CN209918191U - Even rubber coating mechanism of coating machine - Google Patents

Even rubber coating mechanism of coating machine Download PDF

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Publication number
CN209918191U
CN209918191U CN201920546878.3U CN201920546878U CN209918191U CN 209918191 U CN209918191 U CN 209918191U CN 201920546878 U CN201920546878 U CN 201920546878U CN 209918191 U CN209918191 U CN 209918191U
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China
Prior art keywords
tension roller
roller
side plate
glue
plate
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Active
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CN201920546878.3U
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Chinese (zh)
Inventor
张金华
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Dongguan One Hundred Antistatic Materials Co Ltd
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Dongguan One Hundred Antistatic Materials Co Ltd
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Priority to CN201920546878.3U priority Critical patent/CN209918191U/en
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Abstract

The utility model discloses an even rubber coating mechanism of coating machine, including first frame curb plate and second frame curb plate, be equipped with rubber coating device and first equal rubber roll between the board of both sides, the first frame curb plate outside is equipped with eccentric motor, be fixed with the eccentric wheel on the eccentric motor output shaft, the second frame curb plate outside is equipped with first equal rubber roll rotating electrical machines, the rubber coating device is located the lower extreme position between the board of both sides, the both ends of first equal rubber roll are connected with eccentric wheel and the transmission of first equal rubber roll rotating electrical machines on the eccentric motor respectively, make first equal rubber roll remove when rotatory. The utility model has the advantages of simple structure, compactness, reasonable in design, easy operation, the glue solution that can the membrane material is paintd evenly, also realizes continuous rubber coating when realizing that the glue solution ration is paintd, has both improved production efficiency and has also improved production quality, and the machine operation is reliable and stable.

