Portable strawberry seedling transplanting device
By designing a portable strawberry seedling transplanting device, which utilizes a moist sponge and a stable positioning structure, the problem of water loss from the roots of strawberry seedlings is solved, enabling efficient transplanting and healthy growth of strawberry seedlings, and improving the survival rate and transplanting efficiency of strawberry seedlings.
Patent Information
- Application Number
- CN202520086811.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-15
AI Technical Summary
In the traditional strawberry seedling transplanting process, the roots of strawberry seedlings lose water quickly and lack effective moisture retention measures, resulting in decreased seedling vitality, prolonged transplant recovery period, and impact on yield and economic benefits.
A portable strawberry seedling transplanting device was designed, comprising a transplanting box, a top cover, a divider, a bottom gauze cover, and a sliding tray. The tray contains a moist sponge, and the sponge is stably positioned by the staggered divider and positioning pin structure. Combined with the design of ventilation holes and a carrying strap, it achieves precise moisturization and convenient operation.
It improves the humidity management of strawberry seedling roots, reduces the seedling recovery time, increases the survival rate, improves transplanting efficiency, reduces component wear, extends the life of the device, and ensures the healthy growth of strawberry seedlings during the transplanting process.
Smart Images

Figure CN223666783U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to strawberry seedling transplanting technical field, concretely is a portable strawberry seedling transplanting device. BACKGROUND
[0002] In modern agricultural production, the strawberry planting industry develops rapidly, and the strawberry seedling transplanting link plays a decisive role in the final yield and quality of strawberries. With the continuous expansion of planting scale, the demand for efficient and fine transplanting operation is increasing.
[0003] In the traditional strawberry seedling transplanting process, the temporary storage of strawberry seedlings is very simple, and common plastic baskets, buckets, or even direct piling of strawberry seedlings on the ground are used.
[0004] This kind of simple storage method lacks effective moisture retention measures, and the roots of strawberry seedlings are exposed to air for a long time, resulting in rapid water loss and easy water shortage and shrinkage. This not only weakens the vitality of strawberry seedlings, but also greatly prolongs the recovery period after transplanting, ultimately delays the marketing time of strawberry fruits and damages the economic benefits.
[0005] Therefore, the present application is proposed. UTILITY MODEL CONTENT
[0006] The utility model aims at providing a portable strawberry seedling transplanting device to solve the problems in the above background technology.
[0007] To solve the above technical problems, the utility model provides a portable strawberry seedling transplanting device, which comprises a transplanting box, a top cover rotatably connected to the transplanting box, a partition plate arranged in the transplanting box, a plurality of partition plates arranged at equal intervals, a bottom gauze arranged on the bottom surface of the partition plate, a tray slidably inserted into the transplanting box, the tray located below the bottom gauze, and a wet sponge arranged in the tray.
[0008] Further, a positioning groove is formed in the side surface of the tray, a positioning sleeve is arranged on the side surface of the transplanting box, a bolt is slidably connected in the positioning sleeve, and a spring is arranged between the bolt and the positioning sleeve.
[0009] Further, a pull tab is connected to the back surface of the bolt, and the two ends of the pull tab protrude from the side surface of the positioning sleeve.
[0010] Further, a chamfer is formed in the side surface of the bolt.
[0011] Further, a plurality of air holes are arranged in the top surface of the top cover in a circumferential array.
[0012] Further, the top surface of the top cover is rotatably connected with a rotating disc with damping, the rotating disc is provided with perforations, and the perforations are same in size and number with the air holes.
[0013] Further, the two sides of the transplanting box are rotatably provided with circular plates, and one end of a shoulder strap is fixedly connected to each of the two circular plates.
[0014] Further, the top end of the tray is provided with a limiting ring, the inner diameter of the limiting ring is smaller than the area of the sponge, the front surface of the tray is provided with a pull ring, and the pull ring is in a C shape.
