PVC composite tile production waste recovery treatment device
By designing a reciprocating screw and actuating rod, combined with a vibrating screen assembly, the problem of PVC composite tile waste accumulating during the crushing process is solved, improving processing efficiency and equipment lifespan, and enhancing cleaning performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN KENAN NEW MATERIAL TECHNOLOGY CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-05
AI Technical Summary
Existing PVC composite tile production waste recycling and processing equipment is prone to accumulation in a certain area during the crushing process, resulting in excessive load, affecting processing efficiency and shortening equipment life.
A device comprising a reciprocating screw, a lever, and a vibrating screen assembly was designed. The lever moves the waste material, and the vibrating screen assembly shakes off the dust to prevent accumulation. The screen assembly also improves processing efficiency and cleaning effect.
It achieves the goal of avoiding waste accumulation during the crushing process, improving processing efficiency, extending equipment life, and preventing clogging of the cleaning equipment by shaking off dust, thereby improving the cleaning effect.
Smart Images

Figure CN224194833U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of PVC composite tile production waste recycling technology, and in particular to a PVC composite tile production waste recycling and processing device. Background Technology
[0002] In the production process of PVC composite tiles, a certain amount of waste is inevitably generated. If this waste is not properly disposed of, it will not only waste raw materials and increase production costs, but also have a negative impact on the environment. Therefore, recycling and processing waste from PVC composite tile production has significant economic and environmental value.
[0003] When existing PVC composite tile production waste recycling and processing equipment is performing crushing operations, the PVC composite tile waste tends to accumulate in a certain area of the crushing equipment due to its shape, weight, and initial placement. Once the waste accumulates, the crushing load in that area will be too high, while other areas may be relatively idle, thus affecting the waste processing efficiency. Furthermore, long-term uneven crushing will cause excessive wear on the crushing equipment and shorten its service life.
[0004] Therefore, it is necessary to design a PVC composite tile production waste recycling and processing device that can move the PVC composite tile waste while crushing it, so as to avoid the PVC composite tile waste from accumulating in one place and improve the processing efficiency. Utility Model Content
[0005] To overcome the shortcomings of existing PVC composite tile production waste recycling and processing devices, which tend to accumulate waste in certain areas during crushing operations, leading to excessive crushing load in that area while other areas remain relatively idle and thus affecting waste processing efficiency, and also causing excessive wear and tear on the crushing equipment over a long period of time, shortening its service life, this utility model provides a PVC composite tile production waste recycling and processing device that can move PVC composite tile waste during crushing, preventing it from accumulating in one place and improving processing efficiency.
[0006] The technical solution of this utility model is as follows: a PVC composite tile production waste recycling and processing device, including a base, a processing box, a feeding frame, a motor, gears, crushing rollers, a first transmission component, a reciprocating screw, a slider, a lever, and a screening component. The processing box is connected to the upper left of the base, and the feeding frame is connected to the upper side of the processing box. The motor is connected to the upper front of the processing box, and the motor and the processor are electrically connected through a control module. Crushing rollers are rotatably connected to both the left and right sides of the processing box. The output shaft of the motor is connected to the adjacent crushing roller. Gears are connected to the front of each crushing roller, and the gears mesh with each other. A reciprocating screw is rotatably connected to the upper right of the feeding frame. A first transmission component is provided between the reciprocating screw and the crushing roller on the right. A slider is threadedly connected to the reciprocating screw, and the slider is slidably connected to the feeding frame. A lever is connected to the slider. A screening component capable of vibrating and screening the crushed waste is provided in the middle of the processing box.
[0007] As a preferred technical solution of this utility model, the processing box has a structure that is wider at the top and narrower at the bottom.
[0008] As a preferred technical solution of this utility model, the first transmission component includes a first pulley and a first flat belt. The crushing roller on the right and the front part of the reciprocating screw are both connected to the first pulley, and the first flat belt is wound between the first pulleys.
[0009] As a preferred technical solution of this utility model, the screening assembly includes guide rods, a vibrating frame, a first telescopic spring, a screening screen, a limiting frame, a second telescopic spring, a second transmission assembly, a squeezing frame, and a cleaning frame. Two guide rods are connected to the inner sides of both the front and rear parts of the processing box. The vibrating frame is slidably connected between the guide rods. A first telescopic spring connects each guide rod to the vibrating frame. A screening screen is placed on the vibrating frame. A limiting frame is slidably connected to the lower right part of the vibrating frame. A second telescopic spring connects the limiting frame to the vibrating frame on both the front and rear sides. A squeezing frame is rotatably connected to the lower part of the processing box. The squeezing frame contacts the vibrating frame. A second transmission assembly is provided between the squeezing frame and the crushing roller on the right side. A cleaning frame is connected to the right side of the base.
[0010] As a preferred technical solution of this utility model, the screening mesh has an inclined structure.
[0011] As a preferred technical solution of this utility model, it also includes a second transmission component, which includes a second pulley and a second flat belt. The crushing roller on the right and the front of the extrusion frame are both connected to the second pulley, and the second flat belt is wound around the second pulley.
