An automatic flocking device for glove flocking
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-03
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]本发明公开一种用于手套植绒的自动喷绒装置,旨在解决传统用于手套植绒的喷绒装置,喷出的绒毛无法均匀分散地喷向手套植绒面,然后还要依靠人工对其二次调整,操作过程繁琐,自动效果差,喷绒效率较低的技术问题
[0017] By setting a transmission rack, when the motor drives the drive gear to rotate, the first linkage gear and the second linkage gear rotate together. Since the size of the drive gear is twice as large as the first linkage gear and the second linkage gear, the speed of the drive gear is less than that of the first linkage gear and the second linkage gear. When the hand mold rotates, the jetting effect of the jetting mechanism and the fluff dispersion effect in the processing box are more complete, the transmission connection is tighter, and the synchronization of the flocking process is more stable when the flocked gloves rotate with the hand mold.
Smart Images

Figure CN116371637B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mechanical equipment technology, and in particular to an automatic flocking device for flocking gloves. Background Technology
[0002] There are many types of mechanical equipment. When mechanical equipment is in operation, some of its components, or even the equipment itself, can perform different forms of mechanical motion. Mechanical equipment consists of drive devices, speed change devices, transmission devices, working devices, braking devices, protective devices, lubrication systems, cooling systems, and other parts. When selectively operating a specified product using mechanical equipment, the structure of the equipment is designed and adjusted to meet actual needs. With the widespread application of mechanical devices, more and more processing methods are being replaced by mechanical equipment, and efficiency is increasing.
[0003] Traditional flocking spraying devices for gloves often use an integrated fan to spray the flock. The flock fibers sprayed by this type of device tend to accumulate and cannot be evenly distributed on the flocked surface of the glove. Then, manual adjustment is required, which is cumbersome, has poor automation effect, and low flocking efficiency. Therefore, there is an urgent need for an automatic flocking spraying device for gloves to solve the above problems. Summary of the Invention
[0004] This invention discloses an automatic flocking device for gloves, which aims to solve the technical problems of traditional flocking devices for gloves, where the flocked fibers cannot be evenly dispersed on the flocking surface of the gloves, and manual adjustment is still required, resulting in a cumbersome operation process, poor automation effect, and low flocking efficiency.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] An automatic flocking device for gloves includes a mounting platform. A fixing groove is provided on the top outer wall of the mounting platform, and a transmission mechanism is provided within the fixing groove. The transmission mechanism is equipped with a first turntable, a second turntable, and a rotating frame. An air-jet mechanism is provided on one side of the rotating frame. A processing box is provided on one side of the top outer wall of the mounting platform. A feeding hopper is provided on one side of the top outer wall of the processing box, and a cover plate is hinged to one side of the top outer wall of the feeding hopper. An adapter hole is provided on the bottom inner wall of the processing box, which is adapted to the first turntable. A hand-shaped mold is provided on the second turntable, and a pad is provided at the center of the top outer wall of the mounting platform, which is adapted to the second turntable. A surrounding plate is provided on the top outer wall of the pad, and flocking stations are fixedly connected to the inner walls on both sides of the surrounding plate. The air-jet mechanism and the processing box are used in conjunction with the flocking stations.
[0007] By setting up an air jet mechanism and a processing box, the air jet mechanism and the processing box are linked together, and part of the force generated by the motor drive rotation is converted into the airflow required for air jetting. Since the first linkage gear and the second linkage gear are similar in size, the frequency of air passage and ventilation is kept similar. By utilizing the mobility of the two to cooperate, the stable operation of the air jetting equipment is ensured.
[0008] In a preferred embodiment, the top outer wall of the processing box is provided with a box cover, the two inner walls of the processing box are configured as an arc surface structure that is wider at the top and narrower at the bottom, and the two inner walls of the processing box are provided with equally spaced guide grooves. The top outer wall of the first turntable is provided with equally spaced material turning bottom fans, and a rotating rod is installed at the center of the top outer wall of the first turntable. A dispersing frame is provided on the outer wall of the rotating rod near the top. Two outlet holes are provided on one outer wall of the processing box, and the height of the dispersing frame is similar to the height of the two outlet holes.
