Egg liquid separation device for egg product processing

By designing an egg liquid separation device and adopting a diversion filtration structure and adjustable separation gap, the problem of low efficiency in manual separation is solved, and efficient automatic separation of egg white and yolk is achieved, which is suitable for large-scale egg product processing.

CN121128807AInactive Publication Date: 2025-12-16HEBI COLLEGE OF VOCATION & TECH
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Patent Information

Application Number
CN202511338742.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2025-12-16
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When using a large quantity of eggs, manually separating the egg whites and yolks is extremely inefficient, and using a slotted spoon to scoop out the yolks can easily cause breakage, resulting in a long processing time.

Method used

Design an egg liquid separation device that adopts a diversion filtration structure. The egg liquid diversion tank and separation plate realize the automatic separation of egg white and egg yolk. Combined with adjustable separation gap and buffer structure, it ensures efficient separation.

Benefits of technology

It enables efficient and automated separation of large quantities of eggs, avoids yolk breakage, improves separation efficiency, and is suitable for large-scale egg product processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of egg liquid separation, in particular to an egg liquid separation device for egg product processing, which comprises an outer cylinder, a feed hopper and a feed pipe are mounted on the top surface of the outer cylinder, an egg liquid distribution box is fixedly mounted on the inner wall of the outer cylinder through a plurality of distribution supports, and an egg liquid distribution bin is arranged on the top surface of the egg liquid distribution box. An egg liquid distribution groove penetrates between the egg liquid distribution bin and the side face of the egg liquid distribution box, the end, away from the egg liquid distribution bin, of the egg liquid distribution groove inclines downwards, two egg liquid separation plates located on the two sides of the egg liquid distribution groove are installed on each side face of the egg liquid distribution box, and an included angle is formed between the two egg liquid separation plates; an egg liquid separation gap is formed between the bottoms of the egg liquid separation plate and the outer barrel, and an egg yolk collection part located below the end of the egg liquid separation plate is installed on the inner wall of the outer barrel. A large number of egg liquid can be separated at the same time through the split-flow filtering structure, and compared with the operation that manual separation is adopted and egg yolks are fished out one by one through a colander in the prior art, the efficiency is high.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of egg liquid separation, in particular to an egg liquid separation device for egg product processing. BACKGROUND

[0002] In the processing of egg products, eggs are one of the indispensable raw materials, but egg white and egg yolk have different uses, so it is necessary to separate the egg white and egg yolk in the egg liquid for separate use. In daily life, the separation of egg white and egg yolk is usually done manually. The egg liquid is poured back and forth in the broken eggshell, and the egg white flows down, while the egg yolk remains in the eggshell. The separation of one egg liquid is completed in turn. However, when the amount of eggs is large, the separation of egg white and egg yolk by the above-mentioned manual separation method will result in extremely low separation efficiency of egg white and egg yolk.

[0003] Therefore, based on the large amount of eggs, an egg liquid separation tool is needed, which is usually a spoon with a leakage hole. The staff first needs to pour a large amount of egg liquid into a basin, and then use a strainer to fish out the egg yolk one by one. However, since the egg yolk is easy to break, it needs to be handled carefully and takes a long time.

[0004] Therefore, the present application provides an egg liquid separation device for egg product processing to solve the above problems. SUMMARY

[0005] In view of the above situation, in order to overcome the defects of the prior art, the present application provides an egg liquid separation device for egg product processing to solve the problems raised in the background art.

[0006] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows: An egg liquid separation device for egg product processing, comprising an outer cylinder, a feed inlet is formed through the middle of the top surface of the outer cylinder, a feed hopper is installed in the feed inlet, a feed pipe is coaxially connected to the bottom of the feed hopper, a plurality of shunt supports are installed on the inner wall of the outer cylinder, a hexagonal egg liquid shunt box is fixedly installed between one end of the plurality of shunt supports towards the middle of the outer cylinder, an egg liquid shunt bin is formed on the top surface of the egg liquid shunt box, an egg liquid shunt groove is formed through between the egg liquid shunt bin and the six sides of the egg liquid shunt box, the end of the egg liquid shunt groove away from the egg liquid shunt bin is inclined downward, two egg liquid separation plates are installed on each side of the egg liquid shunt box on both sides of the egg liquid shunt groove, the two egg liquid separation plates have an included angle between them, and the bottom portions of the two egg liquid separation plates have an egg liquid separation gap between them, and an egg yolk collection component is installed below the end portions of the egg liquid separation plates on the inner wall of the outer cylinder.

