Waste cleaning mechanism
By combining a negative pressure exhaust assembly and a blower tube, the problem of wire ends falling off during coil product processing is solved, enabling efficient cleaning and recycling of waste materials and improving product quality and the cleanliness of the work environment.
Patent Information
- Application Number
- CN202423293536.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-27
AI Technical Summary
During the processing of coil products, the cut wire ends are prone to falling off, affecting product quality, causing cross-contamination, and being inconvenient to recycle.
It adopts a combination structure of negative pressure exhaust assembly and air blowing pipe. The exhaust pipe draws in the waste and the air blowing pipe blows out the air to quickly clean the waste on the fixture. The guide plate guides the waste, and the combination of moving seat and drive assembly realizes automatic adjustment and integrates a high-efficiency recycling system.
It effectively avoids waste residue, improves product quality and workplace cleanliness, and achieves efficient recycling and reuse of waste.
Smart Images

Figure CN223763352U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of waste cleaning, and specifically relates to a waste cleaning mechanism. Background Technology
[0002] In the processing of coil products or other wire products, there is a shearing process to cut off the wire ends; however, in the existing shearing equipment, the cut wire ends are prone to falling off, which can cause the following problems:
[0003] 1. When waste thread ends cut by scissors fall onto the product, they can easily affect the product quality;
[0004] 2. When the waste wire ends cut off by scissors fall onto the workstation, they can easily cause cross-contamination;
[0005] 3. Scattered waste wire ends are inconvenient to collect, which affects the efficiency of waste wire end recycling and reuse.
[0006] Therefore, there is an urgent need for a waste cleaning structure that can clean and collect waste materials. Utility Model Content
[0007] To address the aforementioned problems, the present invention aims to provide a waste cleaning mechanism that can effectively clean up waste, achieve waste recycling, and prevent waste from falling and affecting product quality and the work environment.
[0008] To solve the above problems, the technical solution of this utility model is as follows.
[0009] A waste disposal mechanism, characterized in that it comprises:
[0010] A negative pressure exhaust assembly for generating negative pressure for ventilation, the negative pressure exhaust assembly including a negative pressure exhaust pipe for ventilation.
[0011] Waste suction pipe assembly, the waste suction pipe assembly includes at least one waste suction pipe, one end of the waste suction pipe is connected to the negative pressure exhaust pipe, and the other end of the waste suction pipe is provided with a waste suction port for suctioning waste material, which is set on one side of the external clamp.
[0012] A blower assembly includes at least one blower, one end of which has an air source interface for connecting to an external air source, and the other end of which has a first air outlet for placement on the other side of an external clamp, the first air outlet corresponding to the waste suction port.
[0013] In this mechanism, under the action of the negative pressure exhaust component, waste material on the cleaning fixture can be sucked up through the suction port of the waste suction pipe. At the same time, airflow can be blown out through the first air outlet of the blower pipe to accelerate the suction of waste material on the cleaning fixture and effectively prevent waste residue. In other words, through the setting of this mechanism, waste material can be cleaned efficiently and quickly, waste material can be recycled, and waste falling can be more effectively prevented from affecting product quality and the work environment.
[0014] Furthermore, the other end of the waste suction pipe is provided with a guide plate for extending into an external clamp to guide the waste suction, and the guide plate corresponds to the waste suction port.
[0015] Furthermore, the waste suction pipe assembly includes multiple waste suction pipes, and the air blowing pipe assembly includes multiple air blowing pipes.
[0016] Furthermore, the mechanism also includes a tray with clamp positions for supporting external clamps, and the waste suction port and the first air blowing port are located on both sides above the clamp positions.
[0017] Furthermore, baffles are provided on both sides of the tray.
[0018] Furthermore, the mechanism also includes a movable seat, on which the waste suction pipe assembly is mounted, and the movable seat is movably mounted on a tray.
[0019] Furthermore, the mechanism also includes a waste suction displacement drive assembly for controlling the moving seat to move closer to or away from the external clamp. The waste suction displacement drive assembly is fixedly mounted on the tray and is drivenly connected to the moving seat.
