Cleaning and drying device for glass fiber production
Through ultrasonic vibrator vibration, blown aeration cleaning combined with suction of the extracting member, the cleaning damage and inconvenience in the production of glass fiber is solved, and the effect of efficient cleaning and convenient material extraction is achieved.
Patent Information
- Application Number
- CN202510745420.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2025-07-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing cleaning and drying device for glass fiber production is prone to breaking the glass fiber during the cleaning process, affecting its integrity, and inconvenient material removal and inconvenient use.
Ultrasonic vibrator vibration cleaning water is used and aeration is carried out by aeration of the blowing member. The glass fiber is taken out in combination with the suction method of the extracting member to reduce cleaning damage and increase the removal speed.
Effectively protect the integrity of glass fiber, improve production quality, simplify the material removal process, and improve the convenience of use.
Smart Images

Figure CN120333083A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glass fiber production, and specifically relates to a cleaning and drying device for glass fiber production. Background Art
[0002] Glass fiber, namely fiberglass, is an inorganic non-metallic material with excellent performance. There are many types of it. Its advantages are good insulation, high heat resistance, good corrosion resistance, and high mechanical strength. However, its disadvantages are brittleness and poor wear resistance. In glass fiber production, it is necessary to clean and dry the glass fiber to ensure its cleanliness.
[0003] A Chinese patent discloses a cleaning and drying device for glass fiber production (authorization announcement number CN111926400B). This patented technology includes a box body, a base, a top cover, a cleaning box, and a clamping device. The box body is placed on the base, and the top cover is placed on the top of the box body. Connecting plates are fixed on the two outer side walls of the box body and the top cover, and an electric push rod is fixed between the connecting plates. A plurality of through holes are opened at the bottom of the box body, and an annular groove is opened at the outer bottom of the box body around the through holes. An annular sealing groove is opened at the bottom of the annular groove. A bottom plate is arranged in the annular groove, and a cleaning box is fixed on the bottom plate. The cleaning box extends into the box body. Sealing rings are fixed around the cleaning box on the bottom plate, and the sealing rings are combined with the annular sealing grooves. An inner cavity is arranged in the top cover. An annular through groove is opened at the bottom of the inner cavity, and an annular sliding groove is arranged on the outer side of the annular through groove at the bottom of the inner cavity. A toothed ring is slidably arranged in the annular sliding groove. However, the above-mentioned cleaning and drying device for glass fiber production performs the cleaning operation by stirring. During the stirring process, the glass fiber is easily broken, which affects the integrity of the glass fiber and is not conducive to the production quality of the glass fiber. It is inconvenient to take out the material after cleaning and drying, which is not conducive to the convenience of use. Therefore, those skilled in the art provide a cleaning and drying device for glass fiber production to solve the problems raised in the above background art. Summary of the Invention
[0004] The purpose of the present invention is to provide a cleaning and drying device for glass fiber production to solve the problems raised in the above background art.
[0005] To achieve the above object, the present invention provides the following technical solution: A cleaning and drying device for glass fiber production, comprising a cleaning and drying box body, a cleaning and drying mesh plate and an ultrasonic vibrator. The cleaning and drying mesh plate is located inside the cleaning and drying box body, and the ultrasonic vibrator is located above the cleaning and drying mesh plate. At the lower end inside the cleaning and drying box body, a first adjusting screw is provided. A blowing member is installed outside the first adjusting screw. A blowing pipe is provided on one side of the blowing member. A gas supply member is installed below the cleaning and drying box body. At the upper end inside the cleaning and drying box body, a second adjusting screw is provided. A material extraction member is installed outside the second adjusting screw. A material extraction pipe is provided on one side of the material extraction member. A storage member is provided at one end of the upper side of the cleaning and drying box body. An exhaust pipe is provided at the lower end of one side of the storage member. An air extraction pump is installed at one end of the exhaust pipe. A first motor is installed on one side of the cleaning and drying box body corresponding to the first adjusting screw, and a second motor is installed on one side of the cleaning and drying box body corresponding to the second adjusting screw.
