A separation system for food safety processing

By designing a separation system including egg beating, egg white and egg yolk separation and egg shell collection device, the problem of low efficiency and poor hygiene of separation of egg beating and egg white and egg yolk in the prior art is solved, efficient and coherent operation is achieved, and food safety is improved.

CN112471933BActive Publication Date: 2025-05-27ZHUZHOU FENGSHUI REN AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202011421400.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-11-19
Publication Date
2025-05-27
Estimated Expiration
2039-11-19

AI Technical Summary

Technical Problem

In the production and processing of foods such as cakes and mooncakes, the separation operation efficiency of beating eggs and egg whites and yolks is low, and the hygiene is poor, and it requires a lot of manpower to operate.

Method used

A separation system for food safety processing is designed, including a cylinder, an egg beater device, an egg white and egg yolk separation device and an egg shell collection device. Through intermittent movement of the first rotary shaft, the coherence and efficiency of the egg collection, egg beater, egg white and egg yolk separation and egg shell removal operations are achieved.

Benefits of technology

The coherence and efficiency of the separation of egg beating and egg white and egg yolks has been achieved, and manpower has been liberated, and the hygiene of the operation and the food safety have been improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a separation system for food safety processing, which includes a cylinder body, a feeding device provided on the cylinder body, a support member provided in the cylinder body, a first rotating shaft cooperating with the support member, a first driving device for driving the first rotating shaft to rotate intermittently, an egg-beating device cooperating with the first rotating shaft, an egg white and yolk separation device cooperating with the egg-beating device, and an eggshell collection device. The egg-beating device includes a pressing egg component and an egg-opening component cooperating with the pressing egg component. The pressing egg component includes a support frame provided on the first rotating shaft, a rotating shaft provided on the support frame, a support rod cooperating with the rotating shaft, a pressing plate provided at one end of the support rod, and a second driving component for driving the support rod to act. The operation of the present invention is coherent, liberating manual operation. It not only has high egg-beating efficiency, but also greatly improves the hygiene of the operations of egg-beating and egg white and yolk separation.
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Description

Technical Field

[0001] The invention belongs to the technical field of food processing, and in particular relates to a separation system for food safety processing. Background Art

[0002] In the production and processing of foods such as cakes and moon cakes, egg white or egg yolk is often needed to increase the taste or appearance of the food. However, egg white and egg yolk are two substances with different properties. Therefore, in daily use, they are separated in advance and used independently as needed. However, at present, ordinary families often use manual operation when making homemade pastries, which is not only inefficient, but also very labor-intensive and has poor hygiene.

[0003] For example, Chinese patent CN108185850A is a device for beating eggs and separating egg white and yolk, which includes a base, a shell arranged on the base, a main shaft arranged in the shell in the vertical direction and rotatably connected to the base, a frame arranged on the main shaft, and a plurality of working units evenly arranged on the frame along the circumferential direction, wherein the working units include an egg beating mechanism arranged on the frame and an egg white and yolk separation mechanism arranged below the egg beating mechanism and adapted to the egg beating mechanism, and the device also includes a transmission mechanism inserted into the shell at one end and adapted to the egg beating mechanism. This patent realizes semi-automatic operation of the egg beating and egg white and yolk separation process, avoids the waste of egg liquid, and is safe and hygienic, but the egg beating efficiency of this patent is low. Summary of the invention

[0004] In order to overcome the deficiencies of the prior art, the present invention provides a separation system for food safety processing with consistent operation and high egg beating efficiency.

[0005] In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme: a separation system for food safety processing, comprising a cylinder, a feeding device arranged on the cylinder, a support member arranged in the cylinder, a first rotating shaft matched with the support member, a first driving device for driving the first rotating shaft to rotate intermittently, an egg beating device matched with the first rotating shaft, an egg white and yolk separation device and an egg shell collecting device matched with the egg beating device, the egg beating device comprising an egg pressing component and an egg opening component matched with the egg pressing component, the egg pressing component comprising a support frame arranged on the first rotating shaft, a rotating member arranged on the support frame, a support rod matched with the rotating member, a pressure plate arranged at one end of the support rod and a second driving component for driving the support rod to move; the first driving component of the present invention drives the first rotating shaft to intermittently rotate The egg beating device can cooperate with the feeding device, the egg white and yolk separation device and the egg shell collecting device respectively as the first rotating shaft rotates, and completes the egg receiving operation, the egg beating operation, the egg white and yolk separation operation and the egg shell removal operation in sequence. The whole process is continuous and efficient, which not only frees up manual operation, but also greatly improves the hygiene of the egg beating and egg white and yolk separation operations, and improves the edible safety of processed foods; the second driving component can drive one side of the support rod to move, and with the cooperation of the rotating part, the other side of the support rod moves in the opposite direction. When one end of the support rod moves upward under the action of the second driving component, the other end of the support rod can drive the pressure plate to move downward, so that the pressure plate can contact the egg and apply a downward force to the egg, and cooperate with the egg opening component to greatly improve the egg beating efficiency.