[0009] By setting up a processing box and a first turntable, when the first linkage gear rotates, it drives the first turntable on top to rotate, which in turn drives the bottom fan on top of the first turntable to rotate. The rotating bottom fan can continuously turn over the accumulated fluff, and then combined with the dispersing effect of the dispersing frame on the rotating rod, it effectively disperses some of the fluff to the upper part of the processing box for subsequent flocking needs. The uniform dispersion of fluff is ensured from the outlet position, which facilitates the subsequent flocking.
[0010] In a preferred embodiment, the jetting mechanism includes: an air storage box, a compression pad, an adapter pad, and mounting holes. The air storage box is movably connected to the top outer wall of the mounting platform. The adapter pad is disposed on one side of the outer wall of the air storage box. The mounting holes are disposed on both sides of the top outer wall of the air storage box. The compression pad is disposed on the outer wall of the rotating frame. The rotating frame is configured as an irregular triangular structure, and the three compression pads are respectively installed on the triangular structure at unequal distances. The size of the adapter pad is configured to have a periodically progressive structure. Air guide pipes are installed on the inner walls of the two mounting holes, and a corrugated connecting pipe is connected to the middle position of the air guide pipe. The end of the air guide pipe away from the air storage box is connected to the top outer wall of the spraying platform. Softening pipes are installed on the inner walls of the two outlet holes, and the end of the softening pipe away from the processing box is connected to the outer wall of the spraying platform near the top.
[0011] By setting up a rotating frame, as the frame rotates, the compression pads on the frame continuously compress the adapter pads, which change periodically. The adapter pads are hollow structures made of rubber. After being continuously compressed, they can drive the airflow along the air duct. Combined with the installation positions of the air duct and the flocking tube on the flocking table, the dispersed fluff in the processing box is sucked into the diversion channel when the air is guided through the air duct. After being received by each receiving hopper, it is sprayed from the flocking box onto the glove to be flocked on the outer wall of the hand mold. Because the two corners of the irregular triangular rotating frame are relatively close, by adjusting the initial position of the rotating frame and the hand mold, when the two close compression pads on the rotating frame compress the adapter pads and spray air, the two flocking tables face the wide side of the hand mold, which effectively ensures that the flocking area of the glove with a large area can be targeted to increase the amount of fluff sprayed.
[0012] In a preferred embodiment, a mounting groove is provided on one side of the outer wall of the top of the mounting platform, a micro motor is provided on the inner wall of one side of the mounting groove, one end of the output shaft of the micro motor is connected to a threaded rod, a slider is slidably connected to the inner wall of the mounting groove, the slider is threadedly connected to the outer wall of the threaded rod, a connecting rod is provided on one side of the outer wall of the slider, and the end of the connecting rod away from the slider is installed on one side of the outer wall of the gas storage box.
[0013] By setting up a threaded rod and a micro motor, when the micro motor works, it drives the threaded rod to rotate. The rotating threaded rod drives the slider on its outer wall to move along the mounting groove. One side of the slider's outer wall is connected to the other side of the air storage box via a connecting rod. In this way, by adjusting the movement of the slider, the air storage box is moved closer to or away from the rotating frame. When the rotating frame is closer to the air storage box, the distance between the extrusion pad and the adapter pad becomes smaller, and the extrusion pressure increases, resulting in a larger amount of down spraying. Conversely, the air pressure decreases, and the amount of down spraying decreases. This allows for flexible control of the down spraying throughput.
[0014] In a preferred embodiment, the outer walls of the two spraying tables on opposite sides are both set as arc-shaped structures, and spraying boxes are provided on the two arc-shaped structures at equal intervals. The side of the spraying box located inside the spraying table is connected to a receiving hopper. The inner wall of the spraying table is provided with a diversion channel, and the receiving hopper communicates with the diversion channel. The several spraying boxes on the two spraying tables face the hand-shaped mold. The inner walls on both sides of the spraying box are connected to guide fans through bearings. One end of the receiving hopper is provided with a down outlet, and the down outlet faces the side of the guide fan. The outer wall of the spraying box near the bottom is provided with a dispersion cover, and the dispersion cover is provided with equally spaced holes.
