Porridge feeder for lamb breeding
Through the layered plate structure driven by the servo motor, the rapid soaking of dry feed in the porridge feeder and the direct supply of dry feeder is achieved, which solves the problem of bacterial growth during the soaking process, and improves the practicality of the porridge feeder and the health of the livestock.
Patent Information
- Application Number
- CN202421935079.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The existing porridge feeders are prone to breeding bacteria during the soaking and softening process, leading to food spoilage and affecting livestock health, especially in breeding environments.
The layered plate structure driven by servo motor is adopted. Through the cooperation of gears and friction rings, the dry feed can be quickly soaked in the feeding chamber and the direct supply of dry feed, avoiding external bacterial contamination and reducing soaking time.
It effectively avoids bacterial contamination, saves soaking time, reduces the risk of food spoilage, and improves the safety and practicality of feed.
Smart Images

Figure CN223080777U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of porridge feeders, in particular to a porridge feeder for lamb breeding. Background Technique
[0002] The porridge feeder soaks the feed in water to make it porridge-like, enabling better absorption of the feed for livestock such as lambs.
[0003] The published patent CN216254626U discloses an intelligent porridge feeder, including a feed barrel. The two sides of the feed barrel are respectively fixedly connected with frames through first hexagon head bolts. One top of each of the two frames is provided with a plug nut. One end of the plug nut is located inside a partition elbow, and the partition elbow is installed at the top of both sides of the feed barrel. An electromagnetic valve is fixedly installed at the top of the outer wall of the feed barrel. A motor mounting plate is installed at the center of the top of the feed barrel, and a Hall motor is fixedly connected to the top of the motor mounting plate. The output end of the Hall motor is provided with a transmission box, and the bottom of the transmission box is linked with a connecting sleeve. This utility model has a low manufacturing cost and is suitable for large-scale promotion. Moreover, it adopts a new ratchet-type meter to achieve accurate feeding of the feed amount, avoiding the situation of overfeeding or underfeeding at one time. And it uses a radar probe and a level rod to monitor the amount of feed in the feed tray in real time, which is beneficial to replenish the feed in time when there is less or no feed, improving the practicability of the equipment. However, the following problems still exist in the actual use of this patent:
[0004] After the feed in the above device is put in, it needs to be soaked in water, and it takes sufficient time to be soaked and softened. Moreover, the more sufficient the soaking, the more time is required. However, bacteria will grow rapidly during the soaking and softening time, causing the food to spoil. Especially in the breeding environment where there are more bacteria, the speed of food spoilage will further increase, affecting the health of livestock.
[0005] A porridge feeder for lamb breeding is proposed to solve the problems mentioned above. Content of the Utility Model
[0006] The purpose of the utility model is to provide a porridge feeder for lamb breeding to solve the problem that after the feed in the above device is put in, it needs to be soaked in water, and it takes sufficient time to be soaked and softened. Moreover, the more sufficient the soaking, the more time is required. However, bacteria will grow rapidly during the soaking and softening time, causing the food to spoil. Especially in the breeding environment where there are more bacteria, the speed of food spoilage will further increase, affecting the health of livestock.
[0007] To achieve the above purpose, the utility model provides the following technical solution: A porridge feeder for lamb breeding, including a feeding bin, and a bin cover is installed on the top of the feeding bin;
[0008] A partition feeding assembly is arranged below the interior of the bin cover. The partition feeding assembly includes a servo motor fixedly installed on the top surface of the bin cover. The output end of the servo motor is fixedly connected to a first gear. The first gear is meshed with a second gear. The middle of the second gear is fixedly connected to a driving shaft. The driving shaft rotates through the middle of the bin cover.
[0009] Among them, a first layered plate is fixedly connected to the middle of the feeding bin. The bottom surface of the first layered plate is fitted and connected with a second layered plate. The bottom surface of the second layered plate is fixedly connected with a dry material passage.
[0010] Among them, a porridge discharging mechanism is arranged at the bottom of the feeding bin.
[0011] Preferably, a plurality of first outer grooves are evenly formed on the outer side of the first layered plate. The driving shaft penetrates through the first layered plate. A plurality of first inner grooves are arranged between the driving shaft and the first layered plate. The arc angles of the first outer grooves and the first inner grooves coincide. A limiting column is fixedly connected to the bottom surface of the first layered plate. A push rod is arranged above the first layered plate. The push rod is fixedly connected to the driving shaft.
[0012] Preferably, a plurality of second outer grooves are evenly formed on the outer side of the second layered plate. The driving shaft penetrates through the middle of the second layered plate. A friction ring is fitted and connected to the outer part of the driving shaft. The outer side of the friction ring is fixedly connected to the second layered plate.
