Egg yolk liquid sterilization and preservative treatment device
By introducing loading components and shock absorbing components into the egg yolk liquid treatment device, the inconvenient loading and vibration problems of feeding ports are solved, and the rapid loading and shock absorption effects are achieved, and working efficiency and structural stability are improved.
Patent Information
- Application Number
- CN202422462393.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-12
AI Technical Summary
The existing egg yolk liquid treatment devices lack loading components, the feed port is not convenient for quick loading, and the lack of shock-absorbing components, resulting in low working efficiency and high maintenance costs.
An egg yolk liquid sterilization and anti-corrosion treatment device including a loading assembly and a shock absorbing assembly is designed. The loading assembly achieves quick loading through a funnel and a sealing sleeve, and the shock absorbing assembly reduces the impact of vibration through a buffer mechanism.
It improves the feeding efficiency of egg yolk liquid, prevents leakage, reduces the impact of vibration on the device, reduces maintenance costs, and enhances the stability and reliability of the structure.
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Figure CN223142787U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of egg yolk liquid treatment devices, and particularly relates to an egg yolk liquid sterilization and anti-corrosion treatment device. Background Technique
[0002] Eggs are one of the common raw materials in the food processing industry. Common eggs include chicken, duck, goose, and quail eggs, etc. Among them, the egg with the largest output, the most common consumption, and the most widely used in the food processing industry is the chicken egg. Egg products include egg products processed from chicken eggs, duck eggs, goose eggs, or other poultry eggs.
[0003] Chinese Patent Application No. 202311202699.5 discloses an egg yolk liquid sterilization and anti-corrosion treatment device, including a base and a sterilization tank. A salt-adding and stirring mechanism is arranged inside the sterilization tank, and a pasteurization mechanism is arranged outside the sterilization tank. The salt-adding and stirring mechanism includes a bearing seat, a set of opposite stirring shafts, a speed-regulating motor, a set of opposite spiral stirring blades, a set of throwing discs, several baffles, a stepping motor, a rotating lead screw, a sliding nut, a fixed round rod, a sliding shaft sleeve, a set of L-shaped connecting rods, a salt storage bin, a set of rectangular openings, a conveyor belt, and several material distribution plates. The beneficial effect of the present invention is that the salt-adding and stirring mechanism uses a salt storage bin to automatically weigh and feed salt, and cooperates with the throwing disc to evenly drop the salt into the sterilization tank, and disperse the egg yolk liquid and fully stir and mix it with the salt; the rotating frame drives the sterilization tank to rotate reciprocally and cooperate with the scraping blades on the wall to prevent deposition and wall hanging phenomena, thereby improving the pasteurization treatment effect of the egg yolk liquid. The sterilization tank is detachable and convenient for cleaning.
[0004] When the above-mentioned disclosed patent is used, there are the following problems: the processing device lacks a feeding component, and the feeding port at the upper end of the sterilization tank is not convenient for workers to quickly feed materials, reducing the working efficiency of the processing device, and the egg yolk liquid may leak out during feeding. The processing device lacks a shock-absorbing component. When the processing device works and is vibrated, the internal parts of the sterilization tank may become loose and damaged, increasing the maintenance cost and having an adverse impact on the sterilization work of the egg yolk liquid. Content of the Utility Model
[0005] To solve the problems raised in the above background technique. The utility model provides an egg yolk liquid sterilization and anti-corrosion treatment device, which has the characteristics that a funnel is provided at the feeding port and shock absorption is provided at the bottom.
[0006] To achieve the above object, the utility model provides the following technical solution: an egg yolk liquid sterilization and anti-corrosion treatment device, including a bottom plate. An adjusting mechanism is arranged at the upper end of the bottom plate, a rotating frame is arranged on one side of the adjusting mechanism, a sterilization tank is arranged inside the rotating frame, a stirring and sterilization mechanism is arranged inside the sterilization tank, a feeding port is arranged on one side inside the sterilization tank, a feeding component is arranged on one side of the feeding port, and a shock-absorbing component is arranged at the lower end of the bottom plate.
[0007] Preferably, the feeding assembly includes a conveying pipe, a sealing sleeve, a limiting block, a mounting sleeve, a funnel and a top cover. Among them, a sealing sleeve is arranged on one side of the feeding port, a conveying pipe is arranged on the surface of the sealing sleeve, a limiting block is arranged inside the conveying pipe, a mounting sleeve is arranged on the surface of one end of the conveying pipe, a funnel is arranged inside the mounting sleeve, and a top cover is arranged at the upper end of the funnel.
