Waste recovery device for bra production
Through the design of the waste recycling device for bra production, the combination of fan suction, pump flushing and drying box is used to solve the problem of incomplete cleaning of the crawler cutting bed, and the cleaning of the crawler surface and production continuity are achieved, and energy saving is achieved.
Patent Information
- Application Number
- CN202422284840.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The existing bra production equipment cannot be thoroughly cleaned on the crawler cutting bed, resulting in electrostatic accumulation and uncleanness on the crawler surface, affecting production continuity.
Design a waste recycling device for bra production, including a waste hopper, water tank, fan, water pump, reducer and dual-axis motor. Through the combination of fan suction, water pump flushing and drying box, the surface of the track is cleaned and static electricity is removed to ensure a clean state.
The thorough cleaning of the crawler cutting bed is achieved, removing static electricity, maintaining a clean state and production continuity, saving energy and reducing pollution.
Smart Images

Figure CN223057893U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of bra production, and relates to a waste recycling device, in particular to a waste recycling device for bra production. Background Technique
[0002] A bra is one of the undergarments used by women, and its function is to cover and support the breasts. When producing bras, a track-type cutting machine is often used to cut materials, and the generated waste will stick to the track bed, which is likely to cause uncleanliness on the surface of the track bed. At the same time, a certain amount of residual materials cannot be recycled, affecting the use. The traditional manual recycling is difficult, time-consuming and laborious, reducing the work efficiency. The existing machine recycling is not thorough. In order to collect waste, a new recycling device is needed.
[0003] After retrieval, as disclosed in a Chinese patent document, a track bed waste collection and recycling mechanism [Application No.: 202121806921.9; Publication No.: CN215401381U]. This waste recycling device makes the scraping knife contact with the bottom of the conveyor belt. At the same time, the micro motor starts to drive the rotating wheel to rotate. The traction rope on the rotating wheel pulls the displacement hanging plate to hang the waste scraped by the scraping knife into the sliding plate below for waste recycling to complete the operation.
[0004] Although this utility model makes the scraping knife contact with the bottom of the conveyor belt and scrapes off the waste with the scraping knife for waste recycling, however, this device cannot thoroughly clean the track cutting machine, cannot remove static electricity, and cannot maintain a clean state and production continuity.
[0005] Therefore, we propose a waste recycling device for bra production, which can clean the track-type cutting machine more thoroughly, can remove static electricity, and can maintain a clean state and production continuity. Content of the Utility Model
[0006] The purpose of the present utility model is to address the above problems existing in the prior art and propose a waste recycling device for bra production. The technical problem to be solved by this utility model is: how to achieve more thorough cleaning of the track-type cutting machine, and can remove the static electricity on the surface of the track, and maintain the clean state and production continuity of the cutting machine.
[0007] The purpose of the present utility model can be achieved by the following technical solutions:
[0008] A waste recycling device for bra production, comprising a waste hopper arranged on the left side of a crawler cutting table, a water tank, a fan, a water pump, a reducer and a double-shaft motor arranged below the crawler cutting table, and a chip extraction assembly, a cleaning assembly and a drying box arranged from left to right below the crawler cutting table, wherein the water tank, the fan, the water pump, the reducer and the double-shaft motor are located on the right side of the drying box; an output shaft at one end of the double-shaft motor is fixedly connected to a rotating shaft of the fan, an output shaft at the other end of the double-shaft motor is transmission-connected to a rotating shaft of the water pump via a pulley pair, a rotating shaft of the water pump is fixedly connected to an input shaft of the reducer, an output shaft of the reducer is transmission-connected to a cleaning assembly, an air inlet of the fan is connected to a chip extraction assembly, an air outlet of the fan is connected to a drying box, a water tank is connected to a water inlet of the water pump and the cleaning assembly, and a water outlet of the water pump is connected to the cleaning assembly.
[0009] The working principle of the utility model is as follows: the electric cutter cuts the material above the crawler of the crawler cutting bed, and the finished products are collected after completion, the crawler cutting bed and the double-axis motor are started, and the cut waste on the crawler falls into the waste hopper, and the waste hopper brushes the debris and dust on the surface of the crawler, and the crawler passes through the chip extraction component, the cleaning component and the drying box in turn, and the double-axis motor rotates at a high speed to provide power to drive the fan, the water pump and the reducer to operate, and the air inlet of the fan sucks the air in the chip extraction component to form a negative pressure, form an airflow, and absorb some of the debris on the surface of the crawler, and the air passes through The debris extraction component is filtered and then input into the drying box through the air outlet of the fan. The water in the water tank is pumped into the cleaning component through the water pump to wash away the debris and dust on the surface of the track and remove static electricity through the water flow. The flushing water is filtered by the cleaning component and then flows into the water tank for repeated use to save water. The cleaning component reduces the speed through the reducer, scrubs the dust, dyes and debris on the surface of the track, and removes most of the moisture remaining on the surface of the track. The wind output by the fan is heated by the drying box to form hot air, which dries the residual moisture on the track and prevents the track surface from being contaminated.
