Metal screen processing device for vegetable residue leaching pulp

By designing a metal screen processing device for pulping for vegetable residue, the screen is stable conveyed by using limit grooves, positioning cone rods and reinforcement rings, and the cutting and conveying synchronization is achieved through the reinforced deflection clamping rods and cutting discs, the problem of cumbersome operation of existing equipment is solved and the cutting efficiency and convenience are improved.

CN120095208AActive Publication Date: 2025-06-06CHANGZHOU LVJING ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202510573375.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-06-06
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

The existing metal screen processing equipment cannot achieve synchronous transportation and cutting of the screen during the cutting process, and the operation is cumbersome and inconvenient.

Method used

A metal screen processing device for pulping and slurrying for vegetable residue is designed. By rolling the screen into a cylinder and stuffing it into the limiting groove, the screen is positioned and transported by a positioning cone rod and a reinforcement ring, and simultaneously cutting and transport is achieved through a reinforced deflection clamping rod and a cutting disc.

Benefits of technology

The stable conveying and cutting of the screen are achieved simultaneously, improving cutting efficiency and convenience, while ensuring cutting quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a processing device for a leaching pulping metal screen for vegetable residues, and particularly relates to the technical field of metal screen processing, the processing device comprises a base, a cutting processing assembly is arranged on the base, the cutting processing assembly comprises a material guiding and cutting linkage rotating disc arranged at the top of the base, and a limiting groove is formed in the material guiding and cutting linkage rotating disc; and a dislocation opening is formed in the limiting groove. Two reinforced deflection clamping rods can get close to each other to shear a screen, meanwhile, a cutting disc can abut against the screen, the cutting disc rotates to achieve the function of synchronously shearing and cutting the screen, a material guiding and cutting linkage rotary disc rotates by one circle and then makes contact with a pulley again to shear and cut the screen, and the screening efficiency is improved. And meanwhile, it can be effectively guaranteed that all the cut screens are in the same size state all the time in the mode that the material guiding and cutting linkage rotary disc rotates by one circle, and the cutting quality is guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of metal screen processing, and more specifically, to a metal screen processing device for pulping vegetable residues. Background Art

[0002] Vegetable residue draining usually refers to separating the water in the vegetable residue by physical methods for subsequent processing or reuse. During the draining process, a sieve is needed to drain the water. After draining the water, the vegetable residue is easier to store or transport. The dried vegetable residue can be used for compost, feed or biomass energy. When draining the water, a metal sieve is usually used for draining. The metal sieve often needs to be cut before use, and a cutting device is used when cutting the sieve.

[0003] Among them, the patent with publication number CN114515860A discloses a metal screen processing equipment, which relates to the field of metal processing, including: a bottom plate, the upper part of which is sequentially provided with a loading assembly, a feeding assembly, a conveying assembly, a pressing assembly and a cutting assembly, the loading assembly is used to install a rolled metal screen raw material; the feeding assembly is used to transmit the metal screen raw material; When this structure is in use, the reel in the center of the metal screen raw material is directly inserted into the inside of the card slot for loading, and the clamping assembly has the functions of clamping, conveying and tensioning the metal screen. However, this structure spreads out the screen for cutting, which requires the cutting equipment to reciprocate along the cutting line for cutting. This is more cumbersome and cannot achieve simultaneous conveying and cutting of the screen, so it is not convenient enough when used. Summary of the invention

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a metal screen processing device for pulping vegetable residues, aiming to solve the problems raised in the above-mentioned background technology.

