Nutrition bowl structure

By designing a nutrient bowl structure containing pressing pits and sowing parts, the problems of low artificial sowing efficiency and low germination rate in the prior art are solved, and the consistency of automated sowing and soil pits are achieved, and the growth uniformity of 3-leaf green is improved.

CN222852767UActive Publication Date: 2025-05-13HANGZHOU FUYANG GOLDEN GOURD ECOLOGICAL AGRI DEV CO LTD +1
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Patent Information

Application Number
CN202421614021.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-05-13
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

In the existing nutritional bowl planting technology, the sowing process requires manual turning and sowing, which is inefficient and can easily lead to varying depths of soil pits, affecting the accurate seed fall and germination rate.

Method used

A nutritional bowl structure is designed, including a substrate, a chute, a slide, a connecting plate, a pit and a seed piece. By pressing the connecting plate downward, the pit pressing mechanism is driven to press the soil out of the pit, and the seeds are accurately sown into the pit through the seed parts.

Benefits of technology

The automated sowing process is realized, which reduces manual labor, ensures the consistency of soil pit depth and improves the germination rate of seeds and the uniformity of the growth of the three-leaf green.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of nutrition bowls, in particular to a nutrition bowl structure. The display panel comprises a substrate. First sliding grooves are symmetrically formed in the two sides of the base plate; sliding plates are arranged in the first sliding grooves in the two sides in a sliding mode. The plurality of nutrition pot bodies are uniformly arranged on the base plate. And the planting assembly is arranged on the two sliding plates and is used for pressing soil in the nutrition bowl body out of a soil pit and sowing seeds into the soil pit. The planting assembly comprises a first connecting plate arranged on the two sliding plates in a sliding mode. And the pit pressing piece is arranged on the connecting plate I and is driven by the connecting plate I to press downwards so as to press soil in the nutrition bowl body out of a soil pit. The sowing piece is arranged on the pit pressing piece in a sliding manner and is matched with the pit pressing piece to sow seeds into the soil pit. According to the utility model, the connecting plate I is pressed downwards to drive the pit pressing mechanism to press soil in the nutrition bowl body out of a soil pit, and the connecting plate II is pressed downwards to enable seeds in the hollow cylinder II to fall into the pressed soil pit, so that manual soil turning and sowing one by one can be avoided, and the efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the field of nutrient pots, in particular to a nutrient pot structure. Background Art

[0002] Three-leaf green plant is a common green plant, also known as golden thread hanging gourd. The whole plant can be used as medicine, and the underground tubers and fruits have the best medicinal effects. It has the effects of clearing away heat and detoxification, dispelling wind and resolving phlegm, promoting blood circulation and relieving pain. Three-leaf green is usually planted in nutrient pots during cultivation, and then transplanted after it survives.

[0003] A Chinese patent document with authorization announcement number CN218851428U proposes a nutrient pot covering device, including a placement plate, an electric slide rail and a plurality of placement slots are symmetrically connected to the upper end of the placement plate, a breeding basin is arranged inside the placement slot, the placement slot is located between the symmetrically arranged electric slide rails, and the corresponding sides of the electric slide rails are connected with matching sliders, a scraper is connected between the sliders, and the scraper is in contact with the placement plate; a first fixed block and a second fixed block are symmetrically connected to the upper end of the electric slide rail, a motor is connected to the outer wall of the second fixed block, a screw rod is connected to the output end of the motor, the screw rod passes through the second fixed block and is connected to the first fixed block, a material guide funnel is arranged on the upper end of the placement plate, a plurality of material guide slots corresponding to the placement slots are arranged on the upper end surface of the material guide funnel, and slide cylinders matching the screw rods are connected to the left and right sides of the material guide funnel.

