Milk replacer manufacturing and feeding machine

By designing a milk replacement feeder with heating belt, stirring structure and cleaning structure, the problems of uneven mixing, difficult to control and cleaning of the feeding amount are solved, and uniform stirring, precise feeding and thorough cleaning of the milk replacement are achieved to ensure the healthy growth of the cubs and product quality.

CN223247283UActive Publication Date: 2025-08-22TIANJIN FUJIA TECH DEV CO LTD
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Patent Information

Application Number
CN202422115072.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-08-22
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The problems of uneven mixing of milk substitutes, difficult feeding amount, and difficult cleaning in the prior art affect the healthy growth and product quality of the puppies.

Method used

A milk-replacement feeding machine including a base and a hollow double-layer structure box is designed, equipped with a heating belt, a stirring structure, a cleaning structure and a discharge structure to achieve uniform stirring at constant temperature, precise and quantitative feeding and convenient cleaning.

Benefits of technology

It realizes uniform stirring, precise feeding and thorough cleaning of the milk replacement, ensuring the nutritional absorption efficiency and healthy growth of the pups, avoiding bacterial growth, and improving product quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223247283U_ABST
Patent Text Reader

Abstract

The utility model provides a milk replacer manufacturing and feeding machine which comprises a base and a box body. The box body is of a hollow double-layer structure. A heating belt is arranged in the side wall of the box body; a foaming filler is arranged between the heating belt and the interior of the side wall of the box body; a split type stirring structure and a cleaning structure are arranged at the top of the box body; a discharging structure is arranged on the left side of the box body; an electric box is welded on the rear side wall of the box body; according to the utility model, milk replacer can be uniformly stirred under the condition of constant temperature; the milk replacer is kept at the temperature most suitable for feeding all the time, so that cubs can better absorb the milk replacer, accurate and quantitative feeding can be achieved, in addition, convenient and rapid dead-corner-free cleaning is achieved after feeding is finished, harmful bacterium breeding caused by incomplete cleaning is avoided, and the quality of subsequent milk replacer manufacturing is easily maintained.
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Description

Technical Field

[0001] The utility model relates to the technical field of livestock breeding equipment, in particular to a milk replacer making and feeding machine. Background Art

[0002] Milk replacer, a carefully formulated alternative designed to mimic and surpass the nutritional value of whole milk, is derived from valuable by-products of dairy processing. This innovative feed is designed to provide a smooth transition for newborn livestock pups to plant-based nutrition. Because young animals naturally rely on breast milk as their primary source of nutrition, and post-weaning feed differs in composition and taste, milk replacer serves as a crucial link between the two, ensuring their healthy growth.

[0003] In modern, large-scale farming environments, the preparation and feeding of milk replacers are mostly done manually, which undoubtedly poses a huge challenge to farmers. The production process is often confined to a single mixing container, which is not only labor-intensive but also difficult to avoid the problem of uneven mixing, resulting in some milk replacers not being fully dissolved, affecting their overall quality. More importantly, when feeding milk replacers to cubs, the temperature must be strictly controlled between 42 and 46 degrees Celsius to maximize the retention of its nutrients. Once the temperature is too high, the protein structure will be damaged, thereby weakening the suspension stability of the milk replacer, directly affecting the cubs' efficiency in nutrient absorption.

[0004] In addition, artificial feeding also faces the dilemma of difficult to accurately control the feeding amount; different cubs have different requirements for milk replacer due to factors such as physique and growth stage, and artificial feeding is often difficult to accurately quantify, which may have an adverse effect on the growth and development of the cubs and affect the stability and balance of their growth.