[0010] A soft brush strip is detachably provided on the upper end of the waste hopper, and the soft brush strip contacts the crawler of the crawler cutting table.
[0011] With the above structure, the operation of the crawler belt drives the cut waste to fall into the waste hopper, and the soft brush bar brushes the debris on the surface of the crawler belt into the waste hopper, cleaning most of the debris adhering to the surface of the crawler belt.
[0012] The drying box includes a drying box body, which is fixed on the frame of the crawler cutting table, and the left side of the drying box body is in contact with the cleaning component. A thermal resistor plate is provided inside the drying box body, and a connecting bucket is fixed below the drying box body. The connecting bucket is connected to the air outlet of the fan through a pipeline, and an opening is provided on the left side of the drying box body.
[0013] With the above structure, the air outlet of the fan inputs the wind through the connecting bucket, which is heated by the thermal resistor plate to form hot air that is blown to the surface of the track to dry moisture and avoid pollution. At the same time, the hot air is blown into the cleaning component through the opening to dry the cleaning component.
[0014] The chip extraction assembly includes a chip extraction box and a filter plate. The chip extraction box is fixed on the frame of the crawler cutting machine. Two symmetrically arranged slide grooves are provided inside the chip extraction box. A slide groove opening is provided on the rear side of the chip extraction box. The slide groove opening is connected to the slide groove. A rotating lock block is provided on the rear side of the chip extraction box for rotation. The rotating lock block is located above the slide groove opening. The filter plate is slidably arranged inside the slide groove and the slide groove opening. A pulling handle is fixed on the rear side of the filter plate. A connecting bucket is fixed under the chip extraction box. The connecting bucket is connected to the air inlet of the fan through a pipe.
[0015] With the above structure, when the crawler cutting machine is running, the rotating lock block locks the filter plate 1 to prevent shaking, and the fan sucks the air from the chip box through the connecting bucket to form a negative pressure, which drives the air flow to blow the debris and dust on the surface of the crawler. The air is filtered by the filter plate 1, and the debris and dust remain on the filter plate 1.
[0016] When cleaning the chip extraction assembly, turn the rotary lock block to release the lock of the filter plate, pull the pull handle, pull the filter plate out of the slide slot through the slide slot, and replace the filter plate to avoid excessive dust and debris accumulation on the filter plate, resulting in poor filtering effect.
[0017] The cleaning assembly comprises a cleaning box and a filter plate 2. The cleaning box is fixed on the frame of the crawler cutting machine. A connecting bucket is fixedly connected to the bottom of the cleaning box. The connecting bucket is connected to the water tank through a pipeline. Two symmetrically arranged slide grooves 2 are arranged inside the cleaning box. A slide groove opening 2 is arranged on the rear side of the cleaning box. The slide groove opening 2 is connected to the slide groove 2. Two rotating lock blocks are arranged on the rear side of the cleaning box for rotation. The two rotating lock blocks are both located above the slide groove opening 2. The filter plate 2 is slidably arranged inside the slide groove 2 and the slide groove opening 2. A pull-out handle is fixedly arranged on the rear side of the filter plate 2. A partition is arranged inside the cleaning box. The plate is located above the second filter plate, and the partition divides the cleaning box into a spraying area and a brushing area of the same size. Two inclined and symmetrically arranged spray pipes are arranged inside the spraying area, and the two spray pipes are located above the second filter plate. The two spray pipes are connected to the water pump through pipes. A brush roller module is arranged inside the brushing area, and a brush roller handle is arranged on the front side of the brush roller module. The brush roller module is located above the second filter plate, and the brush roller module is connected to the output shaft of the reducer. Two symmetrically arranged brush roller chutes are opened inside the brushing area, and a brush roller chute opening is opened on the rear side of the brushing area, and the brush roller chute opening is communicated with the brush roller chute.
