Pig semen separation table
Patent Information
- Application Number
- CN202522364973.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-07
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-07
AI Technical Summary
传统精液分离多采用人工手持搅拌、普通桌面放置分离容器的方式,存在以下问题:1. 搅拌高度固定,无法适配不同高度的分离烧杯,易导致搅拌不均或桨叶触碰杯壁;2. 缺乏恒温控制,室温波动会导致精液温度偏离适宜范围(20- 25℃),降低精子活力;3.分离烧杯无固定结构,搅拌过程中易倾倒,影响分离效率
[0011]本实用新型的有益效果是:1.通过提升杆调解升降板的高度,进而实现调解搅拌杆以及搅拌叶片的高度,从而适配不同高度的分离烧杯,避免搅拌不均或桨叶触碰杯壁。
Smart Images

Figure CN224784147U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pig semen processing equipment, and in particular to a pig semen separation table. Background Technology
[0002] In artificial insemination of pigs, the purity of the separated bovine semen and the ambient temperature during processing directly affect sperm motility, thus determining the insemination success rate. Traditional semen separation methods often involve manual hand-held stirring and placing the separation container on a regular table, which has the following problems: 1. The stirring height is fixed, making it unsuitable for separation beakers of different heights, easily leading to uneven stirring or the impeller touching the beaker wall; 2. Lack of constant temperature control, room temperature fluctuations can cause the semen temperature to deviate from the suitable range (20-25℃), reducing sperm motility; 3. The separation beaker lacks a fixed structure, making it easy to tip over during stirring, affecting separation efficiency. Utility Model Content
[0003] The purpose of this invention is to overcome the above-mentioned technical defects and propose a boar semen separation table that achieves high-efficiency and stable separation of boar semen through adjustable stirring height, constant temperature control and fixing device.
[0004] The technical solution adopted by this utility model to achieve its technical purpose is: a pig semen separation table, including a worktable, a support frame on the worktable, a lifting plate on the upper part of the support frame, an optical shaft at one end of the lifting plate and a drive motor at the other end, and a first temperature controller and a second temperature controller in front of the drive motor and on the support frame. The top of the optical axis is sleeved on the lifting plate, and the bottom extends downward and is fixed on the worktable; the output shaft of the drive motor extends downward through the lifting plate, and a stirring rod is connected on the output shaft of the drive motor and below the lifting plate, with stirring blades provided at the lower end of the stirring rod; A lifting rod is provided between the optical axis and the drive motor, and above the lifting plate. The bottom of the lifting rod is fixed to the lifting plate, and the top extends out of the support frame and is provided with a stop block. A slot is also provided on the surface of the lifting rod, and a through hole is also provided on the top of the support frame. The top of the lifting rod passes through the through hole, and the slot can engage with the through hole. A water tank is provided on the upper surface of the workbench, and a first cooling plate is provided on the lower surface. A support plate is provided above the water tank. One end of the support plate is fixed to the left side of the support frame, and the other end extends upward toward the water tank. A groove is provided at the extended end of the support plate. A beaker is provided in the water tank, directly opposite the groove. A second cooling plate is also provided on the upper surface of the support plate. A first radiator is provided on the back of the first cooling plate, and a second radiator is provided on the back of the second cooling plate. A first temperature controller is communicatively connected to the first cooling plate and the first radiator, and a second temperature controller is communicatively connected to the second cooling plate and the second radiator.
[0005] Preferably, the through hole at the top of the support frame is a gourd-shaped through hole, with the diameter on the left side of the gourd-shaped through hole being smaller than the diameter on the right side.
[0006] Preferably, a retaining ring is provided inside the water tank and around the beaker.
[0007] Preferably, both the first and second refrigeration chips are semiconductor refrigeration chips.
[0008] Preferably, both the first radiator and the second radiator are cooling fans.
[0009] Preferably, the beaker is made of stainless steel.
[0010] Preferably, the first temperature controller is set to 17°C and the second temperature controller is set to 25°C.
[0011] The beneficial effects of this utility model are: 1. By adjusting the height of the lifting plate through the lifting rod, the height of the stirring rod and stirring blade can be adjusted, thereby adapting to separation beakers of different heights and avoiding uneven stirring or the blade touching the beaker wall.