[0005] Furthermore, after the milk replacer is made, the mixing container used is often large and requires arduous and complicated cleaning. If it is not thoroughly cleaned, bacteria can easily grow inside the container, posing a potential threat to the subsequent production of milk replacer and lowering the overall product hygiene standards and quality assurance. Summary of the Invention

[0006] In order to solve the problems of uneven stirring, inconvenient feeding amount control and inconvenient cleaning in the prior art feeding machines, the utility model provides a feeding machine for making milk replacer;

[0007] The present invention provides a milk replacer feeding machine that adopts the following technical solutions:

[0008] A feeding machine for making and feeding milk replacer, comprising a base and a box body, wherein the box body is arranged on the top of the base; the base and the box body are an integrally formed structure, and the box body is a hollow double-layer structure; a heating belt is arranged inside the side wall of the box body; the heating belt is in contact with a layer close to the inner side of the hollow inside of the box body; a foam filling is arranged between the heating belt and the inside of the side wall of the box body; a feeding pipe is welded to the top of the box body; there are two feeding pipes; both of the two feeding pipes are connected to the inside of the box body; a sealing cover is movably connected to the top of the feeding pipe; a split stirring structure is arranged inside the box body; a cleaning mechanism is also arranged on the top of the box body; a discharge structure is arranged on the left side of the box body; an electric box for powering the heating belt is welded to the rear side wall of the box body;

[0009] Furthermore, the stirring structure includes a first stirring part and a second stirring part; the first stirring part is detachably mounted on the top of the box; the second stirring part is fixedly connected to the top of the base by bolts;

[0010] Furthermore, the first stirring part includes a motor, a connecting rod, a first blade, and a connecting block. The motor is mounted on the top of the box body by bolts, and the output end of the motor is connected to one end of the connecting rod; the other end of the connecting rod extends through the box body and is integrally formed with a connecting block; a plurality of first blades are welded to the outer wall of the connecting rod;

[0011] Furthermore, the second stirring part includes a rotating sleeve, a second blade, a driven housing, a transmission shaft, a connecting sleeve, and a fixed base, the top of the base is installed with a fixed base by bolts; one end of the transmission shaft is rotatably connected to the inside of the fixed base through a bearing; a driven housing is provided on the outside of the other end of the transmission shaft, the transmission shaft passes through the driven housing and extends to the bottom of the connecting block and is welded with a connecting sleeve that is plugged into the connecting block; a rotating sleeve is welded to the bottom of the driven housing, the rotating sleeve is sleeved on the outside of the transmission shaft, and is rotatably connected to the outer wall of the fixed base through a bearing; a plurality of second blades are welded to the outer wall of the rotating sleeve; a transmission assembly for connecting the connecting rod and the transmission shaft is provided inside the driven housing;

[0012] Furthermore, the transmission assembly includes a driving gear, a transmission gear, and a driven gear. The portion of the transmission shaft disposed inside the driven housing is sleeved with the driving gear; the inner side wall of the driven housing is provided with driven gears; a plurality of transmission gears are rotatably connected between the top and bottom of the driven housing; the driving gear and the driven gear are engaged with the transmission gears to achieve reverse rotation;

[0013] Furthermore, the cleaning structure includes a cleaning tube and a rotating nozzle. A cleaning hole is opened on the top of the box, and a cleaning tube is welded inside the cleaning hole. The cleaning tube is an L-shaped structure. One end of the cleaning tube is arranged inside the box and is connected to the rotating nozzle through a thread.

[0014] Furthermore, the discharge structure includes an extension plate, a flow meter, a water pump, a straight discharge pipe, a quantitative valve, a diverter pipe, a straight discharge valve, and a drain pipe. The outer side wall of the box body is welded with the extension plate; the top of the extension plate is detachably connected to the flow meter and the water pump; the water pump is arranged on the right side of the flow meter; a drainage hole is opened on the outer side of the box body, and a straight discharge pipe is welded inside the drainage hole; the straight discharge pipe and the extension plate are arranged on the same side of the box body; one end of the straight discharge pipe arranged on the outer side of the box body is connected to one end of the straight discharge valve; the other end of the straight discharge valve is connected to the drain pipe; a diverter port is opened on the outer side wall of the straight discharge pipe, and one end of the quantitative valve is connected inside the diverter port; the other end of the quantitative valve is connected to the diverter pipe;

[0015] Furthermore, the base is provided on one side of the box body and has an inclined surface structure; the lowest point of the inclined surface on the top of the base is flush with the straight pipe;

[0016] Furthermore, a temperature measuring hole is provided on the top of the box, and a temperature gauge is connected to the inside of the temperature measuring hole via a thread; and a probe of the temperature gauge extends to the inside of the box.

