Soil layer sampling equipment for tree transplanting
By designing soil sampling equipment for tree transplantation and adopting a sampling plate and shielding structure, the depth error problem of traditional sampling methods is solved, ensuring the accuracy of soil testing for green plant planting and promoting the growth and development of green plants.
Patent Information
- Application Number
- CN202422599244.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-10-25
AI Technical Summary
Traditional soil sampling methods are difficult to effectively collect soil samples at a specified depth in urban green plant planting, and the consistency of soil moisture after flooding leads to large sampling errors, affecting the growth and development of green plants.
A soil sampling device for tree transplanting is designed. The device adopts a sampling plate and a shielding structure. The shielding member distributes the soil during the insertion and removal of the sampling plate, ensuring that soil samples at a specified depth are collected and avoiding depth errors.
It has achieved efficient detection of soil layers at designated depths in urban green spaces, ensuring the growth and development of green plants and meeting the needs of green plant planting.
Smart Images

Figure CN223389478U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of tree planting equipment, in particular to a soil layer sampling device for tree transplantation. Background Art
[0002] Many cities are now prioritizing the planting of greenery plants in their construction and planning to enhance their urban image. Urban greenery planting requires that the plants adapt to the local growing environment to ensure optimal growth. This is especially true in urban areas, where the need for optimal survival is paramount. Therefore, before planting greenery in a city, appropriate soil areas are selected within the city planning process and the soil is tested. If the soil moisture level is insufficient for transplanted plants, flood irrigation is required to achieve a specified moisture level before transplanting is feasible. When transplanting taller shrubs, soil moisture testing is required at a specific depth, determined by the planting depth of the individual plants. However, after flood irrigation, the moisture level of some soil layers remains consistent from the surface to a certain depth. This complicates traditional soil sampling methods, which can lead to soil moisture seepage during excavation and hinder accurate sampling of the soil at the specified depth.
[0003] Therefore, based on the problem of green plant transplantation in the city, a soil sampling device for tree transplantation is developed, which can conveniently detect the soil layer at a specified depth in the urban green space, and after flooding the soil in the area, it can also meet the soil testing needs of the specified depth to ensure that the green plants can grow and develop normally. Utility Model Content
[0004] The purpose of the utility model is to provide a soil sampling device for tree transplantation, which can conveniently detect the soil layer at a specified depth in urban green spaces, and after flooding the soil in the area, it can also meet the soil detection needs of the specified depth to ensure that green plants can grow and develop normally.
[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical solutions:
[0006] A soil sampling device for tree transplantation includes a sampling plate, on which sampling positions are arranged at equal intervals, and a shielding member is provided at the outer position of the sampling position. After the shielding member is set to the sampling position, the sampling position presents a semi-enclosed structure with the upper end opening inward.
[0007] The shielding member is a curved shielding protrusion, and the curved shielding protrusion is arranged at an outer side of the sampling position.
[0008] The sampling plate includes an inner plate and an outer plate. The inner plate and the outer plate are buckled together, and the sampling position is arranged through the inner plate.
[0009] The sampling position is detachably provided with a filling block. When the filling block is inserted into the sampling position, the internal space of the sampling position is filled.
[0010] The lower end of the sampling plate is a tip structure, and a scale line is arranged on the outer plate position of the sampling plate.
[0011] Compared with the prior art, the beneficial effects of the present invention are:
[0012] When the device is set up, a sampling plate is set up to collect soil samples at tree planting locations in urban construction. By setting a sampling position on the sampling plate and a shielding member in conjunction with the sampling position, when the sampling plate is inserted into the soil, the shielding member and the stickiness of the soil prevent the soil from entering the sampling position during the insertion phase. When the sampling plate is pulled outward, the shielding member blocks the soil at its upper end, forcing a portion of the soil blocked by the shielding member into the sampling position, thereby achieving soil collection at a specified depth. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Attachment Figure 1 It is a schematic structural diagram of the utility model.
[0014] Attachment Figure 2 It is a schematic structural diagram of the utility model.
[0015] Attachment Figure 3 It is a partial structural diagram of the utility model.
[0016] Reference numerals shown in the accompanying drawings:
[0017] 1. Sampling plate; 2. Sampling position; 3. Shielding piece; 4. Arc shielding protrusion; 5. Inner plate; 6. Outer plate. DETAILED DESCRIPTION
[0018] The present invention will be further described below with reference to specific embodiments. It should be understood that these embodiments are intended only to illustrate the present invention and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the contents of this invention, those skilled in the art may make various changes or modifications to the present invention, and that these equivalent forms also fall within the scope defined in this application.
[0019] Because the soil itself has a certain degree of viscosity, and the influence of soil depth and soil layer should be avoided when sampling soil, to ensure that the soil samples obtained meet the sampling requirements. This is especially important when planting trees in urban environments, because the selection of green land in urban environments directly affects the future planning of the city. Therefore, it is necessary to conduct effective soil testing on the soil where green plants are to be planted after a certain period of flooding, so that urban builders can make quick decisions based on the test data obtained, which is more conducive to the subsequent urban greening planning.