[0015] Compared with the prior art, the beneficial effects of the portable strawberry seedling transplanting device are as follows:
[0016] In the utility model, the wet sponge in the tray can precisely and conveniently add moisture to the root area of the strawberry seedling, stably maintain the air humidity of the root of the strawberry seedling, is favorable for the seedling to adapt to a new environment, reduces the seedling recovery time, and improves the survival rate of the strawberry seedling transplanting. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a whole structure schematic view of the portable strawberry seedling transplanting device;
[0018] Figure 2 It is an internal structure schematic view of the portable strawberry seedling transplanting device;
[0019] Figure 3 It is a top cover structure schematic view of the portable strawberry seedling transplanting device;
[0020] Figure 4 It is a cross section structure schematic view of the portable strawberry seedling transplanting device.
[0021] In the drawing: 1, transplanting box; 101, partition plate; 102, bottom gauze; 2, tray; 201, positioning groove; 3, top cover; 301, air hole; 302, rotating disc; 303, perforation; 4, positioning sleeve; 401, bolt; 402, chamfer; 403, spring; 404, pull tab; 5, shoulder strap. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Apparently, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] Please refer to Figures 1-4 The utility model provides a technical scheme:
[0024] The portable strawberry seedling transplanting device comprises a transplanting box 1, a top cover 3 rotatably connected to the transplanting box 1, and a plurality of equally-spaced staggered partition plates 101 arranged in the transplanting box 1, wherein the bottom surface of each partition plate 101 is provided with a bottom-holding gauze 102.
[0025] A tray 2 is slidably inserted into the transplanting box 1 and located below the bottom-holding gauze 102, wherein the tray 2 is provided with a wet sponge, a limiting ring arranged at the top end of the tray 2, and a C-shaped pull ring arranged on the front surface of the tray 2.
[0026] The top cover 3 rotatably connected to the transplanting box 1 is opened, and the strawberry seedlings are placed one by one in the transplanting box 1.
[0027] The plurality of equally-spaced staggered partition plates 101 can divide the internal space of the transplanting box into a plurality of independent small compartments, so that each strawberry seedling can be properly placed without interference.
[0028] The bottom-holding gauze 102 is located below the partition plates 101 and serves to hold the root system of the strawberry seedlings to prevent the strawberry seedlings from falling to the lower side.
[0029] In the transplanting box 1, the tray 2 is slidably inserted below the bottom-holding gauze 102, and the wet sponge is placed in the tray 2.
[0030] The sponge is rich in water, which will slowly evaporate and diffuse upward, creating a humid air environment for the strawberry seedlings above, reducing water loss of the strawberry seedlings, and meeting the higher humidity requirement of the seedlings in the early growth stage.
[0031] The limiting ring can prevent the sponge from being pulled out of the top end of the tray 2 due to shaking or other external forces, thereby ensuring that the sponge is stably placed in the tray.
[0032] When it is necessary to replace the sponge or clean the tray 2, the user can easily pull out the tray 2 by grabbing the C-shaped pull ring, exerting force on the pull ring, and then inserting the tray back into the original position after completing the relevant operation.
[0033] The staggered partition plates 101 in combination with the bottom-holding gauze 102 can effectively protect the root system of the strawberry seedlings during the transplanting process, avoid the root system from being squeezed and collided during transportation and movement, and maximize the maintenance of the root system integrity, thereby laying a foundation for the subsequent vigorous growth of the seedlings.
[0034] Compared with the traditional large-area humidification method, the wet sponge in the tray 2 can precisely humidify the root area of the strawberry seedlings, stably maintain the air humidity of the root area of the strawberry seedlings, help the seedlings adapt to the new environment, reduce the hardening-off time, and improve the survival rate of the strawberry seedlings after transplanting.
[0035] The design of the pull ring makes it easy to extract and insert the tray 2, which facilitates the user to regularly replace the sponge and maintain good moisturizing effect.
[0036] Moreover, if the sponge is dirty due to long-term use, it can also be quickly removed and cleaned, which is simple to operate and saves time and effort.
[0037] The equidistant staggered layout of the partition plate 101 fully and reasonably utilizes the internal space of the transplanting box 1, allowing multiple strawberry seedlings to be transplanted at one time, suitable for batch transplanting operation, and improving the transplanting work efficiency.
