CN219192677U - Steel band tectorial membrane structure and steel band production line - Google Patents
Steel band tectorial membrane structure and steel band production line Download PDFInfo
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- CN219192677U CN219192677U CN202223550426.3U CN202223550426U CN219192677U CN 219192677 U CN219192677 U CN 219192677U CN 202223550426 U CN202223550426 U CN 202223550426U CN 219192677 U CN219192677 U CN 219192677U
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- assembly
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- film
- unreeling
- clamping
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Abstract
The utility model discloses a steel belt film covering structure and a steel belt production line, wherein the steel belt film covering structure comprises a bracket, an unreeling assembly, a clamping assembly and a swinging assembly; the unreeling component is used for placing the film roll and releasing the film on the film roll, the rotating axis of the unreeling component extends along the left-right direction, the unreeling component is arranged on the bracket, the unreeling component and the bracket can rotate relatively, and the rotating axis of the unreeling component extends along the left-right direction; the clamping assembly is arranged below the unreeling assembly, is fixed on the bracket and is used for clamping the film released by the unreeling assembly; the swing assembly is arranged on the support, and the movable part of the swing assembly is arranged between the unreeling assembly and the clamping assembly. In addition, the steel belt processing line comprises a frame, a steel belt conveying line arranged on the frame and the steel belt film coating structure.
Description
Technical Field
The utility model relates to the field of steel strip processing, in particular to a steel strip film coating structure and a steel strip production line.
Background
In the production process of the steel belt, the surface of the steel belt is required to be coated so as to ensure that the surface quality of the steel belt is good after the steel belt is wound into a steel coil. Currently, if a thin film is required to be coated on a steel belt in the conveying process of the steel belt, the machine is stopped firstly, and then the thin film is manually coated on the steel belt. The efficiency of work is influenced by it, if not shut down, directly manual the film on the steel band, and it has the risk of operation.
Disclosure of Invention
The utility model aims to solve the technical problems that: at least one technical problem set forth above is solved.
The utility model solves the technical problems as follows:
a steel belt film covering structure comprises a bracket, an unreeling component, a clamping component and a swinging component; the unreeling assembly is used for placing the film roll and releasing the film on the film roll, the rotating axis of the unreeling assembly extends along the left-right direction, the unreeling assembly is arranged on the support, the unreeling assembly and the support can rotate relatively, and the rotating axis of the unreeling assembly extends along the left-right direction; the clamping assembly is arranged below the unreeling assembly and is fixed on the bracket, and the clamping assembly is used for clamping the film released by the unreeling assembly; the swing assembly is arranged on the support, the movable part of the swing assembly is arranged between the unreeling assembly and the clamping assembly, and the movable part of the swing assembly is used for propping against the film between the clamping assembly and the unreeling assembly, so that the film is driven to a steel belt to be coated by the movable part of the swing assembly.
As a further improvement of the technical scheme, the clamping assembly comprises a first air cylinder, a first pressing plate and a second pressing plate, wherein the fixing part of the first air cylinder is fixed on the support, the first pressing plate is fixed on the support, the second pressing plate is fixed on the movable part of the first air cylinder, a clamping space is arranged between the first pressing plate and the second pressing plate, the clamping space is used for clamping a film released by the unreeling assembly, and the first air cylinder drives the second pressing plate to reciprocate along the front and rear directions so as to adjust the width of the clamping space.
As a further improvement of the technical scheme, the clamping assembly further comprises a guide rod, the guide rod is fixed on the first pressing plate, the guide rod extends along the front-back direction, a guide hole is formed in the second pressing plate, the guide rod is inserted into the guide hole, and the guide rod and the guide hole can slide relatively.
As a further improvement of the technical scheme, two guide rods are arranged, two guide holes are arranged, and the guide holes are in sliding fit connection with the guide rods in a one-to-one correspondence manner.