Description

Even rubber coating mechanism of coating machine
Technical Field
The utility model relates to a coating line's technical field, more specifically say, relate to an even rubber coating mechanism of coating machine.
Background
In the coating production line, a machine needs to coat a layer of glue, paint or ink with a specific function on a coiled membrane material, when the traditional coating machine is used for coating glue, the problems of uneven glue coating, discontinuous glue coating and the like often occur due to the problems of equipment setting and the like, the problems directly cause the phenomenon that the membrane material needs to be coated again or even the membrane material is damaged and discarded, the production quality is reduced, and the production efficiency is also reduced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome the above-mentioned defect among the prior art, provide an even rubber coating mechanism of coating machine.
In order to realize the above object, the utility model provides an even rubber coating mechanism of coating machine, including first frame curb plate and second frame curb plate, be equipped with rubber coating device and first equal rubber roll between first frame curb plate and the second frame curb plate, first frame curb plate outside is equipped with eccentric motor, be fixed with the eccentric wheel on eccentric motor's the output shaft, second frame curb plate outside is equipped with first equal rubber roll rotating electrical machines, the one end of first equal rubber roll is run through first frame curb plate and is equipped with the eccentric wheel groove seat, the other end of first equal rubber roll run through second frame curb plate and through the shaft coupling with the output shaft of first equal rubber roll rotating electrical machines is connected, the other end activity of first equal rubber roll is inserted in the centre bore of shaft coupling, first equal rubber roll rotating electrical machines can drive first equal rotation, the one of first equal rubber roll serve eccentric wheel groove seat with the epaxial eccentric wheel cooperation transmission of eccentric wheel output of eccentric motor output shaft So as to drive the first rubber equalizing roller to move left and right, and the first rubber equalizing roller is enabled to move left and right while continuously rotating.
As a preferred embodiment, the glue spreading device comprises a glue storage tank, a glue moving roller, glue spreading rollers, two groups of glue spreading roller lifting driving devices and a glue moving roller rotating motor fixed on the outer side of the second frame side plate, the two groups of glue spreading roller lifting driving devices are respectively installed on the first frame side plate and the second frame side plate, the glue storage tank is fixed at the lower end part between the first frame side plate and the second frame side plate, the glue moving roller is arranged in the glue storage tank, one end of the glue moving roller is rotatably installed on the first frame side plate, the other end of the glue moving roller penetrates through the second frame side plate and is connected with an output shaft of the glue moving roller rotating motor, so that the glue moving roller rotating motor drives the glue moving roller to rotate, the glue spreading rollers are positioned right above the glue moving roller, and two ends of the glue spreading rollers are respectively rotatably installed on the two groups of glue spreading roller lifting driving devices, the surface of the glue spreader is in contact with the surface of the glue moving roller, so that the glue moving roller can drive the glue spreader to rotate.
As a preferred implementation mode, a first tension roller and two sets of first tension roller lifting driving devices are arranged between the first rack side plate and the second rack side plate, the two sets of first tension roller lifting driving devices are installed on the glue spreader lifting driving devices, two ends of the first tension roller are respectively installed on the two sets of first tension roller lifting driving devices, and the first tension roller is located above the glue spreader.
As a preferred embodiment, two sets of glue spreader lift drive all include glue spreader lift cylinder and glue spreader lifter plate, glue spreader lift cylinder longitudinal fixation respectively is inboard at first frame curb plate and the inboard downward vertical setting of second frame curb plate and output shaft, the glue spreader lifter plate is fixed respectively on the output shaft of corresponding glue spreader lift cylinder, makes glue spreader lift cylinder drives its oscilaltion, two sets of first tension roller lift drive install respectively on two sets of glue spreader lifter plates, the back of glue spreader lifter plate is fixed with the slider, first frame curb plate inboard is fixed with the slide rail of vertical setting, slider on the glue spreader lifter plate with slide rail on the first frame curb plate is mutually supported and is realized sliding.
As a preferred implementation mode, the two sets of first tension roller lifting driving devices all include a first tension roller lifting cylinder, a first tension roller lifting cylinder mounting plate and a first tension roller lifting plate, the first tension roller lifting cylinder mounting plate is fixed on the glue roller lifting plate, the first tension roller lifting cylinder is vertically fixed downwards above the first tension roller lifting cylinder mounting plate, the first tension roller lifting plate is fixed on an output shaft of the first tension roller lifting cylinder, two ends of the first tension roller are respectively rotatably installed on the first tension roller lifting plate, so that the first tension roller lifting cylinder can drive the first tension roller to vertically lift, a longitudinally-arranged slide rail is fixed on the front surface of the glue roller lifting plate, a slide block is fixed on the back surface of the first tension roller lifting plate, and a slide rail on the front surface of the glue roller lifting plate and the slide block on the back surface of the first tension roller lifting plate are mutually matched to realize vertical lifting Now sliding.
