Egg liquid sterilization tank internally provided with auxiliary flowing assembly
By setting up auxiliary flow components in the egg liquid sterilization tank, including reserved movable rods and self-moving guidance structure, the problem of egg liquid precipitation separation is solved, the multi-directional flow of liquid is achieved, and the efficiency of equipment is improved.
Patent Information
- Application Number
- CN202510767461.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-09-02
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing egg liquid sterilization tanks are static structures during the working process, which makes the egg liquid prone to precipitation and separation, and cannot effectively perform multi-directional flow operations, which has limitations in use.
Auxiliary flow components are provided in the sterilization tank, including reserved movable rods, built-in guide grooves, movable butt parts, magnet butt parts, isolation and docking flexible layers, etc. Through the auxiliary movable structure and self-moving guidance structure, multi-directional flow of liquid is achieved.
It effectively avoids precipitation and separation of egg liquid, ensures multi-directional flow of internal liquid, and improves the efficiency of equipment and product quality.
Smart Images

Figure CN120570313A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of egg liquid sterilizing tanks, in particular to an egg liquid sterilizing tank with an auxiliary flow component arranged therein. Background Art
[0002] The egg liquid sterilizer is a high-temperature sterilization equipment used in food processing. It is mainly used for commercial sterilization of egg liquid and other foods. Through moist heat sterilization technology, it uses high temperature and high pressure environment to kill microorganisms in the egg liquid to ensure that the product meets commercial sterility standards. For example, the patent with announcement number CN212067230U discloses a high-temperature and safe sterilization tank, which includes a sterilization tank, a motor, and a rotating shaft. The right end of the sterilization tank is provided with a motor, the left end of the motor is provided with a rotating shaft, the rotating shaft is provided with a bracket, the upper end of the bracket is provided with a plurality of placement slots, the left side of the placement slot is provided with a clamping plate 1, the right side of the placement slot is provided with a clamping plate 2, the ends of the clamping plates 1 and 2 that are away from each other are provided with springs, the other ends of the springs are fixedly connected to the bracket, the upper side of the bracket is provided with a plurality of nozzles, and the upper ends of the nozzles are connected to connecting pipes. The staff can adjust the temperature in the sterilization tank and set the temperature value in the sterilization tank through the control box. When the temperature in the sterilization tank exceeds the set temperature, the alarm device sounds an alarm to remind the staff. The safety factor is high and safety hazards are avoided. Another example is the patent with announcement number CN219127499U, which discloses a horizontal sterilization tank, comprising a drum sterilization tank and a support frame placed below the drum sterilization tank, on which a rolling assembly is installed; one end of the drum sterilization tank is connected to a feed port, and the other end of the drum sterilization tank is provided with a discharge port; the interior of the drum sterilization tank is provided with a cooling air inlet pipe, a cooling air outlet pipe, a steam pipe and a central pipe with through holes opened on the pipe wall; one end of the central pipe is connected to the drum sterilization tank through a bearing, and the other end is connected to the cooling air inlet pipe, cooling air outlet pipe and steam pipe; one end of the cooling air inlet pipe, cooling air outlet pipe and steam pipe is connected to the interior of the central pipe, and the other end passes through the drum sterilization tank through a sealed bearing to connect to external equipment. The bulk material is directly stirred and sterilized, which makes the sterilization more complete, and the material is directly cooled in the sterilization tank; For example, the patent with announcement number CN216983463U discloses a rotary sterilizing tank, comprising a sterilizing tank body, a rotating shaft and a clamping portion; the interior of the sterilizing tank body is hollow, a retractable cover is provided on the top, and a heater is provided at the bottom; the main part of the rotating shaft is provided inside the sterilizing tank body and can rotate inside the sterilizing tank body; the clamping portion is fixedly connected to the rotating shaft and is also located inside the sterilizing tank body, and is used to clamp the tank body items to be sterilized, and the tank body to be sterilized can rotate inside the sterilizing tank body, so that the product in the tank is heated more evenly during heating, avoiding the problem of product denaturation due to excessively high temperature at the periphery of the tank and insufficient heating at the center of the tank, thereby improving the product qualification rate; Most of the above-mentioned existing technologies have improved their overall structure. However, during the operation, the existing egg liquid sterilization tank is mostly a static placement structure. The egg liquid inside the device is very likely to precipitate and separate after being left still for a long time. Therefore, it is impossible to effectively assist the multi-directional flow operation of the internal liquid, and thus there are certain limitations in its use. Summary of the Invention
[0003] The purpose of the present invention is to provide an egg liquid sterilization tank with an auxiliary flow component built in, so as to solve the problem that most of the above-mentioned background technologies propose a static placement structure, and the egg liquid inside the device is very likely to precipitate and separate when it is left still for a long time. Therefore, it is impossible to effectively assist the multi-directional flow operation of the internal liquid, and thus there are certain usage limitations.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solution: an egg liquid sterilizing tank with an auxiliary flow component installed inside, comprising a sterilizing tank body, a reserved movable rod installed on the inner side of the sterilizing tank body, and the reserved movable rod is driven to rotate by a reserved motor; the inner wall of the sterilizing tank body is provided with a built-in guide groove, and a movable docking piece is nested and installed on the inner side of the built-in guide groove, the movable docking piece and the outer side of the reserved movable rod are fixedly connected with a magnetic docking piece, an isolation docking flexible layer is docked at the inner bottom of the sterilizing tank body, and the sterilizing tank body and the isolation docking flexible layer are provided with an auxiliary movable structure, and the load-bearing state of the isolation docking flexible layer is adaptively controlled by the auxiliary movable structure.
