A pasteurized egg liquid storage tank
By designing a multi-dimensional agitation and up and down liquid storage assembly in the pasteurized egg liquid storage tank, the problems of splashing, foam generation and layering of egg liquid during the stirring process are solved, and the uniformity of egg liquid and good storage effect are achieved.
Patent Information
- Application Number
- CN202510447178.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2045-04-10
AI Technical Summary
The existing pasteurized egg liquid storage tanks can easily cause the egg liquid to splash or produce a large amount of foam during the stirring process. Inappropriate stirring speed will make it difficult for some egg liquid to be stirred, causing a blind spot to mix, affecting the discharge effect of the storage tank on the egg liquid.
A liquid storage component including a centering ring, a first swing arm, a side rod, a stripping component and a kneading component is designed. Through multi-dimensional direction agitation and fluctuation up and down, foam generation is reduced, and the egg liquid layering phenomenon is eliminated, and the egg liquid is ensured uniformity and liquid state.
Through circumferential agitation and up and down fluctuations, the all-round flow of egg liquid in horizontal and vertical directions is achieved, foam generation is reduced, layering is eliminated, and the fluidity and storage effect of egg liquid is improved.
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Figure CN119926230B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of egg liquid storage tanks, and particularly relates to a pasteurized egg liquid storage tank. Background Art
[0002] A pasteurized egg liquid storage tank is a special container for storing pasteurized egg liquid. The storage tank is usually cylindrical and made of durable materials such as stainless steel to ensure the firmness and hygiene of the tank body. During the storage process, in order to prevent the egg liquid from solidifying in the storage tank, generally, the storage tank is provided with a heat preservation layer, such as polyurethane foam or rock wool, to improve the heat preservation performance of the storage tank and keep the temperature of the egg liquid stable. Since the upper and lower layers of the egg liquid are not heated evenly, the egg liquid at the bottom is prone to solidify during the heating process. Therefore, a stirring rod is provided in the storage tank to keep the egg liquid uniform, prevent the egg liquid from stratifying or precipitating, and facilitate the discharge of the egg liquid inside the storage tank. However, when the stirring rod in the storage tank stirs the egg liquid, it may stir too fast or too slow. Stirring too fast may cause the egg liquid to splash out or generate a large amount of foam, while stirring too slow cannot effectively mix the egg liquid, resulting in some egg liquid being difficult to be stirred in the storage tank, thus causing a mixing dead angle of the egg liquid in the storage tank and affecting the discharge effect of the storage tank on the egg liquid. Summary of the Invention
[0003] The purpose of the present invention is to provide a pasteurized egg liquid storage tank to solve the above deficiencies in the technology.
[0004] To achieve the above purpose, the present invention provides the following technical solution: A pasteurized egg liquid storage tank, including a storage tank and a liquid inlet. A liquid outlet communicated with the inside of the storage tank is installed at the bottom end of the storage tank. A liquid storage component for stirring the egg liquid inside the storage tank in multiple directions is provided inside the storage tank, and the liquid storage component reduces the generation of egg foam during the stirring process of the egg liquid.
[0005] The liquid storage assembly includes a centering ring and a centering column that are respectively rotatably connected inside the storage tank, a first swing arm sleeved outside the centering column, and a side rod fixedly connected to the outside of the centering ring. The side rod moves along the outer circumference of the centering ring and pulls the first swing arm to move up and down reciprocally. An engagement assembly for connection is provided between the side rod and the first swing arm, and the engagement assembly is used to change the flow direction of the egg liquid near the centering ring and the first swing arm. A middle layer assembly is provided on the centering ring, and the middle layer assembly is used to push the egg liquid above the centering ring. A synchronization assembly is provided between the storage tank and the centering ring, and the synchronization assembly is used to drive the centering ring and the middle layer assembly to rotate simultaneously. A peeling assembly for scraping the inner wall of the storage tank and disturbing the outer circle of the egg liquid is provided on the synchronization assembly. A kneading adjustment assembly that cooperates with the middle layer assembly is jointly provided between the centering column and the peeling assembly, and the kneading adjustment assembly is used to change the flow direction of the egg liquid between the centering column, the peeling assembly, and the middle layer assembly: Moreover, the settings of the centering ring and the first swing arm can achieve circumferential stirring and vertical fluctuation of the egg liquid inside the storage tank. Circumferential stirring can enable the egg liquid to form an all-round flow in the horizontal direction, and continuous circumferential stirring will continuously change the state of the egg liquid surface, making it difficult to maintain the stability of the surface tension of the egg liquid, thereby destroying this stability. The formation of new foam can reduce the generation of foam, while vertical fluctuation further promotes the circulation of the egg liquid in the vertical direction, eliminating the phenomenon of egg liquid stratification caused by gravity. Vertical fluctuation maintains the uniformity of the egg liquid, helps to reduce the foam generation caused by this stratification, and ensures that the egg liquid always maintains good fluidity and a liquid state.
