Screening device for fish collagen peptide

By setting up an elastic screen in the screening device of fish collagen peptide and using the coordination of oblique frame, cross rod, ball basket and round rod, the problem of screening is solved, and efficient screening and automatic processing of blocked mesh holes are achieved.

CN222872721UActive Publication Date: 2025-05-16QINGDAO UNIV OF SCI & TECH +1
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Patent Information

Application Number
CN202421342110.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-13
Publication Date
2025-05-16
Estimated Expiration
2034-06-13

AI Technical Summary

Technical Problem

The screen mesh is prone to the problem of mesh blockage during the screening process, and the prior art cannot effectively deal with the blocked mesh.

Method used

A screening device for fish collagen peptides is designed. By setting elastic materials at the bottom of the screen and using the coordination of oblique frames, cross rods, ball baskets and round rods, the blocked impurities are ejected through repeated impact of solid balls.

Benefits of technology

It effectively solves the problem of screen clogging, improves screening efficiency, and realizes automatic processing of the blocked mesh holes through the design of elastic screen.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fish collagen peptide screening device which comprises a supporting frame, first connecting rods are rotationally connected to the two sides of the supporting frame, a screen is slidably connected to the inner side of the supporting frame in the horizontal direction, the tops of the first connecting rods are rotationally connected with the screen, and a collecting frame is fixed to the inner side of the supporting frame. And the collecting frame is located at the bottom of the screen, a supporting plate is fixed to the inner side of the supporting frame, and a motor is fixedly installed at the top of the supporting plate. Materials needing to be screened enter from the feeding frame and then fall off from the conical barrel to impact the hard plate, caked materials can be broken through the hard plate to be screened conveniently, then the materials fall into the screen along the discharging frame, the motor is started to drive the eccentric wheel to rotate, and the materials can be screened conveniently. When the eccentric wheel rotates, the second connecting rod drives the screen to horizontally reciprocate in the supporting frame, the first connecting rod can provide supporting force for the screen, and materials are screened through horizontal reciprocating motion of the screen.
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Description

Technical Field

[0001] The utility model relates to the field of screening devices, in particular to a screening device for fish collagen peptides. Background Art

[0002] Fish collagen peptide is a high-molecular functional protein. Collagen is the main component of the skin, accounting for 80% of the dermis of the skin. It forms a fine elastic network in the skin, firmly locking in moisture and supporting the skin.

[0003] The patent with application number CN217726167U is cited. By setting a screen, a round rod, a spiral blade, a motor and a feed port, the motor can drive the round rod and the spiral blade to rotate, so that the material entering the main body through the feed port moves to one side and is screened at the same time, thereby playing a role in screening the material. By setting a moving part and a limiting groove, the moving part can be used in conjunction with the limiting groove, so that the screen can swing to both sides, thereby improving the screening efficiency and preventing the screen from separating from the main body. However, the screen will have the problem of mesh clogging when screening, and the comparative document cannot complete the processing after the mesh is clogged. Utility Model Content

[0004] The purpose of the utility model is to provide a screening device for fish collagen peptides in order to solve the problem that the mesh of the sieve is clogged during screening and the problem that the comparative documents cannot complete the post-processing of the mesh clogging.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a screening device for fish collagen peptides, comprising a support frame, both sides of the support frame are rotatably connected with a first connecting rod, the inner side of the support frame is slidably connected with a screen in a horizontal direction, the top of the first connecting rod is rotatably connected to the screen, a collecting frame is fixed to the inner side of the support frame, the collecting frame is located at the bottom of the screen, a support plate is fixed to the inner side of the support frame, a motor is fixedly installed on the top of the support plate, an eccentric wheel is fixed to the output end of the motor, and the side of the eccentric wheel is rotatably connected with a second connecting rod.

[0006] As a further solution of the utility model: a material discharge frame is fixed to the support frame, a material feed frame is fixed to the top of the material discharge frame, and a steel plate is fixed inside the material discharge frame.

[0007] As a further solution of the utility model: the support frame is fixed with an inclined frame, the middle of the inclined frame is rotatably connected with a cross bar, and the two ends of the cross bar are respectively fixed with a counterweight block and a ball basket.

[0008] As a further solution of the utility model: a plurality of solid balls are stored on the top of the inclined frame and a through groove and a circular groove are provided, a round rod is slidably connected inside the circular groove, and a cover plate is fixed on the top of the round rod.

[0009] As a further solution of the utility model: one end of the second connecting rod is rotatably connected to the screen.

[0010] As a further solution of the utility model: in the initial state, the cover plate blocks the through slot.