[0017] The beneficial effects of the utility model are:

[0018] The utility model adds a stirring structure, a cleaning structure, a heating belt and a discharge structure, which achieves the purpose of replacing manual operation, realizing uniform stirring and making milk replacer at a constant temperature, facilitating quantitative feeding, and facilitating cleaning. When in use, the utility model can be used in conjunction with a transport vehicle and placed on the rear side of the vehicle for easy movement and feeding over a large area. When making milk replacer, the staff needs to open the two sealing covers, and then add water and milk replacer into the two feeding pipes respectively, and then connect the external power supply, turn on the motor and the heater to stir and heat. During the stirring process, the electric The machine drives the connecting rod to rotate. Since the connecting rod at the bottom of the connecting rod is inserted into the connecting sleeve, it drives the transmission shaft to rotate. At the same time, the driving gear makes the driven gear and the transmission shaft rotate in the opposite direction through the transmission meshing action of the transmission gear. Then the driven shell drives the rotating sleeve and the connecting rod to rotate in the opposite direction, so the first blade and the second blade have reverse stirring action, which effectively improves the stirring efficiency and the uniform heating rate. Close the sealing cover to avoid heat loss. After the heater is set to the corresponding temperature, heat the milk replacer and observe the temperature of the milk replacer in real time through the thermometer. After a period of time, you can start feeding.

[0019] The utility model realizes two modes of direct discharge and quantitative discharge through the discharge structure. Before feeding, it is necessary to connect a hose between the water inlet end of the flow meter and the water outlet end of the water pump, and connect a hose between the water inlet end of the water pump and the diversion pipe, keep the direct discharge valve closed, and the quantitative valve open, and set the amount of milk replacer to be fed in the flow meter. After that, the water pump can be turned on to output the quantitative milk replacer for feeding. When the feeding is finished, the quantitative valve can be closed and the direct discharge valve can be opened to directly discharge the remaining milk replacer.

[0020] When the utility model is used for cleaning, the staff only needs to connect the cleaning pipe to the water outlet end of the water pump with a hose, and use the hose to connect the water inlet end of the water pump to an external water source; close the direct discharge valve and the quantitative valve, turn on the motor, and turn on the water pump to discharge the water flow to the rotating nozzle, which will disperse the water flow and spray the inner wall of the box for cleaning. When water accumulates in the box, the first stirring part and the second stirring part will stir the water in the box for cleaning. After a period of time, the motor will be turned off, and the direct discharge valve will be opened for sewage discharge. During this period, the water pump will be kept on to continue cleaning the box. After the discharged water is clean and no longer turbid, the water pump can be turned off to complete the cleaning.

[0021] In this way, the utility model can achieve uniform stirring of milk replacer under constant temperature conditions; keep the milk replacer at the most suitable temperature for feeding at all times, so that the cubs can absorb it better, and the utility model can accurately feed different cubs in a quantitative manner, avoiding the occurrence of excessive or insufficient amounts, and is more conducive to the healthy and stable growth of the cubs; in addition, the utility model can achieve convenient and fast cleaning without dead ends after feeding, avoiding the growth of harmful bacteria due to incomplete cleaning, and helping to maintain the quality of subsequent milk replacer production. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0023] Figure 2 It is a schematic diagram of the internal structure of the utility model as a whole;

[0024] Figure 3 It is a side view schematic diagram of the internal structure of the entire utility model;

