Composite board flattening device

By designing a composite plate flattening device and using side extrusion and flattening devices to automatically flatten the composite plate, the problem of low flattening efficiency in the existing technology is solved, efficient and stable plate surface flatness is achieved, and the stability of the composite plate is improved.

CN223407534UActive Publication Date: 2025-10-03SHUYANG COUNTY JINGYI WOOD IND CO LTD
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Patent Information

Application Number
CN202422797677.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-10-03
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

During the production process of existing composite panels, a flattening operation is required to ensure a smooth surface and improve overall stability in use, but the existing technology has low operating efficiency.

Method used

A composite plate flattening device is designed, which includes a flat plate, a lifting device, a side extrusion device and a flattening device. The edge of the composite plate is fixed by the side extrusion device, and the surface is extruded by the flattening device. Combined with the loading component, automatic loading and unloading operations are realized to improve the flattening efficiency.

Benefits of technology

It realizes efficient automatic flattening of composite panels, improves the stability and efficiency of the flattening operation, ensures the flatness of the panel surface, and enhances the overall use effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223407534U_ABST
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Abstract

The utility model discloses a composite plate flattening device which comprises a horizontally-arranged surface plate, a lifting device arranged on the surface plate, a side edge extrusion device arranged on the side edge of the surface plate, a flattening device arranged above the surface plate, a feeding plate arranged at one end of the surface plate, and a feeding assembly arranged above the surface plate. The lifting device comprises four air cylinders arranged on the surface plate, the four air cylinders are distributed on the surface plate, a lifting plate is horizontally arranged on the air cylinders, and the edges of the composite plate are flatly fixed by arranging the side edge extrusion device; after being fixed, the surface of the composite board is flattened and extruded through the flattening device to achieve flattening operation on the composite board, meanwhile, the feeding assembly is arranged to conduct feeding and discharging operation on the composite board on the surface board, automatic flattening operation on the composite board is achieved, and the operation efficiency is high.
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Description

Technical Field

[0001] The utility model belongs to the field of composite plate production equipment, in particular to a composite plate flattening device. Background Art

[0002] During the production process of composite boards, multiple layers of materials are pressed together. During the board production process, it is necessary to ensure that the surface of the multi-layer board is flat after pressing to avoid uneven surface of the board after production, which will affect subsequent use. Therefore, the composite board needs to be flattened to improve the stability of the overall structure of the composite board, thereby improving the overall use effect. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide a composite plate flattening device to solve the problem that the flattening operation is required in the existing composite plate production process and improve the overall stability of use.

[0004] In order to achieve the above-mentioned purpose, the utility model is realized through the following technical scheme: it includes a horizontally arranged plane plate, a lifting device is provided on the plane plate, a side extrusion device is provided on the side of the plane plate, a flattening device is provided above the plane plate, a feeding plate is provided at one end of the plane plate, a feeding assembly is provided above the plane plate, an auxiliary plate is provided on the plane plate at one side of the end of the feeding plate, the lifting device includes a cylinder provided on the plane plate, four cylinders are distributed on the plane plate, a lifting plate is horizontally provided on the cylinder, the side extrusion device includes a positioning plate vertically provided on the side of the plane plate, and the positioning plate is provided inside the positioning plate. A sliding rod is vertically arranged on the side, an L-shaped splint is horizontally arranged on the sliding rod, an upper splint is horizontally arranged on the inner side of the L-shaped splint, an electric telescopic rod is vertically symmetrically arranged on the upper splint, a connecting plate is connected between the electric telescopic rod and the positioning plate, and a slider is connected between the L-shaped splint and the sliding rod. The edge of the composite plate is flattened and fixed by arranging a side extrusion device, and then the surface of the composite plate is flattened by a flattening device after fixation to realize the flattening operation of the composite plate. At the same time, a loading component is set to perform loading and unloading operations on the composite plate on the flat plate, thereby realizing automatic flattening operation of the composite plate with high operating efficiency.

[0005] The preferred structure of this solution includes that the flattening device includes electric slide rails horizontally arranged on both sides of the flat plate, a movable plate is vertically arranged on the electric slide rails, a driving plate is horizontally connected between the top ends of the movable plates, a second electric telescopic rod is distributed at the bottom of the driving plate, a fixed plate is horizontally arranged at the bottom of the middle second electric telescopic rod, a contact block is distributed at the bottom of the fixed plate, rollers are provided at the bottom of the second electric telescopic rods on both sides of the fixed plate, and the rollers are arranged parallel to the driving plate. The movable plate is driven to move on the flat plate by the electric slide rails, and at the same time, the fixed plate is driven by the second electric telescopic rod to flatten the composite plate on the flat plate, and at the same time, the rollers are driven to roll and flatten the composite plate, thereby realizing the flattening operation of the composite plate surface.