[0038] Further, the side surface of the tray 2 is provided with a positioning groove 201, the side surface of the transplanting box 1 is provided with a positioning sleeve 4, a latch 401 is slidably connected in the positioning sleeve 4, and a spring 403 is arranged between the latch 401 and the positioning sleeve 4.
[0039] When the tray 2 containing the wet sponge is inserted into the transplanting box 1, the positioning groove 201 on the side surface of the tray 2 will gradually align with the positioning sleeve 4 on the side surface of the transplanting box 1 as the tray is pushed forward.
[0040] At this time, the latch 401 in the positioning sleeve 4 will automatically enter the positioning groove 201 under the elastic force of the spring 403, thereby firmly fixing the tray 2 at a specific position in the transplanting box 1.
[0041] When the spring 403 is in a natural stretched state, it provides a pushing force to the latch 401 in the direction of the positioning groove 201, ensuring stable engagement between the two.
[0042] When it is necessary to remove the tray 2, such as replacing the sponge or cleaning the tray, the user pulls the part connected to the latch 401 to overcome the elastic force of the spring 403 and make the latch 401 exit from the positioning groove 201.
[0043] At this time, the tray 2 is unlocked and can be easily extracted from the transplanting box 1 through the pull ring.
[0044] Through the cooperation between the positioning groove 201, the positioning sleeve 4, and the latch 401 and the spring 403, even if the transplanting device is jolted or shaken during daily use, the tray 2 can be stably positioned in the transplanting box 1, and will not be randomly displaced.
[0045] This can ensure that the sponge continuously and stably provides precise moisturizing effect for the strawberry seedlings and maintains a good transplanting environment.
[0046] The plug-in locking and unlocking mechanism is very easy to operate. When installing, the tray is simply inserted and automatically locked by the spring force.
[0047] When disassembling, the tray can be pulled out by overcoming the small spring resistance, without the need for complex tools, which facilitates the user's daily maintenance work such as replacing the sponge and cleaning the tray, saves time and effort.
[0048] The stable tray positioning design reduces the wear and tear of the tray 2 and the inside of the transplanting box 1 due to unnecessary shaking and friction, reduces component wear and tear, helps to extend the service life of the entire portable strawberry seedling transplanting device, and reduces planting costs in the long run.
[0049] Further, the back of the latch 401 is connected with a pull tab 404, and the two ends of the pull tab 404 protrude from the side of the positioning sleeve 4.
[0050] When the tray 2 is to be removed from the transplanting box 1, the latch 401 needs to be withdrawn from the positioning groove 201 of the tray 2 to release the locking of the tray.
[0051] At this time, the user pinches the pull tab 404 with his fingers, and the design that the two ends of the pull tab 404 protrude from the side of the positioning sleeve 4 allows the user to easily exert force.
[0052] After pinching the pull tab 404, pull it back, the pull tab 404 drives the latch 401 to slide backward in the positioning sleeve 4, overcoming the spring force of the spring 403, so that the latch 401 is separated from the positioning groove 201, and then the tray 2 is unlocked, facilitating the subsequent extraction of the tray.
[0053] When the tray 2 is to be removed from the transplanting box 1, the tray 2 is pushed along the slot, and when the positioning groove 201 is aligned with the positioning sleeve 4, the pull tab 404 is released, and the spring 403 automatically pushes the latch 401 back into the positioning groove 201, achieving the relocking of the tray 2.
[0054] The two ends of the pull tab 404 protrude from the side of the positioning sleeve 4, providing a convenient force point for the user, and the fingers can naturally and easily pinch the pull tab. Compared with directly pinching the small latch, it is easier to exert force, reduces the operation difficulty, and even users with small hand strength can smoothly pull the latch 401 to complete the unlocking.
[0055] Because the pull tab 404 protrudes, the user can clearly see the movement state of the pull tab and the latch during the pulling process, and clearly know whether the latch has completely exited the positioning groove 201, avoiding the situation that the device is damaged due to forcibly pulling the tray caused by misjudging the position of the latch, improving the precision and safety of the operation.
