CN215362041U - Automatic laminating equipment - Google Patents
Automatic laminating equipment Download PDFInfo
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- CN215362041U CN215362041U CN202121734445.4U CN202121734445U CN215362041U CN 215362041 U CN215362041 U CN 215362041U CN 202121734445 U CN202121734445 U CN 202121734445U CN 215362041 U CN215362041 U CN 215362041U
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- mounting panel
- gyro wheel
- mounting plate
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- wire gauge
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Abstract
The utility model relates to the technical field of automatic film laminating equipment, in particular to automatic film laminating equipment which comprises a left mounting plate, a right mounting plate, a wire gauge mounting plate, a driving motor and a wire gauge, wherein the left mounting plate and the right mounting plate are fixedly mounted in parallel; the driving motor and the wire gauge are both installed on the wire gauge installation plate, and a second synchronous belt wheel is installed at the output end of the driving motor in a transmission mode. The double-sided film laminating machine achieves the purposes of automatically laminating double sides of glass and cutting off a film, cuts off the film through the forward movement or the backward movement of the cutter, reduces the labor, improves the double-sided film laminating efficiency of the glass, has small integral volume, convenient operation and strong applicability, has a cutting-off function, and can save the labor; the automatic inductor can accurately position the cutting position of the film.
Description
Technical Field
The utility model relates to the technical field of automatic film laminating equipment, in particular to automatic film laminating equipment.
Background
The appearance requirement of the display screen glass of the mobile phone or the tablet computer is generally very high, most processes are finished in a dust-free workshop, and double-sided film coating needs to be carried out on the glass in the transportation process of a finished glass product so as to protect the appearance of the glass. The existing double-sided laminating of glass generally adopts small-size semi-automatic laminating equipment, and the film can only be covered to this kind of equipment, can not cut off the film, needs to cut off the film according to the operation personnel is manual, and this kind of scheme demand manpower is more, leads to work efficiency lower, and the quality of pad pasting can't be ensured simultaneously, consequently is difficult to satisfy the user demand.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model provides automatic film laminating equipment, which achieves the purposes of automatically laminating films on two sides of glass and cutting off the films, and cuts off the films by advancing or retreating a cutter, thereby reducing the labor, improving the efficiency of laminating the two sides of the glass, having small integral volume, convenient operation, strong applicability and self-provided cutting-off function, and saving the labor; the automatic inductor can accurately position the cutting position of the film.
In order to solve the technical problems, the utility model provides the following technical scheme: an automatic laminating device comprises a left mounting plate, a right mounting plate, a wire gauge mounting plate, a driving motor and a wire gauge, wherein the left mounting plate and the right mounting plate are fixedly mounted in parallel, the wire gauge mounting plate is mounted on the side surfaces of the left mounting plate and the right mounting plate, glass placing plates are fixedly mounted on the left mounting plate and the right mounting plate, and a starting button is fixedly mounted on the side surface of the left mounting plate; the utility model discloses a film cutting machine, including driving motor, line rule mounting panel, second synchronous pulley, cutter mounting panel, line rule, synchronous belt, cutter mounting panel, line rule mounting panel, driving motor and line rule are all installed on the line rule mounting panel, a second synchronous pulley is installed in the last output transmission of driving motor, rotate on the line rule mounting panel and install another second synchronous pulley, two install the hold-in range between the second synchronous pulley, install the cutter mounting panel on the line rule, but the cutter mounting panel passes through the line rule horizontal slip, the cutter mounting panel is connected with synchronous belt drive, fixed mounting has the cutter on the cutter mounting panel, and the cutter is used for cutting off the film.
Further, there are left side gyro wheel mounting panel and right side gyro wheel mounting panel on left side mounting panel and the right mounting panel respectively fixed mounting, movable mounting has first gyro wheel, second gyro wheel and third gyro wheel between left side gyro wheel mounting panel and the right side gyro wheel mounting panel, ball bearing is all installed at first gyro wheel, second gyro wheel and third gyro wheel both ends.
Further, a first synchronous pulley is installed to the one end of first gyro wheel, fixed mounting has the motor on the mounting panel of the right side, another first synchronous pulley is installed to the axle head of motor, and two first synchronous pulleys pass through the hold-in range and connect, it is rotatory that the motor drives first gyro wheel, a first synchronous pulley is all installed to the one end of second gyro wheel and third gyro wheel, and the hold-in range is connected with first gyro wheel transmission, first gyro wheel, second gyro wheel, third gyro wheel synchronous revolution.
