Renewable resource recycling and screening equipment
By designing a screening device for recycling of renewable resources and using conveyor belts and guide plates to achieve automatic screening, the problem of low manual sorting efficiency in the prior art is solved, and the work efficiency is improved and labor investment is reduced.
Patent Information
- Application Number
- CN202421788516.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The prior art requires manual sorting in the recycling of renewable resources, resulting in low work efficiency and increased labor force.
A renewable resource recycling screening equipment is designed, including base plates, columns, filter conveyor belts, magnetic suction conveyor belts and collection boxes. Different types of renewable resources are automatically screened and collected through conveyor belts and guide plates.
It realizes rapid and automatic screening of renewable resources, improves work efficiency, reduces the investment in manual labor, and facilitates the recycling of different types of waste.
Smart Images

Figure CN222890101U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of renewable resources, in particular to a renewable resource recovery and screening device. Background Art
[0002] Renewable resources refer to various wastes generated in the process of social production and life consumption that have lost all or part of their original use value and can regain their use value after recycling and processing, such as metals, plastic bottles, paper towels, etc. In the recycling of renewable resources, screening equipment is needed to screen different types of renewable resources.
[0003] When the existing technology is used, manual sorting is required to screen out different types of renewable resources, which has low work efficiency, is not convenient enough, and increases manual labor. Therefore, it is necessary to design a renewable resource recycling and screening equipment. Utility Model Content
[0004] The utility model aims to provide a recycling and screening device for renewable resources, so as to solve the problem that the prior art needs manual sorting during use to screen out different types of renewable resources, resulting in low work efficiency.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a recycling resource recovery and screening device, comprising a bottom plate and two groups of columns fixedly mounted on one side of the upper surface of the bottom plate, each group of the columns comprising two symmetrically arranged columns, a first screening component and a second screening component are rotatably mounted between the four columns, the first screening component is located directly above the second screening component, a first guide plate is provided below the end of the first screening component between one group of the columns, and a second guide plate is provided below the end of the second screening component, a baffle is fixedly mounted on the top of the side of the other group of the columns close to the end of the bottom plate, and an inclined scraper is provided at the position directly below the second screening component;
[0006] The upper surface of the bottom plate is provided with a first collecting box, a second collecting box and a third collecting box, the first collecting box is located below the outlet of the first guide plate, the second collecting box is located below the outlet of the second guide plate, and the third collecting box is located directly below the second screening assembly.
[0007] Among them, the first screening component includes a filter conveyor belt, two first transmission rollers and a first motor, the first transmission rollers are rotatably installed between the two opposite columns, the filter conveyor belt is transmission-connected between the two first transmission rollers, one of the columns is provided with a first motor, and the output end of the first motor is fixedly connected to the central axis of one of the first transmission rollers.
[0008] Among them, the second screening component includes a magnetic conveyor belt, two second drive rollers and a second motor, the second drive rollers are rotatably installed between the two opposite columns, the magnetic conveyor belt is connected for transmission between the two second drive rollers, one of the columns is provided with a second motor, the second motor is located directly below the first motor, and the output end of the second motor is fixedly connected to the central axis of one of the second drive rollers.
[0009] Among them, two symmetrical vertical plates are fixedly connected between the two groups of columns, the bottom ends of the vertical plates extend to the first screening assembly, and a feed hopper is fixedly connected to the top ends between the two vertical plates.
[0010] Wherein, the top of the baffle is opened, and the bottom of the baffle is inclined.
[0011] Wherein, the top end of the inclined scraper plate is close to but not in contact with the bottom end of the second screening component.
[0012] Compared with the prior art, the beneficial effects of the utility model are:
[0013] The utility model pours the renewable resources into the feed hopper, utilizes the filtering conveyor belt on the first screening component to screen out the large objects, and moves them to the first collection box along the filtering conveyor belt through the first guide plate, and the small objects pass through the filtering conveyor belt and fall onto the magnetic conveyor belt, and move them to the second collection box along the magnetic conveyor belt through the second guide plate, and the metal objects will be adsorbed on the surface of the magnetic conveyor belt, and when they reach the inclined scraper, the inclined scraper will be used to push the adsorbed metal objects to the third collection box for easy recycling. This method can quickly screen out different types of waste in the recycling work of renewable resources, is more convenient and efficient than manual operation, and can reduce the input of manual labor. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the front view structure of a renewable resource recovery and screening device of the utility model;
[0015] Figure 2 This is a schematic diagram of the axonometric structure of a renewable resource recovery and screening device of the utility model;
[0016] Figure 3 It is a partial enlarged structural schematic diagram of a renewable resource recovery and screening device of the utility model.
