CN223763352U - Waste material clearance mechanism - Google Patents
Waste material clearance mechanismInfo
- Publication number
- CN223763352U CN223763352U CN202423293536.5U CN202423293536U CN223763352U CN 223763352 U CN223763352 U CN 223763352U CN 202423293536 U CN202423293536 U CN 202423293536U CN 223763352 U CN223763352 U CN 223763352U
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- CN
- China
- Prior art keywords
- waste
- cleaning
- negative pressure
- pipe
- port
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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- Cleaning In General (AREA)
Abstract
The utility model belongs to the field of waste cleaning, and particularly relates to a waste cleaning mechanism which comprises a negative pressure exhaust assembly used for generating negative pressure to exhaust air, a waste suction pipe set, a blowing pipe set and a blowing pipe set, wherein the negative pressure exhaust assembly comprises a negative pressure exhaust pipe used for exhausting air, the waste suction pipe set comprises at least one waste suction pipe, one end of the waste suction pipe is communicated with the negative pressure exhaust pipe, the other end of the waste suction pipe is provided with a waste suction port used for sucking waste, the waste suction port is arranged at one side of an external clamp, the blowing pipe set comprises at least one blowing pipe, one end of the blowing pipe is provided with an air source interface of an external air source, the other end of the blowing pipe is provided with a first blowing port used for being arranged at the other side of the external clamp, and the first blowing port corresponds to the waste suction port. According to the utility model, through the arrangement of the mechanism, the waste can be cleaned efficiently and rapidly, the recovery of the waste is realized, and meanwhile, the influence of falling of the waste on the product quality and the station environment can be effectively avoided.
Description
Technical Field
The utility model belongs to the field of waste material cleaning, and particularly relates to a waste material cleaning mechanism.
Background
In the process of processing coil products or other wire products, there is a shearing process of shearing the coil ends, however, in the shearing process of the existing shearing equipment, the sheared coil ends are easy to drop, and the dropped coil ends easily cause the following problems:
1. When the waste wire heads cut by the scissors fall on the products, the quality of the products is easily affected;
2. When the waste wire heads cut by the scissors fall on the stations, cross contamination is easily caused;
3. the scattered waste wire heads are inconvenient to recover, and the recovery and reutilization efficiency of the waste wire heads are affected.
Therefore, there is a need for a waste cleaning structure that cleans and collects waste.
Disclosure of utility model
In order to solve the above problems, an object of the present utility model is to provide a waste cleaning mechanism, which can effectively clean waste, realize recycling of waste, and prevent waste from falling to affect product quality and station environment.
In order to solve the problems, the technical scheme of the utility model is as follows.
A scrap removal mechanism, comprising:
The negative pressure exhaust assembly is used for generating negative pressure for exhausting, and comprises a negative pressure exhaust tube used for exhausting;
the waste suction pipe group comprises at least one waste suction pipe, one end of the waste suction pipe is communicated with the negative pressure exhaust pipe, and the other end of the waste suction pipe is provided with a waste suction port which is arranged at one side of the external clamp and used for sucking waste;
The blowing pipe group comprises at least one blowing pipe, one end of the blowing pipe is provided with an air source interface externally connected with an air source, the other end of the blowing pipe is provided with a first air blowing port arranged at the other side of the external clamp, and the first air blowing port corresponds to the waste suction port.
In the mechanism, under the action of the negative pressure air draft assembly, waste on the cleaning clamp can be sucked through the waste suction port of the waste suction pipe, meanwhile, air flow can be blown out through the first air blowing port of the air blowing pipe, so that the waste suction port can be accelerated to suck the waste on the cleaning clamp, and meanwhile, the residue of the waste can be effectively avoided, namely, the waste can be efficiently and rapidly cleaned through the arrangement of the mechanism, the recovery of the waste is realized, and meanwhile, the influence of the falling of the waste on the product quality and the station environment can be more effectively avoided.
Further, the other end of the waste suction pipe is provided with a guide plate which is used for extending into the external clamp to guide the suction of waste, and the guide plate corresponds to the waste suction port.
Further, the waste suction pipe group comprises a plurality of waste suction pipes, and the blowing pipe group comprises a plurality of blowing pipes.
