CN214630239U - Fish-shaped mask production equipment - Google Patents
Fish-shaped mask production equipment Download PDFInfo
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- CN214630239U CN214630239U CN202120927451.5U CN202120927451U CN214630239U CN 214630239 U CN214630239 U CN 214630239U CN 202120927451 U CN202120927451 U CN 202120927451U CN 214630239 U CN214630239 U CN 214630239U
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- nose bridge
- fish
- frame
- bridge strip
- cloth
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Abstract
The utility model relates to a fish-shaped mask production device, which comprises an integral frame, the integral frame comprises an integral main frame and a feeding frame, one side of the main frame, which is close to the feeding frame, is provided with a nose bridge strip processing mechanism, the main frame is provided with a folding forming station, two sides of the two folding stations are respectively provided with a first processing station for welding cloth and the nose bridge strip and a second processing station for welding mask, the feeding frame is distributed with a plurality of first material rollers for hanging cloth rolls and a plurality of second material rollers for hanging the nose bridge strip, the feeding frame is also provided with a plurality of guide rollers and a plurality of position-adjustable cloth tensioning adjusting components, the utility model has compact integral structure, small occupied area, optimizes the structural design of the material rollers, the rotating rollers, the cloth tensioning adjusting components and the operation box of the feeding frame, has more convenient operation and effectively reduces the cost, can fully meet the market demand.
Description
Technical Field
The utility model relates to a gauze mask production facility technical field indicates a fish shape gauze mask production facility especially.
Background
With the continuous development of economy and the continuous improvement of living standard of people in China, the consumption concept and the consumption standard of people are greatly changed and improved; people are aware of the importance of masks to personal health; under the circumstances, the industries of masks and full-automatic mask machines are rapidly developed, but the mask machine body mask punching machine on the current market has the defects of complex structure, large occupied area and high cost, and cannot meet the personalized requirements of the market.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a whole small, area is little, effective reduce cost's fish-shaped gauze mask production facility.
In order to achieve the above object, the utility model adopts the following technical scheme: the utility model provides a fish-shaped gauze mask production facility, includes whole frame, whole frame includes integrative main frame and feed frame, one side that the main frame is close to the feed frame is equipped with bridge of the nose strip processing mechanism, be equipped with the fold forming station on the main frame, the both sides of bilateral fold station are equipped with the first processing station that is used for butt fusion cloth and bridge of the nose strip respectively and are used for the fashioned second processing station of gauze mask butt fusion, it has a plurality of to be used for wearing the first material roller of hanging cloth material book and is used for wearing the second material roller of hanging bridge of the nose strip material book to distribute in the feed frame, still be equipped with a plurality of deflector roll and a plurality of position adjustable cloth tensioning adjusting part in the feed frame.
The main frame and the feeding frame are integrally formed, and an integral frame structure is adopted, so that the whole structure is compact and reasonable, the occupied area is reduced, and the cost is reduced.
The nose bridge strip material roll is guided to a nose bridge strip processing mechanism through a guide roller, the nose bridge strip processing mechanism cuts the nose bridge strip material into single nose bridge strips and orderly falls on the lower layer cloth belt, the first processing station firstly welds the multilayer overlapped cloth belts and the nose bridge strips, then cuts redundant rim materials, conveys the nose bridge strips to a folding forming station for bilateral folding processing after the nose bridge strips are finished, conveys the nose bridge strips to a second processing station after the nose bridge strips are finished, welds the outer sides of the folded rims of the semi-finished products by the second processing station, then cuts the redundant rim materials after the welding and separates the finished masks from the material belts, and finally, conveying the independent mask to a material receiving station.