[0056] Further, the side of the latch 401 is provided with a chamfer 402.
[0057] In the process of inserting the tray 2 into the transplanting box 1, the positioning groove 201 on the side of the tray 2 gradually approaches the latch 401.
[0058] Since the latch 401 is provided with a chamfer 402 on the side, when the edge of the positioning groove 201 touches the latch 401, the chamfer 402 plays a guiding role, guiding the latch 401 to gradually slide into the positioning sleeve 4 along the slope surface of the chamfer, compressing the spring 403.
[0059] Until the positioning groove 201 is completely aligned with the latch 401, the spring 403 pops the latch 401 into the positioning groove 201, completing the locking of the tray 2.
[0060] When the tray 2 is pulled out, the chamfer 402 allows the latch 401 to exit the positioning groove 201 more smoothly, reducing jamming.
[0061] The chamfer 402 makes the contact process between the latch 401 and the positioning groove 201 more gentle, avoiding scratches and wear between the two due to hard impact.
[0062] In the long run, it can maintain the good fit between the latch 401 and the positioning groove 201, reduce the risk of positioning failure caused by component wear, prolong the service life of the device, and reduce maintenance costs.
[0063] In daily use scenarios, whether it is to install or disassemble the tray 2, the chamfer 402 makes the operation more easy and smooth.
[0064] The user does not need to spend extra effort to accurately align the latch 401 and the positioning groove 201, and can smoothly complete the locking or unlocking by relying on the guidance of the chamfer, improving the operation efficiency, especially when transplanting strawberry seedlings in batches, and frequently plugging and unplugging the tray, the advantage is more obvious.
[0065] The smooth plugging and unplugging process can ensure that the latch 401 is accurately and accurately inserted into the positioning groove 201 each time, so that the tray 2 is more stably positioned in the transplanting box 1.
[0066] The stable tray helps to maintain the position of the wet sponge below, thereby continuously and stably providing suitable humidity for the strawberry seedlings, ensuring the growth environment of the strawberry seedlings after transplanting.
[0067] Further, the top surface of the top cover 3 is provided with a plurality of air holes 301 arranged in a circumferential array.
[0068] After the strawberry seedlings are transplanted into the transplanting box 1, as time goes by, the strawberry seedlings will continue to carry out respiration, consuming oxygen and producing carbon dioxide.
[0069] The plurality of air vents 301 distributed in a circumferential array on the top surface of the top cover 3 provide a channel for gas exchange between the inside of the transplanting box 1 and the outside environment, so that fresh air from the outside can enter the transplanting box along the air vents 301 to supplement oxygen for the strawberry seedlings;
[0070] At the same time, carbon dioxide generated by the strawberry seedlings in the box through respiration can also be discharged to the outside through the air vents 301, maintaining the relative stability of the air composition in the box.
[0071] The air vents 301 can fully meet the oxygen demand of the strawberry seedlings through respiration, avoiding the situation that the strawberry seedlings are blocked in respiration due to lack of oxygen in the transplanting box, resulting in poor growth or even death of the strawberry seedlings, thereby effectively ensuring the normal growth of the strawberry seedlings in the relatively fragile early stage of transplanting.
[0072] The circulation of air not only concerns the exchange of gas composition, but also plays an auxiliary role in temperature and humidity regulation.
[0073] Moderate ventilation can prevent the humidity in the transplanting box from being too high, avoiding the growth of mold due to excessive accumulation of water vapor, which endangers the health of the strawberry seedling roots;
[0074] It is also helpful to balance the temperature in the box, so that it will not produce excessive accumulated temperature due to the closed environment, and create a more suitable growth microenvironment for the strawberry seedlings.
[0075] Further, the top surface of the top cover 3 is dampedly connected with a rotating disc 302, and the rotating disc 302 is provided with perforations 303.
[0076] The air vents 301 on the top cover 3 provide a basic gas exchange channel between the inside of the transplanting box and the outside.
