CN212088356U - A device is decided to crease banding for making gauze mask - Google Patents

A device is decided to crease banding for making gauze mask Download PDF

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Publication number
CN212088356U
CN212088356U CN202020308681.9U CN202020308681U CN212088356U CN 212088356 U CN212088356 U CN 212088356U CN 202020308681 U CN202020308681 U CN 202020308681U CN 212088356 U CN212088356 U CN 212088356U
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China
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driving wheel
wheel
edge sealing
roller
flattening
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CN202020308681.9U
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Chinese (zh)
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向城
廖忠泽
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Dongguan Jintaiyang Precision Technology Co ltd
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Dongguan Jintaiyang Precision Technology Co ltd
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Abstract

The utility model relates to the technical field of mask production, in particular to a crease edge sealing and cutting device for manufacturing a mask, which comprises a machine body, wherein the machine body is sequentially provided with a laminating mechanism, an edge sealing mechanism and a cutting mechanism; the stacking mechanism comprises a gathering component, a folding component and a pressing component; the edge sealing mechanism comprises a first flattening assembly, a second flattening assembly, a lateral edge sealing ultrasonic spot welding assembly and a transverse edge sealing ultrasonic spot welding assembly. The utility model discloses degree of automation is high, when producing the gauze mask, carries out crease process, banding process and cuts independent shaping process to the cover cloth through crease mechanism, banding mechanism and cutting mechanism in proper order, need not the artifical device that shifts to the difference, labour saving and time saving improves production efficiency, and the cost of labor is low.

Description

A device is decided to crease banding for making gauze mask
Technical Field
The utility model belongs to the technical field of the technique of gauze mask production and specifically relates to indicate a device is decided to crease banding for making gauze mask.
Background
The mask is a sanitary product, and is generally worn on the mouth and nose part for filtering air entering the mouth and nose so as to achieve the effect of blocking harmful gas, smell and spray from entering and exiting the mouth and nose of a wearer. The mask on the market has a certain filtering effect on air entering the lung, and has a very good effect when respiratory infectious diseases such as new coronary pneumonia are prevalent or when the mask is worn in an environment with pollutants such as dust.
When producing the gauze mask, need carry out processes such as range upon range of, banding and cutting to the gauze mask, current device process is single, needs the manual work to make its device that shifts next process to, wastes time and energy, and the cost of labor is high, and is inefficient.
Disclosure of Invention
The utility model provides a device is decided to the crease banding for making gauze mask to prior art's problem.
In order to solve the technical problem, the utility model discloses a following technical scheme: a crease edge sealing and cutting device for manufacturing a mask comprises a machine body, wherein the machine body is sequentially provided with a laminating mechanism, an edge sealing mechanism and a cutting mechanism; the laminating mechanism comprises a gathering component, a folding component for performing folding trace operation on the cover cloth and a pressing component for performing pressing operation on the cover cloth after trace forming is completed, and the gathering component, the folding component and the pressing component are sequentially arranged at intervals; the edge sealing mechanism comprises a first flattening assembly, a second flattening assembly, a lateral edge sealing ultrasonic spot welding assembly and a transverse edge sealing ultrasonic spot welding assembly, wherein the lateral edge sealing ultrasonic spot welding assembly is used for performing edge sealing operation on the left side edge and the right side edge of the cover cloth, the transverse edge sealing ultrasonic spot welding assembly is used for performing transverse edge sealing operation on the cover cloth, and the lateral edge sealing ultrasonic spot welding assembly, the first flattening assembly, the transverse edge sealing ultrasonic spot welding assembly, the second flattening assembly and the cutting mechanism are sequentially arranged at intervals.
Further, the subassembly of closing together includes the mount, go up the wheel of book in advance and roll over the wheel in advance down from last to rotate and connect in the mount, go up the wheel of book in advance and be equipped with the first cone pulley of a plurality of, the wheel of book is equipped with a plurality of second cone wheel in advance down, the cross-sectional diameter of each first cone wheel is crescent from right to left, the cross-sectional diameter of each second cone wheel is crescent from left to right, the side butt of the side of first cone wheel and second cone wheel.