[0006] Preferably, the engagement assembly includes a limiting column movably connected to the side of the first swing arm close to the centering column and an engagement rod fixedly connected to the bottom end of the side rod. The side rod and the engagement rod are inclined and arranged outside the centering ring. A collar is sleeved outside the engagement rod, and a side plate is fixedly connected to the side of the collar close to the side rod. A centering cylinder is movably sleeved outside the limiting column, and an inclined second swing arm is jointly connected between the centering cylinder and the side plate. The second swing arm is provided with an L-shaped structure. The centering cylinder, the second swing arm, the side plate, and the collar form a C-shaped structure; moreover, the rotation of the centering ring drives the side plate and the second swing arm to synchronously displace, and the centering cylinder installed at the bottom of the second swing arm is used to achieve centering movement between the second swing arm and the first swing arm. Then, the second swing arm and the side plate move along the outside of the centering ring under the movement of the centering ring, and the second swing arm and the centering cylinder pull the first swing arm to move up and down reciprocally.
[0007] Preferably, a universal joint seat is fixedly connected to one side of the first swing arm close to the limiting column, and a connecting ball is fixedly connected to one end of the limiting column, and the connecting ball is movably sleeved in the universal joint seat; and a spherical universal joint structure is formed between the limiting column, the connecting ball and the universal joint seat, so that the centering cylinder and the limiting column have a more flexible state on one side of the first swing arm, avoiding mutual interference between the second swing arm and the first swing arm during the movement of the second swing arm, and enabling good cooperation among the second swing arm, the first swing arm and the centering ring.
[0008] Preferably, the synchronization component includes a fixed seat fixedly connected to the top end of the storage tank and a stabilizing column fixedly connected to the top end of the centering ring. One end of the stabilizing column extends to the outside of the storage tank and is rotatably connected in the fixed seat. A first gear is connected to the outside of the stabilizing column, and the first gear is used to drive the stabilizing column to rotate in the fixed seat and the storage tank. A second gear meshing with the first gear is rotatably connected inside the fixed seat. A servo motor is fixedly connected to the top end of the storage tank, and the servo motor is used to drive the second gear to rotate.
[0009] Preferably, the middle layer component includes a plurality of support columns fixedly connected to the outside of the stabilizing column and guide columns movably connected inside the support columns. One end of the guide column extends to the outside of the support column and is fixedly connected to a middle layer scraper. The middle layer scraper is arranged in an inclined arc structure and an arc angle is provided on the outside of the middle layer scraper. A guide groove for the movement of the guide column is opened inside the support column. A resisting ring is fixedly sleeved on the outside of the guide column, and a first spring is arranged between the resisting ring and the guide groove, and the first spring is sleeved on the outside of the guide column.
[0010] Preferably, the peeling assembly includes a third gear rotatably connected inside the fixed seat and meshing with the second gear, a scraping bar rotatably installed inside the storage tank, and a socket seat sleeved outside the stabilizing column. The third gear is rotatably sleeved outside the stabilizing column. A concentric sleeve is fixedly connected to the bottom end of the third gear, and one end of the concentric sleeve extends into the storage tank and is fixedly connected to the top end of the socket seat. A plurality of undulating blades are fixedly connected to the outside of the socket seat, and the plurality of undulating blades are arranged obliquely in a circumferential array outside the socket seat. An adapter plate is commonly connected between one of the undulating blades and the scraping bar; the undulating blades are obliquely arranged, so that during the rotation of the inclined undulating blades, the egg liquid can be pushed to flow in a more gentle manner, reducing the foam generated by violent stirring. Moreover, the rotation of the undulating blades can drive the scraping bar to move along the inner wall of the storage tank, which will have a certain scraping effect on the inner wall of the storage tank, and can timely scrape off the egg liquid attached to the inner wall and continuously disturb the egg liquid near the inner wall of the storage tank to ensure the full mixing of the egg liquid; at the same time, the scraping bar will push the egg liquid near the inner wall to flow, forming an annular flow along the tank wall. Under the action of the annular flow, the egg liquid in other areas of the tank will be driven to generate corresponding convection, so that the egg liquid in the entire storage tank forms a circulating flow, further enhancing the mixing effect and ensuring that the properties of the egg liquid are consistent throughout the storage tank.
[0011] Preferably, the kneading and adjusting assembly includes a displacement groove opened in the adapter plate, a pushing arc plate obliquely installed on one side of the adapter plate and in contact with the middle scraping plate, and a lifting rod sleeved outside the centering column. The lifting rod is provided with a wavy structure. A plurality of clamping grooves communicating with the inside of the displacement groove are opened on one side of the adapter plate, and a positioning cavity communicating with the inside of the clamping grooves is opened in the adapter plate. A displacement column plate is slidably connected in the positioning cavity, the clamping grooves and the displacement groove; and the length of the positioning cavity is greater than that of the displacement column plate, so that the part of the displacement column plate located inside the positioning cavity can reciprocate up and down along the inside of the positioning cavity, avoiding the situation of mutual interference during the movement of the displacement column plate in the positioning cavity. Moreover, the length of the displacement groove is adapted to the displacement column plate and the second spring, so that the elasticity of the second spring itself can elastically push the part of the displacement column plate located inside the displacement groove, which is beneficial to the elastic compensation effect of the displacement column plate in the displacement groove, so that the part of the displacement column plate located inside the displacement groove can move flexibly.