[0020] Therefore, a soil sampling device for tree transplanting includes a sampling plate 1, on which sampling positions 2 are evenly spaced, and a shielding member 3 is provided outside the sampling positions 2. When the shielding member 3 is positioned at the sampling position 2, the sampling position 2 assumes a semi-enclosed structure with an inwardly open upper end. When setting up the sampling plate 1, a soil sample is collected at a specified depth. When using the sampling plate 1, the sampling plate 1 is first inserted into the soil. At this time, due to the obstruction of the shielding member 3 and the viscosity of the soil itself, the soil cannot enter the sampling position 2. It should be noted that when the shield 3 is installed, it is positioned outside the sampling position 2. After the shield 3 is installed, the sampling position 2 assumes a semi-enclosed structure with an inwardly open upper end. Therefore, as the sampling plate 1 is inserted into the soil, the shield 3 distributes the soil on both sides outward, preventing the soil from passing through the shield 3 and entering the sampling position 2 during the insertion phase. During the withdrawal phase of the sampling plate 1, the shield 3 also distributes the soil on both sides, but during this process, some soil is pushed into the sampling position 2, thereby enabling soil sampling. Furthermore, as the sampling plate 1 is withdrawn, the shield 3 distributes the soil quickly, preventing soil from being collected at different depths during the withdrawal phase. Therefore, it is important to note that the size of the space within the sampling plate 1 should not be too large, that is, the soil collected after a single sampling operation should be sufficient for soil testing. At the same time, in order to ensure that the shielding member 3 can distribute the soil smoothly, the shielding member 3 is a curved shielding protrusion 4, and the curved shielding protrusion 4 is arranged at the outer side of the sampling position 2. Because the curved surface blocks the soil, it can distribute the soil without causing too much force to hinder the insertion and removal of the sampling plate 1, so as to avoid too much impact on the insertion and removal of the sampling plate 1 due to the setting of the shielding member 3.
[0021] The above structure is further configured and optimized as follows:
[0022] The sampling plate 1 includes an inner plate 5 and an outer plate 6, which are fastened together, and the sampling position 2 is set through the inner plate 5. After the inner plate 5 and the outer plate 6 are set, the inner plate 5 and the outer plate 6 can be disassembled. After using the sampling plate 1 to sample soil, the outer plate 6 can be disassembled to remove the soil sample at the sampling position 2 of the inner plate 5. At the same time, after the soil sampling is completed, the soil residue remaining at the sampling position 2 can be cleaned to ensure that subsequent soil sampling and testing operations can be carried out.
[0023] The sampling position 2 is detachably provided with a filling block. When the filling block is inserted into the sampling position 2, the internal space of the sampling position 2 is filled. After the filling block is used to fill the internal space of the sampling position 2, when the insertion and removal operation is performed toward the interior of the soil, the soil will not enter the sampling position 2 where the filling block is provided due to the setting of the filling block, so that when performing the soil sampling operation at a specified depth, soil samples at other soil depths will not be sampled and collected.
[0024] The lower end of the sampling plate 1 is a pointed structure, and a scale line is provided on the outer plate 6 of the sampling plate 1 to facilitate the user to apply the sampling plate 1 to the soil layer and to facilitate the user to observe the sampling depth.
[0025] Therefore, a soil sampling device for tree transplantation can conveniently detect the soil layer at a specified depth in urban green spaces, and after flooding the soil in the area, it can also meet the soil testing needs at a specified depth to ensure that green plants can grow and develop normally.
Claims
1. A soil sampling device for tree transplantation, characterized in that: The invention comprises a sampling plate (1), sampling positions (2) are arranged at equal intervals on the sampling plate (1), and a shielding member (3) is arranged at the outer position of the sampling position (2); after the shielding member (3) is set at the position of the sampling position (2), the sampling position (2) presents a semi-enclosed structure with the upper end opening inward.
2. The soil sampling device for tree transplantation according to claim 1, characterized in that: The shielding member (3) is a curved shielding protrusion (4), and the curved shielding protrusion (4) is arranged at an outer position of the sampling position (2).
3. The soil sampling device for tree transplantation according to claim 2, characterized in that: The sampling plate (1) comprises an inner plate (5) and an outer plate (6), the inner plate (5) and the outer plate (6) are snap-fitted together, and the sampling position (2) is arranged through the inner plate (5).
4. The soil sampling device for tree transplantation according to claim 3, characterized in that: The sampling position (2) is detachably provided with a filling block, and when the filling block is inserted into the sampling position (2), the internal space of the sampling position (2) is filled.
5. The soil sampling device for tree transplantation according to claim 4, characterized in that: The lower end of the sampling plate (1) is a pointed structure, and a scale line is provided on the outer plate (6) of the sampling plate (1).