CN209718617U - A kind of glass door automatic film-laminating device - Google Patents
A kind of glass door automatic film-laminating device Download PDFInfo
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- CN209718617U CN209718617U CN201920290744.XU CN201920290744U CN209718617U CN 209718617 U CN209718617 U CN 209718617U CN 201920290744 U CN201920290744 U CN 201920290744U CN 209718617 U CN209718617 U CN 209718617U
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- glass door
- roller
- film
- laminating device
- gear
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Abstract
The utility model discloses a kind of glass door automatic film-laminating devices, conveying mechanism including glass door two sides are connected and be divided into rack, the first roller is respectively symmetrically equipped with above and below glass door, first roller rolls in the motion process of glass door on glass door surface, it is attached on glass door surface with constituting the film between the first roller and glass door surface, the elastic top-pressure mechanism being connected with rack is respectively equipped in the both ends of the first roller, elastic top-pressure mechanism press is in the shaft of the first roller, when glass door is by between two first rollers, elastic top-pressure mechanism presses corresponding first roller, be respectively equipped with above and below glass door connect with gantry rotation for for the first roller providing the film take-up roller of film, film take-up roller is overlapped with the axis of the first roller.The utility model have glass door pad pasting effect it is good, and be suitable for different-thickness glass door pad pasting the characteristics of, the pad pasting field suitable for glass door.
Description
Technical field
The utility model belongs to glass door Filming Technology field, is filled specifically, being related to a kind of glass door with automatic coating
It sets.
Background technique
Nowadays, in the production of glass door, glass door is scratched in order to prevent, and influences the beauty of glass door, is mostly adopted
It is realized with glass door surface adhered film.However, during laminator is to glass door adhered film, film and glass door
Between often will appear bubble, and the fixed glass door to different-thickness of model of laminator is needed to shut down and is adjusted, with suitable
The glass door for closing different-thickness, influences production efficiency.
Utility model content
The utility model provides that a kind of glass door pad pasting effect is good, and is suitable for the glass door of different-thickness glass door pad pasting
Use automatic film-laminating device.
To achieve the above object, technical solution used by the utility model is as follows:
A kind of glass door automatic film-laminating device, including be connected with rack and be divided into glass door two sides for horizontal feed
The conveying mechanism of glass door is respectively symmetrically equipped with above and below glass door and is attached at corresponding glass door for film
First roller on surface, the first roller roll in the motion process of glass door on glass door surface, are located at first to constitute
Film between roller and glass door surface is attached on glass door surface, is respectively equipped in the both ends of the first roller solid with rack
Elastic top-pressure mechanism even, the press of elastic top-pressure mechanism in the shaft of the first roller, when glass door by two first rollers it
Between when, elastic top-pressure mechanism presses corresponding first roller, to constitute the surface of glass door and corresponding first roller phase
It supports, the film for providing film for the first roller connecting with gantry rotation is respectively equipped with above and below glass door and is received
Winding up roller, film take-up roller are overlapped with the axis of the first roller.
Further, each elastic top-pressure mechanism includes the sheet frame being connected with rack, the shaft of first roller
It protrudes into the sheet frame, bearing is equipped in Yu Suoshu shaft, two cunnings are symmetrically arranged on the two sides of the outer wall of Yu Suoshu bearing
Block, on Yu Suoshu sheet frame and in being respectively formed with slideway on the corresponding side wall of two sliding blocks, the slideway extends along the vertical direction,
And the spring in compressive state is fixed between the upper end of the outer wall of the bearing and the sheet frame upper end.
Further, the second roller is equipped between the first roller of Yu Suoshu and film take-up roller, second roller is circumferential
The lower part on surface is connect close to corresponding glass door surface, second roller with the gantry rotation, and second roller
It takes turns parallel with the axis of the first roller.
Further, the axial end portion of Yu Suoshu film take-up roller is equipped with the first driving motor, first driving motor
Output shaft and the film take-up roller it is coaxially connected.
Further, the conveying mechanism includes the first driving wheel group rolled respectively in glass door upper surface and lower end surface
With the second driving wheel group, first driving wheel group is connected with the second driving wheel group by driving gear set, and the driving cog
Wheel group is driven by the second driving motor.