[0012] Preferably, a second spring is also commonly connected between the displacement groove and the displacement column plate. One end of the displacement column plate extends outside the displacement groove and is fixedly connected with a contact half-ring, and the contact half-ring is provided with an arc-shaped structure. A kneading and adjusting ring seat matched with the contact half-ring is fixedly connected to the end of the lifting rod close to the adapter plate. The kneading and adjusting ring seat is provided with an oval structure and the outside of the kneading and adjusting ring seat is rounded.
[0013] In the above technical solution, the technical effects and advantages provided by the present invention are as follows:
[0014] 1. Through the setting of the liquid storage component, the present invention can achieve circumferential stirring and vertical fluctuation of the egg liquid inside the storage tank. Circumferential stirring can enable the egg liquid to form an all-round flow in the horizontal direction, and continuous circumferential stirring will continuously change the state of the egg liquid surface, making it difficult for the surface tension of the egg liquid to remain stable, thereby destroying this stability and reducing the formation of foam, which can reduce the generation of foam;
[0015] And the vertical fluctuation further promotes the circulation of the egg liquid in the vertical direction, eliminates the layering phenomenon of the egg liquid caused by the action of gravity, maintains the uniformity of the egg liquid during vertical fluctuation, helps to reduce the foam generation caused by this layering, ensures that the egg liquid always maintains good fluidity and liquid state, improves the discharge effect of the storage tank on the egg liquid, and facilitates the discharge of the egg liquid inside the storage tank;
[0016] 2. Through the setting of the side plate, the second swing arm, the centering cylinder, the centering ring and the first swing arm, the present invention can achieve a new conical stirring state of the second swing arm between the centering ring and the first swing arm, which can guide the egg liquid to form a complex flow path inside the storage tank, so as to guide the egg liquid to flow simultaneously in the vertical and horizontal directions, not only eliminating the dead corners and dead zones during the stirring process, but also destroying the surface tension balance of the egg liquid, making it difficult for foam to form and stably exist, and improving the stable storage of the egg liquid;
[0017] 3. Through the setting of the synchronization component, the support column and the centering ring, the present invention can drive the support column to rotate synchronously, and then the rotation of the support column drives the middle scraper to rotate simultaneously. At this time, the rotation of the support column and the middle scraper is used to stir the egg liquid near the stabilizing column and the centering ring again to ensure the full mixing of the egg liquid inside the storage tank;
[0018] 4. Through the setting of the synchronization component, the centering ring, the fluctuation blade and the scraping strip, the present invention can achieve the coaxial reverse rotation of the stabilizing column to the centering ring and the fluctuation blade during the rotation process, which can reduce unnecessary energy transfer, thereby improving the force transmission efficiency of the equipment. At the same time, the reverse rotation of the centering ring and the fluctuation blade can, even if a small amount of foam is generated during the stirring process, quickly push the foam to the surface or edge of the storage tank through its unique flow mode through coaxial reverse stirring, facilitating subsequent removal operations and further improving the storage of the egg liquid in the storage tank;
[0019] 5. Through the setting of the centering ring, the stabilizing column, the middle scraper, the scraping strip and the connecting plate, the present invention can drive the scraping strip to move along the inner wall of the storage tank, which will have a certain scraping effect on the inner wall of the storage tank, can timely scrape off the egg liquid attached to the inner wall, and continuously disturb the egg liquid near the inner wall of the storage tank to ensure the full mixing of the egg liquid;
[0020] 6. Through the settings of the kneading and adjusting component, the connecting plate, the support column, and the middle-layer scraper, the middle-layer scraper can be located near the support column for contraction and movement. During the contraction process of the middle-layer scraper, the stirring range of the egg liquid near the support column and the middle-layer scraper is changed, so that every part of the egg liquid can be disturbed, improving the overall mixing uniformity. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings.
[0022] Figure 1 Structural schematic diagram of the storage tank of the present invention;
[0023] Figure 2 Structural schematic diagram of the second swing arm and the first swing arm in the first motion state of the present invention;
[0024] Figure 3 Structural schematic diagram of the second swing arm and the first swing arm in the second motion state of the present invention;
[0025] Figure 4 Structural schematic diagram of the second swing arm and the first swing arm in the third motion state of the present invention;
[0026] Figure 5 Exploded view of the liquid storage component of the present invention;
[0027] Figure 6 Structural schematic diagram of the middle-layer scraper of the present invention;
[0028] Figure 7 Structural schematic diagram of the peeling component of the present invention;
[0029] Figure 8 Structural schematic diagram of the kneading and adjusting component of the present invention;
[0030] Figure 9 Exploded view of the kneading and adjusting component of the present invention;
[0031] Figure 10 For the present invention Figure 9 Partial enlarged view of part A;
[0032] Figure 11 Partial cross-sectional view of the support column of the present invention;
[0033] Figure 12 Exploded view of the middle-layer component of the present invention.