[0008] Preferably, a clamping block is arranged at the upper end of the limiting block, a groove is arranged inside the lower end of the limiting block, and a convex block is arranged at the upper end of the feeding port.
[0009] Preferably, the shock absorption assembly includes a support plate, a movable rod, a movable block, a fixed rod, a spring, a fixed block, a base and a buffer mechanism. Among them, a support plate is arranged inside the bottom plate, movable rods are symmetrically arranged inside the support plate, a movable block is arranged at one end of the movable rod, a fixed rod is arranged inside the movable block, a spring is arranged on the surface of the fixed rod, a fixed block is arranged at one end of the fixed rod, a base is arranged at the lower end of the fixed block, and a buffer mechanism is arranged inside the base.
[0010] Preferably, the buffer mechanism includes a support pad, a buffer block, a damping block and a buffer plate. Among them, a support pad is arranged on one side of the base, a buffer block is arranged on one side of the support pad, a damping block is arranged inside the buffer block, and a buffer plate is arranged inside the damping block.
[0011] Preferably, a stop block is arranged at the other end of the fixed rod, and a rubber pad is arranged at the upper end of the support plate.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] 1. By setting the feeding assembly, the present utility model realizes the quick feeding of the egg yolk liquid. The setting of the funnel is beneficial to improving the feeding efficiency of the egg yolk liquid. The use of the sealing sleeve to block the gap is beneficial to preventing the leakage of the egg yolk liquid. The setting of the clamping block for disassembling and assembling the feeding assembly facilitates the cleaning of the inside of the conveying pipe.
[0014] 2. By setting the shock absorption assembly, the present utility model reduces the influence of vibration on the processing device, which is beneficial to improving the stability of the structure, reducing the maintenance cost. The use of the stop block to block the movable block is beneficial to improving the reliability of the structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic structural diagram of the present utility model;
[0016] Figure 2 is a front sectional view of the present utility model;
[0017] Figure 3 is a schematic diagram of the feeding assembly of the present utility model;
[0018] Figure 4 Cross-sectional view of the shock absorption component of the present utility model;
[0019] Figure 5 Schematic diagram of the buffer mechanism of the shock absorption component of the present utility model.
[0020] In the figure: 1, bottom plate; 2, adjustment mechanism; 3, rotating frame; 4, sterilization tank; 5, stirring and sterilization mechanism; 6, feed inlet; 7, feeding assembly; 71, conveying pipe; 72, sealing sleeve; 73, limiting block; 74, mounting sleeve; 75, funnel; 76, top cover; 8, shock absorption component; 81, support plate; 82, movable rod; 83, movable block; 84, fixed rod; 85, spring; 86, fixed block; 87, base; 88, buffer mechanism; 881, support pad; 882, buffer block; 883, damping block; 884, buffer plate. Specific embodiments
[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0022] Embodiment 1
[0023] Please refer to Figures 1-5 , the present utility model provides the following technical solutions: A device for sterilizing and preserving egg yolk liquid includes a bottom plate 1, an adjustment mechanism 2 is arranged at the upper end of the bottom plate 1, a rotating frame 3 is arranged on one side of the adjustment mechanism 2, a sterilization tank 4 is arranged inside the rotating frame 3, a stirring and sterilization mechanism 5 is arranged inside the sterilization tank 4, a feed inlet 6 is arranged on one side inside the sterilization tank 4, a feeding assembly 7 is arranged on one side of the feed inlet 6, and a shock absorption component 8 is arranged at the lower end of the bottom plate 1.
[0024] Specifically, the feeding assembly 7 includes a conveying pipe 71, a sealing sleeve 72, a limiting block 73, a mounting sleeve 74, a funnel 75 and a top cover 76. Among them, a sealing sleeve 72 is arranged on one side of the feed inlet 6, a conveying pipe 71 is arranged on the surface of the sealing sleeve 72, a limiting block 73 is arranged inside the conveying pipe 71, a mounting sleeve 74 is arranged on the surface of one end of the conveying pipe 71, a funnel 75 is arranged inside the mounting sleeve 74, and a top cover 76 is arranged at the upper end of the funnel 75.