As a further improvement of the technical scheme, the unreeling assembly comprises two groups of bearing groups, each group of bearing groups comprises at least three first bearings, the two groups of bearing groups are respectively arranged on the support in a mirror image mode at left and right intervals, all the first bearings in each group of bearing groups are arranged on an arc with an upward opening, and each group of bearing groups is used for supporting a reeling core of a film reel.
As a further improvement of the technical scheme, the swing assembly comprises a swing arm, a swing roller and a swing cylinder, wherein the swing cylinder is arranged on the support, the swing cylinder drives the swing arm to swing, the swing roller is arranged on the swing arm, the swing axis of the swing cylinder extends along the left-right direction, the axis of the swing roller extends along the left-right direction, and the swing roller is used for abutting against the film and driving the film to move onto the film-covered steel belt.
As a further improvement of the technical scheme, two swing arms are arranged, the swing rollers are arranged between the two swing arms, and two ends of each swing roller are respectively connected with the two swing arms in a relatively rotatable manner.
The utility model also provides a steel belt production line, which comprises a frame and a steel belt conveying line arranged on the frame, and is characterized by further comprising the steel belt film coating structure in any technical scheme, wherein the bracket is fixed on the frame, and the unreeling assembly is arranged above the steel belt conveying line.
The beneficial effects of the utility model are as follows: the unreeling component is used for storing the film roll, the film on the film roll is used, the film released from the unreeling component moves downwards to the clamping component, the film roll is clamped by the clamping component, the swinging component swings downwards, and the film on the film roll is coated on the steel belt, so that mechanized film coating is realized, and the operation risk of manual film coating is avoided.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the drawings that are required to be used in the description of the embodiments will be briefly described below. It is evident that the drawings described are only some embodiments of the utility model, but not all embodiments, and that other designs and drawings can be obtained from these drawings by a person skilled in the art without inventive effort.
FIG. 1 is a front view of a steel strip coating structure of the present utility model;
fig. 2 is a left side view of the steel strip coating structure of the present utility model.
In the accompanying drawings: 1-bracket, 21-first bearing, 31-first cylinder, 32-first clamp plate, 33-second clamp plate, 34-guide bar, 41-swing arm, 42-swing roller, 43-swing cylinder.
Detailed Description
The conception, specific structure, and technical effects produced by the present utility model will be clearly and completely described below with reference to the embodiments and the drawings to fully understand the objects, features, and effects of the present utility model. It is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and that other embodiments obtained by those skilled in the art without inventive effort are within the scope of the present utility model based on the embodiments of the present utility model. In addition, all coupling/connection relationships mentioned herein do not refer to direct connection of the components, but rather, refer to the fact that a more optimal coupling structure may be formed by adding or subtracting coupling aids depending on the particular implementation. The technical features in the utility model can be interactively combined on the premise of no contradiction and conflict.
Referring to fig. 1 to 2, a steel strip film covering structure comprises a bracket 1, an unreeling assembly, a clamping assembly and a swinging assembly; the unreeling component is used for placing the film roll and releasing the film on the film roll, the rotating axis of the unreeling component extends along the left-right direction, the unreeling component is arranged on the bracket 1, the unreeling component and the bracket 1 can rotate relatively, and the rotating axis of the unreeling component extends along the left-right direction; the clamping assembly is arranged below the unreeling assembly and is fixed on the bracket 1 and used for clamping the film released by the unreeling assembly; the swing assembly is arranged on the support 1, the movable part of the swing assembly is arranged between the unreeling assembly and the clamping assembly, and the movable part of the swing assembly is used for propping against the film between the clamping assembly and the unreeling assembly, so that the film is driven to a steel belt to be coated by the movable part of the swing assembly.
According to the film winding machine, the film winding assembly is used for storing the film winding, films on the film winding are used, the films released from the film winding assembly move downwards to the clamping assembly, the film winding is clamped through the clamping assembly, the swinging assembly swings downwards, the films on the film winding are coated on the steel belt, mechanical film coating is achieved, and operation risks of manual film coating are avoided.
