Intelligent milk supplementing and feeding system for delivery room

By designing an intelligent milking and feeding system for delivery rooms, the problem of artificial milk powder in the existing technology is solved, and the problem of low efficiency and inability to meet the needs of multiple piglets is realized, automatic milk mixing and delivery is realized, personalized feeding is adapted to different piglet needs, improving efficiency and reducing costs.

CN222941482UActive Publication Date: 2025-06-06TEMU TECH (QINGDAO) CO LTD
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Patent Information

Application Number
CN202421910051.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-06-06
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

In the prior art, artificial dissolving and adding milk powder to pigs is inefficient and labor-intensive. The existing milking system can only target pigs with one physical condition and cannot meet multiple needs.

Method used

An intelligent milking and feeding system in the delivery room is designed, including a rack, milk powder can, a mixer, discharge valve, water outlet pipe and hot water pipe, which can automatically mix and convey milk suitable for the needs of different piglets, and personalized feeding of different piglets through multiple milk powder cans and conveyors.

Benefits of technology

Automatic mixing and conveying of milk water is realized, reducing manual workload, and flexibly adjusting the formula of milk powder according to the needs of different piglets, improving efficiency and reducing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an intelligent delivery room milk supplementing feeding system which comprises a machine frame, a milk powder tank, a stirring machine, a discharging valve, a water outlet pipe and a hot water pipe, the milk powder tank and the stirring machine are fixedly connected with the machine frame respectively, the discharging valve below the milk powder tank is fixedly connected and communicated, the discharging valve is communicated with the interior of the stirring machine, and the stirring machine is communicated with the hot water pipe and the water outlet pipe respectively. The water outlet pipe is communicated with an inlet of the conveying pump. The discharging valve outputs milk powder, the hot water pipe outputs hot water, the stirring machine stirs and mixes the milk powder and the hot water into milk, the conveying pump outputs the milk to the trough, the milk can be automatically added to piglets, and the workload of manually mixing and adding the milk is reduced; the stirring machine corresponds to a plurality of milk powder cans, different kinds of milk powder can be placed in each milk powder can so as to adapt to piglets with different requirements, and the situation that only one milk powder can cannot meet the requirements of different piglets is avoided.
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Description

Technical Field

[0001] The utility model relates to the field of breeding and feeding devices, in particular to an intelligent delivery room milk supplementation and feeding system. Background Art

[0002] Piglets in the delivery room need to be supplemented with milk in the trough in time. The existing method of supplementing milk is to manually dissolve milk powder and add it to the piglets' trough, which is inefficient and requires high labor costs.

[0003] The delivery room often includes piglets with different physical conditions, such as different ages, health conditions, and weights. Piglets in different conditions require different formulas of milk powder, and manually managing and brewing multiple milk powders further increases the workload of the staff.

[0004] At present, there are some milk supplementation systems, which have a single function and can only be used for piglets with one physical condition. When there are piglets with various physical conditions in the delivery room, the only way is to increase the number of systems, resulting in an increase in costs. Utility Model Content

[0005] The utility model aims to solve the above problems and provides an intelligent delivery room milk supplement feeding system to solve the above problems.

[0006] An intelligent delivery room milk supplement feeding system comprises: a frame, a milk powder tank, a mixer, a discharge valve, a water outlet pipe and a hot water pipe, wherein the milk powder tank is fixedly connected to the frame, the mixer is connected to the frame, the lower part of the milk powder tank is fixedly connected to and communicated with the discharge valve, the discharge valve is communicated with the inside of the mixer, the mixer is respectively communicated with the hot water pipe and the water outlet pipe, and the water outlet pipe is communicated with the inlet of a delivery pump.

[0007] Furthermore, it also includes a transfer box, which is fixedly connected to the frame, connected to the discharge valves of multiple milk powder cans, and connected to the inside of the mixer.

[0008] Furthermore, it also includes a first conveyor and a second conveyor, the discharge valve is connected to the first conveyor, the first conveyor is connected to the transfer box, and the second conveyor is respectively connected to the transfer box and the inside of the mixer.

[0009] Furthermore, it also includes a water heater, wherein the water heater and the delivery pump are fixedly connected to the frame respectively, and the water heater is fixedly connected and communicated with the hot water pipe.

[0010] Furthermore, it also includes a cold water pipe and a temperature sensor, the temperature sensor extends into the interior of the mixer, and the mixer is fixedly connected and communicated with the cold water pipe; it also includes a liquid level sensor, and the liquid level sensor is installed inside the mixer.

[0011] Furthermore, it also includes a first valve and an air pipe of an air pump, wherein both ends of the air pipe are fixedly connected and communicated with the air pump and the first valve respectively, the first valve is fixedly connected and communicated with the water outlet pipe, the first valve is connected to the inlet of the delivery pump through a pipeline, and the first valve is used to connect the water outlet pipe and the air pipe to the inlet separately.