[0017] In the figure: 10, bottom plate; 20, column; 30, vertical plate; 40, feed hopper; 50, baffle; 60, first screening component; 61, filter conveyor belt; 62, first drive roller; 63, first motor; 64, first guide plate; 65, first collecting box; 70, second screening component; 71, magnetic conveyor belt; 72, second drive roller; 73, second motor; 74, second guide plate; 75, second collecting box; 80, inclined scraper; 81, third collecting box. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.
[0019] See also Figure 1-3 The utility model provides a technical solution: a recycling resource recovery and screening device, comprising a bottom plate 10 and two groups of columns 20 fixedly mounted on one side of the upper surface of the bottom plate 10, each group of columns 20 comprising two symmetrically arranged columns 20, a first screening component 60 and a second screening component 70 are rotatably mounted between the four columns 20, the first screening component 60 is located directly above the second screening component 70, a first guide plate 64 is provided below the end of the first screening component 60 between one group of columns 20, and a second guide plate 74 is provided below the end of the second screening component 70, a baffle 50 is fixedly mounted on the top of the side of another group of columns 20 near the end of the bottom plate 10, the baffle 50 is provided to prevent the overflow of articles during dumping, and an inclined scraper 80 is provided at the position directly below the second screening component 70, the inclined scraper 80 is provided to scrape the articles on the surface of the magnetic conveyor belt 71;
[0020] A first collecting box 65, a second collecting box 75 and a third collecting box 81 are provided on the upper surface of the bottom plate 10. The first collecting box 65 is located below the outlet of the first guide plate 64, the second collecting box 75 is located below the outlet of the second guide plate 74, and the third collecting box 81 is located directly below the second screening component 70. After classification, the recycled resources will be collected in the first collecting box 65, the second collecting box 75 and the third collecting box 81 respectively.
[0021] Among them, the first screening component 60 includes a filter conveyor belt 61, two first transmission rollers 62 and a first motor 63. The first transmission rollers 62 are rotatably installed between two opposite columns 20, and the filter conveyor belt 61 is transmission-connected between the two first transmission rollers 62. A first motor 63 is arranged on one of the columns 20, and the output end of the first motor 63 is fixedly connected to the central axis of one of the first transmission rollers 62. The two ends of the two first transmission rollers 62 are rotationally connected between the two opposite columns 20. The first motor 63 is started, and one of the first transmission rollers 62 rotates, thereby driving the filter conveyor belt 61 to transmit and the other first transmission roller 62 to rotate.
[0022] Among them, the second screening component 70 includes a magnetic conveyor belt 71, two second transmission rollers 72 and a second motor 73. The second transmission rollers 72 are rotatably installed between the two opposite columns 20. The magnetic conveyor belt 71 is connected for transmission between the two second transmission rollers 72. A second motor 73 is arranged on one of the columns 20. The second motor 73 is located directly below the first motor 63. The output end of the second motor 73 is fixedly connected to the central axis of one of the second transmission rollers 72. The two ends of the two second transmission rollers 72 are rotatably connected between the two opposite columns 20. The second motor 73 is started, and the rotation of one of the second transmission rollers 72 drives the magnetic conveyor belt 71 and the other second transmission roller 72 at the same time.
[0023] Among them, two symmetrical vertical plates 30 are fixedly connected between the two groups of columns 20, the bottom ends of the vertical plates 30 extend to the first screening component 60, and the top ends between the two vertical plates 30 are fixedly connected with a feed hopper 40. By pouring the recycled resources into the feed hopper 40, the two vertical plates 30 are set to prevent the recycled resources from falling.