Further, the folding assembly comprises a left support, a right support, a first laminated plate, a second laminated plate and a partition plate, wherein the first laminated plate comprises a first left laminated plate and a first right laminated plate, the second laminated plate comprises a second left laminated plate and a second right laminated plate, the lengths of the first laminated plate are smaller than those of the second laminated plate, the left support and the right support are arranged at intervals, the first left laminated plate is arranged on the left support, the first right laminated plate is arranged on the right support, and the first left laminated plate and the first right laminated plate are arranged at intervals; the second left laminated plate is arranged on the left support, the second right laminated plate is arranged on the right support, and the second left laminated plate and the second right laminated plate are arranged at intervals; the two ends of the partition plate are respectively arranged on the left support and the right support, and the first laminated plate, the second laminated plate and the partition plate are sequentially arranged from top to bottom.
Furthermore, the pressing assembly comprises a first support, a second support, a first pressing wheel and a second pressing wheel, the first pressing wheel is rotatably connected with the first support, the second pressing wheel is rotatably connected with the second support, the first pressing wheel and the second pressing wheel are arranged from top to bottom, and the surface of the first pressing wheel is abutted to the second pressing wheel.
The edge sealing mechanism further comprises a mounting frame, a first transmission wheel set and a second transmission wheel set, the lateral edge sealing ultrasonic spot welding component comprises a first edge sealing roller and a first ultrasonic spot welding part, a plurality of protruding tooth rings are arranged on the first edge sealing roller at intervals, the first edge sealing roller is rotatably connected with the mounting frame, the first ultrasonic spot welding part is arranged below the protruding tooth rings, and one end of the first edge sealing roller is in transmission connection with the first flattening component through the first transmission wheel set; the transverse edge sealing ultrasonic spot welding assembly comprises a second edge sealing roller and a second ultrasonic spot welding piece, the second edge sealing roller is provided with a plurality of protruding racks, the second edge sealing roller is rotatably connected with the mounting frame, the second ultrasonic spot welding piece is arranged below the protruding racks, and one end of the second edge sealing roller is in transmission connection with the second flattening assembly through a second transmission wheel set.
Further, the edge sealing mechanism further comprises a first driving wheel, a driving mechanism and a driving belt, the first flattening component comprises a first upper flattening roller and a first lower flattening roller which are respectively installed on the installation frame from top to bottom, the first driving wheel group comprises a first driving wheel, a second driving wheel, a third driving wheel and a fourth driving wheel, the first driving wheel is installed at one end of the first edge sealing roller, the second driving wheel is installed on the installation frame, the third driving wheel is installed at one end of the first upper flattening roller, the fourth driving wheel is installed at one end of the first lower flattening roller, the first driving wheel is installed at the other end of the first lower flattening roller, the output end of the driving mechanism is connected with the first driving wheel through the driving belt, the first driving wheel is in meshing transmission connection with the second driving wheel, the second driving wheel is in meshing transmission connection with the third driving wheel, and the third driving wheel is in meshing transmission connection with the fourth.
Further, the cutting mechanism comprises an upper cutting roller and a lower cutting roller which are respectively arranged on the mounting frame from top to bottom, the upper cutting roller is provided with a transverse cutter, and the cutting mechanism further comprises a third flattening assembly; the third flattening component comprises a third upper flattening roller and a third lower flattening roller which are respectively installed on the mounting frame from top to bottom, and one end of the second edge sealing roller is in transmission connection with the second flattening component, the cut-off mechanism and the third flattening component through a second transmission wheel set.
Further, the edge sealing mechanism further comprises a second driving wheel, the second flattening assembly comprises a second upper flattening roller and a second lower flattening roller which are respectively arranged on the mounting frame from top to bottom, and the second driving wheel set comprises a fifth driving wheel, a sixth driving wheel, a seventh driving wheel, an eighth driving wheel, a ninth driving wheel, a tenth driving wheel, an eleventh driving wheel, a twelfth driving wheel, a thirteenth driving wheel and a fourteenth driving wheel; a fifth driving wheel is arranged at one end of the second edge sealing roller, a sixth driving wheel, a ninth driving wheel and a twelfth driving wheel are all rotatably connected with the mounting frame, a seventh driving wheel is arranged on the second upper flattening roller, an eighth driving wheel is arranged at one end of the second lower flattening roller, a second driving wheel is arranged at the other end of the second lower flattening roller, the output end of the driving mechanism is respectively connected with the first driving wheel and the second driving wheel through a driving belt, a tenth driving wheel is arranged on the upper cutting roller, an eleventh driving wheel is arranged on the lower cutting roller, a thirteenth driving wheel is arranged on the third upper flattening roller, a fourteenth driving wheel is arranged on the third lower flattening roller, the fifth driving wheel is in meshing transmission connection with the sixth driving wheel, the eighth driving wheel and the ninth driving wheel are all in meshing transmission connection with the seventh driving wheel, the ninth driving wheel, the eleventh driving wheel and the twelfth driving wheel are all in meshing transmission connection with the tenth driving, the twelfth driving wheel is in meshed transmission connection with the thirteenth driving wheel.