[0007] Preferably, a shunt ball cover with a spherical top is installed at the bottom of the egg liquid shunt bin.

[0008] Preferably, the egg yolk collecting component includes an egg yolk collecting ring and a side ring. The side ring is fixedly installed on the inner edge of the egg yolk collecting ring. An egg yolk guiding ring is coaxially fixedly installed on the upper surface of the egg yolk collecting ring. The top of the egg yolk guiding ring has a guiding slope that is higher on the left and lower on the right. An egg yolk discharge pipe is installed through and installed between the inner and outer sides of the outer cylinder. The egg yolk discharge pipe is aligned with the lower part of the guiding slope.

[0009] Preferably, an egg white collecting cone is fixedly installed on the inner side of the side ring, the bottom of the egg white collecting cone is in contact with the inner wall of the bottom of the outer cylinder, a discharge cylinder is fixedly installed through the middle of the bottom surface of the outer cylinder, and an egg white discharge pipe is installed through the side of the discharge cylinder.

[0010] Preferably, a scraper shaft is rotatably mounted in the middle of the discharge cylinder, and multiple scraper connecting rods are mounted on the outer side of the top end of the scraper shaft. An egg white scraper is fixedly mounted on the end of each scraper connecting rod away from the scraper shaft. The egg white scraper is in contact with the conical surface of the egg white collecting cone. A scraper motor is mounted at the bottom of the discharge cylinder, and the scraper shaft is connected to the rotating shaft of the scraper motor.

[0011] Preferably, each side of the egg liquid diversion box is provided with a separation fine-tuning groove located above the egg liquid diversion channel. Each end of the egg liquid separation plate facing the egg liquid diversion box is fixedly connected to a separation fine-tuning slider located inside the separation fine-tuning groove. A separation fine-tuning rotating rod passing through two separation fine-tuning sliders is rotatably installed inside the separation fine-tuning groove. The outer sides of both ends of the separation fine-tuning rotating rod are provided with fine-tuning external threads with opposite thread directions. The two separation fine-tuning sliders located in the same separation fine-tuning groove are respectively threaded with the two fine-tuning external threads.

[0012] Preferably, a separation fine-tuning gear is coaxially fixedly installed in the middle of each of the separation fine-tuning rotating rods, a rack groove passes through each of the separation fine-tuning slides and the top surface of the egg liquid diversion box, a fine-tuning vertical rod is vertically slidably installed in each of the rack grooves, and a separation fine-tuning rack that meshes with the separation fine-tuning gear is fixedly installed on the bottom side of each of the fine-tuning vertical rods.

[0013] Preferably, a fine-tuning internal thread ring is coaxially fixedly installed on the inner side of the feed inlet, an external thread that engages with the fine-tuning internal thread ring is provided on the outer side of the top of the feed hopper, a fine-tuning rotating ring is fixedly installed on the top of the feed hopper, a fine-tuning driving ring is coaxially rotatably installed on the outer conical surface of the feed hopper, and the top ends of the plurality of fine-tuning vertical rods are all fixedly connected to the bottom surface of the fine-tuning driving ring.

[0014] Preferably, the top surface of the egg liquid diversion box is equipped with a corrugated cover located outside the egg liquid diversion chamber, and the top of the corrugated cover is fixedly installed on the outside of the feed pipe.

[0015] The beneficial effects of this invention are as follows: 1. Egg liquid flows into the egg liquid distribution chamber through the feed pipe. Then, the egg liquid is distributed through multiple egg liquid distribution channels and flows into the upper part of multiple sets of egg liquid separation plates. It flows along the egg liquid distribution plates. The egg white can flow downwards through the egg liquid separation gaps to the bottom of the outer cylinder, while the egg yolk, due to its outer yolk membrane, is spherical. Since the width of the egg liquid separation gap is smaller than the diameter of the egg yolk, the egg yolk will continue to flow along the two egg liquid separation plates until it falls into the egg yolk collection component, thus achieving the separation of egg white and egg yolk. This device adopts a diversion filtration structure, which can separate a large amount of egg liquid at the same time. Compared with the existing technology that uses manual separation and uses a strainer to scoop out egg yolks one by one, it has higher efficiency.