[0015] By setting up a flocking box, the flocking is sprayed into the distribution channel by the jet mechanism. When it passes through the flocking box, the airflow drives the dispersion fan connected to the bearing to rotate. Combined with the holes on the flocking box, the flocking to be sprayed is effectively further dispersed, making the flocking of the gloves more uniform and sufficient.
[0016] In a preferred embodiment, a motor is provided on the bottom outer wall of the mounting platform. One end of the motor output shaft is connected to a drive gear, and the drive gear is located in a fixed groove. The two sides of the bottom inner wall of the fixed groove are respectively connected to a first linkage gear and a second linkage gear through bearings. The first linkage gear is connected to a first turntable, the second linkage gear is connected to a rotating frame, and the drive gear is connected to a second turntable. The same transmission rack is sleeved on the outer walls of the drive gear, the first linkage gear, and the second linkage gear.
[0017] By setting a transmission rack, when the motor drives the drive gear to rotate, the first linkage gear and the second linkage gear rotate together. Since the size of the drive gear is twice as large as the first linkage gear and the second linkage gear, the speed of the drive gear is less than that of the first linkage gear and the second linkage gear. When the hand mold rotates, the jetting effect of the jetting mechanism and the fluff dispersion effect in the processing box are more complete, the transmission connection is tighter, and the synchronization of the flocking process is more stable when the flocked gloves rotate with the hand mold.
[0018] As described above, an automatic flocking device for gloves includes a mounting platform. A fixing groove is provided on the top outer wall of the mounting platform, and a transmission mechanism is provided within the fixing groove. The transmission mechanism is equipped with a first turntable, a second turntable, and a rotating frame. An air-jet mechanism is provided on one side of the rotating frame. A processing box is provided on one side of the top outer wall of the mounting platform. A feeding hopper is provided on one side of the top outer wall of the processing box, and a cover plate is hinged to one side of the top outer wall of the feeding hopper. An adapter hole is provided on the bottom inner wall of the processing box, which is adapted to the first turntable. A hand-shaped mold is provided on the second turntable, and a pad is provided at the center of the top outer wall of the mounting platform, which is adapted to the second turntable. A surrounding plate is provided on the top outer wall of the pad, and flocking stations are fixedly connected to the inner walls on both sides of the surrounding plate. The air-jet mechanism and the processing box are used in conjunction with the flocking stations. The automatic flocking device for gloves provided by this invention has the technical advantages of stable flocking, good flock dispersion, and adjustable flocking volume. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of an automatic flocking device for gloves proposed in this invention.
[0020] Figure 2 This is a side view of an automatic flocking device for gloves proposed in this invention.
[0021] Figure 3 This is a schematic diagram of the spraying table structure of an automatic spraying device for flocking gloves proposed in this invention.
[0022] Figure 4This is a schematic diagram of the enclosure structure of an automatic flocking device for gloves proposed in this invention.
[0023] Figure 5 This is a schematic cross-sectional view of the spraying table of an automatic spraying device for flocking gloves, as proposed in this invention.
[0024] Figure 6 This is a schematic diagram of the spray box structure of an automatic spray device for flocking gloves proposed in this invention.
[0025] Figure 7 This is a schematic diagram of the air jet mechanism of an automatic flocking device for gloves proposed in this invention.
[0026] Figure 8 This is a schematic diagram of the internal structure of the processing box of an automatic flocking device for flocking gloves proposed in this invention.
[0027] Figure 9 This is a schematic diagram of the transmission rack and pinion installation structure of an automatic flocking device for gloves proposed in this invention.