[0012] 2. The first temperature controller is connected to the first cooling chip and the first heat sink, and the second temperature controller is connected to the second cooling chip and the second heat sink to achieve constant temperature control inside the beaker, guide the more active pig sperm to swim to the appropriate temperature range, and facilitate the separation of pig semen.
[0013] 3. The drive motor is fixed on the lifting plate. Retaining rings are set inside the water tank and around the beaker to facilitate the fixing of the stirring rod and the beaker, and to prevent the beaker from tipping over during the stirring process, which would affect the separation efficiency. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the present invention from another angle; Figure 3 This is a cross-sectional view of the entire utility model; Figure 4 This is a schematic diagram of the bottom structure of the support frame; Figure 5 This is a schematic diagram of the top structure of the support frame.
[0015] The diagram is marked as follows: 1. Workbench; 2. Support frame; 3. Lifting plate; 4. Optical axis; 5. Drive motor; 6. First temperature controller; 7. Second temperature controller; 8. Stirring rod; 9. Stirring blade; 10. Lifting rod; 11. Stop block; 12. Slot; 13. Through hole; 14. Water tank; 15. First cooling chip; 16. Support plate; 17. Groove; 18. Beaker; 19. Second cooling element; 20. First radiator; 21. Second radiator; 22. Retaining ring. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments. Example
[0017] like Figure 1-5 As shown: a pig semen separation table includes a workbench 1, a support frame 2 on the workbench 1, a lifting plate 3 on the upper part of the support frame 2, an optical shaft 4 at one end of the lifting plate 3 and a drive motor 5 at the other end, and a first temperature controller 6 and a second temperature controller 7 in front of the drive motor 5 and on the support frame 2. The top of the optical axis 4 is sleeved on the lifting plate 3, and the bottom extends downward and is fixed on the worktable 1; the output shaft of the drive motor 5 extends downward through the lifting plate 3, and a stirring rod 8 is connected on the output shaft of the drive motor 5 and below the lifting plate 3, and a stirring blade 9 is provided at the lower end of the stirring rod 8. A lifting rod 10 is provided between the optical axis 4 and the drive motor 5, and above the lifting plate 3. The bottom of the lifting rod 10 is fixed to the lifting plate 3, and the top extends out of the support frame 2 and is provided with a stop block 11. A slot 12 is also provided on the surface of the lifting rod 10, and a through hole 13 is also provided on the top of the support frame 2. The top of the lifting rod 10 passes through the through hole 13, and the slot 12 can be engaged with the through hole 13. A water tank 14 is provided on the upper surface of the workbench 1, and a first cooling plate 15 is provided on the lower surface. A support plate 16 is provided above the water tank 14. One end of the support plate 16 is fixed to the left side of the support frame 2, and the other end extends upward toward the water tank 14. A groove 17 is provided at the extended end of the support plate 16. A beaker 18 is provided in the water tank 14, directly opposite the groove 17. A second cooling plate 19 is also provided on the upper surface of the support plate 16. A first radiator 20 is provided on the back of the first cooling plate 15, and a second radiator 21 is provided on the back of the second cooling plate 19. A first temperature controller 6 is communicatively connected to the first cooling plate 15 and the first radiator 20, and a second temperature controller 7 is communicatively connected to the second cooling plate 19 and the second radiator 21.
[0018] The through hole 13 at the top of the support frame 2 is a gourd-shaped through hole, with the diameter on the left side being smaller than the diameter on the right side.
[0019] A retaining ring 22 is also provided inside the water tank 14 and around the beaker 18.
[0020] Both the first refrigeration chip 15 and the second refrigeration chip 19 are semiconductor refrigeration chips.
[0021] Both the first radiator 20 and the second radiator 21 are cooling fans.
[0022] The beaker 18 is made of stainless steel.
[0023] The first temperature controller 6 is set to a temperature of 17°C, and the second temperature controller 7 is set to a temperature of 25°C.