Further, fixed mounting has a right side pinch roller mounting panel on the gyro wheel mounting panel of right side, fixed mounting has a left side pinch roller mounting panel on the gyro wheel mounting panel of left side, install two material axles, first pinch roller box second pinch rollers between left side pinch roller mounting panel and the right side pinch roller mounting panel, ball bearing is all installed at the both ends of material axle, first pinch roller and second pinch roller.
Furthermore, the first pressing wheel and the first roller wheel are on the same vertical plane, a first spring pressing mechanism is mounted at the shaft end of the first pressing wheel, and the first spring pressing mechanism presses down the first pressing wheel to be in contact with the first roller wheel; the second pinch roller and the second idler wheel are on the same vertical plane, a second spring pressing mechanism is installed at the shaft end of the second pinch roller, and the second spring pressing mechanism presses down the second pinch roller to be in contact with the second idler wheel.
Further, fixed mounting has the inductor mounting panel on left side gyro wheel mounting panel and the right side gyro wheel mounting panel, fixed mounting has the inductor on the inductor mounting panel.
Further, still include left side material axle mounting panel and right side material axle mounting panel, install two material axles, two between left side material axle mounting panel and the right side material axle mounting panel two the epaxial two stoppers, two of all installing of material the epaxial film coil stock and the last film coil stock of placing of material.
The utility model provides automatic film laminating equipment which has the following beneficial effects:
1. according to the utility model, the upper layer of film and the lower layer of film are driven to advance by the roller, the glass to be coated is placed between the upper layer of film and the lower layer of film, the film is covered on the glass by clamping the roller and the pressing wheel, and the film is cut off by advancing or retreating the cutter, so that the labor is reduced, and the double-sided coating efficiency of the glass is improved.
2. The utility model is mainly used for double-sided film coating and film cutting of glass, and has the advantages of small overall volume, convenient operation, strong applicability, self-contained cutting function and labor saving; the automatic inductor can accurately position the cutting position of the film.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic perspective view of the present invention;
FIG. 3 is a side view of the present invention;
fig. 4 is a front view of the present invention.
In the figure: 101. a left mounting plate; 102. a wire gauge mounting plate; 103. a right mounting plate; 104. a left roller mounting plate; 105. a right roller mounting plate; 106. a right pinch roller mounting plate; 107. a left pinch roller mounting plate; 108. a left material shaft mounting plate; 109. a right material shaft mounting plate; 110. a limiting block; 111. feeding a film coil; 112. feeding a film coil stock; 113. a glass placement plate; 114. a start button; 115. a material shaft; 201. a first roller; 202. a second roller; 203. a third roller; 204. a first pinch roller; 205. a second pinch roller; 206. a sensor mounting plate; 207. an inductor; 301. a motor; 302. a first timing pulley; 401. a drive motor; 402. a second timing pulley; 403. a synchronous belt; 404. a wire gauge; 405. a cutter mounting plate; 406. and (4) a cutter.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: an automatic film laminating device comprises a left mounting plate 101, a right mounting plate 103, a wire gauge mounting plate 102, a driving motor 401 and a wire gauge 404, wherein the left mounting plate 101 and the right mounting plate 103 are fixedly mounted in parallel, the wire gauge mounting plate 102 is mounted on the side surfaces of the left mounting plate 101 and the right mounting plate 103, a left roller mounting plate 104 is mounted on the left mounting plate 101, a right roller mounting plate 105 is mounted on the right mounting plate 103, a first roller 201, a second roller 202 and a third roller 203 are mounted between the left roller mounting plate 104 and the right roller mounting plate 105, ball bearings are mounted at two ends of each of the three rollers, and the three rollers can rotate smoothly; a first synchronous belt pulley 302 is installed at one end of the first roller 201, a first synchronous belt pulley 302 is installed at the shaft end of the motor 301, the two first synchronous belt pulleys 302 are connected through a synchronous belt, the motor 301 drives the first roller 201 to rotate together when being electrified, the first synchronous belt pulley 302 is installed at one end of each of the second roller 202 and the third roller 203, the synchronous belt is connected with the first roller 201, and the first roller 201, the second roller 202 and the third roller 203 can synchronously rotate; according to the utility model, the upper layer of film and the lower layer of film are driven to advance by the roller, the glass to be coated is placed between the upper layer of film and the lower layer of film, the film is covered on the glass by clamping the roller and the pressing wheel, and the film is cut off by advancing or retreating the cutter, so that the labor is reduced, and the double-sided coating efficiency of the glass is improved.