Furthermore, a nose bridge strip cutting assembly is arranged at the interval of one end, close to the lateral edge sealing ultrasonic spot welding assembly, of the mounting frame.
The utility model has the advantages that: the utility model discloses degree of automation is high, when producing the gauze mask, carries out crease process, banding process and cuts independent shaping process to the cover cloth through crease mechanism, banding mechanism and cutting mechanism in proper order, need not the artifical device that shifts to the difference, labour saving and time saving improves production efficiency, and the cost of labor is low.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the stacked structure of the present invention.
Fig. 3 is a schematic structural view of the gathering component of the present invention.
Fig. 4 is a schematic structural diagram of the edge banding mechanism and the cutting mechanism of the present invention.
Fig. 5 is a side view of the edge sealing structure and the cutting mechanism of the present invention.
Fig. 6 is a side view of the edge banding structure and the cutting mechanism of the present invention at another angle.
Reference numerals: 1. a body; 2. a stacking mechanism; 3. a sealing mechanism; 4. a cutting mechanism; 5. a closeout component; 6. a fixed mount; 7. a pre-folding wheel is arranged; 8. a lower pre-folding wheel; 9. a first conical wheel; 10. a second conical wheel; 11. a left bracket; 12. a right bracket; 13. a first left laminate panel; 14. a first right laminate panel; 15. a second left laminate panel; 16. a second right laminate panel; 17. a partition plate; 18. a first bracket; 19. a second bracket; 20. a first press-fit wheel; 21. a second press-fit wheel; 22. a mounting frame; 23. a first transmission wheel set; 24. a second transmission wheel set; 25. a folding assembly; 26. pressing the components; 27. a lateral edge sealing ultrasonic spot welding assembly; 28. a first edge sealing roller; 29. a first ultrasonic spot weld; 30. a projecting tooth ring; 31. a first drive wheel; 32. a second edge sealing roller; 33. a second ultrasonic spot weld; 34. a protruding rack; 35. a second drive wheel; 36. a transverse edge sealing ultrasonic spot welding assembly; 37. a first platen assembly; 38. a second platen assembly; 39. a first upper flattening roll; 40. a first lower platen roller; 41. a first drive pulley; 42. a second transmission wheel; 43. a third transmission wheel; 44. a fourth transmission wheel; 45. loading a cutting roller; 46. a cutting roller is arranged; 47. a transverse cutter; 48. a third platen assembly; 49. a third upper flattening roll; 50. a third lower flattening roll; 51. a second upper flattening roll; 52. a second lower pinch roll; 53. a fifth transmission wheel; 54. a sixth transmission wheel; 55. a seventh transmission wheel; 56. an eighth transmission wheel; 57. a ninth transmission wheel; 58. a tenth transmission wheel; 59. an eleventh transmission wheel; 60. a twelfth transmission wheel; 61. a thirteenth transmission wheel; 62. a fourteenth driving wheel; 63. a nose bridge strip cutting assembly; 64. a drive mechanism.
Detailed Description
In order to facilitate understanding of those skilled in the art, the present invention will be further described with reference to the following examples and drawings, which are not intended to limit the present invention. The present invention will be described in detail with reference to the accompanying drawings.
Referring to fig. 1 to 6, a folding line edge sealing and cutting device for manufacturing a mask includes a machine body 1, and is characterized in that: the machine body 1 is sequentially provided with a laminating mechanism 2, a sealing mechanism 3 and a cutting mechanism 4;
the laminating mechanism 2 comprises a gathering component 5, a folding component 25 for performing folding mark operation on the cover cloth and a pressing component 26 for performing pressing operation on the cover cloth after mark forming is completed, wherein the gathering component 5, the folding component 25 and the pressing component 26 are sequentially arranged at intervals;
the edge sealing mechanism 3 comprises a first flattening component 37, a second flattening component 38, a lateral edge sealing ultrasonic spot welding component 27 for performing edge sealing operation on the left side edge and the right side edge of the cover cloth, and a transverse edge sealing ultrasonic spot welding component 36 for performing transverse edge sealing operation on the cover cloth, wherein the lateral edge sealing ultrasonic spot welding component 27, the first flattening component 37, the transverse edge sealing ultrasonic spot welding component 36, the second flattening component 38 and the cutting mechanism 4 are sequentially arranged at intervals.
