Extrusion opening structure with adjustable extrusion shape in waste plastic reprocessing

By designing an extruded outlet structure including main support plate, installation pipe and rotating disc, the problem of shape in traditional waste plastic processing is solved, and convenient and efficient multi-shaped installation and disassembly are achieved.

CN223223828UActive Publication Date: 2025-08-15GUIZHOU HAOXIANG PLASTIC IND CO LTD
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Patent Information

Application Number
CN202422326952.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-08-15
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

During the traditional waste plastic processing process, the cylindrical shape of the guide tube cannot meet the needs of various shapes, resulting in cumbersome replacement and installation operations.

Method used

An extrusion outlet structure including the main support plate, the installation pipe, the rotating disc and the adjustment disc is designed. Through the coordination of the toggle block and the transmission gear, the matching of the docking through hole and the through hole is achieved, simplifying the installation process.

Benefits of technology

It realizes the adjustable shape of waste plastic materials, convenient and efficient installation, easy disassembly, and meets the needs of various shapes.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223223828U_ABST
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Abstract

The utility model discloses an extrusion port structure with an adjustable extrusion shape in waste plastic reprocessing, which relates to the field of waste plastic processing, and comprises a main support plate, a mounting pipeline is horizontally welded on one side edge of the main support plate, a mounting flange is fixedly arranged on the outer side edge of the mounting pipeline, a top channel is horizontally arranged on the top surface of the main support plate, and the top channel is communicated with the mounting pipeline. A stirring block is clamped to the inner side edge of the top groove channel, a rotating disc is vertically clamped to the top face of the main supporting plate, an inner clamping groove is vertically formed in the inner side wall of the main supporting plate, an adjusting disc is vertically clamped to the inner side edge of the inner clamping groove, and a main shaft rod is fixedly inserted to the side edge of the adjusting disc. Butt-joint through holes are evenly formed in the side edge of the adjusting disc, limiting grooves are symmetrically formed in the two side edges of the adjusting disc, an integrated installation structure is adopted so that installation can be more convenient and efficient, and meanwhile adjustment and use can be easier through a rotary shifting adjusting structure.
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Description

Technical Field

[0001] The utility model relates to the technical field of waste plastic processing, in particular to an extrusion port structure with adjustable extrusion shape for waste plastic reprocessing. Background Art

[0002] Plastics are materials that are primarily composed of resin (or directly polymerized monomers during processing), supplemented by additives such as plasticizers, fillers, lubricants, and colorants, and are capable of flowing and forming during processing. Plastics are synthetic polymers that can freely change shape and form. They are formed by synthesizing or condensing monomer raw materials. They are composed of synthetic resins and additives such as fillers, plasticizers, stabilizers, lubricants, and colorants. Their primary component is synthetic resin.

[0003] When processing current waste plastics, it is necessary to extrude the waste plastics. The traditional method is to transmit the waste plastics through the cylindrical shape of the guide tube, which cannot meet the current needs of various shapes. In addition, the guide tube is replaced with various shapes for installation, which makes the back-and-forth disassembly and installation operations more cumbersome. Utility Model Content

[0004] The purpose of the utility model is to provide an extrusion port structure with adjustable shape for waste plastic reprocessing, so as to solve the problem raised in the above background technology that when the current waste plastic is processed, the waste plastic needs to be extruded, and the traditional method is to transmit the waste plastic through the cylindrical shape of the guide tube, which cannot meet the current needs of various shapes, and the guide tube needs to be replaced in various shapes and installed, which makes the back-and-forth disassembly and installation operations more cumbersome.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A waste plastic reprocessing extrusion port structure with adjustable extrusion shape, comprising a main support plate, a mounting pipe welded horizontally on one side of the main support plate, a mounting flange fixedly provided on the outer side of the mounting pipe, a top groove horizontally provided on the top surface of the main support plate, a toggle block clamped on the inner side of the top groove, a rotating disc vertically clamped on the top surface of the main support plate, an inner clamping groove vertically provided on the inner side wall of the main support plate, an adjusting disc vertically clamped on the inner side of the inner clamping groove, a main shaft rod fixedly plugged on the side of the adjusting disc, and the adjusting disc The sides of the disk are evenly provided with docking through holes, and limiting grooves are symmetrically provided on both sides of the adjusting disk. A connecting shaft is fixedly inserted on the side of the rotating disk, and a transmission gear is fixedly provided on the side of the rotating disk. The inner side of the main support plate is vertically clamped with a matching gear, the inner side of the top groove is horizontally clamped with an extrusion side block, and the inner side end of the top groove is horizontally clamped with a top spring. Through holes are symmetrically provided on both sides of the main support plate, and a clamping ball is symmetrically clamped on the inner side of the inner clamping groove, and a transmission tooth groove is provided on the outer side of the adjusting disk.

