Tailing collecting device capable of avoiding waste accumulation for mask production

By designing a device for crushing and compressing tailings, the problems of high labor intensity and large space occupation in tailings collection were solved, achieving efficient tailings collection and transportation.

CN224072968UActive Publication Date: 2026-04-03XIANTAO HUIXIN MEDICAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-04-03

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Abstract

The tailing collecting device comprises a collecting box, a first cavity and a fourth cavity which are communicated with each other are formed in the upper end of the collecting box, a receiving hopper communicated with the first cavity is fastened to the top of one end of the collecting box, and rotating shafts rotationally connected with the receiving hopper are symmetrically arranged at the lower end of the receiving hopper. Crushing blades are coaxially connected to the outer wall of the rotating shaft, and a motor is fixedly connected to one end of the rotating shaft; the inner top surface of the fourth cavity is connected with a pressing plate through a first electric push rod, a partition plate is fastened to the side, away from the first cavity, of the fourth cavity, a push plate is arranged between the position under the partition plate and the inner bottom surface of the fourth cavity, and the push plate is connected with the side wall of the fourth cavity through a second electric push rod; according to the tailing collecting device, tailings can be smashed, the smashed tailings can be compressed to form a three-dimensional blocky structure, the space utilization rate in the collecting device is effectively increased, and accumulation of waste materials is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of mask production technology, specifically to a tail material collection device for mask production that can prevent waste accumulation. Background Technology

[0002] A face mask is a hygiene product, generally worn over the mouth and nose to filter the air entering the mouth and nose, thereby blocking harmful gases, odors, droplets, viruses and other substances. During the production of face masks, cutting equipment is used to cut the raw materials into the required shapes and sizes, which will generate some waste materials. These waste materials need to be collected and bagged for recycling to prevent environmental pollution.

[0003] Existing waste material collection devices mostly rely on manual labor, involving loading and compacting the waste material into collection bags. This results in high labor intensity and low work efficiency for workers. Furthermore, since the waste material is often irregularly shaped, it occupies a large storage space when stacked, leading to insufficient waste material capacity within the waste material transport device and hindering waste material collection. Therefore, we propose a waste material collection device for mask production that avoids waste material accumulation. Utility Model Content

[0004] Given that most existing waste materials have irregular structures, they occupy a large storage space when stacked, resulting in insufficient waste material capacity inside the waste material transport device and hindering waste material collection, this utility model provides a waste material collection device for mask production that avoids waste material accumulation. It has the advantages of simple structure, avoids waste material accumulation, and improves the practicality of the device, thus solving the problems mentioned in the background art.

[0005] The technical solution of this utility model is implemented as follows: A waste material collection device for mask production that can avoid waste accumulation includes a collection box. The upper end of the collection box is provided with a first chamber and a fourth chamber that are interconnected. A receiving hopper communicating with the first chamber is tightly attached to the top of one end of the collection box. A rotating shaft symmetrically connected to the receiving hopper is provided at the lower end of the receiving hopper. A crushing blade is coaxially connected to the outer wall of the rotating shaft. A motor is fixedly connected to one end of the rotating shaft. A pressure plate is connected to the upper surface of the fourth chamber through a first electric push rod. A partition is tightly attached to the side of the fourth chamber away from the first chamber. A push plate is provided between the partition and the bottom surface of the fourth chamber. The push plate is connected to the side wall of the fourth chamber through a second electric push rod. A second chamber is provided directly below the first chamber. An opening is provided between the upper end of the second chamber and the fourth chamber. A sealing plate is rotatably connected to the upper end of the opening to seal it. A discharge port is provided on one side of the second chamber. A material holding box is slidably provided in the discharge port.

[0006] Optionally, a third electric push rod is rotatably connected between the sealing plate and the inner top of the second chamber, and both ends of the third electric push rod are rotatably connected to hinge seats, with the two hinge seats respectively connected to the inner top of the second chamber and the sealing plate.

[0007] Optionally, a plurality of first guide mechanisms are connected between the top of the pressure plate and the top surface of the fourth chamber. The first guide mechanism includes two second guide tubes that are coaxially arranged and slidably connected. The two ends of the two second guide tubes are respectively connected to the top of the pressure plate and the top surface of the fourth chamber.

[0008] Optionally, multiple second guide mechanisms are connected between the side wall of the push plate and the inner wall of the fourth chamber. The second guide mechanism includes two coaxially arranged and slidably connected first guide tubes, with the two ends of the two first guide tubes respectively connected to the side wall of the push plate and the inner wall of the fourth chamber.

[0009] Optionally, a guide plate located below the crushing blade is connected to the first chamber, and the end of the guide plate extends to the fourth chamber.

[0010] Optionally, the collection box is also equipped with a third chamber, with a sealed door rotatably connected to one side of the third chamber, and a storage battery is placed inside the third chamber, connecting the first electric push rod, the second electric push rod, the third electric push rod and the motor to the storage battery.