The utility model discloses degree of automation is high, when producing the gauze mask, carries out range upon range of process, banding process and cuts independent shaping process to the cover cloth through range upon range of mechanism 2, banding mechanism 3 and cutting mechanism 4 in proper order, need not the artifical device that shifts to the difference, and labour saving and time saving improves production efficiency, and the cost of labor is low.
Referring to fig. 2 and 3, in the present embodiment, the folding assembly 5 includes a fixing frame 6, an upper pre-folding wheel 7 and a lower pre-folding wheel 8, the upper pre-folding wheel 7 and the lower pre-folding wheel 8 are rotatably connected to the fixing frame 6 from top to bottom, the upper pre-folding wheel 7 is provided with a plurality of first tapered wheels 9, the lower pre-folding wheel 8 is provided with a plurality of second tapered wheels 10, a cross-sectional diameter of each first tapered wheel 9 gradually increases from right to left, a cross-sectional diameter of each second tapered wheel 10 gradually increases from left to right, and a side surface of the first tapered wheel 9 abuts against a side surface of the second tapered wheel 10.
Specifically, the upper pre-folding wheel 7 drives the first conical wheel 9 to rotate, the lower pre-folding wheel 8 drives the second conical wheel 10 to rotate, and the placing direction of the first conical wheel 9 is opposite to the placing direction of the second conical wheel 10, so that the side surface of the first conical wheel 9 is abutted to the side surface of the second conical wheel 10, when the cover cloth passes through the first conical wheel 9 and the first conical wheel 9, the cover cloth is folded towards the middle part through the bending gap between the first conical wheel 9 and the second conical wheel 10, and the effect of folding the cover cloth in advance is achieved.
Referring to fig. 2, in the present embodiment, the folding assembly 25 includes a left bracket 11, a right bracket 12, a first laminated plate including a first left laminated plate 13 and a first right laminated plate 14, a second laminated plate including a second left laminated plate 15 and a second right laminated plate 16, and a spacer 17, wherein the lengths of the first laminated plates are both smaller than the length of the second laminated plate, the left bracket 11 and the right bracket 12 are disposed at intervals, the first left laminated plate 13 is disposed on the left bracket 11, the first right laminated plate 14 is disposed on the right bracket 12, and the first left laminated plate 13 and the first right laminated plate 14 are disposed at intervals;
the second left laminated plate 15 is arranged on the left support 11, the second right laminated plate 16 is arranged on the right support 12, and the second left laminated plate 15 and the second right laminated plate 16 are arranged at intervals; two ends of the partition plate 17 are respectively arranged on the left support 11 and the right support 12, and the first laminated plate, the second laminated plate and the partition plate 17 are sequentially arranged from top to bottom.
Specifically, a first layer of cover cloth of the mask penetrates between the first laminated plate and the second laminated plate, a second layer of cover cloth of the mask penetrates between the second laminated plate and the partition plate, a third layer of cover cloth of the mask penetrates through the lower portion of the partition plate, cloth around folds of the cover cloth is plugged into the folds through cooperation of the first laminated plate and the second laminated plate, a laminated crease is formed, and the effect that the cover cloth of the mask is laminated and molded towards the middle is achieved.
Referring to fig. 2, in the embodiment, the pressing assembly 26 includes a first bracket 18, a second bracket 19, a first pressing wheel 20 and a second pressing wheel 21, the first pressing wheel 20 is rotatably connected to the first bracket 18, the second pressing wheel 21 is rotatably connected to the second bracket 19, the first pressing wheel 20 and the second pressing wheel 21 are disposed from top to bottom, and a surface of the first pressing wheel 20 abuts against the second pressing wheel 21. Specifically, when the cover cloth after the lamination molding passes through the space between the first pressing wheel 20 and the second pressing wheel 21, the cover cloth is subjected to pressing and leveling operation, so that the subsequent packaging and transportation are facilitated.