[0004] In the above application, although the motor drives the screw rod to rotate, and the screw rod drives the slide cylinder to move, so that the guide funnel moves, thereby realizing the automatic introduction of nutrient mud, the subsequent sowing problem is not solved. When sowing seeds, it is usually done manually to turn the soil and sow the nutrient pots one by one, which is inefficient. Manual sowing may also lead to problems such as the depth of the dug pits being different, and the seeds cannot fall accurately into the pits, which greatly reduces the germination rate. Utility Model Content

[0005] In view of the problems existing in the background technology, a nutrient pot structure is proposed.

[0006] The utility model proposes a nutrient pot structure, including a base plate. Slide grooves are symmetrically provided on both sides of the base plate; slide plates are slidably provided in the slide grooves on both sides. A plurality of nutrient pot bodies are evenly provided on the base plate. And a planting component is provided on the two slide plates, which presses the soil in the nutrient pot body out of a pit and sows seeds into the pit. The planting component includes a connecting plate slidably provided on the two slide plates. A pit pressing part is provided on the connecting plate 1, which is driven downward by the connecting plate 1 to press the soil in the nutrient pot body out of the pit. And a sowing part is slidably provided on the pit pressing part, and cooperates with the pit pressing part to sow seeds into the pit.

[0007] Preferably, two slide grooves are provided on both side slides; a connecting plate one is slidably arranged at the two slide grooves; a plurality of groups of depression members are evenly arranged on the connecting plate one, and correspond one to one with a plurality of nutrient pot bodies located in a vertical column.

[0008] Preferably, the pit pressing member comprises a plurality of hollow cylinders one uniformly arranged on a connecting plate one; a plurality of through grooves are provided at the lower ends of the plurality of hollow cylinders one; and a pit pressing mechanism is slidably connected in the plurality of through grooves.

[0009] Preferably, the pit pressing mechanism is arranged in a circular array about the hollow cylinder.

[0010] Preferably, the pit-pressing mechanism includes a pit-pressing plate arranged at a lower end of the hollow cylinder; a limit block is arranged on one side of the pit-pressing plate located inside the hollow cylinder, and a limit plate is arranged on the side outside the hollow cylinder; an adjusting inclined surface is arranged on the side of the limit block facing the central axis of the annular array, and a spring two is connected between the limit block and the hollow cylinder, and a sliding bar slidably arranged in the through groove is also connected between the limit block and the limit plate; when the spring two is in a relaxed state, the multiple pit-pressing mechanisms are tightly attached to each other and close the lower end of the hollow cylinder.

[0011] Preferably, a slide groove three is provided on the inner wall of the hollow cylinder one; the sowing member includes a hollow cylinder two which is slidably arranged at the slide groove three up and down; the lower end of the hollow cylinder one can be opened by pressing down the hollow cylinder two to push the multiple pit pressing mechanisms to the surroundings.

[0012] Preferably, the upper ends of the plurality of hollow cylinders 2 are commonly connected to a connecting plate 2; and a spring 3 is connected between the lower end of the connecting plate 2 and the upper end of the connecting plate 1.

[0013] Preferably, the side walls of the two side slides are connected to fixed plates; the upper ends of the two fixed plates are connected to sleeves; the inner walls of the sleeves are slidably connected to sliding columns; a spring is connected between the fixed plates and the sliding columns; and the upper ends of the sliding columns are connected to connecting plate one.

[0014] Compared with the prior art, the utility model has the following beneficial technical effects:

[0015] (1) The nutrient pot structure can press the soil in the nutrient pot body out of the soil pit by pressing the connecting plate downward to drive the pit pressing mechanism, which can avoid the workers from manually turning the soil in the nutrient pot body one by one, thus reducing boring and repetitive work. In addition, it can also ensure that the pit pressing part presses out the appropriate depth and the pressed soil pit is of the same depth, thereby improving the germination rate and avoiding uneven growth of clover.