[0007] As a preferred embodiment of the present invention: one end of the mounting pipe is fixedly arranged at the edge of an open end of the through-hole, and the interior of the mounting pipe is kept in communication with the interior of the through-hole, and the mounting flange is fixedly arranged on the outside of the mounting pipe at one end away from the main support plate.

[0008] As a preferred embodiment of the present invention: the top groove is horizontally opened at a position near one end of the top surface center line of the main support plate, one end of the toggle block is fixedly set at one end of the top surface of the extrusion side block, and the rotating disc is vertically clamped at one end of the top surface center line of the main support plate away from the top groove.

[0009] As a preferred embodiment of the present invention: the inner snap-fit groove is vertically opened at the inner center line position of the main support plate, the main shaft rod is fixedly connected in a through-type and arranged at the center position of the adjusting disc, and the two ends of the main shaft rod are horizontally plugged and arranged at the center position of the inner wall of the inner snap-fit groove, and there are multiple docking through holes, and the multiple docking through holes are all arranged as through hole structures of various specifications and shapes.

[0010] As a preferred embodiment of the present invention: the limit grooves are symmetrically opened on the side of the adjusting disc near the edge, the two ends of the connecting shaft are plugged into the inner side of the main support plate, the side of the mating gear and the transmission gear are toothed with each other, and the side of the mating gear extends to the inner side of the transmission tooth groove for tooth connection, and one end of the extrusion side block is docked and arranged on the outer side of the rotating disc.

[0011] As a preferred embodiment of the present invention: one end of the top spring is horizontally docked and set at one end position of the extrusion side block, the through hole is symmetrically opened on the side of the main support plate near the edge, and the open end of the through hole is docked and set at the open end of the docking through hole, and the side of the clamping ball is clamped and set on the inner side of the corresponding limit groove.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] The utility model arranges the main support plate vertically at the side position of the extrusion equipment, and connects it to the discharge port position through the side mounting pipe, so that the mounting flange is fixedly installed at the discharge port position. After the toggle block is toggled, the extrusion side block is driven to extrude the top spring, so that one end of the extrusion side block is away from the rotating disc, and the rotating disc can be rotated, so that the side transmission gear drives the matching gear to rotate, so that the matching gear drives the adjustment disc to rotate, and the adjustment disc drives the corresponding shaped docking through-hole to rotate to a position between the two through-holes. The clamping ball is clamped and fixed inside the limit groove, so that the docking through-hole can be more consistent with the through-hole. After the material is extruded through the extrusion equipment, it enters the corresponding docking through-hole through the through-hole. Under the shaping of the specified shape of the docking through-hole, the material can be formed into a specified shape and extend outward. The integrated mounting structure makes the installation more convenient and efficient, and the rotary toggle adjustment structure makes the adjustment easier to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Other features, objects and advantages of the present invention will become more apparent from the detailed description of the non-limiting embodiments with reference to the following drawings:

[0015] Figure 1 A schematic diagram of the three-dimensional structure of an extrusion port structure with adjustable extrusion shape for waste plastic reprocessing;

[0016] Figure 2 A schematic structural diagram of the side cross-section connection details of a main support plate of an extrusion port structure with adjustable extrusion shape for waste plastic reprocessing;

[0017] Figure 3 A schematic diagram of the top view and cross-sectional connection details of a main support plate of an extrusion port structure with adjustable extrusion shape for waste plastic reprocessing;

[0018] Figure 4 The present invention is a schematic structural diagram showing the side view connection details of a rotating disc of an extrusion port structure with adjustable extrusion shape for waste plastic recycling.