Referring to fig. 4 and 5, in the embodiment, the edge banding mechanism 3 further includes a mounting frame 22, a first transmission wheel set 23 and a second transmission wheel set 24,
the lateral edge sealing ultrasonic spot welding assembly 27 comprises a first edge sealing roller 28 and a first ultrasonic spot welding part 29, a plurality of protruding toothed rings 30 are arranged on the first edge sealing roller 28 at intervals, the first edge sealing roller 28 is rotatably connected with the mounting frame 22, the first ultrasonic spot welding part 29 is arranged below the protruding toothed rings 30, and one end of the first edge sealing roller 28 is in transmission connection with a first flattening assembly 37 through a first transmission wheel set 23;
the transverse edge sealing ultrasonic spot welding assembly 36 comprises a second edge sealing roller 32 and a second ultrasonic spot welding part 33, the second edge sealing roller 32 is provided with a plurality of protruding racks 34, the second edge sealing roller 32 is rotatably connected with the mounting frame 22, the second ultrasonic spot welding part 33 is arranged below the protruding racks 34, and one end of the second edge sealing roller 32 is in transmission connection with the second flattening assembly 38 through the second transmission wheel set 24.
Specifically, rotate through first banding roller 28 for protruding ring gear 30 rolls in the side of gauze mask cover cloth with laminating, makes the side interval of the gauze mask cover cloth of the superiors sink into the gauze mask cover cloth of lower floor in, cooperates first ultrasonic wave spot welding piece 29 to realize the fixed effect of spot welding, improves the effect of side banding. The number of the projecting tooth rings 30 is two, and the two projecting tooth rings 30 are respectively provided on the left and right sides of the first hemming roller 28. Rotate through second banding roller 32 for protruding rack 34 transversely rolls in gauze mask cover cloth with laminating, makes the side interval of the gauze mask cover cloth of the superiors sink into the gauze mask cover cloth of lower floor, and the fixed effect of spot welding is realized to cooperation second ultrasonic wave spot welding piece 33, improves the effect of horizontal banding. The number of rack gears 34 is four.
Referring to fig. 4 and 6, in the present embodiment, the edge banding mechanism 3 further includes a first driving wheel 31, a driving mechanism and a transmission belt, the first flattening assembly 37 includes a first upper flattening roller 39 and a first lower flattening roller 40 respectively installed on the installation frame 22 from top to bottom, the first driving wheel set 23 includes a first driving wheel 41, a second driving wheel 42, a third driving wheel 43 and a fourth driving wheel 44, the first driving wheel 41 is installed at one end of the first edge banding roller 28, the second driving wheel 42 is installed on the installation frame 22, the third driving wheel 43 is installed at one end of the first upper flattening roller 39, the fourth driving wheel 44 is installed at one end of the first lower flattening roller 40, the first driving wheel 31 is installed at the other end of the first lower flattening roller 40, an output end of the driving mechanism is connected with the first driving wheel 31 through the transmission belt, the first driving wheel 41 is connected with the second driving wheel 42 in a meshing transmission manner, the second driving wheel 42 is connected with the third driving wheel 43 in a meshing, the third transmission wheel 43 is in meshing transmission connection with the fourth transmission wheel 44.
Specifically, the driving mechanism is a motor, the conveyor belt is a belt, the driving mechanism, the first driving wheel 31 and the conveyor belt drive the first lower flattening roller 40 to rotate, and the first driving wheel 41, the second driving wheel 42, the third driving wheel 43 and the fourth driving wheel 44 are matched to drive the first upper flattening roller 39 and the first edge sealing roller 28 to realize synchronous transmission, so that the number of the driving mechanisms is simplified, the cost is reduced, and smooth transmission is ensured. The first driving wheel 31, the first driving wheel 41, the second driving wheel 42, the third driving wheel 43 and the fourth driving wheel 44 are all gears.
Referring to fig. 4 and 6, in the present embodiment, the cutting mechanism 4 includes an upper cutting roller 45 and a lower cutting roller 46 respectively mounted on the mounting frame 22 from top to bottom, the upper cutting roller 45 is provided with a transverse cutter 47, and the cutting mechanism 4 further includes a third flattening assembly 48;
the third flattening assembly 48 comprises a third upper flattening roller 49 and a third lower flattening roller 50 which are respectively installed on the installation frame 22 from top to bottom, and one end of the second edge sealing roller 32 is respectively in transmission connection with the second flattening assembly 38, the cut-off mechanism 4 and the third flattening assembly 48 through the second transmission wheel group 24.