Further, the cloth tensioning adjusting mechanism comprises a mounting seat, a first rotating shaft, a second rotating shaft, an adjusting plate and a connecting block, wherein the mounting seat is mounted on a vertical beam at the feeding side of the feeding rack through a locking part, the first rotating shaft is rotatably arranged on the mounting seat in a penetrating manner, a through hole is formed in the side surface of the mounting seat so that a screw, a pin shaft or other limiting parts can be arranged in the mounting seat in a penetrating manner to limit the rotation of the first rotating shaft, the adjusting plate is arranged on the first rotating shaft, two ends of the connecting block are respectively provided with an opening-shaped clamping opening, the first rotating shaft and the second rotating shaft are connected through the two clamping openings, through holes communicated with the openings of the clamping openings are longitudinally formed in the two ends of the connecting block, bolts are arranged in a penetrating manner, the openings are tightened to reduce the inner diameters of the clamping openings, so that the first rotating shaft and/or the second rotating shaft are locked to enable the first rotating shaft and/or the second rotating shaft to be incapable of rotating, and the bolt is loosened and expanded, the inner diameter of the clamping opening is enlarged, so that the first rotating shaft and/or the second rotating shaft are unlocked and can rotate, the adjusting plate can rotate along with the first rotating shaft to adjust the angle position, and the tightness of the cloth material belt can be adjusted.
Furthermore, the first material roller, the second material roller and the guide roller are of an expanding shaft structure, so that the structure is simple, and the operation is convenient and fast.
Further, nose bridge strip processing mechanism includes first support, nose bridge strip guide assembly, nose bridge strip cutting assembly and response subassembly, nose bridge strip guide assembly establishes the side at first support, nose bridge strip cutting assembly establishes the rear at nose bridge strip guide assembly, the response subassembly is established in the top of first support, and nose bridge strip guide assembly drives nose bridge strip material area and leads nose bridge strip cutting assembly department, and nose bridge strip cutting assembly cuts into single nose bridge strip with nose bridge strip material, and nose bridge strip freely falls to lower floor's cloth and takes, and induction system can detect nose bridge strip state, in time discovers the starved condition.
Further, the first processing station comprises a first welding mechanism arranged behind the nose bridge strip processing mechanism, a first edge cutting mechanism and a first material pulling mechanism which are used for cutting off redundant edges are sequentially arranged behind the first welding mechanism, the first welding mechanism welds the overlapped multi-layer cloth and the nose bridge strip together, the first edge cutting mechanism cuts off the redundant edges after welding, and then the first material pulling mechanism pulls the materials with the cut-off edges to the folding forming station.
Furthermore, the first processing station further comprises a first excess material collecting mechanism, the first excess material collecting mechanism is arranged beside the first edge cutting mechanism, and excess edge materials cut by the first edge cutting mechanism can be collected together.
Furthermore, the second processing station comprises a second material pulling mechanism arranged behind the folding forming station, a second welding mechanism, a third material pulling mechanism and a second trimming mechanism are sequentially arranged behind the second material pulling mechanism, the second material pulling mechanism pulls and sends the semi-finished product which is folded bilaterally to the second welding mechanism, the second welding mechanism welds the outer side of the folded edge of the semi-finished product, the third material pulling mechanism pulls and sends the semi-finished product to the second trimming mechanism after welding, and the second trimming mechanism cuts off redundant rim charge and cuts off the mask product from the material belt, so that the mask product is prepared.
Further, the second processing station further comprises a second excess material collecting mechanism, the second excess material collecting mechanism is arranged beside the second trimming mechanism, and the excess edge materials cut by the second trimming mechanism can be collected together.
Furthermore, an operation box is arranged on the main frame, and the operation of each mechanism can be controlled through the operation box.
The beneficial effects of the utility model reside in that: the utility model has the advantages that the whole structure is compact, and area occupied is little, optimizes the material roller of material loading frame, changes the structural design of roller and cloth tensioning adjusting part and operation box, and it is more simple and convenient to operate, and effectively the cost is reduced, can fully satisfy the market demand.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic plan view of the present invention.
Fig. 3 is a schematic perspective view of the loading frame.
Fig. 4 is a perspective view of the cloth tension adjusting assembly.
Fig. 5 is an exploded view of the cloth tensioning adjustment assembly.
Fig. 6 is a schematic perspective view of the first processing station.
Fig. 7 is a schematic perspective view of the second processing station.
Fig. 8 is a schematic perspective view of the nose bridge strip delivery mechanism.