[0025] When the feeding assembly 7 is installed, the staff inserts the lower end of the funnel 75 into the interior of the installation sleeve 74, inserts one end of the delivery tube 71 into the interior of the installation sleeve 74, tightens the installation sleeve 74 to fix the delivery tube 71 and the funnel 75, and puts the other end of the delivery tube 71 around the discharge port 6, and inserts the limit block 73 into the interior of the delivery tube 71 to fix the delivery tube 71. When it is necessary to add egg yolk liquid to the sterilizing tank 4, the staff rotates the top cover 76 so that the top cover 76 matches the texture on the surface of the funnel 75, and the top cover 76 can be separated from the funnel 75. At this time, the staff can pour the egg yolk liquid into the funnel 75, and the egg yolk liquid enters the interior of the delivery tube 71 through the funnel 75, and enters the interior of the feeding port 6 from one end of the delivery tube 71. The sealing sleeve 72 on one side of the feeding port 6 can prevent the egg yolk liquid from leaking out of the gap, thereby realizing quick feeding of the egg yolk liquid.
[0026] Specifically, a clamping block is provided at the upper end of the limiting block 73 , a groove is provided inside the lower end of the limiting block 73 , and a convex block is provided at the upper end of the feed port 6 .
[0027] By adopting the above technical solution, when installing the conveying pipe 71, the groove at the lower end of the limit block 73 can be aligned with the protrusion at the upper end of the feed port 6, so that the protrusion is inserted into the groove, which can fix the conveying pipe 71 and prevent the conveying pipe 71 from rotating around the feed port.
[0028] When the present embodiment is in use, the staff inserts the lower end of the funnel 75 into the interior of the mounting sleeve 74, inserts one end of the delivery tube 71 into the interior of the mounting sleeve 74, tightens the mounting sleeve 74 to fix the delivery tube 71 and the funnel 75, and inserts the other end of the delivery tube 71 into the discharge port 6, and inserts the limit block 73 into the interior of the delivery tube 71 to fix the delivery tube 71. When it is necessary to add egg yolk liquid into the sterilizing tank 4, the staff rotates the top cover 76 to make the top cover 76 match the texture on the surface of the funnel 75, and the top cover 76 can be removed. The funnel 75 is away from the conveying tube 71. At this time, the staff can pour the egg yolk liquid into the funnel 75. The egg yolk liquid enters the conveying tube 71 through the funnel 75, and enters the feed port 6 from one end of the conveying tube 71. The sealing sleeve 72 on one side of the feed port 6 can prevent the egg yolk liquid from leaking out of the gap, thereby realizing the quick loading of the egg yolk liquid. When installing the conveying tube 71, the groove at the lower end of the limit block 73 can be aligned with the protrusion at the upper end of the feed port 6 so that the protrusion is inserted into the groove, which can fix the conveying tube 71 and prevent the conveying tube 71 from rotating around the feed port.
[0029] Example 2
[0030] The difference between this embodiment and Embodiment 1 lies in: Specifically, the shock absorption assembly 8 includes a support plate 81, a movable rod 82, a movable block 83, a fixed rod 84, a spring 85, a fixed block 86, a base 87 and a buffer mechanism 88. Among them, a support plate 81 is arranged inside the bottom plate 1, movable rods 82 are symmetrically arranged inside the support plate 81, a movable block 83 is arranged at one end of the movable rod 82, a fixed rod 84 is arranged inside the movable block 83, a spring 85 is arranged on the surface of the fixed rod 84, a fixed block 86 is arranged at one end of the fixed rod 84, a base 87 is arranged at the lower end of the fixed block 86, and a buffer mechanism 88 is arranged inside the base 87.
[0031] By adopting the above technical solution, when the processing device is affected by vibration, the pressure caused by the vibration is transmitted to the support plate 81 through the bottom plate 1, causing the support plate 81 to move downward. The support plate 81 pushes the movable rod 82 to move. One end of the movable rod 82 rotates around the support plate 81, and the other end of the movable rod 82 pushes the movable block 83 to move in the direction of the fixed block 86. At this time, the vertical pressure is converted into a parallel thrust. The movable block 83 pushes the spring 85, and the spring 85 deforms, converting the thrust into the elastic potential energy of the spring 85. At the same time, the bottom plate 1 pushes the buffer mechanism 88, and the buffer mechanism 88 generates friction during operation, converting the elastic potential energy of the spring 85 into friction force, and the pressure caused by the vibration is offset. When the spring 85 rebounds, the spring 85 pushes the movable block 83 away from the fixed block 86. The movable block 83 pushes the movable rod 82, and the movable rod 82 pushes the support plate 81 to move upward. The support plate 81 pushes the bottom plate 1 to move. At the same time, the bottom plate 1 pulls the buffer mechanism 88, and the buffer mechanism 88 generates friction during operation, converting the elastic potential energy of the spring 85 into friction force to be offset, enabling the spring 85 to rebound slowly, thereby completing the shock absorption of the processing device.