[0016] (2) The nutrient pot structure, by pressing the connecting plate 2 downward, pushes the multiple pit pressing mechanisms to the surroundings, and then opens the lower end of the hollow tube 1, so that the seeds in the hollow tube 2 fall into the pressed soil pit. On the one hand, the seeds can be accurately placed in the center of the soil pit without manual calibration, greatly improving the germination rate. On the other hand, it also avoids manual sowing, reducing the labor burden of the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 This is a schematic diagram of the structure of the planting assembly of the utility model;

[0019] Figure 3 This is a structural schematic diagram of a connecting plate of the utility model;

[0020] Figure 4 This is a schematic diagram of the structure of the pit pressing member and the sowing member of the utility model;

[0021] Figure 5 It is a schematic diagram of the structure of the pit pressing mechanism of the utility model.

[0022] Figure numerals: 1. base plate; 2. nutrient pot body; 3. slide groove one; 4. slide plate; 401. slide groove two; 5. planting component; 51. connecting plate one; 511. fixing plate; 512. sleeve; 513. sliding column; 514. spring one; 52. pit pressing part; 521. hollow cylinder one; 522. through groove; 523. pit pressing mechanism; 5231. pit pressing plate; 5232. limit block; 5233. spring two; 5234. limit plate; 5235. slide bar; 53. sowing part; 531. slide groove three; 532. hollow cylinder two; 533. connecting plate two; 534. spring three. DETAILED DESCRIPTION

[0023] Embodiment 1

[0024] like Figure 1-4 As shown, a nutrient pot structure proposed by the utility model includes a base plate 1, a nutrient pot body 2 and a planting component 5. Slide grooves 3 are symmetrically provided on both sides of the base plate 1; slide plates 4 are slidably provided in the slide grooves 3 on both sides. A plurality of nutrient pot bodies 2 are evenly arranged on the base plate 1. The planting component 5 is arranged on two slide plates 4 to press the soil in the nutrient pot body 2 out of a pit and sow seeds into the pit. The planting component 5 includes a connecting plate 51 slidably provided on the two slide plates 4. A pit pressing member 52 is provided on the connecting plate 51, and is driven downward by the connecting plate 51 to press the soil in the nutrient pot body 2 out of the pit. And a sowing member 53 is slidably provided on the pit pressing member 52, and cooperates with the pit pressing member 52 to sow seeds into the pit.

[0025] Further explanation, the slide plates 4 on both sides are provided with a second slide groove 401; the connecting plate 1 51 is slidably arranged at the second slide groove 401; the pit pressing members 52 are evenly arranged in multiple groups on the connecting plate 1 51, and correspond one by one to the multiple nutrient pot bodies 2 located in a vertical column. The soil in multiple nutrient pot bodies 2 can be pressed at the same time to improve work efficiency. In addition, it can also ensure that the pit pressing members 52 press out a suitable depth, and the pressed soil pits are of the same depth, thereby improving the germination rate and avoiding uneven growth of the clover.

[0026] Further explanation, the pit pressing member 52 includes a plurality of hollow cylinders 521 uniformly arranged on the connecting plate 51; the lower ends of the plurality of hollow cylinders 521 are provided with a plurality of through slots 522; and the plurality of through slots 522 are slidably connected with a pit pressing mechanism 523. By pressing down the connecting plate 51, the plurality of pit pressing mechanisms 523 can be driven to simultaneously press the plurality of nutrient pot bodies 2, thereby avoiding the need for the staff to manually turn the soil in the nutrient pot bodies 2 one by one, reducing the working hours and reducing the boring and repetitive labor.

[0027] Further explanation, the side walls of the two side slides 4 are connected with fixed plates 511; the upper ends of the two fixed plates 511 are connected with sleeves 512; the inner walls of the sleeves 512 are slidably connected with sliding columns 513; springs 1 514 are connected between the fixed plates 511 and the sliding columns 513; the upper ends of the sliding columns 513 are connected to the connecting plates 1 51. After the connecting plates 1 51 are pressed down to complete the pit pressing work, the springs 1 514 rebound and automatically drive the connecting plates 1 51 to reset, avoiding the staff from repeatedly manually lifting the connecting plates 1 51, thereby increasing the workload.