Description of reference numerals:
100. an integral frame;
110. a main frame;
120. a feeding rack; 121. a first material roller; 122. a second material roller; 123. a guide roller; 124. a cloth tensioning adjustment assembly; 1241. a mounting seat; 1242. a first rotating shaft; 1243. a second rotating shaft; 1244. an adjusting plate; 1245. connecting blocks;
200. a nose bridge strip processing mechanism; 210. a nose bridge strip material guide component; 220. a nose bridge strip cutting assembly;
300. a first processing station; 310 a first fusing mechanism; 320. a first trimming mechanism; 330. a first pulling mechanism; 340. a first excess material collecting mechanism;
400. a folding forming station;
500. a second processing station; 510. a second pulling mechanism; 520. a second welding mechanism; 530. a third material pulling mechanism; 540. a second trimming mechanism; 550. a second excess material collecting mechanism;
600. and (5) operating the box.
Detailed Description
Referring to fig. 1-3, embodiment 1 relates to a production apparatus for a fish-shaped mask, which includes an integral frame 100, the integral frame 100 includes a main frame 110 and a feeding frame 120 integrally formed, and the integral frame 100 is configured to make the mechanisms disposed thereon more compact and reasonable, reduce the floor area, and reduce the cost, a nose bridge processing mechanism 200 is disposed on one side of the main frame 110 close to the feeding frame 120, a first processing station 300, a fold forming station 400, and a second processing station 500 are sequentially disposed behind the nose bridge processing mechanism 200, a plurality of first material rollers 121 for hanging a material roll and a plurality of second material rollers 122 for hanging a material roll are disposed on the feeding frame 120, and a plurality of guide rollers 123 and a plurality of position-adjustable material tensioning and adjusting assemblies 124 are further disposed on the feeding frame 120.
Specifically, the first material roller 121, the second material roller 122 and the guide roller 123 are in a shaft expansion structure, and the structure is simplified and the operation is simpler and more convenient by using a manual shaft expansion design.
A plurality of first material rollers 121 are respectively provided with a cloth material roll in a penetrating way, a nose bridge strip material roll is arranged on a second material roller 122, a cloth belt pulled out from the cloth material roll is guided into a first processing station 300 through a cloth tensioning adjusting component 124 and/or a guide roller, a plurality of rotating rollers are arranged in the first processing station 300, a plurality of rolls of cloth belts are superposed and conveyed through the plurality of rotating rollers, and one roll of cloth belt can pass through a nose bridge strip processing mechanism 200 in a winding way (the roll of cloth belt can become lower layer cloth of the mask); the nose bridge strip material pulled out from the nose bridge strip material roll is guided to the nose bridge strip processing mechanism 200 through the guide rollers 123. in the drawings of the present invention, although only two guide rollers 123 are arranged on the feeding frame 120, a person skilled in the art can arrange different numbers of guide rollers 123 according to actual requirements and arrange the guide rollers 123 at positions convenient for guiding materials; bridge of the nose strip processing mechanism 200 cuts into single bridge of the nose strip material area, and fall on the above-mentioned cloth area around bridge of the nose strip processing mechanism 200 in order, first processing station 300 is with multilayer coincide's cloth area and bridge of the nose strip butt fusion, cut unnecessary rim charge again, carry out bilateral folding in the fold forming station 400 after the completion and handle, send to the second after the completion and handle station 500, handle station 500 by the second and carry out the butt fusion in the semi-manufactured folding limit outside, then cut unnecessary rim charge after the butt fusion and separate finished product gauze mask from the cloth area, accomplish the preparation of fish shape gauze mask.