[0018] With the above structure, when the crawler cutting machine is running, the two rotating lock blocks lock the filter plate 2 and the brush roller module to prevent shaking, and the water pump pumps the water in the water tank into the two spray pipes. The nozzles on the two spray pipes spray water to the surface of the crawler. The water flows on the surface of the crawler to flush away the adhered dust and debris. At the same time, the partition can prevent the water sprayed from the two spray pipes from splashing onto the brush roller module. After being brushed by the brush roller module, the crawler surface is cleaned more thoroughly. The sewage after flushing is filtered by the filter plate 2 to obtain clean water. The clean water flows back into the water tank through the connecting bucket for repeated use, saving energy.
[0019] When cleaning the cleaning components, turn the two rotating lock blocks to release the lock of filter plate 2 and the brush roller module, pull the pull-out handle, pull filter plate 2 out of slide slot 2 through slide slot mouth 2, and replace filter plate 2; pull the brush roller handle, pull the brush roller module out of the brush roller slide slot through the brush roller slide slot mouth, and replace the brush roller module to avoid excessive accumulation of dust and debris on filter plate 2 and the brush roller module, resulting in poor filtering effect.
[0020] The brush roller module includes a bearing seat 1 and a bearing seat 2, a quick-release connecting plate is fixed to the front side of the bearing seat 1, a brush roller sliding frame is fixed to the front side of the quick-release connecting plate, the brush roller sliding frame is slidably arranged inside two brush roller slide grooves and the brush roller slide groove mouth, a brush roller is rotatably arranged inside the brush roller sliding frame, one end of the brush roller is fixed inside the inner ring of the bearing seat 1, and the other end of the brush roller is fixed with an insertion limit rod, the bearing seat 2 is fixed at the front side of the cleaning box, and an insertion sleeve rod is fixed inside the inner ring of the bearing seat 2, the insertion sleeve rod is drivingly connected to the output shaft of the reducer, the insertion limit rod is detachably slidably arranged inside the insertion sleeve rod, the brush roller contacts the track of the crawler cutting bed, and the brush roller handle is fixedly arranged on the front side of the quick-release connecting plate.
[0021] By adopting the above structure, the output shaft of the reducer drives the plug-in sleeve rod to rotate, the plug-in limit rod and the plug-in sleeve rod are internally engaged, the plug-in sleeve rod drives the plug-in limit rod to rotate, and the plug-in limit rod drives the brush roller to rotate. The rotation direction of the brush roller is opposite to the rotation direction of the crawler track of the crawler cutting table, so that the cleaning is more thorough, and most of the moisture on the surface of the crawler track is brushed off, making it easier to dry. When disassembling and replacing, the lock of the rotating lock block on the quick-release connecting plate is released, and the quick-release connecting plate is pulled through the brush roller handle to pull the plug-in limit rod out of the plug-in sleeve rod, and the brush roller sliding frame slides out of the brush roller slide slot. The disassembly is simple and convenient, and the bearing seat 1 and the bearing seat 2 play the role of fixing the brush roller.
[0022] Compared with the prior art, this bra production waste recycling device has the following advantages:
[0023] 1. Through the cooperation of the crawler cutting bed 2, the waste hopper 3, the chip extraction component 4, the cleaning component 5 and the drying box 6, the waste, debris and dyes can be cleaned more thoroughly, and the dust and static electricity can be removed to ensure that each use is in a clean state, to ensure the continuity of production, and at the same time, the cut materials will not be contaminated.
[0024] 2. By cooperating the dual-axis motor 11 with the blower 8, the water pump 9, the speed reducer 10 and the brush roller module 22, one motor drives multiple mechanisms, saving energy.
[0025] 3. By cooperating the water pump 9 with the water tank 7 and the cleaning assembly 5, water is recycled, pollution is reduced, and energy is saved.
[0026] 4. By cooperating the blower 8 with the chip extraction assembly 4 and the drying box 6, one blower is used for two purposes, improving efficiency and reducing waste. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is a schematic three-dimensional structure diagram of the present utility model.
[0028] Figure 2 is a schematic side view structure diagram of the present utility model.
[0029] Figure 3 is a schematic structure diagram of some components in the present utility model.
[0030] Figure 4 is a schematic structure diagram of the chip extraction assembly in the present utility model.
[0031] Figure 5 is a schematic three-dimensional structure diagram of the cleaning assembly in the present utility model.
[0032] Figure 6 is an exploded structure diagram of the cleaning assembly in the present utility model.