[0013] Preferably, a disturbing rod is fixedly connected to the bottom end of the driving shaft. A conveying spiral blade is fixedly connected to the bottom end of the disturbing rod. The conveying spiral blade is in contact with the inner wall of the dry material passage. A water delivery head is arranged below the second layered plate and installed on the outer wall of the feeding bin.
[0014] Preferably, the porridge discharging mechanism includes a valve sleeve. The valve sleeve is fixedly installed at the bottom end of the feeding bin. A rotary plate is rotatably connected to the inside of the valve sleeve. A plurality of curved rods are rotatably installed on the top surface of the rotary plate. The other ends of the curved rods are rotatably connected to a partition plate.
[0015] Preferably, a waterproof pad is fixedly installed on one side of the partition plate. The waterproof pad is in contact with the outer wall of the dry material passage. The curved rods are evenly distributed on the surface of the rotary plate. The edge of the partition plate is rotatably connected to the bottom end of the shell of the feeding bin. A dial bar is fixedly connected to one side of the rotary plate. The dial bar is slidably connected to the valve sleeve.
[0016] Preferably, a second inner groove is arranged between the second outer groove and the friction ring. A limiting groove is arranged between the second inner groove and the friction ring. The limiting groove is slidably connected to the limiting column. The arc angles of the second outer groove and the second inner groove are equal and do not coincide.
[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows: This kind of porridge feed feeder for lamb breeding avoids the pollution of the porridge feed during the soaking process by external bacteria. When feeding the porridge feed, it saves the time of external soaking, reduces feed pollution, and also avoids the situation of being directly eaten without being soaked and softened. The specific content is as follows:
[0018] 1. The first gear drives the drive shaft to rotate counterclockwise through the second gear. As a result, due to the frictional force between the drive shaft and the friction ring, the second layered plate is driven to rotate, causing the limit groove to move along with the second layered plate until the first outer groove and the second outer groove are connected. The dry feed above the first layered plate will fall through the first outer groove and the second outer groove, and then water is supplied through the water delivery head, enabling the dry feed to be soaked inside the feeding bin. This avoids the pollution of the porridge feed during the soaking process by external bacteria. When feeding the porridge feed, it saves the time of external soaking, reduces feed pollution, and also avoids the situation of being directly eaten without being soaked and softened.
[0019] 2. By initially arranging the first outer groove and the second outer groove in a misaligned manner and connecting the first inner groove and the second inner groove, at this time, the dry feed directly falls into the dry feed channel through the first inner groove and the second inner groove. When the servo motor drives the drive shaft to rotate clockwise, the conveying spiral blade will push the dry feed downward, realizing the function that while the device soaks and stores the porridge feed, it also has the function of separately providing dry feed, increasing the practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic cross-sectional structure diagram of the front view of the present utility model;
[0021] Figure 2 is a schematic bottom view structure diagram of the first layered plate;
[0022] Figure 3 is a schematic top view structure diagram of the second layered plate;
[0023] Figure 4 is Figure 1 an enlarged structure diagram of area A in
[0024] Figure 5 is a schematic top view cross-sectional structure diagram of the valve sleeve.
[0025] In the figure: 1. Feeding bin; 101. Bin cover; 2. Partition feeding assembly; 201. Servo motor; 202. First gear; 203. Second gear; 204. Drive shaft; 205. Pushing rod; 206. Disturbing rod; 207. First lamination plate; 208. Second lamination plate; 209. Dry material passage; 210. First outer groove; 211. First inner groove; 212. Limit post; 213. Second outer groove; 214. Second inner groove; 215. Limit groove; 216. Friction ring; 217. Conveyor screw blade; 218. Water delivery head; 3. Congee discharging mechanism; 301. Valve sleeve; 302. Rotary plate; 303. Curved rod; 304. Partition plate; 305. Stripping bar. Detailed implementation mode
[0026] 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0027] Please refer to Figures 1-5 , the present invention provides a technical solution: a congee feeder for lamb breeding, including a feeding bin 1, and a bin cover 101 is installed on the top of the feeding bin 1; a partition feeding assembly 2 is arranged below the interior of the bin cover 101. The partition feeding assembly 2 includes a servo motor 201 fixedly installed on the top surface of the bin cover 101. The output end of the servo motor 201 is fixedly connected to a first gear 202. The first gear 202 is meshed with a second gear 203. The middle of the second gear 203 is fixedly connected to a drive shaft 204. The rotation of the drive shaft 204 penetrates through the middle of the bin cover 101; the first gear 202 and the second gear 203 are located in a gear bin, and the gear bin is fixed on the surface of the bin cover 101. The drive shaft 204 is rotationally connected to the gear bin.