Further, as shown in fig. 4-5, the cloth tensioning and adjusting mechanism includes a mounting seat 1241, a first rotating shaft 1242, a second rotating shaft 1243, an adjusting plate 1244 and a connecting block 1245, the mounting seat 1241 is mounted on the vertical beam at the feeding side of the feeding frame 120 through a locking member, the first rotating shaft 1242 is rotatably inserted into the mounting seat 1241, the insertion side of the first rotating shaft 1242 is provided with a limiting section, the side surface of the mounting seat 1241 is provided with a through hole for a screw, a pin or other limiting member to be inserted into the mounting seat 1241 and abut against the limiting section to limit the rotation of the first rotating shaft 1242, the adjusting plate 1244 is disposed on the first rotating shaft 1242, two ends of the connecting block 1245 are respectively provided with an open-shaped clamping opening, the first rotating shaft 1242 and the second rotating shaft 1243 are connected through two clamping openings, two ends of the connecting block 1245 are longitudinally provided with through holes communicated with the openings of the clamping openings, a bolt is inserted therein to tighten the opening, make the internal diameter of pressing from both sides the mouth diminish, thereby lock first pivot 1242 and/or second pivot 1243, make it unable to rotate, the expandable opening of unscrewed bolt, make the internal diameter grow of pressing from both sides the mouth, thereby unblock first pivot 1242 and/or second pivot 1243, it is rotatable to make it, rotate first pivot 1242, regulating plate 1244 rotates thereupon together, but angle of adjustment position, change the space size between regulating plate 1244 and the second pivot 1243, from this the elasticity of adjustable cloth material area, moreover, the steam generator is simple in structure, and is low in cost.
Further, can know by fig. 8, nose bridge strip processing mechanism 200 includes first support, nose bridge strip guide assembly 210, nose bridge strip cutting assembly 220 and response subassembly, nose bridge strip guide assembly 210 establishes the side at first support, nose bridge strip cutting assembly 220 establishes the rear at nose bridge strip guide assembly 210, the top at first support is established to the response subassembly, nose bridge strip guide assembly 210 drives nose bridge strip material area and leads nose bridge strip cutting assembly 220 department, nose bridge strip cutting assembly 220 cuts nose bridge strip material into single nose bridge strip, nose bridge strip freely falls on lower floor's cloth area, induction system can detect nose bridge strip state, in time discover to lack the material condition.
Further, as shown in fig. 8, a plurality of rollers are disposed below the nose bridge guiding assembly 210 to facilitate the cloth belt to pass through the nose bridge processing mechanism 200.
Further, as shown in fig. 6, the first processing station 300 includes a first welding mechanism 310 disposed behind the nose bridge strip processing mechanism 200, a first trimming mechanism 320 and a first pulling mechanism 330 for cutting off excess trimmings are sequentially disposed behind the first welding mechanism 310, the first welding mechanism 310 welds the stacked multiple layers of cloth together with the nose bridge strip, the first trimming mechanism 320 cuts off excess trimmings after welding, and then the first pulling mechanism 330 pulls the trimmings-cut material to the fold forming station 400.
Further, the first processing station 300 further includes a first excess material collecting mechanism 340, and the first excess material collecting mechanism 340 is disposed beside the first edge cutting mechanism 320 and can collect excess edge materials cut by the first edge cutting mechanism 320.
Further, as can be seen from fig. 7, the second processing station 500 includes a second material pulling mechanism 510 disposed behind the fold forming station 400, a second welding mechanism 520, a third material pulling mechanism 530 and a second trimming mechanism 540 are sequentially disposed behind the second material pulling mechanism 510, the second material pulling mechanism 510 pulls the semi-finished product subjected to the double-side folding to the second welding mechanism 520, the second welding mechanism 520 welds the outer side of the folded edge of the semi-finished product, the third material pulling mechanism 530 pulls the semi-finished product to the second trimming mechanism 540 after welding, and the second trimming mechanism 540 cuts off the excess rim charge and separates the mask product from the material strip, thereby completing the preparation of the mask product.
Further, the second processing station 500 further includes a second excess material collecting mechanism 550, and the second excess material collecting mechanism 550 is disposed beside the second edge cutting mechanism 540 and can collect excess edge materials cut by the second edge cutting mechanism 540.
Further, as can be seen from fig. 1, the main frame 110 is further provided with an operation box 600, and the operation of each mechanism can be controlled by the operation box 600, and compared with the operation panel, the operation box 600 has a relatively simple structure and a low cost.
The utility model has the advantages that the whole structure is compact, and area occupied is little, optimizes the material roller of material loading frame 120, changes roller and cloth tensioning adjusting part 124 and operation box 600's structural design, and it is more simple and convenient to operate, and effectively the cost is reduced, can the fully provided market demand.
