CN217414644U - Coating embossing film moisture remove device - Google Patents

Coating embossing film moisture remove device Download PDF

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Publication number
CN217414644U
CN217414644U CN202221430309.0U CN202221430309U CN217414644U CN 217414644 U CN217414644 U CN 217414644U CN 202221430309 U CN202221430309 U CN 202221430309U CN 217414644 U CN217414644 U CN 217414644U
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oven
roller
film
embossing
coating
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CN202221430309.0U
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Chinese (zh)
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袁武
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Hunan Youperth New Material Technology Co ltd
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Hunan Youperth New Material Technology Co ltd
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Abstract

The utility model provides a water removing device for a coating embossed film, which comprises an embossing machine and an oven arranged at the tail end of the embossing machine, wherein the embossing machine comprises an embossing roller, a wool roller and a water mist sprayer, the embossing roller is used for carrying out cooling and shaping after the embossing film is pressed, and the water mist sprayer is arranged on one side of the wool roller; the oven is positioned on one side of the water mist sprayer, and the embossing film which is wetted and cooled by the wool roller flows to the oven and passes through the drying cavity of the oven from top to bottom. The utility model provides a small-sized oven which is provided with a heating device and a circulating fan is additionally arranged at the tail end of an embossing machine, the temperature and the air quantity of the oven can be adjusted, hot air can be recycled, and water drops and water vapor on the surface of an embossing film can be effectively dried through the oven; after the oven is additionally arranged, the finished rolled film after being rolled down is not dropped on the position close to the tube core, the paper tube core is very dry, the quality of an embossed product is greatly improved, and potential safety hazards caused by the fact that the tube core is soaked by moisture are eliminated.