As a preferred embodiment, a second tension roller and two sets of second tension roller moving driving devices are arranged between the first rack side plate and the second rack side plate, the second tension roller is located above the first glue homogenizing roller, the two sets of second tension roller moving driving devices are respectively fixed on the first rack side plate and the second rack side plate, and two ends of the second tension roller are respectively installed on the two sets of second tension roller moving driving devices.
As a preferred embodiment, the two sets of second tension roller moving driving devices each include a second tension roller moving cylinder, a second tension roller mounting base plate, and a second tension roller moving seat, the second tension roller moving cylinder is transversely mounted on the first rack side plate and the second rack side plate, the second tension roller moving seat is fixed on the output shaft of the second tension roller moving cylinder, two ends of the second tension roller are rotatably mounted on the two sets of second tension roller moving seats, the second tension roller mounting base plate is transversely fixed on the first rack side plate and the second rack side plate and located below the second tension roller moving seat, a sliding block is fixed on the bottom surface of the second tension roller moving seat, a sliding rail is fixed on the upper surface of the second tension roller mounting base plate, and the sliding block on the second tension roller moving seat and the sliding rail on the upper surface of the second tension roller mounting base plate are matched with each other to realize that the second tension roller is located on the second tension roller moving seat The second tension roller is arranged on the bottom plate to slide.
As a preferred embodiment, a second rubber-equalizing roller mounting post and two sets of second rubber-equalizing roller connecting plates are arranged between the first frame side plate and the second frame side plate, the second rubber-equalizing roller mounting post is located above the second tension roller, two ends of the second rubber-equalizing roller mounting post are respectively fixed on the first frame side plate and the second frame side plate, two ends of the second rubber-equalizing roller are respectively connected with the second rubber-equalizing roller through the two sets of second rubber-equalizing roller mounting post connecting plates in parallel, and the second rubber-equalizing roller is located between the second tension roller and the second rubber-equalizing roller mounting post.
As a preferred embodiment, a third tension roller is arranged between the first rack side plate and the second rack side plate, the third tension roller is located above the second glue homogenizing roller, and two ends of the third tension roller are rotatably mounted on the first rack side plate and the second rack side plate respectively.
As a preferred embodiment, a film guide roller is arranged between the first frame side plate and the second frame side plate, the film guide roller is located at the upper end between the first frame side plate and the second frame side plate, and two ends of the film guide roller are respectively rotatably mounted on the first frame side plate and the second frame side plate.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the utility model has the advantages of simple and compact structure, reasonable in design, easy operation, the accessible rubber coating device scribbles quantitative glue solution on the membrane material, then the membrane material contacts and rubs each other on it with the surface of the first equal rubber roll that also removes about constantly when rotatory again for glue solution on the membrane material is scribbled evenly, also realizes continuous rubber coating when realizing that the glue solution ration is scribbled, has both improved production efficiency and has also improved production quality, and the machine operation is reliable and stable.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural view of an even glue coating mechanism of a coater provided by an embodiment of the present invention;
fig. 2 is a schematic structural view of an even glue coating mechanism of a coater provided by an embodiment of the present invention;
fig. 3 is a schematic structural view of an eccentric mechanism of an even glue coating mechanism of a coater according to an embodiment of the present invention;
fig. 4 is a cross-sectional view of an even glue spreading mechanism of a coater provided by an embodiment of the present invention;
fig. 5 is a schematic structural view of a sliding mechanism at a glue roller lifting plate of the uniform glue coating mechanism of the coater provided by the embodiment of the present invention;
fig. 6 is a schematic structural view of a sliding mechanism at a second tension roller joint of the uniform glue coating mechanism of the coater provided by the embodiment of the present invention;
fig. 7 is a schematic structural diagram of a coupling of an even glue coating mechanism of a coater according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1, fig. 2, fig. 3, fig. 4 and fig. 7, an embodiment of the present invention provides an even glue coating mechanism of a coater, including a first frame side plate 10, a second frame side plate 7, a glue coating device, a first tension roller 26, a first tension roller lifting driving device, a first glue homogenizing roller 1, a first glue homogenizing roller rotating motor 4, an eccentric motor 13, a second tension roller 3, a second glue homogenizing roller 12, a second tension roller moving driving device, a third tension roller 9 and a film guiding roller 8, and each component of the present embodiment is described in detail below with reference to the accompanying drawings.
