating rod, a main control rod, and a motor box C; the number of support rods A is set to two groups, and one side of the support rod A is fixedly connected to the sliding block B; the driving control column is a cylindrical structure with a hexagonal chute opened on one side, and the driving control column is rotatably connected to the support rod A; the bevel gear assembly is installed on the surface of the driving control column; a gear is fixedly arranged on the surface of the linkage rotating rod, the linkage rotating rod is rotatably installed inside the support rod A and is connected to the driving control column through the bevel gear assembly; the main control rod is a hexagonal mechanism, the left and right ends of the main control rod are rotatably connected to the two groups of support rods A, and the driving control column is slidably connected to the main control rod; the motor box C is installed on one side of the lifting frame, and one end of the main control rod is connected to the motor in the motor box C.
[0012] In at least some embodiments, the transfer assembly further includes: a fixed plate, a rotating rod, a rotating wheel, and a conveyor belt; the bottom of the fixed plate is fixedly connected to the support rod A; the number of rotating rods is set to two groups, gears are fixedly arranged on the surfaces of the rotating rods, the bottoms of the rotating rods are rotatably inserted into the support rod A, one of the rotating rods is in gear engagement with one of the linkage rotating rods, and the other rotating rod is rotatably connected to the other linkage rotating rod through a gear belt; the rotating wheel is fixedly installed on the surface of the rotating rod; the inner side of the conveyor belt is connected to the rotating wheel, and the conveyor belt can assist in controlling the movement of the flower seedlings.
[0013] In at least some embodiments, the auxiliary seedling lifting device includes: a seedling lifting push plate, a push rod, a pulling assembly, a support rod B, and a contact frame; liquid inlet holes are opened on the surface of the seedling lifting push plate, the seedling lifting push plate is slidably installed inside the cultivation tank, and the seedling lifting push plate can assist in lifting the seedlings; the top of the push rod is slidably inserted into the cultivation tank and is fixedly connected to the seedling lifting push plate; the top of the pulling assembly is fixedly connected to the push rod; the bottom of the support rod B is fixedly connected to the support plate; the contact frame is a U-shaped structure as a whole, and one side of the contact frame is fixedly connected to the support rod B.
[0014] In at least some embodiments, the pulling assembly further includes: a connecting plate, a sliding support rod, a baffle, a contact pulling plate A, a spring, a moving rod, and a contact pulling plate B; the connecting plate is a cuboid structure with a groove opened on one side, and the surface of the connecting plate is fixedly connected to the push rod; the sliding support rod is slidably inserted into the groove of the connecting plate; the baffle is fixedly installed on the surface of the sliding support rod; the contact pulling plate A is a trapezoidal structure as a whole, the number of contact pulling plates A is set to two groups, and the contact pulling plates A are fixedly installed at the left and right ends of the sliding support rod; the spring is installed on the surface of the sliding support rod; the moving rod is a T-shaped structure, and the top of the moving rod is fixedly connected to the lifting frame; the contact pulling plate B is a trapezoidal structure, and one side of the contact pulling plate B is fixedly connected to the moving rod.
[0015] The present invention has the following beneficial effects
[0016] First, a movement control mechanism is provided inside the present invention. A sliding block that can be controlled to slide is provided inside the movement control mechanism. The sliding block is connected to the conveying device and the auxiliary seedling lifting device, and can assist in controlling the movement of the conveying device and the auxiliary seedling lifting device to the appropriate position of the plant seedlings, facilitating subsequent seedling lifting and the conveying after seedling lifting.
[0017] Secondly, an auxiliary seedling lifting device is also provided inside the present device. One end of the auxiliary seedling lifting device is connected to the movement control mechanism. After the movement control mechanism moves downward, the auxiliary seedling lifting device is connected to the movement control mechanism. The movement control mechanism can control the auxiliary seedling lifting device to move upward. Since the seedling lifting push plate inside the auxiliary seedling lifting device is inside the cultivation tank, the upward movement of the seedling lifting push plate can push the whole plant seedlings to slide upward, smoothly controlling the rapid separation of the seedlings from the cultivation tank. The seedling lifting push plate supports the upward sliding, which can effectively avoid the damage caused by manually pulling the seedlings, and the machine controls the seedling lifting, saving time and effort, being simple and convenient.
