Dehumidifying vegetable seed storage device capable of being spliced

Through the modular combined vegetable seed storage device, rapid installation and stable splicing are achieved using splicing racks and magnetic suction fixing limits, and efficient dehumidification is combined with dehumidification plates and air exhaust duct racks, which solves the problems of single structure and poor dehumidification effect of the existing device, and improves storage effect and adaptability.

CN120383087APending Publication Date: 2025-07-29ANHUI JINHUANG SEED IND CO LTD
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Patent Information

Application Number
CN202510663041.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-07-29

AI Technical Summary

Technical Problem

The existing vegetable seed storage device has a single structure, does not have the function of rapid installation, is poor in adaptability, and has poor dehumidification effect, which affects long-term storage effect.

Method used

The modular combination method is adopted to achieve rapid splicing and stable installation of the seed storage rack through splicing frame and magnetic suction fixed limit, combined with dehumidification plate and exhaust duct frame for dehumidification, and efficient dehumidification is achieved by using dehumidifier fans and evaporators.

Benefits of technology

It realizes rapid installation and stable splicing, adapts to different quantities of vegetable seed storage, improves the practicality and dehumidification effect of storage devices, and ensures the stability and effectiveness of long-term use.

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Abstract

The invention discloses a dehumidifying vegetable seed storage device capable of being spliced, and belongs to the technical field of vegetable seed storage. The dehumidification and splicable vegetable seed storage device comprises a storage device support, a dehumidification plate is installed on the rear end face of the storage device support, an exhaust pipe frame is arranged on the surface of the dehumidification plate, and a seed storage frame is arranged at the front end of the dehumidification plate; an integrally-formed hollow air guide groove is formed in the seed storage frame. The problems that an existing vegetable seed storage device is single in structure, does not have the rapid installation function and is poor in adaptability are solved, the splicing plug pins at the front ends of the splicing frames are inserted into the splicing insertion openings in the adjacent seed storage frames, and the positions of the two adjacent seed storage frames are kept stable through magnetic attraction fixing and limiting; and by stacking the seed storage racks, multiple seed storage racks are combined to work, splicing work is rapidly carried out to adapt to storage of different numbers of vegetable seeds, the practicability is high, and the device adapts to different use environments.
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Description

Technical Field

[0001] The present invention relates to the technical field of vegetable seed storage, and particularly to a vegetable seed storage device with dehumidification function and capable of splicing. Background Technique

[0002] Vegetables refer to a class of plants or fungi that can be used for cooking and made into food. Vegetables are one of the essential foods in people's daily diet. Vegetables can provide various vitamins and minerals and other nutrients necessary for the human body. Before vegetable planting, vegetable seeds need to be stored, and during the process of storing vegetable seeds, a seed storage device is required.

[0003] Chinese Patent with publication number CN208047362U discloses a vegetable seed storage box with a drying function, including a tank body. There is an upper box body above the tank body. An inlet pipe is arranged inside the upper box body. Both ends of the inlet pipe penetrate through the top and bottom of the upper box body respectively. A cover plate is arranged at the upper end of the inlet pipe. A hot air blower is arranged above the upper box body. A plurality of air outlet pipes are equidistantly arranged below the upper box body. There are blowers arranged on both sides of the lower box body at the bottom of the tank body. A plurality of air inlet pipes are equidistantly arranged above the lower box body, and the air inlet pipes and the air outlet pipes are arranged staggeredly. A plurality of through holes are arranged on both the air inlet pipes and the air outlet pipes. Screen meshes are arranged on the surfaces of the air inlet pipes and the air outlet pipes. There is a discharge port at the bottom of one side of the tank body, and a discharge mechanism is arranged at the discharge port. The structure of this patent is reasonable, enabling the seeds to always be in a dry state, preventing the seeds from germinating, and making the storage time of the seeds longer.