[0028] In the diagram: 1. Support leg; 2. Mounting platform; 3. Processing box; 4. Feed hopper; 5. Cover plate; 6. Box cover; 7. Down-feeding pipe; 8. Air guide pipe; 9. Corrugated connecting pipe; 10. Rotating frame; 11. Micro motor; 12. Mounting slot; 13. Motor; 14. Enclosure plate; 15. Air storage box; 16. Down-spraying table; 17. Hand-shaped mold; 18. Washer; 19. Down-feeding inlet; 20. Air inlet; 21. Down-spraying box; 22. Diversion channel; 23. Receiving hopper; 25. Wool outlet; 26. Guide fan; 27. Dispersion cover; 28. Mounting hole; 29. Extrusion pad; 30. Threaded rod; 31. Slider; 32. Connecting rod; 33. Adaptor pad; 34. Guide channel; 35. Tilting bottom fan; 36. Rotating rod; 37. Dispersion frame; 38. First linkage gear; 39. First turntable; 40. Drive gear; 41. Second turntable; 42. Transmission rack; 43. Second linkage gear. Detailed Implementation
[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0030] The automatic flocking device disclosed in this invention is mainly used in scenarios where the flocking fibers cannot be evenly dispersed and sprayed onto the flocking surface of the glove.
[0031] Reference Figure 1-9An automatic flocking device for gloves includes a mounting platform 2. The top outer wall of the mounting platform 2 is provided with a fixing groove, and a transmission mechanism is provided in the fixing groove. The transmission mechanism is provided with a first turntable 39, a second turntable 41 and a rotating frame 10. A jetting mechanism is provided on one side of the rotating frame 10. A processing box 3 is provided on one side of the top outer wall of the mounting platform 2. A feeding hopper 4 is provided on one side of the top outer wall of the processing box 3, and a cover plate 5 is connected to the top outer wall of the feeding hopper 4 by a hinge. An adapter hole is provided on the bottom inner wall of the processing box 3, and the adapter hole is adapted to the first turntable 39. A hand-shaped mold 17 is provided on the second turntable 41, and a pad is provided at the center of the top outer wall of the mounting platform 2, which is adapted to the second turntable 41. A surrounding plate 14 is provided on the top outer wall of the pad, and flocking tables 16 are fixedly connected to the inner walls on both sides of the surrounding plate 14. The jetting mechanism and the processing box 3 are used in conjunction with the flocking tables 16.
[0032] Specifically, by linking the jet mechanism with the processing box 3, a portion of the force generated by the rotation of the motor 13 is converted into the airflow required for jetting, and since the first linkage gear 38 and the second linkage gear 43 are similar in size, the frequencies of lint permeation and air permeation remain similar.
[0033] Reference Figure 1 , Figure 2 and Figure 8 In a preferred embodiment, the top outer wall of the processing box 3 is provided with a box cover 6, the inner walls of both sides of the processing box 3 are configured as an arc surface structure that is wider at the top and narrower at the bottom, and the inner walls of both sides of the processing box 3 are provided with equally spaced guide grooves 34. The top outer wall of the first turntable 39 is provided with equally spaced material turning bottom fans 35, and a rotating rod 36 is installed at the center of the top outer wall of the first turntable 39. A dispersing frame 37 is provided on the outer wall of the rotating rod 36 near the top. Two outlet holes are provided on one side outer wall of the processing box 3, and the height of the dispersing frame 37 is similar to the height of the two outlet holes.
[0034] When the first linkage gear 38 rotates, it drives the first turntable 39 on its top to rotate, which in turn drives the turning bottom fan 35 on the top of the first turntable 39 to rotate. The rotating turning bottom fan 35 can continuously turn over the accumulated fluff, and then, combined with the dispersing effect of the dispersing frame 37 on the rotating rod 36, it can effectively disperse some of the fluff to the upper position inside the processing box 3.