[0018] Thirdly, a conveying device is also provided inside the present device. A conveyor belt is provided inside the conveying device. Two groups of conveyor belts are controlled to slide inward and contact the plant seedling stems. The conveyor belts slide simultaneously, and the conveyor belts can control multiple groups of plant seedlings to move simultaneously, automatically slide to one side and convey them to the side of the staff. There is no need for manual position change for seedling lifting, which can save a large amount of time, reduce labor, save time and effort, and have high efficiency.
[0019] Finally, a nutrient conveying mechanism is also provided inside the present invention. The injection frame inside the nutrient conveying mechanism is inserted into each cultivation tank, and can convey nutrient solution evenly and quickly to each cultivation tank to assist in cultivating and planting the plant seedlings. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly introduced below.
[0021] The accompanying drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.
[0022] In the accompanying drawings:
[0023] Figure 1 The structural schematic diagram of the main body of the present invention is shown in a side view;
[0024] Figure 2 The structural schematic diagram of the main body of the present invention is shown in a bottom view;
[0025] Figure 3 The sectional structural schematic diagram of the nutrient conveying mechanism of the present invention is shown;
[0026] Figure 4 The sectional structural schematic diagram of the movement control mechanism of the present invention is shown;
[0027] Figure 5 Shows a schematic structural view of the cross-section of the conveying device of the present invention;
[0028] Figure 6 Shows a schematic structural view of the cross-section of the power assembly of the present invention;
[0029] Figure 7 Shows the Figure 6 schematic enlarged view of part A of the present invention;
[0030] Figure 8 Shows a schematic structural view of the bottom view of the transfer assembly of the present invention
[0031] Figure 9 Shows a schematic structural view of the bottom view of the auxiliary seedling lifting device of the present invention
[0032] Figure 10 Shows a schematic structural view of the cross-section of the pulling assembly of the present invention.
[0033] List of reference numerals
[0034] 1. Cultivation mechanism; 101. Cultivation support box; 102. Support plate; 103. Cultivation tank; 2. Nutrient conveying mechanism; 201. Injection frame; 202. Conveyor frame; 203. Bearing cylinder; 204. Control push plate; 205. Injection hopper; 206. Threaded push rod; 3. Movement control mechanism; 301. Fixed plate; 302. Threaded rotating rod A; 303. Motor box A; 304. Sliding block A; 305. Driving frame; 306. Limit sliding rod; 307. Electric control rod; 308. Lifting frame; 4. Conveying device; 401. Clamping and moving assembly; 4011. Threaded rotating rod B; 4012. Sliding block B; 4013. Motor box B; 402. Power assembly; 4021. Support rod A; 4022. Driving control column; 4023. Bevel gear assembly; 4024. Linkage rotating rod; 4025. Main control rod; 4026. Motor box C; 403. Transfer assembly; 4031. Fixed plate; 4032. Rotating rod; 4033. Rotating wheel; 4034. Conveyor belt; 5. Auxiliary seedling lifting device; 501. Seedling lifting push plate; 502. Push rod; 503. Pulling assembly; 5031. Connecting plate; 5032. Sliding support rod; 5033. Baffle; 5034. Contact pulling plate A; 5035. Spring; 5036. Moving rod; 5037. Contact pulling plate B; 504. Support rod B; 505. Contact frame. Detailed implementation manners
[0035] The following further describes the implementation manners of the present invention in detail with reference to the drawings and embodiments.
