Intelligent temperature control degradable tableware processing device
By introducing heaters and spiral tubes to preheat materials in the biodegradable tableware processing device, combined with servo motors and electric valve control, the problems of slow preheating and difficult cleaning of traditional equipment are solved, achieving efficient material heating and equipment maintenance, and improving production efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUZHOU GLOBAL XINYIFENG ENVIRONMENTAL PROTECTION TECH
- Filing Date
- 2025-04-11
- Publication Date
- 2026-07-24
AI Technical Summary
Traditional biodegradable tableware processing equipment lacks an effective preheating step, resulting in long material heating time, high energy consumption, and difficulty in cleaning the equipment, which affects production efficiency and continuity.
A smart temperature-controlled biodegradable tableware processing device was designed. By setting a heater and a spiral tube in the conveying pipe, the material is preheated during the conveying process. The material conveying and heating are controlled by a servo motor and an electric valve. Combined with a detachable threaded box structure, it is easy to clean and improves the stability and efficiency of equipment operation.
It accelerates the speed at which materials reach the molding temperature, improves production efficiency, simplifies the equipment cleaning process, and ensures the high efficiency and reliability of heat conduction and material conveying.
Smart Images

Figure CN224544987U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of biodegradable tableware processing technology, specifically to an intelligent temperature-controlled biodegradable tableware processing device. Background Technology
[0002] As is well known, traditional biodegradable tableware production equipment often lacks an effective preheating step. This results in the material needing to rise from a low initial temperature to the high temperature required for molding after mixing with ingredients. This process is not only time-consuming but also energy-intensive, affecting overall production efficiency. Furthermore, after long-term use, impurities and incompletely discharged materials can easily remain inside the material processing conveying equipment. These residues can hinder the smooth transport of materials, thus affecting the continuity and efficiency of production. In addition, the disassembly process of traditional processing equipment is cumbersome and requires the use of auxiliary tools to remove parts for cleaning, increasing maintenance difficulty and cost. Therefore, it is necessary to propose a solution to this technical problem. Utility Model Content
[0003] (a) Technical problems to be solved
[0004] To address the shortcomings of existing technologies, this utility model provides an intelligent temperature-controlled biodegradable tableware processing device.
[0005] (II) Technical Solution
[0006] To achieve the above objectives, this utility model provides the following technical solution: an intelligent temperature-controlled biodegradable tableware processing device, including a workbench, a mixing tank on the workbench, a feeding mechanism and a mixing mechanism on the mixing tank, a discharge pipe between the mixing tank and the bottom of the workbench, a first valve on the discharge pipe, a conveying pipe on the discharge pipe, an outlet pipe at the bottom of the conveying pipe, a second valve on the outlet pipe, a first motor on one side of the conveying pipe, a spiral tube between the output end of the first motor and the interior of the conveying pipe, and a positioning hole at one end of the spiral tube. The spiral tube is provided with spiral blades, and the other end of the conveying tube is provided with conical teeth and a threaded layer. The threaded layer is provided with a threaded box, and one end of the threaded box is provided with a threaded groove. The threaded layer is threaded to the threaded groove. The threaded box is provided with a fastening box and a heater. A heating tube is provided between the heater and the positioning hole. A bearing is provided between the heating tube and the positioning hole. A fastening groove is provided inside the fastening box. A toothed plate is provided on the fastening groove. The toothed plate meshes with the conical teeth. An adjusting rod is provided between the toothed plate and the outside of the fastening box. An elastic component is provided between the toothed plate and the fastening groove.
[0007] Furthermore, the present invention is improved in that the feeding mechanism includes a feeding box, the feeding box is installed at the top of the mixing tank, the top of the feeding box has a feeding port, a third valve is provided between the feeding box and the mixing tank, and the feeding box has multiple parts.
[0008] Furthermore, the present invention is improved in that the mixing mechanism includes a second motor, which is installed at the top of the mixing tank, and a stirring shaft is provided between the output end of the second motor and the interior of the mixing tank, and stirring blades are provided on the stirring shaft.
[0009] Furthermore, an improvement of this utility model is that both the first motor and the second motor are servo motors.
[0010] Furthermore, the present invention is improved in that the first valve, the second valve, and the third valve are all electric valves.
[0011] Furthermore, the present invention is improved in that the bearing between the heating tube and the positioning hole is provided with multiple bearings.
[0012] Furthermore, an improvement of this utility model is that the elastic component is an alloy spring.
[0013] Furthermore, an improvement of this utility model is that a flange is provided at the bottom end of the discharge pipe.
[0014] (III) Beneficial Effects
[0015] Compared with the prior art, this utility model provides an intelligent temperature-controlled biodegradable tableware processing device, which has the following beneficial effects:
[0016] 1. This intelligent temperature-controlled biodegradable tableware processing device preheats the mixed materials during the conveying process. Specifically, when the mixed materials enter the conveying pipe through the discharge pipe, the heater heats the heating pipe, and the heat is transferred to the spiral pipe and the inside of the conveying pipe, so that the materials are preheated during the conveying process. In the subsequent heating and molding stage, the materials can reach the required plasticizing temperature more quickly, thereby improving the overall heating efficiency. Preheating helps to reduce the temperature difference that the materials need to overcome before molding, thereby accelerating the plasticizing speed.