[0011] Optionally, multiple ventilation openings may be provided on the side wall of the third chamber.

[0012] Optionally, a base is also included, with the collection box connected to the top of the base, and wheels connected to the four corners of the bottom of the base, and a handrail fixedly connected to the side of the base away from the receiving hopper.

[0013] Compared with the prior art, this utility model can crush the tailings under the crushing action of the rotating crushing blades. After crushing, the tailings are pressed by the pressure plate, and the fragmented tailings are formed into a compressed three-dimensional block structure, which effectively improves the space utilization rate in the collection device. The compressed tailings are pushed by the pusher plate to move into the second chamber and fall into the collection box for centralized processing. It not only has a simple structure but also avoids the accumulation of waste and improves the practicality of the device. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1This is a schematic diagram of the structure of the present invention. Figure 1 .

[0016] Figure 2 This is a schematic diagram of the structure of the present invention. Figure 2 .

[0017] Figure 3 This is a schematic diagram of the internal structure of the present invention. Figure 1 .

[0018] Figure 4 This is a schematic diagram of the internal structure of the present invention. Figure 2 .

[0019] Figure 5 This is a cross-sectional view of the present invention.

[0020] In the diagram: 1. Motor; 2. Crushing blade; 3. Rotating shaft; 4. Receiving hopper; 5. First electric push rod; 6. Collection box; 7. Handrail; 8. Ventilation vent; 9. Wheels; 10. Base; 11. Sealing door; 12. Discharge port; 13. Material holding box; 14. Hinge seat; 15. Guide plate; 16. First chamber; 17. Second chamber; 18. Sealing plate; 19. Push plate; 20. Battery; 21. Third chamber; 22. Fourth chamber; 23. Second electric push rod; 24. First guide tube; 25. Second guide tube; 26. Pressure plate; 27. Third electric push rod; 28. Partition plate. Detailed Implementation

[0021] The technical solution of this utility model will be clearly and completely described below with reference to its embodiments. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0022] Reference Figures 1 to 5 This utility model provides a technical solution: a waste material collection device for mask production that can avoid waste accumulation, including a collection box 6. The upper end of the collection box 6 is provided with a first chamber 16 and a fourth chamber 22 that are interconnected. A receiving hopper 4 communicating with the first chamber 16 is tightly attached to the top of one end of the collection box 6. The lower end of the receiving hopper 4 is symmetrically provided with a rotating shaft 3 that is rotatably connected to it, and a crushing blade 2 is coaxially connected to the outer wall of the rotating shaft 3. A motor 1 is fixedly connected to one end of the rotating shaft 3. Figure 2 , 3As shown, the tail material falling into the receiving hopper 4 comes into contact with the crushing blade 2 and can be crushed under the action of the rotating crushing blade 2. The crushed tail material can effectively improve the space utilization rate in the collection device. In order to facilitate the rapid fall of the crushed tail material, a guide plate 15 located below the crushing blade 2 is connected in the first chamber 16, and the end of the guide plate 15 extends to the fourth chamber 22.

[0023] like Figure 3 , 4 As shown, a pressure plate 26 is connected to the top surface of the fourth chamber 22 via a first electric push rod 5. To improve the stability of the lifting and lowering of the pressure plate 26, multiple first guide mechanisms are connected between the top of the pressure plate 26 and the top surface of the fourth chamber 22. The first guide mechanism includes two coaxially arranged and slidably connected second guide tubes 25. The two ends of the two second guide tubes 25 are respectively connected to the top of the pressure plate 26 and the top surface of the fourth chamber 22. The tail material debris falling from the first chamber 16 accumulates on the bottom surface of the fourth chamber 22. By controlling the first electric push rod 5 to push the pressure plate 26 down, the tail material debris can be pressed, so that the fragmented tail material can form a compressed three-dimensional block structure, which further facilitates the collection of tail material.

[0024] like Figure 3 , 4 As shown in Figure 5, a partition plate 28 is fixedly attached to the side of the fourth chamber 22 away from the first chamber 16. In order to facilitate the discharge and collection of the crushed tailings, a push plate 19 is provided between the partition plate 28 and the inner bottom surface of the fourth chamber 22. The push plate 19 is connected to the side wall of the fourth chamber 22 through a second electric push rod 23. At the same time, in order to improve the sliding stability of the push plate 19, multiple second guide mechanisms are connected between the side wall of the push plate 19 and the inner wall of the fourth chamber 22. The second guide mechanism includes two coaxially arranged and slidably connected first guide tubes 24. The two ends of the two first guide tubes 24 are respectively connected to the side wall of the push plate 19 and the inner wall of the fourth chamber 22.