A gluing device and a first glue homogenizing roller 1 are arranged between a first frame side plate 10 and a second frame side plate 7, an eccentric motor 13 is arranged outside the first frame side plate 10, an eccentric wheel 24 is fixed on an output shaft of the eccentric motor 13, a first glue homogenizing roller rotating motor 4 is arranged outside the second frame side plate 7, one end of the first glue homogenizing roller 1 penetrates through the first frame side plate 10 and is provided with an eccentric wheel groove seat 14, the cross section of the eccentric wheel groove seat 14 is in an 'I' shape, the other end of the first glue homogenizing roller 1 penetrates through the second frame side plate 7 and is connected with an output shaft of the first glue homogenizing roller rotating motor 4 through a coupler 35, the other end of the first glue roller 1 is movably inserted in a central hole 36 of the coupler 35, the first glue roller rotating motor 4 can drive the first glue homogenizing roller 1 to rotate, the eccentric wheel groove seat 14 on one end of the first glue roller 1 is matched with the eccentric wheel 24 on the output shaft of the eccentric motor 13 to drive the first glue roller 1, make first rubber roll and also remove when constantly carrying out rotary motion, when membrane material 27 was through first rubber roll 1, first rubber roll 1 constantly removed and constantly rotated when constantly moving for the surface of membrane material 27 and the surface of first rubber roll 1 contact and the looks mutual friction, finally reach the effect of evenly paining the glue solution on the surface of membrane material 27 on its surface.
Preferably, in this embodiment, the glue spreading device includes a glue storage tank 25, a glue transfer roller 15, a glue spreading roller 16, two glue spreading roller lifting driving devices and a glue spreading roller rotating motor 2 fixed outside the second rack side plate 7, the two glue spreading roller lifting driving devices are respectively installed on the first rack side plate 10 and the second rack side plate 7, the glue storage tank 25 is fixed at the lower end part between the first rack side plate 10 and the second rack side plate 7, the glue transfer roller 15 is arranged in the glue storage tank 25, one end of the glue transfer roller 15 is rotatably installed on the first rack side plate 10, the other end of the glue transfer roller 15 penetrates through the second rack side plate 7 and is connected with an output shaft of the glue spreading roller rotating motor 2, so that the glue transfer roller rotating motor 2 drives the glue transfer roller 15 to rotate, the glue spreading roller 16 is located right above the glue transfer roller 15, two ends of the glue spreading roller 16 are respectively rotatably installed on the two glue spreading roller lifting driving devices, the surface of the glue spreading roller 16 is contacted with the surface of the glue moving roller 15, so that the glue moving roller 15 can drive the glue spreading roller 16 to rotate, and the surface of the film material 27 can be ensured to be attached with quantitative glue solution after passing through the glue spreading device through the arrangement of the glue spreading device.
Preferably, a first tension roller 26 and two sets of first tension roller lifting driving devices are arranged between the first rack side plate 10 and the second rack side plate 7, the two sets of first tension roller lifting driving devices are installed on the glue spreader lifting driving devices, two ends of the first tension roller 26 are respectively installed on the two sets of first tension roller lifting driving devices, and the first tension roller 26 is located above the glue spreader 16.
In this embodiment, two groups of glue spreader lifting driving devices can be respectively arranged to include a glue spreader lifting cylinder 21 and a glue spreader lifting plate 18, the glue spreader lifting cylinder 21 is respectively and longitudinally fixed at the inner side of the first frame side plate 10 and the inner side of the second frame side plate 7, and the output shafts are longitudinally arranged downwards, the glue spreader lifting plate 18 is respectively and fixedly arranged on the output shafts of the corresponding glue spreader lifting cylinders 21, so that the glue spreader lifting cylinder 21 drives the two groups of glue spreader lifting cylinders to move up and down, two groups of first tension roller lifting driving devices are respectively arranged on the two groups of glue spreader lifting plates 18, the back of the glue spreader lifting plate 18 is fixedly provided with a sliding block 29, the inner side of the first frame side plate 10 is fixedly provided with a longitudinally arranged sliding rail 30, the sliding block 29 on the glue spreader lifting plate 18 is mutually matched with the sliding rail 30 on, the arrangement of the sliding mechanism enables the gluing lifting plate 18 to keep stable operation during lifting (as shown in fig. 5).
Preferably, in this embodiment, two sets of first tension roller lifting driving devices may be respectively configured to include a first tension roller lifting cylinder 19, a first tension roller lifting cylinder mounting plate 23 and a first tension roller lifting plate 17, the first tension roller lifting cylinder mounting plate 23 is fixed on the glue roller lifting plate 18, the first tension roller lifting cylinder 19 is longitudinally and downwardly fixed above the first tension roller lifting cylinder mounting plate 23, the first tension roller lifting plate 17 is fixed on an output shaft of the first tension roller lifting cylinder 19, two ends of the first tension roller 26 are respectively rotatably mounted on the first tension roller lifting plate 17, so that the first tension roller lifting cylinder 19 can drive the first tension roller 26 to lift up and down, a longitudinally-arranged slide rail 32 is fixed on the front surface of the glue roller lifting plate 18, a slide block 31 is fixed on the back surface of the first tension roller lifting plate 17, the slide rail 32 on the front surface of the glue roller lifting plate 18 and the slide block 31 on the back surface of the first tension roller lifting plate 17 are mutually matched to realize sliding By such an arrangement, the first tension roller 26 can be lifted and lowered more smoothly and safely (as shown in fig. 5).
When the rubber roller device is specifically implemented, a second tension roller 3 and two groups of second tension roller moving driving devices are arranged between a first rack side plate 10 and a second rack side plate 7, the second tension roller 3 is located above a first rubber roller 1, the two groups of second tension roller moving driving devices are respectively fixed on the first rack side plate 10 and the second rack side plate 7, and two ends of the second tension roller 3 are respectively installed on the two groups of second tension roller moving driving devices.
