A portable water-retaining device for seedling transplanting

By designing a portable seedling transplant water retention device, the problems of water retention and protection during seedling transfer were solved, achieving seedling safety and convenience, avoiding damage to branches and soil erosion, and providing a breathable and open transport space.

CN224571936UActive Publication Date: 2026-07-31赵露莹
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
赵露莹
Filing Date
2025-09-10
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing seedling transfer tools are not convenient for water retention, maintenance, and protection, and can easily cause damage to delicate branches and soil erosion, affecting the safety and convenience of seedlings.

Method used

A portable seedling transplanting water retention device was designed, including a detachable pot and a carrying unit. The pot is bowl-shaped with support holes and a handle, which can evenly separate the seedlings, provide open space, and slow down evaporation through the cover plate. The carrying unit collects excess water flow, ensuring water retention and safety of the seedling roots.

Benefits of technology

It protects the branches of seedlings during the transfer process, preventing breakage and soil erosion, ensuring the convenience and safety of the seedlings, providing a breathable environment, and preventing pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a portable seedling transplanting water retention device, belonging to the field of seedling transplanting. The device includes a pot for supporting the seedling and surrounding and protecting its root system, and a transport unit for moving the pot. The pot and transport unit are detachable. The pot is bowl-shaped, and the transport unit has several linearly arrayed support holes adapted to the pot. The pot is inserted into these support holes. Two symmetrically distributed handles are fixedly installed on the pot at the edge of its opening. Symmetrically distributed grips are located at both ends of the transport unit. A shielding part is provided at the opening of the pot. This water retention device facilitates the transfer of multiple seedlings, provides an open transport space, and retains water after transplanting, preventing soil erosion and ensuring nourishment of the seedling roots during transport. Thus, it retains water while ensuring the convenience and safety of transferring valuable seedlings.
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Description

Technical Field

[0001] This application relates to the field of seedling transplantation technology, specifically a portable seedling transplantation water retention device. Background Technology

[0002] Tree transplanting, also known as replanting, refers to the process of digging up seedlings from their original growing location (such as a nursery, in the wild, or in other containers), treating them appropriately (such as pruning and wrapping), and then replanting them in a new, predetermined location (such as a park, green space, courtyard, or roadside). Its fundamental purpose is to change the seedlings' growing environment to meet the needs of landscaping, forestry production, landscaping, or ecological restoration.

[0003] When transplanting precious seedlings, they usually need to be transported over long distances to the designated location. During the transfer, the existing technology protects the seedlings by wrapping them, which can cause damage to the delicate branches. It also fails to provide open space for the seedlings, making the transfer operation inconvenient and making it difficult to retain water and maintain the seedling roots.

[0004] Therefore, this application provides a portable water-retaining device for seedling transplantation to solve the above-mentioned problems. Utility Model Content

[0005] This application provides a portable seedling transplanting water retention device, which aims to solve the problems mentioned in the background art, such as the difficulty of existing seedling transfer tools in conveniently retaining water and protecting seedlings.

[0006] To achieve the above objectives, this application provides the following technical solution: a portable seedling transplanting water retention device, comprising a pot for supporting the seedling and surrounding and protecting the seedling root system, and a transport unit for moving the pot: The pot and transport unit are detachable. The pot is bowl-shaped, and the transport unit has several linearly arrayed support holes adapted to the pot. The pot is inserted into the support holes. Two symmetrically distributed handles are fixedly installed on the pot at the edge of the opening. The transport unit has symmetrically distributed grips at both ends. The pot has a shield at the opening. In this way, when using the pot, the precious seedling to be transplanted is placed into the pot, and then the pot is placed into the support holes on the transport unit, evenly separating the pots and preventing the branches of the precious seedlings from crushing and breaking during transportation. During transfer and transport, the pots can be manually moved by the handles for easy transfer of a single seedling, and the transport unit can be manually moved by the grips for easy transfer of multiple seedlings, providing an open transport space for the seedlings. Furthermore, the pot can retain water after transplanting, preventing soil erosion and ensuring nourishment of the seedling roots during transportation. Thus, it retains water while ensuring the convenience and safety of transferring precious seedlings.

[0007] Preferably, in order to reduce evaporation, the shielding part includes two symmetrically distributed cover plates adapted to the opening of the pot, and the cover plates have a relief groove at the center position adapted to the main trunk of the seedling, so as to slow down the evaporation and water loss.