[0034] Description of the reference numerals:
[0035] 1. Storage tank; 11. Liquid inlet; 12. Liquid outlet;
[0036] 2. Liquid storage assembly; 21. Centering ring; 22. Side rod; 23. Connecting rod; 24. Centering column; 25. First swing arm; 26. Side plate; 27. Second swing arm; 28. Centering cylinder; 29. Universal joint seat; 201. Connecting ball; 202. Limiting column; 203. Collar;
[0037] 3. Synchronization assembly; 31. Stabilizing column; 32. Fixed seat; 33. First gear; 34. Second gear; 35. Servo motor;
[0038] 4. Middle layer assembly; 41. Support column; 42. Guide column; 43. Middle layer scraper; 44. Contact ring; 45. First spring; 46. Guide groove;
[0039] 5. Stripping assembly; 51. Third gear; 52. Socket; 53. Fluctuating blade; 54. Scraping strip; 55. Connecting plate; 56. Concentric sleeve;
[0040] 6. Kneading adjustment assembly; 61. Displacement groove; 62. Second spring; 63. Displacement column plate; 64. Clamping groove; 65. Kneading adjustment ring seat; 66. Contact half ring; 67. Pushing arc plate; 68. Positioning cavity; 69. Lifting rod. Detailed implementation mode
[0041] In order to enable those skilled in the art to better understand the technical solutions of the present invention, the present invention will be further introduced in detail below in conjunction with the accompanying drawings.
[0042] The present invention provides a Figures 1 - 4 pasteurized egg liquid storage tank as shown in the figure, including a storage tank 1 and a liquid inlet 11. A liquid outlet 12 communicating with the inside thereof is installed at the bottom end of the storage tank 1. A liquid storage assembly 2 for stirring the egg liquid inside it in multiple directions is provided inside the storage tank 1, and the liquid storage assembly 2 reduces the generation of egg foam during the stirring process of the egg liquid;
[0043] The liquid storage assembly 2 includes a centering ring 21 and a centering column 24 which are respectively rotatably connected to the storage tank 1, a first swing arm 25 which is sleeved on the outside of the centering column 24, and a side rod 22 which is fixedly connected to the outside of the centering ring 21. The side rod 22 moves along the outer circumference of the centering ring 21 and pulls the first swing arm 25 to move up and down. A connecting assembly for connection is provided between the side rod 22 and the first swing arm 25, and the connecting assembly is used to change the flow direction of the egg liquid near the centering ring 21 and the first swing arm 25. A middle layer component 4 is provided on the centering ring 21, and the middle layer component 4 is used to push the egg liquid above the centering ring 21. A synchronization component 3 is provided between the storage tank 1 and the centering ring 21, and the synchronization component 3 is used to drive the centering ring 21 and the middle layer component 4 to rotate simultaneously. A stripping component 5 is provided on the synchronization component 3 for scraping the inner wall of the storage tank 1 and disturbing the outer circle of the egg liquid. A kneading component 6 cooperating with the middle layer component 4 is provided between the centering column 24 and the stripping component 5, and the kneading component 6 is used to change the flow direction of the egg liquid between the centering column 24, the stripping component 5 and the middle layer component 4: the connecting component includes a limiting column 202 movably connected to the side of the first swing arm 25 close to the centering column 24 and a connecting rod 23 fixedly connected to the bottom end of the side rod 22, and the side rod 22 and the connecting rod 23 are tiltedly arranged on the outside of the centering ring 21, and the outer sleeve of the connecting rod 23 is provided with a collar 203, and the side of the collar 203 close to the side rod 22 is fixedly connected with a side plate 26, and the limiting column 202 The outer part of the first swing arm 25 is movably sleeved with a centering cylinder 28, and an inclined second swing arm 27 is commonly connected between the centering cylinder 28 and the side plate 26. The second swing arm 27 is set to an L-shaped structure. The centering cylinder 28, the second swing arm 27, the side plate 26 and the collar 203 are combined to form a C-shaped structure; the first swing arm 25 is fixedly connected to a universal seat 29 on one side close to the limiting column 202, and one end of the limiting column 202 is fixedly connected to a connecting ball 201, and the connecting ball 201 is movably sleeved in the universal seat 29;