[0004] In the actual use process of the above-mentioned vegetable seed storage device of the patent, the structure is single, it does not have the function of rapid installation, and the adaptability is poor; therefore, it does not meet the existing requirements, and for this reason, we propose a vegetable seed storage device with dehumidification function and capable of splicing. Summary of the Invention

[0005] The purpose of the present invention is to provide a vegetable seed storage device with dehumidification function and capable of splicing, which solves the problems that in the actual use process of the vegetable seed storage device mentioned in the above background technique, the structure is single, it does not have the function of rapid installation, and the adaptability is poor.

[0006] To achieve the above purpose, the present invention provides the following technical solution: A vegetable seed storage device with dehumidification function and capable of splicing, including a storage device support. A dehumidification board is installed on the rear end surface of the storage device support. An air extraction pipe rack is arranged on the surface of the dehumidification board. A seed storage rack is arranged at the front end of the dehumidification board;

[0007] The seed storage rack includes a splicing rack. The splicing rack is arranged on one side of the seed storage rack, and a splicing positioning groove formed in one piece is arranged on the other side of the seed storage rack. A hollow air guiding groove formed in one piece is arranged inside the seed storage rack.

[0008] Preferably, a protective partition is installed outside the storage device bracket. The protective partitions are respectively arranged at the upper end, lower end and both sides of the storage device bracket, and a storage opening is arranged at the front end of the storage device bracket.

[0009] Preferably, a welding frame is arranged outside the storage device bracket. The welding frame is connected to the protective partition by fixing screws, and the dehumidification plate is fixedly connected to the storage device bracket and the welding frame respectively by fixing screws.

[0010] Preferably, the air extraction pipe frame penetrates through the dehumidification plate and is fixedly connected to the dehumidification plate. An integrally formed air extraction port is arranged outside the air extraction pipe frame. A dehumidifier housing is installed at the rear end of the dehumidification plate. The air extraction pipe frame is communicated with the air extraction port and the dehumidifier housing respectively.

[0011] Preferably, an integrally formed positioning notch is arranged at the center inside the air extraction pipe frame. The positioning notch is used to fix one side of the seed storage rack. An integrally formed positioning bayonet is arranged between the splicing positioning notch and the splicing frame. The positioning bayonet is used to connect the air extraction pipe frame.

[0012] Preferably, anti-slip buckles are arranged on both sides inside the seed storage rack, and a partition plate is installed inside the seed storage rack. The partition plate is fixedly connected to the seed storage rack through the anti-slip buckles.

[0013] Preferably, ventilation holes are arranged inside the partition plate. Strip-shaped air vents are integrally formed on the surfaces of the splicing frame and the seed storage rack. The strip-shaped air vents and the ventilation holes are both used to communicate with the air extraction port.

[0014] Preferably, a splicing socket is arranged on one side inside the seed storage rack. A magnetic attraction block is arranged inside the splicing socket. One end of the splicing frame is provided with a splicing plug pin. The splicing plug pin extends into the splicing frame and is slidably connected to the splicing frame. A compression spring is installed inside the splicing frame. Both ends of the compression spring are fixedly connected to the splicing frame and the splicing plug pin respectively. The splicing frame passes through the splicing positioning notch and is inserted into the inside of the seed storage rack on one side, and the splicing plug pin is embedded into the splicing socket of the seed storage rack on one side and is engaged with the seed storage rack.

[0015] Preferably, a dehumidifying fan is installed outside the dehumidifier housing. The dehumidifying fan is fixedly connected to the dehumidifier housing, and an electromagnetic valve is installed inside the dehumidifier housing. The electromagnetic valve is communicated with the air extraction port of the dehumidifying fan and the air extraction pipe frame respectively.