[0025] Figure 4 This is a schematic diagram of the overall structure of the first stirring part and the second stirring part of the utility model;

[0026] Figure 5 This is a schematic diagram of the internal structure of the first stirring part and the second stirring part of the utility model;

[0027] Figure 6 For this utility model Figure 5 A magnified schematic diagram of part A;

[0028] Figure 7 For this utility model Figure 5 An enlarged schematic diagram of part B;

[0029] Figure 8 This is a schematic diagram of the internal structure of the driven housing of the utility model;

[0030] Figure 9 For this utility model Figure 8 A magnified schematic diagram of part C;

[0031] Figure 10 This is a schematic diagram of the pipeline connection in the stirring state of the utility model;

[0032] Figure 11 This is a schematic diagram of the pipeline connection in the clean state of the utility model.

[0033] As shown in the figure: 1-base, 11-box, 12-heating belt, 13-foaming filling, 2-feeding pipe, 3-sealing cover, 4-motor, 41-first stirring part; 42-second stirring part; 411-connecting rod, 412-first blade, 413-connecting block, 421-rotating sleeve, 422-second blade, 43-driven housing, 431-transmission shaft, 432-connecting sleeve, 433-driving gear, 434-transmission gear, 435-driven gear, 44-fixed base, 5-thermometer, 6-cleaning pipe, 61-rotating nozzle, 7-extension plate, 71-flow meter, 72-water pump, 8-straight pipe, 81-quantitative valve, 82-diverter pipe, 83-straight valve, 84-drain pipe, 9-electrical box. DETAILED DESCRIPTION

[0034] The following is combined with Figure 1-11 The utility model is further described in detail:

[0035] The utility model discloses a feeding machine for making milk replacer, such as Figure 1-3As shown, a milk replacer making and feeding machine includes a base 1 and a box body 11, and the box body 11 is arranged on the top of the base 1; the base 1 and the box body 11 are an integrally formed structure, and the box body 11 is a hollow double-layer structure; a heating belt 12 is arranged inside the side wall of the box body 11; the heating belt 12 is fitted with a layer close to the inner side of the hollow inside of the box body 11; a foam filling 13 is arranged between the heating belt 12 and the inside of the side wall of the box body 11; a feeding pipe 2 is welded to the top of the box body 11; the number of the feeding pipes 2 is two; both feeding pipes 2 are connected to the inside of the box body 11 ; The top of the feed pipe 2 is movably connected with a sealing cover 3; a split stirring structure is provided inside the box body 11; a cleaning mechanism is also provided on the top of the box body 11; a discharge structure is provided on the left side of the box body 11; an electrical box 9 for powering the heating belt 12 is welded to the rear side wall of the box body 11; in this embodiment, the base 1 and the box body 11 adopt an integrated molding structure, which enhances the overall stability and durability; the box body 11 adopts a hollow double-layer structure, which not only provides a good thermal insulation effect, but also facilitates the installation of auxiliary equipment such as the heating belt 12; integrated molding The structure reduces the connection gaps between components, improves the sealing and overall strength; the double-layer hollow structure effectively reduces the heat loss, improves the heating efficiency, and saves energy at the same time; the heating belt 12 is attached to the inner layer of the hollow box 11, and is heated by electric current to transfer heat to the inside of the box 11 to maintain the appropriate temperature of the milk replacer; the foam filling 13 is filled between the heating belt 12 and the side wall of the box 11 to play the role of heat insulation and heat preservation; the heating belt 12 quickly and evenly heats the milk replacer to ensure that the milk replacer maintains an appropriate temperature during feeding. The foam filling 13 effectively reduces heat loss and improves heating efficiency, while avoiding safety hazards caused by overheating of the outside of the box 11; the feeding pipe 2 is welded to the top of the box 11 and is used to add milk replacer into the box 11; the sealing cover 3 is movably connected to the top of the feeding pipe 2 to close the feeding port to prevent dust and impurities from entering; the design of the feeding pipe 2 is easy to operate, and milk replacer can be added quickly, thereby improving feeding efficiency; the sealing cover 3 effectively prevents the entry of external pollutants, ensuring the sanitary quality of the milk replacer;