Further, first driving wheel group includes several spaced first rollings of the direction of motion along glass door
Wheel, each first idler wheel are coaxially connected with the first belt pulley, and each first belt pulley is sequentially connected by the first belt.
Further, second driving wheel group includes several spaced second rollings of the direction of motion along glass door
Wheel, each second idler wheel are coaxially connected with the second belt pulley, and each second belt pulley is sequentially connected by the second belt.
Further, the driving gear set includes intermeshing first gear and second gear, the first gear
Coaxially connected with first idler wheel of one of them, the second gear the second idler wheel corresponding with the first idler wheel is coaxial
Connection, and the output shaft of second driving motor is coaxially connected in the first gear or second gear.
The utility model is due to using above-mentioned structure, and compared with prior art, acquired technological progress is:
Positioned at glass door two sides conveying mechanism by glass door horizontal feed between two first rollers, due to elastic high pressure apparatus
The effect of structure, so that the surface of glass door offsets with corresponding first roller, and two the first rollers are close by film respectively
Ground is rolled on glass door, and this avoid films to roll to the generation of bubble on glass door surface, and elastic top-pressure mechanism
Can be according to the thickness of glass door, during glass door protrudes between two the first rollers, elastic telescopic is corresponding to carry
The first roller, and then change the gap of two the first rollers, such the utility model is applicable to a variety of different-thickness
Glass door, and it is not necessarily to shutdown adjustment, improve production efficiency.
Detailed description of the invention
Attached drawing is used to provide a further understanding of the present invention, and constitutes part of specification, practical with this
Novel embodiment is used to explain the utility model together, does not constitute limitations of the present invention.
In the accompanying drawings:
Fig. 1 is the structural schematic diagram of the utility model embodiment;
Fig. 2 is the structural schematic diagram of the utility model embodiment elasticity top-pressure mechanism;
Fig. 3 is the structural schematic diagram of the utility model embodiment conveying mechanism.
Mark component: 1- glass door, 2- rack, 3- film take-up roller, the first driving motor of 4-, the second roller of 5-, 6- the
One roller, 7- sheet frame, 8- film, 9- shaft, 10- bearing, 11- sliding block, 12- slideway, 13- spring, the second driving motor of 14-,
15- second gear, 16- first gear, the second belt pulley of 17-, the second idler wheel of 18-, the first belt pulley of 19-, the first idler wheel of 20-,
The second belt of 21-, the first belt of 22-.
Specific embodiment
It is illustrated below in conjunction with preferred embodiment of the attached drawing to the utility model.It should be appreciated that described herein excellent
It selects embodiment to be only used for describing and explaining the present invention, is not used to limit the utility model.
A kind of glass door automatic film-laminating device of embodiment
Present embodiment discloses a kind of glass door automatic film-laminating devices, as shown in Figure 1, including rack 2, are mounted on rack
Two conveying mechanisms on 2, two conveying mechanisms are separately positioned on the two sides of glass door 1, and are used for horizontal feed glass door 1.
The first roller 6 is symmetrically arranged above and below glass door 1, two the first rollers 6 are used to film 8 being attached to phase
On corresponding 1 surface of glass door.First roller 6 rolls in the motion process of glass door 1 on 1 surface of glass door, thus
It is attached to the film 8 between 1 surface of the first roller 6 and glass door on 1 surface of glass door.Glass door 1 top and
It is respectively arranged below 8 wind-up roll 3 of film being rotatablely connected with rack 2, wherein 8 wind-up roll 3 of film is used to be corresponding the
One roller 6 provides film 8, and 8 wind-up roll 3 of film is overlapped with the axis of the first roller 6.In the axial end portion of 8 wind-up roll 3 of film
It is provided with the first driving motor 4, the output shaft and 8 wind-up roll 3 of film of the first driving motor 4 are coaxially connected, the first driving motor 4
The purpose of design is to keep the speed of 8 wind-up roll of film, 3 film 8 release identical as the conveying speed of glass door 1, and then avoid not having
There is 8 wind-up roll 3 of film of the first driving motor 4 passive rotation in the conveying of glass door 1, and 8 wind-up roll 3 of film occurs and rotates speed
Degree is greater than the conveying speed of glass door 1, and then is pressed together on 1 surface of glass door with causing 8 fold of film.