[0032] Specifically, the buffer mechanism 88 includes a support pad 881, a buffer block 882, a damping block 883 and a buffer plate 884. Among them, a support pad 881 is arranged on one side of the base 87, a buffer block 882 is arranged on one side of the support pad 881, a damping block 883 is arranged inside the buffer block 882, and a buffer plate 884 is arranged inside the damping block 883.
[0033] By adopting the above technical solution, when the buffer mechanism 88 operates, the bottom plate 1 pushes the buffer plate 884 to move downward, and the buffer plate 884 generates friction with the damping block 883 inside the buffer block 882, enabling the elastic potential energy of the spring 85 to be converted into friction force and offset. The support pad 881 can provide support for the bottom plate 1 to ensure that the bottom plate 1 does not tilt.
[0034] Specifically, a stop block is arranged at the other end of the fixed rod 84, and a rubber pad is arranged at the upper end of the support plate 81.
[0035] By adopting the above technical solution, when the spring 85 rebounds, the stopper can block the movable block 83 to prevent the movable block 83 from detaching from the fixed rod 84 when it moves. When under pressure, the rubber pad deforms, which can reduce the pressure on the support plate 81.
[0036] When this embodiment is in use: The pressure caused by vibration is transmitted from the bottom plate 1 to the support plate 81, causing the support plate 81 to move downward. The support plate 81 pushes the movable rod 82 to move. One end of the movable rod 82 rotates around the support plate 81, and the other end of the movable rod 82 pushes the movable block 83 to move in the direction of the fixed block 86. At this time, the vertical pressure is converted into a parallel thrust. The movable block 83 pushes the spring 85, and the spring 85 deforms, converting the thrust into the elastic potential energy of the spring 85. At the same time, the bottom plate 1 pushes the buffer mechanism 88, and the buffer mechanism 88 generates friction during operation, converting the elastic potential energy of the spring 85 into friction, and the pressure caused by vibration is offset. When the spring 85 rebounds, the spring 85 pushes the movable block 83 away from the fixed block 86. The movable block 83 pushes the movable rod 82, and the movable rod 82 pushes the support plate 81 to move upward. The support plate 81 pushes the bottom plate 1 to move. At the same time, the bottom plate 1 pulls the buffer mechanism 88, and the buffer mechanism 88 generates friction during operation, converting the elastic potential energy of the spring 85 into friction and offsetting it, enabling the spring 85 to rebound slowly. Thus, the shock absorption of the processing device can be completed. When the buffer mechanism 88 is working, the bottom plate 1 pushes the buffer plate 884 downward, and the buffer plate 884 generates friction with the damping block 883 inside the buffer block 882, enabling the elastic potential energy of the spring 85 to be converted into friction and offset. The support pad 881 can provide support for the bottom plate 1 to ensure that the bottom plate 1 does not tilt. When the spring 85 rebounds, the stopper can block the movable block 83 to prevent the movable block 83 from detaching from the fixed rod 84 when it moves. When under pressure, the rubber pad deforms, which can reduce the pressure on the support plate 81.
[0037] In the present utility model, the damping block 883 is an existing publicly disclosed technology, and the selected model is JCK-1.
[0038] The structures and operating principles of the adjustment mechanism 2, the rotating frame 3, the sterilization tank 4, the stirring and sterilization mechanism 5, and the feed inlet 6 in the present utility model have been disclosed in a yolk liquid sterilization and anti-corrosion treatment device with Chinese patent application number 202311202699.5.