[0019] In the figure: 1. Main support plate; 2. Mounting pipe; 3. Mounting flange; 4. Top groove; 5. Toggle block; 6. Rotating disc; 7. Inner snap-in groove; 8. Adjusting disc; 9. Main shaft; 10. Docking hole; 11. Limiting groove; 12. Connecting shaft; 13. Transmission gear; 14. Matching gear; 15. Extrusion side block; 16. Top spring; 17. Through hole; 18. Snap-in ball; 19. Transmission tooth groove. DETAILED DESCRIPTION

[0020] See also Figure 1 The utility model discloses an extrusion port structure with adjustable extrusion shape for reprocessing waste plastic, comprising a main support plate 1, a mounting pipe 2 being horizontally welded on one side edge of the main support plate 1, a mounting flange 3 being fixedly provided on the outer side edge of the mounting pipe 2, one end of the mounting pipe 2 being fixedly arranged at an edge position of an open end of the through-hole 17, and the interior of the mounting pipe 2 is kept in communication with the interior of the through-hole 17, the mounting flange 3 being fixedly arranged on the outer side of the mounting pipe 2 away from one end position of the main support plate 1, a top groove 4 being horizontally opened on the top surface of the main support plate 1, a toggle block 5 being clamped on the inner side edge of the top groove 4, a rotating disc 6 being vertically clamped on the top surface of the main support plate 1, the top groove 4 being horizontally opened at a position near one end of the top center line of the main support plate 1, one end of the toggle block 5 being fixedly arranged at one end position of the top surface of the extrusion side block 15, and the rotating disc 6 being vertically clamped at one end position of the top center line of the main support plate 1 away from the top groove 4;

[0021] See also Figure 2-4In the embodiment of the present invention, an extrusion port structure with adjustable extrusion shape for waste plastic reprocessing is provided, wherein the inner side wall of the main support plate 1 is vertically provided with an inner clamping groove 7, the inner side edge of the inner clamping groove 7 is vertically clamped with an adjusting disc 8, the side edge of the adjusting disc 8 is fixedly plugged with a main shaft rod 9, and the side edge of the adjusting disc 8 is evenly provided with docking through holes 10. The inner clamping groove 7 is vertically provided at the inner center line position of the main support plate 1, and the main shaft rod 9 is fixedly connected in a through-type manner and is arranged in the center of the adjusting disc 8. The two ends of the main shaft 9 are horizontally plugged into the center of the inner wall of the inner card slot 7. There are multiple docking through holes 10, and the multiple docking through holes 10 are set as through hole structures of various specifications and shapes. The two sides of the adjusting disc 8 are symmetrically provided with limited slots 11. The side of the rotating disc 6 is fixedly plugged with a connecting shaft 12. The side of the rotating disc 6 is fixedly provided with a transmission gear 13. The inner side of the main support plate 1 is vertically carded with a matching gear 14. The inner side of the top groove 4 is horizontally carded. There is an extrusion side block 15, and the limit grooves 11 are symmetrically opened on the side of the adjustment disc 8 near the edge position. The two ends of the connecting shaft 12 are inserted into the inner side of the main support plate 1, and the side of the matching gear 14 and the transmission gear 13 are toothed with each other, and the side of the matching gear 14 extends to the inner side of the transmission tooth groove 19. One end of the extrusion side block 15 is docked and set on the outer side of the rotating disc 6. The inner side end of the top groove 4 is horizontally clamped with a top spring 16. The main support plate 1 Through holes 17 are symmetrically opened on both sides, and the inner side of the inner clamping groove 7 is symmetrically clamped with a clamping ball 18. One end of the top spring 16 is horizontally docked at one end of the extrusion side block 15. The through holes 17 are symmetrically opened on the side of the main support plate 1 near the edge, and the open end of the through hole 17 is docked at the open end of the docking hole 10. The side of the clamping ball 18 is clamped on the inner side of the corresponding limit groove 11, and the outer side of the adjusting disc 8 is provided with a transmission tooth groove 19.

[0022] The working principle of this utility model is:

[0023] The main support plate 1 is vertically set at the side position of the extrusion equipment, and is docked at the discharge port position through the side mounting pipe 2, so that the mounting flange 3 is fixedly installed at the discharge port position. After the toggle block 5 is toggled, the extrusion side block 15 is driven to extrude the top spring 16, so that one end of the extrusion side block 15 is away from the rotating disc 6, and the rotating disc 6 can be rotated, so that the side transmission gear 13 drives the matching gear 14 to rotate, so that the matching gear 14 drives the adjusting disc 8 to rotate, so that the adjusting disc 8 drives the corresponding shape of the docking through-hole 10 to rotate to the position between the two through-holes 17, and the clamping ball 18 is clamped and fixed inside the limit groove 11, so that the docking through-hole 10 can be more consistent with the through-hole 17. After the material is extruded through the extrusion equipment, it enters the corresponding docking through-hole 10 through the through-hole 17. Under the shaping of the docking through-hole 10 of the specified shape, the material can form a specified shape and extend outward.