[0044] When it is necessary to store the pasteurized egg liquid inside the storage tank 1 and stir the egg liquid in the storage tank 1, it is connected to the egg liquid conveying pipeline through the liquid inlet 11. Then, the egg liquid is conveyed into the storage tank 1 through the liquid inlet 11 for storage. At this time, the centering ring 21 rotates to drive the side rod 22 to rotate synchronously. Moreover, the side rod 22, the connecting rod 23, and the collar 203 are in a bent state outside the centering ring 21, so that the side rod 22, the connecting rod 23, and the collar 203 perform eccentric motion under the rotation of the centering ring 21. And the connecting rod 23 rotates to drive the collar 203 to move along the bottom of the centering ring 21. Then, the side rod 22 and the side plate 26 change from a horizontal state to an interleaved state, so that the side rod 22 drives the side plate 26 to move along the bottom of the centering ring 21 during the rotation process. As the side plate 26 moves, the second swing arm 27 is displaced from its original position. Then, under the rotation of the side rod 22, the side plate 26 and the second swing arm 27 move a certain distance along the bottom of the centering ring 21, so that the rotational motion of the second swing arm 27 and the side plate 26 along the bottom of the centering ring 21 slowly changes to a swinging motion, and the second swing arm 27 is restricted between the side plate 26, the centering cylinder 28, and the first swing arm 25, so that the second swing arm 27 and the centering cylinder 28 rotate slightly to the right along the outside of the limiting column 202 and the centering cylinder 28 rotates slightly along the outside of the limiting column 202. Then, during the movement of the second swing arm 27 and the side plate 26 along the bottom of the centering ring 21, the second swing arm 27 pulls the centering cylinder 28 and the limiting column 202. Subsequently, a pulling force is formed between the second swing arm 27 and the first swing arm 25 during the movement of the second swing arm 27. At this time, the first swing arm 25 rotates inside the storage tank 1 under the action of the centering column 24 to drive the first swing arm 25 to move upward. And during the upward movement of the first swing arm 25, the side plate 26 changes from an interleaved state to an up-and-down overlapping state under the movement of the side rod 22. Repeating this process, the rotation of the centering ring 21 can drive the second swing arm 27 to move, and the second swing arm 27 pulls or pushes the first swing arm 25 to move upward or downward during the movement, which can realize the circumferential stirring and up-and-down fluctuation of the egg liquid inside the storage tank 1. The circumferential stirring can make the egg liquid form an all-round flow in the horizontal direction, and the up-and-down fluctuation further promotes the circulation of the egg liquid in the vertical direction, eliminating the phenomenon of egg liquid stratification caused by the action of gravity. The up-and-down fluctuation maintains the uniformity of the egg liquid, helps to reduce the generation of foam caused by this stratification, ensures that the egg liquid always maintains good fluidity and liquid state, and improves the storage effect of the storage tank 1 on the egg liquid.
[0045] Reference Figure 2 、 Figure 3 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 11 and Figure 12As shown in the figure, the synchronization component 3 includes a fixed seat 32 fixedly connected to the top end of the storage tank 1 and a stabilizing column 31 fixedly connected to the top end of the centering ring 21. One end of the stabilizing column 31 extends to the outside of the storage tank 1 and is rotatably connected inside the fixed seat 32. A first gear 33 is connected to the outside of the stabilizing column 31, and the first gear 33 is used to drive the stabilizing column 31 to rotate inside the fixed seat 32 and the storage tank 1. A second gear 34 meshing with the first gear 33 is rotatably connected inside the fixed seat 32. A servo motor 35 is fixedly connected to the top end of the storage tank 1, and the servo motor 35 is used to drive the second gear 34 to rotate; the middle layer component 4 includes a plurality of support columns 41 fixedly connected to the outside of the stabilizing column 31 and a guiding column 42 movably connected inside the support column 41. One end of the guiding column 42 extends to the outside of the support column 41 and is fixedly connected to a middle layer scraper 43. The middle layer scraper 43 is provided as an inclined arc-shaped structure and an arc angle is chamfered on the outside of the middle layer scraper 43. A guiding groove 46 for the movement of the guiding column 42 is formed inside the support column 41. A resisting ring 44 is fixedly sleeved on the outside of the guiding column 42, and a first spring 45 is arranged between the resisting ring 44 and the guiding groove 46, and the first spring 45 is sleeved on the outside of the guiding column 42;
[0046] When it is necessary to drive the centering ring 21, first, the servo motor 35 drives the second gear 34 to rotate synchronously. Then, the second gear 34 rotates and meshes with the first gear 33 for transmission. At this time, the first gear 33 rotates to drive the stabilizing column 31 to rotate synchronously inside the fixed seat 32 and the storage tank 1. And the stabilizing column 31 rotates to drive the centering ring 21 to rotate synchronously. Moreover, the stabilizing column 31 rotates to drive the support column 41 to rotate synchronously. Then, the support column 41 rotates to drive the middle layer scraper 43 to rotate simultaneously. At this time, the rotation of the support column 41 and the middle layer scraper 43 is used to stir the egg liquid near the stabilizing column 31 and the centering ring 21 again to ensure that the egg liquid is fully mixed in the storage tank 1.
