High-efficiency live-keeping transplanting device for garden plants

By designing a transplanting tool with adjustable soil extraction depth and angle, the problems of uncontrollable soil extraction depth and fixed operating rod angle in existing technologies have been solved, realizing efficient and flexible transplanting of garden plants, improving survival rate and ease of use.

CN224482140UActive Publication Date: 2026-07-14赵坤
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
赵坤
Filing Date
2025-08-08
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

Existing garden plant transplanting devices cannot accurately control the soil extraction depth, which can easily damage the root system or carry too much soil. Furthermore, the angle of the operating rod cannot be adjusted, resulting in low survival rates and inconvenience in use.

Method used

A highly efficient transplanting tool for ensuring survival was designed, comprising a transplanting component and a holding component. The transplanting component can control the soil removal depth and adapt to different plant specifications, while the holding component can be freely adjusted in angle to ensure that the amount of soil removed is appropriate and easy to operate.

Benefits of technology

It enables efficient transplanting and improves survival rate without damaging plant roots, flexibly adapts to the transplanting needs of different plants, and improves the flexibility and practicality of operation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224482140U_ABST
    Figure CN224482140U_ABST
Patent Text Reader

Abstract

The utility model provides a kind of for the efficient live-keeping transplanting appliance of garden plant transplanting, it is related to garden plant transplanting field, and it includes: taking and placing cylinder, the taking and placing cylinder fixed mounting is kept in the bottom of holder, transplanting component can realize the transplanting operation to garden plant, and transplanting component can control the depth of soil taking, can be regulated according to the transplanting specification of different plants, guarantee that the amount of soil taking is moderate in the appropriate range, while not damaging plant root system, also can take the appropriate amount of soil together with transplanting, guarantee the survival rate of the transplanting of plant, and the use angle of holding component can be freely regulated, to adapt to different transplanting use demand, also realize the demand of efficient transplanting, solve the depth of soil taking when transplanting of existing garden plant transplanting device cannot be controlled, soil taking is too shallow and easily reduces the survival rate of plant, and the use angle of operating lever cannot be adjusted, inconveniently suit into higher plant and carry out transplanting operation problem.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of garden plant transplanting technology, and in particular to a highly efficient survival-preserving transplanting device for garden plants. Background Technology

[0002] In the cultivation of garden plants, seedlings or rare varieties are initially weak and need to be kept in a greenhouse with controlled temperature, humidity, and light to promote their survival. Once the plants have grown stably and developed the resistance to adapt to the natural environment, they can be transplanted to garden areas. This not only improves the survival rate of plants and ensures the effect of landscaping, but also achieves a smooth transition of plants from artificial protection to natural growth. For example, patent application number CN202421223873.4 discloses a plant transplanting device, which relates to the field of transplanter technology. It includes a handle, a rod, a frame, a cylindrical body, and a soil unloading mechanism. The cylindrical body is installed on the frame. The soil unloading mechanism includes a sliding frame and a soil unloading ring. The sliding frame can move up and down along the frame. The soil unloading ring is divided into two parts, which are connected to the sliding frame by connecting rods. The connecting rods can be adjusted on the sliding frame to adjust the distance between the two parts of the soil unloading ring. The soil unloading ring is located in the cylindrical body. A soil unloading foot is installed on the sliding frame. By setting up a soil-removing ring, the problem of soil not being easily discharged after digging holes is solved, improving work efficiency. In addition, the soil-removing ring is equipped with adjustable holes for the leaves of seedlings to pass through, avoiding the seedlings being squeezed when picking them up. After the seedling is moved into the hole, the soil-removing foot pedal is stepped on to push the soil-removing ring out and leave the seedling in the hole, completing the transplanting. This realizes the function of directly picking up and placing seedlings using a transplanter.

[0003] The existing garden plant transplanting devices described above have the following disadvantages when in use:

[0004] 1. The depth of soil removal during transplanting cannot be controlled and can only be judged by the experience of workers. If the soil is removed too shallowly, it will easily damage the plant roots and reduce the survival rate. If the soil is removed too deep, the plant will carry too much soil, making it inconvenient to carry and move. The labor intensity is high and the flexibility is poor.

[0005] 2. The operating lever cannot be adjusted in angle and is generally parallel to the soil sampling tube, making it inconvenient to insert taller plants for transplanting. This makes it cumbersome to use and inefficient. Utility Model Content

[0006] This utility model relates to a highly efficient transplanting tool for garden plants, which includes a transplanting component and a holding component. The transplanting component enables the transplanting of garden plants and can control the soil extraction depth. It can be adjusted according to the transplanting specifications of different plants to ensure that the amount of soil extracted is moderate and within an appropriate range. While not damaging the plant's root system, it can also extract an appropriate amount of soil for transplanting, ensuring the survival rate of the transplanted plants. The angle of use of the holding component can be freely adjusted to adapt to different transplanting needs, and it also achieves the requirement of efficient transplanting. It is highly flexible, adaptable, and practical.