[0006] The preferred structure of this solution also includes that the loading assembly includes a second movable plate arranged on the electric slide rail on one side of the movable plate, a second driving plate is horizontally connected between the upper ends, a third electric telescopic rod is vertically symmetrically arranged at the bottom of the second driving plate, and a vacuum suction cup is arranged at the bottom of the third electric telescopic rod. The second movable plate moves on the electric slide rail to drive the vacuum suction cup to move and at the same time drives the third electric telescopic rod to control the height of the vacuum suction cup to adsorb the composite plate, thereby controlling the loading and unloading of the composite plate.

[0007] As another preferred structure of this solution, a second electric slide rail is connected between the positioning plate and the plane plate. The second electric slide rail is arranged vertically between the horizontal direction and the bottom of the positioning plate. The positioning plate is controlled to move on the plane plate by the second electric slide rail.

[0008] As another preferred structure of this solution, a third electric slide rail is connected between the bottom of the positioning plate located on one side of the auxiliary material plate and the auxiliary material plate. The positioning plate located at the auxiliary material plate position is driven by the third electric slide rail to move on the auxiliary material plate, and the positioning plate is moved out of the flat plate position, so as to facilitate loading the composite plate from the loading plate to the flat plate.

[0009] As another preferred structure of this solution, feeding shafts are distributed on the feeding plate, and the feeding shafts are rotatably connected to the feeding plate. The feeding shafts are provided to facilitate the movement of the composite plate on the feeding plate.

[0010] The beneficial effect of the present invention is that a side extrusion device and a flattening device are provided to flatten the composite plate. During the flattening operation, the side extrusion device is used to fix and squeeze the side of the composite plate, which makes it easier for the flattening device to flatten the surface of the composite plate, thereby improving the stability of the flattening of the composite plate and improving the flattening effect of the composite plate. The specific implementation method is further described in the following embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0012] Figure 2 It is a structural diagram of the side extrusion device on the flat panel;

[0013] In the figure: 1 plane plate, 2 positioning plate, 3 electric slide rail, 4 mobile plate, 5 second mobile plate, 6 lifting plate, 7 drive plate, 8 second drive plate, 9 second electric telescopic rod, 10 fixed plate, 11 roller, 12 third electric telescopic rod, 13 vacuum suction cup, 14 auxiliary material plate, 15 third electric slide rail, 16 loading plate, 17 loading shaft, 18 cylinder, 19 second electric slide rail, 20 electric telescopic rod, 21 connecting plate, 22 slide rod, 23 upper clamping plate, 24 L-shaped clamping plate; DETAILED DESCRIPTION

[0014] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0015] See also Figure 1 and Figure 2, including a horizontally arranged plane plate, a lifting device is provided on the plane plate, a side extrusion device is provided on the side of the plane plate, a flattening device is provided above the plane plate, a loading plate is provided at one end of the plane plate, a loading assembly is provided above the plane plate, an auxiliary plate is provided on the plane plate at one side of the end of the loading plate, the lifting device includes a cylinder provided on the plane plate, four cylinders are distributed on the plane plate, a lifting plate is horizontally provided on the cylinder, and the side extrusion device includes a positioning plate vertically arranged on the side of the plane plate, a sliding rod is vertically provided on the inner side of the positioning plate, an L-shaped splint is horizontally provided on the sliding rod, an upper splint is horizontally provided on the inner side of the L-shaped splint, and an electric telescopic rod is vertically symmetrically provided on the upper splint, A connecting plate is provided between the position plates, a slider is provided between the L-shaped splint and the slide rod, and a side extrusion device is provided to flatten and fix the edge of the composite plate, and after fixation, the surface of the composite plate is flattened and squeezed by a flattening device to realize the flattening operation of the composite plate. At the same time, a loading component is provided to perform loading and unloading operations on the composite plate on the flat plate, so as to realize the automatic flattening operation of the composite plate, and the operation efficiency is high. The flattening device includes an electric slide rail horizontally arranged on both sides of the flat plate, a movable plate is vertically arranged on the electric slide rail, a driving plate is horizontally connected between the top ends of the movable plates, a second electric telescopic rod is distributed at the bottom of the driving plate, a fixed plate is horizontally arranged at the bottom of the middle second electric telescopic rod, and a fixed plate is distributed at the bottom of the fixed plate. There are contact blocks, rollers are provided at the bottom of the second electric telescopic rods on both sides of the fixed plate, and the rollers are arranged parallel to the driving plate. The movable plate is driven to move on the flat plate by the electric slide rail, and the fixed plate is driven by the second electric telescopic rod to flatten the composite plate on the flat plate, and the rollers are driven to roll and flatten the composite plate to achieve the flattening operation of the composite plate surface. The loading assembly includes a second movable plate arranged on the electric slide rail and located on one side of the movable plate, and a second driving plate is horizontally connected between the upper ends. A third electric telescopic rod is vertically symmetrically provided at the bottom of the second driving plate, and a vacuum suction cup is provided at the bottom of the third electric telescopic rod. The vacuum suction cup is driven to move by the second movable plate on the electric slide rail and the third electric telescopic rod is driven to move at the same time. The rod controls the height of the vacuum suction cup to adsorb the composite plate, controls the loading and unloading of the composite plate, and a second electric slide is connected between the positioning plate and the plane plate. The second electric slide is arranged horizontally and vertically between the bottom of the positioning plate. The positioning plate is controlled to move on the plane plate by the second electric slide. A third electric slide is connected between the bottom of the positioning plate on one side of the auxiliary plate and the auxiliary plate. The positioning plate located at the auxiliary plate position is driven to move on the auxiliary plate by the third electric slide, and the positioning plate is moved out of the plane plate position to facilitate loading the composite plate from the loading plate to the plane plate. Loading shafts are distributed on the loading plate, and a rotational connection is arranged between the loading shaft and the loading plate. The loading shaft is arranged to facilitate movement of the composite plate on the loading plate.