[0005] Further preferably, the auxiliary movable structure is provided with a built-in reserved rope, and the built-in reserved rope is docked at the lower end of the movable docking piece, and the built-in reserved rope passes through the inner wall of the sterilization tank body, and the inner wall of the sterilization tank body is nested with a resistance docking piece, and the resistance docking piece and the end of the built-in reserved rope are docked with each other.
[0006] Further preferably, the upper end of the interfering docking piece is adhesively connected to a first reserved liquid capsule, and the first reserved liquid capsule is arranged in the inner wall of the sterilization tank body, and a supply pipe is passed through the outside of the first reserved liquid capsule, and the supply pipe passes through the inner wall of the sterilization tank body. During the periodic movement of the reserved movable rod, when the magnetic docking piece on its outside moves to contact the lower end of the movable docking piece, the movable docking piece will then form a vertical sliding structure along the inner side of the built-in guide groove.
[0007] Further preferably, a docking movable reserved part is nested and installed at the bottom of the sterilization tank body, and a second reserved liquid capsule is bonded to the lower end of the docking movable reserved part, and the second reserved liquid capsule is arranged at the bottom of the sterilization tank body, and the second reserved liquid capsule is connected to the supply pipe.
[0008] Further preferably, when the magnetic docking piece on the outside of the reserved movable rod moves to contact with the lower end of the movable docking piece, the movable docking piece will then form a vertical sliding structure along the inner side of the built-in guide groove, and the movable docking piece will drive the resistance docking piece through the built-in reserved rope to form traction, and the first reserved liquid bag will supply the interior of the second reserved liquid bag through the supply pipe, and the second reserved liquid bag in the expanded state will then push the docking movable reserved piece to form vertical movement, and the docking movable reserved piece will push the outer isolation docking flexible layer to move upward along the bottom of the sterilization tank body.
[0009] Further preferably, the abutting docking piece slides vertically along the inner wall of the sterilization tank body, and the abutting docking piece simultaneously applies pressure to the first reserved liquid capsule in contact, and the first reserved liquid capsule supplies liquid to the interior of the second reserved liquid capsule through the supply pipe.
[0010] Further preferably, the lower end of the sterilization tank body is provided with a self-movable guiding structure, and the activity state of the isolation docking flexible layer is adjusted by the self-movable guiding structure; the self-movable guiding structure is provided with a docking reserved rope, and the docking reserved rope is docked at the lower end of the isolation docking flexible layer, and a docking shaft assembly is installed on the inner side of the lower end of the sterilization tank body.
[0011] Further preferably, the docking shaft assembly and the end of the docking reserved rope are wrapped around and docked with each other, and a torsion spring assembly is connected between the docking shaft assembly and the lower end of the sterilization tank body. The middle end of the upward-moving isolation docking flexible layer will cooperate with the traction state between the docking reserved rope and the torsion spring assembly, and stably perform rebound activities along the bottom of the sterilization tank body, thereby improving the activity state of the materials stored at the bottom of the equipment.
[0012] Furthermore, the expansion of the second reserved liquid bag pushes the docking movable reserved part to form vertical movement, and the docking movable reserved part pushes the outer isolation docking flexible layer to move upward along the bottom of the sterilization tank body, and the middle end of the upward-moving isolation docking flexible layer cooperates with the docking reserved rope and the torsion spring assembly to stably perform rebound movement.