[0007] This utility model provides a highly efficient survival-preserving transplanting tool for garden plants, specifically including: a transplanting component and a holding component; the transplanting component includes a retaining frame, a pick-and-place cylinder, a soil-pressing plate, a positioning rod, and a limiting block. The pick-and-place cylinder is fixedly installed at the bottom of the retaining frame, and the soil-pressing plate is inserted into the inside of the pick-and-place cylinder. The soil-pressing plate is also inserted into the side of the retaining frame. The positioning rod is rotatably connected to the inside of the retaining frame, and the limiting block is inserted into the inside of the retaining frame; the holding component includes a holding rod and a positioning shaft. The holding rod is rotatably connected to the top of the retaining frame, and the positioning shaft is inserted into the rotating shaft of the holding rod.

[0008] Furthermore, the positioning rod has threads on its outer surface, and the positioning rod is screwed into the inside of the limiting block through the rod's threads.

[0009] Furthermore, the top of the soil-pressing plate is provided with a soil-unloading tread and a blocking block, and the blocking block is located directly below the limiting block.

[0010] Furthermore, the positioning shaft is provided with a positioning tension spring inside, and the two ends of the positioning tension spring are respectively fixedly connected inside the positioning shaft and inside the rotating shaft of the grip rod.

[0011] Furthermore, a synchronization block is provided on the outside of the positioning shaft, and a synchronization groove is provided inside the rotating shaft of the gripping rod, with the synchronization block inserted into the inside of the synchronization groove.

[0012] Furthermore, the top of the retainer is provided with a positioning tooth groove, and the top of the synchronizing block is provided with a positioning tooth block. Under the action of the positioning tension spring, when the positioning shaft is not pulled by an external force, the positioning tooth block is inserted into the inside of the positioning tooth groove.

[0013] This utility model provides a highly efficient transplanting tool for preserving the survival of garden plants, which has the following beneficial effects:

[0014] The transplanting assembly enables the transplanting of garden plants and allows for control over the soil extraction depth. It can be adjusted according to the transplanting specifications of different plants to ensure that the amount of soil extracted is moderate and within an appropriate range. While not damaging the plant's root system, it can also extract an appropriate amount of soil for transplanting, ensuring the survival rate of the transplanted plants. Furthermore, the angle of use of the assembly can be freely adjusted to adapt to different transplanting needs, while also achieving the goal of efficient transplanting. This improves the flexibility, adaptability, and practicality of the device. Attached Figure Description

[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.

[0016] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the scope of the present invention.

[0017] In the attached diagram:

[0018] Figure 1 A schematic diagram of the structure of this utility model is shown.

[0019] Figure 2 A schematic diagram of the internal structure of this utility model is shown.

[0020] Figure 3 This utility model is shown Figure 2 Enlarged structural diagram of part A in the middle.

[0021] Figure 4 This diagram shows the internal structure of the present invention when the maximum soil extraction depth is reached during transplanting.

[0022] Figure 5 This invention demonstrates the pulling action of the present invention. Figure 2 A schematic diagram of the internal structure of the center positioning axis.

[0023] Figure 6 This utility model is shown Figure 5 Enlarged structural diagram of part B in the middle.

[0024] Figure 7 This invention illustrates the internal structure of the plant during transplantation.

[0025] List of reference numerals

[0026] 1. Transplanting assembly; 101. Retainer; 1011. Positioning toothed groove; 102. Pick-up and drop tube; 103. Soil compaction plate; 1031. Soil unloading tread plate; 1032. Blocking block; 104. Positioning rod; 105. Limiting block;

[0027] 2. Grip assembly; 201. Grip rod; 2011. Synchronization groove; 202. Positioning shaft; 2021. Positioning tension spring; 2022. Synchronization block; 2023. Positioning tooth block. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0029] Please refer to Figures 1 to 7 Example 1:

[0030] This utility model proposes a highly efficient survival-preserving transplanting tool for garden plants, comprising: a transplanting component 1 and a holding component 2; the transplanting component 1 includes a retainer 101, a pick-and-place cylinder 102, a soil-pressing plate 103, a positioning rod 104, and a limiting block 105. The pick-and-place cylinder 102 is fixedly installed at the bottom of the retainer 101, and the soil-pressing plate 103 is inserted into the inside of the pick-and-place cylinder 102 and the side of the retainer 101. The positioning rod 104 is rotatably connected to the inside of the retainer 101, and the limiting block 105 is inserted into the inside of the retainer 101; the holding component 2 includes a holding rod 201 and a positioning shaft 202. The holding rod 201 is rotatably connected to the top of the retainer 101, and the positioning shaft 202 is inserted into the rotating shaft of the holding rod 201.

