Agricultural seedling raising tray structure

By designing a seedling tray structure with separable seedling half-cups and connecting components, the problem of seedling damage during the seedling separation process was solved, achieving stable stacking and convenient management.

CN223553861UActive Publication Date: 2025-11-18SHAANXI YUANXUN TONGDA TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423149716.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-18
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing seedling trays are prone to damaging seedlings during the transplanting process when seedlings grow too fast, and most seedling trays are molded as a single piece, making transplanting difficult.

Method used

Design an agricultural seedling tray structure that uses detachable seedling half-cup and connecting components. The entire seedling cup can be removed by locking with pins, avoiding the use of knives or sharp tools. The design of the support and placement holes facilitates stacking and handling.

Benefits of technology

It achieves damage-free seedling transplanting, and the seedling trays are stacked stably, facilitating seedling separation and centralized management.

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Abstract

The utility model relates to the technical field of seedling raising tray structures, in particular to an agricultural seedling raising tray structure which comprises a seedling raising tray frame, a plurality of placement grooves are evenly formed in the seedling raising tray frame, seedling raising cups are placed in the placement grooves, the upper side faces of the seedling raising cups extend outwards to form lap joint parts, and the lap joint parts are in lap joint with openings of the placement grooves; the seedling raising cup comprises two seedling raising half cups which are spliced with each other, and the two seedling raising half cups are connected through a connecting assembly. Through the arrangement of the connecting assembly, the connecting assembly can divide the seedling culture cup into two seedling culture half cups, then soil blocks in the seedling culture cup can be taken out, the taken-out soil blocks are placed in the pot, and seedlings can be transplanted into the independent pot to be independently cultured, so that in the seedling transplanting process, the seedling culture efficiency is improved, and the seedling culture cost is reduced. The seedlings can be taken out from the seedling raising tray without using a knife or a sharp stick, so that the damage to the seedlings and the influence on the normal growth of the seedlings are better avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of seedling raising tray structure, in particular to an agricultural seedling raising tray structure. BACKGROUND

[0002] Seedling raising tray, also known as plug tray, is an important tool in factory seedling production process, and plug seedling is a fundamental reform of modern horticulture, which provides guarantee for fast and large-scale production.

[0003] At present, when seedlings are raised by using seedling raising tray, if the seedlings grow too fast, it is easy to cause difficulty in seedling management, and generally needs to be divided into seedlings; but most of the common seedling raising trays are integrally formed, so that in the process of dividing seedlings, the seedlings are taken out from the seedling raising tray by using a small knife or a sharp wooden stick, and they are respectively transplanted into other seedling raising trays or independent pots for separate cultivation, so that the seedlings are easily damaged in the whole transplanting process, affecting the normal growth of the seedlings. SUMMARY

[0004] The present application provides an agricultural seedling raising tray structure to at least solve the above technical problems in the prior art.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] An agricultural seedling raising tray structure, comprising a seedling raising tray frame, a plurality of placing grooves are uniformly arranged on the seedling raising tray frame, a seedling raising cup is placed in each placing groove, the upper side of the seedling raising cup extends outward to form a lap joint part, and the lap joint part is lapped at the opening of the placing groove; the seedling raising cup comprises two seedling raising half-cups which are connected through a connecting assembly.

[0007] Further, the connecting assembly comprises a mounting block arranged on the opposite side wall of one of the seedling raising half-cups and a plug-in plate arranged on the opposite side wall of the other seedling raising half-cup, and a plug-in slot is formed in the mounting block; the plug-in plate is inserted into the corresponding plug-in slot; the connecting assembly further comprises a pin bolt arranged on one of the seedling raising half-cups, and the pin bolt is used to lock the plug-in plate inserted into the plug-in slot.

[0008] Further, a through hole penetrating through the plug-in slot is arranged on the opposite side wall of the mounting block, and a plug-in hole corresponding to the through hole is arranged on the plug-in plate; the pin bolt comprises a pin rod arranged on one of the seedling raising half-cups in opposition, and the pin rod is inserted into the through hole and the plug-in hole to fix the plug-in plate in the plug-in slot.

[0009] Further, a mounting hole is arranged on the extension part of one of the seedling raising half-cups, and a convex ring is arranged on the outer side wall of the pin rod, and the convex ring is used to prevent the pin rod from separating from the mounting hole.

