Wheat germination accelerating equipment
By designing the pushing part and the toggle part in the wheat germination equipment, the problem of uneven contact between wheat seeds in existing equipment is solved, and uniform germination of wheat seeds is achieved and germination efficiency is improved.
Patent Information
- Application Number
- CN202421980942.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing germination equipment cannot push up and reversal the wheat seeds in the device, resulting in uneven contact with the nutrient solution and water of the wheat seeds, and the germination status is different, which reduces the germination efficiency.
A wheat germination device is designed, including a pushing part and a toggle part. The pushing part drives the bottom wheat seeds to the upper layer of the loading part through the rotating shaft to ensure uniform contact with the nutrient solution and water; the pushing part pushes the pushing part back into the loading part of the upper layer to realize cyclic operation.
Through the design of the push-up and toggle parts, we ensure that all wheat seeds are evenly exposed to nutrient solution and water, which improves the germination efficiency of wheat and avoids the problem of different germination states.
Smart Images

Figure CN223007882U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of germination equipment, and more specifically to wheat germination equipment. Background Art
[0002] Wheat is a general term for plants of the wheat family. It is a monocotyledonous plant of the Poaceae family that is widely grown all over the world. The caryopsis of wheat is one of the staple foods of mankind. After being ground into flour, it can be used to make bread, steamed buns, biscuits, noodles and other foods. Generally, wheat seeds need to be soaked and germinated before sowing. Germination can accelerate the hydrolysis of nutrients in the seeds, promote enzyme activity, and is conducive to early germination and the formation of strong seedlings, shortening the emergence time of wheat.
[0003] The existing germination equipment cannot push up and pull back the wheat seeds in the device during the germination process. The wheat seeds in the device are unevenly exposed to the nutrient solution and water, resulting in different germination states of the wheat seeds, which greatly reduces the efficiency of wheat germination.
[0004] Therefore, we propose a wheat germination equipment to solve the above problems. Utility Model Content
[0005] In view of the problems existing in the prior art, the purpose of the utility model is to provide a wheat seed germination device, which solves the problem that the wheat seeds in the device cannot be pushed up and pulled back during the germination process, resulting in different germination states of the wheat seeds.
[0006] Technical solution: To solve the above problems, the utility model adopts the following technical solution: a wheat germination equipment, comprising: a bearing part; for placing wheat seeds to be germinated; a driving source; a rotating shaft connected to the driving source and rotating under the driving of the driving source; the driving source has sufficient power to drive the rotating shaft to rotate; a pushing part, located in the bearing part and connected to the rotating shaft, rotating in the bearing part under the driving of the rotating shaft; and the side wall of the pushing part in the rotation direction is arranged to bend upward and inward from the bottom so that the wheat seeds move upward from the bottom of the bearing part; a reversing part, connected to the rotating shaft; a toggle part, connected to the reversing part and rotating under the driving of the reversing part, and arranged that the rotation direction of the toggle part is opposite to the rotation direction of the pushing part, and is used to push the wheat seeds pushed up by the pushing part back into the bearing part; the pushing part rotates through the rotating shaft so that the wheat seeds at the bottom are pushed up to the bearing part, so that the seed surface at the bottom is fully in contact with the nutrient solution and water, and then the toggle part pushes the pushed wheat seeds back into the bearing part, so that the wheat seeds can be evenly in contact with the nutrient solution and water in this cycle.
[0007] In a new embodiment, a motor; a belt installed on the motor, and the belt is connected to the rotating shaft.
[0008] In a new embodiment, a sleeve; a bearing, the inner ring of the bearing is connected to the rotating shaft, and the outer ring of the bearing is fixedly connected to the sleeve.
[0009] In a new embodiment, a transmission shaft is connected to the rotating shaft for transmitting the power of the rotating shaft; a plurality of arc-shaped partitions are installed on the transmission shaft for pushing up the wheat seeds to be germinated.