[0031] The top of the soil-pressing plate 103 is equipped with a soil-discharging tread plate 1031 and a blocking block 1032, with the blocking block 1032 located directly below the limiting block 105. In use, when transplanting plants, the pick-and-place cylinder 102 is inserted into the plant rootstock through the side notch. By stepping on the bottom frame of the retainer 101, the pick-and-place cylinder 102 can be moved downwards and penetrate into the soil, collecting the plant and the soil around the plant roots. Afterwards, by holding the handle 201 and tilting the transplanting component 1 upwards, the plant and the soil around the plant roots can be collected. During the plant collection process, the soil will resist and squeeze the soil-pressing plate 103, causing it to move upwards inside the pick-and-place cylinder 102. Thus, when it is necessary to transplant the plant into the dug pit, simply stepping on the soil-discharging tread plate 1031 will allow the soil-pressing plate 103 to unload the plant and soil inside the pick-and-place cylinder 102, realizing the transplanting operation. It is convenient, flexible, and has high transplanting efficiency.

[0032] The positioning rod 104 has threads on its outer surface and is screwed into the limiting block 105 via these threads. During use, the limiting block 105 restricts the soil-digging depth of the transplanting assembly 1. When the picking and placing cylinder 102 moves downwards and penetrates the soil to reach the desired depth, the blocking block 1032 abuts against the bottom of the limiting block 105, preventing the soil-pressing plate 103 from moving upwards inside the picking and placing cylinder 102. Consequently, the picking and placing cylinder 102 cannot penetrate further into the soil, thus limiting the depth of the picking and placing cylinder. The depth to which the 102 penetrates the soil and the position of the limiting block 105 can be freely adjusted, that is, the maximum depth to which the 102 penetrates the soil can be adjusted. When the positioning rod 104 is rotated, it can drive the limiting block 105 to move up and down through the rod thread to change the position. The change in the position of the limiting block 105 changes the maximum depth to which the 102 penetrates the soil when the blocking block 1032 abuts against the bottom of the limiting block 105. The adjustment is convenient and flexible, and can adapt to the soil taking specifications for transplanting different plants. It has strong adaptability and flexibility.

[0033] The working principle of this embodiment is as follows: When transplanting plants, the pick-and-place cylinder 102 is inserted into the plant's rootstock through the side notch. By stepping on the bottom frame of the retainer 101, the pick-and-place cylinder 102 moves downwards and penetrates into the soil, collecting the plant and the soil around its roots. Then, by holding the lever 201 and tilting the transplanting component 1 upwards, the plant and the soil around its roots can be collected. During the plant collection process, the soil will press against and compress the soil-pressing plate 103, causing it to move upwards inside the pick-and-place cylinder 102. Therefore, when it is necessary to transplant the plant into the prepared pit, simply stepping on the soil-removing plate 1031 will cause the soil-pressing plate 103 to remove the plant and soil from inside the pick-and-place cylinder 102, thus completing the transplanting operation. The limiting block 105 can limit the soil-collecting depth of the transplanting component 1. When the take-up and put-down cylinder 102 moves downward and penetrates into the soil to reach the soil-taking depth, the blocking block 1032 will abut against the bottom of the limiting block 105, preventing the soil-pressing plate 103 from moving upward inside the take-up and put-down cylinder 102. Thus, the take-up and put-down cylinder 102 cannot penetrate into the soil further, limiting the depth of the take-up and put-down cylinder 102 into the soil. The position of the limiting block 105 can be freely adjusted, that is, the maximum depth of the take-up and put-down cylinder 102 into the soil can be adjusted. When the positioning rod 104 is rotated, it can drive the limiting block 105 up and down to change its position through the screw thread of the rod body. The change of the position of the limiting block 105 changes the maximum depth of the take-up and put-down cylinder 102 into the soil when the blocking block 1032 abuts against the bottom of the limiting block 105. The adjustment is convenient and flexible and can adapt to the soil-taking specifications for transplanting different plants.

[0034] Example 2: Based on Example 1, a positioning spring 2021 is provided inside the positioning shaft 202, and the two ends of the positioning spring 2021 are fixedly connected to the inside of the positioning shaft 202 and the inside of the rotating shaft of the grip rod 201, respectively.