[0028] Among them, a first lamination plate 207 is fixedly connected to the middle of the feeding bin 1. The bottom surface of the first lamination plate 207 is attached to a second lamination plate 208. The bottom surface of the second lamination plate 208 is fixedly connected to a dry material passage 209;
[0029] Among them, a congee discharging mechanism 3 is arranged at the bottom of the feeding bin 1.
[0030] A number of first outer grooves 210 are evenly formed on the outer side of the first layered plate 207. The driving shaft 204 penetrates through the first layered plate 207. A number of first inner grooves 211 are provided between the driving shaft 204 and the first layered plate 207. The arc angles of the first outer grooves 210 and the first inner grooves 211 coincide. A limiting post 212 is fixedly connected to the bottom surface of the first layered plate 207. A push rod 205 is arranged above the first layered plate 207, and the push rod 205 is fixedly connected to the driving shaft 204. When the driving shaft 204 drives the push rod 205 to rotate, it can push the dry feed to prevent the dry feed from being blocked and not falling. The first inner grooves 211 are formed on the first layered plate 207, and the first inner grooves 211 are equal in size to the second inner grooves 214.
[0031] A number of second outer grooves 213 are evenly formed on the outer side of the second layered plate 208. The driving shaft 204 penetrates through the middle of the second layered plate 208. A friction ring 216 is attached to the outer part of the driving shaft 204, and the outer side of the friction ring 216 is fixedly connected to the second layered plate 208. The first outer grooves 210 are equal in size to the second outer grooves 213.
[0032] A disturbing rod 206 is fixedly connected to the bottom end of the driving shaft 204. A conveying screw blade 217 is fixedly connected to the bottom end of the disturbing rod 206. The conveying screw blade 217 is attached to the inner wall of the dry feed channel 209. A water delivery head 218 installed on the outer wall of the feeding bin 1 is arranged below the second layered plate 208. The disturbing rod 206 can also prevent the dry feed from being blocked and not falling.
[0033] The gruel discharging mechanism 3 includes a valve sleeve 301. The valve sleeve 301 is fixedly installed at the bottom end of the feeding bin 1. A rotary plate 302 is rotatably connected inside the valve sleeve 301. A number of curved rods 303 are rotatably installed on the top surface of the rotary plate 302, and the other ends of the curved rods 303 are rotatably connected to a partition plate 304.
[0034] A waterproof pad is fixedly installed on one side of the partition plate 304. The waterproof pad is attached to the outer wall of the dry feed channel 209. The curved rods 303 are evenly distributed on the surface of the rotary plate 302. The edge of the partition plate 304 is rotatably connected to the bottom end of the housing of the feeding bin 1. A bar 305 is fixedly connected to one side of the rotary plate 302, and the bar 305 is slidably connected to the valve sleeve 301. The top surface of the partition plate 304 is attached to the bottom end of the feeding bin 1, and the partition plate 304 rotates with the bottom end of the outer shell of the feeding bin 1 through a rotating shaft.
[0035] A second inner groove 214 is provided between the second outer groove 213 and the friction ring 216. A limiting groove 215 is provided between the second inner groove 214 and the friction ring 216. The limiting groove 215 is slidably connected to the limiting post 212. The arc angles of the second outer groove 213 and the second inner groove 214 are equal and do not coincide. The limiting groove 215 is formed on the second layered plate 208. The angle at which the second outer groove 213 and the second inner groove 214 rotate to coincide is the same as the maximum arc angle at which the limiting post 212 moves in the limiting groove 215.
[0036] Working principle: Before using this kind of porridge feeder for lamb breeding, it is necessary to first check the overall condition of the device to ensure that it can work normally. According to Figure 1 - Figure 5 As shown, first start the servo motor 201, so that the first gear 202 drives the drive shaft 204 to rotate counterclockwise through the second gear 203. As a result, due to the frictional force between the drive shaft 204 and the friction ring 216, the drive shaft 204 drives the second layered plate 208 to rotate, causing the limit groove 215 to move along with the second layered plate 208 until the limit post 212 abuts against one end of the limit groove 215, thereby preventing the second layered plate 208 from continuing to rotate. At this time, the first outer groove 210 and the second outer groove 213 are connected, and the dry feed above the first layered plate 207 will fall through the first outer groove 210 and the second outer groove 213, and then water is supplied through the water delivery head 218, so that the dry feed is soaked inside the feeding bin 1, avoiding the pollution of the porridge feed during the soaking process by bacteria from the outside. When feeding the porridge feed, pull the bar 305 to make the rotating plate 302 rotate, so that the curved rod 303 rotates outward and pulls the partition plate 304 away from the dry material passage 209. At this time, the porridge feed outside the dry material passage 209 will directly fall and allow livestock to eat directly, saving the time of external soaking, reducing feed pollution, and also avoiding the situation of being directly eaten without being soaked and softened;
[0037] In the initial state, the first outer groove 210 and the second outer groove 213 are misaligned, and the first inner groove 211 and the second inner groove 214 are connected. At this time, the dry material directly falls into the dry material passage 209 through the first inner groove 211 and the second inner groove 214. And when the conveying spiral blade 217 is stationary, it can prevent the dry feed from falling. When the servo motor 201 drives the drive shaft 204 to rotate clockwise, the conveying spiral blade 217 will push the dry feed to fall. While realizing the function of soaking and storing porridge feed by this device, it also has the function of separately providing dry feed, increasing the practicability.