[0016] 2. To prevent egg liquid from remaining inside the egg liquid distribution chamber, a spherical top cover is installed at the bottom of the egg liquid distribution chamber. After the egg liquid reaches the egg liquid retention chamber, it will flow along the spherical top of the distribution cover to its surroundings, thus allowing the egg liquid to smoothly enter multiple egg liquid distribution channels. To prevent the egg yolk from breaking when it hits the distribution cover when the egg liquid falls into the egg liquid distribution chamber, the distribution cover can be made of a softer material, such as silicone or rubber, and its interior can be designed with a hollow structure to cushion the falling egg liquid.

[0017] 3. When using eggs of different sizes, the volume of egg whites and the size of egg yolks are different, while the length of the egg-liquid separation gap remains constant. Therefore, to prevent the egg yolk from carrying a small amount of egg white along the egg-liquid separation plate 9 into the egg yolk collection component 11, before separating the egg liquid, the separation fine-tuning lever can be rotated so that the two fine-tuning external threads drive the two separation fine-tuning levers to move relative to or away from each other, thereby driving the two egg-liquid separation plates to move relative to or away from each other, thus adjusting the width of the egg-liquid separation gap 10, increasing the speed at which the egg white flows down, and enabling the egg white to be completely separated from the egg yolk. Attached Figure Description

[0018] Figure 1 This is a three-dimensional schematic diagram of the present invention.

[0019] Figure 2 This is a front perspective sectional view of the present invention.

[0020] Figure 3 This is a front cross-sectional view of the present invention.

[0021] Figure 4 This is a left-side perspective sectional view of the present invention.

[0022] Figure 5 This is a top-view perspective cross-sectional view of the present invention.

[0023] Figure 6 For the present invention Figure 2 Enlarged view of point A in the middle.

[0024] Figure 7 For the present invention Figure 3 Enlarged view of point B in the middle.

[0025] Figure 8 For the present invention Figure 4 Enlarged view of point C in the middle.

[0026] Figure 9 This is a three-dimensional structural diagram of the present invention after the outer cylinder is removed.

[0027] Figure 10 This is a three-dimensional schematic diagram of the egg yolk collecting component and the egg yolk guiding ring of the present invention.

[0028] In the diagram: 1. Outer cylinder; 2. Feed inlet; 3. Feed hopper; 4. Feed pipe; 5. Diverting bracket; 6. Egg liquid diverting box; 7. Egg liquid diverting chamber; 8. Egg liquid diverting trough; 9. Egg liquid separation plate; 10. Egg liquid separation gap; 11. Egg yolk collection component; 110. Egg yolk collection ring; 111. Side ring; 12. Diverting ball cover; 13. Egg yolk guide ring; 14. Guide slope; 15. Egg yolk discharge pipe; 16. Egg white collection cone; 17. Discharge point. 18. Egg white discharge pipe; 19. Scraper shaft; 20. Scraper connecting rod; 21. Egg white scraper; 22. Scraper motor; 23. Separation fine-tuning groove; 24. Separation fine-tuning slider; 25. Separation fine-tuning rotating rod; 26. Fine-tuning external thread; 27. Separation fine-tuning gear; 28. Rack groove; 29. ​​Fine-tuning vertical rod; 30. Separation fine-tuning rack; 31. Fine-tuning internal thread ring; 32. Fine-tuning rotating ring; 33. Fine-tuning drive ring; 34. Corrugated cover. Detailed Implementation

[0029] The following will refer to the appendix. Figures 1-10 The description provides a detailed description of various embodiments of the present invention.