In this embodiment, the edge banding mechanism 3 further comprises a second driving wheel 35, the second flattening assembly 38 comprises a second upper flattening roller 51 and a second lower flattening roller 52 respectively installed on the mounting frame 22 from top to bottom,
the second transmission wheel group 24 comprises a fifth transmission wheel 53, a sixth transmission wheel 54, a seventh transmission wheel 55, an eighth transmission wheel 56, a ninth transmission wheel 57, a tenth transmission wheel 58, an eleventh transmission wheel 59, a twelfth transmission wheel 60, a thirteenth transmission wheel 61 and a fourteenth transmission wheel 62;
a fifth driving wheel 53 is arranged at one end of the second edge sealing roller 32, a sixth driving wheel 54, a ninth driving wheel 57 and a twelfth driving wheel 60 are rotatably connected with the mounting frame 22, a seventh driving wheel 55 is arranged on the second upper flattening roller 51, an eighth driving wheel 56 is arranged at one end of the second lower flattening roller 52, a second driving wheel 35 is arranged at the other end of the second lower flattening roller 52, the output end of the driving mechanism is respectively connected with the first driving wheel 31 and the second driving wheel 35 through a driving belt, a tenth driving wheel 58 is arranged on the upper cutting roller 45, an eleventh driving wheel 59 is arranged on the lower cutting roller 46, a thirteenth driving wheel 61 is arranged on the third upper flattening roller 49, a fourteenth driving wheel 62 is arranged on the third lower flattening roller 50, the fifth driving wheel 53 is in meshing transmission connection with the sixth driving wheel 54, the eighth driving wheel 56 and the ninth driving wheel 57 are all in meshing transmission connection with the seventh driving wheel 55, the ninth driving wheel 57, the eleventh driving wheel 59 and the twelfth driving wheel 60 are all in meshing transmission connection with the tenth driving wheel 58, and the twelfth driving wheel 60 is in meshing transmission connection with the thirteenth driving wheel 61.
Specifically, the driving mechanism, the second driving wheel 35 and the transmission belt drive the second lower flattening roller 52 to rotate, and the fifth transmission wheel 53, the sixth transmission wheel 54, the seventh transmission wheel 55, the eighth transmission wheel 56, the ninth transmission wheel 57, the tenth transmission wheel 58, the eleventh transmission wheel 59, the twelfth transmission wheel 60 and the thirteenth transmission wheel 61 are matched to drive the second upper flattening roller 51, the second edge sealing roller 32, the cutting component and the third flattening component 48 to realize synchronous transmission, so that one driving mechanism drives multiple components to synchronously rotate. The transverse cutter 47 is used for cutting the cover cloth to form an independent mask during the rotation of the upper cutting roller 45 and the lower cutting roller 46. The fifth transmission wheel 53, the sixth transmission wheel 54, the seventh transmission wheel 55, the eighth transmission wheel 56, the ninth transmission wheel 57, the tenth transmission wheel 58, the eleventh transmission wheel 59, the twelfth transmission wheel 60 and the thirteenth transmission wheel 61 are all gears.
Referring to fig. 4 to 6, in the present embodiment, a nose bridge cutting assembly 63 is spaced apart from an end of the mounting bracket 22 near the lateral edge sealing ultrasonic spot welding assembly 27. A nose bridge strip needs to be arranged in the traditional mask layer. Set up the bridge of the nose strip and cut off subassembly 63 and conveniently carry out the interval to the bridge of the nose strip of external feed and cut off the process, make things convenient for subsequent gauze mask cloth banding and decide into independent gauze mask.
A nose bridge strip needs to be arranged in the traditional mask layer. Set up the bridge of the nose strip and cut off subassembly 63 and conveniently carry out the interval to the bridge of the nose strip of external feed and cut off the process, make things convenient for subsequent gauze mask cloth banding and decide into independent gauze mask. The above description is only for the preferred embodiment of the present invention, and the present invention is not limited to the above description, and although the present invention is disclosed in the preferred embodiment, it is not limited to the above description, and any person skilled in the art can make some changes or modifications to equivalent embodiments without departing from the scope of the present invention, but all the technical solutions of the present invention are within the scope of the present invention.