The present embodiment rolls in order to ensure the surface of two the first rollers 6 is tightly fitted on the surface of glass door 1, to keep away
Exempt from the generation of bubble, and the gap of two the first rollers 6 changes in due course with the thickness of glass door 1, in each first roller 6
Both ends are respectively arranged with the elastic top-pressure mechanism connecting with 2 Gu Ding of rack, and as described in Figure 2, each elasticity top-pressure mechanism includes
The sheet frame 7 being fixedly connected with rack 2, the both ends of the shaft 9 of the first roller 6 are respectively protruding into corresponding two sheet frames 7, are being turned
The both ends end of axis 9 is respectively fitted with bearing 10, is symmetrically welded on the two sides of the outer wall of each bearing 10 there are two sliding block 11,
Slideway 12 is respectively formed on sheet frame 7 and on two corresponding side walls of sliding block 11, wherein slideway 12 prolongs along the vertical direction
It stretches, each sliding block 11 is respectively assembled in corresponding slideway 12, and between 7 upper end of the upper end of the outer wall of bearing 10 and sheet frame
It is fixedly connected with the spring 13 in compressive state.
The present embodiment is in order to keep film 8 close with 1 surface of glass door before the first roller 6, to reduce the generation of bubble
Rate, and avoid film 8 during the first roller 6 rolling to 1 surface of glass door, since film 8 is in the first roller 6 and film
Overtension between 8 wind-up rolls 3 and damage film 8, as shown in Figure 1, being provided between 8 wind-up roll 3 of the first roller 6 and film
Second roller 5, the second roller 5 are rotatablely connected with rack 2, wherein the lower part of 5 peripheral surface of the second roller is close to corresponding glass
1 surface of glass door, and the second roller 5 is parallel with the axis of the first roller 6.
Each conveying mechanism includes the first driving wheel group and second for being rolled over 1 upper surface of glass door and lower end surface respectively
Driving wheel group, the first driving wheel group and the second driving wheel group are connected by driving gear set, and driving gear set is driven by second
Dynamic motor 14 drives.As shown in figure 3, the first driving wheel group includes multiple directions of motion along glass door 1 spaced first
Idler wheel 20, each first idler wheel 20 are coaxially connected with the first belt 22 wheel 19, these first belts 22 wheel 19 passes through the first skin
Band 22 is sequentially connected.Second driving wheel group includes spaced second idler wheel 18 of multiple directions of motion along glass door 1, each
Second idler wheel 18 is coaxially connected with the second belt 21 wheel 17, these second belts 21 wheel 17 is connected by the transmission of the second belt 21
It connects.Driving gear set includes intermeshing first gear 16 and second gear 15, wherein first gear 16 with one of them
First idler wheel 20 is coaxially connected, and second gear 15 and second idler wheel 18 corresponding with the first idler wheel 20 are coaxially connected, and second
The output shaft of driving motor 14 is coaxially connected in first gear 16 or second gear 15.
The working principle of the utility model embodiment is as follows:
Glass door 1 is delivered between two the first rollers 6 by conveying mechanism, due to the gap between two the first rollers 6
Less than the thickness of glass door 1, glass door 1 during the gap protruded between two the first rollers 6, elastic top-pressure mechanism
Spring 13 is compressed, and then is adapted to the gap between two rollers with the thickness of glass door 1, and two the first rollers 6 and glass
The corresponding surface of glass door 1 offsets, and the film 8 between the first roller 6 and glass door 1 is thus pressed together on glass door 1
On surface, and avoid the generation of bubble in bonding processes.
Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention, it is not limited to this
Utility model, although the utility model is described in detail with reference to the foregoing embodiments, for those skilled in the art
For, it is still possible to modify the technical solutions described in the foregoing embodiments, or to part of technical characteristic
It is equivalently replaced.Within the spirit and principle of the utility model, any modification, equivalent replacement, improvement and so on,
It should be included within the scope of the utility model claims protection.