[0035] Reference Figure 1 and Figure 6In a preferred embodiment, the jetting mechanism includes: an air storage box 15, a compression pad 29, an adapter pad 33, and mounting holes 28. The air storage box 15 is movably connected to the top outer wall of the mounting platform 2. The adapter pad 33 is disposed on one side of the outer wall of the air storage box 15. The mounting holes 28 are disposed on both sides of the top outer wall of the air storage box 15. The compression pad 29 is disposed on the outer wall of the rotating frame 10. The rotating frame 10 is configured as an irregular triangular structure, and the three compression pads 29 are respectively installed at unequal distances on the triangular structure. The size of the adapter pad 33 is configured as a periodically progressive structure. Air guide pipes 8 are installed on the inner walls of the two mounting holes 28, and a corrugated connecting pipe 9 is connected to the middle position of the air guide pipe 8. The end of the air guide pipe 8 away from the air storage box 15 is connected to the top outer wall of the spraying table 16. A down-feeding pipe 7 is installed on the inner walls of the two outlet holes. The end of the down-feeding pipe 7 away from the processing box 3 is connected to the side outer wall of the spraying table 16 near the top.
[0036] Specifically, when the rotating frame 10 rotates, the compression pads 29 on the rotating frame 10 continuously compress the adapter pads 33, which change periodically. The adapter pads 33 are hollow structures made of rubber. After being continuously compressed, they can drive the airflow along the air guide pipe 8. Combined with the installation positions of the air guide pipe 8 and the down pipe 7 on the down spraying table 16, when the air is guided by the air guide pipe 8, the dispersed down in the processing box 3 is sucked into the diversion channel 22. Then, after being received by each receiving hopper 23, it is sprayed from the down spraying box 21 onto the hand mold 17 on the glove to be flocked. Since the two corners of the irregular triangular rotating frame 10 are relatively close, the initial positions of the rotating frame 10 and the hand mold 17 are adjusted. When the two close compression pads 29 on the rotating frame 10 compress the adapter pads 33 to spray air, the hand mold 17 facing the two down spraying tables 16 is in the wide face position. When the compression pads 29 alone compress the adapter pads 33, the hand mold 17 facing the two down spraying tables 16 is in the narrow face position.
[0037] Reference Figure 1 , Figure 2 and Figure 6 In a preferred embodiment, a mounting groove 12 is provided on one side of the top outer wall of the mounting platform 2, a micro motor 11 is provided on the inner wall of one side of the mounting groove 12, one end of the output shaft of the micro motor 11 is connected to a threaded rod 30, a slider 31 is slidably connected to the inner wall of the mounting groove 12, the slider 31 is threadedly connected to the outer wall of the threaded rod 30, a connecting rod 32 is provided on one side of the outer wall of the slider 31, and the end of the connecting rod 32 away from the slider 31 is installed on one side of the outer wall of the gas storage box 15.
[0038] Specifically, when the micro motor 11 is working, it drives the threaded rod 30 to rotate. The rotating threaded rod 30 drives the slider 31 on its outer wall to move along the mounting groove 12. The outer wall of the slider 31 is connected to the outer wall of the air storage box on one side by the connecting rod 32. In this way, by adjusting the movement of the slider 31, the air storage box 15 is moved closer to or away from the rotating frame 10. When the rotating frame 10 is closer to the air storage box 15, the distance between the extrusion pad 29 and the adapter pad 33 becomes smaller, the extrusion pressure becomes larger, and the amount of down sprayed becomes larger. Conversely, the air pressure becomes smaller, and the amount of down sprayed decreases.
[0039] Reference Figure 3 , Figure 4 , Figure 5 and Figure 6 In a preferred embodiment, the outer walls of the two spraying tables 16 on opposite sides are both set as arc-shaped structures, and spraying boxes 21 are provided on the two arc-shaped structures at equal intervals. The side of the spraying box 21 located inside the spraying table 16 is connected to a receiving hopper 23. The inner wall of the spraying table 16 is provided with a diversion channel 22, and the receiving hopper 23 communicates with the diversion channel 22. The several spraying boxes 21 provided on the two spraying tables 16 are all facing the hand-shaped mold 17. The inner walls on both sides of the spraying box 21 are connected to guide fans 26 through bearings. One end of the receiving hopper 23 is provided with a down outlet 25, and the down outlet 25 faces the side of the guide fan 26. The outer wall of the spraying box 21 near the bottom is provided with a dispersion cover 27, and the dispersion cover 27 is provided with equally spaced leakage holes.