[0010] Further, the opposite side walls of the placing groove are provided with notches, and the notches are used for allowing the corresponding mounting blocks and the inserting plate to pass through.

[0011] Further, the lower side of the seedling tray frame is uniformly provided with a plurality of support columns, and the upper side of the seedling tray frame is provided with placing holes corresponding to the support columns.

[0012] Further, the opposite side walls of the seedling tray frame are provided with handle grooves.

[0013] Compared with the prior art, the application has the following beneficial effects:

[0014] 1. The utility model discloses a connecting assembly, which can divide the seedling cup into two seedling half-cups, and then the seedling and the soil block in the seedling cup can be taken out as a whole, and the taken-out seedling and soil block can be placed in a pot, so that the seedling can be transplanted into the independent pot for separate cultivation, and the seedling can be taken out from the seedling tray without using a knife or a sharp stick during the transplantation of the seedling, so that the damage of the seedling is avoided, and the normal growth of the seedling is affected.

[0015] The utility model discloses a placing hole and a support column, so that the seedling tray frame can be stacked through the cooperation between the support column and the placing hole, the stacking is more stable, and the seedling can be conveniently transported and managed. DRAWINGS

[0016] Figure 1 The structure schematic diagram of an agricultural seedling tray structure in the embodiment of the application is shown.

[0017] Figure 2 The structure schematic diagram of a seedling tray frame in the embodiment of the application is shown.

[0018] Figure 3 The structure schematic diagram of a seedling cup in the embodiment of the application is shown.

[0019] Figure 4 The structure schematic diagram of an inserting plate in the embodiment of the application is shown.

[0020] Figure 5 The structure schematic diagram of an inserting groove in the embodiment of the application is shown.

[0021] Figure 6 The structure schematic diagram of a convex ring in the embodiment of the application is shown.

[0022] Explanation of Markers in the Drawing:

[0023] 100, seedling tray frame; 101, placing hole; 102, seedling cup; 103, handle groove; 104, support column;

[0024] 200, positioning hole; 201, placement groove; 202, groove opening;

[0025] 300. Extension; 301. Positioning pin; 302. Abutment block; 303. Pin; 304. Mounting block; 305. Insert plate; 306. Protruding ring;

[0026] 400, half a cup for seedling raising; 401, insertion hole; 402, leakage hole;

[0027] 500, slot; 501, mounting hole. Detailed Implementation

[0028] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings and embodiments. It should be understood that the embodiments are merely illustrative of this utility model and are not intended to limit it.

[0029] The following is in conjunction with the appendix Figures 1-6 This embodiment will be described in further detail.

[0030] Combination Figures 1-6 As shown, an agricultural seedling tray structure in this embodiment includes a seedling tray frame 100. The seedling tray frame 100 is evenly provided with a plurality of placement slots 201. Seedling cups 102 are placed in the placement slots 201. The upper side of the seedling cups 102 extends outward to form an overlapping part, which overlaps with the opening of the placement slots 201. The seedling cup includes two seedling half-cup 400 that are spliced ​​together, and the two seedling half-cup 400 are connected by a connecting component.

[0031] In actual use, the seedling cup 102 is placed in the placement groove 201, with the overlapping part overlapping the opening of the placement groove 201, so that the seedling cup 102 can be placed on the seedling tray rack 100. At this time, the operator can carry out sowing operations in the seedling cup 102, so that the seedling cup 102 can be used for seedling cultivation.

[0032] In practical use, when seedlings need to be separated, the seedling cups 102 can be removed from the placement slots 201 and placed on other empty seedling tray racks 100 to complete the separation of seedlings for classified management. When seedlings need to be transplanted to independent pots for individual cultivation, the connecting components can divide the seedling cups 102 into two half-cups 400, allowing the seedlings and soil blocks in the seedling cups 102 to be removed as a whole. The removed seedlings and soil blocks can then be placed in the pot, enabling the seedlings to be transplanted to independent pots for individual cultivation. This eliminates the need to use knives or sharp sticks to remove the seedlings from the seedling trays during the transplanting process, thus better avoiding damage to the seedlings and affecting their normal growth.

[0033] The placing groove 201 is matched with the seedling cup 102, so that the sidewall of the seedling cup 102 can be slidably attached to the corresponding sidewall of the placing groove 201, and the seedling cup 102 can be better placed in the placing groove 201.