[0013] Compared with the prior art, the present invention has the following beneficial effects: This egg liquid sterilizing tank with an auxiliary flow component is provided with an auxiliary movable structure. The auxiliary movable structure is used to adaptively control the load state of the isolation docking flexible layer. During the periodic movement of the reserved movable rod, when the magnetic docking piece on the outer side thereof moves to contact the lower end of the movable docking piece, the movable docking piece will then form a vertical sliding structure along the inner side of the built-in guide groove, thereby moving the floating liquid at the upper end of the device. Furthermore, the movable docking piece in the upward state will drive the resisting docking piece to move synchronously through the built-in reserved rope, so that the resisting docking piece will synchronously pressurize the first reserved liquid bag in contact along the inner wall of the sterilization tank body, and the first reserved liquid bag will supply the interior of the second reserved liquid bag through the supply pipe. The second reserved liquid bag in the expanded state will then push the docking movable reserved piece to form vertical movement, and the docking movable reserved piece pushes the outer isolation docking flexible layer to move upward along the bottom of the sterilization tank body, thereby assisting the flow of the liquid accumulated at the bottom of the sterilization tank body, avoiding the long-term static bottom of the equipment, and the egg liquid inside the equipment is very likely to precipitate and separate, effectively assisting the multi-directional flow operation of the internal liquid, and thus there are certain limitations in use. Furthermore, a self-movable guiding structure is provided, through which the activity state of the isolation docking flexible layer is adjusted. In the process of the docking activity reserved part pushing the outer isolation docking flexible layer to reciprocate and assist the flow along the bottom of the sterilization tank body, the middle end of the upward-moving isolation docking flexible layer will cooperate with the traction state between the docking reserved rope and the torsion spring assembly, and stably perform rebound activities along the bottom of the sterilization tank body, thereby improving the activity state of the material stored at the bottom of the equipment, and further assisting the flow treatment of the internal liquid. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of a half-cut three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 3 This is a schematic diagram of the three-dimensional structure of the first reserved liquid capsule of the present invention; Figure 4 A schematic diagram of the three-dimensional structure of the movable rod is reserved for the present invention; Figure 5 This is a schematic diagram of the three-dimensional structure of the supply pipeline of the present invention; Figure 6 For the present invention Figure 1 Schematic diagram of the partially enlarged structure; Figure 7 This is a schematic diagram of a half-section three-dimensional structure of a movable docking piece of the present invention; Figure 8 This is a schematic diagram of the three-dimensional structure of the second reserved liquid capsule of the present invention.
[0015] In the figure: 1. Sterilization tank body; 2. Reserved movable rod; 3. Built-in guide groove; 4. Movable docking part; 5. Magnetic docking part; 6. Isolation docking flexible layer; 7. Docking reserved rope; 8. Docking shaft assembly; 9. Torsion spring assembly; 10. Built-in reserved rope; 11. Resistance docking part; 12. First reserved liquid capsule; 13. Supply pipe; 14. Second reserved liquid capsule; 15. Docking movable reserved part. DETAILED DESCRIPTION
[0016] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0017] Example 1: Please refer to Figures 1-8 The present invention provides the following technical solution: an egg liquid sterilizing tank with a built-in auxiliary flow component, which solves the problem that most existing sterilizing tanks are static placement structures, and the egg liquid inside the equipment is very likely to precipitate and separate after being static for a long time, so it cannot effectively assist the multi-directional flow operation of the internal liquid, and thus has certain usage limitations. The invention discloses a sterilizing tank body 1, a reserved movable rod 2, a built-in guide groove 3, a movable docking piece 4, a magnetic docking piece 5, an isolation docking flexible layer 6, a docking reserved rope 7, a docking shaft assembly 8, a torsion spring assembly 9, a built-in reserved rope 10, a resistance docking piece 11, a first reserved liquid capsule 12, a supply The pipeline 13, the second reserved liquid capsule 14 and the docking movable reserved part 15 components, the inner side of the sterilization tank body 1 is installed with a reserved movable rod 2, and the reserved movable rod 2 is driven to rotate by a reserved motor; the inner wall of the sterilization tank body 1 is provided with a built-in guide groove 3, and the inner side of the built-in guide groove 3 is nested with a movable docking part 4, the movable docking part 4 and the outer side of the reserved movable rod 2 are fixedly connected with a magnetic docking part 5, the inner bottom of the sterilization tank body 1 is docked with an isolation docking flexible layer 6, and the sterilization tank body 1 and the isolation docking flexible layer 6 are provided with an auxiliary movable structure, and the load-bearing state of the isolation docking flexible layer 6 is adaptively controlled by the auxiliary movable structure.