Claims (9)

1. The utility model provides a device is decided to crease banding for making gauze mask, includes organism (1), its characterized in that: the machine body (1) is sequentially provided with a laminating mechanism (2), a sealing mechanism (3) and a cutting mechanism (4); the laminating mechanism (2) comprises a gathering component (5), a folding component (25) used for folding the cover cloth into marks and a pressing component (26) used for pressing the cover cloth after the marks are formed, and the gathering component (5), the folding component (25) and the pressing component (26) are sequentially arranged at intervals; the edge sealing mechanism (3) comprises a first flattening component (37), a second flattening component (38), a lateral edge sealing ultrasonic spot welding component (27) for performing edge sealing operation on the left side edge and the right side edge of the cover cloth, and a transverse edge sealing ultrasonic spot welding component (36) for performing transverse edge sealing operation on the cover cloth, wherein the lateral edge sealing ultrasonic spot welding component (27), the first flattening component (37), the transverse edge sealing ultrasonic spot welding component (36), the second flattening component (38) and the cutting mechanism (4) are sequentially arranged at intervals.
2. A crease edge sealing and cutting device for making a mask according to claim 1, wherein: gather together subassembly (5) including mount (6), go up pre-fold wheel (7) and lower pre-fold wheel (8) from last to rotating down and connect in mount (6), go up pre-fold wheel (7) and be equipped with the first cone pulley of a plurality of (9), pre-fold wheel (8) down is equipped with a plurality of second cone pulley (10), the cross-sectional diameter of each first cone pulley (9) is crescent from right to left, the cross-sectional diameter of each second cone pulley (10) is crescent from left to right, the side of first cone pulley (9) and the side butt of second cone pulley (10).
3. A crease edge sealing and cutting device for making a mask according to claim 1, wherein: the folding assembly (25) comprises a left support (11), a right support (12), a first laminated plate, a second laminated plate and a spacing plate (17), wherein the first laminated plate comprises a first left laminated plate (13) and a first right laminated plate (14), the second laminated plate comprises a second left laminated plate (15) and a second right laminated plate (16), the lengths of the first laminated plate are smaller than those of the second laminated plate, the left support (11) and the right support (12) are arranged at intervals, the first left laminated plate (13) is arranged on the left support (11), the first right laminated plate (14) is arranged on the right support (12), and the first left laminated plate (13) and the first right laminated plate (14) are arranged at intervals; the second left laminated plate (15) is arranged on the left support (11), the second right laminated plate (16) is arranged on the right support (12), and the second left laminated plate (15) and the second right laminated plate (16) are arranged at intervals; two ends of the partition plate (17) are respectively arranged on the left support (11) and the right support (12), and the first laminated plate, the second laminated plate and the partition plate (17) are sequentially arranged from top to bottom.
4. A crease edge sealing and cutting device for making a mask according to claim 1, wherein: the pressing assembly (26) comprises a first support (18), a second support (19), a first pressing wheel (20) and a second pressing wheel (21), the first pressing wheel (20) is rotatably connected with the first support (18), the second pressing wheel (21) is rotatably connected with the second support (19), the first pressing wheel (20) and the second pressing wheel (21) are arranged from top to bottom, and the surface of the first pressing wheel (20) is abutted to the second pressing wheel (21).
5. A crease edge sealing and cutting device for making a mask according to claim 1, wherein: the edge sealing mechanism (3) further comprises a mounting frame (22), a first transmission wheel set (23) and a second transmission wheel set (24), the lateral edge sealing ultrasonic spot welding assembly (27) comprises a first edge sealing roller (28) and a first ultrasonic spot welding piece (29), a plurality of protruding toothed rings (30) are arranged on the first edge sealing roller (28) at intervals, the first edge sealing roller (28) is rotatably connected with the mounting frame (22), the first ultrasonic spot welding piece (29) is arranged below the protruding toothed rings (30), and one end of the first edge sealing roller (28) is in transmission connection with the first flattening assembly (37) through the first transmission wheel set (23); the transverse edge sealing ultrasonic spot welding assembly (36) comprises a second edge sealing roller (32) and a second ultrasonic spot welding piece (33), the second edge sealing roller (32) is provided with a plurality of protruding racks (34), the second edge sealing roller (32) is rotatably connected with the mounting frame (22), the second ultrasonic spot welding piece (33) is arranged below the protruding racks (34), and one end of the second edge sealing roller (32) is in transmission connection with the second flattening assembly (38) through a second transmission wheel set (24).