[0028] Embodiment 2

[0029] like Figure 1-2 and Figure 4-5As shown, a nutrient pot structure proposed by the utility model, compared with the first embodiment, this embodiment also includes: a pit pressing mechanism 523 is arranged in an annular array about the hollow cylinder 1 521. The pit pressing mechanism 523 includes a pit pressing plate 5231 arranged at the lower end of the hollow cylinder 1 521; a limiting block 5232 is arranged on the side of the pit pressing plate 5231 located inside the hollow cylinder 1 521, and a limiting plate 5234 is arranged on the side outside the hollow cylinder 1 521; an adjusting inclined surface is arranged on the side of the limiting block 5232 facing the central axis of the annular array, and a spring 2 5233 is connected between the limiting block 5232 and the limiting plate 5234, and a sliding bar 5235 slidably arranged at the through groove 522 is also connected between the limiting block 5232 and the limiting plate 5234; when the spring 2 5233 is in a relaxed state, a plurality of pit pressing mechanisms 523 are closely attached to each other and close the lower end of the hollow cylinder 1 521. A chute 3 531 is provided on the inner wall of the hollow cylinder 1 521; the sowing member 53 includes a hollow cylinder 2 532 slidably arranged at the chute 3 531; by pressing down the hollow cylinder 2 532 to push the multiple pit pressing mechanisms 523 to the surroundings, the lower end of the hollow cylinder 1 521 can be opened. Seeds can be filled into the hollow cylinder 2 532 in advance, and then when the hollow cylinder 2 532 is pressed down and the lower end of the hollow cylinder 1 521 is opened, the seeds in the hollow cylinder 2 532 are sown into the soil pit, thereby combining the soil turning and sowing processes. On the one hand, the seeds can be accurately dropped into the center of the soil pit without manual calibration, which greatly improves the germination rate. On the other hand, it also avoids manual sowing, which reduces the labor burden of the staff.

[0030] To further illustrate, the upper ends of the multiple hollow cylinders 532 are commonly connected to a connecting plate 533, which can drive the multiple hollow cylinders 532 to be pressed down together at the same time, thereby improving the sowing efficiency; a spring 534 is connected between the lower end of the connecting plate 533 and the upper end of the connecting plate 1 51, and the spring 534 can drive the connecting plate 533 to rebound, thereby driving the multiple hollow cylinders 532 to reset at the same time, and then sealing the remaining seeds in the hollow cylinder 532, waiting for the next sowing.

[0031] The working principle of the utility model is as follows: when working, first fill soil into multiple nutrient pot bodies 2, and then fill a large number of clover seeds into multiple hollow cylinders 532 to complete the preparation work. Then push the slide plate 4 and drive the planting assembly 5 to the top of a vertical row of nutrient pot bodies 2, then press the connecting plate 1 51 downward to drive the pit pressing mechanism 523 to press the soil in the nutrient pot body 2 out of the soil pit, and after loosening the connecting plate 1 51, the spring 1 514 rebounds and drives the sliding column 513 to move up, thereby driving the connecting plate 1 51 to reset. Then, the connecting plate 2 533 is pressed downward, driving the plurality of hollow cylinders 2 532 to move downward along the corresponding chute 3 531 at the same time, so that the lower end of the hollow cylinder 2 532 squeezes the adjustment inclined surface on the limit block 5232, and pushes the plurality of pit pressing mechanisms 523 to the surroundings to squeeze the spring 2 5233, so that the lower end of the hollow cylinder 1 521 is opened, so that the seeds in the hollow cylinder 2 532 fall into the pressed soil pit, and then the spring 3 534 rebounds and drives the connecting plate 2 533 and the plurality of hollow cylinders 2 532 to move upward, so that the spring 2 5233 is not squeezed and rebounds to drive the pit pressing mechanism 523 to reset, and closes the lower end of the hollow cylinder 1 521, so as to seal the remaining seeds in the hollow cylinder 2 532, and wait for the next pit pressing. Then, the slide plate 4 is pushed again, driving the planting assembly 5 to move to the top of the nutrient pot body 2 of the next vertical column, and repeating the above process. Finally, soil is evenly sprinkled in the nutrient pot body 2 to cover the seeds, and the sowing is completed.