[0011] As a further solution of the utility model: when the material is discharged, the hard plate can break up the agglomerated material.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] 1. Press the counterweight block and then the crossbar rotates to drive the ball basket to tilt up. The tilted ball basket hits the round rod to make the round rod rise in the round groove. The rising round rod drives the cover plate to rise. After the cover plate rises, the blocking force on the solid ball disappears. And because there is a 15-degree inclination on the top of the inclined frame, when the cover plate rises, the solid ball falls from the through groove to the inside of the ball basket. When the solid ball leaves the ball frame, the weight of the counterweight block is greater than the weight of the ball basket. Therefore, under the action of the seesaw principle, the crossbar rotates in the opposite direction and hits the round rod again, which is conducive to the reciprocating operation, so that the solid ball falls into the inside of the screen. Because the bottom of the screen is elastic, when the solid ball falls and hits the screen, the screen rebounds back and forth at this time to eject the impurities blocking the mesh.

[0014] 2. The material to be screened enters from the feed frame and then falls from the conical barrel to hit the hard plate, which is conducive to breaking up the agglomerated materials through the hard plate for easy screening. After that, the material falls into the inside of the screen along the discharge frame. The motor is started to drive the eccentric wheel to rotate. When the eccentric wheel rotates, it will drive the screen to move horizontally back and forth inside the support frame through the second connecting rod. The first connecting rod can provide support for the screen, and the material is screened through the horizontal reciprocating movement of the screen. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0016] Figure 2 It is a schematic diagram of a blanking frame of the utility model;

[0017] Figure 3 It is a schematic diagram of an inclined frame of the utility model;

[0018] Figure 4 For the utility model Figure 3 Partial structure diagram.

[0019] In the figure: 1. support frame; 2. first connecting rod; 3. screen; 4. collection frame; 5. support plate; 6. motor; 7. eccentric wheel; 8. second connecting rod; 9. unloading frame; 10. feeding frame; 11. hard plate; 12. inclined frame; 13. cross bar; 14. counterweight; 15. ball basket; 16. solid ball; 17. through groove; 18. round groove; 19. round rod; 20. cover plate. DETAILED DESCRIPTION

[0020] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0021] See also Figure 1 to Figure 4 In the embodiment of the utility model, a screening device for fish collagen peptides comprises a support frame 1, characterized in that the two sides of the support frame 1 are rotatably connected with a first connecting rod 2, the inner side of the support frame 1 is slidably connected with a screen 3 in the horizontal direction, the top of the first connecting rod 2 is rotatably connected with the screen 3, the bottom of the screen 3 is elastic, a collecting frame 4 is fixed on the inner side of the support frame 1, and the collecting frame 4 is located at the bottom of the screen 3, a supporting plate 5 is fixed on the inner side of the support frame 1, a motor 6 is fixedly installed on the top of the support plate 5, an eccentric wheel 7 is fixed on the output end of the motor 6, the side of the eccentric wheel 7 is rotatably connected with a second connecting rod 8, and one end of the second connecting rod 8 is rotatably connected with the screen 3, a feeding frame 10 is fixed on the top of the blanking frame 9, and a hard plate 11 is fixed inside the blanking frame 9,

[0022] In this embodiment: the material to be screened enters from the feed frame 10 and then falls from the conical barrel to hit the hard plate 11, which is conducive to breaking up the agglomerated material through the hard plate 11 for easy screening. Then the material falls into the interior of the screen 3 along the discharge frame 9, and the start motor 6 drives the eccentric wheel 7 to rotate. When the eccentric wheel 7 rotates, it will drive the screen 3 to move horizontally back and forth inside the support frame 1 through the second connecting rod 8. The first connecting rod 2 can provide support for the screen 3, and the material is screened by the horizontal reciprocating movement of the screen 3. The impurities in the material are screened into the collecting frame 4 through the screen 3, and then the screened material is taken out from the screen 3.

[0023] See also Figure 1 to Figure 4The support frame 1 is fixed with an inclined frame 12, the middle of the inclined frame 12 is rotatably connected with a cross bar 13, the two ends of the cross bar 13 are respectively fixed with a counterweight 14 and a ball basket 15, a plurality of solid balls 16 are stored on the top of the inclined frame 12 and a through groove 17 and a circular groove 18 are provided, the inside of the circular groove 18 is slidably connected with a round rod 19, the top of the round rod 19 is fixed with a cover plate 20, and the cover plate 20 blocks the through groove 17 in the initial state,