[0038] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A porridge feeder for lamb breeding, comprising a feeding bin (1), and a bin cover (101) is installed on the top of the feeding bin (1); Characterized in that, It further includes: A partition feeding component (2) is arranged below the inner part of the bin cover (101). The partition feeding component (2) includes a servo motor (201) fixedly installed on the top surface of the bin cover (101). The output end of the servo motor (201) is fixedly connected with a first gear (202). The first gear (202) is meshed with a second gear (203). The middle part of the second gear (203) is fixedly connected with a driving shaft (204). The rotation of the driving shaft (204) penetrates through the middle of the bin cover (101); Among them, a first layered plate (207) is fixedly connected to the middle part of the feeding bin (1). The bottom surface of the first layered plate (207) is in fit connection with a second layered plate (208). The bottom surface of the second layered plate (208) is fixedly connected with a dry material channel (209); Among them, a porridge discharging mechanism (3) is arranged at the bottom of the feeding bin (1).
2. The porridge feeder for lamb breeding according to claim 1, wherein: A number of first outer grooves (210) are evenly opened on the outer side of the first layered plate (207). The driving shaft (204) penetrates through the first layered plate (207). A number of first inner grooves (211) are arranged between the driving shaft (204) and the first layered plate (207). The arc angles of the first outer grooves (210) and the first inner grooves (211) coincide. A limiting column (212) is fixedly connected to the bottom surface of the first layered plate (207). A push rod (205) is arranged above the first layered plate (207). The push rod (205) is fixedly connected with the driving shaft (204).
3. The porridge feeder for lamb breeding according to claim 1, characterized in that: A number of second outer grooves (213) are evenly opened on the outer side of the second layered plate (208). The driving shaft (204) penetrates through the middle of the second layered plate (208). A friction ring (216) is in fit connection with the outer part of the driving shaft (204). The outer side of the friction ring (216) is fixedly connected with the second layered plate (208).
4. The porridge feeder for lamb breeding according to claim 1, characterized in that: The bottom end of the driving shaft (204) is fixedly connected with a disturbing rod (206). The bottom end of the disturbing rod (206) is fixedly connected with a conveying spiral blade (217). The conveying spiral blade (217) is in fit connection with the inner wall of the dry material channel (209). A water supply head (218) installed on the outer wall of the feeding bin (1) is arranged below the second layered plate (208).
5. The porridge feeder for lamb breeding according to claim 1, characterized in that: The porridge discharging mechanism (3) includes a valve sleeve (301). The valve sleeve (301) is fixedly installed at the bottom end of the feeding bin (1). A rotary plate (302) is rotatably connected inside the valve sleeve (301). A number of curved rods (303) are rotatably installed on the top surface of the rotary plate (302). The other ends of the curved rods (303) are rotatably connected with a partition plate (304).
6. The porridge feeder for lamb breeding according to claim 5, characterized in that: A waterproof pad is fixedly installed on one side of the partition plate (304), and the waterproof pad is attached to the outer wall of the dry material channel (209). The curved rods (303) are evenly distributed on the surface of the rotating plate (302). The edge of the partition plate (304) is rotatably connected to the bottom end of the housing of the feeding bin (1). One side of the rotating plate (302) is fixedly connected with a dial bar (305), and the dial bar (305) is slidably connected to the valve sleeve (301).
7. The porridge feeder for lamb breeding according to claim 3, characterized in that: A second inner groove (214) is provided between the second outer groove (213) and the friction ring (216). A limiting groove (215) is provided between the second inner groove (214) and the friction ring (216). The limiting groove (215) is slidably connected to the limiting post (212). The arc angles of the second outer groove (213) and the second inner groove (214) are equal and do not coincide.
Citation Information
Patent Citations
Intelligent porridge feeding device
CN216254626U