Bletilla cultivation box

CN224747069UActive Publication Date: 2026-09-15XINGWEN COUNTY GREEN FOREST AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202521636459.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-09-15
Estimated Expiration
2035-08-04

AI Technical Summary

Benefits of technology

[0017] 1. In this utility model, the side cylinder, float and liquid level column make it easy for users to know the water storage sponge and whether the water level in the box is too high or too low, so as to stop watering in time or add water in time when the water storage is insufficient. The Bletilla striata cultivation box can display the water volume in real time when in use, so as to avoid the user from over-watering or under-watering when the water volume is not known, thus ensuring the healthy growth of Bletilla striata plants.

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Abstract

The utility model discloses a kind of bletilla cultivation boxes, it is related to bletilla cultivation technical field, including box, water storage sponge is sequentially installed from lower to upper in box, fixed screen and divides kind frame;Box side is fixed with the side cylinder that is communicated with box interior, and the through-hole is set in side cylinder top portion;Float is movably placed in side cylinder, and float is slidably connected along side cylinder inner wall, and liquid level column is fixed on the upper end of float, and the diameter of liquid level column is same with the inner diameter of through-hole, and the scale of reading water level in side cylinder is equipped on liquid level column, the utility model is set through side cylinder, float and liquid level column, it is convenient for user to determine whether the water storage capacity of water storage sponge and the water level in box is too high or too low, to stop irrigation in time, or water is added in time when water storage capacity is insufficient, the water amount inside can be displayed in real time when this bletilla cultivation box is used, avoid user when unable to obtain internal water amount, more irrigation or less irrigation and other unfavorable operation, to guarantee the healthy growth of bletilla plant.
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Description

Technical Field

[0001] This utility model relates to the field of Bletilla striata cultivation technology, and in particular to a Bletilla striata cultivation box. Background Technology

[0002] Traditional cultivation boxes contain all Bletilla striata seedlings in one area of ​​soil without individual seedbeds, making it difficult to move them out for planting. The roots and stems of the seedlings are easily broken. There is no thermometer, so the temperature inside the cultivation box cannot be monitored. Excessive temperature can easily cause the seedlings to die. There is no sponge pad to retain water, so frequent watering is required, which is inconvenient.

[0003] To address the aforementioned issues, patent document CN206274855U discloses a Bletilla striata cultivation box, comprising a top cover, a shell, a trough, and a water collection trough. A rubber stopper is installed on the top cover, and a thermometer is embedded inside the top cover. The shell is connected to the top cover via a hinge, and a groove is provided inside the shell. A movable plate is installed on the side of the shell, and the trough and a partition are connected. An opening is provided on the surface of the shell, and the movable plate is connected to the shell via a fastener. A sponge pad is installed inside the shell, and the water collection trough is connected to the shell. A water collection trough is also provided below the bottom plate.

[0004] Based on the above research and existing technology, it was found that although existing Bletilla striata cultivation boxes have water storage functions, the water storage sponge and water receiving trough can only hold a fixed amount of water. If the user waters a large amount at once, the water will accumulate in the trough, causing the roots of Bletilla striata to soak in water, which is not conducive to the healthy growth of Bletilla striata. If the water is watered in a smaller amount, it is not conducive to the water storage effect and frequent watering is required, which is also not conducive to use. Furthermore, the water storage sponge and water receiving trough are located at the bottom of the cultivation box, which makes it difficult to observe the real-time water volume and is inconvenient to use. Therefore, there is a need for a Bletilla striata cultivation box. Utility Model Content

[0005] The purpose of this application is to provide a Bletilla striata cultivation box to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this application provides the following technical solution: a Bletilla striata cultivation box, comprising a box body, wherein a water-retaining sponge, a fixing mesh, and a seeding frame are installed sequentially from bottom to top inside the box body;

[0007] A side tube that communicates with the interior of the box is fixed on one side of the box body, and a through hole is opened at the top of the side tube;

[0008] A float is movably placed inside the side cylinder. The float is slidably connected along the inner wall of the side cylinder. A liquid level column is fixed at the upper end of the float. The diameter of the liquid level column is the same as the inner diameter of the through hole. The liquid level column is equipped with a scale for reading the water level inside the side cylinder.