[0008] Preferably, to facilitate fixing the cover plate, two symmetrically distributed support plates are fixedly installed on the inner side wall of the basin near the handle. T-shaped protrusions are fixedly installed on the support plates, and shrinkage grooves are vertically opened on the protrusions. The cover plate has insertion holes that are adapted to the protrusions. The cover plate is inserted into the protrusions. A pull rod is fixedly installed on the cover plate. The cover plate can be disassembled by pulling the pull rod, which is convenient for operation.

[0009] Preferably, in order to ensure air permeability, the pot body is provided with a number of evenly distributed first flow holes, and the cover plate is provided with a number of evenly distributed second flow holes, thereby ensuring the health of the seedling root system.

[0010] Preferably, for easy cleaning, a frame-shaped support is fixedly installed on the transport unit, the basin is attached to the support, and a viewing window is provided on the outer wall of the support to visually observe the water overflow and clean it in a timely manner.

[0011] This water-retaining device involves planting the precious seedlings to be transplanted into pots, which are then placed into the support holes on the transport unit. This evenly separates the pots, preventing the branches of the precious seedlings from crushing and breaking during transport. During transfer and handling, the pots can be manually moved by the handles for easy transfer of single seedlings, while the transport unit can be manually moved by the handles for easy transfer of multiple seedlings. It provides an open transport space for the seedlings. Furthermore, the pots can retain water after transplanting, preventing soil erosion and ensuring the nourishment of the seedling roots during transport. Thus, it retains water while ensuring the convenience and safety of transferring precious seedlings.

[0012] This water retention device supports the basin with a lifting section, and excess water flowing out of the basin is retained in the lifting section to prevent contamination of the transport vehicle. The viewing window ensures ventilation at the bottom of the basin while also allowing for direct observation of water overflow for timely cleaning. Attached Figure Description

[0013] Figure 1 A schematic diagram of the external structure of a portable seedling transplant water retention device; Figure 2 A schematic diagram of the pot structure for a portable seedling transplant water retention device; Figure 3 A schematic cross-sectional view of a portable seedling transplant water retention device; Figure 4 for Figure 3 Enlarged diagram of point A in the middle.

[0014] In the picture: 1. Basin body; 11. Handle; 12. Shelter; 121. Cover plate; 122. Relief groove; 123. Support plate; 124. Protruding post; 125. Shrinkage groove; 126. Insertion hole; 127. Pull rod; 13. First flow hole; 14. Second flow hole; 2. Transport part; 21. Support hole; 22. Handle; 23. Lifting part; 24. Viewing window. Detailed Implementation

[0015] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0016] Example 1 This embodiment provides a portable water retention device for seedling transplanting, such as... Figure 1-4 As shown, the water-retaining device includes a pot 1 for supporting the seedlings and surrounding and protecting their root system, and a transport unit 2 for moving the pot 1. The basin 1 and the transport part 2 are detachable. The basin 1 is bowl-shaped. The transport part 2 has several support holes 21 arranged in a linear array to fit the basin 1. The basin 1 is inserted into the support holes 21. Two symmetrically distributed handles 11 are fixedly installed on the basin 1 at the edge of the opening. The transport part 2 has symmetrically distributed grips 22 at both ends. The basin 1 has a shielding part 12 at the opening.

[0017] When in use, the precious seedlings to be transplanted are placed into the pot 1, and then the pot 1 is placed into the support hole 21 on the transport unit 2 to evenly separate each pot 1, so as to avoid the branches of the precious seedlings from crushing each other and breaking during the transportation process. During the transfer and transportation, the pot 1 is manually moved by the handle 11 to facilitate the transfer of a single seedling, and the transport unit 2 is manually moved by the grip 22 to facilitate the transfer of multiple seedlings, providing an open transport space for the seedlings. In addition, the pot 1 can retain water after transplanting to prevent soil erosion and ensure that the seedling roots are nourished during the transportation process, thus ensuring the convenience and safety of transferring precious seedlings while retaining water.

[0018] Specifically, the shielding part 12 includes two symmetrically distributed cover plates 121 that are adapted to the opening of the pot body 1. The cover plates 121 have a relief groove 122 at the center position that is adapted to the main trunk of the seedling.