[0020] Furthermore, the waste suction displacement drive assembly includes a waste suction displacement drive cylinder, which is fixedly mounted on the tray and is drivenly connected to the movable seat.
[0021] Furthermore, the device also includes a cleaning box assembly for adsorbing residual waste from external shearing equipment. The cleaning box assembly includes at least one cleaning box, which has a cleaning chamber. The cleaning box has a cleaning port that extends into the cleaning chamber, and the negative pressure exhaust pipe is connected to the cleaning chamber.
[0022] Furthermore, a cleaning negative pressure port connected to the cleaning chamber is provided on the rear side of the cleaning box, and the negative pressure exhaust pipe is connected to the cleaning negative pressure port. At least one side of the left, right, and front sides of the cleaning box is provided with a second air blowing port for connecting an external air source to blow air, and the second air blowing port is connected to the cleaning chamber.
[0023] Furthermore, the cleaning box assembly includes multiple cleaning boxes.
[0024] Furthermore, the negative pressure exhaust assembly includes a high-pressure blower and a waste collection bin, wherein the high-pressure blower is connected to the waste collection bin, and the negative pressure exhaust pipe is connected to the waste collection bin.
[0025] The beneficial effects of this utility model are that, in this mechanism, under the action of the negative pressure exhaust component, waste material on the cleaning fixture can be sucked up through the waste suction port of the waste suction pipe. At the same time, airflow can be blown out through the first air blowing port of the air blowing pipe to accelerate the suction of waste material on the cleaning fixture, while effectively avoiding waste residue. That is, through the setting of this mechanism, waste material can be cleaned efficiently and quickly, waste material can be recycled, and waste material falling can be more effectively prevented from affecting product quality and the work environment. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of this utility model.
[0027] Figure 2 This is a structural schematic diagram of the concealed negative pressure exhaust component of this utility model.
[0028] Figure 3 yes Figure 2 A magnified view of a portion at point A.
[0029] 1. Negative pressure exhaust assembly; 11. Negative pressure exhaust pipe; 12. High-pressure blower; 13. Waste collection bin; 2. Waste suction pipe assembly; 21. Waste suction pipe; 211. Waste suction port; 212. Guide plate;
[0030] 3. Air blower assembly; 31. Air blower; 311. Air source interface; 312. First air outlet;
[0031] 4. Pallet; 41. Fixture position; 42. Baffle;
[0032] 5. Portable seat;
[0033] 6. Waste suction displacement drive assembly; 61. Waste suction displacement drive cylinder;
[0034] 7. Cleaning box assembly; 71. Cleaning box; 711. Cleaning chamber; 712. Cleaning port; 713. Cleaning negative pressure port; 714. Second air blowing port.
[0035] 8. Air-blowing displacement drive assembly; 81. Air-blowing displacement drive cylinder;
[0036] 9. External clamps. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0038] See Figure 1-3 This embodiment provides a waste cleaning mechanism, including:
[0039] The negative pressure exhaust assembly 1 is used to generate negative pressure for ventilation. The negative pressure exhaust assembly 1 includes a negative pressure exhaust pipe 11 for ventilation.
[0040] Waste suction pipe assembly 2 includes at least one waste suction pipe 21. One end of the waste suction pipe 21 is connected to the negative pressure exhaust pipe 11, and the other end of the waste suction pipe 21 is provided with a waste suction port 211 for suctioning waste material, which is located on one side of the external clamp 9.
[0041] The air blowing tube assembly 3 includes at least one air blowing tube 31. One end of the air blowing tube 31 is formed with an air source interface 311 for connecting to an external air source, and the other end of the air blowing tube 31 is formed with a first air blowing port 312 for being set on the other side of the external clamp 9. The first air blowing port 312 corresponds to the waste suction port 211. Specifically, the external air source is provided by existing technology, such as by providing it through existing external air source equipment.