[0009] The top height inside the side tube is the same as the top height of the fixed mesh, and the upper surface of the float is higher than the horizontal plane when the float is floating.

[0010] Preferably, an overflow hole is provided on the other side of the box body. The overflow hole is located on the upper part of the water-retaining sponge, and the top of the overflow hole is at the same height as the top of the water-retaining sponge.

[0011] The outer side of the box is equipped with a closed plate with a closed overflow hole, and a support body is provided on the side of the closed plate corresponding to the overflow hole. The closed plate is slidably installed on the support body.

[0012] Preferably, a sealing ring is fixedly embedded on one side of the closing plate that fits against the box body. When the closing plate closes the overflow hole, the sealing ring is embedded in the overflow hole and is interference-fitted with the inner wall of the overflow hole.

[0013] Preferably, the support includes a receiving bucket, one side of which is fixed to one side of the box body. A notch is provided on the side of the receiving bucket near the box body, and the notch corresponds to the position of the overflow hole. Slide grooves are provided on both sides of the notch. Slide ears that are adapted to slide the slide grooves are integrally formed on both sides of the closing plate.

[0014] Preferably, a guide slope is formed at the lower end of the notch, and the side of the guide slope closer to the box body is higher than the side of the guide slope away from the box body.

[0015] Preferably, a tab is fixed at the upper end of the closing plate. The tab is in the shape of an inverted L, and the upper horizontal plate of the tab extends away from the box body.

[0016] In summary, the technical effects and advantages of this utility model are as follows:

[0017] 1. In this utility model, the side cylinder, float and liquid level column make it easy for users to know the water storage sponge and whether the water level in the box is too high or too low, so as to stop watering in time or add water in time when the water storage is insufficient. The Bletilla striata cultivation box can display the water volume in real time when in use, so as to avoid the user from over-watering or under-watering when the water volume is not known, thus ensuring the healthy growth of Bletilla striata plants.

[0018] 2. In this utility model, by setting an overflow hole and a closing plate, under normal conditions, the closing plate closes the overflow hole, so that the water poured into the box will not flow out. However, when the user observes that the water level in the box is too high, the closing plate can be opened to allow the excess water to flow out from the overflow hole. Since the top of the overflow hole is at the same height as the top of the water-retaining sponge, it can be ensured that after the excess water is released, there is still enough water left in the water-retaining sponge, avoiding excessive drainage and water loss. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the three-dimensional structure in this embodiment;

[0021] Figure 2 This is a cross-sectional view in this embodiment;

[0022] Figure 3 This is a schematic diagram of the closing plate, sealing ring, and receiving barrel structure in this embodiment.

[0023] In the diagram: 1. Box body; 11. Overflow hole; 2. Water storage sponge; 3. Fixed partition net; 4. Seeding frame; 5. Side cylinder; 51. Through hole; 6. Float; 61. Liquid level column; 7. Closing plate; 71. Pull plate; 72. Sliding lug; 8. Sealing ring; 9. Receiving tank; 91. Notch; 911. Slide groove; 912. Guide slope wall. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Example: Reference Figures 1-3 The Bletilla striata cultivation box shown includes a box body 1, and inside the box body 1, from bottom to top, a water-retaining sponge 2, a fixing mesh 3, and a seeding frame 4 are installed sequentially.

[0026] A side tube 5 that communicates with the interior of the box 1 is fixed on one side of the box body 1, and a through hole 51 is provided on the top of the side tube 5;

[0027] A float 6 is movably placed inside the side cylinder 5. The float 6 is slidably connected along the inner wall of the side cylinder 5. A liquid level column 61 is fixed at the upper end of the float 6. The diameter of the liquid level column 61 is the same as the inner diameter of the through hole 51. The liquid level column 61 is provided with a scale for reading the water level inside the side cylinder 5.

[0028] Among them, the top height of the inner side cylinder 5 is the same as the top height of the fixed partition net 3, and the upper surface of the float 6 is higher than the horizontal plane when it is floating.