In some embodiments, the clamping assembly includes a first cylinder 31, a first pressing plate 32 and a second pressing plate 33, the fixed portion of the first cylinder 31 is fixed on the bracket 1, the first pressing plate 32 is fixed on the bracket 1, the second pressing plate 33 is fixed on the movable portion of the first cylinder 31, a clamping space is provided between the first pressing plate 32 and the second pressing plate 33, the clamping space is used for clamping a film released by the unreeling assembly, and the first cylinder 31 drives the second pressing plate 33 to reciprocate along the front-back direction so as to adjust the width of the clamping space. The structure is simple and convenient to set, and the thin film can be clamped through the structure.
In actual use, clamping subassembly sets up two, and two clamp assemblies set up in the both sides of frame respectively, and two clamp assemblies set up in swing assembly's both sides respectively promptly, carry out the clamping through two clamp assemblies to the both sides of film, play the effect of dodging swing assembly simultaneously, swing assembly is used for pressing the middle part of film to the steel band on.
In some embodiments, the clamping assembly further includes a guide rod 34, the guide rod 34 is fixed on the first pressing plate 32, the guide rod 34 extends along the front-back direction, the second pressing plate 33 is provided with a guide hole, the guide rod 34 is inserted into the guide hole, and the guide rod 34 and the guide hole can slide relatively. By the arrangement of the guide rod 34 and the guide hole, the relative movement of the first pressing plate 32 and the second pressing plate 33 is more stable.
In some embodiments, two guide rods 34 are provided, two guide holes are provided, and the guide holes and the guide rods 34 are in one-to-one sliding fit connection. The structure is simple and convenient to set, and through the arrangement of the structure, the relative movement between the first pressing plate 32 and the second pressing plate 33 is more stable.
In some embodiments, the unreeling assembly comprises two bearing groups, each bearing group comprises at least three first bearings 21, the two bearing groups are respectively arranged on the support 1 in a mirror image manner at left and right intervals, all the first bearings 21 in each bearing group are arranged on the same arc with an upward opening, and each bearing group is used for supporting the reeling core of the film roll. The plurality of first bearings 21 support the core of the film roll, and when a user withdraws the middle film of the film roll, the core and the first bearings 21 rotate relatively so that the film roll releases the film.
In some embodiments, the swing assembly includes a swing arm 41, a swing roller 42 and a swing cylinder 43, the swing cylinder 43 is disposed on the support 1, the swing cylinder 43 drives the swing arm 41 to swing, the swing roller 42 is disposed on the swing arm 41, a swing axis of the swing cylinder 43 extends in a left-right direction, an axis of the swing roller 42 extends in the left-right direction, and the swing roller 42 is used for abutting the film and driving the film to move onto a steel strip covered with the film. The structure is simple and convenient to set, and through the arrangement of the structure, the swing roller 42 presses the film and drives the film to move onto the steel belt, so that film coating is realized.
In some embodiments, two swing arms 41 are provided, the swing roller 42 is disposed between the two swing arms 41, and two ends of the swing roller 42 are respectively rotatably connected to the two swing arms 41. The structure is stable and the setting is convenient.
The utility model also provides a steel belt production line, which comprises a frame, a steel belt conveying line arranged on the frame, and the steel belt laminating structure in any technical scheme, wherein the bracket 1 is fixed on the frame, and the unreeling assembly is arranged above the steel belt conveying line. Since the above has been described in relation to a steel strip coating structure, those skilled in the art will appreciate that the description of the steel strip coating structure is not repeated here.
While the preferred embodiments of the present utility model have been illustrated and described, the present utility model is not limited to the embodiments, and various equivalent modifications and substitutions can be made by one skilled in the art without departing from the spirit of the present utility model, and these are intended to be included in the scope of the present utility model as defined in the appended claims.