[0006] As a further solution of the present invention: The blowing member includes a first adjusting plate. A first electric telescopic rod is installed above the first adjusting plate. The upper end of the first electric telescopic rod is provided with a blowing box. A first connecting pipe is provided on one side of the blowing box. Blowing heads are provided on the upper side of the blowing box. The gas supply member includes an air inlet box. A filter screen is provided on one side of the air inlet box. Filter cotton is provided inside the air inlet box near the filter screen. A heating rod is installed inside the air inlet box near the filter cotton. An air inlet cover is provided inside the air inlet box on the side of the heating rod. An air inlet pipe is provided on one side of the air inlet cover. A delivery air pump is installed at one end of the air inlet pipe.
[0007] As a still further solution of the present invention: The material extraction member includes a second adjusting plate. A through-type screw motor is installed above the second adjusting plate. A third adjusting screw is installed inside the through-type screw motor. A suction hood is provided at the lower end of the third adjusting screw. A second connecting pipe is provided on one side of the suction hood. A brush is provided below the suction hood. A brush roller is installed at the lower end inside the suction hood. A transmission belt is provided at the front end of the brush roller. A transmission motor is installed at one end of the transmission belt. The storage member includes a storage box. A filter plate is provided at the lower end inside the storage box. A discharge plate is provided on one side of the storage box above the filter plate.
[0008] As a further solution of the present invention: The first adjusting screw rotates inside the cleaning and drying box body through a first motor, the first adjusting screw rotates at the lower end position of the air blowing member, the second adjusting screw rotates inside the cleaning and drying box body through a second motor, and the second adjusting screw rotates at the upper end position of the material pumping member.
[0009] As a further solution of the present invention: The output end of the air supply member is communicated with the input end of the air blowing pipe, and the output end of the air blowing pipe is communicated with the input end of the air blowing member.
[0010] As a further solution of the present invention: The output end of the material pumping member is communicated with the input end of the material pumping pipe, the output end of the material pumping pipe is communicated with the input end of the material storage member, the output end of the material storage member is communicated with the input end of the exhaust pipe, and the output end of the exhaust pipe is communicated with the input end of the air extraction pump.
[0011] As a further solution of the present invention: The first adjusting screw rotates inside the first adjusting plate, the air blowing box slides on the upper side of the first adjusting plate through a first electric telescopic rod, one end of the air inlet box is communicated with the input end of the air inlet hood, the output end of the air inlet hood is communicated with the input end of the air conveying pump, the output end of the air conveying pump is communicated with the input end of the air blowing pipe, the output end of the air blowing pipe is communicated with the input end of the first connecting pipe, and the output end of the first connecting pipe is communicated with the input end of the air blowing box.
[0012] As a further solution of the present invention: The upper end of the third adjusting screw slides inside the second adjusting plate, the third adjusting screw slides inside the second adjusting plate through a through type screw motor, the suction hood slides on the lower side of the second adjusting plate through the third adjusting screw, the outer end of the brush roller rotates inside the suction hood, the front end of the drive motor is fixed inside the suction hood, there are two groups of the brush roller, the transmission belt and the drive motor, and the two groups of the brush roller, the transmission belt and the drive motor are correspondingly installed at both ends inside the suction hood.
[0013] As a further solution of the present invention: The output end of the suction hood is communicated with the input end of the second connecting pipe, the output end of the second connecting pipe is communicated with the input end of the material pumping pipe, the output end of the material pumping pipe is communicated with the upper end of the storage tank, and the lower end of the storage tank is communicated with the input end of the exhaust pipe.
[0014] Compared with the prior art, the beneficial effects of the present invention are: The cleaning and drying device for glass fiber production of the present invention vibrates the cleaning water through ultrasonic vibrators, aerates the cleaning water through a blowing component, achieves the effect of cleaning the glass fiber, reduces the damage to the glass fiber during the cleaning process, ensures the integrity of the glass fiber, and improves the production quality of the glass fiber. The glass fiber after cleaning and drying inside the cleaning and drying box body is taken out by means of suction of a material extraction component, which improves the extraction speed of the glass fiber and the convenience of use. Description of the Drawings
[0015] Figure 1 It is a schematic structural diagram of a cleaning and drying device for glass fiber production; Figure 2 It is a perspective view of a cleaning and drying device for glass fiber production; Figure 3 It is a schematic structural diagram of the blowing component in a cleaning and drying device for glass fiber production; Figure 4 It is a perspective view of the air supply component in a cleaning and drying device for glass fiber production; Figure 5 It is a perspective view of the material extraction component in a cleaning and drying device for glass fiber production; Figure 6 It is a cleaning and drying device for glass fiber production Figure 5 The schematic structural diagram of part A in; Figure 7 It is a schematic structural diagram of the material storage component in a cleaning and drying device for glass fiber production.