[0025] like Figure 3 , 4As shown, a second chamber 17 is located directly below the first chamber 16. An opening is provided between the upper end of the second chamber 17 and the fourth chamber 22, and a sealing plate 18 is rotatably connected to the upper end of the opening to seal it. This can limit the tail material in the form of fragments during pressing and processing, which facilitates the compression of the tail material fragments. At the same time, in order to improve the placement stability of the sealing plate 18 at the opening, a third electric push rod 27 is rotatably connected between the sealing plate 18 and the inner top of the second chamber 17. Both ends of the third electric push rod 27 are rotatably connected to hinge seats 14. The two hinge seats 14 are respectively connected to the inner top of the second chamber 17 and the sealing plate 18. A discharge port 12 is provided on one side of the second chamber 17, and a material collection box 13 is slidably provided in the discharge port 12. The compressed tail material fragments can be moved into the second chamber 17 by the push plate 19. The falling tail material falls into the material collection box 13, which is conducive to the centralized collection and processing of tail material.

[0026] In summary, this waste collection device for mask production that avoids waste accumulation includes a third chamber 21 inside the collection box 6. A sealing door 11 is rotatably connected to one side of the third chamber 21, and a storage battery 20 is placed inside the third chamber 21. The first electric push rod 5, the second electric push rod 23, the third electric push rod 27, and the motor 1 are connected to the storage battery 20. To improve ventilation in the third chamber 21, multiple ventilation openings 8 are opened on the side wall of the third chamber 21.

[0027] This utility model also includes a base 10, on which the collection box 6 is connected to the top of the base 10, and at the four corners of the bottom of the base 10, there are walking wheels 9, which saves the user manpower when moving the device. A handrail 7 is fixedly connected to the side of the base 10 away from the receiving hopper 4, which can further facilitate the user to move and use the device.

[0028] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. 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 collection device for mask production that avoids waste accumulation, comprising a collection box (6), characterized in that, The upper end of the collection box (6) is provided with a first chamber (16) and a fourth chamber (22) that are interconnected. The top of one end of the collection box (6) is tightly fitted with a receiving hopper (4) that is connected to the first chamber (16). The lower end of the receiving hopper (4) is symmetrically provided with a rotating shaft (3) that is rotatably connected to it. A crushing blade (2) is coaxially connected to the outer wall of the rotating shaft (3). A motor (1) is fixedly connected to one end of the rotating shaft (3). A pressure plate (26) is connected to the top surface of the fourth chamber (22) via a first electric push rod (5), and a partition plate (28) is fastened to the side of the fourth chamber (22) away from the first chamber (16). A push plate (19) is provided between the partition plate (28) and the bottom surface of the fourth chamber (22), and the push plate (19) is connected to the side wall of the fourth chamber (22) via a second electric push rod (23). The second chamber (17) is located directly below the first chamber (16). An opening is provided between the upper end of the second chamber (17) and the fourth chamber (22), and a sealing plate (18) is rotatably connected to the upper end of the opening to seal it. A discharge port (12) is provided on one side of the second chamber (17), and a material container (13) is slidably provided in the discharge port (12).

2. The mask production waste collection device as described in claim 1, characterized in that, A third electric push rod (27) is rotatably connected between the sealing plate (18) and the inner top of the second chamber (17), and both ends of the third electric push rod (27) are rotatably connected to hinge seats (14). The two hinge seats (14) are respectively connected to the inner top of the second chamber (17) and the sealing plate (18).

3. The mask production waste collection device as described in claim 1, characterized in that, Multiple first guide mechanisms are connected between the top of the pressure plate (26) and the top surface of the fourth chamber (22). The first guide mechanism includes two coaxially arranged and slidably connected second guide tubes (25). The two ends of the two second guide tubes (25) are respectively connected to the top of the pressure plate (26) and the top surface of the fourth chamber (22).

4. The mask production waste collection device as described in claim 3, characterized in that, Multiple second guide mechanisms are connected between the side wall of the push plate (19) and the inner wall of the fourth chamber (22). The second guide mechanism includes two coaxially arranged and slidably connected first guide tubes (24). The two ends of the two first guide tubes (24) are respectively connected to the side wall of the push plate (19) and the inner wall of the fourth chamber (22).

5. The mask production waste collection device as described in claim 1, characterized in that, The first chamber (16) is connected to a guide plate (15) located below the crushing blade (2), and the end of the guide plate (15) extends to the fourth chamber (22).

6. The waste material collection device for mask production as described in any one of claims 2-5, characterized in that, The collection box (6) is also equipped with a third chamber (21). A sealing door (11) is rotatably connected to one side of the third chamber (21). A storage battery (20) is placed in the third chamber (21). The first electric push rod (5), the second electric push rod (23), the third electric push rod (27) and the motor (1) are connected to the storage battery (20).

7. The mask production waste collection device as described in claim 6, characterized in that, Multiple ventilation openings (8) are provided on the side wall of the third chamber (21).

8. The mask production waste collection device as described in claim 6, characterized in that, It also includes a base (10), a collection box (6) connected to the top of the base (10), and four corners of the bottom of the base (10) are connected to walking wheels (9), and a handrail (7) is fixedly connected to the side of the base (10) away from the receiving hopper (4).