[0036] Embodiment: Please refer to Figures 1 to 10 :
[0037] The present invention provides a seedling-raising device facilitating seedling lifting, comprising: a cultivation mechanism 1, a nutrient delivery mechanism 2, a movement control mechanism 3, a conveying device 4, and an auxiliary seedling-lifting device 5;
[0038] The cultivation mechanism 1 is integrally of a cuboid structure; one end of the nutrient delivery mechanism 2 is fixedly connected to the cultivation mechanism 1; the movement control mechanism 3 is installed on the surface of the cultivation mechanism 1; one end of the bottom of the conveying device 4 is connected to the movement control mechanism 3; the top of the auxiliary seedling-lifting device 5 is inserted into the cultivation mechanism 1, and one side of the auxiliary seedling-lifting device 5 is connected to the movement control mechanism 3.
[0039] As Figure 3 shown, the cultivation mechanism 1 comprises: a cultivation support box 101, a support plate 102, and a cultivation tank 103; the cultivation support box 101 is integrally of a cuboid structure; one side of the support plate 102 is fixedly connected to the cultivation support box 101; the cultivation tank 103 is formed inside the cultivation support box 101, and the cultivation tank 103 is used for carrying out soil seedling raising.
[0040] As Figure 3 shown, the nutrient delivery mechanism 2 comprises: an injection frame 201, a delivery frame 202, a bearing cylinder 203, a control push plate 204, an injection hopper 205, and a threaded push rod 206; one end of the top of the injection frame 201 is fixedly in contact with the cultivation tank 103; one side of the delivery frame 202 is fixedly connected to the injection frame 201, and the injection frame 201 and the delivery frame 202 can play a role in assisting the delivery of nutrient solution; the bearing cylinder 203 is fixedly connected to the delivery frame 202; the control push plate 204 is slidably installed inside the bearing cylinder 203, and the control push plate 204 can play a role in controlling the flow of nutrient solution; the bottom of the injection hopper 205 is fixedly connected to the bearing cylinder 203; the threaded push rod 206 rotates through the thread of the bearing cylinder 203 and is connected to the control push plate 204.
[0041] As Figure 4As shown in the figure, the movement control mechanism 3 includes: a fixed plate 301, a threaded rotating rod A302, a motor box A303, a sliding block A304, a driving frame 305, a limiting sliding rod 306, an electric control rod 307, and a lifting frame 308; the fixed plate 301 is a cuboid structure with a T-shaped sliding groove on its surface, and the fixed plate 301 is fixedly installed on the surface of the supporting plate 102; one end of the threaded rotating rod A302 is rotatably inserted into the sliding groove of the fixed plate 301; the motor box A303 is installed on one side of the fixed plate 301 and is connected to the threaded rotating rod A302; the sliding block A304 is slidably installed in the sliding groove of the fixed plate 301 and is threadedly connected to the threaded rotating rod A302, and the rotation of the threaded rotating rod A302 can control the sliding of the sliding block A304; the driving frame 305 is a U-shaped structure, and the driving frame 305 is fixedly installed on the top of the sliding block A304; the bottom of the limiting sliding rod 306 is slidably inserted into the sliding groove of the driving frame 305; the bottom of the electric control rod 307 is installed inside the driving frame 305; the overall lifting frame 308 is a U-shaped structure, and the bottom of the lifting frame 308 is fixedly connected to the limiting sliding rod 306 and the electric control rod 307.
[0042] As Figure 5 shown, the conveying device 4 includes: a clamping and moving assembly 401, a power assembly 402, and a transfer assembly 403; one end of the bottom of the clamping and moving assembly 401 is connected to the movement control mechanism 3; the power assembly 402 is installed inside the clamping and moving assembly 401; the number of the transfer assemblies 403 is set to two groups, and the bottom of the transfer assembly 403 is connected to the power assembly 402.
