CN216783948U - Full-automatic laminating device - Google Patents

Full-automatic laminating device Download PDF

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Publication number
CN216783948U
CN216783948U CN202123396685.0U CN202123396685U CN216783948U CN 216783948 U CN216783948 U CN 216783948U CN 202123396685 U CN202123396685 U CN 202123396685U CN 216783948 U CN216783948 U CN 216783948U
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plate
automatic
film
arc transition
guide box
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CN202123396685.0U
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Chinese (zh)
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金小星
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Jiangsu Kairui Intelligent Technology Co ltd
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Jiangsu Kairui Intelligent Technology Co ltd
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Abstract

The utility model relates to a full-automatic film laminating device, which comprises a multi-station film laminating mechanism, wherein the multi-station film laminating mechanism is connected with a driving piece and arranged on a ground rail, and is driven by the driving piece to move on the ground rail, so that stations of a first film laminating mechanism and a second film laminating mechanism are switched, the stations can be switched as required without shutdown, error classification is prevented, the later-stage manual error correction cost is saved, the practicability is high, and the productivity is improved; the top of direction box highly subtracts progressively from the side of entrance side to outlet side, and the top circular arc transition of first body has first division board, its bottom circular arc transition has first horizontal folded sheet, the top circular arc transition of second body has the second division board, its bottom circular arc transition has second horizontal folded sheet, roof through the slope struts automatic membrane, reduce the contact surface of direction box top and automatic membrane cloth, improve the effect of strutting of automatic membrane, improve the quality of automatic membrane, reduce the loss of automatic membrane, final reduce cost.