Further, the mechanism further comprises a tray, a clamp position for bearing an external clamp is arranged on the tray, and the waste suction port and the first air blowing port are respectively positioned at two sides above the clamp position.
Further, baffles are arranged on two sides of the tray.
Further, the mechanism also comprises a movable seat, the waste suction pipe group is arranged on the movable seat, and the movable seat is movably arranged on the tray.
Further, the mechanism further comprises a waste suction displacement driving assembly for controlling the movable seat to be close to or far 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 in driving connection with the movable seat.
Further, the waste suction displacement driving assembly comprises a waste suction displacement driving cylinder which is fixedly arranged on the tray, and the waste suction displacement driving cylinder is in driving connection with the movable seat.
Further, the mechanism further comprises a cleaning box group for adsorbing residual waste materials on external shearing equipment, the cleaning box group comprises at least one cleaning box, a cleaning cavity is arranged in the cleaning box, a cleaning opening penetrating into the cleaning cavity is formed in the cleaning box, and the negative pressure exhaust tube is communicated with the cleaning cavity.
Further, the rear side of the cleaning box is provided with a cleaning negative pressure port communicated with the cleaning cavity, the negative pressure exhaust tube is communicated 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 air blowing port which is externally connected with an air source for blowing air, and the second air blowing port is communicated with the cleaning cavity.
Further, the cleaning box group comprises a plurality of cleaning boxes.
Further, the negative pressure exhaust assembly comprises a high-pressure fan and a waste collection barrel, the high-pressure fan is communicated with the waste collection barrel, and the negative pressure exhaust pipe is communicated with the waste collection barrel.
The negative pressure exhaust mechanism has the beneficial effects that under the action of the negative pressure exhaust component, waste on the cleaning clamp can be sucked through the waste suction port of the waste suction pipe, meanwhile, air flow can be blown out through the first air blowing port of the air blowing pipe, so that the waste suction port can be quickened to suck the waste on the cleaning clamp, and meanwhile, the residue of the waste can be effectively avoided, namely, by the arrangement of the mechanism, the waste can be efficiently and rapidly cleaned, the recovery of the waste is realized, and meanwhile, the influence of falling of the waste on the product quality and the station environment can be more effectively avoided.
Drawings
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic structural view of the hidden negative pressure suction assembly of the present utility model.
Fig. 3 is a partial enlarged view at a of fig. 2.
1. A negative pressure air draft assembly; 11, a negative pressure exhaust pipe, 12, a high-pressure fan, 13, a waste collecting barrel, 2, a waste suction pipe group, 21, a waste suction pipe, 211, a waste suction port, 212 and a guide plate;
3. 31, blowpipes, 311, air source interfaces, 312, a first air blowing port;
4. Tray 41, clamp position 42 and baffle plate;
5. A movable seat;
6. the waste suction displacement driving assembly is provided with a waste suction displacement driving cylinder;
7. The cleaning box group, 71, cleaning boxes, 711, cleaning cavities, 712, cleaning ports, 713, cleaning negative pressure ports, 714, and second air blowing ports.
8. 81, The air blowing displacement drives the air cylinder;
9. An external clamp.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Referring to fig. 1-3, the present embodiment provides a waste cleaning mechanism comprising:
The negative pressure exhaust assembly 1 is used for generating negative pressure for exhausting, and the negative pressure exhaust assembly 1 comprises a negative pressure exhaust pipe 11 used for exhausting;
Waste suction tube group 2, waste suction tube group 2 includes at least one waste suction tube 21, one end of waste suction tube 21 is connected with negative pressure exhaust tube 11, another end of waste suction tube 21 is equipped with waste suction port 211 for sucking waste material;
The blowing pipe group 3, the blowing pipe group 3 comprises at least one blowing pipe 31, one end of the blowing pipe 31 is provided with an air source interface 311 externally connected with an air source, the other end of the blowing pipe 31 is provided with a first air blowing port 312 used for being arranged at the other side of the external fixture 9, the first air blowing port 312 corresponds to the waste suction port 211, and the external air source is provided in the prior art, such as by the existing external air source equipment.