Description

Coating embossing film moisture remove device
Technical Field
The utility model relates to an embossing film production technical field especially relates to a coating embossing film moisture remove device.
Background
Along with the diversified needs of the release film market, the release film is subjected to embossing treatment, so that the appearance grade of the film can be improved, the defects of the film surface such as wrinkles and the like are eliminated, the contact surface between the film and asphalt is reduced due to the convex-concave lines, the release surface is easy to uncover, the chance of transferring a silicone oil surface to the asphalt surface can be reduced, the silicone oil consumption is reduced, and the release film is a release film variety with a development prospect. The existing industry is off-line embossing, namely, after a coating machine finishes silicon coating, the release film is rolled down and then rolled up to a special embossing machine, and embossing is carried out through devices such as heating devices and the like.
The prior art of embossing film requires that water mist is sprayed on a wool roller, and the film is cooled and shaped after the steel roller and the wool roller are attached through the water mist. However, in the winding process, residual water on the film causes the film surface moisture at two ends of the film to be extruded and accumulated due to the tension effect, the film surface moisture is deposited into a cluster, the appearance of the tube core is soaked, the product quality is influenced, and meanwhile, potential safety hazards exist.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that will solve is: aiming at the defects of the prior art, the device for removing the moisture of the coating embossing film is provided to remove the moisture generated by coating embossing, improve the quality of an embossed product and eliminate potential safety hazards caused by wetting a tube core by the moisture.
The utility model discloses a solve above-mentioned technical problem and adopt following technical scheme:
the utility model provides a coating emboss membrane moisture remove device, including embosser with set up in the terminal oven of embosser, wherein: the embossing machine comprises an embossing roller, a wool roller and a water mist sprayer, wherein the embossing roller is used for carrying out pressing attachment on an embossing film and then cooling and shaping, and the water mist sprayer is arranged on one side of the wool roller; the drying oven is positioned on one side of the water mist sprayer, and the embossed film after being wetted and cooled by the wool roller flows to the drying oven and penetrates through a drying cavity of the drying oven from top to bottom.
Further, on the coating emboss film moisture removing apparatus, the embosser further comprises a first guide roll and a second guide roll arranged in this order, wherein:
the first guide roller is arranged between the wool roller and the drying oven, and the second guide roller is positioned above the feeding hole in the top of the drying oven.
Further preferably, on the coating embossed film moisture removal device, the embosser further comprises a third guide roll, wherein:
the third guide roller is arranged below the discharge outlet at the bottom of the oven and is arranged corresponding to the second guide roller above the third guide roller.
Further, on the coating embossed film moisture removing device, a heating device and a circulating fan are further included, wherein:
the heating device is connected with the oven through the circulating fan through a pipeline so as to provide dry high-temperature air for the oven.
Further preferably, on the device for removing moisture in a coating embossed film, the circulating fan is connected with the two injection pipes at the lower end of the oven through an air inlet pipe and a three-way valve, and an air outlet at the upper end of the oven is connected with the heating device through an air outlet pipe.
Further, on the device for removing moisture by coating embossed film, the oven is composed of a first box and a second box, wherein:
the first box body and the second box body are identical in structure and are arranged in mirror symmetry.
Further preferably, on the device for removing moisture by coating an embossed film, the lower ends of the first box and the second box are respectively and transversely provided with an injection pipe, and the side wall of the injection pipe facing the embossed film is provided with a plurality of injection holes distributed along the length direction of the injection pipe at intervals.
More preferably, the coating embossed film moisture removal device is provided with first seal rollers at positions on the first box and the second box corresponding to the two sides of the feed port, and second seal rollers at positions on the lower end corresponding to the two sides of the discharge port, wherein the second seal rollers are located below the injection pipe.
Still further preferably, on the coating embossed film moisture removing device, a first guide plate assembly and a second guide plate assembly are arranged between the injection pipe and the first sealing roller at intervals from bottom to top, and each of the first guide plate assembly and the second guide plate assembly is composed of a plurality of guide plates which are arranged in a staggered manner from top to bottom.
Further preferably, on the device for removing moisture by coating an embossed film, the top of the first box body and/or the second box body is provided with an exhaust hole, and a sealing plug is arranged at the exhaust hole; and a transparent access window is arranged on the side wall of the first box body and/or the second box body.