[0036] like Figure 1-3 As shown, the stirring structure includes a first stirring part 41 and a second stirring part 42; the first stirring part 41 is detachably mounted on the top of the box body 11; the second stirring part 42 is fixedly connected to the top of the base 1 by bolts; the stirring structure includes a first stirring part 41 and a second stirring part 42;

[0037] like Figure 4-9As shown, the first stirring part 41 includes a motor 4, a connecting rod 411, a first blade 412, and a connecting block 413. The motor 4 is installed on the top of the box body 11 by bolts, and the output end of the motor 4 is connected to one end of the connecting rod 411; the other end of the connecting rod 411 extends through the box body 11 to the interior and is integrally formed with a connecting block 413; a plurality of first leaves are welded to the outer wall of the connecting rod 411; the second stirring part 42 includes a rotating sleeve 421, a second blade 422, a driven shell 43, a transmission shaft 431, a connecting sleeve 432, and a fixed base 44. The top of the base 1 is installed with a fixed base 44 by bolts; the fixed base 44 is rotatably connected to the transmission sleeve 432 through a bearing. One end of the shaft 431; a driven housing 43 is provided on the outside of the other end of the transmission shaft 431, the transmission shaft 431 passes through the driven housing 43 and extends to the bottom of the connecting block 413 and is welded with a connecting sleeve 432 that is plugged into the connecting block 413; a rotating sleeve 421 is welded to the bottom of the driven housing 43, the rotating sleeve 421 is sleeved on the outside of the transmission shaft 431, and is rotatably connected to the outer wall of the fixed base 44 through a bearing; a plurality of second blades 422 are welded to the outer wall of the rotating sleeve 421; a transmission assembly for connecting the connecting rod 411 to the transmission shaft 431 is provided inside the driven housing 43; the transmission assembly includes a driving gear 433, a transmission gear 434, and a driven gear 43 5. The driving shaft 431 is provided inside the driven housing 43 and is sleeved with a driving gear 433. The inner side wall of the driven housing 43 is provided with driven teeth 435. A plurality of transmission gears 434 are rotatably connected between the top and bottom of the driven housing 43. The driving gear 433 and the driven teeth 435 are meshed with each other through the transmission gear 434 to achieve reverse rotation. In this embodiment, during the stirring process, the motor 4 drives the connecting rod 411 to rotate. Since the connecting rod 411 at the bottom of the connecting rod 411 is inserted into the connecting sleeve 432, it drives the driving shaft 431 to rotate. At the same time, the driving gear 433 is meshed with the driven teeth 435 through the transmission gear 434 to achieve reverse rotation. The driving shaft 431 realizes reverse rotation, and then the driven shell 43 drives the rotating sleeve 421 and the connecting rod 411 to realize reverse rotation, so the first blade 412 and the second blade 422 have reverse stirring action, which effectively improves the stirring efficiency and the rate of uniform heating; the motor 4 drives the connecting rod 411 and the first blade 412 to rotate, and the transmission component drives the second stirring part 42 to rotate in the opposite direction to achieve sufficient mixing of the milk replacer; the split stirring structure makes the stirring more uniform, avoiding the formation of lumps or precipitation of the milk replacer in the box body 11; the reverse rotation design further improves the stirring effect, making the milk replacer more delicate, which is beneficial to the digestion and absorption of the animal.