[0010] In a new embodiment, an annular groove is provided on the transmission shaft; an outer module is rotationally connected to the annular groove; a large gear is mounted on the rotating shaft, and the large gear rotates with the rotating shaft; a fixed column is mounted inside the sleeve; a plurality of small gears are mounted on the fixed column, the small gears are meshed with the large gear, and the small gears are meshed with the outer module, and are arranged such that when the large gear rotates with the rotating shaft, the large gear drives the small gear to rotate, and the small gear rotates on its own, so that the rotation direction of the outer module is opposite to the rotation direction of the large gear.
[0011] In a new embodiment, a plurality of arch bridge partitions are rotatably connected to the outer module, the arch bridge partitions are rotated through the outer module, and are configured so that when the arch bridge partitions contact the arc-shaped partitions, the arch bridge partitions rotate relatively; an elastic member is installed on the arch bridge partitions, and is configured so that when the arch bridge partitions rotate relatively, the elastic member deforms.
[0012] In a new embodiment, a plurality of circular containers are connected to the sleeve, and the circular containers are located at the bottom of the transmission shaft; an annular baffle is installed on the circular containers to prevent wheat seeds from rotating out of the circular containers.
[0013] In a new embodiment, an annular cover plate is installed on the top of the outer module to block the rotating wheat seeds from entering.
[0014] Beneficial effect: Compared with the prior art, the advantage of the utility model is that when the wheat equipment is germinating, the pushing part will push the wheat seeds to be germinated at the bottom to the upper layer, and then the pushing part will push the wheat seeds pushed to the upper layer back, so that all wheat seeds can evenly contact the nutrient solution and water. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is an overall schematic diagram of the utility model.
[0016] Figure 2 It is a front schematic diagram of the utility model.
[0017] Figure 3 It is a schematic diagram of some parts of the utility model.
[0018] Figure 4It is a schematic cross-sectional view of the push-up portion of the utility model.
[0019] The reference numerals in the figure are: 1. bearing part; 101. circular container; 102. annular baffle; 2. driving source; 201. motor; 202. belt; 203. sleeve; 204. bearing; 205. rotating shaft; 3. lifting part; 301. transmission shaft; 302. arc partition; 4. reversing part; 401. annular groove; 402. outer module; 403. large gear; 404. fixing column; 405. small gear; 406. annular cover plate; 5. toggle part; 501. arch bridge partition; 502. elastic member. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model; it is obvious that the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments, and all other embodiments obtained by ordinary technicians in this field based on the embodiments of the utility model without making creative work are within the scope of protection of the utility model.
[0021] See also Figures 1 - 4 , Figure 1 It is an overall schematic diagram of the utility model; Figure 2 It is a schematic diagram of the front side of the utility model, a wheat seed germination equipment, comprising: a bearing part 1; for placing wheat seeds to be germinated; a driving source 2; a rotating shaft 205, connected to the driving source 2, and rotated under the drive of the driving source 2; a pushing part 3, located in the bearing part 1 and connected to the rotating shaft 205, and rotated in the bearing part 1 under the drive of the rotating shaft 205; and the side wall of the pushing part 3 in the rotation direction is arranged to bend upward and inward from the bottom, so that the wheat seeds move upward from the bottom of the bearing part 1; a reversing part 4, connected to the rotating shaft 205; a toggle part 5, connected to the reversing part 4, and rotated under the drive of the reversing part 4, and the rotation direction of the toggle part 5 is arranged to be opposite to the rotation direction of the pushing part 3, so as to push the wheat seeds pushed up by the pushing part 3 back into the bearing part 1.
[0022] Please refer to Figure 2 , motor 201; belt 202, installed on the motor 201, and the belt 202 is connected to the rotating shaft 205.
[0023] The belt 202 has a tensioning device to ensure that the belt 202 has an appropriate tension to prevent the belt 202 from slipping when the motor 201 is driving.
[0024] Please refer to Figure 2 , sleeve 203; bearing 204, the inner ring of the bearing 204 is connected to the rotating shaft 205, and the outer ring of the bearing 204 is fixedly connected to the sleeve 203.