Under the effect of negative pressure convulsions subassembly 1, can be through inhaling the waste material on the waste pipe 21 with the suction cleaning jig, simultaneously, can also blow out the air current through the first gas blowing mouth 312 of blowing pipe 31 to accelerate to inhale waste material on the waste pipe 211 suction cleaning jig, can effectually avoid the waste material to remain simultaneously.
In the present embodiment, the other end of the waste suction pipe 21 is provided with a guide plate 212 for extending onto the external jig 9 to guide the suction of waste, the guide plate 212 corresponding to the waste suction port 211. By inserting the guide plate 212 at the side of the processing position of the external jig 9 to guide the scrap generated at the processing position, scrap recovery can be performed more effectively.
In the present embodiment, the waste pipe group 2 includes a plurality of waste pipes 21, and the blower pipe group 3 includes a plurality of blower pipes 31. The arrangement of the plurality of blowpipes 31 and the plurality of waste suction pipes 21 can simultaneously perform waste recovery for a plurality of processing positions of the external jig 9.
In this embodiment, the mechanism further comprises a tray 4, a fixture position 41 for carrying the external fixture 9 is arranged on the tray 4, and the waste suction port 211 and the first air blowing port 312 are respectively positioned at two sides above the fixture position 41.
In the present embodiment, the tray 4 is provided with baffles 42 on both sides.
In this embodiment, the mechanism further includes a movable seat 5, the waste suction tube set 2 is disposed on the movable seat 5, and the movable seat 5 is movably disposed on the tray 4 through a sliding block and sliding rail structure. The movable seat 5 is movably connected with the tray 4, and the position of the waste suction tube group 2 can be quickly adjusted by adjusting the position of the movable seat 5 according to the requirement.
In this embodiment, the mechanism further includes a waste suction displacement driving component 6 for controlling the moving seat 5 to approach or depart from the external fixture 9, the waste suction displacement driving component 6 is fixedly disposed on the tray 4, and the waste suction displacement driving component 6 is in driving connection with the moving seat 5. The displacement driving assembly is arranged so that the movable seat 5 can automatically adjust the position.
In this embodiment, the waste suction displacement driving assembly 6 includes a waste suction displacement driving cylinder 61, the waste suction displacement driving cylinder 61 is fixedly disposed on the tray 4, and the waste suction displacement driving cylinder 61 is in driving connection with the moving seat 5.
In this embodiment, the mechanism further comprises an air blowing displacement driving assembly 8 for controlling the air blowing pipe group 3 to be close to or far from the external fixture 9, the air blowing displacement driving assembly 8 is fixedly arranged on the tray 4, and the air blowing displacement driving assembly 8 is in driving connection with the air blowing pipe group 3.
In this embodiment, the air blowing displacement driving assembly 8 includes an air blowing displacement driving cylinder 81, the air blowing displacement driving cylinder 81 is fixedly arranged on the tray 4, and the air blowing displacement driving cylinder 81 is in driving connection with the air blowing tube group 3.
In this embodiment, the mechanism further includes a cleaning box set 7 for adsorbing residual waste on the external shearing device, the cleaning box set 7 includes at least one cleaning box 71, a cleaning cavity 711 is disposed in the cleaning box 71, a cleaning opening 712 penetrating into the cleaning cavity 711 is formed in the cleaning box 71, and the negative pressure exhaust tube 11 is connected to the cleaning cavity 711. Specifically, after the external shearing apparatus is sheared at the machining position of the external jig 9, the waste remaining on the shearing tool of the external shearing apparatus can be adsorbed by moving to the cleaning box 71 and passing through the cleaning port 712 to extend the shearing tool into the cleaning chamber 711.
In this embodiment, a cleaning negative pressure port 713 communicated with the cleaning chamber 711 is provided at the rear side of the cleaning box 71, the negative pressure suction pipe 11 is communicated with the cleaning negative pressure port 713, a second air blowing port 714 for externally connecting an air source for blowing air is provided at least one of the left side, the right side and the front side of the cleaning box 71, and the second air blowing port 714 is communicated with the cleaning chamber 711. The second air blowing port 714 is arranged to blow off the waste remained on the shearing tool of the external shearing device, so that the waste remained on the shearing tool of the external shearing device can be cleaned more effectively.
In the present embodiment, the cleaning cartridge set 7 includes a plurality of cleaning cartridges 71. The plurality of cleaning cartridges 71 can simultaneously clean the waste material remaining on the plurality of shearing tools of the external shearing apparatus.