The above embodiments are only for describing the preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and various modifications and improvements made by the technical solution of the present invention by those skilled in the art are all within the scope of the present invention as defined by the claims.
Claims (10)
1. The utility model provides a fish-shaped gauze mask production facility which characterized in that: including whole frame, whole frame includes integrative main frame and feed frame, one side that the main frame is close to the feed frame is equipped with bridge of the nose strip processing mechanism, be equipped with the fold forming station on the main frame, the both sides of bilateral fold station are equipped with the first processing station that is used for butt fusion cloth and bridge of the nose strip respectively and handle the station with the second that is used for gauze mask butt fusion shaping, it has a plurality of to be used for wearing to hang the first material roller that the cloth material was rolled up and is used for wearing to hang the second material roller that bridge of the nose strip material was rolled up to distribute in the feed frame, still be equipped with a plurality of deflector roll and a plurality of position adjustable cloth tensioning adjusting part in the feed frame.
2. The production apparatus of a fish-shaped mask according to claim 1, characterized in that: cloth tensioning adjustment mechanism includes mount pad, first pivot, second pivot, regulating plate and connecting block, mount pad demountable installation erects on the roof beam in material loading frame feeding side, first pivot is rotatable to be worn to establish on the mount pad, the regulating plate is established in first pivot, the regulating plate rotates along with first pivot, the both ends of connecting block are equipped with the mouth that presss from both sides of opening form respectively, press from both sides mouthful through two and connect first pivot and second pivot, the both ends of connecting block vertically are equipped with the through-hole that is used for construction bolt that is linked together with the opening that presss from both sides the mouth.
3. The production apparatus of a fish-shaped mask according to claim 2, characterized in that: the side of mount pad is equipped with the perforation that is used for installing the locating part, through the rotation of the first pivot of locating part restriction.
4. The production apparatus of a fish-shaped mask according to claim 1, characterized in that: the first material roller, the second material roller and the guide roller are of shaft expanding structures.
5. The production apparatus of a fish-shaped mask according to claim 1, characterized in that: the nose bridge strip processing mechanism comprises a first support, a nose bridge strip material guiding assembly, a nose bridge strip cutting assembly and a sensing assembly, wherein the nose bridge strip material guiding assembly is arranged on the side face of the first support, the nose bridge strip cutting assembly is arranged behind the nose bridge strip material guiding assembly, and the sensing assembly is arranged above the first support.
6. The production apparatus of a fish-shaped mask according to claim 1, characterized in that: the first processing station comprises a first welding mechanism arranged behind the nose bridge strip processing mechanism, and a first trimming mechanism and a first material pulling mechanism for cutting off redundant trimmings are sequentially arranged behind the first welding mechanism.
7. The production apparatus of the fish-shaped mask according to claim 6, characterized in that: the first processing station further comprises a first excess material collecting mechanism, and the first excess material collecting mechanism is arranged beside the first trimming mechanism.
8. The production apparatus of a fish-shaped mask according to claim 1, characterized in that: the second processing station comprises a second material pulling mechanism arranged behind the folding forming station, and a second welding mechanism, a third material pulling mechanism and a second trimming mechanism are sequentially arranged behind the second material pulling mechanism.
9. The apparatus for producing a fish-shaped mask according to claim 8, wherein: the second processing station further comprises a second excess material collecting mechanism, and the second excess material collecting mechanism is arranged beside the second trimming mechanism.
10. The production apparatus of a fish-shaped mask according to claim 1, characterized in that: an operation box is further arranged on the main frame.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120927451.5U CN214630239U (en) | 2021-04-30 | 2021-04-30 | Fish-shaped mask production equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120927451.5U CN214630239U (en) | 2021-04-30 | 2021-04-30 | Fish-shaped mask production equipment |
Publications (1)
Publication Number | Publication Date |
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CN214630239U true CN214630239U (en) | 2021-11-09 |
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ID=78473454
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202120927451.5U Active CN214630239U (en) | 2021-04-30 | 2021-04-30 | Fish-shaped mask production equipment |
Country Status (1)
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CN (1) | CN214630239U (en) |
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2021
- 2021-04-30 CN CN202120927451.5U patent/CN214630239U/en active Active
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