[0012] Beneficial effects: 1. This utility model uses a reciprocating screw to rotate, causing the slider to move back and forth under the action of the screw thread, which in turn drives the actuating rod to move back and forth. The actuating rod moves the PVC composite tile waste, achieving the effect of moving the PVC composite tile waste while crushing, avoiding the accumulation of PVC composite tile waste in one place, and improving the processing efficiency.
[0013] 2. This utility model causes the extrusion frame to squeeze the vibrating frame, which in turn moves the vibrating frame up and down on the guide rod. The first telescopic spring is compressed and then returns to its original state, allowing the dust attached to the waste material to be discharged from the bottom of the processing box through the screening screen. This achieves the goal of shaking off the dust attached to the PVC composite tile waste while crushing, avoiding the clogging of the cleaning equipment due to excessive dust during cleaning and improving the cleaning effect.
[0014] 3. This utility model moves the limiting frame downwards, stretches the second telescopic spring, so that the limiting frame is no longer stuck to the screening screen. Then the screening screen is removed, the limiting frame is released, the second telescopic spring returns to its original position, and the limiting frame moves back to its original position. This achieves the effect of making it easy to disassemble the screening screen for cleaning or replacement. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0016] Figure 2 This is a three-dimensional structural diagram of the base and processing box of this utility model.
[0017] Figure 3 This is a three-dimensional structural diagram of the actuating frame and crushing roller of this utility model.
[0018] Figure 4 This is a three-dimensional structural diagram of the vibrating frame and screening screen of this utility model.
[0019] Figure 5 This is a three-dimensional structural diagram of the limiting frame and telescopic spring of this utility model.
[0020] The components are: 1-base, 2-processing box, 3-feeding frame, 4-motor, 5-gear, 6-crushing roller, 7-first transmission assembly, 8-reciprocating screw, 9-slider, 10-pulling rod, 11-guide rod, 12-vibrating frame, 13-first telescopic spring, 14-screening screen, 15-limiting frame, 16-second telescopic spring, 17-second transmission assembly, 18-extrusion frame, 19-cleaning frame. Detailed Implementation
[0021] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.
[0022] A waste recycling and processing device for PVC composite tile production, such as Figures 1-3 As shown, the device includes a base 1, a processing box 2, a feeding frame 3, a motor 4, gears 5, crushing rollers 6, a first transmission assembly 7, a reciprocating screw 8, a slider 9, a lever 10, and a screening assembly. The processing box 2 is connected to the upper left of the base 1. The processing box 2 has a structure that is wider at the top and narrower at the bottom for easy material discharge. The feeding frame 3 is connected to the upper side of the processing box 2. The motor 4 is connected to the upper front of the processing box 2. The motor 4 and the processor are electrically connected through a control module. Crushing rollers 6 are rotatably connected to both the left and right sides of the processing box 2. The output shaft of the motor 4 is connected to the adjacent crushing roller 6. Gears 5 are connected to the front of each crushing roller 6. The gears 5 mesh with each other. The reciprocating screw 8 is rotatably connected to the upper right of the feeding frame 3. The first transmission assembly 7 is provided between the reciprocating screw 8 and the crushing roller 6 on the right. The slider 9 is threadedly connected to the reciprocating screw 8. The slider 9 is slidably connected to the feeding frame 3. A lever 10 is connected to the slider 9. A screening assembly is provided in the middle of the processing box 2.
[0023] like Figure 3 As shown, the first transmission assembly 7 includes a first pulley and a first flat belt. The crushing roller 6 on the right and the front of the reciprocating screw 8 are both connected to the first pulley, and the first flat belt is wound between the first pulleys.
[0024] like Figures 1-5 As shown, the screening assembly includes guide rods 11, a vibrating frame 12, a first telescopic spring 13, a screening screen 14, a limiting frame 15, a second telescopic spring 16, a second transmission assembly 17, an extrusion frame 18, and a cleaning frame 19. Two guide rods 11 are connected to the inner sides of both the front and rear parts of the processing box 2. The vibrating frame 12 is slidably connected between the guide rods 11. A first telescopic spring 13 is connected between each guide rod 11 and the vibrating frame 12. The screening screen 14 is placed on the vibrating frame 12. The screening screen 14 has an inclined structure for easy material discharge. A limiting frame 15 is slidably connected to the lower right part of the vibrating frame 12. A second telescopic spring 16 is connected to both the front and rear parts of the limiting frame 15 and the vibrating frame 12. An extrusion frame 18 is rotatably connected to the lower part of the processing box 2. The extrusion frame 18 contacts the vibrating frame 12. A second transmission assembly 17 is provided between the extrusion frame 18 and the crushing roller 6 on the right side. A cleaning frame 19 is connected to the right side of the base 1.
[0025] like Figure 2 and Figure 3 As shown, it also includes a second transmission assembly 17, which includes a second pulley and a second flat belt. The crushing roller 6 on the right and the front of the extrusion frame 18 are both connected to the second pulley, and the second flat belt is wound around the second pulley.