In this embodiment, the negative pressure exhaust assembly 1 includes a high pressure fan 12 and a waste collection barrel 13, the high pressure fan 12 is connected to the upper end of the waste collection barrel 13, and the negative pressure exhaust tube 11 is connected to the upper end of the waste collection barrel 13. Specifically, when the high-pressure fan 12 works, negative pressure is generated through the negative pressure exhaust pipe 11 to exhaust the waste to the waste collecting barrel 13, and it can be known that the waste can be filtered through a filter screen at the joint of the high-pressure fan 12 and the waste collecting barrel 13.
The foregoing description of the preferred embodiment of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.
Claims (10)
1. A scrap removal mechanism, comprising:
The negative pressure exhaust assembly is used for generating negative pressure for exhausting, and comprises a negative pressure exhaust tube used for exhausting;
the waste suction pipe group comprises at least one waste suction pipe, one end of the waste suction pipe is communicated with the negative pressure exhaust pipe, and the other end of the waste suction pipe is provided with a waste suction port which is arranged at one side of the external clamp and used for sucking waste;
The blowing pipe group comprises at least one blowing pipe, one end of the blowing pipe is provided with an air source interface externally connected with an air source, the other end of the blowing pipe is provided with a first air blowing port arranged at the other side of the external clamp, and the first air blowing port corresponds to the waste suction port.
2. The waste cleaning mechanism according to claim 1, wherein the other end of the waste suction pipe is provided with a guide plate for extending into the external jig to guide suction of waste, the guide plate corresponding to the waste suction port.
3. A waste cleaning mechanism according to claim 2, wherein the stack comprises a plurality of blowpipes.
4. The waste cleaning mechanism of claim 1, further comprising a tray, wherein the tray is provided with a fixture position for carrying an external fixture, and the waste suction port and the first air blowing port are respectively located at two sides above the fixture position.
5. The waste disposal mechanism of claim 4, further comprising a movable base, said waste suction tube set being disposed on said movable base, said movable base being movably disposed on said tray.
6. The waste cleaning mechanism of claim 5, further comprising a waste suction displacement drive assembly for controlling the movable base to move toward and away from the external clamp, the waste suction displacement drive assembly being fixedly disposed on the tray and in driving connection with the movable base.
7. A waste cleaning mechanism according to any one of claims 1-6, further comprising a cleaning box set for adsorbing residual waste on an external shearing device, wherein the cleaning box set comprises at least one cleaning box, a cleaning cavity is arranged in the cleaning box, a cleaning opening penetrating into the cleaning cavity is formed in the cleaning box, and the negative pressure exhaust pipe is communicated with the cleaning cavity.
8. The waste cleaning mechanism of claim 7, wherein a cleaning negative pressure port communicated with the cleaning cavity is arranged at the rear side of the cleaning box, the negative pressure exhaust pipe is communicated with the cleaning negative pressure port, and a second air blowing port for externally connecting an air source to blow air is arranged at least one of the left side, the right side and the front side of the cleaning box, and is communicated with the cleaning cavity.
9. The waste cleaning mechanism of claim 7, wherein the set of cleaning cartridges includes a plurality of cleaning cartridges.
10. A waste cleaning mechanism according to any one of claims 1-6, wherein the negative pressure suction assembly comprises a high pressure fan and a waste collection tank, the high pressure fan being in communication with the waste collection tank, the negative pressure suction tube being in communication with the waste collection tank.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423293536.5U CN223763352U (en) | 2024-12-27 | 2024-12-27 | Waste material clearance mechanism |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423293536.5U CN223763352U (en) | 2024-12-27 | 2024-12-27 | Waste material clearance mechanism |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223763352U true CN223763352U (en) | 2026-01-06 |
Family
ID=98251091
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202423293536.5U Active CN223763352U (en) | 2024-12-27 | 2024-12-27 | Waste material clearance mechanism |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223763352U (en) |
-
2024
- 2024-12-27 CN CN202423293536.5U patent/CN223763352U/en active Active
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Legal Events
| Date | Code | Title | Description |
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| GR01 | Patent grant | ||
| GR01 | Patent grant |