The right side pinch roller mounting plate 106 is mounted on the right side pinch roller mounting plate 105, the left side pinch roller mounting plate 107 is mounted on the left side pinch roller mounting plate 104, the two material shafts 115, the first pinch roller 204 and the second pinch roller 205 are mounted between the left side pinch roller mounting plate 107 and the right side pinch roller mounting plate 106, ball bearings are mounted at two ends of each of the four shafts 115, the first pinch roller 204 and the second pinch roller 205, and the four shafts can rotate smoothly; the first pressure wheel 204 and the first roller 201 are on the same vertical plane, a spring pressing mechanism is installed at the shaft end of the first pressure wheel 204, and the first pressure wheel 204 can be pressed down by a spring to be in contact with the first roller 201; the second pressure wheel 205 and the second roller 202 are on the same vertical plane, a spring pressing mechanism is installed at the shaft end of the second pressure wheel 205, the second pressure wheel 205 can be pressed down by a spring to be in contact with the second roller 202, and the film can be tightly attached to the glass by the downward pressing force provided by the spring, so that the purpose of glass film coating is realized; the sensor mounting plate 206 is mounted on the left roller mounting plate 104 and the right roller mounting plate 105, the sensor 207 is fixed on the sensor mounting plate 206, and the sensor 207 is mainly used for sensing the position of glass; two material shafts 115 are arranged between the right pinch roller mounting plate 106 and the left pinch roller mounting plate 107, two material shafts 115 are arranged between the left material shaft mounting plate 108 and the right material shaft mounting plate 109, two limiting blocks 110 are arranged on the material shafts 115, and films with different sizes can be applied by adjusting the positions of the limiting blocks 110; the lower film coil 111 and the upper film coil 112 are respectively placed on two material shafts 115; the glass placing plate 113 is mounted on the left mounting plate 101 and the right mounting plate 103; the starting button 114 is arranged on the side surface of the left mounting plate 101; the driving motor 401 and the wire gauge 404 are both arranged on the wire gauge mounting plate 102, one second synchronous pulley 402 is arranged on the driving motor 401, one second synchronous pulley 402 is arranged on the wire gauge mounting plate 102, a synchronous belt 403 is arranged between the two second synchronous pulleys 402, the cutter mounting plate 405 is arranged on the wire gauge 404 and can slide left and right, the cutter mounting plate 405 is connected with the synchronous belt 403, and when the driving motor 401 is electrified, the cutter mounting plate 405 can be driven to move forward or backward; the cutter 406 is mounted on the cutter mounting plate 405, and the cutter 406 is mainly used for cutting the film.
The utility model is mainly used for double-sided film coating and film cutting of glass, and has the advantages of small overall volume, convenient operation, strong applicability, self-contained cutting function and labor saving; the automatic inductor can accurately position the cutting position of the film.
In the using process, an operator places glass to be coated on the glass placing plate 113, presses the starting button 114, the motor 301 rotates to drive the first roller 201, the second roller 202, the third roller 203, the first pressing wheel 204 and the second pressing wheel 205 to rotate, the glass advances to the inductor 207, the motor 301 rotates for a set number of turns according to a set value of an equipment program, the glass advances to a film cutting position, the driving motor 401 rotates, the cutter 406 advances or retreats to cut off a film, the whole glass automatic coating action is completed, and the glass automatic coating device is used for automatic coating of display screen glass of a mobile phone or a tablet computer.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
1. An automatic laminating equipment, includes left mounting panel (101), right mounting panel (103), wire gauge mounting panel (102), driving motor (401) and wire gauge (404), its characterized in that: the wire gauge mounting plate (102) is mounted on the side surfaces of the left mounting plate (101) and the right mounting plate (103), the left mounting plate (101) and the right mounting plate (103) are fixedly mounted with a glass placing plate (113), and the side surface of the left mounting plate (101) is fixedly mounted with a starting button (114); driving motor (401) and wire gauge (404) are all installed on wire gauge mounting panel (102), a second synchronous pulley (402) is installed in the output transmission on driving motor (401), rotate on wire gauge mounting panel (102) and install another second synchronous pulley (402), two install hold-in range (403) between second synchronous pulley (402), install cutter mounting panel (405) on wire gauge (404), but cutter mounting panel (405) pass through wire gauge (404) horizontal slip, cutter mounting panel (405) and hold-in range (403) transmission are connected, fixed mounting has cutter (406) on cutter mounting panel (405), and cutter (406) are used for cutting off the film.