[0024] In this embodiment: the counterweight 14 is pressed and then the crossbar 13 rotates to drive the ball basket 15 to tilt up. The tilted ball basket 15 hits the round rod 19 to make the round rod 19 rise in the circular groove 18. The rising round rod 19 drives the cover plate 20 to rise. After the cover plate 20 is raised, the blocking force on the solid ball 16 disappears, and because there is a 15-degree inclination on the top of the inclined frame 12, when the cover plate 20 is raised, the solid ball 16 falls from the through groove 17 to the inside of the ball basket 15. When the solid ball 16 leaves the ball basket 15, the weight of the counterweight 14 is greater than the weight of the ball basket 15. Therefore, under the action of the seesaw principle, the crossbar 13 rotates in the opposite direction and hits the round rod 19 again, which is conducive to the reciprocating operation, so that the solid ball 16 circulates and falls into the inside of the screen 3. Since the bottom of the screen 3 is elastic, when the solid ball 16 falls and hits the screen 3, the screen 3 at this time rebounds back and forth to eject the impurities blocking the mesh.

[0025] Working principle: the material to be screened enters from the feed frame 10 and then falls from the conical barrel to hit the hard plate 11, which is conducive to breaking up the agglomerated material through the hard plate 11 for easy screening. Then the material falls into the inside of the screen 3 along the discharge frame 9, and the motor 6 is started to drive the eccentric wheel 7 to rotate. When the eccentric wheel 7 rotates, it will drive the screen 3 to move horizontally back and forth inside the support frame 1 through the second connecting rod 8. The first connecting rod 2 can provide support for the screen 3. The material is screened by the horizontal reciprocating movement of the screen 3, and the impurities in the material are screened into the collecting frame 4 through the screen 3. Then the screened material is taken out from the screen 3. When the screen 3 is blocked, it is taken out from Figure 1The counterweight 14 is pressed at the position of the ball basket 15, and then the cross bar 13 rotates to drive the ball basket 15 to tilt up. The tilted ball basket 15 hits the round rod 19 to make the round rod 19 rise in the round groove 18. The rising round rod 19 drives the cover plate 20 to rise. After the cover plate 20 is raised, the blocking force on the solid ball 16 disappears, and because there is a 15-degree inclination on the top of the inclined frame 12, when the cover plate 20 is raised, the solid ball 16 falls from the through groove 17 to the inside of the ball basket 15. When the solid ball 16 leaves the ball basket 15, the weight of the counterweight 14 is greater than the weight of the ball basket 15. Therefore, under the action of the seesaw principle, the cross bar 13 rotates in the opposite direction and hits the round rod 19 again, which is conducive to the reciprocating operation, so that the solid ball 16 falls into the inside of the screen 3 in a cycle. Since the bottom of the screen 3 is elastic, when the solid ball 16 falls and hits the screen 3, the screen 3 at this time rebounds back and forth to eject the impurities blocking the mesh, which is conducive to processing the blocked mesh.

[0026] What is described above is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A fish collagen peptide screening device, comprising a support frame (1), characterized in that: The first connecting rod (2) is rotatably connected to both sides of the support frame (1), the inner side of the support frame (1) is slidably connected to a screen (3) in a horizontal direction, the top of the first connecting rod (2) is rotatably connected to the screen (3), the inner side of the support frame (1) is fixed with a collecting frame (4), the collecting frame (4) is located at the bottom of the screen (3), the inner side of the support frame (1) is fixed with a supporting plate (5), the top of the supporting plate (5) is fixedly mounted with a motor (6), the output end of the motor (6) is fixed with an eccentric wheel (7), the side of the eccentric wheel (7) is rotatably connected to a second connecting rod (8), the support frame (1) is fixed with an inclined frame (12), the middle of the inclined frame (12) is rotatably connected to a cross bar (13), and the two ends of the cross bar (13) are respectively fixed with a counterweight (14) and a ball basket (15).

2. A fish collagen peptide screening device according to claim 1, characterized in that: The support frame (1) is fixed with a material discharge frame (9), a material feed frame (10) is fixed on the top of the material discharge frame (9), and a hard plate (11) is fixed inside the material discharge frame (9).

3. A fish collagen peptide screening device according to claim 1, characterized in that: The top of the inclined frame (12) stores a plurality of solid balls (16) and is provided with a through groove (17) and a circular groove (18). A round rod (19) is slidably connected inside the circular groove (18), and a cover plate (20) is fixed on the top of the round rod (19).

4. A fish collagen peptide screening device according to claim 1, characterized in that: One end of the second connecting rod (8) is rotatably connected to the screen (3).

5. The fish collagen peptide screening device according to claim 1, characterized in that: In the initial state, the cover plate (20) blocks the through slot (17).

Citation Information

Patent Citations

  • Screening device for fish collagen peptide

    CN217726167U