[0012] Furthermore, it also includes a hopper box and a third conveyor, wherein the third conveyor is respectively connected to the hopper box and the transfer box, and the third conveyor is fixedly connected to the frame.

[0013] Furthermore, it also includes a first delivery pipe, a second delivery pipe and a second valve, the outlet of the delivery pump is connected to the first delivery pipe, and the first delivery pipe is connected to multiple second delivery pipes through the second valve.

[0014] Furthermore, it also includes a third valve and a feed pipe, the second conveying pipe is fixedly connected and communicated with multiple third valves, the feed pipe is fixedly connected and communicated with the third valves, and the feed pipe is located above the trough.

[0015] Furthermore, the second valve and the third valve are two-position three-way valves.

[0016] Furthermore, it also includes a weighing device, and two ends of the weighing device are fixedly connected to the mixer and the frame respectively.

[0017] The utility model has the following advantages: the discharge valve outputs milk powder, the hot water pipe outputs hot water, the mixer mixes the two into milk, and the delivery pump outputs the milk to the trough, which can automatically add milk to the piglets, reducing the workload of manual mixing and adding milk; the mixer corresponds to a plurality of milk powder tanks, each of which can be filled with different kinds of milk powder to meet the needs of piglets with different needs, thus avoiding the situation that only one milk powder tank cannot meet the needs of different piglets; the air pump outputs air flow to the pipeline network to blow out the milk, thus avoiding the milk from deteriorating in the pipeline network and thus affecting the health of the piglets; the funnel box can be filled with nutritional supplements for the piglets and output by the third conveyor to supplement the nutrition for the piglets; the funnel box can also be used as a funnel to connect a plurality of milk powder tanks, thus expanding the number of milk powder tanks in the system and allowing the system to adapt to more kinds of piglets with different needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the prior art descriptions are briefly introduced below. Obviously, the drawings described below are only one embodiment of the utility model. For ordinary technicians in this field, other implementation drawings can be derived from the provided drawings without creative work.

[0019] Figure 1 : A schematic diagram of the main structure of the utility model;

[0020] Figure 2 : A schematic diagram of the top view of the structure of the utility model;

[0021] Figure 3 : Figure 2 Schematic diagram of the cross-sectional structure at AA in the middle;

[0022] Figure 4 : A schematic diagram of the three-dimensional structure of the utility model;

[0023] Figure 5 : Schematic diagram of the top view of the first delivery pipe and the second delivery pipe. DETAILED DESCRIPTION

[0024] The utility model is further described below with reference to the accompanying drawings and examples:

[0025] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0026] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected or indirectly connected through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0027] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0028] like Figures 1 to 5As shown, an intelligent delivery room milk supplement feeding system includes: a frame 1, a milk powder tank 2, a blender 5, a discharge valve 21, a water outlet pipe 56 and a hot water pipe 111, wherein the milk powder tank 2 is fixedly connected to the frame 1, the blender 5 is connected to the frame 1, the lower part of the milk powder tank 2 is fixedly connected and communicated with the discharge valve 21, the discharge valve 21 is communicated with the inside of the blender 5, the blender 5 is respectively communicated with the hot water pipe 111 and the water outlet pipe 56, and the water outlet pipe 56 is communicated with the inlet 61 of the delivery pump 6. The milk powder tank 2 outputs a fixed amount of milk powder to the blender 5 through the discharge valve 21, the hot water pipe 111 injects hot water into the blender 5, and after the blender 5 completely dissolves the milk powder in the hot water, the delivery pump 6 pumps the milk out of the water outlet pipe 56.

[0029] The stirrer 5 is a stirrer of the prior art, including a cup body 51 , a motor 52 and a stirring blade 53 . The stirring blade 53 is located in the cup body 51 , and the motor 52 drives the stirring blade 53 to rotate.

[0030] The discharge valve 21 can output the milk powder quantitatively. Preferably, the discharge valve 21 can be a star-shaped discharge valve.

[0031] Furthermore, it also includes a transfer box 4, which is fixedly connected to the frame 1, and is communicated with the discharge valves 21 of multiple milk powder cans 2, and the transfer box 4 is communicated with the inside of the mixer 5. When multiple milk powder cans 2 need to be docked, due to the limited area of ​​the opening above the cup body 51, multiple discharge valves 21 cannot be docked, which will cause milk powder to spill out of the opening above the cup body 51. Adding a transfer box 4 with a larger opening area is conducive to receiving the milk powder output by multiple discharge valves 21, avoiding milk powder spilling out, and reducing waste.