[0034] In combination with Figures 3-6 In the embodiment, the connecting assembly includes a mounting block 304 arranged on the opposite sidewall of one of the seedling half-cups 400 and a plug plate 305 arranged on the opposite sidewall of the other seedling half-cup 400. The mounting block 304 is provided with a plug groove 500, and the plug plate 305 is inserted into the corresponding plug groove 500. The connecting assembly further includes a pin bolt arranged on one of the seedling half-cups 400, which is used to lock the plug plate 305 inserted into the plug groove 500.

[0035] In actual use, the plug plate 305 of the other seedling half-cup 400 is aligned with the plug groove 500 on one of the seedling half-cups 400, so that the plug plate 305 is inserted into the corresponding plug groove 500, and the two seedling half-cups 400 are spliced. The pin bolt is arranged to lock and fix the plug plate 305 in the plug groove 500, so that the plug plate 305 cannot be separated from the plug groove 500, and the two seedling half-cups 400 cannot be separated from each other, that is, the two seedling half-cups 400 can be spliced into the seedling cup 102.

[0036] In actual use, the plug groove 500 is matched with the plug plate 305, so that the sidewall of the plug plate 305 can be slidably attached to the corresponding sidewall of the plug groove 500, and the plug plate 305 is not easy to shake in the plug groove 500, so that the two seedling half-cups 400 can be better spliced, and the spliced seedling cup 102 can better perform seedling cultivation.

[0037] The mounting block 304 is arranged to ensure that the plug groove 500 does not need to be arranged on one of the seedling half-cups 400, thereby ensuring the strength of one of the seedling half-cups 400.

[0038] In combination with Figure 2 In order to better place the seedling cup 102 in the placing groove 201, the placing groove 201 is provided with a slot 202 between the opposite sidewalls, and the slot 202 is used to pass through the corresponding mounting block 304 and plug plate 305, so that the seedling cup 102 can be placed in the placing groove 201.

[0039] In the embodiment, in order to more stably place the seedling cup 102 in the placing groove 201, the extension 300 is provided with a positioning column 301 at each corner position, and the placing groove 201 is provided with a positioning hole 200 corresponding to the positioning column 301 at the opening position.

[0040] In actual use, the positioning column 301 and the positioning hole 200 are matched to be arranged, so that when the lap joint part is lap joint at the opening of the placing groove 201, the positioning column 301 is inserted into the corresponding positioning hole 200, and the positioning column 301 is not easy to shake in the positioning hole 200, so that the seedling cup 102 cannot shake in the placing groove 201, so that the seedling cup 102 can be placed in the placing groove 201 more stably.

[0041] In combination with Figures 3-6 As shown in the embodiment, the mounting block 304 is provided with a through hole penetrating the insertion slot 500 on the opposite side wall, and the insertion plate 305 is provided with an insertion hole 401 corresponding to the through hole; the pin bolt comprises a pin rod 303 arranged on one of the seedling half-cups 400, and the pin rod 303 is inserted into the through hole and the insertion hole 401 to fix the insertion plate 305 in the insertion slot 500.

[0042] In actual use, the insertion plate 305 is inserted into the insertion slot 500, so that the insertion hole 401 on the insertion plate 305 corresponds to the through hole on the mounting block 304, that is, the through hole and the insertion hole 401 are communicated, at this time, the pin rod 303 is inserted into the insertion slot 500 from one side of the through hole and extends out from the other side of the through hole through the insertion hole 401, so that the pin rod 303 can lock and fix the insertion plate 305 in the insertion slot 500, so that the two seedling half-cups 400 cannot be separated, and the two seedling half-cups 400 can be better spliced into the seedling cup 102.

[0043] In actual use, in order to enable the pin rod 303 to be installed on one of the seedling half-cups, the extension part 300 of one of the seedling half-cups 400 is provided with a mounting hole 501, and the upper end of the pin rod 303 is provided with an abutting block 302, so that the pin rod 303 can be slidingly installed on one of the seedling half-cups 400.

[0044] Specifically, in order to prevent the pin rod 303 from sliding out of the mounting hole 501 and being lost, the outer side wall of the pin rod 303 is provided with a protruding ring 306 in the embodiment.

[0045] The pin rod 303 is inserted into the through hole and the insertion hole 401, at this time, the protruding ring 306 is lap joint on the upper side wall of the mounting block 304 to realize the splicing of the seedling cup 102; when the pin rod 303 is pulled out of the through hole to disengage the splicing of the seedling cup 102, at this time, the protruding ring 306 abuts on the lower side wall of the extension part 300 to prevent the pin rod 303 from completely separating from the lap joint part.