[0017] 2. By pulling the adjusting rod and rotating the threaded box, the operator can easily remove the heating tube from the positioning hole, thereby cleaning the inside of the conveying tube and ensuring the optimal working condition of the equipment. This maintains efficient heat conduction and material conveying. By setting a bearing between the heating tube and the positioning hole, the stability of the spiral tube during rotation is enhanced. The design of the elastic component and the toothed column locks the threaded box to prevent it from loosening, further improving the reliability and safety of the equipment operation. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the present utility model. Figure 1 ;
[0019] Figure 2 This is a schematic diagram of the structure of the present utility model. Figure 2 ;
[0020] Figure 3 This utility model Figure 1 Enlarged half-sectional view of the central conveying pipe;
[0021] Figure 4 This utility model Figure 1 Enlarged front half-sectional view of the structure of the mixing tank.
[0022] In the diagram: 1. Workbench; 2. Mixing tank; 3. Discharge pipe; 4. First valve; 5. Conveying pipe; 6. Discharge pipe; 7. Second valve; 8. First motor; 9. Spiral tube; 10. Spiral blade; 11. Conical tooth; 12. Threaded box; 13. Fastening box; 14. Heater; 15. Heating tube; 16. Toothed plate; 17. Adjusting rod; 18. Elastic component; 19. Feed box; 20. Third valve; 21. Second motor; 22. Mixing shaft. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] Please see Figure 1-4This utility model is an intelligent temperature-controlled biodegradable tableware processing device, including a workbench 1, a mixing tank 2 on the workbench 1, a feeding mechanism and a mixing mechanism on the mixing tank 2, a discharge pipe 3 between the mixing tank 2 and the bottom of the workbench 1, a first valve 4 on the discharge pipe 3, a conveying pipe 5 on the discharge pipe 3, a discharge pipe 6 at the bottom of the conveying pipe 5, a second valve 7 on the discharge pipe 6, a first motor 8 on one side of the conveying pipe 5, a spiral tube 9 between the output end of the first motor 8 and the interior of the conveying pipe 5, a positioning hole at one end of the spiral tube 9, a spiral blade 10 on the spiral tube 9, and a conical tooth 11 and a threaded layer at the other end of the conveying pipe 5. A threaded box 12 is provided on the threaded layer, and a threaded groove is opened at one end of the threaded box 12. The threaded layer is threadedly connected to the threaded groove. A fastening box 13 and a heater 14 are provided on the threaded box 12. A heating tube 15 is provided between the heater 14 and the positioning hole. A bearing is provided between the heating tube 15 and the positioning hole. A fastening groove is opened inside the fastening box 13. A toothed plate 16 is provided on the fastening groove. The toothed plate 16 meshes with the bevel tooth 11. An adjusting rod 17 is provided between the toothed plate 16 and the outer side of the fastening box 13. An elastic member 18 is provided between the toothed plate 16 and the fastening groove. In this embodiment, the raw materials and ingredients for producing biodegradable tableware are fed into the mixing tank 2 through the feeding mechanism, and then mixed... The material mixing mechanism mixes the materials. After mixing, the first valve 4 on the discharge pipe 3 is opened, allowing the mixed material to be discharged into the conveying pipe 5. Then, the heater 14 is turned on, heating the heating tube 15. The heat is transferred to the spiral tube 9 and the interior of the conveying pipe 5. The first motor 8 is turned on, and its output rotates the spiral tube 9. The spiral tube 9 drives the spiral blade 10 to rotate in the conveying pipe 5, thus initially heating the mixed material. This increases the material temperature and improves the heating efficiency during subsequent heating and molding. It enables preheating during the material mixing and conveying process, facilitating high-temperature plasticizing and molding later. Intelligent preheating during material conveying greatly improves the efficiency of subsequent processes. To improve plasticizing efficiency, the heated material is discharged through the discharge pipe 6 by opening the second valve 7. After long-term use, it is necessary to regularly clean the impurities and material remaining inside the conveying pipe 5 to ensure heat transfer efficiency and material conveying efficiency. At this time, by pulling the adjusting rod 17, the adjusting rod 17 drives the toothed column to move, and the toothed column moves away from the conical tooth 11, thereby causing the elastic component 18 to be compressed and deformed. Then, the threaded box 12 is rotated, and the threaded box 12 rotates and moves in the thread layer through the thread groove, thereby causing the threaded box 12 to move away from the thread layer. Then, the heating tube 15 is pulled, thereby causing the heating tube 15 to move away from the positioning hole. At this time, it is convenient to clean the inside of the conveying pipe 5. After completion, pulling the adjusting rod 17 and rotating the threaded box 12 are threadedly connected to the thread layer through the thread groove.This allows the threaded groove to be threaded onto the threaded layer. Loosening the adjusting rod 17 allows the elastic component 18 to elastically support the toothed column, which meshes against the bevel tooth 11, thus locking the threaded box 12 in place and preventing it from becoming loose. The bearing between the heating tube 15 and the positioning hole improves the stability of the spiral tube 9 during rotation.