Claims (8)
1. The steel belt tectorial membrane structure comprises a bracket (1), and is characterized by further comprising:
the unreeling assembly is used for placing the film roll and releasing the film on the film roll, the rotating axis of the unreeling assembly extends in the left-right direction, the unreeling assembly is arranged on the support (1), the unreeling assembly and the support (1) can rotate relatively, and the rotating axis of the unreeling assembly extends in the left-right direction;
the clamping assembly is arranged below the unreeling assembly and is fixed on the bracket (1) and used for clamping the film released by the unreeling assembly;
the swing assembly is arranged on the support (1), the movable part of the swing assembly is arranged between the unreeling assembly and the clamping assembly, and the movable part of the swing assembly is used for propping against a film between the clamping assembly and the unreeling assembly, so that the film is driven to a steel belt to be coated by the movable part of the swing assembly.
2. The steel strip laminating structure according to claim 1, wherein the clamping assembly comprises a first air cylinder (31), a first pressing plate (32) and a second pressing plate (33), a fixing portion of the first air cylinder (31) is fixed on the support (1), the first pressing plate (32) is fixed on the support (1), the second pressing plate (33) is fixed on a movable portion of the first air cylinder (31), a clamping space is arranged between the first pressing plate (32) and the second pressing plate (33), the clamping space is used for clamping a film released by the unreeling assembly, and the first air cylinder (31) drives the second pressing plate (33) to reciprocate along the front-back direction so as to adjust the width of the clamping space.
3. The steel strip laminating structure according to claim 2, wherein the clamping assembly further comprises a guide rod (34), the guide rod (34) is fixed on the first pressing plate (32), the guide rod (34) extends along the front-back direction, the second pressing plate (33) is provided with a guide hole, the guide rod (34) is inserted into the guide hole, and the guide rod (34) and the guide hole can slide relatively.
4. A steel strip coating structure according to claim 3, wherein two guide rods (34) are provided, two guide holes are provided, and the guide holes and the guide rods (34) are in one-to-one corresponding sliding fit connection.
5. The steel strip laminating structure according to claim 1, wherein the unreeling assembly comprises two groups of bearing groups, each group of bearing groups comprises at least three first bearings (21), the two groups of bearing groups are respectively arranged on the support (1) in a mirror image mode at left and right intervals, all the first bearings (21) in each group of bearing groups are arranged on the same arc with an upward opening, and each group of bearing groups is used for supporting a reeling core of the film reel.
6. The steel strip film coating structure according to claim 1, wherein the swing assembly comprises a swing arm (41), a swing roller (42) and a swing cylinder (43), the swing cylinder (43) is arranged on the support (1), the swing cylinder (43) drives the swing arm (41) to swing, the swing roller (42) is arranged on the swing arm (41), a swing axis of the swing cylinder (43) extends in a left-right direction, an axis of the swing roller (42) extends in the left-right direction, and the swing roller (42) is used for abutting against a film and driving the film to move onto the steel strip of the film coating.
7. The steel strip coating structure according to claim 6, wherein two swing arms (41) are provided, the swing roller (42) is provided between the two swing arms (41), and two ends of the swing roller (42) are respectively rotatably connected with the two swing arms (41).
8. The steel belt production line comprises a frame and a steel belt conveying line arranged on the frame, and is characterized by further comprising the steel belt laminating structure according to claim 1, wherein the bracket (1) is fixed on the frame, and the unreeling assembly is arranged above the steel belt conveying line.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223550426.3U CN219192677U (en) | 2022-12-27 | 2022-12-27 | Steel band tectorial membrane structure and steel band production line |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223550426.3U CN219192677U (en) | 2022-12-27 | 2022-12-27 | Steel band tectorial membrane structure and steel band production line |
Publications (1)
Publication Number | Publication Date |
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CN219192677U true CN219192677U (en) | 2023-06-16 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202223550426.3U Active CN219192677U (en) | 2022-12-27 | 2022-12-27 | Steel band tectorial membrane structure and steel band production line |
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CN (1) | CN219192677U (en) |
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2022
- 2022-12-27 CN CN202223550426.3U patent/CN219192677U/en active Active
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