[0038] like Figure 3 、 10As shown in Figures 1 and 11, the cleaning structure includes a cleaning pipe 6 and a rotating nozzle 61. A cleaning hole is opened on the top of the box body 11, and a cleaning pipe 6 is welded inside the cleaning hole; the cleaning pipe 6 is an L-shaped structure; one end of the cleaning pipe 6 is arranged inside the box body 11 and is connected to the rotating nozzle 61 by a thread; in this embodiment, the cleaning mechanism includes a cleaning pipe 6 and a rotating nozzle 61, and the cleaning pipe 6 is extended into the interior of the box body 11 through the cleaning hole. The rotating nozzle 61 rotates and sprays under the action of high-pressure water flow to clean the interior of the box body 11; the design of the rotating nozzle 61 makes cleaning more comprehensive and thorough, avoiding cleaning dead corners; regular cleaning of the interior of the box body 11 can maintain the sanitary quality of the milk replacer and prevent bacterial growth;

[0039] like Figure 2 、 10 As shown in Figure 11, the discharge structure includes an extension plate 7, a flow meter 71, a water pump 72, a straight discharge pipe 8, a quantitative valve 81, a diverter pipe 82, a straight discharge valve 83, and a drain pipe 84. The outer wall of the box body 11 is welded with the extension plate 7; the top of the extension plate 7 is detachably connected with the flow meter 71 and the water pump 72; the water pump 72 is arranged on the right side of the flow meter 71; a drainage hole is opened on the outside of the box body 11, and a straight discharge pipe 8 is welded inside the drainage hole; the straight discharge pipe 8 and the extension plate 7 are arranged on the same side of the box body 11; the straight discharge pipe 8 is arranged on the outside of the box body 11 and one end is connected to the straight discharge valve One end of the door 83; the other end of the straight discharge valve 83 is connected to a drain pipe 84; a diversion port is opened on the outer wall of the straight discharge pipe 8, and one end of the quantitative valve 81 is connected to the inside of the diversion port; the other end of the quantitative valve 81 is connected to the diversion pipe 82; in this embodiment, the discharge structure includes an extension plate 7, a flow meter 71, a water pump 72, a straight discharge pipe 8 and other components, and the milk replacer is pumped out of the box 11 by the water pump 72, measured by the flow meter 71, and discharged through the straight discharge pipe 8 or the diversion pipe 82; the flow meter 71 can accurately measure the amount of milk replacer discharged, which is convenient for controlling the feeding amount;

[0040] like Figure 2 As shown, one side of the base 1 disposed in the box body 11 has an inclined surface structure; the lowest point of the top inclined surface of the base 1 is flush with the straight pipe 8; in this embodiment, the inclined surface structure of the base 1 and the arrangement of the straight pipe 8 allow the milk replacer to be discharged smoothly, avoiding residue and waste;

[0041] like Figure 1-3As shown, a temperature measuring hole is provided on the top of the box 11, and a thermometer 5 is connected to the inside of the temperature measuring hole through a thread; the probe of the thermometer 5 extends to the inside of the box 11; in this embodiment, the temperature measuring hole is provided on the top of the box 11, and the probe of the thermometer 5 extends into the inside of the box 11 through a threaded connection to monitor the temperature inside the box 11 in real time; the thermometer 5 can intuitively display the temperature inside the box 11, which is convenient for the operator to adjust the power of the heating belt 12 in time to ensure that the milk replacer is kept within an appropriate temperature range; real-time temperature monitoring improves the accuracy and safety of feeding.

[0042] The implementation principle of the embodiment of the present utility model is:

[0043] When the present invention is in use, it can be used in conjunction with a transport vehicle. The present invention can be placed on the rear side of the vehicle for easy movement and feeding over a large area. When making milk replacer, the staff needs to open the two sealing covers 3, and then add water and milk replacer into the two feeding pipes 2 respectively, and then connect the external power supply, start the motor 4 and the heater 91 to stir and heat. At this time, the sealing covers can be closed to avoid heat loss. After the heater 91 is set to a corresponding temperature, the milk replacer is heated, and the temperature of the milk replacer is observed in real time through the thermometer 5. After a period of time, feeding can be started;

