Pressing device for aluminum honeycomb panel processing

By adjusting the clamping device between the upper and lower conveyor rollers, the problem that existing devices can only hot-press aluminum honeycomb panels of the same height has been solved, enabling hot pressing of aluminum honeycomb panels of different heights and reducing equipment costs.

CN224130498UActive Publication Date: 2026-04-17HUIZHOU HUASHUO NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU HUASHUO NEW MATERIAL CO LTD
Filing Date
2025-03-19
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing pressing devices can only hot-press aluminum honeycomb panels of the same height and size, and cannot adapt to aluminum honeycomb panels of different heights and sizes, resulting in the need for multiple devices and increasing equipment costs.

Method used

By setting a movable plate and connecting block in the pressing device, the distance between the upper and lower conveying rollers can be adjusted to achieve hot pressing of aluminum honeycomb panels of different heights, thereby reducing equipment costs.

Benefits of technology

It enables hot pressing of aluminum honeycomb panels of different heights and dimensions, reducing the types of equipment and costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum honeycomb panel processing, in particular to a pressing device for aluminum honeycomb panel processing, which comprises a mounting plate, a lower pressing die, a pressing mechanism, a pushing mechanism, two supporting plates, a driving mechanism, a lower conveying roller, a moving plate, a connecting block and an upper conveying roller. The two supporting plates are symmetrically arranged on the front side and the rear side of the mounting plate, a plurality of lower conveying rollers are evenly arranged between the two supporting plates, the lower pressing mold is provided with a sliding groove, the moving plate is slidably arranged in the sliding groove, the connecting block is arranged on the side, close to the supporting plates, of the moving plate, and a plurality of upper conveying rollers are evenly arranged in the connecting block. And the upper conveying roller is driven to move up and down above the lower conveying roller, so that aluminum honeycomb panels with different heights and sizes can be pressed between the upper conveying roller and the lower conveying roller, and the equipment cost required by hot pressing of the aluminum honeycomb panels is further reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of aluminum honeycomb panel processing technology, and specifically relates to a pressing device for aluminum honeycomb panel processing. Background Technology

[0002] Aluminum honeycomb panels are widely used in civil buildings, vehicle and ship decoration, and other fields due to their advantages of high-quality materials, advanced technology, and reasonable structure. During the processing of aluminum honeycomb panels, a pressing device is usually used to hot press the aluminum honeycomb panels. However, when the hot pressing head leaves the aluminum honeycomb panel during hot pressing, the upper aluminum alloy plate of the aluminum honeycomb panel will experience a slight rebound, resulting in insufficient adhesion of the aluminum honeycomb panel. If hot pressing is carried out for a long time, and the hot pressing head is removed after the adhesive cools down, a large amount of hot pressing time is required, resulting in low processing efficiency.

[0003] The prior art CN222351109U discloses a pressing device for processing aluminum honeycomb panels. After hot pressing the aluminum honeycomb panel with an upper and lower die, the pressed aluminum honeycomb panel is pushed into a conveyor belt. While the aluminum honeycomb panel is being conveyed by two upper and lower conveyor rollers with a fixed height, the aluminum honeycomb core and the aluminum alloy plate are pressed for a period of time. A fan is used to accelerate the curing time of the adhesive, thereby reducing the springback phenomenon of the aluminum honeycomb panel after pressing.

[0004] However, the aforementioned pressing device can only hot-press aluminum honeycomb panels of the same height and size, and cannot hot-press aluminum honeycomb panels of different height and size. This results in different pressing devices being used for hot-pressing aluminum honeycomb panels of different height and size, thereby increasing the equipment cost required for hot-pressing aluminum honeycomb panels. Utility Model Content

[0005] The purpose of this utility model is to provide a pressing device for processing aluminum honeycomb panels, which aims to solve the technical problem that existing pressing devices can only hot press aluminum honeycomb panels of the same height and size, and cannot hot press aluminum honeycomb panels of different height and size, which requires different pressing devices to hot press aluminum honeycomb panels of different height and size, thereby increasing the equipment cost required for hot pressing aluminum honeycomb panels.