[0025] The sleeve 203 is a fixed external structure with a hollow interior. The inner wall of the sleeve 203 is fixedly welded to the outer ring of the bearing 204. The rotating shaft 205 is located inside the sleeve 203 and can rotate freely without affecting the fixation of the sleeve 203.
[0026] Please refer to Figure 4 , the transmission shaft 301, is connected to the rotating shaft 205 and is used to transmit the power of the rotating shaft 205; a plurality of arc-shaped partitions 302 are installed on the transmission shaft 301 and are used to lift the wheat seeds to be germinated.
[0027] When the rotating shaft 205 rotates, the transmission shaft 301 transmits the power of the rotating shaft 205 to the arc-shaped partition 302. The rotating arc-shaped partition 302 continuously lifts the wheat seeds to be germinated, enabling the wheat seeds at the bottom to uniformly contact the nutrient solution and water, thereby improving the germination efficiency of the wheat seeds.
[0028] Please refer to Figure 3 and Figure 4 , the annular groove 401 is opened on the transmission shaft 301; the external modulus 402 is rotatably connected to the annular groove 401; the large gear 403 is installed on the rotating shaft 205, and the large gear 403 rotates with the rotating shaft 205; the fixed column 404 is installed inside the sleeve 203; a plurality of small gears 405 are installed on the fixed column 404, the small gear 405 meshes with the large gear 403, and the small gear 405 also meshes with the external modulus 402, and is arranged such that when the large gear 403 rotates with the rotating shaft 205, the large gear 403 drives the small gear 405 to rotate, and the small gear 405 rotates itself, so that the rotation direction of the external modulus 402 is opposite to the rotation direction of the large gear 403.
[0029] The annular groove 401 provides a track for the rotational connection of the external modulus 402. When the rotating shaft 205 drives the large gear 403 to rotate, the large gear 403 actuates the small gear 405 to rotate. The small gear 405 rotates around the fixed column 404 itself, so that the rotation direction of the external modulus 402 is opposite to the rotation direction of the large gear 403. Such a design realizes the reverse of motion without the need to add an additional reverse mechanism, and realizes complex motion within a limited space, improving the transmission efficiency and stability.
[0030] Please refer to Figure 3 , a plurality of arch-shaped partitions 501 are rotatably connected to the external modulus 402. The arch-shaped partitions 501 rotate through the external modulus 402, and are arranged such that when the arch-shaped partitions 501 contact the arc-shaped partitions 302, the arch-shaped partitions 501 undergo relative rotation; the elastic members 502 are installed on the arch-shaped partitions 501, and are arranged such that when the arch-shaped partitions 501 undergo relative rotation, the elastic members 502 are deformed.
[0031] The arch bridge partition 501 rotates with the outer module 402. Due to the rotational connection, when the arch bridge partition 501 contacts the arc partition 302, relative rotation can occur. The relative rotation will cause the elastic member 502 to deform. After the arch bridge partition 501 leaves the arc partition 302, the elastic member 502 helps the arch bridge partition 501 to return to its original position. The rebound of the elastic member 502 avoids the accumulation of wheat seeds, so that it can adapt to various quantities of wheat seeds, while reducing mechanical damage to the wheat seeds.
[0032] Please refer to Figure 2 Figure 4 A plurality of circular containers 101 are connected to the sleeve 203 , and the circular containers 101 are located at the bottom of the transmission shaft 301 ; an annular baffle 102 is installed on the circular container 101 to prevent the wheat seeds from rotating out of the circular container 101 .
[0033] The circular container 101 is detachable for easy cleaning and replacement, and the annular baffle 102 can be adjusted in height to accommodate different quantities of seeds. Such a circular container 101 with an adjustable annular baffle 102 can process a large number of seeds more efficiently and safely.
[0034] Please refer to Figure 1 The annular cover plate 406 is installed on the top of the outer module 402 to prevent the rotating wheat seeds from entering.
[0035] The annular cover plate 406 prevents wheat seeds from entering the gear system, thereby protecting the mechanical parts from damage caused by the entry of wheat seeds.