In specific implementation, two sets of second tension roller moving driving devices can be respectively set to include a second tension roller moving cylinder 20, a second tension roller mounting base plate 28 and a second tension roller moving seat 22, the second tension roller moving cylinder 20 is respectively transversely mounted on the first rack side plate 10 and the second rack side plate 7, the second tension roller moving seat 22 is fixed on an output shaft of the second tension roller moving cylinder 20, two ends of the second tension roller 3 are respectively rotatably mounted on the two sets of second tension roller moving seats 22, the second tension roller mounting base plate 28 is respectively transversely fixed on the first rack side plate 10 and the second rack side plate 7 and is located below the second tension roller moving seat 22, a sliding block 34 is fixed on the bottom surface of the second tension roller moving seat 22, a sliding rail 33 is fixed on the upper surface of the second tension roller mounting base plate 28, the sliding block 34 on the second tension roller moving seat 22 and the sliding rail 33 on the upper surface of the second tension roller mounting base plate 28 are mutually matched to realize that the second tension roller 3 is on the second tension roller The tension roller mounting shoe 28 slides thereon (as shown in fig. 6).
When the rubber roller installing device is specifically implemented, a second rubber roller equalizing roller 12, a second rubber roller installing column 11 and two sets of second rubber roller connecting plates 5 are arranged between the first rack side plate 10 and the second rack side plate 7, the second rubber roller equalizing roller installing column 11 is located above the second tension roller 3, two ends of the second rubber roller equalizing roller installing column 11 are respectively fixed on the first rack side plate 10 and the second rack side plate 7, two ends of the second rubber roller equalizing roller 12 are respectively connected with the second rubber roller installing column 11 in parallel through the two sets of second rubber roller connecting plates 5, and the second rubber roller equalizing roller 12 is located between the second tension roller 3 and the second rubber roller installing column 11.
Preferably, a third tension roller 9 is arranged between the first rack side plate 10 and the second rack side plate 7, the third tension roller 9 is positioned above the second glue homogenizing roller 12, and two ends of the third tension roller 9 are rotatably mounted on the first rack side plate 10 and the second rack side plate 7 respectively.
During specific implementation, a film guide roller 8 is arranged between the first rack side plate 10 and the second rack side plate 7, the film guide roller 8 is located at the upper end part between the first rack side plate 10 and the second rack side plate 7, and two ends of the film guide roller 8 are rotatably mounted on the first rack side plate 10 and the second rack side plate 7 respectively.
As shown in fig. 4, in the specific implementation, the film material 27 firstly passes through the glue spreader 16, the glue solution transferred from the glue transfer roller 15 on the surface of the glue spreader 16 adheres to the surface of the film material 27, the film material 27 passes through the first tension roller 26, the first tension roller 26 compresses the film material 27, the film material 27 passes through the first tension roller 26 and then contacts with the surface of the first glue equalizing roller 1, because the first glue equalizing roller 1 continuously performs the rotation motion under the driving and transmission effects of the first glue equalizing roller rotating motor 4 and the eccentric motor 13 and simultaneously performs the left-right movement, the surface of the film material 27 and the surface of the first glue equalizing roller 1 rub against each other, so that the glue solution on the surface of the film material 27 is uniformly applied, after passing through the first glue equalizing roller, the film material 27 passes through the second tension roller 3 and is compressed by the same, and then passes through the second glue equalizing roller 12 and contacts with the surface thereof for rubbing, so that the glue solution is uniformly applied for the second time, the film material 27 then passes through the third tension roller 9, passes through the film guide roller 8 under the compression of the third tension roller 9, and is finally conveyed out, so that the film material with the surface glue solution uniformly coated is obtained.
It should be noted that, in another embodiment, the second tension roller, the second glue homogenizing roller, the third glue homogenizing roller, the film guiding roller and the driving device for driving them may not be provided, the film material may be directly conveyed out after passing through the gluing device, the first tension roller and the first glue homogenizing roller, the glue homogenizing operation is performed only once, and the film material may not be conveyed out after passing through the second tension roller, the second glue homogenizing roller, the third glue homogenizing roller and the film guiding roller.
To sum up, the utility model discloses simple structure, compactness, reasonable in design, easy operation, the glue solution that can the membrane material is paintd evenly, also realizes continuous rubber coating when realizing that the glue solution ration is paintd, has both improved production efficiency and has also improved production quality, and the machine operation is reliable and stable.
The above embodiments are preferred embodiments of the present invention, but the embodiments of the present invention are not limited to the above embodiments, and any other changes, modifications, substitutions, combinations, and simplifications which do not depart from the spirit and principle of the present invention should be equivalent replacement modes, and all are included in the scope of the present invention.