Description

Full-automatic laminating device
Technical Field
The utility model relates to the field of textile packaging structures, in particular to a full-automatic film laminating device.
Background
After the cheese is woven in the textile industry, the yarns are packaged by a packaging bag, a plurality of cheeses are filled in the packaging bag, and film covering treatment is performed outside the cheeses for packaging the quality of the cheeses.
The prior patent CN 202120661147.0 provides a cheese covering film device, which includes a covering film forming mechanism and a film sealing mechanism, where the covering film forming mechanism is a long strip-shaped channel, two ends of the long strip-shaped channel are respectively an inlet and an outlet, and a cheese enters the long strip-shaped channel from the inlet and passes through the outlet; the film sealing mechanism is arranged at an outlet of the film covering forming mechanism; the film sealing mechanism comprises a first air cylinder and a second air cylinder, the first air cylinder is positioned above the outlet, and the movable end of the first air cylinder is fixedly connected with a sealing cutter; the second cylinder is located below the outlet, and the movable end of the second cylinder is fixedly connected with a sealing plate. The automatic film covering and sealing device can realize full-automatic film covering and sealing of the cone yarn, can avoid damage to the cone yarn in the film covering process, simultaneously reduces labor force and improves production efficiency.
However, the above patents have the following problems: when two different automatic films are installed in one production line, the shunting belt of the patent is used for shunting, so that error classification is easily caused, packaging errors are caused, later-stage manual correction is needed, and manpower and material resources are wasted; when one of the film covering and forming mechanism or the film sealing mechanism is damaged or an automatic film needs to be replaced, the production line needs to be stopped and modified, so that the productivity is reduced, and the practicability is low; the outer surface of the film covering forming mechanism is provided with edges and corners, so that the automatic film is easy to damage, the quality of the automatic film is reduced, the loss of the automatic film is improved, and the cost is finally increased.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a full-automatic film laminating device, which solves the problems that in the prior art, a film covering and forming mechanism is easy to damage an automatic film, packaging errors are easy to generate when two different films are packaged simultaneously, and the practicability is low.
In order to solve the technical problems, the technical scheme of the utility model is as follows: the utility model provides a full-automatic tectorial membrane device which innovation point lies in: comprises that
A ground rail;
the multi-station film coating mechanism is connected with a driving piece and arranged on the ground rail and comprises a plurality of film coating mechanisms with the same structure, and the plurality of film coating mechanisms are driven by the driving piece to move on the ground rail so as to switch the stations of the film coating mechanisms;
the film laminating mechanisms comprise automatic films, guide boxes and heat sealing mechanisms;
the automatic film is horizontally arranged above the guide box vertically;
the guide box comprises a top plate and two side plates arranged below two sides of the top plate, namely a first side plate and a second side plate respectively, the top plate is an inverted V-shaped structural plate, the top plate is obliquely arranged, the first side plate comprises a first body, the first body is a first vertical plate, a first opening plate extending towards one side of the top plate is arranged at the top arc transition of the first body, the first side plate is connected to one side of the top plate through the first opening plate, a first horizontal folding plate extending towards the second side plate is arranged at the bottom arc transition of the first body, the second side plate comprises a second body, the second body is a second vertical plate, a second opening plate extending towards the other side of the top plate is arranged at the top arc transition of the second body, the second side plate is connected to the other side of the top plate through the second opening plate, and a second horizontal folding plate extending towards the first side plate is arranged at the bottom arc transition of the second body, the second horizontal folding plate is horizontally arranged below the first horizontal folding plate, a folding gap is reserved between the first horizontal folding plate and the second horizontal folding plate, an accommodating channel is formed among the top plate, the first side plate and the second side plate, the length direction of the accommodating channel is consistent with the length direction of the automatic membrane, one side of the accommodating channel is an inlet side, the other side of the accommodating channel is an outlet side, and the height of the top of the guide box decreases progressively from the inlet side to the outlet side;
the heat sealing mechanism comprises a heat cutting machine which is arranged at the outlet side of the guide box and used for sealing and cutting the film.
Further, the film covering mechanism also comprises a conveyor belt and a spreading cross bar;
the conveying belt passes through the accommodating channel and extends to a position close to the heat sealing mechanism, and is used for conveying the materials to a heat cutting machine;
a driving roller and a driven roller are respectively arranged below the two sides of the width of the automatic film, and the driven roller and the automatic film roll are driven by the driving roller to rotate for discharging;
the strutting cross rod is horizontally arranged between the automatic membrane and the guide box and is close to the guide box and used for strutting the automatic membrane.
Furthermore, a limiting plate is installed on both sides of the length of the automatic film, and is used for preventing the automatic film roll from generating leaping up.
Furthermore, an upper guide roller and a lower tension roller are horizontally arranged between the driving roller and the guide box and are used for guiding the proceeding direction of the automatic film and adjusting the tension.
Furthermore, the outer side of the multi-station film covering mechanism, which is located on the film covering mechanism, is also provided with a protective cover for protecting the two film covering mechanisms.
The utility model has the advantages that:
1) the multi-station film covering mechanism is connected with a driving piece and arranged on the ground rail, and the driving piece drives the film covering mechanism to move on the ground rail, so that stations of the film covering mechanism are switched, the station switching can be completed according to requirements without shutdown, the workload of film changing of workers is reduced, error classification is prevented, the later-stage manual error correction cost is saved, the practicability is high, and the productivity is improved; the height of the top of the guide box is gradually reduced in the direction from the inlet side to the outlet side, the top arc of the first body is transited to form a first opening plate, the bottom arc of the first body is transited to form a first horizontal folding plate, the top arc of the second body is transited to form a second opening plate, the bottom arc of the second body is transited to form a second horizontal folding plate, the inclined top plate is used for opening the automatic membrane, the contact surface between the top of the guide box and the automatic membrane cloth is reduced, the opening effect of the automatic membrane is improved, meanwhile, the automatic membrane can be prevented from being damaged due to the arc transition separation, the quality of the automatic membrane is improved, the loss of the automatic membrane is reduced, and the cost is finally reduced;
2) in the utility model, the strutting cross bar is horizontally arranged between the installation shaft and the guide box and close to the guide box and is used for strutting the automatic membrane in advance and improving the strutting effect;
3) the limiting plates are mounted on the two sides of the length of the mounting shaft and used for preventing the automatic film roll from bouncing and ensuring the stability of the automatic film;
4) an upper guide roller and a lower tension roller are horizontally arranged below the mounting shaft and used for guiding the proceeding direction of the automatic film and adjusting the tension so as to ensure the film covering effect.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a rear view of a fully automatic laminating apparatus according to the present invention.
FIG. 2 is a front view of the internal structure of a fully automatic laminating apparatus according to the present invention.
FIG. 3 is a side view of the internal structure of a fully automatic laminating apparatus according to the present invention.
FIG. 4 is a structural diagram of a laminating guiding box of the fully automatic laminating device of the present invention.
Fig. 5 is a three-dimensional structure diagram of a full-automatic laminating device according to the present invention.
Detailed Description
A full-automatic film covering device as shown in fig. 1 to 5, comprising a ground rail 1 and a multi-station film covering mechanism 2;
the multi-station laminating mechanism 2 is connected with a driving cylinder and arranged on the ground rail 1, comprises a plurality of laminating mechanisms with the same structure, namely a first laminating mechanism 21 and a second laminating mechanism 22 which are double stations, and is driven by the driving cylinder to move on the ground rail 1, so that the stations of the first laminating mechanism 21 and the second laminating mechanism 22 are switched.
The first film covering mechanism 21 and the second film covering mechanism 22 each include an automated film 211, a guide box 212, a heat sealing mechanism 213, a conveyor belt 214, and a spreader bar 215.
The automation film 211 is horizontally disposed vertically above the guide box 212.
Guide box 212 includes a top plate 2121 and two side plates, a first side plate 2122 and a second side plate 2123, disposed below and on either side of top plate 2121.
Top plate 2121 is an inverted V-shaped structural plate, and top plate 2121 is disposed obliquely.
The first side plate 2122 includes a first body, the first body is a first vertical plate, a first opening plate extending toward one side of the top plate 2121 is arranged in the top arc transition of the first body, the first side plate 2122 is connected to one side of the top plate 2121 through the first opening plate, and a first horizontal folding plate extending toward the second side plate 2123 is arranged in the bottom arc transition of the first body.
The second side plate 2123 includes a second body, the second body is a second vertical plate, a second expanding plate extending toward the other side of the top plate 2121 is in arc transition at the top of the second body, the second side plate 2123 is connected to the other side of the top plate 2121 through the second expanding plate, and a second horizontal folding plate extending toward the first side plate 2122 is in arc transition at the bottom of the second body.
The second horizontal folding plate is horizontally disposed below the first horizontal folding plate, and a folding gap is left between the first horizontal folding plate and the second horizontal folding plate, so that an accommodating channel is formed among the top plate 2121, the first side plate 2122, and the second side plate 2123, the length direction of the accommodating channel is consistent with the length direction of the automation film 211, one side of the accommodating channel is an inlet side, the other side of the accommodating channel is an outlet side, and the height of the top of the guide box 212 decreases from the inlet side to the outlet side.
The heat-seal mechanism 213 includes a heat cutter provided at the exit side of the guide box 212.
The hot cutting machine comprises an upper driving cylinder 2131, an upper sealing cutter 2132, a lower driving cylinder 2133 and a support 2134, wherein the upper sealing cutter 2132 and the support 2134 are arranged up and down, the upper sealing cutter 2132 is connected with the upper driving cylinder 2131, and the support 2134 is connected with the lower driving cylinder 2133, so that a gap for accommodating bobbin yarn to pass through is reserved between the upper sealing cutter 2132 and the support 2134.
The upper sealing cutter 2132 is driven by the upper driving cylinder 2131 to move downwards, the support 2134 is driven by the lower driving cylinder 2133 to move upwards, and the sealing and cutting of the automatic film are completed in a matching manner.
A conveyor belt 214 extends through the containment duct to adjacent the heat sealing mechanism 213 for conveying the material to the heat cutter.
A driving roller 216 and a driven roller 217 are respectively arranged below two sides of the width of the automatic film 211, and the driven roller 217 and the automatic film 211 are driven by the driving roller 216 to rotate and discharge.
The expanding cross bar 215 is horizontally arranged between the automated film 211 and the guide box 212 near the guide box 212 and is used for expanding the automated film 211.
A limiting plate 3 is installed on both sides of the length of the automated film 211 for preventing the roll of the automated film 211 from bouncing.
An upper guide roller 218 and a lower tension roller 219 are further horizontally installed between the drive roller 216 and the guide box 212 to guide and adjust the tension of the automation film 211 in the proceeding direction.
And a protective cover 4 is also arranged on the outer side of the film covering mechanism on the multi-station film covering mechanism 2 and used for protecting the two film covering mechanisms.
The working principle of this patent:
according to actual demand, when the automatic film on the first or second laminating mechanism needs to be replaced or the variety is changed, the multi-station laminating mechanism 2 is driven to move on the ground rail 1 through the driving cylinder, so that the stations of the first laminating mechanism 21 and the second laminating mechanism 22 are switched, the continuous production of the whole process is met, and the processing efficiency is ensured.
It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (4)