[0036] When the wheat germination equipment of the utility model is actually working, the pushing part 3 will push the wheat seeds to be germinated at the bottom to the upper layer, and then the shifting part 5 will shift the wheat seeds pushed to the upper layer back, so that all wheat seeds can be evenly contacted with nutrient solution and water, avoiding the different germination states of wheat and improving the germination efficiency of wheat.
[0037] The above is only a preferred specific implementation of the utility model; however, the protection scope of the utility model is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solution and improved ideas of the utility model within the technical scope disclosed by the utility model, which should be included in the protection scope of the utility model.
Claims
1. A wheat germination equipment, characterized in that: include: The supporting part (1) is used for placing wheat seeds to be germinated; Driving source (2); A rotating shaft (205) connected to the driving source (2) and rotated under the driving of the driving source (2); The pushing portion (3) is located in the bearing portion (1) and is connected to the rotating shaft (205). Driven by the rotating shaft (205), the pushing portion (3) rotates in the bearing portion (1). The side wall of the pushing portion (3) in the direction of rotation is arranged to bend upward and inward from the bottom, so that the wheat seeds move upward from the bottom of the bearing portion (1). A reversing portion (4) connected to the rotating shaft (205); The toggle portion (5) is connected to the reversing portion (4) and rotates under the drive of the reversing portion (4). The toggle portion (5) is arranged such that the rotation direction of the toggle portion (5) is opposite to the rotation direction of the lifting portion (3), and is used to push the wheat seeds pushed up by the lifting portion (3) back into the bearing portion (1).
2. A wheat germination equipment as claimed in claim 1, characterized in that: Also includes: Motor (201); A belt (202) is mounted on the motor (201), and the belt (202) is connected to the rotating shaft (205).
3. A wheat germination equipment as claimed in claim 2, characterized in that: Also includes: Sleeve (203); A bearing (204), wherein an inner ring of the bearing (204) is connected to the rotating shaft (205), and an outer ring of the bearing (204) is fixedly connected to the sleeve (203).
4. A wheat germination equipment as claimed in claim 3, characterized in that: The pushing portion (3) comprises: A transmission shaft (301), connected to the rotating shaft (205) and used to transmit power of the rotating shaft (205); A plurality of arc-shaped partitions (302) are mounted on the transmission shaft (301) and are used to push up the wheat seeds to be germinated.
5. A wheat germination equipment as claimed in claim 4, characterized in that: The reversing part (4) comprises: An annular groove (401) is formed on the transmission shaft (301); An outer module (402) rotatably connected to the annular groove (401); A large gear (403) is mounted on the rotating shaft (205), and the large gear (403) rotates along with the rotating shaft (205); A fixing column (404) installed inside the sleeve (203); A plurality of small gears (405) are mounted on the fixing column (404), the small gears (405) meshing with the large gear (403), and the small gears (405) meshing with the outer module (402), and are configured such that when the large gear (403) rotates along with the rotating shaft (205), the large gear (403) drives the small gears (405) to rotate, and the small gears (405) rotate on their own, so that the rotation direction of the outer module (402) is opposite to the rotation direction of the large gear (403).
6. A wheat germination equipment as claimed in claim 5, characterized in that: The toggle portion (5) comprises: A plurality of arch bridge partitions (501) are rotatably connected to the outer module (402), the arch bridge partitions (501) are rotated through the outer module (402), and are configured such that when the arch bridge partitions (501) contact the arc-shaped partitions (302), the arch bridge partitions (501) rotate relatively; The elastic member (502) is mounted on the arch bridge partition (501), and is configured such that when the arch bridge partition (501) rotates relatively, the elastic member (502) is deformed.
7. A wheat germination equipment as claimed in claim 4, characterized in that: The bearing portion (1) comprises: A plurality of circular containers (101) connected to the sleeve (203), and the circular containers (101) are located at the bottom of the transmission shaft (301); An annular baffle (102) is mounted on the circular container (101) and is used to prevent the wheat seeds from rotating out of the circular container (101).
8. The wheat germination equipment according to claim 5, characterized in that: Also includes: An annular cover plate (406) is installed on the top of the outer module (402) to prevent the rotating wheat seeds from entering.