[0033] In the figures, 1. Electric cutting knife; 2. Track type cutting bed; 3. Scrap hopper; 4. Chip extraction assembly; 5. Cleaning assembly; 6. Drying box; 7. Water tank; 8. Blower; 9. Water pump; 10. Speed reducer; 11. Dual-axis motor; 12. Drying box body; 13. Thermal resistance plate; 14. Connecting hopper; 15. Rotary lock block; 16. First chute opening; 17. First filter plate; 18. Pulling handle; 19. First chute; 20. Spray pipe; 21. Second filter plate; 22. Brush roller module; 23. Partition board; 24. Cleaning box; 25. Brush roller chute; 26. Second chute; 27. Second chute opening; 28. Brush roller pull handle; 29. First bearing seat; 30. Quick-release connecting plate; 31. Brush roller sliding frame; 32. Brush roller; 33. Insertion limiting rod; 34. Brush roller chute opening; 35. Second bearing seat; 36. Insertion sleeve rod; 37. Chip extraction box. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0034] The following are specific embodiments of the present utility model and in combination with the accompanying drawings, the technical solutions of the present utility model are further described, but the present utility model is not limited to these embodiments.
[0035] AsFigures 1-6 As shown, a waste recycling device for bra production includes a waste hopper 3 arranged on the left side of a crawler cutting bed 2, a water tank 7, a fan 8, a water pump 9, a reducer 10 and a double-axis motor 11 arranged below the crawler cutting bed 2, and a chip extraction component 4, a cleaning component 5 and a drying box 6 arranged below the crawler cutting bed 2 from left to right, the water tank 7, the fan 8, the water pump 9, the reducer 10 and the double-axis motor 11 are located on the right side of the drying box 6; an output shaft at one end of the double-axis motor 11 is fixedly connected to the rotating shaft of the fan 8, and an output shaft at the other end of the double-axis motor 11 is connected to the rotating shaft of the water pump 9 through a pulley pair.
[0036] The rotating shaft of the water pump 9 is fixedly connected to the input shaft of the reducer 10, the output shaft of the reducer 10 is transmission-connected to the cleaning component 5, the air inlet of the fan 8 is connected to the chip extraction component 4, the air outlet of the fan 8 is connected to the drying box 6, the water tank 7 is connected to the water inlet of the water pump 9 and the cleaning component 5, and the water outlet of the water pump 9 is connected to the cleaning component 5.
[0037] In this embodiment, the electric cutter 1 cuts the material above the crawler of the crawler cutting bed 2. After the finished product is collected, the crawler cutting bed 2 and the double-axis motor 11 are started, and the cut waste on the crawler falls into the waste hopper 3. The waste hopper 3 brushes the debris and dust on the surface of the crawler. The crawler passes through the chip extraction component 4, the cleaning component 5 and the drying box 6 in turn. The double-axis motor 11 rotates at a high speed to provide power to drive the fan 8, the water pump 9 and the reducer 10 to operate. The air inlet of the fan 8 sucks the air in the chip extraction component 4 to form a negative pressure, forming an airflow, and adsorbing some of the debris on the surface of the crawler. The air passes through The debris extraction component 4 filters and then is input into the drying box 6 through the air outlet of the fan 8. The water in the water tank 7 is pumped into the cleaning component 5 through the water pump 9 to wash away the debris and dust on the surface of the track and remove static electricity through the water flow. The flushing water is filtered by the cleaning component 5 and then flows into the water tank 7 for repeated use to save water. The cleaning component 5 reduces the speed through the reducer 10 to scrub the dust, dye and debris on the surface of the track and remove most of the moisture remaining on the surface of the track. The wind output by the fan 8 is heated by the drying box 6 to form hot air, which dries the residual moisture on the track and prevents the track surface from being contaminated.
[0038] A soft brush strip is detachably provided on the upper end of the waste hopper 3 , and the soft brush strip contacts the crawler of the crawler cutting table 2 .
[0039] In this embodiment, the operation of the crawler belt drives the cut waste to fall into the waste hopper 3, and the soft brush bar brushes the debris on the surface of the crawler belt into the waste hopper 3, cleaning most of the debris adhering to the surface of the crawler belt.
[0040] The drying box 6 includes a drying box body 12. The drying box body 12 is fixed on the frame of the crawler cutting machine 2, and the left side of the drying box body is in contact with the cleaning assembly 5. A heating resistor plate 13 is provided inside the drying box body 12. A connecting hopper 14 is fixed below the drying box body 12. The connecting hopper 14 is connected to the air outlet of the blower 8 through a pipeline. An opening is provided on the left side of the drying box body 12.
[0041] In this embodiment, the air input by the blower 8 through the connecting hopper 14 is heated by the heating resistor plate 13 to form hot air, which is blown onto the crawler surface to dry the moisture and avoid contamination. At the same time, the hot air is blown into the cleaning assembly 5 through the opening to dry the cleaning assembly 5.
