Piglet feeding system
By designing a piglet feeding system and utilizing components such as a powder tank, a buffer tank, and a circulating pump, the problems of milk waste and inconsistent temperature were solved, achieving automated, economical, and temperature-controlled piglet feeding.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-03-27
AI Technical Summary
Existing piglet feeding devices have problems such as easy waste of milk, inability to maintain a constant milk temperature, and inability to automate feeding.
A system was designed that includes a powdering tank, a buffer tank, a circulating pump, connecting milk tubes and a feeding bowl, and is equipped with components such as an insulation layer, a stirring device, a heating plate, a temperature sensor and a solenoid valve to realize the circulating supply and automatic control of the emulsion, ensuring constant temperature and reducing waste.
It enables automated circulation of the emulsion, maintains a constant temperature, reduces waste, and improves feeding efficiency and automation.
Smart Images

Figure CN224038167U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of livestock farming, particularly to a piglet feeding system. BACKGROUND
[0002] In the farm, in order to solve the problem of insufficient sow milk, usually the piglets are concentrated into
[0003] Line feeding, to ensure that the piglets in the growth period required nutrients.
[0004] The existing piglet feeding device or system, when feeding piglets, still has the following problems:
[0005] Feeding emulsion is easy to waste, emulsion temperature cannot be kept constant, cannot be automated feeding,
[0006] Therefore, a piglet feeding system is proposed. UTILITY MODEL CONTENT
[0007] To solve the above at least one technical defect, the utility model provides a piglet feeding system, which comprises: a powder bucket, a buffer bucket, a circulating pump, a connecting milk pipe and a feeding bowl, the outlet of the powder bucket is connected with the inlet of the buffer bucket, the outlet of the buffer bucket is connected with the circulating pump, the outlet of the circulating pump is connected with the connecting milk pipe, a plurality of feeding bowls are connected in series on the connecting milk pipe, and the other end of the connecting milk pipe is connected with the buffer bucket.
[0008] The outlet of the powder bucket is connected with the inlet of the buffer bucket, the outlet of the buffer bucket is connected with the circulating pump, the outlet of the circulating pump is connected with the connecting milk pipe, a plurality of feeding bowls are connected in series on the connecting milk pipe, and the other end of the connecting milk pipe is connected with the buffer bucket.
[0009] The outlet of the powder bucket is connected with the inlet of the buffer bucket, the outlet of the buffer bucket is connected with the circulating pump, the outlet of the circulating pump is connected with the connecting milk pipe, a plurality of feeding bowls are connected in series on the connecting milk pipe, and the other end of the connecting milk pipe is connected with the buffer bucket.
[0010] The outlet of the powder bucket is connected with the inlet of the buffer bucket, the outlet of the buffer bucket is connected with the circulating pump, the outlet of the circulating pump is connected with the connecting milk pipe, a plurality of feeding bowls are connected in series on the connecting milk pipe, and the other end of the connecting milk pipe is connected with the buffer bucket.
[0011] The outlet of the powder bucket is connected with the inlet of the buffer bucket, the outlet of the buffer bucket is connected with the circulating pump, the outlet of the circulating pump is connected with the connecting milk pipe, a plurality of feeding bowls are connected in series on the connecting milk pipe, and the other end of the connecting milk pipe is connected with the buffer bucket.
[0012] Further, the outer wall of the powder bucket and the buffer bucket is provided with a heat preservation layer.
[0013] Further, the inside of the powder bucket is provided with a stirring device.
[0014] Further, the bottom of the buffer bucket is provided with a heating disc and a temperature sensor.
[0015] Further, a Y-shaped filter is arranged between the outlet of the buffer bucket and the circulating pump.
[0016] Further, the end of the connecting milk pipe is provided with an electromagnetic valve connected with the buffer bucket.
[0017] Further, the buffer bucket, the Y-shaped filter and the circulating pump are installed in the inside of the outer shell, and the powder bucket is fixed above the outer shell.
[0018] The outlet of the powder bucket is connected with the inlet of the buffer bucket, the outlet of the buffer bucket is connected with the circulating pump, the outlet of the circulating pump is connected with the connecting milk pipe, a plurality of feeding bowls are connected in series on the connecting milk pipe, and the other end of the connecting milk pipe is connected with the buffer bucket.