[0018] The auxiliary movable structure is provided with a built-in reserved rope 10, which is docked at the lower end of the movable docking member 4 and passes through the inner wall of the sterilization tank body 1. A resistance docking member 11 is nested in the inner wall of the sterilization tank body 1, and the resistance docking member 11 and the end of the built-in reserved rope 10 are docked with each other. The upper end of the resistance docking member 11 is bonded to a first reserved liquid capsule 12, which is set in the inner wall of the sterilization tank body 1. A supply pipe 13 passes through the outer side of the first reserved liquid capsule 12, and the supply pipe 13 passes through the inner wall of the sterilization tank body 1. A docking movable reserved member 15 is nested in the bottom of the sterilization tank body 1, and a second reserved liquid capsule 14 is bonded to the lower end of the docking movable reserved member 15. The second reserved liquid capsule 14 is set at the bottom of the sterilization tank body 1 and is connected to the supply pipe 13. When the magnetic docking piece 5 on the outside of the reserved movable rod 2 moves to contact with the lower end of the movable docking piece 4, the movable docking piece 4 will then form a vertical sliding structure along the inner side of the built-in guide groove 3, and the movable docking piece 4 will drive the resistance docking piece 11 through the built-in reserved rope 10 to form a traction operation. The resistance docking piece 11 slides vertically along the inner wall of the sterilization tank body 1, and the resistance docking piece 11 simultaneously applies pressure to the first reserved liquid capsule 12 in contact, and the first reserved liquid capsule 12 supplies the interior of the second reserved liquid capsule 14 through the supply pipe 13; during the periodic movement of the reserved movable rod 2, when the magnetic docking piece 5 on the outside thereof moves to contact with the lower end of the movable docking piece 4, the movable docking piece 4 will then form a vertical sliding structure along the inner side of the built-in guide groove 3, thereby moving the floating liquid at the upper end of the device; the movable docking piece 4 in the upward state will then drive the resistance docking piece 11 to move synchronously through the built-in reserved rope 10, thereby allowing the resistance docking piece 11 to move along The inner wall of the sterilization tank body 1 synchronously applies pressure to the first reserved liquid capsule 12 in contact therewith, and the first reserved liquid capsule 12 will supply the interior of the second reserved liquid capsule 14 through the supply pipe 13, and the expanded second reserved liquid capsule 14 will then push the docking movable reserved part 15 to form a vertical movement, and the docking movable reserved part 15 pushes the outer isolation docking flexible layer 6 to move upward along the bottom of the sterilization tank body 1, thereby assisting the flow of the liquid accumulated at the bottom of the sterilization tank body 1, avoiding the long-term static state of the bottom of the equipment, and the egg liquid inside the equipment is very likely to precipitate and separate, effectively assisting the multi-directional flow operation of the internal liquid, and effectively ensuring the internal accumulation of liquid.
[0019] Example 2: Based on Example 1, a self-movable guiding structure is also disclosed, and its specific structure is as follows: The lower end of the sterilization tank body 1 is provided with a self-moving guide structure, which adjusts the movable state of the isolation docking flexible layer 6; The self-movable guiding structure is provided with a docking reserve rope 7, and the docking reserve rope 7 is docked at the lower end of the isolation docking flexible layer 6, and a docking shaft assembly 8 is installed on the inner side of the lower end of the sterilization tank body 1. The docking shaft assembly 8 and the ends of the docking reserve rope 7 are wound around and docked with each other, and a torsion spring assembly 9 is connected between the docking shaft assembly 8 and the lower end of the sterilization tank body 1. The second reserved liquid capsule 14 expands to push the docking movable reserved part 15 to form a vertical movement, and the docking movable reserved part 15 pushes the outer isolation docking flexible layer 6 to move upward along the bottom of the sterilization tank body 1, and the middle end of the upward-moving isolation docking flexible layer 6 cooperates with the docking reserve rope 7 and the torsion spring assembly 9 to stably perform rebound activities; in the process of the docking movable reserved part 15 pushing the outer isolation docking flexible layer 6 to reciprocate along the bottom of the sterilization tank body 1 to assist the flow, the upward-moving The middle end of the isolation docking flexible layer 6 will cooperate with the traction state between the docking reserved rope 7 and the torsion spring assembly 9, effectively reeling the torsion spring assembly 9, so that the docking reserved rope 7 is in a taut state, and the isolation docking flexible layer 6 is stably released from the stress state. After that, the torsion spring assembly 9 is used to rebound along the bottom of the sterilization tank body 1 through the reset force of the torsion spring assembly 9, thereby improving the activity state of the material stored at the bottom of the equipment, and allowing the isolation docking flexible layer 6 to form a reciprocating rebound activity along the bottom of the sterilization tank body 1, thereby improving the auxiliary flow range of the bottom material and further performing auxiliary flow treatment on the internal liquid.