[0042] The chip extraction assembly 4 includes a chip extraction box 37 and a first filter plate 17. The chip extraction box 37 is fixed on the frame of the crawler cutting machine 2. Two symmetrically arranged first chutes 19 are provided inside the chip extraction box 37. A first chute opening 16 is provided at the rear of the chip extraction box 37. The first chute opening 16 is communicated with the first chute 19. A rotating lock block 15 is rotatably provided at the rear of the chip extraction box 37. The rotating lock block 15 is located above the first chute opening 16. The first filter plate 17 is slidably arranged inside the first chute 19 and the first chute opening 16. A pulling handle 18 is fixed to the rear of the first filter plate 17. A connecting hopper 14 is fixed below the chip extraction box 37. The connecting hopper 14 is connected to the air inlet of the blower 8 through a pipeline.
[0043] In this embodiment, when the crawler cutting machine is operating 2, the rotating lock block 15 locks the first filter plate 17 to avoid shaking. The blower 8 sucks the air in the chip extraction box 37 through the connecting hopper 14 to form a negative pressure, driving the airflow to blow the chips and dust on the crawler surface. The air is filtered by the first filter plate 17, and the chips and dust etc. remain on the first filter plate 17;
[0044] When cleaning the chip extraction assembly 4, rotate the rotating lock block 15 to release the locking of the first filter plate 17, pull the pulling handle 18, and pull the first filter plate 17 out of the first chute 19 through the first chute opening 16 to replace the first filter plate 17, so as to avoid the first filter plate 17 accumulating too much dust and chips, resulting in poor filtering effect.
[0045] The cleaning assembly 5 includes a cleaning tank 24 and a second filter plate 21. The cleaning tank 24 is fixed to the frame of the crawler cutting machine 2. A communicating hopper 14 is fixedly connected below the cleaning tank 24. The communicating hopper 14 is connected to the water tank 7 through a pipeline. Two symmetrically arranged second chutes 26 are provided inside the cleaning tank 24. A second chute opening 27 is provided at the rear side of the cleaning tank 24. The second chute opening 27 communicates with the second chute 26. Two rotary locking blocks 15 are rotatably provided at the rear side of the cleaning tank 24. Both of the two rotary locking blocks 15 are located above the second chute opening 27. The second filter plate 21 is slidably arranged inside the second chute 26 and the second chute opening 27. A pull handle 18 is fixedly provided at the rear side of the second filter plate 21. A partition plate 23 is provided inside the cleaning tank 24. The partition plate 23 is located above the second filter plate 21. The partition plate 23 divides the cleaning tank 24 into a spray washing area and a brush washing area of the same size. Two inclined and symmetrically arranged spray pipes 20 are provided inside the spray washing area. Both of the two spray pipes 20 are located above the second filter plate 21. The two spray pipes 20 are connected to a water pump through a pipeline. A brush roller module 22 is provided inside the brush washing area. A brush roller pull handle 28 is provided at the front side of the brush roller module 22. The brush roller module 22 is located above the second filter plate 21, and the brush roller module 22 is in transmission connection with the output shaft of the reducer 10. Two symmetrically arranged brush roller chutes 25 are provided inside the brush washing area. A brush roller chute opening 34 is provided at the rear side of the brush washing area. The brush roller chute opening 34 communicates with the brush roller chute 25.
[0046] In this embodiment, when the crawler cutting machine 2 is operating, the two rotary locking blocks 15 lock the second filter plate 21 and the brush roller module 22 to prevent shaking. The water pump 9 pumps the water in the water tank 7 into the two spray pipes 20. The nozzles on the two spray pipes 20 spray water onto the surface of the crawler. The water flows in opposite directions on the surface of the crawler to wash away the adhered dust and debris, etc. At the same time, the partition plate 23 can prevent the water sprayed from the two spray pipes 20 from splashing onto the brush roller module 22. Then, after being brushed by the brush roller module 22, the surface of the crawler is cleaned more thoroughly. The sewage after washing is filtered by the second filter plate 21 to obtain clean water. The clean water flows back into the water tank 7 through the communicating hopper 14 for reuse, saving energy.
[0047] When cleaning the cleaning assembly 5, rotate the two rotary locking blocks 15 to release the locking of the second filter plate 21 and the brush roller module 22. Pull the pull handle 18 to pull the second filter plate 21 out of the second chute 26 through the second chute opening 27 to replace the second filter plate 21. Pull the brush roller pull handle 28 to pull the brush roller module 22 out of the brush roller chute 25 through the brush roller chute opening 34 to replace the brush roller module 22, preventing excessive dust and debris from accumulating on the second filter plate 21 and the brush roller module 22, resulting in poor filtering effect.