[0005] The present invention provides the following technical solution: a metal screen processing device for pulping vegetable residues, comprising a base, on which a cutting processing component is arranged; The cutting processing assembly comprises a material guiding and cutting linkage turntable arranged on the top of the base, a limiting groove is provided on the material guiding and cutting linkage turntable, a dislocation opening is provided in the limiting groove, two angle-adjustable reinforcing deflection clamping rods are provided in the dislocation opening, and a shear block is fixedly provided at one end of each reinforcing deflection clamping rod; One end of the two shear blocks is provided with a mounting groove, and a cutting disc for cutting is arranged in the mounting groove; A reinforcement ring is arranged in the limit groove, and a plurality of guide slots are arranged on the outer side of the reinforcement ring, and a positioning cone rod is arranged in each of the slide slots, and the positioning cone rod is set in a cone shape, and the positioning cone rod is slidably connected with the slide slot; It can be seen that in the above technical solution, the screen is rolled into a cylindrical shape and then inserted into the limiting groove, the screen is guided through the limiting groove, and at the same time, each positioning cone rod can be inserted into the mesh of the screen to position the screen, and the stepper motor drives the material guide cutting linkage turntable to rotate. When the material guide cutting linkage turntable rotates, it drives the various structures on the material guide cutting linkage turntable, as well as the reinforcement ring and the positioning cone rod to rotate. The positioning cone rod is inserted into the mesh of the screen, and then the positioning cone rod, the reinforcement ring and the material guide cutting linkage turntable rotate to transport the screen; Optionally, in a possible implementation, a reinforcing L-plate is provided on one side of the two reinforcing deflection clamping rods, the reinforcing L-plate is installed in the dislocation opening by bolts, a spring is fixedly provided on one side of the top of the reinforcing L-plate, a resistance block is fixedly provided on one end of the spring, a limiting recess is provided on the side of the reinforcing deflection clamping rod facing the reinforcing L-plate, the resistance block extends into the limiting recess, a motor for driving the cutting disc to rotate is provided at the end of the shear block, and a battery for powering the motor is embedded in the shear block, the reinforcing ring is detachably connected to the material guide cutting linkage turntable by bolts, and the reinforcing ring cover is provided at the top of the reinforcing L-plate; It can be seen that in the above technical solution, when the deflection clamping rod is deflected, the resistance block can be pushed to squeeze the spring, and the spring itself elastically drives the deflection clamping rod to reset, thereby making the cutting disc separate from the screen. At the same time, when the deflection clamping rod is deflected, the resistance block can be firmly stuck on the deflection clamping rod through the limiting notch, thereby improving the convenience of resetting the deflection clamping rod, and facilitating the material guide cutting linkage turntable to rotate one circle and then contact the pulley again to shear and cut the screen. Optionally, in a possible implementation, bearing seats are rotatably connected to both sides of the material-guiding and cutting linkage turntable, and a stepper motor for driving the material-guiding and cutting linkage turntable to rotate is arranged on one of the bearing seats, vertical poles are inserted into the top ends of the two bearing seats, pulleys are fixedly arranged on the top ends of the two vertical poles, the pulleys are located on one side of the reinforcing deflection clamping rod, and a slope is provided on the outer side of the reinforcing deflection clamping rod, the slope contacts the pulley, one end of the reinforcing deflection clamping rod away from the shear block is rotatably connected to a limiting shaft pin, one end of the limiting shaft pin extends to the material-guiding and cutting linkage turntable and is threadedly connected to the material-guiding and cutting linkage turntable; It can be seen that in the above technical solution, when the material guide and cutting linkage turntable rotates to transport the screen, each reinforced deflection clamping rod can contact the pulley, and the reinforced deflection clamping rod is limited by the pulley and will rotate along the axis point of the connection between the reinforced deflection clamping rod and the limit shaft pin, so that the two reinforced deflection clamping rods can approach each other to shear the screen, and at the same time, the cutting disk can be in contact with the screen, and the cutting disk is driven by the motor to rotate to realize the function of shearing and cutting the screen simultaneously.

[0006] Technical effects and advantages of the present invention: 1. The present invention rolls the screen into a cylindrical shape and then inserts it into the limiting groove, guides the screen through the limiting groove, and at the same time, each positioning cone rod can be inserted into the mesh of the screen to position the screen, and the reinforcing ring and the positioning cone rod are rotated to realize the cover plate for synchronous conveying and cutting of the screen, and the positioning cone rod is inserted into the mesh of the screen, which can effectively ensure the stability of the screen during conveying and cutting; 2. The present invention can contact the pulley through each reinforced deflection clamping rod. The reinforced deflection clamping rod is limited by the pulley and rotates along the axis point of the connection between the reinforced deflection clamping rod and the limit shaft pin, so that the two reinforced deflection clamping rods can approach each other to shear the screen, and at the same time, the cutting disc can be abutted against the screen, and the motor drives the cutting disc to rotate to achieve the function of shearing and cutting the screen synchronously; 3. When the reinforcing deflection clamping rod of the present invention is deflected, it can also push the resistance block to squeeze the spring, and the spring itself elastically drives the reinforcing deflection clamping rod to reset, thereby making the cutting disc separate from the screen. At the same time, when the reinforcing deflection clamping rod is deflected, the resistance block can be firmly stuck on the reinforcing deflection clamping rod through the limiting notch, thereby improving the convenience of resetting the reinforcing deflection clamping rod, and facilitating the material guide cutting linkage turntable to rotate one circle and then contact the pulley again to shear and cut the screen; To sum up, through the corresponding coordinated use of various structures, the screen is rolled into a cylindrical shape and then inserted into the limiting groove, and the screen is guided through the limiting groove. At the same time, each positioning cone rod can be inserted into the mesh of the screen to position the screen, thereby realizing the function of gathering the screen cutting lines together, thereby improving the cutting efficiency. At the same time, the two reinforced deflection clamping rods can approach each other to shear the screen, and at the same time, the cutting disk can be made to contact the screen, and the cutting disk is driven by a motor to rotate to realize the function of shearing and cutting the screen synchronously. When the reinforced deflection clamping rod is deflected, the limiting recess can make the resistance block firmly stuck on the reinforced deflection clamping rod, thereby improving the convenience of resetting the reinforced deflection clamping rod, and the screen is sheared and cut by contacting the pulley again after the material guide cutting linkage turntable rotates one circle, thereby improving the cutting efficiency. At the same time, the material guide cutting linkage turntable rotates one circle, which can also effectively ensure that each cut screen is always in the same size state, thereby ensuring the cutting quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] In order to more clearly illustrate the technical solutions in the present disclosure, the following briefly introduces the drawings required for use in some embodiments. Obviously, the drawings described below are only drawings of some embodiments of the present disclosure. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings. In addition, the drawings described below can be regarded as schematic diagrams, and are not intended to limit the actual size of the product involved in the embodiments of the present disclosure, the actual process of the method, the actual timing of the signal, etc.