1. The utility model provides a full-automatic tectorial membrane device which characterized in that: comprises that
A ground rail;
the multi-station film covering mechanism is connected with a driving piece and arranged on the ground rail and comprises a plurality of film covering mechanisms with the same structure, and the film covering mechanisms are driven by the driving piece to move on the ground rail so as to switch the stations of each film covering mechanism;
the film laminating mechanisms comprise automatic films, guide boxes and heat sealing mechanisms;
the automatic film is horizontally arranged above the guide box vertically;
the guide box comprises a top plate and two side plates arranged below two sides of the top plate, namely a first side plate and a second side plate respectively, the top plate is an inverted V-shaped structural plate, the top plate is obliquely arranged, the first side plate comprises a first body, the first body is a first vertical plate, a first opening plate extending towards one side of the top plate is arranged at the top arc transition of the first body, the first side plate is connected to one side of the top plate through the first opening plate, a first horizontal folding plate extending towards the second side plate is arranged at the bottom arc transition of the first body, the second side plate comprises a second body, the second body is a second vertical plate, a second opening plate extending towards the other side of the top plate is arranged at the top arc transition of the second body, the second side plate is connected to the other side of the top plate through the second opening plate, and a second horizontal folding plate extending towards the first side plate is arranged at the bottom arc transition of the second body, the second horizontal folding plate is horizontally arranged below the first horizontal folding plate, a folding gap is reserved between the first horizontal folding plate and the second horizontal folding plate, an accommodating channel is formed among the top plate, the first side plate and the second side plate, the length direction of the accommodating channel is consistent with the length direction of the automatic membrane, one side of the accommodating channel is an inlet side, the other side of the accommodating channel is an outlet side, and the height of the top of the guide box decreases progressively from the inlet side to the outlet side;
the heat sealing mechanism comprises a heat cutting machine which is arranged at the outlet side of the guide box and used for sealing and cutting the film.
2. The full-automatic laminating device according to claim 1, wherein: the film covering mechanism also comprises a conveyor belt and a spreading cross bar;
the conveying belt passes through the accommodating channel and extends to a position close to the heat sealing mechanism, and is used for conveying the materials to a heat cutting machine;
a driving roller and a driven roller are respectively arranged below the two sides of the width of the automatic film, and the driven roller and the automatic film roll are driven by the driving roller to rotate for discharging;
the strutting cross rod is horizontally arranged between the automatic membrane and the guide box and is close to the guide box and used for strutting the automatic membrane.
3. The full-automatic laminating device according to claim 2, wherein: a limiting plate is installed on both sides of the length of the automatic film and used for preventing the automatic film roll from bouncing.
4. The full-automatic laminating device according to claim 2, wherein: an upper guide roller and a lower tension roller are horizontally arranged between the driving roller and the guide box and used for guiding the proceeding direction of the automatic film and adjusting the tension.
CN202123396685.0U 2021-12-31 2021-12-31 Full-automatic laminating device Active CN216783948U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123396685.0U CN216783948U (en) 2021-12-31 2021-12-31 Full-automatic laminating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123396685.0U CN216783948U (en) 2021-12-31 2021-12-31 Full-automatic laminating device

Publications (1)

Publication Number Publication Date
CN216783948U true CN216783948U (en) 2022-06-21

Family

ID=82011348

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123396685.0U Active CN216783948U (en) 2021-12-31 2021-12-31 Full-automatic laminating device

Country Status (1)

Country Link
CN (1) CN216783948U (en)

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