[0024] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A waste plastic reprocessing extrusion port structure with adjustable extrusion shape, comprising a main support plate (1), characterized in that: A mounting pipe (2) is horizontally welded to one side of the main support plate (1), a mounting flange (3) is fixedly provided on the outer side of the mounting pipe (2), a top groove (4) is horizontally provided on the top surface of the main support plate (1), a toggle block (5) is clamped to the inner side of the top groove (4), a rotating disc (6) is vertically clamped to the top surface of the main support plate (1), an inner clamping groove (7) is vertically provided on the inner side wall of the main support plate (1), an adjusting disc (8) is vertically clamped to the inner side of the inner clamping groove (7), a main shaft rod (9) is fixedly inserted to the side of the adjusting disc (8), a docking through hole (10) is evenly provided on the side of the adjusting disc (8), and the adjusting disc (8) is fixedly inserted to the side of the main support plate (1). The two sides of the disc (8) are symmetrically provided with limiting grooves (11), the side of the rotating disc (6) is fixedly plugged with a connecting shaft (12), the side of the rotating disc (6) is fixedly provided with a transmission gear (13), the inner side of the main support plate (1) is vertically clamped with a matching gear (14), the inner side of the top groove (4) is horizontally clamped with an extrusion side block (15), the inner side end of the top groove (4) is horizontally clamped with a top spring (16), the two sides of the main support plate (1) are symmetrically provided with through holes (17), the inner side of the inner clamping groove (7) is symmetrically clamped with a clamping ball (18), and the outer side of the adjusting disc (8) is provided with a transmission tooth groove (19).

2. The extrusion port structure with adjustable extrusion shape for waste plastic reprocessing according to claim 1, characterized in that: One end of the mounting pipe (2) is fixedly arranged at an edge position of an open end of the through hole (17), and the interior of the mounting pipe (2) is kept in communication with the interior of the through hole (17), and the mounting flange (3) is fixedly arranged at an end position outside the mounting pipe (2) away from the main support plate (1).

3. The extrusion port structure with adjustable extrusion shape for waste plastic reprocessing according to claim 1, characterized in that: The top groove (4) is horizontally opened at a position close to one end of the top surface center line of the main support plate (1), one end of the toggle block (5) is fixedly arranged at one end of the top surface of the extrusion side block (15), and the rotating disc (6) is vertically clamped and arranged at one end of the top surface center line of the main support plate (1) away from the top groove (4).

4. The extrusion port structure with adjustable extrusion shape for waste plastic reprocessing according to claim 1, characterized in that: The inner snap-fit groove (7) is vertically opened at the inner center line of the main support plate (1), the main shaft rod (9) is fixedly connected in a through-type manner and is arranged at the center of the adjustment disc (8), and the two ends of the main shaft rod (9) are horizontally plugged and arranged at the center of the inner wall of the inner snap-fit groove (7), and the number of the docking through holes (10) is multiple, and the multiple docking through holes (10) are all set as through hole structures of various specifications and shapes.

5. The extrusion port structure with adjustable extrusion shape for waste plastic reprocessing according to claim 1, characterized in that: The limiting grooves (11) are symmetrically arranged on the side of the regulating disc (8) near the edge, the two ends of the connecting shaft (12) are inserted into the inner side of the main support plate (1), the side of the matching gear (14) and the transmission gear (13) are tooth-engaged with each other, and the side of the matching gear (14) extends to the inner side of the transmission tooth groove (19) for tooth engagement, and one end of the extrusion side block (15) is docked with the outer side of the rotating disc (6).

6. The extrusion port structure with adjustable extrusion shape for waste plastic reprocessing according to claim 1, characterized in that: One end of the top spring (16) is horizontally docked at one end of the extrusion side block (15); a through hole (17) is symmetrically opened on the side of the main support plate (1) near the edge; and the open end of the through hole (17) is docked at the open end of the docking through hole (10); and the side of the clamping ball (18) is clamped at the inner side of the corresponding limiting groove (11).