[0042] Under the action of the negative pressure exhaust assembly 1, the waste on the cleaning fixture can be sucked up through the waste suction port 211 of the waste suction pipe 21. At the same time, airflow can be blown out through the first air blowing port 312 of the air blowing pipe 31 to accelerate the suction of the waste on the cleaning fixture through the waste suction port 211, and at the same time, the waste residue can be effectively avoided.
[0043] In this embodiment, the other end of the waste suction pipe 21 is provided with a guide plate 212 for extending into the external clamp 9 to guide the waste suction. The guide plate 212 corresponds to the waste suction port 211. By inserting the guide plate 212 into the side of the processing position of the external clamp 9, the waste generated at the processing position can be guided, and waste recycling can be performed more effectively.
[0044] In this embodiment, the waste suction pipe assembly 2 includes multiple waste suction pipes 21, and the air blowing pipe assembly 3 includes multiple air blowing pipes 31. The arrangement of multiple air blowing pipes 31 and multiple waste suction pipes 21 allows for simultaneous waste recovery from multiple processing positions of the external fixture 9.
[0045] In this embodiment, the mechanism also includes a tray 4, on which a clamp position 41 for supporting an external clamp 9 is provided. The waste suction port 211 and the first air blowing port 312 are located on both sides above the clamp position 41.
[0046] In this embodiment, baffles 42 are provided on both sides of the tray 4.
[0047] In this embodiment, the mechanism further includes a movable seat 5, on which the waste suction tube assembly 2 is mounted. The movable seat 5 is movably mounted on the tray 4 via a slider rail structure. This movable connection between the movable seat 5 and the tray 4 allows for quick adjustment of the position of the waste suction tube assembly 2 as needed by adjusting the position of the movable seat 5.
[0048] In this embodiment, the mechanism further includes a waste suction displacement drive assembly 6 for controlling the movable seat 5 to move closer to or further away from the external clamp 9. The waste suction displacement drive assembly 6 is fixedly mounted on the tray 4 and is drivenly connected to the movable seat 5. The arrangement of this displacement drive assembly allows the movable seat 5 to automatically adjust its position.
[0049] In this embodiment, the waste suction displacement drive assembly 6 includes a waste suction displacement drive cylinder 61, which is fixedly mounted on the tray 4 and is drivenly connected to the movable seat 5.
[0050] In this embodiment, the mechanism further includes an air displacement drive assembly 8 for controlling the air blowing tube assembly 3 to move closer to or further away from the external clamp 9. The air displacement drive assembly 8 is fixedly mounted on the tray 4 and is drivenly connected to the air blowing tube assembly 3.
[0051] In this embodiment, the air blowing displacement drive assembly 8 includes an air blowing displacement drive cylinder 81, which is fixedly mounted on the tray 4 and is drivenly connected to the air blowing pipe assembly 3.
[0052] In this embodiment, the mechanism further includes a cleaning box assembly 7 for adsorbing residual waste from the external shearing equipment. The cleaning box assembly 7 includes at least one cleaning box 71, with a cleaning chamber 711 inside the cleaning box 71. A cleaning port 712 is provided on the cleaning box 71, extending into the cleaning chamber 711, and a negative pressure exhaust pipe 11 is connected to the cleaning chamber 711. Specifically, after the external shearing equipment completes shearing at the processing position of the external fixture 9, it can move to the cleaning box 71 and extend the shearing blade into the cleaning chamber 711 through the cleaning port 712 to adsorb the residual waste on the shearing blade of the external shearing equipment.
[0053] In this embodiment, a cleaning negative pressure port 713 connected to the cleaning chamber 711 is provided on the rear side of the cleaning box 71. The negative pressure exhaust pipe 11 is connected to the cleaning negative pressure port 713. At least one side of the left, right, and front sides of the cleaning box 71 is provided with a second air blowing port 714 for connecting to an external air source for blowing air. The second air blowing port 714 is connected to the cleaning chamber 711. The provision of the second air blowing port 714 can blow off the waste material remaining on the shearing blades of the external shearing equipment, which can more effectively clean the waste material remaining on the shearing blades of the external shearing equipment.