[0039] Working principle and usage process of the present utility model: When the egg yolk liquid sterilization and anti-corrosion treatment device is in use, the staff rotates the top cover 76 so that the lines on the surface of the top cover 76 match the lines on the funnel 75, and the top cover 76 can be separated from the funnel 75. At this time, the staff can pour the egg yolk liquid into the funnel 75. The egg yolk liquid enters the inside of the conveying pipe 71 through the funnel 75 and enters the feeding port 6 from one end of the conveying pipe 71. The sealing sleeve 72 on one side of the feeding port 6 can prevent the egg yolk liquid from leaking out through the gap, thereby quickly loading the egg yolk liquid. When installing the conveying pipe 71, the lower groove of the limit block 73 can be aligned with the convex block at the upper end of the feeding port 6, and the convex block is inserted into the groove to fix the conveying pipe 71 and prevent the conveying pipe 71 from rotating around the feeding port. When the treatment device is affected by vibration, the pressure caused by the vibration is transmitted from the bottom plate 1 to the support plate 81, causing the support plate 81 to move downward. The support plate 81 pushes the movable rod 82 to move. One end of the movable rod 82 rotates around the support plate 81, and the other end of the movable rod 82 pushes the movable block 83 to move in the direction of the fixed block 86. At this time, the vertical pressure is converted into a parallel thrust. The movable block 83 pushes the spring 85, and the spring 85 deforms, converting the thrust into the elastic potential energy of the spring 85. At the same time, the bottom plate 1 pushes the buffer mechanism 88, and the buffer mechanism 88 generates friction during operation, converting the elastic potential energy of the spring 85 into friction, and the pressure caused by the vibration is offset. When the spring 85 rebounds, the spring 85 pushes the movable block 83 away from the fixed block 86. The movable block 83 pushes the movable rod 82, and the movable rod 82 pushes the support plate 81 to move upward. The support plate 81 pushes the bottom plate 1 to move. At the same time, the bottom plate 1 pulls the buffer mechanism 88 upward, and the buffer mechanism 88 generates friction during operation, converting the elastic potential energy of the spring 85 into friction and offsetting it, causing the spring 85 to rebound slowly, realizing shock absorption for the treatment device. When the buffer mechanism 88 is working, the bottom plate 1 pushes the buffer plate 884 downward, and the buffer plate 884 generates friction with the damping block 883 inside the buffer block 882, enabling the elastic potential energy of the spring 85 to be converted into friction and offset.
[0040] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A sterilization and anti-corrosion treatment device for egg yolk liquid, comprising a bottom plate (1). An adjusting mechanism (2) is arranged at the upper end of the bottom plate (1). A rotating frame (3) is arranged on one side of the adjusting mechanism (2). A sterilization tank (4) is arranged inside the rotating frame (3). A stirring and sterilization mechanism (5) is arranged inside the sterilization tank (4). A feed inlet (6) is arranged on one side inside the sterilization tank (4), and it is characterized in that: On one side of the feed inlet (6), a feeding component (7) is provided, and on the lower end of the bottom plate (1), a shock-absorbing component (8) is provided.
2. The egg yolk liquid sterilization and anti-corrosion treatment device according to claim 1, wherein: The feeding component (7) includes a conveying pipe (71), a sealing sleeve (72), a limiting block (73), a mounting sleeve (74), a funnel (75) and a top cover (76). Among them, on one side of the feed inlet (6), a sealing sleeve (72) is provided. On the surface of the sealing sleeve (72), a conveying pipe (71) is provided. Inside the conveying pipe (71), a limiting block (73) is provided. On one end surface of the conveying pipe (71), a mounting sleeve (74) is provided. Inside the mounting sleeve (74), a funnel (75) is provided. On the upper end of the funnel (75), a top cover (76) is provided.
3. The egg yolk liquid sterilization and anti-corrosion treatment device according to claim 2, characterized in that: At the upper end of the limiting block (73), a clamping block is provided, and inside the lower end of the limiting block (73), a groove is provided. At the upper end of the feed inlet (6), a convex block is provided.
4. A sterilization and anti-corrosion treatment device for egg yolk liquid according to claim 1, characterized in that: The shock-absorbing component (8) includes a support plate (81), a movable rod (82), a movable block (83), a fixed rod (84), a spring (85), a fixed block (86), a base (87) and a buffer mechanism (88). Among them, inside the bottom plate (1), a support plate (81) is provided. Symmetrically inside the support plate (81), movable rods (82) are provided. At one end of the movable rod (82), a movable block (83) is provided. Inside the movable block (83), a fixed rod (84) is provided. On the surface of the fixed rod (84), a spring (85) is provided. At one end of the fixed rod (84), a fixed block (86) is provided. At the lower end of the fixed block (86), a base (87) is provided. Inside the base (87), a buffer mechanism (88) is provided.
5. The egg yolk liquid sterilization and anti-corrosion treatment device according to claim 4, wherein: The buffer mechanism (88) includes a support pad (881), a buffer block (882), a damping block (883) and a buffer plate (884). Among them, on one side of the base (87), a support pad (881) is provided. On one side of the support pad (881), a buffer block (882) is provided. Inside the buffer block (882), a damping block (883) is provided. Inside the damping block (883), a buffer plate (884) is provided.
6. The egg yolk liquid sterilization and anti-corrosion treatment device according to claim 4, wherein: At the other end of the fixed rod (84), a stop block is provided, and on the upper end of the support plate (81), a rubber pad is provided.
Citation Information
Patent Citations
Egg yolk liquid sterilization and preservative treatment device
CN117356618A