[0019] Further, the bowl mouth of the feeding bowl is provided with a circular arc flange. Advantages
[0020] 1. The emulsion is prepared by the powder mixing barrel, and the emulsion flows into the buffer barrel through the circulating pump and the milk pipe string
[0021] The associated feeding bowl finally returns to the buffer barrel, and the cycle is repeated in this way, and when piglets suck milk, the
[0022] The emulsion circulating in the water nozzle system will automatically flow out to feed the piglets.
[0023] The purposes, functional characteristics and advantages of the utility model will be combined with the embodiments, and the
[0024] The drawings are further illustrated. DESCRIPTION OF DRAWINGS
[0025] Fig. 1 is a structural schematic view of the utility model.
[0026] Fig. 2 is a structural schematic view of the box body of the utility model.
[0027] Fig. 3 is a structural schematic view of the nipple of the utility model.
[0028] In Fig. 1 to Fig. 3, the correspondence between the component name or line and the drawing number is as follows: powder mixing barrel 1, heat preservation layer 101, stirring device 102, buffer barrel 2, heating disc 201, Y-shaped filter 202, electromagnetic valve 203, circulating pump 3, connecting milk pipe 4, feeding bowl 5, touch-out water nozzle 501.
[0029] Barrel 1, heat preservation layer 101, stirring device 102, buffer barrel 2, heating disc 201, Y-shaped filter 202, electromagnetic valve 203, circulating pump 3, connecting milk pipe 4, feeding bowl 5, touch-out water nozzle 501.
[0030] Barrel 1, heat preservation layer 101, stirring device 102, buffer barrel 2, heating disc 201, Y-shaped filter 202, electromagnetic valve 203, circulating pump 3, connecting milk pipe 4, feeding bowl 5, touch-out water nozzle 501.
[0031] 501, outer shell 6. DETAILED DESCRIPTION
[0032] Please refer to Fig. 1 to Fig. 3;
[0033] The embodiment provides a piglet feeding system, which comprises a powder mixing barrel 1, a buffer barrel 2,
[0034] A circulating pump 3, a connecting milk pipe 4 and a feeding bowl 5, the outlet of the powder mixing barrel 1 is connected with the inlet of the buffer barrel 2, the outlet of the buffer barrel 2 is connected with the circulating pump 3, the outlet of the circulating pump 3 is connected with the connecting milk pipe 4, a plurality of feeding bowls 5 are connected in series on the connecting milk pipe 4, and the other end of the connecting milk pipe 4 is connected with the buffer barrel 2.
[0035] The other end of the connecting milk pipe 4 is connected with the buffer barrel 2.
[0036] The other end of the connecting milk pipe 4 is connected with the buffer barrel 2.
[0037] In practice, the emulsion is prepared in powder tank 1, and the emulsion flows into buffer tank 2.
[0038] The circulation pump 4 and the milk tube are connected in series, and the feeding bowl eventually returns to the buffer tank 2, thus repeating the cycle.
[0039] When piglets are nursing, touching the spittoon automatically dispenses the circulating milk from the system, supplying the piglets with milk.
[0040] Feed the cubs.
[0041] Furthermore, both the outer walls of the powder tank 1 and the buffer tank 2 are provided with a heat insulation layer 101.
[0042] In practice, the powder-dissolving tank 1 and the buffer tank 2 are insulated by the insulation layer 101.
[0043] Furthermore, the powder tank 1 is equipped with a stirring device 102 inside.
[0044] In specific implementation, the mixing is carried out by stirring device 102.
[0045] It must include at least a stirring blade and a motor.
[0046] Furthermore, the bottom of the buffer tank 2 is equipped with a heating plate 201 and a temperature sensor.
[0047] In practice, the buffer tank 2 is equipped with a temperature sensor to ensure that milk is dispensed from the feeding bowl.
[0048] The temperature is suitable for feeding piglets; the entire circulation system is automatically controlled and equipped with an alarm device.
[0049] Furthermore, a Y-type filter 202 is provided between the outlet of the buffer tank 2 and the circulation pump 3.
[0050] In practice, particulate matter in the emulsion is filtered out using a Y-type filter 202.
[0051] Prevent blockage.
[0052] Furthermore, a solenoid valve 203 is provided at the end of the milk tube 4 and connected to the buffer tank 2.