Claims (8)
1. a kind of glass door automatic film-laminating device, it is characterised in that: used including glass door two sides are connected and be divided into rack
In the conveying mechanism of horizontal feed glass door, respectively symmetrically it is equipped with above and below glass door and is attached at relatively for film
First roller on the glass door surface answered, the first roller rolls in the motion process of glass door on glass door surface, with structure
It is attached on glass door surface at the film between the first roller and glass door surface, is set respectively in the both ends of the first roller
There is an elastic top-pressure mechanism being connected with rack, the press of elastic top-pressure mechanism is in the shaft of the first roller, when glass door passes through two
When between the first roller, elastic top-pressure mechanism presses corresponding first roller, with constitute the surface of glass door with it is corresponding
First roller offsets, be respectively equipped with above and below glass door connect with gantry rotation for provided for the first roller it is thin
The film take-up roller of film, film take-up roller are overlapped with the axis of the first roller.
2. a kind of glass door automatic film-laminating device according to claim 1, it is characterised in that: each elastic high pressure apparatus
Structure includes the sheet frame being connected with rack, and the shaft of first roller is protruded into the sheet frame, is equipped in Yu Suoshu shaft
Bearing, is symmetrically arranged with two sliding blocks on the two sides of the outer wall of Yu Suoshu bearing, on Yu Suoshu sheet frame and corresponding in two sliding blocks
Slideway is respectively formed on side wall, the slideway extends along the vertical direction, and in the upper end of the outer wall of the bearing and the plate
The spring in compressive state is fixed between frame upper end.
3. a kind of glass door automatic film-laminating device according to claim 1, it is characterised in that: the first roller of Yu Suoshu with
Be equipped with the second roller between film take-up roller, the lower part of the second roller peripheral surface close to corresponding glass door surface,
Second roller is connect with the gantry rotation, and second roller is parallel with the axis of the first roller.
4. a kind of glass door automatic film-laminating device according to claim 1, it is characterised in that: Yu Suoshu film take-up roller
Axial end portion be equipped with the first driving motor, the output shaft of first driving motor and the film take-up roller are coaxially connected.
5. a kind of glass door automatic film-laminating device according to claim 1, it is characterised in that: the conveying mechanism includes
Roll the first driving wheel group and the second driving wheel group in glass door upper surface and lower end surface respectively, first driving wheel group and
Second driving wheel group is connected by driving gear set, and the driving gear set is driven by the second driving motor.
6. a kind of glass door automatic film-laminating device according to claim 5, it is characterised in that: first driving wheel group
Including several along spaced first idler wheel of the direction of motion of glass door, each first idler wheel is coaxially connected with the first skin
Belt wheel, each first belt pulley are sequentially connected by the first belt.
7. a kind of glass door automatic film-laminating device according to claim 6, it is characterised in that: second driving wheel group
Including several along spaced second idler wheel of the direction of motion of glass door, each second idler wheel is coaxially connected with the second skin
Belt wheel, each second belt pulley are sequentially connected by the second belt.
8. a kind of glass door automatic film-laminating device according to claim 7, it is characterised in that: the driving gear set packet
Including intermeshing first gear and second gear, the first gear and one of them first idler wheel are coaxially connected,
The second gear the second idler wheel corresponding with the first idler wheel is coaxially connected, and the output shaft of second driving motor is same
Axis connection is in the first gear or second gear.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920290744.XU CN209718617U (en) | 2019-03-07 | 2019-03-07 | A kind of glass door automatic film-laminating device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920290744.XU CN209718617U (en) | 2019-03-07 | 2019-03-07 | A kind of glass door automatic film-laminating device |
Publications (1)
Publication Number | Publication Date |
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CN209718617U true CN209718617U (en) | 2019-12-03 |
Family
ID=68685520
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920290744.XU Active CN209718617U (en) | 2019-03-07 | 2019-03-07 | A kind of glass door automatic film-laminating device |
Country Status (1)
Country | Link |
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CN (1) | CN209718617U (en) |
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2019
- 2019-03-07 CN CN201920290744.XU patent/CN209718617U/en active Active
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