[0016] Preferably, an evaporator is installed on one side of the dehumidifying fan, and three small compressors are arranged on one side of the evaporator. The dehumidifying fan is used to suck out the humid air inside the seed storage rack, and the evaporator is used to evaporate the moisture in the humid air and discharge it from the dehumidifier housing.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] 1. The storage device of the present invention adopts a modular combination method. It is combined by multiple seed storage racks. Between adjacent seed storage racks, the splicing rack is inserted into the splicing positioning groove. The splicing pin at the front end of the splicing rack is inserted into the splicing socket inside the adjacent seed storage rack, and is fixed and limited by magnetic attraction to keep the positions of two adjacent seed storage racks stable. Then, by stacking the seed storage racks, multiple combination operations are carried out, and the splicing work is carried out quickly to adapt to the storage of different quantities of vegetable seeds, with strong practicability and adaptability to different usage environments.

[0019] 2. The seed storage rack of the present invention is installed at the front end of the dehumidifying plate. The dehumidifying plate is composed of multiple bent air extraction pipe racks combined. The width and length of each air extraction pipe rack correspond to the width and length of the hollow air guiding groove inside the seed storage rack for easy installation. The air extraction pipe rack and the seed storage rack are fixed through the positioning bayonet and the positioning notch to achieve rapid installation. Then, the dehumidifying plate is installed through the storage device bracket, and by fixing the dehumidifying plate, multiple seed storage racks can be installed. The structure is stable and the installation is convenient, which is beneficial for long-term use.

[0020] 3. Four dehumidifier housings are installed at the rear end of the dehumidifying plate of the present invention to dehumidify eight seed storage racks respectively. Each dehumidifier housing can dehumidify the inside of two seed storage racks at the same time. The air extraction pipe rack is embedded in the hollow air guiding groove. Through the air extraction port on the surface of the air extraction pipe rack, the humid air inside the seed storage rack can be exported. First, the dehumidifying fan sucks out the humid air sucked by the air extraction pipe rack, compresses the refrigerant through a small compressor, then evaporates the moisture in the humid air through the evaporator, and finally discharges it from the inside of the dehumidifier housing to achieve the dehumidifying effect. The structure is simple and the position is stable, which can improve the storage effect of vegetable seeds and is beneficial for long-term use. Description of the Drawings

[0021] Figure 1 Is an axonometric view of the front view of the present invention;

[0022] Figure 2 Is the present invention Figure 1 Partial enlarged view of area A in;

[0023] Figure 3 Is an axonometric view of the rear view of the present invention;

[0024] Figure 4Axonometric view of the front view after the splicing of the seed storage rack of the present invention;

[0025] Figure 5 For the present invention Figure 4 Partial enlarged view of area B in;

[0026] Figure 6 Internal structure diagram of the dehumidifier housing of the present invention;

[0027] Figure 7 Internal structure diagram of the seed storage rack of the present invention;

[0028] Figure 8 For the present invention Figure 7 Partial enlarged view of area C in;

[0029] Figure 9 For the present invention Figure 7 Partial enlarged view of area D in.

[0030] In the figure: 1. Storage device bracket; 101. Protective partition; 102. Welding rack; 2. Dehumidification plate; 201. Air extraction pipe rack; 202. Air extraction port; 203. Positioning notch; 3. Seed storage rack; 301. Partition board; 302. Hollow air guide groove; 303. Splicing rack; 304. Splicing socket; 305. Strip-shaped air vent; 306. Splicing positioning groove; 307. Anti-slip buckle; 308. Positioning bayonet; 309. Pressure spring; 310. Splicing pin; 4. Dehumidifier housing; 401. Dehumidification fan; 402. Evaporator; 403. Small compressor; 404. Solenoid valve. Detailed implementation manners

[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0032] In order to solve the problems that the existing vegetable seed storage device is single in structure, does not have the function of rapid installation, and has poor adaptability during actual use, please refer to Figures 1 - 3 、 Figures 7 - 9 , the following technical solutions are provided in this embodiment:

[0033] A vegetable seed storage device that can dehumidify and be spliced, including a storage device bracket 1, a dehumidification plate 2 is installed on the rear end surface of the storage device bracket 1, an air extraction pipe rack 201 is arranged on the surface of the dehumidification plate 2, and a seed storage rack 3 is arranged at the front end of the dehumidification plate 2;