[0019] When in use, the two cover plates 121 are clipped onto the top of the pot body 1. The relief groove 122 is set around the main trunk of the seedling so that the two cover plates 121 completely cover the top of the pot body 1 after they are closed, which can block the soil in the pot body 1, prevent soil loss, and also prevent direct sunlight and slow down evaporation and water loss.

[0020] More specifically, two symmetrically distributed support plates 123 are fixedly installed on the inner side wall of the basin 1 near the handle 11. A T-shaped protrusion 124 is fixedly installed on the support plate 123. A shrinkage groove 125 is vertically opened on the protrusion 124. An insertion hole 126 that matches the protrusion 124 is opened on the cover plate 121. The cover plate 121 is inserted into the protrusion 124. A pull rod 127 is fixedly installed on the cover plate 121.

[0021] In use, the insertion hole 126 on the cover plate 121 is aligned with the protrusion 124 on the support plate 123 and pressed in. The pressure causes the edge of the insertion hole 126 to press against the edge of the protrusion 124, which causes the shrinkage groove 125 to be compressed and its diameter to shrink, so that the insertion hole 126 can be locked on the protrusion 124, thus completing the fixed installation of the cover plate 121 and ensuring that the cover plate 121 will not come off at will during transportation. When disassembling, the protrusion 124 is pressed, causing the shrinkage groove 125 to shrink again. The cover plate 121 can be disassembled by pulling the pull rod 127, which is convenient for operation.

[0022] Furthermore, the basin body 1 has several evenly distributed first flow holes 13, and the cover plate 121 has several evenly distributed second flow holes 14.

[0023] When in use, the first flow hole 13 on the pot body 1 and the second flow hole 14 on the cover plate 121 provide a good internal and external air circulation environment for the seedlings after they are planted in the pot body 1, preventing excessive water from damaging the seedling roots. Excess water can be drained through the first flow hole 13, thereby ensuring the health of the seedling roots.

[0024] Example 2 Unlike Embodiment 1, the excess water flowing out of the basin 1 will pollute the environment of the transport vehicle. Therefore, a frame-shaped lifting part 23 is fixedly installed on the transport part 2, and the basin 1 is attached to the lifting part 23. A viewing window 24 is provided on the outer side wall of the lifting part 23.

[0025] When in use, the basin 1 is supported by the lifting part 23. Excess water flowing out of the basin 1 will be retained in the lifting part 23 to avoid contaminating the transport vehicle. The viewing window 24 ensures that the bottom of the basin 1 is ventilated, and the overflow of water can be observed directly so that it can be cleaned in time.

[0026] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this application, based on the technical solution and concept of this application, should be included within the scope of protection of this application.

Claims

1. A portable seedling transplanting water retention device, comprising a pot (1) for supporting the seedling and surrounding and protecting the seedling root system, and a transport unit (2) for moving the pot (1), characterized in that: The basin (1) and the transport part (2) are detachable. The basin (1) is bowl-shaped. The transport part (2) has several support holes (21) arranged in a linear array to match the basin (1). The basin (1) is inserted into the support holes (21). Two symmetrically distributed handles (11) are fixedly installed on the basin (1) at the edge of the opening. The transport part (2) has symmetrically distributed grips (22) at both ends. The basin (1) has a shielding part (12) at the opening.

2. The portable water-retaining device for transplanting seedlings according to claim 1, wherein: The shielding part (12) includes two symmetrically distributed cover plates (121) adapted to the opening of the pot body (1), and the cover plate (121) has a relief groove (122) adapted to the main trunk of the seedling at the center position.

3. The portable plant transplant water retaining device of claim 2, wherein: Two symmetrically distributed support plates (123) are fixedly installed on the inner side wall of the basin (1) near the handle (11). A T-shaped protrusion (124) is fixedly installed on the support plate (123). A shrinkage groove (125) is vertically opened on the protrusion (124). An insertion hole (126) adapted to the protrusion (124) is opened on the cover plate (121). The cover plate (121) is inserted into the protrusion (124). A pull rod (127) is fixedly installed on the cover plate (121).

4. The portable plant transplant water retaining device of claim 3, wherein: The basin (1) has several evenly distributed first flow holes (13), and the cover plate (121) has several evenly distributed second flow holes (14).

5. The portable plant transplant water retaining device of claim 1, wherein: The transport part (2) is fixedly installed with a frame-shaped support part (23), the basin (1) is attached to the support part (23), and a viewing window (24) is provided on the outer side wall of the support part (23).