[0077] And the rotating disc 302 dampedly connected with the top surface is provided with perforations 303 which are the same in number and size as the air vents 301.
[0078] When it is necessary to adjust the ventilation volume in the transplanting box, the rotating disc 302 is manually rotated to change the overlapping area of the perforations 303 and the air vents 301.
[0079] For example, the perforations 303 and the air vents 301 are completely overlapped, at this time the ventilation volume reaches the maximum, and the outside air can smoothly enter and exit the transplanting box;
[0080] If the rotating disc 302 is rotated by a certain angle, the perforations 303 and the air vents 301 are partially overlapped, and the ventilation volume is correspondingly reduced;
[0081] When the perforations 303 and the air vents 301 are completely misaligned, the ventilation volume is almost zero, and the transplanting box is almost in a closed state.
[0082] Since it is a damping rotary connection, the rotary disc 302 can be stably maintained in the current state after being adjusted to the position and will not rotate at will.
[0083] Further, the two sides of the transplanting box 1 are rotatably provided with circular plates, and one end of the shoulder strap 5 is fixedly connected to the two circular plates respectively.
[0084] When the strawberry seedling transplanting device needs to be carried, the two ends of the shoulder strap 5 are fixedly connected to the rotatable circular plates on the two sides of the transplanting box 1.
[0085] Since the circular plate can rotate flexibly, the user can easily adjust the angle and length of the shoulder strap 5 according to his own carrying habits and comfort, and then hang the shoulder strap on the shoulder to bear the weight of the transplanting device, realizing the carrying movement.
[0086] In different action postures such as walking, bending over, and standing up, the shoulder strap 5 and the circular plate are rotatably connected, can real-time comply with the angle change generated by the human body action, automatically adjust the stress direction of the shoulder strap, avoid the shoulder strap from being excessively twisted and tightened, and maintain a more comfortable carrying experience.
Claims
1. A portable strawberry seedling transplanting device comprising a transplanting box (1), a top cover (3) is rotatably connected on the transplanting box (1), characterized in that: The transplanting box (1) is provided with a partition plate (101), the partition plate (101) is staggered and arranged at equal intervals, the bottom surface of the partition plate (101) is provided with a bottom gauze (102), the tray (2) is slidably inserted into the transplanting box (1), the tray (2) is located below the bottom gauze (102), and the tray (2) is provided with a wet sponge.
2. A portable strawberry seedling transplanting device according to claim 1, characterized in that: The side surface of the tray (2) is provided with a positioning groove (201), the side surface of the transplanting box (1) is provided with a positioning sleeve (4), the positioning sleeve (4) is slidably connected with a latch (401), and the latch (401) and the positioning sleeve (4) are provided with a spring (403).
3. A portable strawberry plant transplanting device as claimed in claim 2, characterized in that: The back surface of the latch (401) is connected with a pull tab (404), and the both ends of the pull tab (404) protrude from the side surface of the positioning sleeve (4).
4. A portable strawberry plant transplanting device as claimed in claim 3, characterized in that: The side surface of the latch (401) is provided with a chamfer (402).
5. A portable strawberry plant transplanting device as claimed in claim 4, characterized in that: The top surface of the top cover (3) is provided with a ventilation hole (301), and the ventilation hole (301) is arranged in a circumferential array.
6. A portable strawberry plant transplanting device as claimed in claim 5, characterized in that: The top surface of the top cover (3) is rotatably connected with a rotating disc (302), the rotating disc (302) is provided with a perforation (303), and the perforation (303) is the same in size and number as the ventilation hole (301).
7. A portable strawberry plant transplanting device as claimed in claim 6, characterized in that: Both sides of the transplanting box (1) are rotatably provided with circular plates, and one end of a shoulder strap (5) is fixedly connected to the two circular plates.
8. A portable strawberry plant transplanting device as claimed in claim 7, characterized in that: The top end of the tray (2) is provided with a limiting ring, the inner diameter of the limiting ring is smaller than the area of the sponge, the front surface of the tray (2) is provided with a pull ring, and the pull ring is in a C shape.