[0053] In practice, the on / off state of the milk tube 4 is controlled by the solenoid valve 203.
[0054] Furthermore, each feeding bowl 5 is equipped with a touch-sensitive water outlet 501 that communicates with the milk tube 4.
[0055] In practice, by setting up the water outlet 501 to be touched only by the piglet,
[0056] This will help produce milk and reduce milk waste.
[0057] Furthermore, the buffer tank 2, Y-type filter 202, and circulation pump 3 are installed in the outer casing 6.
[0058] Inside, the powder container 1 is fixed above the outer shell 6.
[0059] In practical implementation, the outer casing 6 is used to flush the tank 2, the Y-type filter 202, and the circulation...
[0060] Pump 3 is protected.
[0061] Furthermore, the rim of feeding bowl 5 is rounded and flared.
[0062] In practice, to avoid scratching the piglets, a touch-sensitive water outlet should be installed in the center of the feeding bowl for feeding.
[0063] The bowl uses a threaded connection for easy replacement. The entire feeding bowl is fixed to the ground with expansion bolts.
[0064] Powder Dispenser 1
[0065] It features an insulated structure, equipped with stirring and heating functions, and the temperature can be set and automatically controlled.
[0066] Temperature control. Mounted on a bracket. The top cover is half fixed and half movable.
[0067] Then add milk powder.
[0068] Buffer Bucket 2
[0069] It features an insulated structure, equipped with stirring and heating functions, and the temperature can be set and automatically controlled.
[0070] Temperature function. An outer casing is used to enclose the circulating pump, filter, and electrical components, forming a...
[0071] The overall appearance is aesthetically pleasing.
[0072] Circulating pump 3
[0073] Employs a miniature circulating pump, featuring low noise, low power consumption, and adjustable flow rate.
[0074] Connecting milk tube 4
[0075] The system uses pneumatic hoses to connect to valves and feeding bowls, employing pneumatic quick-connect fittings for easy installation and disassembly. Cable clips are used for securing the hoses during installation.
[0076] Feeding bowl 5
[0077] Self-made feeding bowl, bowl mouth arc flange treatment, avoid scratch piglets, feeding bowl center
[0078] The installation of the touch water outlet nozzle and the feeding bowl is connected by threads, which is convenient for replacement. The whole feeding bowl adopts the bulging
[0079] Expansion bolt fixed on the ground.
Claims
1. A piglet feeding system comprising: The application discloses a milk feeding device, which comprises a powder dissolving barrel (1), a buffer barrel (2), a circulating pump (3), a milk connecting pipe (4) and feeding bowls (5), wherein the outlet of the powder dissolving barrel (1) is connected with the inlet of the buffer barrel (2), the outlet of the buffer barrel (2) is connected with the circulating pump (3), the outlet of the circulating pump (3) is connected with the milk connecting pipe (4), a plurality of feeding bowls (5) are connected in series on the milk connecting pipe (4), and the other end of the milk connecting pipe (4) is connected with the buffer barrel (2).
2. The piglet feeding system according to claim 1, characterized in that: The outer walls of the powder dissolving barrel (1) and the buffer barrel (2) are provided with heat preservation layers (101).
3. The piglet feeding system of claim 2, wherein: The powder dissolving barrel (1) is internally provided with a stirring device (102).
4. The piglet feeding system of claim 3, wherein: The bottom of the buffer barrel (2) is provided with a heating disc (201) and a temperature sensor.
5. The piglet feeding system of claim 4, wherein: A Y-shaped filter (202) is arranged between the outlet of the buffer barrel (2) and the circulating pump (3).
6. The piglet feeding system of claim 5, wherein: The end of the milk connecting pipe (4) is provided with an electromagnetic valve (203) connected with the buffer barrel (2).
7. The piglet feeding system of claim 6, wherein: The inside of each feeding bowl (5) is provided with a touch water outlet nozzle (501) communicated with the milk connecting pipe (4).
8. The piglet feeding system of claim 7, wherein: The buffer barrel (2), the Y-shaped filter (202) and the circulating pump (3) are arranged in the inside of an outer shell (6), and the powder dissolving barrel (1) is fixed above the outer shell (6).
9. The piglet feeding system of claim 8, wherein: The bowl opening of each feeding bowl (5) is arc-flanged.