[0016] In the figure: 1. Cleaning and drying box body; 2. Cleaning and drying mesh plate; 3. Ultrasonic vibrator; 4. First adjusting screw; 5. Blowing component; 6. Blowing pipe; 7. Air supply component; 8. Second adjusting screw; 9. Material extraction component; 10. Material extraction pipe; 11. Material storage component; 12. Exhaust pipe; 13. Exhaust pump; 14. First motor; 15. Second motor; 16. First adjusting plate; 17. First electric telescopic rod; 18. Blowing box; 19. First connecting pipe; 20. Blowing head; 21. Intake box; 22. Filter screen; 23. Filter cotton; 24. Heating rod; 26. Intake hood; 27. Intake pipe; 28. Air conveying pump; 29. Second adjusting plate; 30. Through-type screw motor; 31. Third adjusting screw; 32. Suction hood; 33. Second connecting pipe; 34. Brush; 35. Brush roller; 36. Transmission belt; 37. Transmission motor; 38. Material storage box; 39. Filter plate; 40. Discharge plate. Detailed Embodiments
[0017] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0018] Please refer to Figures 1 to 7, in the embodiment of the present invention, a cleaning and drying device for glass fiber production includes a cleaning and drying box body 1, a cleaning and drying screen plate 2 and an ultrasonic vibrator 3. The cleaning and drying screen plate 2 is located inside the cleaning and drying box body 1, and the ultrasonic vibrator 3 is located above the cleaning and drying screen plate 2. A first adjusting screw 4 is arranged at the lower end inside the cleaning and drying box body 1, a blowing component 5 is installed on the outer side of the first adjusting screw 4, and a blow pipe 6 is arranged on one side of the blowing component 5. A gas supply component 7 is installed below the cleaning and drying box body 1. A second adjusting screw 8 is arranged at the upper end inside the cleaning and drying box body 1, a material extraction component 9 is installed on the outer side of the second adjusting screw 8, and a material extraction pipe 10 is arranged on one side of the material extraction component 9. A storage component 11 is arranged at one end of the upper side of the cleaning and drying box body 1, and an exhaust pipe 12 is arranged at the lower end on one side of the storage component 11. An air extraction pump 13 is installed at one end of the exhaust pipe 12. A first motor 14 is installed on one side of the cleaning and drying box body 1 corresponding to the position of the first adjusting screw 4, and a second motor 15 is installed on one side of the cleaning and drying box body 1 corresponding to the position of the second adjusting screw 8. The first adjusting screw 4 rotates inside the cleaning and drying box body 1 through the first motor 14, and the first adjusting screw 4 rotates at the lower end of the blowing component 5. The second adjusting screw 8 rotates inside the cleaning and drying box body 1 through the second motor 15, and the second adjusting screw 8 rotates at the upper end of the material extraction component 9. The output end of the gas supply component 7 is communicated with the input end of the blow pipe 6, the output end of the blow pipe 6 is communicated with the input end of the blowing component 5, the output end of the material extraction component 9 is communicated with the input end of the material extraction pipe 10, the output end of the material extraction pipe 10 is communicated with the input end of the storage component 11, the output end of the storage component 11 is communicated with the input end of the exhaust pipe 12, and the output end of the exhaust pipe 12 is communicated with the input end of the air extraction pump 13. First, place a cleaning and drying device for glass fiber production at the use position, introduce the glass fiber to be cleaned and dried into the inside of the cleaning and drying box body 1, and introduce clean water into the inside of the cleaning and drying box body 1. The ultrasonic vibrator 3 operates to vibrate the water liquid inside the cleaning and drying box body 1. The gas supply component 7 operates to introduce external air into the inside of the blow pipe 6, and the gas inside the blow pipe 6 is exported through the blowing component 5 to perform aeration treatment on the water liquid inside the cleaning and drying box body 1, and clean the glass fiber on the cleaning and drying screen plate 2. The first motor 14 operates to drive the first adjusting screw 4 to rotate inside the cleaning and drying box body 1, and the first adjusting screw 4 rotates at the lower end of the blowing component 5 to adjust the aeration position. Then, after the cleaning is completed, the water liquid inside the cleaning and drying box body 1 is discharged, and the cleaning and drying screen plate 2 filters the glass fiber, and the water liquid flows out. The gas supply component 7 operates to heat the inside, introduce external air into the inside of the gas supply component 7, the air inside the gas supply component 7 is heated and then introduced into the inside of the blow pipe 6, the gas inside the blow pipe 6 enters the inside of the blowing component 5, and the gas inside the blowing component 5 is exported to perform drying treatment on the glass fiber on the cleaning and drying screen plate 2. After drying, the air extraction pump 13 operates,Clean the inside of the glass fiber suction and feeding member 9 inside the cleaning and drying box body 1, introduce the glass fiber inside the feeding member 9 into the inside of the feeding pipe 10, introduce the glass fiber inside the feeding pipe 10 into the inside of the storage member 11. During the process of the storage member 11 storing the glass fiber, the gas is discharged through the exhaust pipe 12 and the air extraction pump 13. The second motor 15 operates to drive the second adjusting screw rod 8 to rotate inside the cleaning and drying box body 1. The second adjusting screw rod 8 rotates at the upper end of the feeding member 9 to adjust the position of the feeding member 9. Finally, take out the glass fiber after cleaning and drying inside the storage member 11.