[0026] When using this device, first place the base 1 in the PVC composite tile production waste recycling area, then add the PVC composite tile waste into the feed frame 3. Next, use the processor to start the motor 4 via the control module, driving the left crushing roller 6 and gear 5 to rotate. The gear 5 meshes with each other, driving the right crushing roller 6 to rotate. The crushing roller 6 crushes the PVC composite tile waste. Simultaneously, the rotation of the crushing roller 6 drives the first pulley on the first transmission assembly 7 to rotate, causing the first flat belt to rotate, which in turn rotates the reciprocating screw 8. This causes the slider 9 to move back and forth under the action of the screw thread, driving the actuating rod 10 to move back and forth. The actuating rod 10 actuates the PVC composite tile waste, thus actuating the waste while crushing it, preventing it from accumulating in one place, improving processing efficiency, and extending equipment life. The crushed PVC composite tile waste falls onto the screening screen 14. Simultaneously, the rotation of the crushing roller 6 drives the second transmission assembly... The second pulley on component 17 rotates, causing the second flat belt to rotate, which in turn drives the extrusion frame 18 to rotate. This causes the extrusion frame 18 to press against the vibrating frame 12, which in turn moves up and down on the guide rod 11. The first telescopic spring 13, after being compressed and contracted, returns to its original state, allowing the dust adhering to the waste material to be discharged from below the processing box 2 through the screening screen 14. This allows the PVC composite tile waste to be discharged along the screening screen 14 into the cleaning frame 19 for cleaning. This process can shake off the dust adhering to the PVC composite tile waste while crushing, preventing the cleaning equipment from being clogged due to excessive dust during cleaning and improving the cleaning effect. When it is necessary to disassemble and clean the screening screen 14, the limiting frame 15 can be moved downwards, and the second telescopic spring 16 can be stretched, so that the limiting frame 15 is no longer stuck to the screening screen 14. Then, the screening screen 14 can be removed, and the limiting frame 15 can be released. The second telescopic spring 16 returns to its original state, causing the limiting frame 15 to move back to its original position. This allows for easy disassembly of the screening screen 14 for cleaning or replacement.
[0027] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A waste recycling and processing device for PVC composite tile production, characterized in that: The system includes a base (1), a processing box (2), a feed frame (3), a motor (4), a gear (5), a crushing roller (6), a first transmission assembly (7), a reciprocating screw (8), a slider (9), a lever (10), and a screening assembly. The processing box (2) is connected to the upper left of the base (1), and the feed frame (3) is connected to the upper side of the processing box (2). The motor (4) is connected to the upper front of the processing box (2). The motor (4) and the processor are electrically connected through a control module. The crushing roller (6) is rotatably connected to both the left and right sides of the processing box (2). The output shaft of the motor (4) It is connected to the adjacent crushing roller (6), and the front of the crushing roller (6) is connected to a gear (5). The gears (5) mesh with each other. The upper right part of the feed frame (3) is rotatably connected to a reciprocating screw (8). A first transmission component (7) is provided between the reciprocating screw (8) and the crushing roller (6) on the right. A slider (9) is threadedly connected to the reciprocating screw (8). The slider (9) is slidably connected to the feed frame (3). A toggle rod (10) is connected to the slider (9). A screening component that can vibrate and screen the crushed waste at the same time is provided in the middle of the processing box (2).
2. The PVC composite tile production waste recycling and processing device as described in claim 1, characterized in that: The processing box (2) has a structure that is wider at the top and narrower at the bottom.
3. The PVC composite tile production waste recycling and processing device as described in claim 1, characterized in that: The first transmission assembly (7) includes a first pulley and a first flat belt. The crushing roller (6) on the right and the front of the reciprocating screw (8) are both connected to the first pulley, and the first flat belt is wound between the first pulleys.
4. The PVC composite tile production waste recycling and processing device as described in claim 1, characterized in that: The screening assembly includes guide rods (11), a vibrating frame (12), a first telescopic spring (13), a screening screen (14), a limiting frame (15), a second telescopic spring (16), a second transmission assembly (17), an extrusion frame (18), and a cleaning frame (19). The processing box (2) has two guide rods (11) connected to the inner sides of both the front and rear sides. The vibrating frame (12) is slidably connected between the guide rods (11), and a first telescopic spring (13) connects each guide rod (11) to the vibrating frame (12). A screening screen (14) is placed on the vibrating frame (12). A limiting frame (15) is slidably connected to the lower right part of the vibrating frame (12). A second telescopic spring (16) is connected between the front and rear parts of the limiting frame (15) and the vibrating frame (12). A pressing frame (18) is rotatably connected to the lower part of the processing box (2). The pressing frame (18) is in contact with the vibrating frame (12). A second transmission component (17) is provided between the pressing frame (18) and the crushing roller (6) on the right. A cleaning frame (19) is connected to the right side of the base (1).
5. The PVC composite tile production waste recycling and processing device as described in claim 4, characterized in that: The screening screen (14) has an inclined structure.
6. The PVC composite tile production waste recycling and processing device as described in claim 4, characterized in that: It also includes a second transmission assembly (17), which includes a second pulley and a second flat belt. The crushing roller (6) on the right and the front of the extrusion frame (18) are both connected to the second pulley, and the second flat belt is wound between the second pulleys.