[0006] The second driving assembly includes a first slide groove provided on the support member, a sliding rod matching the first slide groove and a protrusion provided in the first slide groove, one end of the sliding rod and the other end of the support rod; during the rotation of the first rotating shaft, the support rod can be driven to move together by the support frame, and then the support rod drives the sliding rod to move in the first slide groove provided on the support member, and a protrusion is provided in the first slide groove. When the sliding rod moves to the protrusion position, the sliding rod can rise along the protrusion, and the sliding rod can drive the support rod to move upward, thereby realizing the downward movement of the pressure plate. The whole device is simple and does not require an additional driving component, which not only reduces energy consumption but also reduces the failure rate.

[0007] The egg opening assembly includes an arc-shaped member arranged on the support rod, a movable member matched with the arc-shaped member, a first movable member arranged at one end of the movable member and a second movable member arranged at the other end of the movable member; the arc-shaped member on the support rod can cooperate with the movable member during the downward movement, so that the movable member moves forward, and then the forward movement of the movable member can drive the first movable member and the second movable member to move together, and at the same time, part of the structure in the first movable member and part of the structure in the second movable member can undergo relative separation movement, and under the combined action of the relative movement and the pressure of the pressure plate on the egg, the eggshell can be completely separated.

[0008] The first movable assembly comprises an arc-shaped groove arranged on the support frame, a slider matched with the arc-shaped groove, a connecting rod connected to the slider at one end, an egg placing plate connected to the other end of the connecting rod, and a knife piece arranged on the egg placing plate, wherein the slider is matched with the movable part through a telescopic assembly; the movable part can drive the slider to move along the arc-shaped groove through the telescopic assembly during the movement, and when the movable part moves forward, the slider can move outward along the arc-shaped groove, and then the slider can drive the egg placing plate to move outward through the connecting rod, and when the support rod drives the pressure plate to move downward, the knife piece on the egg placing plate can be inserted into the bottom of the egg, thereby causing a notch to appear at the bottom of the egg. Since the first movable assembly cooperates with the support rod, the first movable assembly can be driven to move during the movement of the support rod, that is, after the notch is pressed out of the bottom of the egg, the relative movement operation can be immediately cooperated, which greatly improves the success rate of egg beating.

[0009] The telescopic component includes a cylinder arranged on the movable part, a first elastic part connected to the cylinder at one end, and a telescopic part connected to the other end of the first elastic part, and the telescopic part is connected to the slider; under the action of the first elastic part, the slider can drive the telescopic part to move in the cylinder during the movement, so that the slider can move in the arc-shaped groove, and then the egg placing plate can be moved outward. The setting of the entire telescopic component can greatly improve the stability of the egg placing plate movement.

[0010] The support member is provided with an egg receiving device, which includes an egg receiving tray with a rotatable side, a supporting assembly for supporting the egg receiving tray, and a flipping assembly for driving one side of the egg receiving tray to flip; after the eggs are beaten by the egg beating device, the egg white and yolk in the eggs can fall into the egg receiving tray, preparing for the subsequent separation of the egg white and the yolk, and the supporting assembly can support and fix the egg tray to maintain the stability of the egg receiving tray; the flipping assembly can drive one side of the egg receiving tray to flip, and the egg white with the yolk removed can be discharged from the egg receiving tray for centralized collection.

[0011] The egg white and yolk separation device comprises a cylinder that can rotate intermittently, a piston arranged in the cylinder, a third driving component for driving the cylinder to rotate, and a fourth driving component for driving the piston to move up and down; the fourth driving component can drive the piston to move up and down in the cylinder, and the pressure in the cylinder can be changed during the up and down movement of the piston. The yolk can be separated from the egg white by the pressure difference between the cylinder and the outside, thereby realizing the separation of the yolk and the egg white; the setting of the third driving component can drive the cylinder to rotate intermittently, and the cylinder can remove the yolk from the egg white and discharge the yolk from the cylinder during the intermittent rotation.