[0019] During Figure 2 、 3, in 4: The air blowing component 5 includes a first adjusting plate 16. A first electric telescopic rod 17 is installed on the upper side of the first adjusting plate 16. The upper end of the first electric telescopic rod 17 is provided with an air blowing box 18. A first connecting pipe 19 is arranged on one side of the air blowing box 18. An air blowing head 20 is arranged on the upper side of the air blowing box 18. The air supply component 7 includes an air inlet box 21. A filter screen 22 is arranged on one side of the air inlet box 21. A filter cotton 23 is arranged inside the air inlet box 21 near the filter screen 22. A heating rod 24 is installed inside the air inlet box 21 near the filter cotton 23. An air inlet hood 26 is arranged inside the air inlet box 21 at a position on one side of the heating rod 24. An air inlet pipe 27 is arranged on one side of the air inlet hood 26. One end of the air inlet pipe 27 is installed with a conveying air pump 28. The first adjusting screw 4 rotates at the inner position of the first adjusting plate 16. The air blowing box 18 slides on the upper side of the first adjusting plate 16 through the first electric telescopic rod 17. One end of the air inlet box 21 is communicated with the input end of the air inlet hood 26. The output end of the air inlet hood 26 is communicated with the input end of the conveying air pump 28. The output end of the conveying air pump 28 is communicated with the input end of the air blowing pipe 6. The output end of the air blowing pipe 6 is communicated with the input end of the first connecting pipe 19. The output end of the first connecting pipe 19 is communicated with the input end of the air blowing box 18. The ultrasonic oscillator 3 operates to vibrate and clean and dry the water liquid inside the cleaning and drying box body 1. The conveying air pump 28 operates to introduce the external air filtered by the filter screen 22 and the filter cotton 23 into the inside of the air inlet box 21. The air inside the air inlet box 21 is introduced into the inside of the air blowing pipe 6 through the air inlet hood 26, the air inlet pipe 27, and the conveying air pump 28. The gas inside the air blowing pipe 6 enters the inside of the air blowing box 18 through the first connecting pipe 19. The gas inside the air blowing box 18 is led out through the air blowing head 20 to perform aeration treatment on the water liquid inside the cleaning and drying box body 1. The first electric telescopic rod 17 operates to push the air blowing box 18 up to the lower side of the cleaning and drying mesh plate 2. The bubbles are introduced above the cleaning and drying mesh plate 2 through the cleaning and drying mesh plate 2 to clean the glass fiber on the cleaning and drying mesh plate 2. The first motor 14 operates to drive the first adjusting screw 4 to rotate inside the cleaning and drying box body 1. The first adjusting screw 4 rotates inside the first adjusting plate 16 to adjust the aeration position of the air blowing component 5. Then, the cleaning is completed, and the water liquid inside the cleaning and drying box body 1 is discharged. The cleaning and drying mesh plate 2 filters the glass fiber, and the water liquid flows out. The heating rod 24 operates to heat the inside of the air inlet box 21. The conveying air pump 28 operates to introduce the external air filtered by the filter screen 22 and the filter cotton 23 into the inside of the air inlet box 21. The heated air inside the air inlet box 21 is introduced into the inside of the air blowing pipe 6 through the air inlet hood 26, the air inlet pipe 27, and the conveying air pump 28. The gas inside the air blowing pipe 6 enters the inside of the air blowing box 18 through the first connecting pipe 19. The gas inside the air blowing box 18 is led out through the air blowing head 20 to perform drying treatment on the glass fiber on the cleaning and drying mesh plate 2.