[0030] An egg liquid separation device for egg product processing, as shown in the attached... Figures 1-10As shown, the device includes an outer cylinder 1, with a support bracket at its bottom for support. A feed inlet 2 is perforated through the center of the top surface of the outer cylinder 1. A feed hopper 3 is installed inside the feed inlet 2, and a feed pipe 4 is coaxially connected to the bottom of the feed hopper 3. The feed hopper 3 is funnel-shaped, and the feed pipe 4 is installed at the tip of the funnel. During use, a large amount of egg liquid from a bowl can be poured into the feed hopper 3. Multiple diversion brackets 5 are installed on the inner wall of the outer cylinder 1. A hexagonal egg liquid diversion box 6 is fixedly installed between the ends of the multiple diversion brackets 5 facing the center of the outer cylinder 1. The egg liquid diversion box 6 has an egg liquid diversion chamber 7 on its top surface. Egg liquid diversion channels 8 are passed through the egg liquid diversion chamber 7 and the six sides of the egg liquid diversion box 6. The end of the egg liquid diversion channel 8 away from the egg liquid diversion chamber 7 is inclined downward. Two egg liquid separation plates 9 are installed on each side of the egg liquid diversion box 6, located on both sides of the egg liquid diversion channel 8. The two egg liquid separation plates 9 have an included angle, and there is an egg liquid separation gap 10 between their bottoms. An egg yolk collection component 11 is installed on the inner wall of the outer cylinder 1, located below the end of the egg liquid separation plate 9.

[0031] In use, all the egg liquid that has been beaten into the basin can be poured into the feed hopper 3. The egg liquid flows into the egg liquid diversion chamber 7 from the feed pipe 4. Then, the egg liquid is diverted from multiple egg liquid diversion channels 8 and flows into the upper part of multiple sets of egg liquid separation plates 9. It flows along the egg liquid separation plates 9. The egg white can flow downwards from the egg liquid separation gap 10 to the bottom of the outer cylinder 1. The yolk is spherical due to its outer yolk membrane. Since the width of the egg liquid separation gap 10 is smaller than the diameter of the yolk, the yolk will continue to flow along the two egg liquid separation plates 9 until it falls into the yolk collection component 11, thus achieving the separation of egg white and yolk. This device adopts a diversion and filtration structure, which can separate a large amount of egg liquid at the same time. Compared with the existing technology of manual separation and using a strainer to scoop out the yolk one by one, it has higher efficiency and is suitable for egg product processing shops or factories that use a large number of eggs.

[0032] As attached Figures 5-7 As shown, to prevent egg liquid from remaining inside the egg liquid distribution chamber 7, a distribution ball cover 12 with a spherical top is installed at the bottom of the egg liquid distribution chamber 7. After the egg liquid reaches the egg liquid distribution chamber 7, it will flow around the spherical top of the distribution ball cover 12, so that the egg liquid can smoothly enter the multiple egg liquid distribution channels 8. In order to prevent the egg yolk from being damaged when it hits the distribution ball cover 12 when the egg liquid falls into the top of the distribution ball cover 12, the material of the distribution ball cover 12 can be selected to be a softer material, such as silicone or rubber. Its interior can be set as a hollow structure, which can buffer the falling egg liquid.

[0033] As attached Figures 2-5 , Figures 9-10As shown, the egg yolk collecting component 11 includes an egg yolk collecting ring 110 and a side ring 111. The side ring 111 is fixedly installed on the inner edge of the egg yolk collecting ring 110, making the cross-section of the egg yolk collecting component 11 "L" shaped. An egg yolk guiding ring 13 is coaxially fixedly installed on the upper surface of the egg yolk collecting ring 110. The top of the egg yolk guiding ring 13 has a guiding slope 14 that is higher on the left and lower on the right. An egg yolk discharge pipe 15 is installed through and installed between the inner and outer sides of the outer cylinder 1. The egg yolk discharge pipe 15 is aligned with the lower part of the guiding slope 14. After the egg liquid flows from the egg liquid diversion tank 8 to the multiple sets of egg liquid separation plates 9 for separation, the egg yolk falls into the egg yolk collection component 11 along the multiple sets of egg liquid separation plates 9. The egg yolk will fall on the surface of the egg yolk guide ring 13, and then all the egg yolk on the egg yolk guide ring 13 will move along the guide slope 14 to the egg yolk discharge pipe 15, and finally flow out from the egg yolk discharge pipe 15. A container can be placed below the egg yolk discharge pipe 15 to hold the egg yolk.