[0012] The third driving assembly includes a third driving member, a first shaft body connected to the third driving member at one end, a second shaft body arranged at the other end of the first shaft body, and a connecting member at one end arranged on the second shaft body, and the other end of the connecting member is connected to the cylinder member; the third driving member drives the first shaft body to rotate, and the first shaft body drives the cylinder body to rotate through the second shaft body and the connecting member. This arrangement makes it easy to discharge the yolk sucked out of the egg white to a designated position, so as to facilitate the centralized collection of the yolk.

[0013] The fourth driving component includes a moving rod connected to the piston at one end, a convex part connected to the moving rod and a second sliding groove matched with the convex part; the convex part can rotate along with the cylinder part under the drive of the moving rod, and can move up and down along the second sliding groove during the rotation of the convex part, and then drive the piston to move up and down in the cylinder part through the moving rod. The setting of the fourth driving component can be matched with the third driving component, which not only improves the separation efficiency of egg white and egg yolk, but also greatly reduces energy consumption.

[0014] The egg shell collecting device includes a fourth driving member arranged on the cylinder, a fixed plate connected to the fourth driving member, a first pushing member arranged on the fixed plate, and a second pushing member arranged in parallel with the first pushing member; when the egg beating device moves into the egg shell collecting device, the first pushing member and the second pushing member can push the egg shells remaining on the egg placing plate away from the egg placing plate through the driving action of the fourth driving member, so as to facilitate the centralized collection and processing of the egg shells.

[0015] In summary, the beneficial effects of the present invention are as follows: the present invention can sequentially complete the egg receiving operation, the egg beating operation, the egg white and yolk separation operation and the eggshell removal operation, the whole process is continuous and the work efficiency is high, which not only liberates manual operation and has high egg beating efficiency, but also greatly improves the sanitation of the egg beating and egg white and yolk separation operations. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 The structure of the present invention is schematically shown Figure 1 .

[0017] Figure 2It is a schematic diagram of the partial structure of the present invention Figure 1 .

[0018] Figure 3 It is a schematic diagram of the partial structure of the present invention Figure 2 .

[0019] Figure 4 It is a schematic diagram of the partial structure of the present invention Figure 3 .

[0020] Figure 5 for Figure 3 Side view of.

[0021] Figure 6 for Figure 5 Schematic diagram of the cross-sectional structure at AA in the middle.

[0022] Figure 7 It is a schematic diagram of the partial structure of the present invention Figure 4 .

[0023] Figure 8 for Figure 5 Schematic diagram of the partial cross-section structure at BB in the middle.

[0024] Fig. 9 for Figure 8 Enlarged view of point A in the middle.

[0025] Fig.10 for Figure 3 Top view of the .

[0026] Fig.11 for Fig.10 Schematic diagram of the partial cross-section structure at CC in the middle.

[0027] Fig.12 The invention relates to a device for separating part of egg white and yolk.

[0028] Fig.13 for Fig.12 Side view of.

[0029] Fig.14 for Fig.13 Schematic diagram of the partial cross-section structure at DD in the middle.

[0030] Fig.15 for Figure 2 Enlarged view of point B in the middle.

[0031] Fig.16 It is a schematic diagram of the partial structure of the present invention Figure 5 .

[0032] Fig.17 for Fig.16 Side view of.

[0033] Fig.18for Fig.17 Schematic diagram of the cross-sectional structure at EE in the middle. DETAILED DESCRIPTION

[0034] like Figure 1-17 The separation system for food safety processing shown in the figure comprises a cylinder 1, a feeding device, an egg beating device 3, an egg white and yolk separation device 4, an egg shell collecting device 5, a support member 6, a first rotating shaft 61, a first driving device and an egg receiving device. The cylinder 1 is a metal cylinder, the support member 6 is arranged in the cylinder 1, the first rotating shaft 61 is a metal shaft, one end of the first rotating shaft 61 cooperates with the support member 6 through a bearing, and the first driving device is used to drive the first rotating shaft 61 to rotate intermittently. Specifically, the first driving device comprises a first driving member 71, a second rotating shaft 72, a dial member 73 and a rotating member 74. The first driving member 71 is a motor that can be directly purchased on the market, and the specific structure and principle are not repeated here. The second rotating shaft 72 is a metal shaft. One end of the second rotating shaft 72 is connected to the output end of the first driving member 71, and the other end of the second rotating shaft 72 cooperates with the supporting member 6 through a bearing. The dial member 73 is a metal member, and one end of the dial member 73 is sleeved on the second rotating shaft 72, and a protrusion 731 is provided on the other end of the dial member 73. The rotating member 74 is a metal member, and the rotating member 74 is connected to the first rotating shaft 61. A through groove 741 is provided on the rotating member 74. There are three through grooves 741 in total, and the three through grooves are evenly arranged on the rotating member 74, and the protrusion 731 cooperates with the through groove 741; the first driving member drives the dial member to rotate through the second rotating shaft. During the rotation of the dial member, the protrusion drives the rotating member to move intermittently by cooperating with the through groove, and then the rotating member drives the first rotating shaft to move intermittently.