[0035] The positioning shaft 202 has a synchronization block 2022 on its exterior, and the gripping rod 201 has a synchronization groove 2011 inside its rotating shaft. The synchronization block 2022 is inserted into the synchronization groove 2011. The top of the retainer 101 has a positioning tooth groove 1011, and the top of the synchronization block 2022 has a positioning tooth block 2023. Under the action of the positioning spring 2021, when the positioning shaft 202 is not pulled by external force, the positioning tooth block 2023 is inserted into the positioning tooth groove 1011. In use, the angle of the gripping rod 201 can also be freely adjusted to meet the needs of quickly inserting plants of different heights into the transplanting component 1. When the positioning shaft 202 is not pulled by external force, the positioning tooth block 2023 is inserted into the positioning tooth groove 101 under the action of the positioning spring 2021. Inside the cage 101, the operating angle of the grip lever 201 is locked, preventing it from rotating freely on top of the cage 101, ensuring stable operation. When adjusting the operating angle of the grip lever 201, simply pull the positioning shaft 202 and then rotate the grip lever 201. When the positioning shaft 202 is pulled out, the positioning tooth block 2023 disengages from the positioning tooth groove 1011, allowing the grip lever 201 to rotate freely thereafter. As the grip lever 201 rotates, the synchronization groove 2011 drives the positioning shaft 202 to rotate synchronously via the synchronization block 2022. After the grip lever 201 is adjusted to the appropriate angle, releasing the positioning shaft 202 causes it to automatically reset under the action of the positioning tension spring 2021, locking the operating angle of the grip lever 201 again. This provides convenient adjustment and flexible operation.

[0036] The working principle of this embodiment is as follows: The angle of the gripping rod 201 can be freely adjusted to adapt to the needs of quickly inserting plants of different heights into the transplanting component 1. When the positioning shaft 202 is not pulled by external force, the positioning tooth block 2023 is inserted into the positioning tooth groove 1011 under the action of the positioning tension spring 2021, locking the angle of the gripping rod 201. This prevents the gripping rod 201 from rotating freely on the top of the retainer 101, ensuring stable use. When it is necessary to adjust the angle of the gripping rod 201, simply pull... After positioning the shaft 202, rotate the grip rod 201. When the positioning shaft 202 is pulled out, the positioning tooth block 2023 disengages from the inside of the positioning tooth groove 1011, allowing the grip rod 201 to rotate freely. When the grip rod 201 rotates, the synchronous groove 2011 can drive the positioning shaft 202 to rotate synchronously through the synchronous block 2022. After the grip rod 201 is adjusted to a suitable angle, release the positioning shaft 202. Under the action of the positioning tension spring 2021, the positioning shaft 202 automatically resets, locking the use angle of the grip rod 201 again.

Claims

1. A highly efficient transplanting tool for preserving the survival of garden plants, characterized in that, include: Transplanting assembly (1) and holding assembly (2); the transplanting assembly (1) includes a retainer (101), a pick-and-place cylinder (102), a soil pressing plate (103), a positioning rod (104) and a limiting block (105). The pick-and-place cylinder (102) is fixedly installed at the bottom of the retainer (101), and the soil pressing plate (103) is inserted into the inside of the pick-and-place cylinder (102). The soil pressing plate (103) is inserted into the side of the retainer (101). The positioning rod (104) is rotatably connected to the inside of the retainer (101), and the limiting block (105) is inserted into the inside of the retainer (101). The holding assembly (2) includes a holding rod (201) and a positioning shaft (202). The holding rod (201) is rotatably connected to the top of the retainer (101), and the positioning shaft (202) is inserted into the rotating shaft of the holding rod (201).

2. The high-efficiency survival-preserving transplanting tool for garden plants according to claim 1, characterized in that, The positioning rod (104) has threads on its outer surface, and the positioning rod (104) is screwed into the inside of the limiting block (105) through the rod thread.

3. The high-efficiency survival-preserving transplanting tool for garden plants according to claim 2, characterized in that, The top of the soil compaction plate (103) is provided with a soil unloading tread plate (1031) and a blocking block (1032), and the blocking block (1032) is located directly below the limiting block (105).

4. The high-efficiency survival-preserving transplanting tool for garden plants according to claim 3, characterized in that, The positioning shaft (202) is provided with a positioning tension spring (2021) inside, and the two ends of the positioning tension spring (2021) are respectively fixedly connected to the inside of the positioning shaft (202) and the inside of the rotating shaft of the grip rod (201).

5. A high-efficiency survival-preserving transplanting tool for garden plants according to claim 4, characterized in that, The positioning shaft (202) has a synchronization block (2022) on its outside, and the gripping rod (201) has a synchronization groove (2011) inside its rotating shaft, with the synchronization block (2022) inserted into the synchronization groove (2011).

6. The high-efficiency survival-preserving transplanting tool for garden plants according to claim 5, characterized in that, The top of the retainer (101) is provided with a positioning tooth groove (1011), and the top of the synchronizing block (2022) is provided with a positioning tooth block (2023). Under the action of the positioning tension spring (2021), when the positioning shaft (202) is not pulled by external force, the positioning tooth block (2023) is inserted into the inside of the positioning tooth groove (1011).

Citation Information

Patent Citations

  • Plant transplanting device

    CN222366626U