[0034] The seed storage rack 3 includes a splicing rack 303. The splicing rack 303 is arranged on one side of the seed storage rack 3, and an integrally formed splicing positioning groove 306 is arranged on the other side of the seed storage rack 3. An integrally formed hollow air guide groove 302 is arranged inside the seed storage rack 3. Through magnetic attraction fixation and limitation, the positions of two adjacent seed storage racks 3 are kept stable. Then, by stacking the seed storage racks 3, multiple combination operations are carried out, and the splicing work is carried out quickly to adapt to the storage of vegetable seeds in different quantities. It has strong practicability and can adapt to different usage environments.

[0035] On one side inside the seed storage rack 3, there is a splicing socket 304. Inside the splicing socket 304, there is a magnetic attraction block. One end of the splicing rack 303 is installed with a splicing pin 310. The splicing pin 310 extends into the inside of the splicing rack 303 and is slidably connected to the splicing rack 303. Inside the splicing rack 303, a compression spring 309 is installed. The two ends of the compression spring 309 are respectively fixedly connected to the splicing rack 303 and the splicing pin 310. The splicing rack 303 passes through the splicing positioning groove 306 and is inserted into the inside of the seed storage rack 3 on one side, and the splicing pin 310 is embedded into the splicing socket 304 inside the seed storage rack 3 on one side to be engaged with the seed storage rack 3. The storage device adopts a modular combination method. Through the combination of multiple seed storage racks 3, between adjacent seed storage racks 3, the splicing rack 303 is inserted into the splicing positioning groove 306 inside. The splicing pin 310 at the front end of the splicing rack 303 is inserted into the splicing socket 304 inside the adjacent seed storage rack 3. Through magnetic attraction fixation and limitation, the positions of two adjacent seed storage racks 3 are kept stable.

[0036] Specifically, the storage device adopts a modular combination method. Through the combination of multiple seed storage racks 3, between adjacent seed storage racks 3, the splicing rack 303 is inserted into the splicing positioning groove 306 inside. The splicing pin 310 at the front end of the splicing rack 303 is inserted into the splicing socket 304 inside the adjacent seed storage rack 3. Through magnetic attraction fixation and limitation, the positions of two adjacent seed storage racks 3 are kept stable. Then, by stacking the seed storage racks 3, multiple combination operations are carried out, and the splicing work is carried out quickly to adapt to the storage of vegetable seeds in different quantities. It has strong practicability and can adapt to different usage environments.

[0037] In order to solve the problems that the existing vegetable seed storage device is structurally unstable and cannot be quickly installed and fixed during actual use, please refer to Figures 1 - 5 This embodiment provides the following technical solutions:

[0038] A protective partition 101 is installed outside the storage device bracket 1. The protective partition 101 is respectively arranged at the upper end, lower end and both sides of the storage device bracket 1. A storage opening is arranged at the front end of the storage device bracket 1.

[0039] There is a welding frame 102 on the outside of the storage device bracket 1. The welding frame 102 is connected to the protective partition 101 by fixing screws. The dehumidification plate 2 is fixedly connected to the storage device bracket 1 and the welding frame 102 respectively by fixing screws. By fixing the dehumidification plate 2, it is convenient to install multiple seed storage racks 3. The structure is stable, the installation is convenient, and it is beneficial for long-term use.

[0040] The air extraction pipe rack 201 passes through the dehumidification plate 2 and is fixedly connected to the dehumidification plate 2. There is an integrally formed air extraction port 202 on the outside of the air extraction pipe rack 201. A dehumidifier housing 4 is installed at the rear end of the dehumidification plate 2. The air extraction pipe rack 201 is communicated with the air extraction port 202 and the dehumidifier housing 4 respectively.