Claims (10)

1. The utility model provides an even rubber coating mechanism of coating machine which characterized in that: the glue spreading device comprises a first frame side plate and a second frame side plate, wherein a glue spreading device and a first glue spreading roller are arranged between the first frame side plate and the second frame side plate, an eccentric motor is arranged on the outer side of the first frame side plate, an eccentric wheel is fixed on an output shaft of the eccentric motor, a first glue spreading roller rotating motor is arranged on the outer side of the second frame side plate, one end of the first glue spreading roller penetrates through the first frame side plate and is provided with an eccentric wheel groove seat, the other end of the first glue spreading roller penetrates through the second frame side plate and is connected with an output shaft of the first glue spreading roller rotating motor through a coupler, the other end of the first glue spreading roller is movably inserted into a center hole of the coupler, the first glue spreading roller rotating motor can drive the first glue spreading roller to rotate, the eccentric wheel groove seat on one end of the first glue spreading roller is matched with the eccentric wheel on the output shaft of the eccentric motor to drive the, the first rubber equalizing roller is enabled to move left and right while continuously rotating.
2. The uniform glue spreading mechanism of a coater according to claim 1, wherein: the glue spreading device comprises a glue storage tank, two glue spreading rollers, two glue spreading roller lifting driving devices and a glue spreading roller rotating motor fixed on the outer side of the second frame side plate, wherein the two glue spreading roller lifting driving devices are respectively installed on the first frame side plate and the second frame side plate, the glue storage tank is fixed at the lower end part between the first frame side plate and the second frame side plate, the glue spreading rollers are arranged in the glue storage tank, one end of each glue spreading roller is rotatably installed on the first frame side plate, the other end of each glue spreading roller penetrates through the second frame side plate and is connected with an output shaft of the glue spreading roller rotating motor, the glue spreading rollers are driven by the glue spreading roller rotating motor to rotate, the glue spreading rollers are positioned right above the glue spreading rollers, two ends of the glue spreading rollers are respectively rotatably installed on the two glue spreading roller lifting driving devices, and the surfaces of the glue spreading rollers are in contact with the surfaces of the glue spreading, so that the glue moving roller can drive the glue spreading roller to rotate.
3. The uniform glue spreading mechanism of a coater according to claim 2, wherein: be equipped with first tension roller and two sets of first tension roller lift drive between first frame curb plate and the second frame curb plate, two sets of first tension roller lift drive install on the glue spreader lift drive, install respectively at the both ends of first tension roller on two sets of first tension roller lift drive, first tension roller is located the glue spreader top.
4. The uniform glue spreading mechanism of a coater according to claim 3, wherein: two sets of glue spreader lift drive arrangement all include glue spreader lift cylinder and glue spreader lifter plate, glue spreader lift cylinder vertically fixes respectively and vertically sets up inboard and the inboard output shaft of second frame curb plate in first frame curb plate, the glue spreader lifter plate is fixed respectively on the output shaft of corresponding glue spreader lift cylinder, makes glue spreader lift cylinder drives its oscilaltion, two sets of first tension roller lift drive arrangement install respectively on two sets of glue spreader lifter plates, the back of glue spreader lifter plate is fixed with the slider, first frame curb plate inboard is fixed with the slide rail of vertical setting, slider on the glue spreader lifter plate with slide rail on the first frame curb plate is mutually supported and is realized sliding.
5. The uniform glue spreading mechanism of a coater according to claim 4, wherein: the two groups of first tension roller lifting driving devices respectively comprise a first tension roller lifting cylinder, a first tension roller lifting cylinder mounting plate and a first tension roller lifting plate, the first tension roller lifting cylinder mounting plate is fixed on the glue spreader lifting plate, the first tension roller lifting cylinder is longitudinally and downwards fixed above the first tension roller lifting cylinder mounting plate, the first tension roller lifting plate is fixed on an output shaft of the first tension roller lifting cylinder, two ends of the first tension roller are respectively and rotatably arranged on the first tension roller lifting plate, so that the first tension roller lifting cylinder can drive the first tension roller to lift up and down, the front surface of the glue spreader lifting plate is fixedly provided with a longitudinally arranged slide rail, the back surface of the first tension roller lifting plate is fixedly provided with a slide block, the slide rail on the front surface of the glue spreader lifting plate is matched with the slide block on the back surface of the first tension roller lifting plate to realize sliding.