[0006] To achieve the above-mentioned technical objectives, the technical solution adopted by this utility model is as follows:

[0007] This utility model provides a pressing device for processing aluminum honeycomb panels, including a mounting plate, a lower pressing die, a pressing mechanism, a pushing mechanism, a support plate, a driving mechanism, a lower conveying roller, a moving plate, a connecting block, and an upper conveying roller. The lower pressing die is disposed on the mounting plate, and the pressing mechanism and the pushing mechanism are both located on the mounting plate. There are two support plates, symmetrically arranged on the front and rear sides of the mounting plate. A plurality of lower conveying rollers are evenly arranged between the two support plates. The driving mechanism is located outside one of the support plates. The lower pressing die has a sliding groove, and the moving plate is slidably disposed in the sliding groove. The connecting block is disposed on the side of the moving plate near the support plate. A plurality of upper conveying rollers are evenly arranged in the connecting block, and the number of upper conveying rollers is the same as the number of lower conveying rollers, and their positions correspond one-to-one.

[0008] The pressing mechanism includes a support frame, a Z-axis moving part, and an upper pressing mold. The support frame is disposed on the mounting plate and located outside the lower pressing mold. The Z-axis moving part is disposed inside the support frame. The upper pressing mold is connected to the output end of the Z-axis moving part and located inside the lower pressing mold.

[0009] The pushing mechanism includes an X-axis moving part and a pushing plate. The mounting plate has a pushing port and a discharging port. The X-axis moving part is disposed on the mounting plate. The pushing plate is connected to the output end of the X-axis moving part. The pushing plate is slidably disposed in the pushing port to push the aluminum honeycomb panel out from the discharging port.

[0010] The driving mechanism includes a driving unit, a first gear, and a second gear. The driving unit is disposed outside one of the support plates. A plurality of first gears are evenly disposed outside the output shaft of the driving unit. Each first gear is meshed with a second gear, and each second gear is disposed on the side of the corresponding lower conveyor roller close to the first gear.

[0011] The pressing device for processing aluminum honeycomb panels further includes a fixed plate and telescopic rods. The fixed plate is disposed on the side of the lower pressing mold near the connecting block, and a plurality of telescopic rods are evenly disposed between the fixed plate and the connecting block.

[0012] This utility model discloses a pressing device for processing aluminum honeycomb panels. A lower pressing die is mounted on a mounting plate. Both the pressing mechanism and the pushing mechanism are located on the mounting plate. Two support plates are symmetrically arranged on the front and rear sides of the mounting plate. A plurality of lower conveying rollers are evenly distributed between the two support plates. A driving mechanism is located outside one of the support plates. The lower pressing die has a groove. A moving plate is slidably disposed within the groove. A connecting block is disposed on the side of the moving plate near the support plate. A plurality of upper conveying rollers are evenly distributed within the connecting block, with the number of upper conveying rollers matching the number of lower conveying rollers and their positions corresponding one-to-one. The moving plate slides up and down within the groove, carrying... The connecting block moves up and down outside the lower die, thereby driving the upper conveying roller to move up and down above the lower conveying roller. This allows adjustment of the distance between the upper and lower conveying rollers. By adjusting the distance between the upper and lower conveying rollers, aluminum honeycomb panels of different heights can be pressed between the upper and lower conveying rollers, thus reducing the equipment cost required for hot pressing aluminum honeycomb panels. This solves the technical problem that existing pressing devices can only hot press aluminum honeycomb panels of the same height, and cannot hot press aluminum honeycomb panels of different heights, which requires different pressing devices for hot pressing aluminum honeycomb panels of different heights, thereby increasing the equipment cost required for hot pressing aluminum honeycomb panels. Attached Figure Description

[0013] This utility model can be further illustrated by the non-limiting embodiments given in the accompanying drawings.

[0014] Figure 1 This is a schematic diagram of the overall structure of the pressing device for processing aluminum honeycomb panels according to the first embodiment of this utility model.

[0015] Figure 2 This is the first embodiment of the pressing device for processing aluminum honeycomb panels according to the present invention. Figure 1 Enlarged view of point A.

[0016] Figure 3 This is a schematic diagram showing the connection between the X-direction moving part and the pusher plate of the pressing device for processing aluminum honeycomb panels according to the first embodiment of this utility model.