[0020] In Figure 2 , 5, among 6 and 7: The material extraction component 9 includes a second adjustment plate 29. A through-type screw motor 30 is installed on the upper side of the second adjustment plate 29. A third adjustment screw 31 is installed inside the through-type screw motor 30. A suction hood 32 is provided at the lower end of the third adjustment screw 31. A second connecting pipe 33 is provided on one side of the suction hood 32. A brush 34 is provided on the lower side of the suction hood 32. A brush roller 35 is installed at the lower end inside the suction hood 32. A transmission belt 36 is provided at the front end of the brush roller 35. A transmission motor 37 is installed at one end of the transmission belt 36. The storage component 11 includes a storage box 38. A filter plate 39 is provided at the lower end inside the storage box 38. A discharge plate 40 is provided on one side of the storage box 38 at the upper side of the filter plate 39. The upper end of the third adjustment screw 31 slides inside the second adjustment plate 29. The third adjustment screw 31 slides inside the second adjustment plate 29 through the through-type screw motor 30. The suction hood 32 slides under the second adjustment plate 29 through the third adjustment screw 31. The outer end of the brush roller 35 rotates inside the suction hood 32. The front end of the transmission motor 37 is fixed inside the suction hood 32. There are two sets of the brush roller 35, the transmission belt 36 and the transmission motor 37, and the two sets of the brush roller 35, the transmission belt 36 and the transmission motor 37 are correspondingly installed at both ends inside the suction hood 32. The output end of the suction hood 32 is communicated with the input end of the second connecting pipe 33. The output end of the second connecting pipe 33 is communicated with the input end of the material extraction pipe 10. The output end of the material extraction pipe 10 is communicated with the upper end of the storage box 38. The lower end of the storage box 38 is communicated with the input end of the exhaust pipe 12. After drying, the air extraction pump 13 operates, and the glass fiber inside the cleaning and drying box body 1 is sucked into the inside of the suction hood 32. The glass fiber inside the suction hood 32 is introduced into the inside of the material extraction pipe 10 through the second connecting pipe 33. The glass fiber inside the material extraction pipe 10 is introduced into the inside of the storage box 38. The filter plate 39 filters the glass fiber, and the gas is discharged through the exhaust pipe 12 and the air extraction pump 13. The through-type screw motor 30 operates to drive the third adjustment screw 31 to slide inside the second adjustment plate 29 to adjust the height of the suction hood 32. The second motor 15 operates to drive the second adjustment screw 8 to rotate inside the cleaning and drying box body 1, and the second adjustment screw 8 rotates inside the second adjustment plate 29 to adjust the position of the material extraction component 9. The brush 34 sweeps the glass fiber on the ultrasonic vibrator 3. The transmission motor 37 operates to drive the brush roller 35 to rotate through the transmission belt 36 to sweep the glass fiber on the ultrasonic vibrator 3. Finally, the discharge plate 40 is removed to take out the cleaned and dried glass fiber inside the storage box 38.