[0032] Furthermore, it also includes a first conveyor 3 and a second conveyor 41, the discharge valve 21 is connected to the first conveyor 3, the first conveyor 3 is connected to the transfer box 4, and the second conveyor 41 is respectively connected to the transfer box 4 and the inside of the mixer 5. The use of the conveyor can reduce the milk powder remaining in the transfer box 4; at the same time, it can delay the distance between the transfer box 4 and the milk powder tank 2, which is convenient for arranging the transfer box 4 and the milk powder tank 2. Preferably, the first conveyor 3 and the second conveyor 41 are auger conveyors.

[0033] Furthermore, it also includes a water heater 11, the water heater 11 and the delivery pump 6 are respectively fixedly connected to the frame 1, and the water heater 11 is fixedly connected and communicated with the hot water pipe 111. Preferably, the water heater 11 can be an instant electric water heater, which can heat the water in the water pipe and output it to the agitator 5.

[0034] Furthermore, it also includes a cold water pipe 54 and a temperature sensor 55. The temperature sensor 55 extends into the mixer 5. The mixer 5 is fixedly connected and communicated with the cold water pipe 54. The temperature sensor 55 detects whether the temperature of the milk is suitable for output. If the temperature is too high, the cold water pipe 54 outputs a certain amount of normal temperature water to cool it down. It also includes a liquid level sensor. The liquid level sensor (not shown in the figure) is installed inside the mixer 5. The liquid level sensor detects the water level and then determines the volume of the liquid to avoid adding too much or too little water.

[0035] Furthermore, it also includes a first valve 10 and an air pipe 121 of an air pump 12, the two ends of the air pipe 121 are fixedly connected and communicated with the air pump 12 and the first valve 10, the first valve 10 is fixedly connected and communicated with the water outlet pipe 56, the first valve 10 is communicated with the inlet 61 of the delivery pump 6 through a pipeline, and the first valve 10 is used to separately connect the water outlet pipe 56 and the air pipe 121 to the inlet 61. Preferably, the first valve 10 is a two-position three-way valve.

[0036] Furthermore, it also includes a hopper box 7 and a third conveyor 71 . The third conveyor 71 is respectively connected to the hopper box 7 and the transfer box 4 , and the third conveyor 71 is fixedly connected to the frame 1 .

[0037] Furthermore, it also includes a first delivery pipe 8 , a second delivery pipe 9 and a second valve 81 . The outlet 62 of the delivery pump 6 is connected to the first delivery pipe 8 , and the first delivery pipe 8 is connected to multiple second delivery pipes 9 through the second valve 81 .

[0038] Preferably, the second valve 81 is a multi-way valve, one second valve 81 is connected to each second delivery pipe 9 , and the second valve 81 can be connected to one second delivery pipe 9 alone.

[0039] Furthermore, it also includes a third valve 91 and a feed pipe 92. The second conveying pipe 9 is fixedly connected and communicated with multiple third valves 91. The feed pipe 92 is fixedly connected and communicated with the third valves 91. The feed pipe 92 is located above the food trough 93.

[0040] Furthermore, the second valve 81 and the third valve 91 are two-position three-way valves.

[0041] Furthermore, a weighing device 57 is included, and both ends of the weighing device 57 are fixedly connected to the mixer 5 and the frame 1. The weighing device 57 can weigh the total weight of the water and milk powder in the mixer 5. When the weight reaches the standard, the water intake is stopped, thereby controlling the concentration of the milk in the mixer 5.

[0042] When working, the discharge valve 21 discharges the milk powder in a designated milk powder tank 2, and the milk powder enters the first conveyor 3. The first conveyor 3 conveys the milk powder inside, and the milk powder falls into the transfer box 4. The second conveyor 41 conveys the milk powder inside, and the milk powder falls into the cup body 51.

[0043] The hot water heated by the water heater 11 is transported from the hot water pipe 111 to the cup body 51, and the motor 52 drives the stirring blade 53 to rotate, dissolving the milk powder in the hot water to form milk. A pump is provided between the water heater 11 and the hot water pipe 111 to pump the hot water, or water is delivered by the water pressure of the tap water network.

[0044] The first valve 10 connects the water outlet pipe 56 and the inlet 61 and isolates the inlet 61 from the air delivery pipe 121 . The delivery pump 6 works to extract milk from the water outlet pipe 56 and then pump it into the first delivery pipe 8 .

[0045] At this time, the two valves 81 corresponding to the second delivery pipe 9 that needs to deliver milk connect the second delivery pipe 9 with the first delivery pipe 8, and the two valves 81 corresponding to the other second delivery pipes 9 that do not need milk isolate the second delivery pipe 9 from the first delivery pipe 8.