The utility model adopts the above technical scheme, compare with prior art, have following technological effect:
the utility model provides a coating emboss membrane moisture remove device, through set up a small-size oven that sets up heating device and circulating fan at the embosser end, the temperature of this oven, amount of wind are adjustable, and hot-blast circulated utilization, can effectively weather the drop of water and steam on emboss membrane surface through the oven; after the oven is additionally arranged, the finished rolled film after being rolled down is not dropped on the position close to the tube core, the paper tube core is very dry, the quality of an embossed product is greatly improved, and potential safety hazards caused by the fact that the tube core is soaked by moisture are eliminated.
Drawings
FIG. 1 is a schematic view of the overall structure of a device for removing moisture from a coated embossed film according to the present invention;
FIG. 2 is a schematic view of the structure of the oven in the device for removing moisture in a coating embossed film according to the present invention;
FIG. 3 is a schematic view of a rear view of the oven of the device for removing moisture from a coating embossed film according to the present invention;
FIG. 4 is a schematic view of the structure of the oven in the device for removing moisture in a coating embossed film according to the present invention;
FIG. 5 is a schematic perspective view of a first housing of the device for removing moisture from a coated embossed film according to the present invention;
FIG. 6 is a left side view schematically illustrating the structure of the first case of the device for removing moisture from a coating embossed film according to the present invention;
FIG. 7 is a schematic cross-sectional view of a first case of the device for removing moisture from a coating embossed film according to the present invention;
wherein the reference symbols are:
1-embossing film, 2-embossing roller, 3-wool roller, 4-water mist sprayer, 5-first guide roller, 6-second guide roller, 7-oven, 8-third guide roller, 9-heating device, 10-circulating fan, 11-air inlet pipeline, 12-air outlet pipeline, 13-first box body, 14-second box body, 15-feed inlet, 16-discharge outlet, 17-injection pipe, 18-injection hole, 19-air outlet, 20-first sealing roller, 21-second sealing roller, 22-first flow guide assembly, 23-second flow guide assembly, 24-sealing plug and 25-transparent access window.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In some embodiments, as shown in fig. 1, in order to solve the problem that residual water on the film during the rolling process causes the film surface moisture at the two ends of the film to be squeezed and accumulated due to the tension effect, the film surface moisture is deposited into clusters, the outer surface of the tube core is wetted, the product quality is affected, and meanwhile, the potential safety hazard exists. The utility model provides a coating embossing film moisture remove device, including the embosser with set up in oven 7 at the embosser end, through set up a small-size oven 7 that sets up heating device 9 and circulating fan 10 at the embosser end, the temperature of this oven 7, amount of wind are adjustable, and hot-blast circulated utilization, can effectively weather the drop of water and the steam on embossing film surface through oven 7, have promoted the impressed watermark product.
Specifically, as shown in fig. 1, 2 and 3, the embosser includes an embossing roller 2 for cooling and setting after pressing an embossed film 1, a wool roller 3, and a water mist sprayer 4 provided at a side of the wool roller 3. The embossing roller 2 and the wool roller 3 are arranged oppositely and used for embossing the embossing film 1. The water mist sprayer 4 is positioned at one side of the wool roller 3 and used for spraying water mist to the wool roller, and the film is cooled and shaped after the steel roller and the wool roller are pressed and attached through the water mist. The water mist sprayer 4 is a conventional spraying device, such as an atomizing humidifier, and the specific structural principle thereof is the prior art, and will not be described herein.
Oven 7 sets up states the embosser end, is located one side of water smoke sprayer 4, the warp behind the moist cooling of wool roller 3 embossing film 1 passes through the guide roll circulation to oven 7 to top-down passes the stoving chamber of oven 7 arranges, can effectively weather the drop of water and the steam on embossing film 1 surface through oven 7, promotes impressed watermark product quality greatly, and has eliminated and has soaked the tube core because of moisture and bring the potential safety hazard.
In some of the embodiments, the embosser further includes a first guide roll 5 and a second guide roll 6 arranged in sequence, and the embossed film 1 after water spray cooling and setting is transferred to the oven 7 through the first guide roll 5 and the second guide roll 6. Wherein: the first guide roller 5 is arranged between the wool roller 3 and the drying oven 7, and the second guide roller 6 is positioned above a feeding hole 15 in the top of the drying oven 7. And the first guide roller 5 and the second guide roller 6 are located at the same level.
In addition, the embossing machine further comprises a third guide roller 8, and the embossed film 1 dried and dehydrated by the oven 7 is horizontally led out through the third guide roller 8. Wherein: the third guide roller 8 is arranged below a discharge outlet 16 at the bottom of the oven 7 and is arranged corresponding to the second guide roller 6 above.