[0021] The working principle of the present invention is as follows: First, place a cleaning and drying device for glass fiber production at the usage position, introduce the glass fiber to be cleaned and dried into the interior of the cleaning and drying box body 1, and introduce cleaning water into the interior of the cleaning and drying box body 1. The ultrasonic oscillator 3 operates to vibrate the water liquid inside the cleaning and drying box body 1. The conveying air pump 28 operates to introduce external air into the interior of the air inlet box 21 after filtering through the filter screen 22 and the filter cotton 23. The air inside the air inlet box 21 is introduced into the interior of the air blowing pipe 6 through the air inlet cover 26, the air inlet pipe 27, and the conveying air pump 28. The gas inside the air blowing pipe 6 enters the interior of the air blowing box 18 through the first connecting pipe 19. The gas inside the air blowing box 18 is discharged through the air blowing head 20 to perform aeration treatment on the water liquid inside the cleaning and drying box body 1. The first electric telescopic rod 17 operates to push the air blowing box 18 upward to the lower side of the cleaning and drying mesh plate 2, and the bubbles are introduced to the upper side of the cleaning and drying mesh plate 2 through the cleaning and drying mesh plate 2 to clean the glass fiber on the cleaning and drying mesh plate 2. The first motor 14 operates to drive the first adjusting screw rod 4 to rotate inside the cleaning and drying box body 1, and the first adjusting screw rod 4 rotates inside the first adjusting plate 16 to adjust the aeration position of the air blowing component 5. Then, the cleaning is completed, and the water liquid inside the cleaning and drying box body 1 is discharged. The cleaning and drying mesh plate 2 filters the glass fiber, and the water liquid flows out. The heating rod 24 operates to heat the interior of the air inlet box 21. The conveying air pump 28 operates to introduce external air into the interior of the air inlet box 21 after filtering through the filter screen 22 and the filter cotton 23. The heated air inside the air inlet box 21 is introduced into the interior of the air blowing pipe 6 through the air inlet cover 26, the air inlet pipe 27, and the conveying air pump 28. The gas inside the air blowing pipe 6 enters the interior of the air blowing box 18 through the first connecting pipe 19. The gas inside the air blowing box 18 is discharged through the air blowing head 20 to perform drying treatment on the glass fiber on the cleaning and drying mesh plate 2. After drying, the air extraction pump 13 operates, and the glass fiber inside the cleaning and drying box body 1 is sucked into the interior of the suction hood 32. The glass fiber inside the suction hood 32 is introduced into the interior of the extraction pipe 10 through the second connecting pipe 33. The glass fiber inside the extraction pipe 10 is introduced into the interior of the storage box 38. The filter plate 39 filters the glass fiber, and the gas is discharged through the exhaust pipe 12 and the air extraction pump 13. The through-type lead screw motor 30 operates to drive the third adjusting screw rod 31 to slide inside the second adjusting plate 29 to adjust the height of the suction hood 32. The second motor 15 operates to drive the second adjusting screw rod 8 to rotate inside the cleaning and drying box body 1, and the second adjusting screw rod 8 rotates inside the second adjusting plate 29 to adjust the position of the extraction component 9. The brush 34 sweeps the glass fiber on the ultrasonic oscillator 3. The driving motor 37 operates to drive the brush roller 35 to rotate through the transmission belt 36 to sweep the glass fiber on the ultrasonic oscillator 3. Finally, remove the discharge plate 40 and take out the cleaned and dried glass fiber inside the storage box 38.
[0022] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.
[0023] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A cleaning and drying device for fiberglass production, comprising a cleaning and drying box body (1), a cleaning and drying mesh plate (2) and an ultrasonic vibrator (3). The cleaning and drying mesh plate (2) is located inside the cleaning and drying box body (1), and the ultrasonic vibrator (3) is located above the cleaning and drying mesh plate (2), characterized in that, At the lower end inside the cleaning and drying box body (1), a first adjusting screw rod (4) is provided. A blowing component (5) is installed on the outer side of the first adjusting screw rod (4). A blow pipe (6) is arranged on one side of the blowing component (5). A gas supply component (7) is installed on the lower side of the cleaning and drying box body (1). At the upper end inside the cleaning and drying box body (1), a second adjusting screw rod (8) is provided. A material extraction component (9) is installed on the outer side of the second adjusting screw rod (8). A material extraction pipe (10) is arranged on one side of the material extraction component (9). A material storage component (11) is arranged at one end of the upper side of the cleaning and drying box body (1). An exhaust pipe (12) is arranged at the lower end on one side of the material storage component (11). An air extraction pump (13) is installed at one end of the exhaust pipe (12). A first motor (14) is installed on one side of the cleaning and drying box body (1) corresponding to the position of the first adjusting screw rod (4). A second motor (15) is installed on one side of the cleaning and drying box body (1) corresponding to the position of the second adjusting screw rod (8).
2. The cleaning and drying device for glass fiber production according to claim 1, characterized in that, The blowing component (5) includes a first adjusting plate (16). A first electric telescopic rod (17) is installed on the upper side of the first adjusting plate (16). A blowing box (18) is arranged at the upper end of the first electric telescopic rod (17). A first connecting pipe (19) is arranged on one side of the blowing box (18). A blowing head (20) is arranged on the upper side of the blowing box (18). The gas supply component (7) includes an air inlet box (21). A filter screen (22) is arranged on one side of the air inlet box (21). A filter cotton (23) is arranged inside the air inlet box (21) near the filter screen (22). A heating rod (24) is installed inside the air inlet box (21) near the filter cotton (23). An air inlet cover (26) is arranged inside the air inlet box (21) on one side of the heating rod (24). An air inlet pipe (27) is arranged on one side of the air inlet cover (26). A conveying air pump (28) is installed at one end of the air inlet pipe (27).