[0017] Figure 4 This is a cross-sectional schematic diagram along the pusher plate of the pressing device for processing aluminum honeycomb panels according to the first embodiment of this utility model.

[0018] In the diagram: 101-Mounting plate, 102-Lower pressing mold, 103-Support plate, 104-Lower conveyor roller, 105-Moving plate, 106-Connecting block, 107-Upper conveyor roller, 108-Fixing plate, 109-Telescopic rod, 110-Support frame, 111-Z-direction moving part, 112-Upper pressing mold, 113-X-direction moving part, 114-Push plate, 115-Drive part, 116-First gear, 117-Second gear, 118-Slide groove, 119-Hydraulic telescopic rod, 120-Push port, 121-Discharge port. Detailed Implementation

[0019] To enable those skilled in the art to better understand this utility model, the technical solution of this utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0020] First Embodiment

[0021] Please see Figures 1-4 , Figure 1 This is a schematic diagram of the overall structure of the pressing device for processing aluminum honeycomb panels according to the first embodiment of this utility model. Figure 2 This is the first embodiment of the pressing device for processing aluminum honeycomb panels according to the present invention. Figure 2 Enlarged view of point A, Figure 3 This is a schematic diagram showing the connection between the X-direction moving part 113 and the pusher plate 114 of the pressing device for processing aluminum honeycomb panels according to the first embodiment of this utility model. Figure 4 This is a cross-sectional schematic diagram along the pusher plate 114 of the pressing device for processing aluminum honeycomb panels according to the first embodiment of this utility model.

[0022] This utility model provides a pressing device for processing aluminum honeycomb panels, including a mounting plate 101, a lower pressing mold 102, a pressing mechanism, a pushing mechanism, a support plate 103, a driving mechanism, a lower conveying roller 104, a moving plate 105, a connecting block 106, an upper conveying roller 107, a fixed plate 108, and a telescopic rod 109. The pressing mechanism includes a support frame 110, a Z-axis moving part 111, and an upper pressing mold 112. The pushing mechanism includes an X-axis moving part 113 and a pushing plate 114. The driving mechanism includes a driving part 115, a first gear 116, and a second gear 117. This solution solves the problem that the aforementioned pressing device can only hot-press aluminum honeycomb panels of the same height, and cannot hot-press aluminum honeycomb panels of different heights. This results in different pressing devices being needed for hot-pressing aluminum honeycomb panels of different heights, thus increasing the equipment cost required for hot-pressing aluminum honeycomb panels. It is understood that the aforementioned solution can be used in scenarios involving hot-pressing aluminum honeycomb panels.

[0023] In this embodiment, the moving plate 105 slides up and down within the slide groove 118, causing the connecting block 106 to move up and down outside the lower pressing mold 102. This, in turn, causes the upper conveying roller 107 to move up and down above the lower conveying roller 104, thereby adjusting the distance between the upper conveying roller 107 and the lower conveying roller 104. By adjusting the distance between the upper conveying roller 107 and the lower conveying roller 104, aluminum honeycomb panels of different heights can be pressed between the upper conveying roller 107 and the lower conveying roller 104. This reduces the equipment cost required for hot pressing aluminum honeycomb panels and solves the technical problem that existing pressing devices can only hot press aluminum honeycomb panels of the same height, and cannot hot press aluminum honeycomb panels of different heights, resulting in the need to use different pressing devices for hot pressing aluminum honeycomb panels of different heights, thus increasing the equipment cost required for hot pressing aluminum honeycomb panels.