[0041] There is an integrally formed positioning notch 203 at the center inside the air extraction pipe rack 201. The positioning notch 203 is used to fix one side of the seed storage rack 3. There is an integrally formed positioning bayonet 308 between the splicing positioning groove 306 and the splicing rack 303. The positioning bayonet 308 is used to connect the air extraction pipe rack 201. The air extraction pipe rack 201 and the seed storage rack 3 are fixed through the positioning bayonet 308 and the positioning notch 203 to realize the rapid installation work. The seed storage rack 3 is installed at the front end of the dehumidification plate 2. The dehumidification plate 2 is composed of multiple bent air extraction pipe racks 201. The width and length of each air extraction pipe rack 201 correspond to the width and length of the internal hollow air guide groove 302 of the seed storage rack 3, so as to facilitate the installation work.

[0042] Anti-slip buckles 307 are provided on both sides inside the seed storage rack 3, and a partition plate 301 is installed inside the seed storage rack 3. The partition plate 301 is fixedly connected to the seed storage rack 3 through the anti-slip buckles 307. By providing multiple partition plates 301, it is convenient to store multiple vegetable seeds and perform layering work according to requirements.

[0043] Specifically, the seed storage rack 3 is installed at the front end of the dehumidification plate 2. The dehumidification plate 2 is composed of multiple bent air extraction pipe racks 201. The width and length of each air extraction pipe rack 201 correspond to the width and length of the internal hollow air guide groove 302 of the seed storage rack 3, so as to facilitate the installation work. The air extraction pipe rack 201 and the seed storage rack 3 are fixed through the positioning bayonet 308 and the positioning notch 203 to realize the rapid installation work. Then, the dehumidification plate 2 is installed through the storage device bracket 1. By fixing the dehumidification plate 2, it is convenient to install multiple seed storage racks 3. The structure is stable, the installation is convenient, and it is beneficial for long-term use.

[0044] In order to solve the problem that in the actual use process of the existing vegetable seed storage device, the dehumidification effect is not good, which affects the long-term storage work and is not conducive to long-term use, please refer to Figures 1 - 3 、 Figure 6 This embodiment provides the following technical solutions:

[0045] The interior of the partition board 301 is provided with ventilation holes, and the surfaces of the splicing frame 303 and the seed storage rack 3 are provided with integrally formed strip-shaped air vents 305. Both the strip-shaped air vents 305 and the ventilation holes are used to communicate with the air extraction port 202. The air extraction pipe rack 201 is embedded inside the hollow air guide groove 302. Through the air extraction port 202 on the surface of the air extraction pipe rack 201, the humid air inside the seed storage rack 3 can be discharged.

[0046] A dehumidifying fan 401 is installed outside the dehumidifier housing 4. The dehumidifying fan 401 is fixedly connected to the dehumidifier housing 4, and an electromagnetic valve 404 is installed inside the dehumidifier housing 4. The electromagnetic valve 404 is respectively communicated with the air extraction port of the dehumidifying fan 401 and the air extraction pipe rack 201. Four dehumidifier housings 4 are installed at the rear end of the dehumidification plate 2 to dehumidify eight seed storage racks 3 respectively. Each dehumidifier housing 4 can dehumidify the interiors of two seed storage racks 3 simultaneously.

[0047] An evaporator 402 is installed on one side of the dehumidifying fan 401. Three small compressors 403 are arranged on one side of the evaporator 402. The dehumidifying fan 401 is used to suck out the humid air inside the seed storage rack 3. The evaporator 402 is used to evaporate the moisture in the humid air and discharge it from the dehumidifier housing 4. The humid air sucked by the air extraction pipe rack 201 is extracted by the dehumidifying fan 401, the refrigerant is compressed by the small compressor 403, and then the moisture in the humid air is evaporated by the evaporator 402 and finally discharged from the interior of the dehumidifier housing 4 to achieve the dehumidification effect. The structure is simple and the position is stable, which can improve the storage effect of vegetable seeds and is beneficial for long-term use.