[0046] In combination with Figures 1-2 As shown in the embodiment, the lower side of the seedling tray rack 100 is uniformly provided with a plurality of support columns 104, and the upper side of the seedling tray rack 100 is provided with a placing hole 101 corresponding to the support column 104.

[0047] In actual use, the bottom wall of the seedling cup 102 is provided with a leakage hole 402, and the support column 104 is fixed on the seedling tray rack 100 to support the seedling cup 102 placed on the seedling tray rack 100, so that the bottom wall of the seedling cup 102 is away from the ground, and the water in the seedling cup 102 can flow out through the leakage hole 402;

[0048] In actual use, the lower end of the support column 104 of the upper seedling tray rack 100 can be inserted into the corresponding placement hole 101 when the seedling tray rack 100 is stacked, so that the upper seedling tray rack 100 is positioned, and the stacking of the seedling tray rack 100 is more stable, thereby facilitating transportation and centralized management of seedlings.

[0049] Specifically, in order to facilitate the transportation of the seedling tray rack 100, the opposite side walls of the seedling tray rack 100 are provided with handle grooves 103, so that the operator can easily transport the seedling tray rack 100.

[0050] In actual use, when seedling separation is needed, the seedling cup 102 is taken out of the placement groove 201 and placed on another empty seedling tray rack 100, and the seedling separation of the seedlings can be completed, so that the seedlings can be classified and managed. When the seedlings need to be transplanted into independent pots for separate cultivation, the seedling cup 102 is taken out, the pin rod 303 is moved upward to be extracted from the through hole on one side through the insertion hole 401, the insertion plate 305 on the other seedling half cup 400 is extracted from the insertion slot 500, the seedling cup 102 is separated, and the seedlings and soil blocks in the seedling cup 102 can be taken out as a whole, so that the seedlings can be transplanted into independent pots for separate cultivation.

[0051] In summary, the above is only a preferred embodiment of the present application, and any changes and modifications made within the scope of the present application should be included in the scope of the present application.

Claims

1. An agricultural seedling tray structure, comprising a seedling tray frame (100), characterized in that: The seedling tray rack (100) is evenly provided with multiple placement slots (201), and seedling cups (102) are placed in the placement slots (201). The upper side of the seedling cup (102) extends outward to form an overlapping part, which overlaps with the opening of the placement slot (201). The seedling cup (102) includes two seedling half-cup (400) that are spliced ​​together. The two seedling half-cup (400) are connected by a connecting component. The connecting component includes an mounting block (304) provided on the opposite side wall of one seedling half-cup (400) and a mounting block (304) provided on the other seedling half-cup (400). The insert plate (305) on the opposite side wall of the cup (400) has a slot (500) on the mounting block (304); the insert plate (305) is inserted into the corresponding slot (500); the connecting assembly also includes a pin on one of the seedling half cups (400), the pin is used to lock the insert plate (305) inserted into the slot (500); the lower side of the seedling tray rack (100) is evenly provided with multiple support columns (104), and the upper side of the seedling tray rack (100) is provided with placement holes (101) corresponding to the support columns (104).

2. The agricultural seedling tray structure according to claim 1, characterized in that: The mounting block (304) has a through hole for the through slot (500) on its opposite side wall, and the insert plate (305) has a corresponding insertion hole (401) on the through hole; the pin includes a pin (303) disposed on one of its seedling half cups (400), and the pin (303) is inserted into the through hole and the insertion hole (401) to fix the insert plate (305) in the slot (500).

3. The agricultural seedling tray structure according to claim 2, characterized in that: The extension (300) of the seedling half cup (400) is provided with an installation hole (501), and the outer side wall of the pin (303) is provided with a protruding ring (306). The protruding ring (306) is used to prevent the pin (303) from dislodging from the installation hole (501).

4. The agricultural seedling tray structure according to claim 1, characterized in that: The placement groove (201) has a slot (202) between the opposite side walls, and the slot (202) is used for the corresponding mounting block (304) and insert plate (305) to pass through; there are positioning posts (301) at the four corners of the extension (300), and positioning holes (200) are provided at the opening of the placement groove (201) corresponding to the positioning posts (301).

5. The agricultural seedling tray structure according to claim 1, characterized in that: The seedling tray rack (100) has handle grooves (103) on the opposite side wall.