[0043] As Figure 5 shown, the clamping and moving assembly 401 further includes: a threaded rotating rod B4011, a sliding block B4012, and a motor box B4013; two sets of threads with opposite directions are provided on the surface of the threaded rotating rod B4011, and the threaded rotating rod B4011 is rotatably installed inside the T-shaped sliding groove of the lifting frame 308; the number of the sliding blocks B4012 is set to two groups, and the sliding blocks B4012 are slidably installed inside the sliding groove of the lifting frame 308 and are threadedly connected to the threaded rotating rod B4011, and the rotation of the threaded rotating rod B4011 can control the simultaneous movement of the two groups of sliding blocks B4012; the motor box B4013 is installed on one side of the lifting frame 308 and is connected to the threaded rotating rod B4011.
[0044] As Figure 6As shown, the power assembly 402 further includes: a support rod A4021, a driving control column 4022, a bevel gear assembly 4023, a linkage rotating rod 4024, a main control rod 4025, and a motor box C4026; the number of support rods A4021 is set to two groups, and one side of the support rod A4021 is fixedly connected to the sliding block B4012; the driving control column 4022 is a cylindrical structure with a hexagonal chute on one side, and the driving control column 4022 is rotatably connected to the support rod A4021; the bevel gear assembly 4023 is installed on the surface of the driving control column 4022; a gear is fixedly arranged on the surface of the linkage rotating rod 4024, and the linkage rotating rod 4024 is rotatably installed inside the support rod A4021 and is connected to the driving control column 4022 through the bevel gear assembly 4023; the main control rod 4025 is a hexagonal mechanism, and the left and right ends of the main control rod 4025 are rotatably connected to the two groups of support rods A4021, and the driving control column 4022 is slidably connected to the main control rod 4025; the motor box C4026 is installed on one side of the lifting frame 308, and one end of the main control rod 4025 is connected to the motor in the motor box C4026.
[0045] As Figure 8 shown, the transfer assembly 403 further includes: a fixed plate 4031, a rotating rod 4032, a rotating wheel 4033, and a conveyor belt 4034; the bottom of the fixed plate 4031 is fixedly connected to the support rod A4021; the number of rotating rods 4032 is set to two groups, and gears are fixedly arranged on the surfaces of the rotating rods 4032. The bottoms of the rotating rods 4032 are rotatably inserted into the support rod A4021. One of the rotating rods 4032 is in gear meshing connection with one of the linkage rotating rods 4024, and the other rotating rod 4032 is rotationally connected to the other linkage rotating rod 4024 through a gear belt; the rotating wheel 4033 is fixedly installed on the surface of the rotating rod 4032; the inner side of the conveyor belt 4034 is connected to the rotating wheel 4033, and the conveyor belt 4034 can play a role in assisting in controlling the movement of the flower seedlings.
[0046] As Figure 9 shown, the auxiliary seedling lifting device 5 includes: a seedling lifting push plate 501, a push rod 502, a pulling assembly 503, a support rod B504, and a contact frame 505; liquid inlet holes are opened on the surface of the seedling lifting push plate 501. The seedling lifting push plate 501 is slidably installed inside the cultivation tank 103, and the seedling lifting push plate 501 can play a role in assisting in lifting the seedlings; the top of the push rod 502 is slidably inserted into the cultivation tank 103 and is fixedly connected to the seedling lifting push plate 501; the top of the pulling assembly 503 is fixedly connected to the push rod 502; the bottom of the support rod B504 is fixedly connected to the support plate 102; the contact frame 505 is integrally in a U-shaped structure, and one side of the contact frame 505 is fixedly connected to the support rod B504.
[0047] As Figure 10As shown, the pulling component 503 further includes: a connecting plate 5031, a sliding support rod 5032, a baffle 5033, a contact pulling plate A 5034, a spring 5035, a moving rod 5036, and a contact pulling plate B 5037; the connecting plate 5031 is a cuboid structure with a groove on one side, and the surface of the connecting plate 5031 is fixedly connected to the push rod 502; the sliding support rod 5032 is slidably inserted into the groove of the connecting plate 5031; the baffle 5033 is fixedly installed on the surface of the sliding support rod 5032; the contact pulling plate A 5034 is a trapezoidal structure as a whole, and the number of the contact pulling plates A 5034 is set to two groups, and the contact pulling plates A 5034 are fixedly installed at the left and right ends of the sliding support rod 5032; the spring 5035 is installed on the surface of the sliding support rod 5032; the moving rod 5036 is a T-shaped structure, and the top of the moving rod 5036 is fixedly connected to the lifting frame 308; the contact pulling plate B 5037 is a trapezoidal structure, and one side of the contact pulling plate B 5037 is fixedly connected to the moving rod 5036.