[0024] The lower pressing mold 102 is mounted on the mounting plate 101. Both the pressing mechanism and the pushing mechanism are located on the mounting plate 101. Two support plates 103 are symmetrically arranged on the front and rear sides of the mounting plate 101. A plurality of lower conveying rollers 104 are evenly distributed between the two support plates 103. The driving mechanism is located outside one of the support plates 103. The lower pressing mold 102 has a groove 118. A moving plate 105 is slidably disposed within the groove 118. A connecting block 106 is disposed on the side of the moving plate 105 near the support plate 103. A plurality of upper conveying rollers 107 are evenly distributed within the connecting block 106, and the number of upper conveying rollers 107 is the same as the number of lower conveying rollers 104. The positions are one-to-one. The sliding plate 105 in the slide groove 118 is driven by the hydraulic telescopic rod 119. The lower pressing mold 102 has a hollow structure inside. The sliding plate 105 can slide up and down in the slide groove 118, driving the connecting block 106 to move up and down outside the lower pressing mold 102. This can drive the upper conveying roller 107 to move up and down above the lower conveying roller 104, thereby adjusting the distance between the upper conveying roller 107 and the lower conveying roller 104. The upper conveying roller 107 is rotatably disposed in the connecting block 106, and the lower conveying roller 104 is rotatably disposed between the two support plates 103, so that the aluminum honeycomb panel between the lower conveying roller 104 and the upper conveying roller 107 can be gradually conveyed out.

[0025] Secondly, the support frame 110 is disposed on the mounting plate 101 and located outside the lower pressing mold 102. The Z-axis moving part 111 is disposed inside the support frame 110. The upper pressing mold 112 is connected to the output end of the Z-axis moving part 111 and is located inside the lower pressing mold 102. The output end of the Z-axis moving part 111 is connected to the upper pressing mold 112 and drives the upper pressing mold 112 to move up and down inside the support frame 110.

[0026] Furthermore, the mounting plate 101 has a push port 120 and a discharge port 121. The X-axis moving part 113 is disposed on the mounting plate 101. The push plate 114 is connected to the output end of the X-axis moving part 113. The push plate 114 is slidably disposed in the push port 120 to push the aluminum honeycomb panel out from the discharge port 121. The output end of the X-axis moving part 113 is connected to the push plate 114 and drives the push plate 114 to push the aluminum honeycomb panel pressed in the lower die 102 out from the discharge port 121 and onto the lower conveyor roller 104.

[0027] In addition, the drive unit 115 is disposed outside one of the support plates 103. A plurality of first gears 116 are evenly disposed outside the output shaft of the drive unit 115. Each first gear 116 is meshed with a second gear 117, and each second gear 117 is disposed on the side of the corresponding lower conveyor roller 104 near the first gear 116. Both the first gear 116 and the second gear 117 are bevel gears, and the first gear 116 and the second gear 117 are arranged perpendicularly. When the drive unit 115 is started, the output shaft of the drive unit 115 will rotate along the axis of the output shaft of the drive unit 115, driving the first gear 116 to rotate outside the output shaft of the drive unit 115 along the axis of the output shaft of the drive unit 115, thereby driving the second gear 117 to rotate along its own axis, which in turn drives the lower conveyor roller 104 to rotate between the two support plates 103 along its own axis, gradually conveying the aluminum honeycomb panel between the lower conveyor roller 104 and the upper conveyor roller 107.

[0028] Finally, the fixing plate 108 is disposed on the side of the lower pressing mold 102 near the connecting block 106. A plurality of telescopic rods 109 are evenly disposed between the fixing plate 108 and the connecting block 106. When the connecting block 106 moves up and down outside the lower pressing mold 102, the telescopic rods 109 will extend and retract. By setting the telescopic rods 109, the connecting block 106 can be supported.

[0029] When using this utility model, the adhesive-coated aluminum alloy plate, the aluminum honeycomb core, and the aluminum alloy plate are placed sequentially in the lower pressing mold 102. The Z-axis moving part 111 is activated, so that the power output from the output end of the Z-axis moving part 111 drives the upper pressing mold 112 to move up and down in the support frame 110, thereby allowing the upper pressing mold 112 to extend into the lower pressing mold 102 to hot press the aluminum honeycomb panel in the lower pressing mold 102.

[0030] After the aluminum honeycomb panel is hot-pressed, the hydraulic telescopic rod 119 is activated, so that the power output from the output end of the hydraulic telescopic rod 119 drives the moving plate 105 to move up and down in the slide groove 118, which in turn drives the connecting block 106 to move up and down outside the lower pressing mold 102. This drives the upper conveying roller 107 to move up and down above the lower conveying roller 104, thereby adjusting the distance between the upper conveying roller 107 and the lower conveying roller 104.