[0048] The brush roll module 22 includes a first bearing block 29 and a second bearing block 35. A quick-release connecting plate 30 is fixed to the front side of the first bearing block 29. A brush roll sliding frame 31 is fixed to the front side of the quick-release connecting plate 30. The brush roll sliding frame 31 is slidably disposed inside two brush roll chutes 25 and a brush roll chute opening 34. A brush roll 32 is rotatably provided inside the brush roll sliding frame 31. One end of the brush roll 32 is fixed inside the inner ring of the first bearing block 29. The other end of the brush roll 32 is fixed with an insertion limiting rod 33. The second bearing block 35 is fixedly arranged on the front side of the cleaning box 24. An insertion sleeve rod 36 is fixed inside the inner ring of the second bearing block 35. The insertion sleeve rod 36 is in transmission connection with the output shaft of the speed reducer 10. The insertion limiting rod 33 is detachably slidably disposed inside the insertion sleeve rod 36. The brush roll 32 contacts the track of the crawler type cutting machine 2. A brush roll handle 28 is fixedly arranged on the front side of the quick-release connecting plate 30.
[0049] In this embodiment, the output shaft of the speed reducer 10 drives the insertion sleeve rod 36 to rotate. The insertion limiting rod 33 and the insertion sleeve rod 36 are engaged inside. The insertion sleeve rod 36 drives the insertion limiting rod 33 to rotate. The insertion limiting rod 33 drives the brush roll 32 to rotate. The rotation direction of the brush roll 32 is opposite to the rotation direction of the track of the crawler type cutting machine 2, so the cleaning is more thorough. At the same time, most of the water on the surface of the track is brushed off, making it easier to dry. When disassembling and replacing, release the locking of the quick-release connecting plate 30 by the rotary lock block 15. Pull the quick-release connecting plate 30 through the brush roll handle 28 to pull out the insertion limiting rod 33 from the insertion sleeve rod 36, and the brush roll sliding frame 31 slides out of the inside of the brush roll chute 25. The disassembly is simple and convenient. The first bearing block 29 and the second bearing block 35 play a role in fixing the brush roll 32.
[0050] The working principle of the present utility model: The electric cutter 1 cuts the material above the track of the crawler type cutting machine 2. After completion, the finished products are collected. Start the crawler type cutting machine 2 and the double-shaft motor 11. The running track drives the cutting waste to fall into the waste hopper 3. The soft brush brushes the debris on the surface of the track into the waste hopper 3 to clean most of the debris adhered to the surface of the track. The track passes through the chip extraction component 4, the cleaning component 5 and the drying box 6 in sequence. The double-shaft motor 11 rotates at a high speed to provide power and drives the fan 8, the water pump 9 and the speed reducer 10 to operate.
[0051] When the track passes through the chip extraction component 4, the rotary lock block 15 locks the first filter plate 17 to avoid shaking. The fan 8 sucks the air in the chip extraction box 37 through the connecting hopper 14 to form a negative pressure, driving the air flow to blow the debris and dust on the surface of the track. The air is filtered by the first filter plate 17, and the debris and dust etc. are left on the first filter plate 17.