[0048] Specifically, four dehumidifier housings 4 are installed at the rear end of the dehumidification plate 2 to dehumidify eight seed storage racks 3 respectively. Each dehumidifier housing 4 can dehumidify the interiors of two seed storage racks 3 simultaneously. The air extraction pipe rack 201 is embedded inside the hollow air guide groove 302. Through the air extraction port 202 on the surface of the air extraction pipe rack 201, the humid air inside the seed storage rack 3 can be discharged. The humid air sucked by the air extraction pipe rack 201 is first extracted by the dehumidifying fan 401, the refrigerant is compressed by the small compressor 403, and then the moisture in the humid air is evaporated by the evaporator 402 and finally discharged from the interior of the dehumidifier housing 4 to achieve the dehumidification effect. The structure is simple and the position is stable, which can improve the storage effect of vegetable seeds and is beneficial for long-term use.

[0049] Working principle: When in use, multiple partition plates 301 are set to store multiple vegetable seeds. According to requirements, hierarchical work is carried out. The seed storage rack 3 is installed at the front end of the dehumidification plate 2. The dehumidification plate 2 is composed of a combination of multiple bent air extraction pipe racks 201. The width and length of each air extraction pipe rack 201 correspond to the width and length of the internal hollow air guide groove 302 of the seed storage rack 3 for installation. The air extraction pipe rack 201 and the seed storage rack 3 are fixed through the positioning bayonet 308 and the positioning notch 203. Four dehumidifier housings 4 are installed at the rear end of the dehumidification plate 2 to dehumidify eight seed storage racks 3 respectively. Each dehumidifier housing 4 can dehumidify the inside of two seed storage racks 3 at the same time. The air extraction pipe rack 201 is embedded in the internal hollow air guide groove 302. Through the air extraction port 202 on the surface of the air extraction pipe rack 201, the humid air inside the seed storage rack 3 can be discharged. First, the humid air absorbed by the air extraction pipe rack 201 is extracted by the dehumidification fan 401. The refrigerant is compressed by the small compressor 403, and then the moisture in the humid air is evaporated through the evaporator 402, and finally discharged from the inside of the dehumidifier housing 4 to achieve the dehumidification effect. The structure is simple and the position is stable, which can improve the storage effect of vegetable seeds and is beneficial for long-term use. The dehumidification plate 2 is installed through the storage device bracket 1, and multiple seed storage racks 3 are installed by fixing the dehumidification plate 2. The storage device adopts a modular combination method and is combined through multiple seed storage racks 3. The splicing frame 303 is inserted into the splicing positioning groove 306 inside the adjacent seed storage racks 3. The splicing plug 310 at the front end of the splicing frame 303 is inserted into the splicing socket 304 inside the adjacent seed storage racks 3, and the position is fixed and limited by magnetic attraction to keep the positions of two adjacent seed storage racks 3 stable. Then, by stacking the seed storage racks 3, multiple combination works are carried out, and the splicing work is carried out quickly to adapt to the storage of different quantities of vegetable seeds. It has strong practicability and can adapt to different use environments.

[0050] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0051] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention.

Claims

1. A dehumidifying and spliceable vegetable seed storage device, including a storage device bracket (1), characterized in that, A dehumidification plate (2) is installed on the rear end surface of the storage device bracket (1). An air extraction pipe rack (201) is arranged on the surface of the dehumidification plate (2), and a seed storage rack (3) is arranged at the front end of the dehumidification plate (2). The seed storage rack (3) includes a splicing rack (303). The splicing rack (303) is arranged on one side of the seed storage rack (3), and a splicing positioning groove (306) formed integrally is arranged on the other side of the seed storage rack (3). A hollow air guiding groove (302) formed integrally is arranged inside the seed storage rack (3).