[0047] Reference Figure 2 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10As shown, the stripping component 5 includes a third gear 51 rotatably connected within the fixed seat 32 and meshed with the second gear 34, a scraping strip 54 rotatably installed within the storage tank 1, and a socket 52 sleeved outside the stabilizing column 31. The third gear 51 is rotatably sleeved outside the stabilizing column 31. The bottom end of the third gear 51 is fixedly connected with a concentric sleeve 56, and one end of the concentric sleeve 56 extends into the interior of the storage tank 1 and is fixedly connected to the top end of the socket 52. A number of undulating blades 53 are fixedly connected to the outside of the socket 52, and the number of undulating blades 53 are arranged obliquely in a circumferential array around the outside of the socket 52. A connecting plate 55 is commonly connected between one of the undulating blades 53 and the scraping strip 54; the kneading and adjusting component 6 includes a displacement groove 61 opened in the connecting plate 55, a pushing arc plate 67 obliquely installed on one side of the connecting plate 55 and in contact with the middle scraping plate 43, and a lifting rod 69 sleeved outside the centering column 24. The lifting rod 69 is provided with a wavy structure. A number of clamping grooves 64 communicating with the inside of the displacement groove 61 are opened on one side of the connecting plate 55. A positioning cavity 68 communicating with the inside of the clamping grooves 64 is opened in the connecting plate 55. A displacement column plate 63 is commonly slidably connected within the positioning cavity 68, the clamping grooves 64 and the displacement groove 61; a second spring 62 is also commonly connected between the displacement groove 61 and the displacement column plate 63. One end of the displacement column plate 63 extends outside the displacement groove 61 and is fixedly connected with a resisting semi-ring 66, and the resisting semi-ring 66 is provided with an arc-shaped structure. One end of the lifting rod 69 close to the connecting plate 55 is fixedly connected with a kneading and adjusting ring seat 65 matched with the resisting semi-ring 66. The kneading and adjusting ring seat 65 is provided with an oval structure and the outside of the kneading and adjusting ring seat 65 has rounded corners;
[0048] When the centering ring 21, the middle scraper 43 and the stabilizing column 31 rotate in the storage tank 1 and realize multi-dimensional stirring of the egg liquid in the storage tank 1, the sleeve 52 is driven by the stabilizing column 31 to rotate synchronously, and then the sleeve 52 rotates to drive a plurality of wave blades 53 to rotate synchronously along the storage tank 1. At this time, the plurality of wave blades 53 can promote the flow of egg liquid in a gentler manner, reducing the foam generated by violent stirring, and the rotation of one of the wave blades 53 drives the connecting plate 55 to rotate synchronously, and the rotation of the connecting plate 55 drives the scraper 54 to rotate around the inside of the storage tank 1, which will produce a certain scraping effect on the inner wall of the storage tank 1, and can timely scrape off the egg liquid attached to the inner wall, and continuously disturb the egg liquid. The egg liquid near the inner wall of the storage tank 1 drives the displacement column plate 63 and the arc-pushing plate 67 to move synchronously with the rotation of the connecting plate 55, so that the arc-pushing plate 67 and the middle-layer scraper 43 will form contact when the wave blade 53 and the stabilizing column 31 rotate coaxially forward and reversely, and then the outer part of the arc-pushing plate 67 contacts and forms a resistance with the middle-layer scraper 43 to push the middle-layer scraper 43 to move, and then the movement of the middle-layer scraper 43 pushes the guide column 42 and the resistance ring 44 to move along the inside of the guide groove 46, so that the first spring 45 is squeezed between the resistance ring 44 and the guide groove 46, so that the middle-layer scraper 43 is located near the support column 41 and moves to retract, and the support column 41 and the middle-layer scraper are pressed by the middle-layer scraper 43 during the retraction process. The stirring range of the egg liquid near 43 is changed, so that every part of the egg liquid can be disturbed, and the rotation of the connecting plate 55 and the rotation of the centering column 24 cooperate with each other, so that under the action of the first swing arm 25, the centering column 24 realizes a lever movement between the lifting rod 69 and the first swing arm 25, and the first swing arm 25 moves upward and the lifting rod 69 moves downward, and the first swing arm 25 moves downward and the lifting rod 69 moves upward, and the up and down movement of the lifting rod 69 can drive the coordination between the kneading ring seat 65 and the abutting half ring 66, so that the connecting plate 55 rotates to the vicinity of the kneading ring seat 65, and the lifting rod 69 moves upward to drive the kneading ring seat 65 to move upward synchronously, so that the kneading ring The outer part of the seat 65 is in brief contact with the bottom of the resistance semi-ring 66, which is used to push the resistance semi-ring 66 to move upward. As the resistance semi-ring 66 moves upward, the displacement column plate 63 is pushed to move upward synchronously along the displacement groove 61 and the positioning cavity 68. Subsequently, the displacement column plate 63 moves upward along the positioning cavity 68, driving the arc pushing plate 67 to move upward synchronously along the embedded groove 64, so that the arc pushing plate 67 moves upward along one side of the connecting plate 55 during the rotation of the connecting plate 55. Subsequently, the rotating connecting plate 55, the upwardly moving arc pushing plate 67 and the upwardly moving lifting rod 69 cooperate with each other to realize fluctuations of the egg liquid near it in different directions, which can better cover all corners in the storage tank 1 and reduce the existence of stirring dead corners.