[0034] As attached Figures 2-4 As shown, a funnel-shaped egg white collecting cone 16 is fixedly installed on the inner side of the side ring 111. The bottom of the egg white collecting cone 16 is attached to the inner wall of the bottom of the outer cylinder 1. The egg white collecting cone 16 is located below multiple egg liquid separation gaps 10. The egg white flowing down from the egg liquid separation gaps 10 can fall into the egg white collecting cone 16 for storage. A discharge cylinder 17 is fixedly installed through the middle of the bottom surface of the outer cylinder 1. An egg white discharge pipe 18 is installed through the side of the discharge cylinder 17. The egg white collected inside the egg white collecting cone 16 can enter the discharge cylinder 17 and flow out from the egg white discharge pipe 18. A container can be placed below the egg white discharge pipe 18 to hold the egg white.

[0035] As attached Figure 6 , Figure 9 As shown, a scraper shaft 19 is rotatably mounted in the middle of the discharge cylinder 17. Multiple scraper connecting rods 20 are mounted on the outer side of the top of the scraper shaft 19. An egg white scraper 21 is fixedly mounted on the end of each scraper connecting rod 20 away from the scraper shaft 19. The egg white scraper 21 is in contact with the conical surface of the egg white collecting cone 16. A scraper motor 22 is mounted at the bottom of the discharge cylinder 17. The scraper motor 22 is connected to a power cord and can be electrically connected to a power source. The scraper shaft 19 is connected to the rotating shaft of the scraper motor 22. When the scraper motor 22 is started, it can drive the scraper shaft 19 to rotate. The scraper shaft 19 can drive multiple egg white scrapers 21 to rotate, thereby scraping off the egg white that is adhering to or remaining on the conical surface of the egg white collecting cone 16, preventing egg white from remaining on its surface, so that all the egg white flows into the discharge cylinder 17 and can finally flow out from the egg white discharge pipe 18.

[0036] As attached Figures 6-9As shown, each side of the egg liquid diversion box 6 is provided with a separation fine-tuning groove 23 located above the egg liquid diversion channel 8. Each end of the egg liquid separation plate 9 facing the egg liquid diversion box 6 is fixedly connected to a separation fine-tuning slider 24 located inside the separation fine-tuning groove 23. A separation fine-tuning rotating rod 25 passing through two separation fine-tuning sliders 24 is rotatably installed inside the separation fine-tuning groove 23. The outer sides of both ends of the separation fine-tuning rotating rod 25 are provided with fine-tuning external threads 26 with opposite thread directions. The two separation fine-tuning sliders 24 located in the same separation fine-tuning groove 23 are respectively threadedly engaged with the two fine-tuning external threads 26. When different sizes of eggs are used, the volume of egg white and the size of egg yolk are different. However, the length of the egg liquid separation gap 10 remains constant. Therefore, in order to prevent the egg yolk from carrying a small amount of egg white when it moves along the egg liquid separation plate 9 into the egg yolk collection component 11, the separation fine adjustment lever 25 can be rotated before separating the egg liquid to make the two fine adjustment external threads 26 drive the two separation fine adjustment sliders 24 to move relative to or away from each other. This will drive the two egg liquid separation plates 9 to move relative to or away from each other, thereby adjusting the width of the egg liquid separation gap 10, increasing the speed at which the egg white flows down, and enabling the egg white to be completely separated from the egg yolk. When the egg is small, to prevent the yolk from falling out of the egg-liquid separation gap 10, the width of the egg-liquid separation gap 10 can be appropriately reduced, allowing the egg white to flow down normally through the gap 10, while the yolk moves along the two egg-liquid separation plates 9 into the yolk collection component 11. When the egg is large, there is more egg white inside and the yolk diameter is larger, so the width of the egg-liquid separation gap 10 can be appropriately widened, allowing the egg white to flow down quickly through the gap 10, thus making the separation of egg white and yolk more thorough.