[0029] Based on the above structure, when the user waters the container 1, excess water drains through the soil in the seeding frame 4 and enters the water-retaining sponge 2. The water-retaining sponge 2 absorbs and stores the excess water to provide a continuous water supply for the Bletilla striata plants planted in the seeding frame 4. After the water-retaining sponge 2 absorbs the excess water, water fills the lower part of the container 1. Some of the water in the container 1 directly enters the side cylinder 5, causing the float 6 in the side cylinder 5 to rise. As the water level rises, the liquid level column 61 gradually extends out of the through hole 51. At this time, the user only needs to observe the liquid level. The scale on the position column 61 indicates the water level in the side cylinder 5. Since the side cylinder 5 is directly connected to the box body 1, the water level information in the side cylinder 5 is consistent with the water level information in the box body 1. This makes it easy for users to know the water storage capacity of the water-storing sponge 2 and whether the water level in the box body 1 is too high, so as to stop watering in time or add water in time when the water storage is insufficient. When using this Bletilla striata cultivation box, the internal water volume can be displayed in real time, avoiding the user from over-watering or under-watering when the internal water volume cannot be known, thus ensuring the healthy growth of Bletilla striata plants.

[0030] Furthermore, an overflow hole 11 is provided on the other side of the box body 1. The overflow hole 11 is located on the upper part of the water-retaining sponge 2, and the top of the overflow hole 11 is at the same height as the top of the water-retaining sponge 2.

[0031] The outer side of the housing 1 is provided with a closing plate 7 for a closed overflow hole 11. A support body is provided on one side of the overflow hole 11 corresponding to the closing plate 7. The closing plate 7 is slidably mounted on the support body.

[0032] With the overflow hole 11 and the closing plate 7 in normal condition, the closing plate 7 closes the overflow hole 11, so that the water poured into the tank 1 will not flow out. However, when the user observes that the water level in the tank 1 is too high, the closing plate 7 can be opened to allow the excess water to flow out from the overflow hole 11. Since the top of the overflow hole 11 is at the same height as the top of the water-retaining sponge 2, it can be ensured that after the excess water is released, there is still enough water left in the water-retaining sponge 2, avoiding excessive drainage and water loss.

[0033] Furthermore, a sealing ring 8 is fixedly embedded on one side of the closing plate 7 that is in contact with the box body 1. The sealing ring 8 is a rubber ring commonly used in the prior art. When the closing plate 7 closes the overflow hole 11, the sealing ring 8 is embedded in the overflow hole 11 and is interference-fitted with the inner wall of the overflow hole 11. The sealing ring 8 can ensure the sealing performance when the closing plate 7 closes the overflow hole 11, thereby preventing water from leaking directly from the overflow hole 11 during the irrigation process.

[0034] Furthermore, the support body includes a receiving bucket 9 with an opening at the top. One side of the receiving bucket 9 is fixed to one side of the box body 1. A notch 91 is provided on the side of the receiving bucket 9 closest to the box body 1. The notch 91 corresponds to the position of the overflow hole 11. Slide grooves 911 are provided on both sides of the notch 91. Slide ears 72 that slide and adapt to slide grooves 911 are integrally formed on both sides of the closing plate 7.

[0035] By setting up the receiving bucket 9, the closed plate 7 can be slidably supported, and excess water can be collected and stored for reuse, resulting in better actual use.

[0036] Furthermore, a guide wall 912 is formed at the lower end of the notch 91. The side of the guide wall 912 closer to the box 1 is higher than the side of the guide wall 912 farther away from the box 1, so that the discharged water can flow smoothly into the receiving tank 9.

[0037] A lever 71 is fixed to the upper end of the closing plate 7. The lever 71 is inverted L-shaped, and the upper horizontal plate of the lever 71 extends away from the box body 1, so that the user can operate the lifting and lowering of the closing plate 7 through the lever 71, making it more convenient to use.