[0024] The top of the baffle 50 is opened, and the bottom of the baffle 50 is inclined. When objects are poured along the feed hopper 40, the baffle 50 is used to collect the overflowed objects and slide them into the device.
[0025] Among them, the top of the inclined scraper 80 is close to but not in contact with the bottom of the second screening component 70, and metal objects will be adsorbed on the surface of the magnetic conveyor belt 71. When reaching the inclined scraper 80, the inclined scraper 80 will be used to push the adsorbed metal objects into the third collection box 81.
[0026] Working principle: When in use, the recycled resources are poured into the feed hopper 40, and the large objects are screened out by using the filter conveyor belt 61 on the first screening component 60, and the objects are moved to the first collection box 65 through the first guide plate 64 along the filter conveyor belt 61. The small objects pass through the filter conveyor belt 61 and fall onto the magnetic conveyor belt 71, and move to the second collection box 75 along the magnetic conveyor belt 71 through the second guide plate 74. Metal objects will be adsorbed on the surface of the magnetic conveyor belt 71. When they reach the inclined scraper 80, the inclined scraper 80 will be used to push the adsorbed metal objects to the third collection box 81 for easy recycling. This method can quickly screen out different types of waste in the recycling of renewable resources. Compared with manual operation, it is more convenient and efficient, and can reduce the input of manual labor.
[0027] Based on the embodiments of the present utility model, all other embodiments obtained by ordinary technicians in the field without making any creative work shall fall within the scope of protection of the present utility model.
Claims
1. A recycling and screening device for renewable resources, comprising a base plate (10) and two groups of columns (20) fixedly mounted on one side of the upper surface of the base plate (10), characterized in that: Each group of the columns (20) comprises two symmetrically arranged columns (20), a first screening component (60) and a second screening component (70) are rotatably mounted between the four columns (20), the first screening component (60) being located directly above the second screening component (70), a first guide plate (64) being provided below the end of the first screening component (60) between one group of the columns (20), and a second guide plate (74) being provided below the end of the second screening component (70), a baffle plate (50) being fixedly mounted on the top of the side surface of another group of the columns (20) close to the end of the bottom plate (10), and an inclined scraper plate (80) being provided at a position directly below the second screening component (70); The upper surface of the bottom plate (10) is provided with a first collecting box (65), a second collecting box (75) and a third collecting box (81), the first collecting box (65) is located below the outlet of the first guide plate (64), the second collecting box (75) is located below the outlet of the second guide plate (74), and the third collecting box (81) is located directly below the second screening assembly (70).
2. A renewable resource recovery and screening device according to claim 1, characterized in that: The first screening component (60) comprises a filter conveyor belt (61), two first transmission rollers (62) and a first motor (63); the first transmission rollers (62) are rotatably mounted between the two opposite columns (20); the filter conveyor belt (61) is transmission-connected between the two first transmission rollers (62); a first motor (63) is arranged on one of the columns (20); and an output end of the first motor (63) is fixedly connected to a central axis of one of the first transmission rollers (62).
3. A renewable resource recovery and screening device according to claim 2, characterized in that: The second screening component (70) comprises a magnetic conveyor belt (71), two second transmission rollers (72) and a second motor (73); the second transmission rollers (72) are rotatably installed between the two opposite columns (20); the magnetic conveyor belt (71) is connected for transmission between the two second transmission rollers (72); a second motor (73) is arranged on one of the columns (20); the second motor (73) is located directly below the first motor (63); and the output end of the second motor (73) is fixedly connected to the central axis of one of the second transmission rollers (72).
4. The renewable resource recovery and screening device according to claim 1, characterized in that: Two symmetrical vertical plates (30) are fixedly connected between the two groups of columns (20), the bottom ends of the vertical plates (30) extend to the first screening assembly (60), and a feed hopper (40) is fixedly connected to the top ends between the two vertical plates (30).
5. The renewable resource recovery and screening device according to claim 1, characterized in that: The top of the baffle (50) is opened, and the bottom of the baffle (50) is inclined.
6. The renewable resource recovery and screening device according to claim 1, characterized in that: The top end of the inclined scraper (80) is close to but not in contact with the bottom end of the second screening assembly (70).