3. A cleaning and drying device for glass fiber production according to claim 1, wherein, The material extraction component (9) includes a second adjusting plate (29). A through-type screw motor (30) is installed on the upper side of the second adjusting plate (29). A third adjusting screw rod (31) is installed inside the through-type screw motor (30). A suction hood (32) is arranged at the lower end of the third adjusting screw rod (31). A second connecting pipe (33) is arranged on one side of the suction hood (32). A brush (34) is arranged on the lower side of the suction hood (32). A brush roller (35) is installed at the lower end inside the suction hood (32). A transmission belt (36) is arranged at the front end of the brush roller (35). A transmission motor (37) is installed at one end of the transmission belt (36). The material storage component (11) includes a material storage box (38). A filter plate (39) is arranged at the lower end inside the material storage box (38). A discharge plate (40) is arranged on one side of the material storage box (38) above the filter plate (39).
4. A cleaning and drying device for glass fiber production according to claim 1, wherein, The first adjusting screw rod (4) rotates at an internal position of the cleaning and drying box body (1) through a first motor (14). The first adjusting screw rod (4) rotates at a lower end position of the air blowing member (5). The second adjusting screw rod (8) rotates at an internal position of the cleaning and drying box body (1) through a second motor (15). The second adjusting screw rod (8) rotates at an upper end position of the material pumping member (9).
5. A cleaning and drying device for glass fiber production according to claim 1, characterized in that, The output end of the air supply member (7) is communicated with the input end of the air blowing pipe (6). The output end of the air blowing pipe (6) is communicated with the input end of the air blowing member (5).
6. The cleaning and drying device for glass fiber production according to claim 1, wherein, The output end of the material pumping member (9) is communicated with the input end of the material pumping pipe (10). The output end of the material pumping pipe (10) is communicated with the input end of the material storage member (11). The output end of the material storage member (11) is communicated with the input end of the exhaust pipe (12). The output end of the exhaust pipe (12) is communicated with the input end of the air extraction pump (13).
7. A cleaning and drying device for fiberglass production according to claim 2, characterized in that, The first adjusting screw rod (4) rotates at an internal position of the first adjusting plate (16). The air blowing box (18) slides at an upper side position of the first adjusting plate (16) through a first electric telescopic rod (17). One end of the air inlet box (21) is communicated with the input end of the air inlet cover (26). The output end of the air inlet cover (26) is communicated with the input end of the air conveying pump (28). The output end of the air conveying pump (28) is communicated with the input end of the air blowing pipe (6). The output end of the air blowing pipe (6) is communicated with the input end of the first connecting pipe (19). The output end of the first connecting pipe (19) is communicated with the input end of the air blowing box (18).
8. The cleaning and drying device for glass fiber production according to claim 3, wherein, The upper end of the third adjusting screw rod (31) slides at an internal position of the second adjusting plate (29). The third adjusting screw rod (31) slides at an internal position of the second adjusting plate (29) through a through type screw rod motor (30). The suction hood (32) slides at a lower side position of the second adjusting plate (29) through the third adjusting screw rod (31). The outer end of the brush roller (35) rotates at an internal position of the suction hood (32). The front end of the drive motor (37) is fixed at an internal position of the suction hood (32). There are two groups of the brush rollers (35), the drive belts (36) and the drive motor (37). The two groups of the brush rollers (35), the drive belts (36) and the drive motor (37) are correspondingly installed at both ends inside the suction hood (32).
9. A cleaning and drying device for glass fiber production according to claim 3, wherein, The output end of the suction hood (32) is communicated with the input end of the second connecting pipe (33). The output end of the second connecting pipe (33) is communicated with the input end of the material pumping pipe (10). The output end of the material pumping pipe (10) is communicated with the upper end of the storage box (38). The lower end of the storage box (38) is communicated with the input end of the exhaust pipe (12).
Citation Information
Patent Citations
A cleaning and drying device for fiberglass production
CN111926400B