2. An automatic laminating apparatus according to claim 1, characterized in that: fixed mounting has left side gyro wheel mounting panel (104) and right side gyro wheel mounting panel (105) on left side mounting panel (101) and right mounting panel (103) respectively, movable mounting has first gyro wheel (201), second gyro wheel (202) and third gyro wheel (203) between left side gyro wheel mounting panel (104) and right side gyro wheel mounting panel (105), ball bearing is all installed at first gyro wheel (201), second gyro wheel (202) and third gyro wheel (203) both ends.
3. An automatic laminating apparatus according to claim 2, characterized in that: one first synchronous pulley (302) is installed to the one end of first gyro wheel (201), fixed mounting has motor (301) on right side mounting panel (103), another first synchronous pulley (302) is installed to the axle head of motor (301), and two first synchronous pulleys (302) are connected through the hold-in range, it is rotatory that motor (301) drive first gyro wheel (201), one first synchronous pulley (302) is all installed to the one end of second gyro wheel (202) and third gyro wheel (203), and the hold-in range is connected with first gyro wheel (201) transmission, first gyro wheel (201), second gyro wheel (202), third gyro wheel (203) synchronous revolution.
4. An automatic laminating apparatus according to claim 3, characterized in that: fixed mounting has right side pinch roller mounting panel (106) on right side gyro wheel mounting panel (105), fixed mounting has left side pinch roller mounting panel (107) on left side gyro wheel mounting panel (104), install between left side pinch roller mounting panel (107) and right side pinch roller mounting panel (106) two material axles (115), first pinch roller (204) box second pinch roller (205), ball bearing is all installed at the both ends of material axle (115), first pinch roller (204) and second pinch roller (205).
5. An automatic laminating apparatus according to claim 4, characterized in that: the first pressing wheel (204) and the first roller (201) are on the same vertical plane, a first spring pressing mechanism is mounted at the shaft end of the first pressing wheel (204), and the first spring pressing mechanism presses down the first pressing wheel (204) to be in contact with the first roller (201); the second pressure wheel (205) and the second roller (202) are on the same vertical plane, a second spring pressing mechanism is installed at the shaft end of the second pressure wheel (205), and the second spring pressing mechanism presses down the second pressure wheel (205) to be in contact with the second roller (202).
6. An automatic laminating apparatus according to claim 4, characterized in that: fixed mounting has inductor mounting panel (206) on left side gyro wheel mounting panel (104) and right side gyro wheel mounting panel (105), fixed mounting has inductor (207) on inductor mounting panel (206).
7. An automatic laminating apparatus according to claim 1, characterized in that: still include left side material axle mounting panel (108) and right side material axle mounting panel (109), install two material axles (115), two between left side material axle mounting panel (108) and right side material axle mounting panel (109) all install two stopper (110), two on material axle (115) placed down film coil stock (111) and go up film coil stock (112).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121734445.4U CN215362041U (en) | 2021-07-28 | 2021-07-28 | Automatic laminating equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121734445.4U CN215362041U (en) | 2021-07-28 | 2021-07-28 | Automatic laminating equipment |
Publications (1)
Publication Number | Publication Date |
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CN215362041U true CN215362041U (en) | 2021-12-31 |
Family
ID=79612537
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202121734445.4U Active CN215362041U (en) | 2021-07-28 | 2021-07-28 | Automatic laminating equipment |
Country Status (1)
Country | Link |
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CN (1) | CN215362041U (en) |
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2021
- 2021-07-28 CN CN202121734445.4U patent/CN215362041U/en active Active
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