[0025] In this scheme, the feeding mechanism includes a feeding box 19, which is installed at the top of the mixing tank 2. The top of the feeding box 19 has a feeding port. A third valve 20 is provided between the feeding box 19 and the mixing tank 2. There are multiple feeding boxes 19. The raw materials for producing biodegradable tableware are easily put into the feeding box 19 through the feeding port. Then, by opening the third valve 20, the raw materials are controlled to enter the mixing tank 2.
[0026] In this solution, the mixing mechanism includes a second motor 21, which is installed at the top of the mixing tank 2. A mixing shaft 22 is provided between the output end of the second motor 21 and the interior of the mixing tank 2. The mixing shaft 22 is provided with mixing blades. By controlling the output end of the second motor 21 to rotate the mixing shaft 22, the mixing shaft 22 drives the mixing blades to rotate, thereby enabling the mixing of biodegradable tableware raw materials.
[0027] In this scheme, both the first motor 8 and the second motor 21 are servo motors. Servo motors have the characteristic of high rotational accuracy, which can improve the control accuracy during use.
[0028] In this scheme, the first valve 4, the second valve 7, and the third valve 20 are all electric valves, which enable personnel to remotely operate and switch the valves.
[0029] In this design, multiple bearings are provided between the heating tube 15 and the positioning hole, which can further improve the rotational stability of the spiral tube 9.
[0030] In this solution, the elastic component 18 is an alloy spring. The excellent elastic support effect and stability of the alloy spring can further improve the elastic support stability of the tooth column.
[0031] In this design, the bottom end of the discharge pipe 6 is provided with a flange, which allows the discharge pipe 6 to be easily connected to the pipeline of the biodegradable tableware production equipment.
[0032] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An intelligent temperature-controlled biodegradable tableware processing device, comprising a workbench (1), wherein a mixing tank (2) is provided on the workbench (1), and the mixing tank (2) is provided with a feeding mechanism and a mixing mechanism, characterized in that, A discharge pipe (3) is provided between the bottom end of the mixing tank (2) and the workbench (1). A first valve (4) is provided on the discharge pipe (3). A conveying pipe (5) is provided on the discharge pipe (3). A discharge pipe (6) is provided at the bottom end of the conveying pipe (5). A second valve (7) is provided on the discharge pipe (6). A first motor (8) is provided on one side of the conveying pipe (5). A spiral tube (9) is provided between the output end of the first motor (8) and the inside of the conveying pipe (5). A positioning hole is provided at one end of the spiral tube (9). A spiral blade (10) is provided on the spiral tube (9). A conical tooth (11) and a threaded layer are provided at the other end of the conveying pipe (5). A spiral blade (10) is provided on the threaded layer. The thread box (12) has a threaded groove at one end, and the threaded layer is threaded to the threaded groove. The thread box (12) is provided with a fastening box (13) and a heater (14). A heating tube (15) is provided between the heater (14) and the positioning hole. A bearing is provided between the heating tube (15) and the positioning hole. A fastening groove is provided inside the fastening box (13). A toothed plate (16) is provided on the fastening groove. The toothed plate (16) meshes with the bevel tooth (11). An adjusting rod (17) is provided between the toothed plate (16) and the outer side of the fastening box (13). An elastic component (18) is provided between the toothed plate (16) and the fastening groove.
2. The intelligent temperature-controlled biodegradable tableware processing device according to claim 1, characterized in that, The feeding mechanism includes a feeding box (19), which is installed at the top of the mixing tank (2). The top of the feeding box (19) has a feeding port. A third valve (20) is provided between the feeding box (19) and the mixing tank (2). The feeding box (19) has multiple valves.
3. The intelligent temperature-controlled biodegradable tableware processing device according to claim 2, characterized in that, The mixing mechanism includes a second motor (21), which is installed at the top of the mixing tank (2). A stirring shaft (22) is provided between the output end of the second motor (21) and the interior of the mixing tank (2). The stirring shaft (22) is provided with stirring blades.
4. The intelligent temperature-controlled biodegradable tableware processing device according to claim 3, characterized in that, Both the first motor (8) and the second motor (21) are servo motors.
5. The intelligent temperature-controlled biodegradable tableware processing device according to claim 4, characterized in that, The first valve (4), the second valve (7) and the third valve (20) are all electric valves.
6. The intelligent temperature-controlled biodegradable tableware processing device according to claim 5, characterized in that, The bearing between the heating tube (15) and the positioning hole is provided with multiple bearings.
7. The intelligent temperature-controlled biodegradable tableware processing device according to claim 6, characterized in that, The elastic component (18) is an alloy spring.
8. The intelligent temperature-controlled biodegradable tableware processing device according to claim 7, characterized in that, The bottom end of the discharge pipe (6) is provided with a flange.