[0040] Specifically, after the fluff is sprayed into the diversion channel 22 by the jet mechanism, when it passes through the fluff spray box 21, the airflow drives the dispersion fan connected to the bearing to rotate, and the fluff to be sprayed is further dispersed by the leakage holes on the fluff spray box 21.
[0041] Reference Figure 1 and Figure 9 In a preferred embodiment, a motor 13 is provided on the bottom outer wall of the mounting platform 2. One end of the output shaft of the motor 13 is connected to a drive gear 40, and the drive gear 40 is located in a fixed groove. The two sides of the bottom inner wall of the fixed groove are respectively connected to a first linkage gear 38 and a second linkage gear 43 through bearings. The first linkage gear 38 is connected to the first turntable 39, the second linkage gear 43 is connected to the rotating frame 10, and the drive gear 40 is connected to the second turntable 41. The same transmission rack 42 is sleeved on the outer walls of the drive gear 40, the first linkage gear 38, and the second linkage gear 43.
[0042] When the motor 13 drives the drive gear 40 to rotate, the first linkage gear 38 and the second linkage gear 43 rotate together. Since the size of the drive gear 40 is twice that of the first linkage gear 38 and the second linkage gear 43, the rotational speed of the drive gear 40 is less than that of the first linkage gear 38 and the second linkage gear 43. When the hand mold 17 rotates, the jetting effect of the jetting mechanism and the fluff dispersion effect in the processing box 3 are more complete.
[0043] Working principle: In use, the flocking material required for flocking is first poured into the feed hopper 4. When the first linkage gear 38 rotates, it drives the first turntable 39 on its top to rotate, which in turn drives the turning fan 35 on the top of the first turntable 39 to rotate. The rotating turning fan 35 can continuously turn the accumulated flocking material. Then, combined with the dispersing effect of the dispersing frame 37 on the rotating rod 36, some of the flocking material is effectively dispersed to the upper part of the processing box 3. When the rotating frame 10 rotates, the compression pad 29 set on the rotating frame 10 continuously compresses the periodically changing adapter pad 33. The adapter pad 33 is a hollow structure made of rubber. After being continuously compressed, it can drive the airflow along the air guide pipe 8. Combined with the air guide pipe 8 and the flocking pipe At the installation position on the spraying table 16, when the air is introduced through the air pipe 8, the dispersed fluff in the processing box 3 is sucked into the diversion channel 22. After being received by each receiving hopper 23, it is sprayed from the spraying box 21 onto the glove to be flocked on the outer wall of the hand mold 17. When the micro motor 11 works, it will drive the threaded rod 30 to rotate. The rotating threaded rod 30 will drive the slider 31 on its outer wall to move along the mounting groove 12. The outer wall of the slider 31 is connected to the outer wall of the air storage box through the connecting rod 32. In this way, by adjusting the movement of the slider 31, the air storage box 15 is moved closer to or away from the rotating frame 10, thereby effectively controlling the spraying flow. At the same time, during the spraying process, the enclosure 14 can gather the scattered fluff inside the enclosure.