[0037] As attached Figures 6-8 As shown, a separation fine-tuning gear 27 is coaxially fixedly installed in the middle of each of the separation fine-tuning rotating rods 25. The separation fine-tuning gear 27 can rotate synchronously with the separation fine-tuning rotating rod 25. A rack and pinion groove 28 passes through each of the separation fine-tuning slide grooves 23 and the top surface of the egg liquid diversion box 6. A fine-tuning vertical rod 29 is vertically slidably installed in each of the rack and pinion grooves 28. A separation fine-tuning rack 30 that meshes with the separation fine-tuning gear 27 is fixedly installed on the bottom side of each of the fine-tuning vertical rods 29. When it is necessary to adjust the width of the egg liquid separation gap 10, the six fine adjustment vertical rods 29 can be driven to move up and down at the same time, so that the six separation fine adjustment racks 30 drive the six separation fine adjustment gears 27 to rotate synchronously, thereby driving the six separation fine adjustment rotating rods 25 to rotate synchronously, so as to realize the synchronous adjustment of the width of multiple egg liquid separation gaps 10.

[0038] As attached Figures 1-4 , Figure 9As shown, a fine-tuning internal threaded ring 31 is coaxially fixedly installed on the inner side of the feed inlet 2. An external thread that engages with the fine-tuning internal threaded ring 31 is provided on the outer surface of the top of the feed hopper 3. A fine-tuning rotating ring 32 is fixedly installed on the top of the feed hopper 3. When the operator rotates the fine-tuning rotating ring 32 by hand, the feed hopper 3 rotates, generating a threaded transmission between the feed hopper 3 and the fine-tuning internal threaded ring 31, allowing the feed hopper 3 to move up and down. A fine-tuning drive ring 33 is coaxially rotatably installed on the outer conical surface of the feed hopper 3. The tops of the multiple fine-tuning vertical rods 29 are fixedly connected to the bottom surface of the fine-tuning drive ring 33. Due to the restriction of the multiple fine-tuning vertical rods 29, the fine-tuning drive ring 33 cannot rotate. Therefore, when the feed hopper 3 rotates, it rotates relative to the fine-tuning drive ring 33. When the feed hopper 3 moves up and down, it can drive the fine-tuning drive ring 33 to move up and down, thereby driving the multiple fine-tuning vertical rods 29 to move up and down synchronously. This drives the multiple separation fine-tuning gears 27 to rotate synchronously, thereby realizing the synchronous adjustment of the width of the multiple egg liquid separation gaps 10.

[0039] As attached Figures 2-9 As shown, a corrugated cover 34 located outside the egg liquid distribution chamber 7 is installed on the top surface of the egg liquid distribution box 6. The top of the corrugated cover 34 is fixedly installed on the outside of the feed pipe 4. The corrugated cover 34 can prevent the egg liquid entering the egg liquid distribution chamber 7 from overflowing, and can extend and retract accordingly as the feed hopper 3 moves up and down.

[0040] It should be noted that in the description of this invention, terms such as "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," which indicate direction or positional relationships, are based on the direction or positional relationships shown in the accompanying drawings. These are used merely for ease of description and do not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation; therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0041] Furthermore, it should be noted that, in the description of this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0042] The technical solution of the present invention has been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will all fall within the scope of protection of the present invention.

Claims

1. An egg liquid separation device for egg product processing, characterized in that, The system includes an outer cylinder (1), with a feed inlet (2) extending through the center of the top surface of the outer cylinder (1). A feed hopper (3) is installed inside the feed inlet (2), and a feed pipe (4) is coaxially connected to the bottom of the feed hopper (3). Multiple diversion brackets (5) are installed on the inner wall of the outer cylinder (1). A hexagonal egg liquid diversion box (6) is fixedly installed between the ends of the multiple diversion brackets (5) facing the center of the outer cylinder (1). An egg liquid diversion chamber (7) is opened on the top surface of the egg liquid diversion box (6). The egg liquid diversion chamber (7) is connected to... Egg liquid diversion channels (8) are passed through the six sides of the egg liquid diversion box (6). The end of the egg liquid diversion channel (8) away from the egg liquid diversion chamber (7) is inclined downward. Two egg liquid separation plates (9) located on both sides of the egg liquid diversion channel (8) are installed on each side of the egg liquid diversion box (6). The two egg liquid separation plates (9) have an included angle and an egg liquid separation gap (10) between their bottoms. An egg yolk collection component (11) located below the end of the egg liquid separation plate (9) is installed on the inner wall of the outer cylinder (1).