[0049] Through the above technical solution:
[0050] When in use;
[0051] First step: After pasteurizing the egg liquid, store it inside storage tank 1. When it is necessary to agitate the egg liquid in storage tank 1, connect it to the egg liquid conveying pipeline through liquid inlet 11. Then, the egg liquid is conveyed into storage tank 1 through liquid inlet 11 for storage. At this time, synchronous component 3 drives to drive centering ring 21 to rotate inside storage tank 1, and centering ring 21 and synchronous component 3 pre-agitate the egg liquid inside storage tank 1.
[0052] Second step: Synchronous component 3 rotates to drive support column 41 to rotate synchronously. Then, the rotation of support column 41 drives middle layer scraper 43 to rotate simultaneously. At this time, the rotation of support column 41 and middle layer scraper 43 is used to agitate the egg liquid near stabilizing column 31 and centering ring 21 again to ensure that the egg liquid is fully mixed inside storage tank 1.
[0053] Third step: The rotation of centering ring 21 drives side rod 22 and side plate 26 to change from a horizontal state to an interleaved state, so that during the rotation of side rod 22, side plate 26 moves along the bottom of centering ring 21. During the movement of side plate 26, the distance between second swing arm 27 and its original position is generated. Then, under the rotation of side rod 22, side plate 26 and second swing arm 27 move a certain distance along the bottom of centering ring 21, so that the rotational movement of second swing arm 27 and side plate 26 along the bottom of centering ring 21 slowly changes to a swinging motion. Side plate 26 changes from an interleaved state to an up-and-down overlapping state under the movement of side rod 22, and then changes from an up-and-down overlapping state to a horizontal state in turn under the movement of side rod 22. The rotation of centering ring 21 can drive second swing arm 27 to move, and second swing arm 27 is used to pull or push first swing arm 25 to move up or down during the movement, so that centering ring 21 drives first swing arm 25 to move up and down when rotating.
[0054] In the fourth step, the rotation of the synchronous component 3 drives the stripping component 5 to rotate simultaneously, so that the stripping component 5 rotates coaxially with the centering ring 21 and the middle layer component 4 in forward and reverse directions, and the centering column 24, under the action of the first swing arm 25, realizes the lever movement between the lifting rod 69 and the first swing arm 25, and the first swing arm 25 moves upward and the lifting rod 69 moves downward, and the first swing arm 25 moves downward and the lifting rod 69 moves upward, and the lifting rod 69 moves up and down to drive the adjustment and kneading ring seat 65 and the abutment half ring 66 to cooperate with each other, so that the connecting plate 55 rotates to the vicinity of the adjustment and kneading ring seat 65, and the lifting rod 69 moves upward to drive the adjustment and kneading ring seat 65 to move upward synchronously, so that the outer side of the adjustment and kneading ring seat 65 The part briefly contacts the bottom of the resistance semi-ring 66, which is used to push the resistance semi-ring 66 to move upward. As the resistance semi-ring 66 moves upward, the displacement column plate 63 is pushed to move upward along the displacement groove 61 and the positioning cavity 68. Subsequently, the displacement column plate 63 moves upward along the positioning cavity 68, driving the arc pushing plate 67 to move upward along the embedded groove 64, so that the connecting plate 55 push arc plate 67 moves upward along one side of the connecting plate 55 during the rotation process. Subsequently, the rotating connecting plate 55, the upward moving arc pushing plate 67 and the upward moving lifting rod 69 cooperate with each other to realize fluctuations of the egg liquid near it in different directions, which can better cover all corners in the storage tank 1 and reduce the existence of stirring dead corners.
[0055] The above only describes certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, a person skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A pasteurized egg liquid storage tank, comprising a storage tank (1) and a liquid inlet (11), wherein the bottom end of the storage tank (1) is provided with a liquid outlet (12) communicating with the interior thereof, wherein: The storage tank (1) is provided with a liquid storage component (2) for stirring the egg liquid therein in multiple directions, and the liquid storage component (2) reduces the generation of egg foam during the stirring process of the egg liquid; The liquid storage component (2) comprises a centering ring (21) and a centering column (24) which are respectively rotatably connected to the storage tank (1), a first swing arm (25) which is sleeved on the outside of the centering column (24), and a side rod (22) which is fixedly connected to the outside of the centering ring (21), and the side rod (22) moves along the outer circumference of the centering ring (21) and pulls the first swing arm (25) to move up and down reciprocatingly, a connecting component for connection is provided between the side rod (22) and the first swing arm (25), and the connecting component is used to change the flow direction of the egg liquid near the centering ring (21) and the first swing arm (25), and a middle layer component (4) is provided on the centering ring (21), and the middle layer component (4) is provided on the centering ring (21). The component (4) is used to push the egg liquid above the centering ring (21); a synchronization component (3) is provided between the storage tank (1) and the centering ring (21); and the synchronization component (3) is used to drive the centering ring (21) and the middle layer component (4) to rotate simultaneously; a stripping component (5) is provided on the synchronization component (3) for scraping the inner wall of the storage tank (1) and disturbing the outer ring of the egg liquid; a kneading component (6) that cooperates with the middle layer component (4) is provided between the centering column (24) and the stripping component (5); and the kneading component (6) is used to change the flow direction of the egg liquid between the centering column (24), the stripping component (5) and the middle layer component (4); The kneading component (6) comprises a displacement groove (61) provided in the connecting plate (55), an arc pushing plate (67) obliquely installed on one side of the connecting plate (55) and in contact with the middle scraper plate (43), and a lifting rod (69) sleeved on the outside of the centering column (24), wherein the lifting rod (69) is configured as a wave-shaped structure, a plurality of embedded grooves (64) communicating with the inside of the displacement groove (61) are provided on one side of the connecting plate (55), a positioning cavity (68) communicating with the inside of the embedded groove (64) is provided in the connecting plate (55), and a displacement column plate (63) is slidably connected in the positioning cavity (68), the embedded groove (64) and the displacement groove (61); A second spring (62) is also commonly connected between the displacement groove (61) and the displacement column plate (63); one end of the displacement column plate (63) extends to the outside of the displacement groove (61) and is fixedly connected to a resisting half ring (66); the resisting half ring (66) is configured as an arc-shaped structure; one end of the lifting rod (69) close to the connecting plate (55) is fixedly connected to an adjusting and kneading ring seat (65) that matches the resisting half ring (66); the adjusting and kneading ring seat (65) is configured as an elliptical structure and the outside of the adjusting and kneading ring seat (65) has rounded corners.