[0044] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. An automatic flocking device for gloves, comprising a mounting platform (2), characterized in that, The mounting platform (2) has a fixed groove on its top outer wall, and a transmission mechanism is provided in the fixed groove. The transmission mechanism is provided with a first turntable (39), a second turntable (41), and a rotating frame (10). A jetting mechanism is provided on one side of the rotating frame (10). A processing box (3) is provided on one side of the top outer wall of the mounting platform (2). A feed hopper (4) is provided on one side of the top outer wall of the processing box (3), and a cover plate (5) is connected to one side of the top outer wall of the feed hopper (4) by a hinge. The bottom inner wall of the ) is provided with an adapter hole, which is adapted to the first turntable (39). The second turntable (41) is provided with a hand mold (17), and a pad is provided at the center of the top outer wall of the mounting platform (2). The pad is adapted to the second turntable (41). A surrounding plate (14) is provided on the top outer wall of the pad. A spraying table (16) is fixedly connected to the inner walls on both sides of the surrounding plate (14). The spraying mechanism and the processing box (3) are used in conjunction with the spraying table (16). The processing box (3) has a box cover (6) on the top outer wall, and the inner walls on both sides of the processing box (3) are set as an arc surface structure that is wider at the top and narrower at the bottom. The inner walls on both sides of the processing box (3) are provided with equally spaced guide grooves (34). The first turntable (39) has equidistantly distributed turning bottom fans (35) on its top outer wall, and a rotating rod (36) is installed in the center of the top outer wall of the first turntable (39). A dispersing frame (37) is provided on the outer wall of the rotating rod (36) near the top. Two outlet holes are provided on one side outer wall of the processing box (3), and the height of the dispersing frame (37) is similar to the height of the two outlet holes. The jetting mechanism includes: an air storage box (15), a compression pad (29), an adapter pad (33), and a mounting hole (28). The air storage box (15) is movably connected to the top outer wall of the mounting platform (2). The adapter pad (33) is located on one side of the outer wall of the air storage box (15). The mounting hole (28) is located on both sides of the top outer wall of the air storage box (15). The compression pad (29) is located on the outer wall of the rotating frame (10). The rotating frame (10) is set as an irregular triangular structure, and three extrusion pads (29) are installed on the triangular structure at unequal distances; the size of the adapter pad (33) is set as a periodically progressive structure, and air guide pipes (8) are installed on the inner walls of the two mounting holes (28), and a corrugated connecting pipe (9) is connected to the middle position of the air guide pipe (8). The end of the air guide pipe (8) away from the air storage box (15) is connected to the top outer wall of the spraying table (16); Both of the outlet holes are equipped with a lint-passing tube (7) on their inner walls. The end of the lint-passing tube (7) away from the processing box (3) is connected to the outer wall of the lint-spinning table (16) near the top. The outer walls of the two spraying tables (16) on opposite sides are both set as arc-shaped structures, and spraying boxes (21) are provided at equal intervals on the two arc-shaped structures. A receiving hopper (23) is connected to the side of the spraying box (21) located inside the spraying table (16). A diversion channel (22) is provided on the inner wall of the spraying table (16), and the receiving hopper (23) is connected to the diversion channel (22).
2. The automatic flocking device for gloves according to claim 1, characterized in that, The mounting platform (2) has a mounting groove (12) on one side of the top outer wall. A micro motor (11) is provided on the inner wall of one side of the mounting groove (12). One end of the output shaft of the micro motor (11) is connected to a threaded rod (30). A slider (31) is slidably connected to the inner wall of the mounting groove (12). The slider (31) is threadedly connected to the outer wall of the threaded rod (30). A connecting rod (32) is provided on one side of the outer wall of the slider (31). The end of the connecting rod (32) away from the slider (31) is installed on one side of the outer wall of the gas storage box (15).
3. An automatic flocking device for gloves according to claim 1, characterized in that, Several spray boxes (21) on the two spraying tables (16) face the hand mold (17). The inner walls on both sides of the spray box (21) are connected to the guide fan (26) by bearings. One end of the receiving hopper (23) is provided with a down outlet (25), and the down outlet (25) faces the guide fan (26). A dispersion cover (27) is provided on the outer wall of the spray box (21) near the bottom. The dispersion cover (27) is provided with equally spaced holes.
4. An automatic flocking device for gloves according to claim 1, characterized in that, The mounting platform (2) has a motor (13) on its bottom outer wall. One end of the output shaft of the motor (13) is connected to a drive gear (40), and the drive gear (40) is located in a fixed groove. The two sides of the bottom inner wall of the fixed groove are respectively connected by bearings to a first linkage gear (38) and a second linkage gear (43). The first linkage gear (38) is connected to the first turntable (39), the second linkage gear (43) is connected to the rotating frame (10), and the drive gear (40) is connected to the second turntable (41). The same transmission rack (42) is sleeved on the outer walls of the drive gear (40), the first linkage gear (38), and the second linkage gear (43).
Citation Information
Patent Citations
Upper flying type electrostatic spinning method and equipment
CN1513608A
Latex glove flocking device
CN203290265U