[0038] The working principle of this utility model is as follows: During daily use, when the user waters the box 1, excess water drains through the soil in the seeding frame 4 and enters the water-retaining sponge 2. The water-retaining sponge 2 absorbs and stores the excess water so that it can continuously supply water to the Bletilla striata plants planted in the seeding frame 4. After the water-retaining sponge 2 absorbs the excess water, the lower part of the box 1 is filled with water. Some of the water in the box 1 directly enters the side cylinder 5, causing the float 6 in the side cylinder 5 to float. As the water level rises, the liquid level column 61 gradually extends out of the through hole 51. At this time, the user only needs to observe the scale on the liquid level column 61 to know the water level information in the side cylinder 5. Since the side cylinder 5 is directly connected to the box 1, the water level information in the side cylinder 5 is consistent with the water level information in the box 1. This makes it easy for the user to know the amount of water stored in the water-retaining sponge 2 and whether the water level in the box 1 is too high, so as to stop watering in time or add water in time when the water storage is insufficient.

[0039] In addition, when the user observes that the water level in the tank 1 is too high, the closing plate 7 can be opened to allow the excess water to flow out from the overflow hole 11. Since the top of the overflow hole 11 is at the same height as the top of the water-retaining sponge 2, it can be ensured that after the excess water is released, there is still enough water left in the water-retaining sponge 2, thus avoiding excessive drainage and water loss.

[0040] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A Bletilla striata cultivation box, comprising a box body (1), wherein a water-retaining sponge (2), a fixing mesh (3), and a seeding frame (4) are installed sequentially from bottom to top inside the box body (1), characterized in that: A side tube (5) communicating with the inside of the box (1) is fixed on one side of the box (1), and a through hole (51) is opened on the top of the side tube (5); A float (6) is movably placed inside the side cylinder (5). The float (6) is slidably connected along the inner wall of the side cylinder (5). A liquid level column (61) is fixed at the upper end of the float (6). The diameter of the liquid level column (61) is the same as the inner diameter of the through hole (51). The liquid level column (61) is provided with a scale for reading the water level inside the side cylinder (5). The top height of the inner side tube (5) is consistent with the top height of the fixed mesh (3), and the upper surface of the float (6) is higher than the horizontal plane when it is floating.

2. The Bletilla striata cultivation box according to claim 1, characterized in that: An overflow hole (11) is provided on the other side of the box (1). The overflow hole (11) is located on the upper part of the water-retaining sponge (2), and the top of the overflow hole (11) is at the same height as the top of the water-retaining sponge (2). The outer side of the box (1) is provided with a closed plate (7) with a closed overflow hole (11). A support body is provided on one side of the overflow hole (11) corresponding to the closed plate (7). The closed plate (7) is slidably installed on the support body.

3. The Bletilla striata cultivation box according to claim 2, characterized in that: A sealing ring (8) is fixedly embedded on one side of the closing plate (7) that is in contact with the box body (1). When the closing plate (7) closes the overflow hole (11), the sealing ring (8) is embedded in the overflow hole (11) and is interference-fitted with the inner wall of the overflow hole (11).

4. The Bletilla striata cultivation box according to claim 2, characterized in that: The support includes a receiving bucket (9), one side of which is fixed to one side of the box body (1). The receiving bucket (9) has a notch (91) on the side near the box body (1), the notch (91) corresponds to the overflow hole (11), and the notch (91) has a sliding groove (911) on both sides of the opposite side. The closing plate (7) has a sliding lug (72) integrally formed on both sides that slides and adapts to the sliding groove (911).

5. A Bletilla striata cultivation box according to claim 4, characterized in that: A flow guide wall (912) is formed at the lower end of the notch (91), and the side of the flow guide wall (912) closer to the box (1) is higher than the side of the flow guide wall (912) farther away from the box (1).

6. A Bletilla striata cultivation box according to claim 2, characterized in that: The upper end of the closing plate (7) is fixed with a pull tab (71), which is inverted L-shaped, and the upper horizontal plate of the pull tab (71) extends away from the box body (1).

Citation Information

Patent Citations

  • Tuber of hyacinth bletilla cultivation case

    CN206274855U