[0020] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0021] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An egg liquid sterilizing tank with an auxiliary flow component, comprising a sterilizing tank body (1), a reserved movable rod (2) being installed on the inner side of the sterilizing tank body (1), and the reserved movable rod (2) being driven to rotate by a reserved motor; Its characteristics are: The inner wall of the sterilization tank body (1) is provided with a built-in guide groove (3), and a movable docking piece (4) is nested and installed inside the built-in guide groove (3). The movable docking piece (4) and the outer side of the reserved movable rod (2) are fixedly connected with a magnetic docking piece (5). The inner bottom of the sterilization tank body (1) is docked with an isolation docking flexible layer (6). The sterilization tank body (1) and the isolation docking flexible layer (6) are provided with an auxiliary movable structure, and the load-bearing state of the isolation docking flexible layer (6) is adaptively controlled by the auxiliary movable structure.
2. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 1, characterized in that: The auxiliary movable structure is provided with a built-in reserved rope (10), and the built-in reserved rope (10) is docked at the lower end of the movable docking piece (4), and the built-in reserved rope (10) passes through the inner wall of the sterilization tank body (1), and a resistance docking piece (11) is nested and installed on the inner wall of the sterilization tank body (1), and the resistance docking piece (11) and the end of the built-in reserved rope (10) are docked with each other.
3. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 2, characterized in that: The upper end of the abutting docking member (11) is bonded to a first reserved liquid capsule (12), and the first reserved liquid capsule (12) is arranged in the inner wall of the sterilization tank body (1). A supply pipe (13) passes through the outer side of the first reserved liquid capsule (12), and the supply pipe (13) passes through the inner wall of the sterilization tank body (1).
4. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 3, characterized in that: A docking movable reserved part (15) is nested and installed at the bottom of the sterilization tank body (1), and a second reserved liquid capsule (14) is bonded and connected to the lower end of the docking movable reserved part (15). The second reserved liquid capsule (14) is arranged at the bottom of the sterilization tank body (1), and the second reserved liquid capsule (14) is connected to the supply pipe (13).
5. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 4, characterized in that: When the magnet docking piece (5) on the outside of the reserved movable rod (2) moves to contact the lower end of the movable docking piece (4), the movable docking piece (4) will then form a vertical sliding structure along the inner side of the built-in guide groove (3), and the movable docking piece (4) drives the resisting docking piece (11) through the built-in reserved rope (10) to form a traction operation.
6. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 5, characterized in that: The abutting docking member (11) slides vertically along the inner wall of the sterilization tank body (1), and the abutting docking member (11) simultaneously applies pressure to the first reserved liquid capsule (12) in contact therewith, and the first reserved liquid capsule (12) supplies liquid to the interior of the second reserved liquid capsule (14) through the supply pipe (13).
7. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 3, characterized in that: The lower end of the sterilization tank body (1) is provided with a self-movable guiding structure, and the movable state of the isolation docking flexible layer (6) is adjusted by the self-movable guiding structure; The self-movable guiding structure is provided with a docking reserve rope (7), and the docking reserve rope (7) is docked at the lower end of the isolation docking flexible layer (6), and a docking shaft assembly (8) is installed inside the lower end of the sterilization tank body (1).
8. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 7, characterized in that: The docking shaft assembly (8) and the end of the docking reserved rope (7) are wound around each other and docked, and a torsion spring assembly (9) is connected between the docking shaft assembly (8) and the lower end of the sterilization tank body (1).
9. The egg liquid sterilizing tank with a built-in auxiliary flow component according to claim 8, characterized in that: The second reserved liquid capsule (14) expands to push the docking movable reserved part (15) to form a vertical movement, and the docking movable reserved part (15) pushes the outer isolation docking flexible layer (6) to move upward along the bottom of the sterilization tank body (1), and the middle end of the upwardly moved isolation docking flexible layer (6) cooperates with the docking reserved rope (7) and the torsion spring assembly (9) to stably perform a rebound movement.
Citation Information
Patent Citations
High-temperature safe sterilization tank
CN212067230U
Rotary sterilization tank
CN216983463U
Horizontal sterilization tank
CN219127499U