[0035] The egg beating device 3 cooperates with the first rotating shaft 61. When the first driving component drives the first rotating shaft to perform intermittent motion, the egg beating device can cooperate with the feeding device, the egg white and yolk separation device and the egg shell collecting device respectively during the rotation of the first rotating shaft, and completes the egg receiving operation, the egg beating operation, the egg white and yolk separation operation and the egg shell removal operation in sequence. The whole process is continuous and efficient, which not only frees up manual operation, but also greatly improves the hygiene of the egg beating and egg white and yolk separation operations. Specifically, the egg beating device 3 includes an egg pressing component and an egg opening component. Specifically, the egg pressing component includes a support frame 311, a rotating member 312, a support rod 313, a pressing plate 314 and a second driving component. The support frame 311 is a metal frame. One end of the support frame 311 is welded to the top of the first rotating shaft 61. The support frame 311 includes a first support portion 315 and a second support portion 316. The rotating member 312 is a metal shaft. The rotating member 312 is movably arranged on the support frame 3 11, specifically, one end of the rotating member 312 is connected to the first supporting part, and the other end of the rotating member 312 is connected to the second supporting part. The support rod 313 is a metal rod, which is welded to the rotating member 312 and can rotate with the rotating member 312. The pressing plate 314 is a metal plate, one end of which is welded to one end of the supporting rod 313. The middle part of the pressing plate 314 is slightly concave downward, and the two ends are bent upward. This arrangement can improve the cooperation between the pressing plate and the eggs, which is convenient for the egg beating operation; the second driving assembly 33 is used for the movement of the supporting rod 313. The second driving assembly can drive one side of the supporting rod to move, and make the other side of the supporting rod move in the opposite direction with the cooperation of the rotating member. Specifically, when one end of the supporting rod moves upward under the action of the second driving assembly, the other end of the supporting rod can drive the pressing plate to move downward, so that the pressing plate can contact with the egg and apply a downward force to the egg, and cooperate with the egg opening assembly to greatly improve the egg beating efficiency;

[0036] The first drive assembly includes a first slide groove 331, a slide rod 332 and a protrusion 333. The first slide groove 331 is an annular slide groove. The first slide groove 331 is located on the support member 6. The slide rod 332 is a metal rod. One end of the slide rod 332 is welded to one end of the support rod 313. The other end of the slide rod 332 cooperates with the first slide groove 331. The protrusion 333 is a metal block. The protrusion 333 is welded in the first slide groove 331. During the rotation of the first shaft, the support rod can be driven to move together by the support frame, and then the support rod drives the slide rod to move in the first slide groove provided on the support member. When the slide rod moves to the protruding position, the slide rod can rise along the protrusion, and the slide rod can drive the support rod to move upward, thereby realizing the downward movement of the pressing plate. The whole device is simple and does not need to be provided with an additional driving member, which not only reduces energy consumption but also reduces the failure rate.

[0037] The egg-opening assembly cooperates with the egg-pressing assembly to realize the egg-breaking operation. Specifically, the egg-opening assembly includes an arc-shaped member 321, a movable member 322, a first movable member and a second movable member. The arc-shaped member 321 is a metal member. One end of the arc-shaped member 321 is welded to the bottom of the support rod 313. The movable member 322 cooperates with the arc-shaped member 321. The first movable member 36 cooperates with one end of the movable member 322. The second movable member 35 cooperates with the other end of the movable member 322. Specifically, the first movable member includes a first arc-shaped groove 361, a first slider 362, a first connecting rod 363, a first egg placing plate 364, a first knife member 365 and a telescopic member. The first arc-shaped groove 361 is arranged at the bottom of the first supporting portion 315. The first slider 362 is a metal block, the first slider 362 cooperates with the first arc-shaped groove 361, the first connecting rod 363 is a metal rod, one end of the first connecting rod 363 is welded to the first slider 362, and the other end of the first connecting rod 363 is welded to the first egg placing plate 364, the first egg placing plate 364 is a metal plate, the first egg placing plate 364 includes a first bottom plate 3641 and a second side plate 3642, the first side plate 3642 is arranged on one side of the first bottom plate 3641, and can prevent eggs from sliding from the side, preferably, the first bottom plate 3641 and the first side plate 3642 are integrally formed, the other side of the first bottom plate 3641 is provided with the first knife piece 365, the first knife piece 365 is a metal knife, and the first knife piece 365 is welded to the first bottom plate 3641;