[0008] Figure 1 It is the front view of the overall structure of the present invention.

[0009] Figure 2 It is a schematic diagram of the base, the material guiding and cutting linkage turntable, the bearing seat, the vertical rod and the pulley of the present invention when they are installed together.

[0010] Figure 3 It is a schematic diagram of the reinforced deflection clamping rod, shear block, reinforced L plate, spring and abutment block of the present invention.

[0011] Figure 4 This is a schematic diagram of the positioning cone rod of the present invention being installed on the reinforcement ring.

[0012] Figure 5 This is a schematic diagram of the reinforced deflection clamping rod and the reinforced L-plate of the present invention being installed on the material guiding and cutting linkage turntable.

[0013] Figure 6 It is a schematic diagram of the reinforced L-plate, the reinforced deflection clamping rod, the spring, the abutment block, the shear block, the motor and the cutting disk of the present invention.

[0014] Figure 7 For the present invention Figure 6 Exploded diagram.

[0015] Figure 8 This is a schematic diagram of the reinforcement ring of the present invention being installed on the material guiding and cutting linkage turntable.

[0016] Fig. 9 It is a schematic diagram of the screen of the present invention being located on the material guiding and cutting linkage turntable.

[0017] The accompanying drawings are marked as follows: 1. base; 2. material guide and cutting linkage turntable; 3. limit groove; 4. offset mouth; 5. reinforced deflection clamping rod; 6. shear block; 7. mounting groove; 8. cutting disk; 9. reinforced L plate; 10. spring; 11. resistance block; 12. limit recess; 13. motor; 14. battery; 15. reinforcement ring; 16. slide groove; 17. positioning cone rod; 18. bearing seat; 19. vertical pole; 20. pulley; 21. ramp; 22. stepping motor; 23. limit shaft pin. DETAILED DESCRIPTION

[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention.