2. The egg liquid separation device for egg product processing according to claim 1, characterized in that, The bottom of the egg liquid diversion chamber (7) is fitted with a diversion ball cover (12) with a spherical top.

3. The egg liquid separation device for egg product processing according to claim 1, characterized in that, The egg yolk collecting component (11) includes an egg yolk collecting ring (110) and a side ring (111). The side ring (111) is fixedly installed on the inner edge of the egg yolk collecting ring (110). An egg yolk guiding ring (13) is coaxially fixedly installed on the upper surface of the egg yolk collecting ring (110). The top of the egg yolk guiding ring (13) has a guiding slope (14) that is higher on the left and lower on the right. An egg yolk discharge pipe (15) is installed between the inner and outer sides of the outer cylinder (1). The egg yolk discharge pipe (15) is aligned with the lower part of the guiding slope (14).

4. The egg liquid separation device for egg product processing according to claim 3, characterized in that, An egg white collecting cone (16) is fixedly installed on the inner side of the side ring (111). The bottom of the egg white collecting cone (16) is attached to the bottom inner wall of the outer cylinder (1). A discharge cylinder (17) is fixedly installed through the middle of the bottom surface of the outer cylinder (1). An egg white discharge pipe (18) is installed through the side of the discharge cylinder (17).

5. The egg liquid separation device for egg product processing according to claim 4, characterized in that, A scraper shaft (19) is rotatably mounted in the middle of the discharge cylinder (17). Multiple scraper connecting rods (20) are mounted on the outer side of the top of the scraper shaft (19). An egg white scraper (21) is fixedly mounted on the end of each scraper connecting rod (20) away from the scraper shaft (19). The egg white scraper (21) is in contact with the conical surface of the egg white collecting cone (16). A scraper motor (22) is mounted at the bottom of the discharge cylinder (17). The scraper shaft (19) is connected to the rotating shaft of the scraper motor (22).

6. The egg liquid separation device for egg product processing according to claim 1, characterized in that, Each side of the egg liquid diversion box (6) is provided with a separation fine adjustment groove (23) located above the egg liquid diversion channel (8). Each egg liquid separation plate (9) facing the egg liquid diversion box (6) is fixedly connected to a separation fine adjustment slider (24) located inside the separation fine adjustment groove (23). The separation fine adjustment groove (23) is rotatably installed with a separation fine adjustment rod (25) that passes through the two separation fine adjustment sliders (24). The two ends of the separation fine adjustment rod (25) are provided with fine adjustment external threads (26) with opposite thread directions. The two separation fine adjustment sliders (24) located in the same separation fine adjustment groove (23) are respectively threaded with the two fine adjustment external threads (26).

7. The egg liquid separation device for egg product processing according to claim 6, characterized in that, Each of the separation fine-tuning rotating rods (25) is coaxially fixedly mounted with a separation fine-tuning gear (27) in the middle. Each of the separation fine-tuning slides (23) and the top surface of the egg liquid diversion box (6) are respectively connected by a rack slide (28). Each of the rack slides (28) is vertically slidably mounted with a fine-tuning rod (29). Each of the fine-tuning rods (29) is fixedly mounted with a separation fine-tuning rack (30) that meshes with the separation fine-tuning gear (27) on the bottom side.

8. The egg liquid separation device for egg product processing according to claim 7, characterized in that, A fine-tuning internal thread ring (31) is coaxially fixedly installed on the inner side of the feed inlet (2). An external thread that engages with the fine-tuning internal thread ring (31) is provided on the outer side of the top of the feed hopper (3). A fine-tuning rotating ring (32) is fixedly installed on the top of the feed hopper (3). A fine-tuning driving ring (33) is coaxially rotatably installed on the outer conical surface of the feed hopper (3). The top ends of the multiple fine-tuning vertical rods (29) are all fixedly connected to the bottom surface of the fine-tuning driving ring (33).

9. The egg liquid separation device for egg product processing according to claim 1, characterized in that, The top surface of the egg liquid diversion box (6) is equipped with a corrugated cover (34) located outside the egg liquid diversion chamber (7), and the top of the corrugated cover (34) is fixedly installed on the outside of the feed pipe (4).