6. A crease edge sealing and cutting device for making a mask according to claim 5, wherein: the edge sealing mechanism (3) further comprises a first driving wheel (31), a driving mechanism and a driving belt, the first flattening component (37) comprises a first upper flattening roller (39) and a first lower flattening roller (40) which are respectively installed on the installation frame (22) from top to bottom, the first driving wheel set (23) comprises a first driving wheel (41), a second driving wheel (42), a third driving wheel (43) and a fourth driving wheel (44), the first driving wheel (41) is installed at one end of the first edge sealing roller (28), the second driving wheel (42) is installed on the installation frame (22), the third driving wheel (43) is installed at one end of the first upper flattening roller (39), the fourth driving wheel (44) is installed at one end of the first lower flattening roller (40), the first driving wheel (31) is installed at the other end of the first lower flattening roller (40), the output end of the driving mechanism is connected with the first driving wheel (31) through the driving belt, the first driving wheel (41) is in meshing transmission connection with the second driving wheel (42), the second driving wheel (42) is in meshing transmission connection with the third driving wheel (43), and the third driving wheel (43) is in meshing transmission connection with the fourth driving wheel (44).
7. A crease banding decide device for making gauze mask of claim 6, characterized by that: the cutting mechanism (4) comprises an upper cutting roller (45) and a lower cutting roller (46) which are respectively arranged on the mounting frame (22) from top to bottom, the upper cutting roller (45) is provided with a transverse cutter (47), and the cutting mechanism (4) further comprises a third flattening component (48); the third flattening component (48) comprises a third upper flattening roller (49) and a third lower flattening roller (50) which are respectively installed on the mounting frame (22) from top to bottom, and one end of the second edge sealing roller (32) is in transmission connection with the second flattening component (38), the cut-off mechanism (4) and the third flattening component (48) through the second transmission wheel set (24).
8. A crease edge sealing and cutting device for making a mask according to claim 7, wherein: the edge sealing mechanism (3) further comprises a second driving wheel (35), the second flattening component (38) comprises a second upper flattening roller (51) and a second lower flattening roller (52) which are respectively installed on the mounting frame (22) from top to bottom, and the second transmission wheel set (24) comprises a fifth transmission wheel (53), a sixth transmission wheel (54), a seventh transmission wheel (55), an eighth transmission wheel (56), a ninth transmission wheel (57), a tenth transmission wheel (58), an eleventh transmission wheel (59), a twelfth transmission wheel (60), a thirteenth transmission wheel (61) and a fourteenth transmission wheel (62); a fifth driving wheel (53) is arranged at one end of the second edge sealing roller (32), a sixth driving wheel (54), a ninth driving wheel (57) and a twelfth driving wheel (60) are rotatably connected with the mounting frame (22), a seventh driving wheel (55) is arranged on the second upper flattening roller (51), an eighth driving wheel (56) is arranged at one end of the second lower flattening roller (52), a second driving wheel (35) is arranged at the other end of the second lower flattening roller (52), the output end of the driving mechanism is respectively connected with the first driving wheel (31) and the second driving wheel (35) through a driving belt, a tenth driving wheel (58) is arranged on the upper cutting roller (45), an eleventh driving wheel (59) is arranged on the lower cutting roller (46), a thirteenth driving wheel (61) is arranged on the third upper flattening roller (49), a fourteenth driving wheel (62) is arranged on the third lower flattening roller (50), the fifth driving wheel (53) is in meshing transmission connection with the sixth driving wheel (54), the sixth driving wheel (54), the eighth driving wheel (56) and the ninth driving wheel (57) are all in meshing transmission connection with the seventh driving wheel (55), the ninth driving wheel (57), the eleventh driving wheel (59) and the twelfth driving wheel (60) are all in meshing transmission connection with the tenth driving wheel (58), and the twelfth driving wheel (60) is in meshing transmission connection with the thirteenth driving wheel (61).
9. A crease edge sealing and cutting device for making a mask according to claim 1, wherein: and a nose bridge strip cutting assembly (63) is arranged at one end of the mounting frame (22) close to the lateral edge sealing ultrasonic spot welding assembly (27) at intervals.
CN202020308681.9U 2020-03-12 2020-03-12 A device is decided to crease banding for making gauze mask Active CN212088356U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020308681.9U CN212088356U (en) 2020-03-12 2020-03-12 A device is decided to crease banding for making gauze mask

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020308681.9U CN212088356U (en) 2020-03-12 2020-03-12 A device is decided to crease banding for making gauze mask

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CN212088356U true CN212088356U (en) 2020-12-08

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