6. The uniform glue spreading mechanism of a coater according to claim 1, wherein: and a second tension roller and two sets of second tension roller moving driving devices are arranged between the first rack side plate and the second rack side plate, the second tension roller is positioned above the first rubber-covered roller, the two sets of second tension roller moving driving devices are respectively fixed on the first rack side plate and the second rack side plate, and two ends of the second tension roller are respectively installed on the two sets of second tension roller moving driving devices.
7. The uniform glue spreading mechanism of a coater according to claim 6, wherein: two sets of second tension roller remove drive arrangement and all include that second tension roller removes cylinder, second tension roller mounting plate and second tension roller and remove the seat, second tension roller removes the cylinder and transversely installs respectively on first frame curb plate and second frame curb plate, second tension roller removes the seat and fixes on the output shaft of second tension roller removes the cylinder, the both ends of second tension roller are rotatable the installation respectively on two sets of second tension roller remove the seat, second tension roller mounting plate transversely fixes respectively on first frame curb plate and second frame curb plate and is located second tension roller and removes the seat below, second tension roller removes the seat bottom surface and is fixed with the slider, second tension roller mounting plate upper surface is fixed with the slide rail, slider on second tension roller removes the seat with the slide rail of second tension roller mounting plate upper surface mutually supports and realizes second tension roller is in slide roller on second tension roller mounting plate .
8. The uniform glue spreading mechanism of a coater according to claim 7, wherein: the rubber roll installing device comprises a first rack side plate, a second rack side plate, a first rubber roll installing column, a second rubber roll installing column and two sets of second rubber roll connecting plates, wherein the first rubber roll installing column is arranged between the first rack side plate and the second rack side plate, the second rubber roll installing column is located above a second tension roll, two ends of the second rubber roll installing column are fixed on the first rack side plate and the second rack side plate respectively, two ends of the second rubber roll are connected with the second rubber roll installing column through the two sets of second rubber roll installing column connecting plates in parallel, and the second rubber roll is located between the second tension roll and the second rubber roll installing column.
9. The uniform glue spreading mechanism of a coater according to claim 8, wherein: and a third tension roller is arranged between the first rack side plate and the second rack side plate and is positioned above the second rubber-homogenizing roller, and two ends of the third tension roller are respectively rotatably arranged on the first rack side plate and the second rack side plate.
10. The uniform glue spreading mechanism of a coater according to claim 9, wherein: a film guide roller is arranged between the first rack side plate and the second rack side plate and is positioned at the upper end part between the first rack side plate and the second rack side plate, and two ends of the film guide roller are respectively rotatably arranged on the first rack side plate and the second rack side plate.
CN201920546878.3U 2019-04-19 2019-04-19 Even rubber coating mechanism of coating machine Active CN209918191U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920546878.3U CN209918191U (en) 2019-04-19 2019-04-19 Even rubber coating mechanism of coating machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920546878.3U CN209918191U (en) 2019-04-19 2019-04-19 Even rubber coating mechanism of coating machine

Publications (1)

Publication Number Publication Date
CN209918191U true CN209918191U (en) 2020-01-10

Family

ID=69074556

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920546878.3U Active CN209918191U (en) 2019-04-19 2019-04-19 Even rubber coating mechanism of coating machine

Country Status (1)

Country Link
CN (1) CN209918191U (en)

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