[0046] The milk enters the second delivery pipe 9. At this time, the third valve 91 corresponding to the feeding pipe 92 that needs to deliver milk connects the third valve 91 with the second delivery pipe 9, and the third valve 91 corresponding to the feeding pipe 92 that does not need milk isolates the third valve 91 from the second delivery pipe 9.

[0047] The milk flows out from the feeding pipe 92 into the feeding trough 93 for the animals to eat.

[0048] After the milk is delivered, the first valve 10 connects the air delivery pipe 121 with the inlet 61 and isolates the inlet 61 from the water outlet pipe 56. The air pump 12 delivers air to blow out the milk remaining in the delivery pump 6, the first delivery pipe 8, the second valve 81, the second delivery pipe 9, the third valve 91 and the discharge pipe 92, so as to prevent the milk from remaining in the pipeline and deteriorating and contaminating the next milk.

[0049] The present invention is described above by way of examples, but the present invention is not limited to the above specific embodiments, and any changes or modifications based on the present invention belong to the scope of protection required by the present invention.

Claims

1. An intelligent delivery room milk supplement feeding system, characterized in that: include: A frame (1), a milk powder tank (2), a mixer (5), a discharge valve (21), a water outlet pipe (56) and a hot water pipe (111), wherein the milk powder tank (2) is fixedly connected to the frame (1), the mixer (5) is connected to the frame (1), the lower portion of the milk powder tank (2) is fixedly connected to and communicates with the discharge valve (21), the discharge valve (21) is communicated with the inside of the mixer (5), the mixer (5) is respectively communicated with the hot water pipe (111) and the water outlet pipe (56), and the water outlet pipe (56) is communicated with the inlet (61) of the delivery pump (6).

2. The intelligent delivery room milk supplement feeding system according to claim 1, characterized in that: It also comprises a transfer box (4), the transfer box (4) being fixedly connected to the frame (1), the transfer box (4) being connected to the discharge valves (21) of a plurality of milk powder tanks (2), and the transfer box (4) being connected to the interior of the mixer (5).

3. The intelligent delivery room milk supplement feeding system according to claim 2, characterized in that: It also comprises a first conveyor (3) and a second conveyor (41), the discharge valve (21) being connected to the first conveyor (3), the first conveyor (3) being connected to the transfer box (4), and the second conveyor (41) being respectively connected to the transfer box (4) and the inside of the mixer (5).

4. The intelligent delivery room milk supplement feeding system according to claim 1, characterized in that: It also comprises a water heater (11), wherein the water heater (11) and the delivery pump (6) are respectively fixedly connected to the frame (1), and the water heater (11) is fixedly connected and communicated with the hot water pipe (111).

5. The intelligent delivery room milk supplement feeding system according to claim 4, characterized in that: It also includes a cold water pipe (54) and a temperature sensor (55), wherein the temperature sensor (55) extends into the interior of the mixer (5), and the mixer (5) is fixedly connected and communicated with the cold water pipe (54); and it also includes a liquid level sensor, wherein the liquid level sensor is installed inside the mixer (5).

6. The intelligent delivery room milk supplement feeding system according to claim 1, characterized in that: It also comprises a first valve (10) and an air delivery pipe (121) of an air pump (12); the two ends of the air delivery pipe (121) are respectively fixedly connected to and communicated with the air pump (12) and the first valve (10); the first valve (10) is fixedly connected to and communicated with a water outlet pipe (56); the first valve (10) is communicated with an inlet (61) of a delivery pump (6) via a pipeline; the first valve (10) is used to separately connect the water outlet pipe (56) and the air delivery pipe (121) to the inlet (61).

7. The intelligent delivery room milk supplement feeding system according to claim 2, characterized in that: It also comprises a hopper box (7) and a third conveyor (71), wherein the third conveyor (71) is respectively connected to the hopper box (7) and the transfer box (4), and the third conveyor (71) is fixedly connected to the frame (1).

8. The intelligent delivery room milk supplement feeding system according to claim 1, characterized in that: It also comprises a first delivery pipe (8), a second delivery pipe (9) and a second valve (81), wherein the outlet (62) of the delivery pump (6) is connected to the first delivery pipe (8), and the first delivery pipe (8) is connected to a plurality of second delivery pipes (9) via the second valve (81).

9. The intelligent delivery room milk supplement feeding system according to claim 8, characterized in that: It also includes a third valve (91) and a feed pipe (92), wherein the second conveying pipe (9) is fixedly connected to and communicates with a plurality of third valves (91), the feed pipe (92) is fixedly connected to and communicates with the third valves (91), and the feed pipe (92) is located above the trough (93); the second valve (81) and the third valve (91) are two-position three-way valves.

10. The intelligent delivery room milk supplement feeding system according to claim 1, characterized in that: It also includes a weighing device (57), with two ends of the weighing device (57) being fixedly connected to the mixer (5) and the frame (1) respectively.