In some of the embodiments, as shown in fig. 1, the coating embossed film moisture removing device further includes a heating device 9 and a circulation fan 10, wherein: the heating device 9 is connected with the oven 7 through a pipeline by the circulating fan 10 so as to provide dry high-temperature air for the oven 7. The air quantity introduced into the oven 7 is controlled by the circulating fan 10. The temperature of the high-temperature air is controlled by the heating device 7.
Specifically, as shown in fig. 1, 2 and 3, the circulation fan 10 is connected to two injection pipes 17 at the lower end of the oven 7 through a three-way valve via an air inlet pipe 11, and supplies dry high-temperature air to two sides of the embossed film 1, respectively, and the moving directions of the high-temperature air in the oven 7 and the embossed film 1 are opposite.
That is to say, the high-temperature air flows upwards from the bottom of the oven 7, and the embossing film 1 moves from top to bottom, so that the contact area between the high-temperature air and the two sides of the embossing film 1 is increased, and the drying efficiency is improved. An air outlet 19 at the upper end of the oven 7 is connected with the heating device 9 through an air outlet pipeline 12, and high-temperature air with certain moisture flowing to the top of the oven 7 is exhausted from the air outlet 19 and can be recycled or directly exhausted into the air. The hot air introduced into the oven 7 is circularly supplied by the fan 10 and the heating device 9, the stability of the temperature and the air quantity is kept, and the stability of drying treatment of the product after embossing is ensured.
As one of the preferred embodiments, as shown in fig. 2, 3 and 4, the oven 7 is constituted by a first tank 13 and a second tank 14, in which: the first box body 13 and the second box body 14 have the same structure and are arranged in a mirror symmetry mode. The connection parts of the upper ends of the first box body 13 and the second box body 14 are respectively provided with a side hole to form the feed port 15, and the connection parts of the lower ends of the first box body and the second box body are respectively provided with a side hole to form the discharge port 16. The embossed film 1 enters the oven 7 from the feeding hole 15 and is dried by high-temperature air and then is discharged from the discharging hole 16 at the bottom.
As shown in fig. 5, 6 and 7, the lower ends of the first box 13 and the second box 14 are respectively provided with a spray pipe 17 transversely, and one end of the spray pipe 17 extends to the outer sides of the first box 13 and the second box 14 and is connected to the air inlet duct 11 through a tee. The side wall of the injection pipe 17 facing the pair of embossed films 1 is provided with a plurality of injection holes 18 distributed along the length direction at intervals, and high-temperature air is injected on the surface of the embossed film 1 from the plurality of injection holes 18 and contacts with the embossed film 1 to take away moisture on the embossed film. The injection holes 18 may be square holes or circular holes, as required, and the opening direction of the injection holes 18 is inclined upward.
In addition, in order to ensure that the embossed film 1 can smoothly pass through the oven 7, first sealing rollers 20 are respectively arranged at the upper ends of the first box 13 and the second box 14 corresponding to the two sides of the feed port 15. And second sealing rollers 21 are respectively arranged at the positions of the lower ends of the first box body 13 and the second box body 14 corresponding to the two sides of the discharge port 16, and the second sealing rollers 21 are positioned at the lower positions of the injection pipes 17. The embossed film 1 fed through the feed opening 15 is fed into the oven 7 through the two first sealing rollers 20, dried by high-temperature air and then fed out of the discharge opening 16 between the two second sealing rollers 21 at the bottom. The first sealing roller 20 and the second sealing roller 21 both adopt cotton wool rollers, which can play a role in sealing the oven 7 and prevent high-temperature air in the oven 7 from leaking out of the feed inlet 15 at the top or the discharge outlet 16 at the bottom.
In addition, in order to improve the sufficient contact between the high-temperature air and the embossed film 1, a first guide assembly 22 and a second guide assembly 23 are arranged between the injection pipe 17 and the first sealing roller 20 at intervals from bottom to top, and the first guide assembly 22 and the second guide assembly 23 are respectively composed of a plurality of guide plates which are arranged in a vertically staggered manner. Through the structural design of first guide assembly 22 and second guide assembly 23, can make the high temperature air blow to embossing film 1 under the guide effect of guide plate for the volatilization of moisture on embossing film 1 improves drying efficiency.
As shown in fig. 2, 3, 5 and 6, an exhaust hole is formed at the top of the first box 13 and/or the second box 14, and a sealing plug 24 is disposed at the exhaust hole. After the embossed film 1 is dried, the sealing plug 24 is pulled out manually, and the high-temperature air in the oven 7 is discharged from the exhaust hole at the top.
Meanwhile, a transparent access window 25 can be further formed in the side wall of the first box body 13 and/or the second box body 14 as required, the transparent access window 25 can be of a door opening and closing structure and is hinged to the side wall of the first box body 13 and/or the second box body 14, drying processing conditions can be observed conveniently in real time, and the drying oven 7 can be maintained in an overhauling mode.