2. The dehumidifying and spliceable vegetable seed storage device according to claim 1, wherein: A protective partition (101) is installed outside the storage device bracket (1). The protective partition (101) is respectively arranged at the upper end, lower end and both sides of the storage device bracket (1), and a storage port is arranged at the front end of the storage device bracket (1).

3. The vegetable seed storage device according to claim 2, which is dehumidifying and can be spliced, is characterized in that: A welding rack (102) is arranged outside the storage device bracket (1). The welding rack (102) is connected with the protective partition (101) by fixing screws, and the dehumidification plate (2) is fixedly connected with the storage device bracket (1) and the welding rack (102) respectively by fixing screws.

4. A dehumidifying and spliceable vegetable seed storage device according to claim 1, characterized in that: The air extraction pipe rack (201) penetrates through the dehumidification plate (2) and is fixedly connected with the dehumidification plate (2). An air extraction port (202) formed integrally is arranged outside the air extraction pipe rack (201). A dehumidifier housing (4) is installed at the rear end of the dehumidification plate (2). The air extraction pipe rack (201) is communicated with the air extraction port (202) and the dehumidifier housing (4) respectively.

5. A dehumidifying and spliceable vegetable seed storage device according to claim 1, characterized in that: A positioning slot opening (203) formed integrally is arranged at the center inside the air extraction pipe rack (201). The positioning slot opening (203) is used for fixing one side of the seed storage rack (3). A positioning bayonet (308) formed integrally is arranged between the splicing positioning groove (306) and the splicing rack (303). The positioning bayonet (308) is used for connecting the air extraction pipe rack (201).

6. A dehumidifying and spliceable vegetable seed storage device according to claim 4, characterized in that: Anti-slip buckles (307) are arranged on both sides inside the seed storage rack (3), and a partition plate (301) is installed inside the seed storage rack (3). The partition plate (301) is fixedly connected with the seed storage rack (3) through the anti-slip buckles (307).

7. A dehumidifying and spliceable vegetable seed storage device according to claim 6, characterized in that: Vent holes are arranged inside the partition plate (301). Strip-shaped air vents (305) formed integrally are arranged on the surfaces of the splicing rack (303) and the seed storage rack (3). The strip-shaped air vents (305) and the vent holes are both used for communicating with the air extraction port (202).

8. A dehumidifying and spliceable vegetable seed storage device according to claim 7, characterized in that: On one side inside the seed storage rack (3), there is a splicing socket (304). Inside the splicing socket (304), there is a magnetic attraction block. One end of the splicing rack (303) is installed with a splicing pin (310). The splicing pin (310) extends into the splicing rack (303) and is slidably connected to the splicing rack (303). Inside the splicing rack (303), a compression spring (309) is installed. The two ends of the compression spring (309) are respectively fixedly connected to the splicing rack (303) and the splicing pin (310). The splicing rack (303) passes through the splicing positioning groove (306) and is inserted into the inside of the seed storage rack (3) on one side, and the splicing pin (310) is embedded into the splicing socket (304) of the seed storage rack (3) on one side to be engaged with the seed storage rack (3).

9. The dehumidifying and spliceable vegetable seed storage device according to claim 4, wherein: On the outside of the dehumidifier housing (4), a dehumidifying fan (401) is installed. The dehumidifying fan (401) is fixedly connected to the dehumidifier housing (4). And inside the dehumidifier housing (4), a solenoid valve (404) is installed. The solenoid valve (404) is respectively communicated with the air suction port of the dehumidifying fan (401) and the air suction pipe rack (201).

10. A dehumidifying and spliceable vegetable seed storage device according to claim 9, characterized in that: On one side of the dehumidifying fan (401), an evaporator (402) is installed. On one side of the evaporator (402), there are three small compressors (403). The dehumidifying fan (401) is used to suck out the humid air inside the seed storage rack (3). The evaporator (402) is used to evaporate the moisture in the humid air to discharge it from the dehumidifier housing (4).

Citation Information

Patent Citations

  • Vegetable seed storage box with drying function

    CN208047362U