[0024] The working principle and process of this utility model are as follows: First, move the lifting rod 10 to the right side of the gourd-shaped through hole 13. By pulling the lifting rod 10, the lifting plate 3 is driven to move up and down along the optical axis 4. After the lifting plate 3 moves to the appropriate height, move the lifting rod 10 to the left side of the gourd-shaped through hole 13. The slot 12 on the lifting rod 10 engages and locks with the left side of the gourd-shaped through hole 13, and the position of the lifting plate 3 is fixed.
[0025] Pour the pig semen solution to be separated into a stainless steel beaker 18. Drive motor 5 drives stirring rod 8 to rotate stirring blade 9 to stir the pig semen solution evenly. Then drive motor 5 stops working.
[0026] The first temperature controller 6 is activated to control the first cooling element 15 and the first radiator 20 to operate. The second temperature controller 7 is activated to control the second cooling element 19 and the second radiator 21 to operate. After the first temperature controller 6 reaches the set temperature of 17°C and the second temperature controller 7 reaches the set temperature of 25°C, the cooling operation stops, and the temperature on both sides of the beaker 18 remains constant.
[0027] At this point, the upper layer of beaker 18 reaches 25°C, and the lower layer reaches 17°C. The upper layer has a larger space for movement, while the lower layer has a smaller space. The more active boar sperm swims to the upper region of beaker 18, while the less active boar sperm swims to the lower region, thus separating the superior and inferior boar sperm, and consequently, the quality of the boar semen. The more active boar sperm concentrate in the upper region of beaker 18, facilitating their entry into the next separation process.
[0028] Both the first cooling chip 15 and the second cooling chip 19 are semiconductor cooling chips. Temperature control is achieved by using semiconductor cooling chips. Cooling fans, namely the first heat sink 20 and the second heat sink 21, are installed on the hot side, which can quickly adjust the corresponding area to the set temperature and accelerate the separation speed of pig semen.
Claims
1. A boar semen separation table, comprising a worktable, wherein a support frame is provided on the worktable, characterized in that: A lifting plate is provided on the upper part of the support frame. An optical axis is provided at one end of the lifting plate and a drive motor is provided at the other end. A first temperature controller and a second temperature controller are also provided in front of the drive motor and on the support frame. The top of the optical axis is sleeved on the lifting plate, and the bottom extends downward and is fixed on the worktable; the output shaft of the drive motor extends downward through the lifting plate, and a stirring rod is connected on the output shaft of the drive motor and below the lifting plate, with stirring blades provided at the lower end of the stirring rod; A lifting rod is provided between the optical axis and the drive motor, and above the lifting plate. The bottom of the lifting rod is fixed to the lifting plate, and the top extends out of the support frame and is provided with a stop block. A slot is also provided on the surface of the lifting rod, and a through hole is also provided on the top of the support frame. The top of the lifting rod passes through the through hole, and the slot can engage with the through hole. A water tank is provided on the upper surface of the workbench, and a first cooling plate is provided on the lower surface. A support plate is provided above the water tank. One end of the support plate is fixed to the left side of the support frame, and the other end extends upwards towards the water tank. A groove is provided at the extended end of the support plate. A beaker is provided in the water tank, directly opposite the groove. A second cooling plate is also provided on the upper surface of the support plate. A first radiator is provided on the back of the first cooling plate, and a second radiator is provided on the back of the second cooling plate. A first temperature controller is communicatively connected to the first cooling plate and the first radiator, and a second temperature controller is communicatively connected to the second cooling plate and the second radiator.
2. The boar semen separation station according to claim 1, characterized in that: The through hole at the top of the support frame is gourd-shaped, with the diameter on the left side being smaller than that on the right side.
3. The boar semen separation station according to claim 1, characterized in that: A retaining ring is also provided inside the water tank and around the beaker.
4. The boar semen separation station according to claim 1, characterized in that: Both the first and second refrigeration chips are semiconductor refrigeration chips.
5. The boar semen separation station according to claim 1, characterized in that: Both the first and second heat sinks are cooling fans.
6. The boar semen separation station according to claim 1, characterized in that: The beaker is made of stainless steel.
7. The boar semen separation station according to claim 1, characterized in that: The first temperature controller is set to 17°C, and the second temperature controller is set to 25°C.