[0016] During the implementation process, the positioning plate located at the auxiliary material plate position is moved to the auxiliary material plate through the third slide rail to facilitate loading on the flat plate, and the composite plate is driven from the loading plate to the lifting plate through the loading shaft to realize the loading operation. After the loading is completed, the positioning plate is driven to reset, and the remaining three positioning plates are driven to move on the second slide rail. At the same time, the lifting plate is driven to rise to lift the composite plate, and the L-shaped splint is controlled to undertake the edge of the composite plate, and the electric telescopic rod is driven to drive the upper splint to clamp and press the upper edge of the composite plate. After clamping is completed, the movable plate is controlled to move on the electric slide rail and the second electric telescopic rod is driven at the same time. Drive the fixed plate and the rotating shaft to flatten the composite plate. After the flattening operation is completed, move the movable plate to the end of the loading plate on the electric slide rail, move the positioning plate located at the loading plate position to the auxiliary material plate, reset the other three positioning plates and the upper clamping plate, drive the second movable plate to adjust the position of the suction cup, drive the third electric telescopic rod to control the height of the vacuum suction cup, control the composite plate to move to the upper material plate after adsorbing the composite plate, and at the same time drive the loading shaft to rotate to receive the unloading of the composite plate, thereby realizing the flattening operation of the composite plate. Repeat the above operations to achieve the pressing and flattening of the composite plate, thereby improving the flattening effect of the composite plate.

Claims

1. A composite plate flattening device, comprising a horizontally arranged flat plate (1), a lifting device provided on the flat plate, a side extrusion device provided on the side of the flat plate, a flattening device provided above the flat plate, a loading plate (16) provided at one end of the flat plate, a loading assembly provided above the flat plate, an auxiliary plate (14) provided on the flat plate at one side of the end of the loading plate, the lifting device comprising a cylinder (18) provided on the flat plate, four cylinders distributed on the flat plate, and a lifting plate (6) provided horizontally on the cylinder.

2. The composite plate flattening device according to claim 1, characterized in that: The side extrusion device includes a positioning plate (2) vertically arranged on the side of the plane plate (1), a sliding rod (22) vertically arranged on the inner side of the positioning plate, an L-shaped clamping plate (24) horizontally arranged on the sliding rod, an upper clamping plate (23) horizontally arranged on the inner side of the L-shaped clamping plate, an electric telescopic rod (20) vertically and symmetrically arranged on the upper clamping plate, a connecting plate (21) connected between the electric telescopic rod and the positioning plate, and a slider connected between the L-shaped clamping plate and the sliding rod.

3. The composite plate flattening device according to claim 1, characterized in that: The flattening device comprises electric slide rails (3) arranged horizontally on both sides of a plane plate (1), a movable plate (4) arranged vertically on the electric slide rails, a drive plate (7) arranged horizontally between the top ends of the movable plates, a second electric telescopic rod (9) arranged at the bottom of the drive plate, a fixed plate (10) arranged horizontally at the bottom of the middle second electric telescopic rod, a contact block arranged at the bottom of the fixed plate, rollers (11) arranged at the bottom of the second electric telescopic rods on both sides of the fixed plate, and the rollers are arranged parallel to the drive plate.

4. The composite plate flattening device according to claim 1, characterized in that: The loading assembly comprises a second movable plate (5) arranged on the electric slide rail (3) and located on one side of the movable plate (4); a second drive plate (8) is horizontally connected between the upper ends of the second movable plate; a third electric telescopic rod (12) is vertically symmetrically arranged at the bottom of the second drive plate; and a vacuum suction cup (13) is arranged at the bottom of the third electric telescopic rod.

5. The composite plate flattening device according to claim 2, characterized in that: A second electric slide rail (19) is connected between the positioning plate (2) and the plane plate (1), and the second electric slide rail is arranged vertically between the horizontal direction and the bottom of the positioning plate.

6. The composite plate flattening device according to claim 1, characterized in that: A third electric slide rail (15) is connected between the bottom of the positioning plate (2) located on one side of the auxiliary material plate (14) and the auxiliary material plate.

7. The composite plate flattening device according to claim 1, characterized in that: A feeding shaft (17) is distributed on the feeding plate (16), and the feeding shaft is rotatably connected to the feeding plate.