[0038] The telescopic component includes a cylinder 371, a first elastic member 372 and a telescopic member 373. The cylinder 371 is a metal cylinder, one end of which is welded to one end of the movable member 322. The first elastic member 372 is a spring, one end of which is connected to the inner wall of the cylinder 371, and the other end of which is connected to one end of the telescopic member 373. The telescopic member 373 is a metal member, and the other end of which is connected to the first slider 362. Under the action of the first elastic member, the first slider can drive the telescopic member to move in the cylinder during the movement, so that the first slider can move in the first arc-shaped groove, thereby realizing the outward movement of the egg placing plate. The arrangement of the entire telescopic component can greatly improve the stability of the movement of the egg placing plate.

[0039] The second moving assembly includes a second arc groove 351, a second slider 352, a second connecting rod 353, a second egg placing plate 354, a second knife piece 355 and a telescopic group. The second arc groove 351 is arranged at the bottom of the second supporting portion 3112. The second slider 352 is a metal block. The second slider 352 cooperates with the second arc groove 351. The second connecting rod 353 is a metal rod. One end of the second connecting rod 353 is welded to the second slider 352. The other end of the second connecting rod 353 is welded to the second egg placing plate 354. The second egg placing plate 354 is a metal plate. 4 comprises a second bottom plate 3541 and a second side plate 3542, the second side plate 3542 is arranged on one side of the second bottom plate 3541, and can prevent eggs from sliding down from the side. Preferably, the second bottom plate 3541 and the second side plate 3542 are integrally formed, and the other side of the second bottom plate 3541 is provided with a second knife piece 355, the second knife piece 355 is a metal knife, and the second knife piece 355 is welded on the second bottom plate 3541. Similarly, the second sliding block is also matched with the movable member through a telescopic assembly, and the specific structure and principle of the telescopic assembly are the same as those of the telescopic assembly between the first sliding block and the movable member, and will not be repeated here;

[0040] During the downward movement of the arc-shaped member on the support rod, it can cooperate with the movable member to make the movable member move forward. During the movement of the movable member, the telescopic assembly can drive the first slider to move along the first arc-shaped groove, and the second slider to move along the second arc-shaped groove, so that the first egg placing plate and the second egg placing plate can move relative to each other. When the support rod drives the pressing plate to move downward, the first knife piece on the first egg placing plate and the second knife piece on the second egg placing plate can cooperate with each other to be inserted into the bottom of the egg, so that a notch appears at the bottom of the egg. In addition, during the movement of the support rod, the first movable assembly and the second movable assembly can be driven to move in coordination at the same time, that is, after the notch is pressed out at the bottom of the egg, a relative movement operation can be immediately performed. Under the combined effect of the relative movement and the pressure of the pressing plate on the egg, the eggshell can be completely separated, thereby greatly improving the success rate of egg cracking.

[0041] After the eggs are beaten by the egg beating device, the egg white and yolk coming out of the eggs can be matched with an egg receiving device. Specifically, the egg receiving device includes an egg receiving tray 81, a supporting assembly and a flipping assembly. The egg receiving tray 81 is a metal tray. After the eggs are beaten by the egg beating device, the egg white and yolk in the eggs can fall into the egg receiving tray to prepare for the subsequent separation of the egg white and yolk; the supporting assembly is used to support and fix the egg receiving tray 81 to maintain the stability of the egg receiving tray; the flipping assembly is used to drive one side of the egg receiving tray 81 to flip, so that the egg white with the yolk removed can be discharged from the egg receiving tray for centralized collection; specifically, the supporting assembly includes a first support rod 821, a first connecting member 822, a first rod body 823, a first support plate 824, a rotating rod 825 and a first bracket 826. The first support rod 821 is a A metal rod, one end of the first support rod 821 is welded to the support member 6, the first connecting rod 822 is a metal rod, one end of the first connecting rod 822 is welded to one end of the first support rod 821, and the other end of the first connecting rod 822 is welded to the first rod body 823, the first supporting plate 824 is a metal plate, one side of the first supporting plate 824 is welded to the first rod body 823, and the first supporting plate 824 can support the docking material tray, the rotating member 825 is a metal sleeve rod, the rotating member 825 is sleeved on the first rod body 823, and can rotate on the first rod body 823, the first supporting member 826 is a metal member, one side of the first supporting member 826 is welded to the rotating member 825, and the first supporting member 826 is welded to the bottom of the receiving tray;