[0048] Specific usage method and function of this embodiment: When raising seedlings, place the seedlings into the cultivation tank 103 with soil for cultivation. During cultivation, it is necessary to deliver nutrient solution. Pour the nutrient solution into the inside of the bearing cylinder 203 from the injection hopper 205. After the bearing cylinder 203 is filled with the nutrient solution, rotate the threaded push rod 206. The threaded push rod 206 controls the sliding of the push plate 204 inside the bearing cylinder 203. Control the sliding of the push plate 204 to pass through the injection port of the injection hopper 205 and continue to slide. The nutrient solution passes through the conveying frame 202 and is evenly injected into the soil inside the cultivation tank 103 through the injection frame 201, evenly injecting the nutrient solution into multiple groups of cultivation tanks 103. After raising seedlings for a period of time, control the lifting frame 308 to rise through the electric control rod 307, and control the simultaneous movement of the sliding block A304 and the conveying device 4 through the motor box A303. The conveying device 4 slides directly above the seedlings. The electric control rod 307 controls the downward sliding of the lifting frame 308. The transfer assembly 403 slides to the seedling stem. Start the motor box B4013, and the threaded rotating rod B4011 rotates. The two sets of threads on the surface of the threaded rotating rod B4011 control the sliding of the sliding block B4012 inward. The support rod A4021 and the inside of the transfer assembly 403 slide and make clamping contact with the seedling stem. While the lifting frame 308 slides downward, the moving rod 5036 at the bottom of the lifting frame 308 slides downward. The moving rod 5036 is inserted into the groove of the connecting plate 5031. The inclined surface of the contact pulling plate B5037 fixedly arranged on the surface of the moving rod 5036 contacts the inclined surface of one of the contact pulling plates A5034. The contact pulling plate A5034 is forced to slide to one side. The contact pulling plate B5037 slides below the contact pulling plate A5034. When lifting the seedlings, control the upward sliding of the conveying device 4 and the seedlings through the electric control rod 307. The moving rod 5036 slides upward. The right angle of the contact pulling plate B5037 on one side of the moving rod 5036 contacts the right-angle surface of the contact pulling plate A5034. The connecting plate 5031 is forced to lift. The connecting plate 5031, the push rod 502, and the seedling-lifting push plate 501 slide upward. The seedlings and the soil as a whole are lifted, and the seedlings are pushed out of the cultivation tank 103. When rising, the inclined surface of the outer set of contact pulling plates A5034 contacts the contact frame 505. The contact frame 505 is forced to slide outward. The inner set of contact pulling plates A5034 follows the sliding and releases the limit of the contact pulling plate B5037. When the seedlings are lifted to the highest point, start the motor of the motor box C4026. The main control rod 4025 controls the rotation of the two driving control columns 4022. The driving control column 4022 controls the rotation of the linkage rod 4024 through the bevel gear assembly 4023. One of the linkage rods 4024 is rotationally connected to the rotating rod 4032 through a gear, and the other linkage rod 4024 is rotationally connected to the rotating rod 4032 through a gear belt. The rotation directions of the two rotating wheels 4033 are opposite, and the moving directions of the two conveyor belts 4034 are the same, pushing the seedlings to move and transporting the seedlings to the front of the staff on one side.
[0049] In this article, the following points need attention:
[0050] 1. The accompanying drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures may refer to the general design.
[0051] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments may be combined with each other to obtain new embodiments.
[0052] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should be covered by the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.