[0044] During the stirring process, the motor 4 drives the connecting rod 411 to rotate. Since the connecting rod at the bottom of the connecting rod 411 is inserted into the connecting sleeve 432, it drives the transmission shaft 431 to rotate. At the same time, the driving gear 433 meshes with the transmission gear 434 to make the driven gear 435 and the transmission shaft 431 rotate in the opposite direction. Then, the driven housing 435 drives the rotating sleeve 421 and the connecting rod 411 to rotate in the opposite direction. Therefore, the first blade 412 and the second blade 422 have opposite stirring actions, which effectively improves the stirring efficiency and the rate of uniform heating.

[0045] The present invention realizes two modes of direct discharge and quantitative discharge through the discharge structure. Before feeding, it is necessary to connect the hose 10 between the water inlet end of the flow meter 71 and the water outlet end of the water pump 72, and connect the hose 10 between the water inlet end of the water pump 72 and the diversion pipe 82, keep the direct discharge valve 83 closed, and the quantitative valve 81 open, and set the amount of milk replacer to be fed in the flow meter 71. After that, the water pump 72 can be turned on to output a quantitative amount of milk replacer for feeding. When the feeding is finished, the quantitative valve 81 can be closed and the direct discharge valve 83 can be opened to directly discharge the remaining milk replacer.

[0046] When the present invention is used for cleaning, the staff only needs to connect the cleaning pipe 6 to the water outlet end of the water pump 72 with the hose 10, and use the hose 10 to connect the water inlet end of the water pump 72 to an external water source; close the direct discharge valve 83 and the quantitative valve 81, turn on the motor 4, and turn on the water pump 72 to discharge the water flow to the rotating nozzle 61. The rotating nozzle 61 will disperse the water flow and spray the inner wall of the box body 11 for cleaning. When water accumulates in the box body 11, the first stirring part 41 and the second stirring part 42 will stir the water in the box body 11 for cleaning. After a period of time, turn off the motor 4, open the direct discharge valve 83 for sewage discharge, keep the water pump 72 on during this period, and continue to clean the box body 11. After the discharged water is clean and not turbid, you can turn off the water pump 72 to complete the cleaning.

[0047] The above shows and describes the basic principles, main features and advantages of the present invention. The various components mentioned in the present invention are common technologies in the existing field. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements fall within the scope of the present invention. The scope of protection claimed in this utility model is defined by the appended claims and their equivalents.

Claims

1. A milk replacer feeding machine, comprising a base (1) and a box (11), wherein the box (11) is arranged on the top of the base (1); the base (1) and the box (11) are an integrally formed structure, and a feed pipe (2) is welded to the top of the box (11); the number of the feed pipes (2) is two; both of the two feed pipes (2) are connected to the interior of the box (11); the top of the feed pipe (2) is movably connected to a sealing cover (3); characterized in that, The box (11) is a hollow double-layer structure; a heating belt (12) is provided inside the side wall of the box (11); the heating belt (12) is in contact with a layer close to the inner side of the hollow inside of the box (11); a foam filling (13) is provided between the heating belt (12) and the inside of the side wall of the box (11); a split stirring structure is provided inside the box (11); a cleaning mechanism is also provided on the top of the box (11); a discharge structure is provided on the left side of the box (11); and an electric box (9) for powering the heating belt (12) is welded to the rear side wall of the box (11).

2. A milk replacer making and feeding machine according to claim 1, characterized in that The stirring structure comprises a first stirring portion (41) and a second stirring portion (42); the first stirring portion (41) is detachably mounted on the top of the box body (11); and the second stirring portion (42) is fixedly connected to the top of the base (1) by bolts.