[0019] like Figure 1 - Fig. 9The metal screen processing device for pulping vegetable residue shown in the figure is used for rolling the screen into a cylindrical shape and then inserting it into the limiting groove 3 through the cutting processing assembly arranged on the base 1. The screen is guided through the limiting groove 3, and at the same time, each positioning cone rod 17 can be inserted into the mesh of the screen to position the screen, so as to realize the function of gathering the cutting lines of the screen together and improve the cutting efficiency. At the same time, the two reinforced deflection clamping rods 5 can approach each other to shear the screen, and at the same time, the cutting disc 8 can be abutted against the screen, and the cutting disc 8 is driven by the motor 13 to rotate to shear the screen. The function of cutting and cutting synchronously is that when the deflection clamping rod 5 is deflected, the stopper 11 can be firmly stuck on the deflection clamping rod 5 through the limit notch 12, which improves the convenience of resetting the deflection clamping rod 5. After the material-guiding cutting linkage turntable 2 rotates one circle, it contacts the pulley 20 again to shear and cut the screen, thereby improving the cutting efficiency. At the same time, the material-guiding cutting linkage turntable 2 rotates one circle, which can also effectively ensure that each cut screen is always in the same size state, thereby ensuring the cutting quality. The specific structural arrangement of the assembly is as follows; The cutting processing assembly includes a material-guiding cutting linkage turntable 2 arranged on the top of the base 1, a limiting groove 3 is provided on the material-guiding cutting linkage turntable 2, a dislocation opening 4 is provided in the limiting groove 3, two angle-adjustable reinforcing deflection clamping rods 5 are provided in the dislocation opening 4, and a shear block 6 is fixedly provided at one end of each reinforcing deflection clamping rod 5; One end of each of the two shear blocks 6 is provided with a mounting groove 7, and a cutting disc 8 for cutting is arranged in the mounting groove 7; A reinforcement ring 15 is provided in the limiting groove 3, and a plurality of guide slots 16 are provided on the outer side of the reinforcement ring 15, and a positioning cone rod 17 is provided in each slide slot 16, and the positioning cone rod 17 is set to be conical in shape, and the positioning cone rod 17 is slidably connected with the slide slot 16; A reinforcing L plate 9 is provided on one side of the two reinforcing deflection clamping rods 5, and the reinforcing L plate 9 is installed in the dislocation opening 4 by bolts. A spring 10 is fixedly provided on one side of the top of the reinforcing L plate 9, and a resisting block 11 is fixedly provided on one end of the spring 10. A limiting recess 12 is provided on the side of the reinforcing deflection clamping rod 5 facing the reinforcing L plate 9, and the resisting block 11 extends into the limiting recess 12. A motor 13 for driving the cutting disc 8 to rotate is provided at the end of the shear block 6, and a battery 14 for powering the motor 13 is embedded in the shear block 6. The reinforcing ring 15 is detachably connected to the material guide cutting linkage turntable 2 by bolts, and the reinforcing ring 15 cover is provided on the top of the reinforcing L plate 9; Both sides of the material guide and cutting linkage turntable 2 are rotatably connected with bearing seats 18, and one of the bearing seats 18 is provided with a stepper motor 22 for driving the material guide and cutting linkage turntable 2 to rotate, the tops of the two bearing seats 18 are plugged with vertical poles 19, and the tops of the two vertical poles 19 are fixedly provided with pulleys 20, the pulley 20 is located on one side of the reinforced deflection clamping rod 5, and the outer side of the reinforced deflection clamping rod 5 is provided with a slope 21, the slope 21 is in contact with the pulley 20, and one end of the reinforced deflection clamping rod 5 away from the shear block 6 is rotatably connected to the limiting shaft pin 23, and one end of the limiting shaft pin 23 extends to the material guide and cutting linkage turntable 2 and is threadedly connected to the material guide and cutting linkage turntable 2.

[0020] According to the above structure, when the screen is cut, the screen is rolled into a cylindrical shape and then inserted into the limiting groove 3, and the screen is guided through the limiting groove 3. At the same time, each positioning cone rod 17 can be inserted into the mesh of the screen to position the screen, and the stepping motor 22 drives the material-guiding cutting linkage turntable 2 to rotate. When the material-guiding cutting linkage turntable 2 rotates, it drives each structure on the material-guiding cutting linkage turntable 2 as well as the reinforcement ring 15 and the positioning cone rod 17 to rotate. The positioning cone rod 17 is inserted into the mesh of the screen, and then the positioning cone rod 17, the reinforcement ring 15 and the material-guiding cutting linkage turntable 2 rotate to transport the screen. During the process of the material guide cutting linkage turntable 2 rotating to convey the screen, each reinforced deflection clamping rod 5 can contact the pulley 20, and the reinforced deflection clamping rod 5 is limited by the pulley 20 and rotates along the axis point of the connection between the reinforced deflection clamping rod 5 and the limit shaft pin 23, so that the shear block 6 can shear the screen, and the shear block 6 can also make the cutting disk 8 contact the screen at the same time, and the motor 13 drives the cutting disk 8 to rotate to realize the function of shearing and cutting the screen synchronously; At the same time, when the reinforced deflection clamping rod 5 is deflected, it can also push the resistance block 11 to squeeze the spring 10, and the spring 10 itself elastically drives the reinforced deflection clamping rod 5 to reset, thereby making the cutting disk 8 separate from the screen. At the same time, when the reinforced deflection clamping rod 5 is deflected, the resistance block 11 can be firmly stuck on the reinforced deflection clamping rod 5 through the limiting recess 12, thereby improving the convenience of resetting the reinforced deflection clamping rod 5, and facilitating the material guide cutting linkage turntable 2 to rotate one circle and then contact the pulley 20 again to shear and cut the screen.