[0042] The flip assembly includes a second support rod 831, a second connecting rod 832, a second rod body 833, a second support plate 824 and a matching assembly, wherein the second support rod 831 is a metal rod, one end of which is welded to the support member 6, the second connecting rod 832 is a metal rod, one end of which is welded to one end of the second support rod 831, and the other end of the second connecting rod 832 is welded to the second rod body 833, the second support plate 834 is a metal plate, one side of which is welded to the second rod body 833, and the second support plate 834 can be connected to the material tray 81 for support; the matching assembly includes a cam 841, a first shaft 842, a first bevel gear 843, a second bevel gear 844, a first gear 845, an arc gear 846 and a second shaft 847, wherein the arc gear 846 is a gear The arc gear ring 846 is connected to the support frame through a rod 848. The first gear 845 is a metal gear. The tooth surface of the arc gear 846 can mesh with the tooth surface of the first gear 845. The second shaft 847 is a metal shaft. One end of the second shaft 847 is connected to the first gear 845. The second bevel gear 844 is sleeved on the second shaft 847. One end of the second shaft 847 is connected to the first connecting member 822 through a connecting member 849. The tooth surface of the first bevel gear 843 is meshed with the tooth surface of the second bevel gear 844. The first shaft 842 is a metal shaft. One end of the first shaft 842 is connected to the first bevel gear 844. The other end of the first shaft 842 is connected to the cam 841. Preferably, the first shaft 842 cooperates with the second support plate 824 through a bearing.

[0043] The arc gear can move with the support frame. When the arc gear moves to the first gear, it can drive the first gear to rotate. The first gear drives the second bevel gear to rotate through the second shaft. The second bevel gear drives the first bevel gear to rotate. The first bevel gear drives the cam to rotate through the first shaft. During the rotation process, the cam can lift one side of the receiving plate through the cooperation of the rotating rod and the first supporting member, so that the egg white on the receiving plate is discharged from the egg receiving plate for centralized collection.

[0044] The egg white and yolk device 4 can separate the yolk from the egg white. Specifically, the egg white and yolk separation device 4 includes a cylinder 41, a piston 42, a third drive component and a fourth drive component. The cylinder 41 is a metal cylinder, the piston 42 is a rubber plug, and the piston 42 is arranged in the cylinder 41. The third drive component is used to drive the cylinder 41 to rotate intermittently. During the intermittent rotation of the cylinder, the yolk can be taken out from the egg white and the yolk can be discharged from the cylinder. Specifically, the third drive component includes a third drive member 431, a first shaft 432, a second shaft 433 and a connecting member 434. The third drive member 431 is a servo motor that can be directly purchased on the market. The specific structure and principle of the machine are not described in detail here. The first shaft body 432 and the second shaft body 433 are both metal shafts. One end of the first shaft body 432 is connected to the output end of the third driving member 431, and the other end of the first shaft body 432 is connected to the second shaft body 433. The connecting member 434 is a metal member. One end of the connecting member 434 is connected to the second shaft body 433, and the other end of the connecting member 434 is connected to the cylinder 41. The third driving member drives the first shaft body to rotate, and the first shaft body drives the cylinder to reciprocate 180° through the second shaft body and the connecting member. This arrangement makes it easy to discharge the yolk sucked out of the egg white to a designated position, and the yolk can be collected in a centralized manner.