[0052] When the crawler passes through the cleaning assembly 5, the two rotating locking blocks 15 lock the second filter plate 21 and the brush roller module 22 to prevent shaking. The water pump 9 pumps the water in the water tank 7 into the two spray pipes 20. The nozzles on the two spray pipes 20 spray water onto the surface of the crawler, and the water flows in opposite directions on the surface of the crawler, washing away the adhered dust and debris, etc. At the same time, the partition plate 23 can prevent the water sprayed from the two spray pipes 20 from splashing onto the brush roller module 22. Then, after being scrubbed by the brush roller module 22, the surface of the crawler is cleaned more thoroughly. The sewage after flushing is filtered by the second filter plate 21 to obtain clean water, and the clean water flows back into the water tank 7 through the connecting hopper 14 for repeated use, saving energy;
[0053] The output shaft of the reducer 10 drives the insertion sleeve rod 36 to rotate. The insertion limit rod 33 is engaged with the inside of the insertion sleeve rod 36. The insertion sleeve rod 36 drives the insertion limit rod 33 to rotate, and the insertion limit rod 33 drives the brush roller 32 to rotate. The rotation direction of the brush roller 32 is opposite to the rotation direction of the crawler of the crawler cutting machine 2, so the cleaning is more thorough. At the same time, most of the water on the surface of the crawler is brushed off, making it easier to dry. When disassembling and replacing, release the locking of the rotating locking block 15 on the quick-release connecting plate 30, and pull the quick-release connecting plate 30 through the brush roller handle 28 to pull the insertion limit rod 33 out of the insertion sleeve rod 36, and the brush roller sliding frame 31 slides out of the inside of the brush roller chute 25. The disassembly is simple and convenient. The first bearing seat 29 and the second bearing seat 35 play a role in fixing the brush roller 32, and the bearings inside rotate synchronously with the brush roller 32;
[0054] When the crawler passes through the drying box 6, the air output from the air outlet of the fan 8 is input through the connecting hopper 14, and after being heated by the thermal resistance plate 13, it forms hot air and blows onto the surface of the crawler to dry the water, avoiding pollution. At the same time, the hot air blows through the opening into the cleaning assembly 5 to dry the cleaning assembly 5;
[0055] When cleaning the components regularly and cleaning the chip extraction component 4, rotate the rotating locking block 15 to release the locking of the first filter plate 17, pull the pull handle 18, and pull the first filter plate 17 out of the first chute 19 through the first chute opening 16 to replace the first filter plate 17, avoiding excessive accumulation of dust and debris on the first filter plate 17, resulting in poor filtering effect;
[0056] When cleaning the cleaning assembly 5, rotate the two rotating locking blocks 15 to release the locking of the second filter plate 21 and the brush roller module 22, pull the pull handle 18, and pull the second filter plate 21 out of the second chute 26 through the second chute opening 27 to replace the second filter plate 21; pull the brush roller handle 28, and pull the brush roller module 22 out of the brush roller chute 25 through the brush roller chute opening 34 to replace the brush roller module 22, avoiding excessive accumulation of dust and debris on the second filter plate 21 and the brush roller module 22, resulting in poor filtering effect.
[0057] In summary, through the cooperation of the crawler cutting machine 2 with the waste hopper 3, the chip extraction component 4, the cleaning component 5 and the drying oven 6, waste materials, chips and dyes are cleaned more thoroughly, dust and static electricity are removed, ensuring a clean state for each use, guaranteeing production continuity, and at the same time preventing the cut materials from being contaminated;
[0058] Through the cooperation of the dual-axis motor 11 with the blower 8, the water pump 9, the reducer 10 and the brush roll module 22, one motor drives multiple mechanisms, saving energy;
[0059] Through the cooperation of the water pump 9 with the water tank 7 and the cleaning component 5, water is recycled, pollution is reduced, and energy is saved;
[0060] Through the cooperation of the blower 8 with the chip extraction component 4 and the drying oven 6, one blower is used for two purposes, improving efficiency and reducing waste.
[0061] The specific embodiments described herein are merely illustrative of the spirit of the present utility model. Those skilled in the art of the present utility model can make various modifications or supplements to the described specific embodiments or use similar ways to replace them, but will not deviate from the spirit of the present utility model or exceed the scope defined by the appended claims.
Claims
1. A waste recycling device for bra production, including a waste hopper (3) arranged on the left side of a crawler cutting machine (2), a water tank (7), a blower (8), a water pump (9), a speed reducer (10) and a double-shaft motor (11) arranged below the crawler cutting machine (2), and a chip extraction component (4), a cleaning component (5) and a drying box (6) arranged below the crawler cutting machine (2) in sequence from left to right. The water tank (7), the blower (8), the water pump (9), the speed reducer (10) and the double-shaft motor (11) are located on the right side of the drying box (6), and it is characterized in that, One end output shaft of the biaxial motor (11) is fixedly connected to the rotating shaft of the fan (8), and the other end output shaft of the biaxial motor (11) is drivingly connected to the rotating shaft of the water pump (9) through a pulley pair. The rotating shaft of the water pump (9) is fixedly connected to the input shaft of the speed reducer (10), and the output shaft of the speed reducer (10) is drivingly connected to the cleaning assembly (5). The air inlet of the fan (8) is connected to the chip extraction assembly (4), and the air outlet of the fan (8) is connected to the drying box (6). The water tank (7) is connected to the water inlet of the water pump (9) and the cleaning assembly (5), and the water outlet of the water pump (9) is connected to the cleaning assembly (5).
2. The waste recycling device for brassiere production according to claim 1, characterized in that, A soft brush strip is detachably provided at the upper end of the waste hopper (3), and the soft brush strip contacts the track of the track type cutting machine (2).