Claims
1. A seedling raising device for facilitating seedling raising, comprising: A cultivation mechanism (1), a nutrient delivery mechanism (2), a movement control mechanism (3), a delivery device (4) and an auxiliary seedling lifting device (5); The cultivation mechanism (1) is a rectangular parallelepiped structure as a whole; it is characterized in that one end of the nutrient transport mechanism (2) is fixedly connected to the cultivation mechanism (1); the cultivation mechanism (1) comprises: a cultivation support box (101), a support plate (102) and a cultivation tank (103); the cultivation support box (101) is a rectangular parallelepiped structure as a whole; one side of the support plate (102) is fixedly connected to the cultivation support box (101); the cultivation tank (103) is arranged inside the cultivation support box (101); the movement control mechanism (3) is installed on the surface of the cultivation mechanism (1); one end of the bottom of the transport device (4) is connected to the movement control mechanism (3); the auxiliary seedling lifting device (5 ) is inserted into the cultivation mechanism (1), and one side of the auxiliary seedling lifting device (5) is connected to the mobile control mechanism (3); the mobile control mechanism (3) comprises: a fixed plate (301), a threaded rotating rod A (302), a motor box A (303), a sliding block A (304), a driving frame (305), a limiting sliding rod (306), an electric control rod (307) and a lifting frame (308); the fixed plate (301) is a rectangular parallelepiped structure with a T-shaped sliding groove on the surface, and the fixed plate (301) is fixedly mounted on the surface of the support plate (102); one end of the threaded rotating rod A (302) is rotatably inserted into the interior of the sliding groove of the fixed plate (301); the motor box A ( The fixing plate (301) is mounted on one side of the fixing plate (301) and connected to the threaded rotating rod A (302); the sliding block A (304) is slidably mounted inside the sliding groove of the fixing plate (301) and is threadedly connected to the threaded rotating rod A (302); the driving frame (305) is a U-shaped structure, and the driving frame (305) is fixedly mounted on the top of the sliding block A (304); the bottom of the limiting sliding rod (306) is slidably inserted into the sliding groove of the driving frame (305); the bottom of the electric control rod (307) is mounted inside the driving frame (305); the lifting frame (308) is a U-shaped structure as a whole, and the bottom of the lifting frame (308) is connected to the limiting sliding rod (306) and the electric control rod (307). The auxiliary seedling lifting device (5) comprises: a seedling lifting push plate (501), a push rod (502), a pulling assembly (503), a support rod B (504) and a contact frame (505); a liquid inlet hole is provided on the surface of the seedling lifting push plate (501), and the seedling lifting push plate (501) is slidably installed inside the cultivation tank (103); the top of the push rod (502) is slidably inserted into the cultivation tank (103) and is fixedly connected to the seedling lifting push plate (501); the top of the pulling assembly (503) is fixedly connected to the push rod (502); the bottom of the support rod B (504) is fixedly connected to the support plate (102); and one side of the contact frame (505) is fixedly connected to the support rod B (504).
2. A seedling raising device for facilitating seedling raising according to claim 1, characterized in that: The nutrient delivery mechanism (2) comprises: an injection frame (201), a conveying frame (202), a bearing tube (203), a control push plate (204), an injection bucket (205) and a threaded push rod (206); one end of the top of the injection frame (201) is fixedly in contact with the cultivation tank (103); one side of the conveying frame (202) is fixedly connected to the injection frame (201); the bearing tube (203) is fixedly connected to the conveying frame (202); the control push plate (204) is slidably mounted inside the bearing tube (203); the bottom of the injection bucket (205) is fixedly connected to the bearing tube (203); and the threaded push rod (206) rotates through the thread of the bearing tube (203) and is connected to the control push plate (204).