[0045] The fourth driving assembly is used to drive the piston 42 to move up and down. The pressure in the cylinder can be changed during the upward and downward movement of the piston. The yolk can be separated from the egg white by the pressure difference between the cylinder and the outside, thereby realizing the separation of the yolk and the egg white. Specifically, the fourth driving assembly includes a moving rod 441, a convex part 442 and a second slide groove 443. The moving rod 441 is a metal rod. One end of the moving rod 441 is bonded to the piston 42. The other end of the moving rod 441 is welded to the convex part 442. The second slide groove 443 cooperates with the convex part 442. The second slide groove 443 is arranged on a fixing part 444. The fixing part 444 is a metal cylinder. The convex part can move along with the cylinder under the drive of the moving rod. The convex part rotates, and the convex part can move up and down along the second slide groove during the rotation. When the convex part moves from the lower part of the second slide groove to the upper part of the second slide groove, the moving part can drive the piston to move upward. At this time, the cylinder can suck the yolk from the egg white, and when the convex part moves from the upper part of the second slide groove to the lower part of the second slide groove, the moving part can drive the piston to move downward. Under the action of air pressure, the yolk can be discharged from the cylinder into the egg yolk collecting box body. At this time, the cylinder can suck the yolk from the egg white and then drive the piston to move up and down in the cylinder part through the moving rod. The cylinder reciprocates once to complete the operation of sucking and discharging the yolk; the setting of the fourth drive component can be matched with the third drive component, which not only improves the separation efficiency of egg white and yolk, but also greatly reduces energy consumption;

[0046] The eggshell collecting device 5 can collect eggshells in a centralized manner. Specifically, the eggshell collecting device 5 includes a fourth driving member 51, a fixed plate 52, a first push member 53 and a second push member 54. The fourth driving member 51 is a cylinder that can be directly purchased on the market. The specific structure and principle are not repeated here. The fixed plate 52 is a metal plate, which is connected to the piston rod of the fourth driving member 51. The first push member 53 and the second push member 54 are both metal members, and the first push member 53 and the second push member 54 are welded in parallel on the fixed plate 52. When the egg beating device moves to the eggshell collecting device, the first push member and the second push member can push away the eggshells remaining on the first egg placing plate and the second egg placing plate through the driving action of the fourth driving member, so as to facilitate the centralized collection and processing of the eggshells.

[0047] The feeding device can cooperate with the egg-beating device so that the eggs can accurately enter the first egg-placing plate and the second egg-placing plate. Specifically, the feeding device includes a feeding hopper 21 and a feeding pipe 22. The feeding hopper 22 is a flared metal hopper. The feeding pipe 22 is a metal pipe. The feeding pipe 22 is connected to the feeding hopper. When the egg-beating device moves to the feeding device, the eggs are placed in the feeding hopper. The eggs can enter the first egg-placing plate and the second egg-placing plate in the egg-beating device along the feeding pipe, and move to the egg receiving device along with the egg-beating device.

[0048] An egg yolk collecting box body 11, an egg white collecting box body 12 and an egg shell collecting box body 13 are provided at the bottom of the cylinder 1, and an opening 14 is provided on the side wall of the cylinder 1, and the egg yolk collecting box body 11, the egg white collecting box body 12 and the egg shell collecting box body 13 can all enter and exit the cylinder 1 through the opening 14. Preferably, the egg white collecting box body 12 cooperates with a stirring component. Specifically, the stirring component includes a fifth driving member 151, a third shaft body 152, a third bevel gear 153, a fourth bevel gear 154, a fourth shaft body 155 and a stirring blade 156. The fifth driving member 151 is a motor that can be directly purchased on the market. The specific structure and principle will not be traced here. The third shaft body 152 is a metal shaft. One end of the third shaft body 152 is connected to the output end of the fifth driving member 151. The third shaft 152 is connected to the cylinder body, the other end of the third shaft body 152 is connected to the third bevel gear 153, the tooth surface of the third bevel gear 153 can mesh with the tooth surface of the fourth bevel gear 154, the fourth bevel gear 154 is connected to one end of the fourth shaft body 155, the fourth shaft body 155 is a metal shaft, the other end of the fourth shaft body 155 is provided with a stirring blade 156, the stirring blade 156 is provided with three in total, and is evenly arranged along the circumferential direction of the fourth shaft body; when the egg white collection box body 12 is placed in the cylinder body, the fourth bevel gear is meshed with the third bevel gear, the fifth driving member drives the third bevel gear to rotate through the third shaft body, and then the third bevel gear drives the fourth bevel gear to rotate, and then the fourth bevel gear drives the fourth shaft body to rotate, and the stirring blade on the fourth shaft body can stir the egg white;