[0021] Different from the prior art, the present application discloses a metal screen processing device for pulping vegetable residues, in which the screen is rolled into a cylindrical shape and then inserted into the limiting groove 3, and the screen is guided through the limiting groove 3. At the same time, each positioning cone rod 17 can be inserted into the mesh of the screen to position the screen, so as to realize the function of gathering the cutting lines of the screen together and improve the cutting efficiency. At the same time, the two reinforced deflection clamping rods 5 can approach each other to shear the screen, and at the same time, the cutting disc 8 can be abutted against the screen, and the cutting disc 8 is driven to rotate by the motor 13. The screen can be sheared and cut simultaneously by rotating. When the deflection clamping rod 5 is deflected, the limiting notch 12 can make the resistance block 11 firmly clamped on the deflection clamping rod 5, thereby improving the convenience of resetting the deflection clamping rod 5. After the material guide cutting linkage turntable 2 rotates one circle, it contacts the pulley 20 again to shear and cut the screen, thereby improving the cutting efficiency. At the same time, the material guide cutting linkage turntable 2 rotates one circle, thereby effectively ensuring that each cut screen is always in the same size, thereby ensuring the cutting quality.

[0022] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A metal screen processing device for pulping vegetable residue, comprising a base (1), characterized in that: The base (1) is provided with a cutting processing component; The cutting processing assembly comprises a material guiding and cutting linkage turntable (2) arranged on the top of the base (1), a limiting groove (3) is provided on the material guiding and cutting linkage turntable (2), a dislocation opening (4) is provided in the limiting groove (3), two angle-adjustable reinforcing deflection clamping rods (5) are provided in the dislocation opening (4), and a shear block (6) is fixedly provided at one end of each reinforcing deflection clamping rod (5); One end of each of the two shear blocks (6) is provided with a mounting groove (7), and a cutting disc (8) for cutting is arranged in the mounting groove (7); A reinforcement ring (15) is arranged in the limiting groove (3), a plurality of guide slide grooves (16) are arranged on the outer side of the reinforcement ring (15), and a positioning cone rod (17) is arranged in each of the slide grooves (16).

2. The metal screen processing device for pulping vegetable residue according to claim 1, characterized in that: A reinforcing L-plate (9) is provided on one side of each of the two reinforcing deflection clamping rods (5); the reinforcing L-plate (9) is installed in the offset opening (4) by means of bolts; and a spring (10) is fixedly provided on one side of the top of the reinforcing L-plate (9).

3. The metal screen processing device for pulping vegetable residue according to claim 2, characterized in that: A resisting block (11) is fixedly provided at one end of the spring (10), a limiting recess (12) is provided on a side of the reinforcing deflection clamping rod (5) facing the reinforcing L-plate (9), and the resisting block (11) extends into the limiting recess (12).

4. The metal screen processing device for pulping vegetable residue according to claim 1, characterized in that: A motor (13) for driving the cutting disc (8) to rotate is provided at the end of the shear block (6), and a storage battery (14) for supplying power to the motor (13) is embedded in the shear block (6).

5. The metal screen processing device for pulping vegetable residue according to claim 2, characterized in that: The reinforcement ring (15) is detachably connected to the material guiding and cutting linkage turntable (2) via bolts, and the reinforcement ring (15) is covered at the top end of the reinforcement L-plate (9).

6. The metal screen processing device for pulping vegetable residue according to claim 1, characterized in that: Both sides of the material guiding and cutting linkage turntable (2) are rotatably connected to bearing seats (18), and one of the bearing seats (18) is provided with a stepping motor (22) for driving the material guiding and cutting linkage turntable (2) to rotate.

7. The metal screen processing device for pulping vegetable residue according to claim 6, characterized in that: The top ends of the two bearing seats (18) are both plugged with vertical rods (19), and the top ends of the two vertical rods (19) are both fixedly provided with pulleys (20).

8. The metal screen processing device for pulping vegetable residue according to claim 8, characterized in that: The pulley (20) is located on one side of the reinforcing deflection clamping rod (5), and a slope (21) is provided on the outside of the reinforcing deflection clamping rod (5), wherein the slope (21) is in contact with the pulley (20).

9. The metal screen processing device for pulping vegetable residue according to claim 1, characterized in that: One end of the reinforcing deflection clamping rod (5) away from the shear block (6) is rotatably connected to a limit pin (23), and one end of the limit pin (23) extends to the material guide and cutting linkage turntable (2) and is threadedly connected to the material guide and cutting linkage turntable (2).

10. The metal screen processing device for pulping vegetable residue according to claim 1, characterized in that: The positioning cone rod (17) is configured to be conical in shape, and the positioning cone rod (17) is slidably connected to the slide groove (16).

Citation Information

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