The points to be finally explained are: first, in the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounted," "connected," and "connected" should be understood broadly, and may be a mechanical connection or an electrical connection, or a communication between two elements, and may be a direct connection, and "upper," "lower," "left," and "right" are only used to indicate a relative positional relationship, and when the absolute position of the object to be described is changed, the relative positional relationship may be changed;
secondly, in the drawings of the disclosed embodiments of the present invention, only the structures related to the disclosed embodiments are referred to, and other structures can refer to common designs, and under the condition of no conflict, the same embodiment and different embodiments of the present invention can be combined with each other;
finally, the above description is only a preferred embodiment of the present invention and should not be taken as limiting the invention, and any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. A coating emboss film moisture removing apparatus comprising an embosser and an oven (7) provided at the end of the embosser, wherein: the embossing machine comprises an embossing roller (2) for carrying out pressing, cooling and shaping on an embossing film (1), a wool roller (3) and a water mist sprayer (4) arranged on one side of the wool roller (3); the drying oven (7) is located on one side of the water mist sprayer (4), and the embossed film (1) which is wetted and cooled by the wool roller (3) flows to the drying oven (7) and penetrates through a drying cavity of the drying oven (7) from top to bottom.
2. The coating emboss film moisture removing apparatus according to claim 1, wherein said embosser further comprises a first guide roll (5) and a second guide roll (6) arranged in sequence, wherein:
the first guide roller (5) is arranged between the wool roller (3) and the drying oven (7), and the second guide roller (6) is positioned above a feeding hole (15) in the top of the drying oven (7).
3. The coating emboss film moisture removing apparatus according to claim 2, wherein said embosser further comprises a third guide roll (8), wherein:
the third guide roller (8) is arranged at the position below a discharge outlet (16) at the bottom of the oven (7) and is arranged corresponding to the second guide roller (6) above.
4. The coating embossed film moisture removing device according to claim 1, further comprising a heating device (9) and a circulation fan (10), wherein:
the heating device (9) is connected with the oven (7) through the circulating fan (10) through a pipeline so as to provide dry high-temperature air for the oven (7).
5. The device for removing moisture of a coating embossed film according to claim 4, wherein the circulating fan (10) is connected to the two injection pipes (17) at the lower end of the oven (7) through a three-way valve by an air inlet pipe (11), and an air outlet (19) at the upper end of the oven (7) is connected to the heating device (9) by an air outlet pipe (12).
6. The embossed film-coated moisture removing apparatus according to claim 1, wherein the oven (7) is constituted by a first case (13) and a second case (14), wherein:
the first box body (13) and the second box body (14) are identical in structure and are arranged in a mirror symmetry mode.
7. The device for removing moisture by coating an embossed film according to claim 6, wherein the lower ends of the first case (13) and the second case (14) are respectively provided with an injection pipe (17) in the transverse direction, and the side wall of the injection pipe (17) facing the pair of embossed films (1) is provided with a plurality of injection holes (18) distributed along the length direction at intervals.
8. The device for removing moisture from a coating embossed film according to claim 7, wherein the first casing (13) and the second casing (14) are provided at upper ends thereof with first seal rollers (20) at positions corresponding to both sides of the feed opening (15), at lower ends thereof with second seal rollers (21) at positions corresponding to both sides of the discharge opening (16), and wherein the second seal rollers (21) are located at a position below the spray pipe (17).
9. The coating embossed film moisture removing device according to claim 8, wherein a first guide assembly (22) and a second guide assembly (23) are arranged between the injection pipe (17) and the first sealing roller (20) at intervals from bottom to top, and the first guide assembly (22) and the second guide assembly (23) are respectively composed of a plurality of guide plates which are arranged in a staggered manner from top to bottom.
10. The device for removing moisture by coating an embossed film according to claim 6, wherein a vent hole is formed at the top of the first case (13) and/or the second case (14), and a sealing plug (24) is arranged at the vent hole; and a transparent access window (25) is arranged on the side wall of the first box body (13) and/or the second box body (14).
CN202221430309.0U 2022-06-08 2022-06-08 Coating embossing film moisture remove device Active CN217414644U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221430309.0U CN217414644U (en) 2022-06-08 2022-06-08 Coating embossing film moisture remove device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221430309.0U CN217414644U (en) 2022-06-08 2022-06-08 Coating embossing film moisture remove device

Publications (1)

Publication Number Publication Date
CN217414644U true CN217414644U (en) 2022-09-13

Family

ID=83172039

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221430309.0U Active CN217414644U (en) 2022-06-08 2022-06-08 Coating embossing film moisture remove device

Country Status (1)

Country Link
CN (1) CN217414644U (en)

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