[0032] The implementation modes of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited thereto, and various changes can be made within the knowledge scope of technicians in the relevant technical field without departing from the purpose of the present invention.

Claims

1. A nutrient pot structure, characterized in that: include A base plate (1); two sides of the base plate (1) are symmetrically provided with a slide groove (3); slide plates (4) are slidably arranged in the slide grooves (3) on both sides; A plurality of nutrient pot bodies (2) uniformly arranged on a base plate (1); and a planting component (5) arranged on the two slide plates (4) for pressing the soil in the nutrient pot body (2) out of the soil pit and sowing seeds into the soil pit; The planting assembly (5) comprises a connecting plate (51) slidably arranged on two slide plates (4); A pit pressing member (52) is arranged on the connecting plate 1 (51) and is driven by the connecting plate 1 (51) to press the soil in the nutrient pot body (2) out of the soil pit; and a sowing member (53) which is slidably arranged on the pit pressing member (52) and cooperates with the pit pressing member (52) to sow seeds into the soil pit.

2. A nutrient pot structure according to claim 1, characterized in that: The two side slide plates (4) are both provided with a second slide groove (401); the first connecting plate (51) is slidably arranged at the second slide groove (401) up and down; and a plurality of groups of depression members (52) are evenly arranged on the first connecting plate (51) and correspond one by one to a plurality of nutrient pot bodies (2) located in a vertical row.

3. A nutrient pot structure according to claim 2, characterized in that: The pit pressing member (52) comprises a plurality of hollow cylinders (521) uniformly arranged on a connecting plate (51); a plurality of through grooves (522) are provided at the lower ends of the plurality of hollow cylinders (521); and a pit pressing mechanism (523) is slidably connected in the plurality of through grooves (522).

4. A nutrient pot structure according to claim 3, characterized in that: The pit pressing mechanism (523) is arranged in a circular array about the hollow cylinder (521).

5. A nutrient pot structure according to claim 4, characterized in that: The pit pressing mechanism (523) comprises a pit pressing plate (5231) arranged at the lower end of the hollow cylinder (521); a limiting block (5232) is arranged on one side of the pit pressing plate (5231) located inside the hollow cylinder (521), and a limiting plate (5234) is arranged on the side outside the hollow cylinder (521); an adjusting inclined surface is arranged on the side of the limiting block (5232) facing the central axis of the annular array, and a spring (5233) is connected between the limiting block (5232) and the hollow cylinder (521); a sliding bar (5235) slidably arranged at the through groove (522) is also connected between the limiting block (5232) and the limiting plate (5234); when the spring (5233) is in a relaxed state, the plurality of pit pressing mechanisms (523) are closely attached to each other and close the lower end of the hollow cylinder (521).

6. A nutrient pot structure according to claim 5, characterized in that: A sliding groove three (531) is provided on the inner wall of the hollow cylinder one (521); the sowing member (53) comprises a hollow cylinder two (532) which is slidably arranged on the sliding groove three (531) up and down; and the lower end of the hollow cylinder one (521) can be opened by pressing down the hollow cylinder two (532) to push the plurality of pit pressing mechanisms (523) to the surroundings.

7. A nutrient pot structure according to claim 6, characterized in that: The upper ends of the plurality of hollow cylinders 2 (532) are commonly connected to a connecting plate 2 (533); a spring 3 (534) is connected between the lower end of the connecting plate 2 (533) and the upper end of the connecting plate 1 (51).

8. A nutrient pot structure according to claim 2, characterized in that: The side walls of the two side slides (4) are connected to fixed plates (511); the upper ends of the two fixed plates (511) are connected to sleeves (512); the inner walls of the sleeves (512) are slidably connected to sliding columns (513); a spring (514) is connected between the fixed plates (511) and the sliding columns (513); and the upper ends of the sliding columns (513) are connected to connecting plate (51).

Citation Information

Patent Citations

  • A soil covering device for nutrient pots

    CN218851428U