3. A milk replacer making and feeding machine according to claim 2, characterized in that The first stirring portion (41) comprises a motor (4), a connecting rod (411), a first blade (412), and a connecting block (413); the motor (4) is mounted on the top of the box body (11) via bolts; the output end of the motor (4) is connected to one end of the connecting rod (411); the other end of the connecting rod (411) passes through the box body (11) and extends to the interior and is integrally formed with a connecting block (413); a plurality of first blades are welded to the outer wall of the connecting rod (411).

4. A milk replacer making and feeding machine according to claim 3, characterized in that The second stirring portion (42) comprises a rotating sleeve (421), a second blade (422), a driven housing (43), a transmission shaft (431), a connecting sleeve (432), and a fixed base (44). The top of the base (1) is fixed with the fixed base (44) by means of bolts; one end of the transmission shaft (431) is rotatably connected to the inside of the fixed base (44) by means of a bearing; the other end of the transmission shaft (431) is provided with a driven housing (43) on the outside; the transmission shaft (431) passes through the driven housing (43) and extends to the connecting block (432). 13) and welded with a connecting sleeve (432) that is plugged into the connecting block (413); a rotating sleeve (421) is welded to the bottom of the driven housing (43), the rotating sleeve (421) is sleeved on the outside of the transmission shaft (431) and is rotatably connected to the outer wall of the fixed base (44) through a bearing; a plurality of second blades (422) are welded to the outer wall of the rotating sleeve (421); a transmission assembly for transmission connection between the connecting rod (411) and the transmission shaft (431) is provided inside the driven housing (43).

5. A milk replacer making and feeding machine according to claim 4, characterized in that The transmission assembly comprises a driving gear (433), a transmission gear (434), and a driven gear (435); the driving gear (433) is sleeved on the portion of the transmission shaft (431) disposed inside the driven housing (43); the driven gear (435) is provided on the inner side wall of the driven housing (43); a plurality of transmission gears (434) are rotatably connected between the top and bottom of the driven housing (43); the driving gear (433) and the driven gear (435) are engaged with the transmission gear (434) to achieve reverse rotation.

6. A milk replacer making and feeding machine according to claim 1, characterized in that The cleaning structure comprises a cleaning pipe (6) and a rotating nozzle (61); a cleaning hole is provided on the top of the box (11), and a cleaning pipe (6) is welded inside the cleaning hole; the cleaning pipe (6) is an L-shaped structure; one end of the cleaning pipe (6) arranged inside the box (11) is connected to the rotating nozzle (61) via a thread.

7. A milk replacer making and feeding machine according to claim 1, characterized in that The discharge structure comprises an extension plate (7), a flow meter (71), a water pump (72), a straight discharge pipe (8), a quantitative valve (81), a diversion pipe (82), a straight discharge valve (83), and a drainage pipe (84). The outer wall of the box body (11) is welded with the extension plate (7); the top of the extension plate (7) is detachably connected with the flow meter (71) and the water pump (72); the water pump (72) is arranged on the right side of the flow meter (71); a drainage hole is opened on the outer side of the box body (11), and the drainage hole is A straight-discharge pipe (8) is welded inside; the straight-discharge pipe (8) and the extension plate (7) are arranged on the same side of the box body (11); one end of the straight-discharge pipe (8) arranged outside the box body (11) is connected to one end of a straight-discharge valve (83); the other end of the straight-discharge valve (83) is connected to a drain pipe (84); a diversion port is opened on the outer wall of the straight-discharge pipe (8), and one end of a quantitative valve (81) is connected to the inside of the diversion port; the other end of the quantitative valve (81) is connected to a diversion pipe (82).

8. A milk replacer making and feeding machine according to claim 7, characterized in that One side of the base (1) disposed in the box (11) is an inclined surface structure; the lowest point of the top inclined surface of the base (1) is flush with the straight pipe (8).

9. A milk replacer making and feeding machine according to claim 1, characterized in that A temperature measuring hole is provided on the top of the box (11), and a thermometer (5) is connected to the inside of the temperature measuring hole via a thread; a probe of the thermometer (5) extends into the inside of the box (11).