[0049] Preferably, in order to facilitate the yolk collection box body 11, the egg white collection box body 12 and the egg shell collection box body 13 to be taken out and put in from the barrel, sliding components are respectively arranged at the bottom of the yolk collection box body 11, the egg white collection box body 12 and the egg shell collection box body 13. Since the structures and principles of the sliding components are the same, only the sliding component at the bottom of the egg shell collection box body 13 is described here. Specifically, the sliding component includes a plate 161, a slide groove 162 and a slider 163. The plate 161 is arranged at the bottom of the barrel 1, the slide groove 162 is arranged on the plate 161, the slider 163 cooperates with the slide groove 162, and the slider 163 is arranged at the bottom of the egg shell collection box body;

[0050] The first driving component of the present invention drives the first rotating shaft to perform intermittent movement, so that the egg beating device can cooperate with the feeding device, the egg white and yolk separation device and the egg shell collecting device respectively as the first rotating shaft rotates, and completes the egg receiving operation, the egg beating operation, the egg white and yolk separation operation and the egg shell removal operation in sequence. The whole process is continuous and efficient, which not only frees up manual operation, but also greatly improves the hygiene of the egg beating and egg white and yolk separation operations.

Claims

1. A separation system for food safety processing, comprising a cylinder body (1), a feeding device provided on the cylinder body (1), a support member (6) provided inside the cylinder body (1), a first rotating shaft (61) cooperating with the support member (6), a first driving device for driving the first rotating shaft (61) to rotate intermittently, an egg-beating device (3) cooperating with the first rotating shaft (6), an egg white and yolk separation device (4) cooperating with the egg-beating device (3), and an eggshell collection device (5). It is characterized in that: The egg-beating device (3) includes an egg-pressing component and an egg-opening component cooperating with the egg-pressing component. The egg-pressing component includes a support frame (311) provided on the first rotating shaft (6), a rotating member (312) provided on the support frame (311), a support rod (313) cooperating with the rotating member (312), a pressing plate (314) provided at one end of the support rod (313), and a second driving component for driving the support rod to act; the second driving component includes a first chute (331) provided on the support member (2), a sliding rod (332) cooperating with the first chute (331), and a protrusion (333) provided in the first chute (331), and one end of the sliding rod (332) is connected to the other end of the support rod (313); the egg-opening component includes an arc-shaped member (321) provided on the support rod (313), a movable member (322) cooperating with the arc-shaped member (321), a first moving component provided at one end of the movable member (322), and a second moving component provided at the other end of the movable member (342); the first moving component includes a first arc-shaped groove (361) provided on the support frame (331), a first slider (362) cooperating with the first arc-shaped groove (361), a first connecting rod (363) with one end connected to the first slider (362), a first egg-placement plate (364) connected to the other end of the first connecting rod (363), and a first knife member (365) provided on the first egg-placement plate (364), and the first slider (362) is cooperated with the movable member (342) through a telescopic component; a egg-receiving device is provided on the support member (2), and the egg-receiving device includes an egg-receiving tray (81) that can rotate on one side, a support component (82) for supporting the egg-receiving tray (81), and a turning component (83) for driving one side of the egg-receiving tray (81) to turn over. The telescopic component includes a cylinder (371) provided on the movable member (342), a first elastic member (372) with one end connected to the cylinder (371), and a telescopic member (373) connected to the other end of the first elastic member (372), and the telescopic member (373) is connected to the slider (362). The egg white and yolk separation device (4) includes a cylinder member (41) that can rotate intermittently, a piston (42) provided inside the cylinder member (41), a third driving component for driving the cylinder member (41) to rotate, and a fourth driving component for driving the piston (42) to move up and down.

2. A separation system for food safety processing according to claim 1, characterized in that: The third driving component includes a third driving member (431), a first shaft body (432) with one end connected to the third driving member (431), a second shaft body (433) provided at the other end of the first shaft body (432), and a connecting member (434) with one end provided on the second shaft body (433), and the other end of the connecting member (434) is connected to the cylinder member (41).

3. A separation system for food safety processing according to claim 2, characterized in that: The fourth driving component includes a moving rod (441) with one end connected to the piston (42), a convex member (442) connected to the moving rod (441), and a second sliding groove (443) cooperating with the convex member (442).

4. A separation system for food safety processing according to claim 1, characterized in that: The eggshell collection device (5) includes a fourth driving member (51) provided on the cylinder body (1), a fixing plate (52) connected to the fourth driving member (51), a first pushing member (53) provided on the fixing plate (52), and a second pushing member (54) arranged in parallel with the first pushing member (53).

Citation Information

Patent Citations

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