3. A seedling raising device for facilitating seedling raising according to claim 1, characterized in that: The conveying device (4) comprises: a clamping moving component (401), a power component (402) and a transfer component (403); one end of the bottom of the clamping moving component (401) is connected to the movement control mechanism (3); the power component (402) is installed inside the clamping moving component (401); the bottom of the transfer component (403) is connected to the power component (402); the clamping moving component (401) further comprises: a threaded rotating rod B (4011), a sliding block B (4012) and a motor box B (4013); the threaded rotating rod B (4011) The surface is provided with two groups of threads in opposite directions, and the threaded rotating rod B (4011) is rotatably installed inside the T-shaped sliding groove of the lifting frame (308); the number of sliding blocks B (4012) is set to two groups, and the sliding blocks B (4012) are slidably installed inside the sliding groove of the lifting frame (308) and are threadedly connected with the threaded rotating rod B (4011). The rotation of the threaded rotating rod B (4011) can control the two groups of sliding blocks B (4012) to move simultaneously; the motor box B (4013) is installed on one side of the lifting frame (308) and is connected to the threaded rotating rod B (4011).
4. A seedling raising device for facilitating seedling raising according to claim 3, characterized in that: The power assembly (402) further comprises: a support rod A (4021), a driving control column (4022), a bevel gear assembly (4023), a linkage rotating rod (4024), a main control rod (4025) and a motor box C (4026); the support rods A (4021) are provided in two groups, one side of the support rods A (4021) is fixedly connected to the sliding block B (4012); the driving control column (4022) is a cylindrical structure with a hexagonal sliding groove on one side, and the driving control column (4022) is rotatably connected to the support rod A (4021); the bevel gear assembly (4023) is installed on the driving control column (4024). The surface of the control column (4022); a gear is fixedly arranged on the surface of the linkage rotating rod (4024), the linkage rotating rod (4024) is rotatably installed inside the support rod A (4021) and is connected to the driving control column (4022) through the bevel gear assembly (4023); the left and right ends of the main control rod (4025) are rotatably connected to the two groups of support rods A (4021), and the driving control column (4022) is slidably connected to the main control rod (4025); the motor box C (4026) is installed on one side of the lifting frame (308), and one end of the main control rod (4025) is connected to the motor in the motor box C (4026).
5. A seedling raising device for facilitating seedling raising according to claim 4, characterized in that: The transfer assembly (403) further comprises: a fixed plate (4031), a rotating rod (4032), a rotating wheel (4033), and a conveyor belt (4034); the bottom of the fixed plate (4031) is fixedly connected to the support rod A (4021); a gear is fixedly provided on the surface of the rotating rod (4032); the bottom of the rotating rod (4032) is rotatably inserted into the support rod A (4021); one group of rotating rods (4032) is meshed with one group of linked rotating rods (4024) in gear engagement; another group of rotating rods (4032) is rotatably connected to another group of linked rotating rods (4024) via a gear belt; the rotating wheel (4033) is fixedly mounted on the surface of the rotating rod (4032); and the inner side of the conveyor belt (4034) is connected to the rotating wheel (4033).
6. A seedling raising device for facilitating seedling raising according to claim 1, characterized in that: The pulling assembly (503) further comprises: a connecting plate (5031), a sliding support rod (5032), a baffle (5033), a contact pull plate A (5034), a spring (5035), a moving rod (5036) and a contact pull plate B (5037); the connecting plate (5031) is a rectangular parallelepiped structure with a groove on one side, and the surface of the connecting plate (5031) is fixedly connected to the push rod (502); the sliding support rod (5032) is slidably inserted into the groove of the connecting plate (5031); the baffle (5033) is fixedly installed on the surface of the sliding support rod (5032); the number of contact pull plates A (5034) is set to two groups, and the contact pull plates A (5034) are fixedly installed on the left and right ends of the sliding support rod (5032); the spring (5035) is installed on the surface of the sliding support rod (5032); the top of the moving rod (5036) is fixedly connected to the lifting frame (308); the contact pull plate B (5037) is a trapezoidal structure, and one side of the contact pull plate B (5037) is fixedly connected to the moving rod (5036).
Citation Information
Patent Citations
Rose seedling raising box facilitating seedling lifting
CN115708453A
Seedling raising bed for snow peach planting
CN219205403U