2. A pasteurized egg liquid storage tank according to claim 1, characterized in that: The connection assembly comprises a limiting column (202) movably connected to a side of the first swing arm (25) close to the centering column (24) and a connecting rod (23) fixedly connected to the bottom end of the side rod (22), and the side rod (22) and the connecting rod (23) are arranged obliquely on the outside of the centering ring (21), the connecting rod (23) is sleeved with a collar (203) on the outside, and the collar (203) is fixedly connected to a side plate (26) on the side close to the side rod (22), the limiting column (202) is sleeved with a centering cylinder (28) on the outside, and an inclined second swing arm (27) is connected between the centering cylinder (28) and the side plate (26), the second swing arm (27) is set as an L-shaped structure, and the centering cylinder (28), the second swing arm (27), the side plate (26) and the collar (203) are combined to form a C-shaped structure.
3. A pasteurized egg liquid storage tank according to claim 2, characterized in that: A side of the first swing arm (25) close to the limiting column (202) is fixedly connected to a universal seat (29), one end of the limiting column (202) is fixedly connected to a connecting ball (201), and the connecting ball (201) is movably sleeved in the universal seat (29).
4. A pasteurized egg liquid storage tank according to claim 2, characterized in that: The synchronization component (3) comprises a fixing seat (32) fixedly connected to the top of the storage tank (1) and a stabilizing column (31) fixedly connected to the top of the centering ring (21), and one end of the stabilizing column (31) extends to the outside of the storage tank (1) and is rotatably connected in the fixing seat (32), the outside of the stabilizing column (31) is connected to a first gear (33), and the first gear (33) is used to drive the stabilizing column (31) to rotate along the fixing seat (32) and the storage tank (1), the inside of the fixing seat (32) is rotatably connected to a second gear (34) meshing with the first gear (33), and the top of the storage tank (1) is fixedly connected to a servo motor (35), and the servo motor (35) is used to drive the second gear (34) to rotate.
5. A pasteurized egg liquid storage tank according to claim 4, characterized in that: The middle layer assembly (4) comprises a plurality of support columns (41) fixedly connected to the outside of the stabilizing column (31) and a guide column (42) movably connected to the inside of the support column (41); one end of the guide column (42) extends to the outside of the support column (41) and is fixedly connected to a middle layer scraper (43); the middle layer scraper (43) is configured as an inclined arc structure and the outside of the middle layer scraper (43) has an inverted arc angle; a guide groove (46) for the guide column (42) to move is provided inside the support column (41); a contact ring (44) is fixedly sleeved on the outside of the guide column (42); a first spring (45) is provided between the contact ring (44) and the guide groove (46); and the first spring (45) is sleeved on the outside of the guide column (42).
6. The pasteurized egg liquid storage tank according to claim 5, characterized in that: The stripping assembly (5) comprises a third gear (51) rotatably connected in a fixed seat (32) and meshing with a second gear (34), a scraper bar (54) rotatably mounted in a storage tank (1), and a sleeve (52) sleeved on the outside of a stabilizing column (31), wherein the third gear (51) is rotatably sleeved on the outside of the stabilizing column (31), a concentric sleeve (56) is fixedly connected to the bottom end of the third gear (51), and one end of the concentric sleeve (56) extends to the inside of the storage tank (1) and is fixedly connected to the top of the sleeve (52), and a plurality of wave blades (53) are fixedly connected to the outside of the sleeve (52), and the plurality of wave blades (53) are arranged obliquely on the outside of the sleeve (52) in an array, and a connecting plate (55) is commonly connected between one of the wave blades (53) and the scraper bar (54).
Citation Information
Patent Citations
Lubricating oil blending tank with heating mechanism
CN214598532U
A pasteurized egg liquid storage tank
CN222728695U