[0054] In this embodiment, the cleaning box assembly 7 includes multiple cleaning boxes 71. These multiple cleaning boxes 71 can simultaneously clean the waste material remaining on multiple shearing blades of the external shearing equipment.
[0055] In this embodiment, the negative pressure exhaust assembly 1 includes a high-pressure blower 12 and a waste collection bin 13. The high-pressure blower 12 is connected to the upper end of the waste collection bin 13, and the negative pressure exhaust pipe 11 is also connected to the upper end of the waste collection bin 13. Specifically, when the high-pressure blower 12 is working, it generates negative pressure through the negative pressure exhaust pipe 11 to draw waste into the waste collection bin 13. It is known that a filter screen can be used to filter the waste at the connection between the high-pressure blower 12 and the waste collection bin 13.
[0056] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements 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 scrap cleaning mechanism, characterized by, The utility model relates to a kind of negative pressure exhaust components for generating negative pressure to exhaust, and the negative pressure exhaust components include the negative pressure exhaust pipe for exhaust; The exhaust pipe group includes at least one exhaust pipe, one end of the exhaust pipe is connected with the negative pressure exhaust pipe, and the other end of the exhaust pipe is provided with an exhaust port for being arranged at one side of the external clamp to suck waste materials; The blowing pipe group includes at least one blowing pipe, one end of the blowing pipe is formed with a gas source interface connected with a gas source, and the other end of the blowing pipe is formed with a first blowing port for being arranged at the other side of the external clamp, which corresponds to the exhaust port. The other end of the exhaust pipe is provided with a guide plate for extending into the external clamp to guide the suction of waste materials, and the guide plate corresponds to the exhaust port.
2. A scrap cleaning mechanism according to claim 1, wherein The blowing pipe group includes a plurality of blowing pipes.
3. A scrap cleaning mechanism according to claim 2, wherein, The mechanism further includes a tray, the tray is provided with a clamp position for carrying the external clamp, and the exhaust port and the first blowing port are respectively located at two sides above the clamp position.
4. A scrap cleaning mechanism according to claim 1, wherein The mechanism further includes a moving seat, the exhaust pipe group is arranged on the moving seat, and the moving seat is movably arranged on the tray.
5. A scrap cleaning mechanism according to claim 4, wherein, The mechanism further includes a waste suction displacement driving assembly for controlling the moving seat to approach or move away from the external clamp, the waste suction displacement driving assembly is fixedly arranged on the tray, and the waste suction displacement driving assembly is drivingly connected with the moving seat.
6. A scrap cleaning mechanism according to claim 5, wherein, The mechanism further includes a cleaning box group for adsorbing residual waste materials on the external shearing equipment, the cleaning box group includes at least one cleaning box, the cleaning box is provided with a cleaning cavity, the cleaning box is provided with a cleaning port penetrating into the cleaning cavity, and the negative pressure exhaust pipe is connected with the cleaning cavity.
7. A scrap cleaning mechanism according to any one of claims 1-6, characterized in that, The rear side of the cleaning box is provided with a cleaning negative pressure port connected with the cleaning cavity, the negative pressure exhaust pipe is connected with the cleaning negative pressure port, at least one side of the left side, the right side and the front side of the cleaning box is provided with a second blowing port for connecting with a gas source to blow air, and the second blowing port is connected with the cleaning cavity.
8. A scrap cleaning mechanism according to claim 7, wherein, The cleaning box group includes a plurality of cleaning boxes.
9. A scrap cleaning mechanism according to claim 7, wherein, The negative pressure exhaust assembly includes a high-pressure fan and a waste collection barrel, the high-pressure fan is connected with the waste collection barrel, and the negative pressure exhaust pipe is connected with the waste collection barrel.
10. A scrap cleaning mechanism according to any one of claims 1-6, characterized in that,