3. The waste recycling device for brassiere production according to claim 1, characterized in that, The drying box (6) includes a drying box body (12), the drying box body (12) is fixed on the frame of the track type cutting machine (2), and the left side of the drying box body is in contact with the cleaning assembly (5). A heating resistance plate (13) is arranged inside the drying box body (12). A communicating hopper (14) is fixed below the drying box body (12), and the communicating hopper (14) is connected to the air outlet of the fan (8) through a pipeline. An opening is provided on the left side of the drying box body (12).
4. The waste recycling device for brassiere production according to claim 3, characterized in that, The chip extraction assembly (4) includes a chip extraction box (37) and a first filter plate (17). The chip extraction box (37) is fixed on the frame of the track type cutting machine (2). Two symmetrically arranged first chutes (19) are formed inside the chip extraction box (37). A first chute opening (16) is formed at the rear side of the chip extraction box (37), and the first chute opening (16) communicates with the first chute (19). A rotating lock block (15) is rotatably arranged at the rear side of the chip extraction box (37), and the rotating lock block (15) is located above the first chute opening (16). The first filter plate (17) is slidably arranged inside the first chute (19) and the first chute opening (16). A pulling handle (18) is fixed to the rear side of the first filter plate (17). A communicating hopper (14) is fixed below the chip extraction box (37), and the communicating hopper (14) is connected to the air inlet of the fan (8) through a pipeline.
5. The waste recycling device for brassiere production according to claim 4, characterized in that, The cleaning component (5) includes a cleaning tank (24) and a second filter plate (21). The cleaning tank (24) is fixed on the frame of the crawler cutting machine (2). A connecting hopper (14) is fixedly connected below the cleaning tank (24). The connecting hopper (14) is connected to the water tank (7) through a pipeline. Two symmetrically arranged second sliding grooves (26) are formed inside the cleaning tank (24). A second sliding groove opening (27) is formed at the rear side of the cleaning tank (24). The second sliding groove opening (27) communicates with the second sliding groove (26). Two rotary locking blocks (15) are rotatably arranged at the rear side of the cleaning tank (24). Both of the two rotary locking blocks (15) are located above the second sliding groove opening (27). The second filter plate (21) is slidably arranged inside the second sliding groove (26) and the second sliding groove opening (27). A pull handle (18) is fixedly arranged at the rear side of the second filter plate (21). A partition plate (23) is arranged inside the cleaning tank (24). The partition plate (23) is located above the second filter plate (21). The partition plate (23) divides the cleaning tank (24) into a spray washing area and a brushing area with the same size. Two inclined and symmetrically arranged spray pipes (20) are arranged inside the spray washing area. Both of the two spray pipes (20) are located above the second filter plate (21). The two spray pipes (20) are connected to a water pump through a pipeline. A brush roller module (22) is arranged inside the brushing area. A brush roller handle (28) is arranged at the front side of the brush roller module (22). The brush roller module (22) is located above the second filter plate (21), and the brush roller module (22) is in transmission connection with the output shaft of the reducer (10). Two symmetrically arranged brush roller sliding grooves (25) are formed inside the brushing area. A brush roller sliding groove opening (34) is formed at the rear side of the brushing area. The brush roller sliding groove opening (34) communicates with the brush roller sliding groove (25).
6. The waste recycling device for brassiere production according to claim 5, characterized in that, The brush roller module (22) includes a first bearing seat (29) and a second bearing seat (35). A quick-release connecting plate (30) is fixed at the front side of the first bearing seat (29). A brush roller sliding frame (31) is fixed at the front side of the quick-release connecting plate (30). The brush roller sliding frame (31) is slidably arranged inside the two brush roller sliding grooves (25) and the brush roller sliding groove opening (34). A brush roller (32) is rotatably arranged inside the brush roller sliding frame (31). One end of the brush roller (32) is fixed inside the inner ring of the first bearing seat (29). An insertion limiting rod (33) is fixed at the other end of the brush roller (32). The second bearing seat (35) is fixedly arranged at the front side of the cleaning tank (24). An insertion sleeve rod (36) is fixed inside the second bearing seat (35). The insertion sleeve rod (36) is in transmission connection with the output shaft of the reducer (10). The insertion limiting rod (33) is detachably slidably arranged inside the inner ring of the insertion sleeve rod (36). The brush roller (32) contacts the crawler of the crawler cutting machine (2). The brush roller handle (28) is fixedly arranged at the front side of the quick-release connecting plate (30).
Citation Information
Patent Citations
Crawler bed waste collecting and recycling mechanism
CN215401381U