[0031] When the distance between the upper conveyor roller 107 and the lower conveyor roller 104 is adjusted to be equivalent to the thickness of the aluminum honeycomb panel, the X-axis moving part 113 is activated. The power output from the output end of the X-axis moving part 113 drives the pusher plate 114 to push the aluminum honeycomb panel pressed in the lower die 102 out of the outlet 121 and finally onto the lower conveyor roller 104. At this time, the drive part 115 is activated, and the output shaft of the drive part 115 rotates along the axis of the output shaft. The first gear 116 is driven to rotate outside the output shaft of the drive unit 115 along the axis of the output shaft of the drive unit 115, thereby driving the second gear 117 to rotate along its own axis. This, in turn, drives the lower conveyor roller 104 to rotate between the two support plates 103 along its own axis, gradually conveying the aluminum honeycomb panel between the lower conveyor roller 104 and the upper conveyor roller 107. While conveying, the aluminum honeycomb panel is pressed for a period of time to reduce the springback phenomenon of the aluminum honeycomb panel after hot pressing.

[0032] By adjusting the distance between the upper conveyor roller 107 and the lower conveyor roller 104, aluminum honeycomb panels of different heights can be pressed between the upper conveyor roller 107 and the lower conveyor roller 104, thereby reducing the equipment cost required for hot pressing of aluminum honeycomb panels. This solves the technical problem that existing pressing devices can only hot press aluminum honeycomb panels of the same height, and cannot hot press aluminum honeycomb panels of different heights, which requires different pressing devices for hot pressing aluminum honeycomb panels of different heights, thus increasing the equipment cost required for hot pressing of aluminum honeycomb panels.

[0033] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.

Claims

1. A clamping device for processing aluminum honeycomb panels, comprising a mounting plate, characterized in that: It also includes a lower pressing die, a pressing mechanism, a pushing mechanism, a support plate, a driving mechanism, a lower conveying roller, a moving plate, a connecting block, and an upper conveying roller. The lower pressing die is mounted on the mounting plate. The pressing mechanism and the pushing mechanism are both located on the mounting plate. There are two support plates, symmetrically arranged on the front and rear sides of the mounting plate. Several lower conveying rollers are evenly arranged between the two support plates. The driving mechanism is located outside one of the support plates. The lower pressing die has a groove. The moving plate is slidably disposed in the groove. The connecting block is disposed on the side of the moving plate near the support plate. Several upper conveying rollers are evenly arranged in the connecting block, and the number of upper conveying rollers is the same as the number of lower conveying rollers, and their positions correspond one-to-one.

2. The pressing device for processing aluminum honeycomb panels as described in claim 1, characterized in that: The pressing mechanism includes a support frame, a Z-axis moving part, and an upper pressing mold. The support frame is disposed on the mounting plate and located outside the lower pressing mold. The Z-axis moving part is disposed inside the support frame. The upper pressing mold is connected to the output end of the Z-axis moving part and located inside the lower pressing mold.

3. The pressing device for processing aluminum honeycomb panels as described in claim 1, characterized in that: The pushing mechanism includes an X-axis moving part and a pushing plate. The mounting plate has a pushing port and a discharging port. The X-axis moving part is disposed on the mounting plate. The pushing plate is connected to the output end of the X-axis moving part. The pushing plate is slidably disposed in the pushing port to push the aluminum honeycomb panel out from the discharging port.

4. The pressing device for processing aluminum honeycomb panels as described in claim 1, characterized in that: The driving mechanism includes a driving unit, a first gear, and a second gear. The driving unit is disposed outside one of the support plates. A plurality of first gears are evenly disposed outside the output shaft of the driving unit. Each first gear is meshed with a second gear, and each second gear is disposed on the side of the corresponding lower conveyor roller close to the first gear.

5. The pressing device for processing aluminum honeycomb panels as described in claim 1, characterized in that: The pressing device for processing aluminum honeycomb panels also includes a fixed plate and telescopic rods. The fixed plate is disposed on the side of the lower pressing mold near the connecting block, and a plurality of telescopic rods are evenly disposed between the fixed plate and the connecting block.

Citation Information

Patent Citations

  • Pressing device for processing aluminum honeycomb panel

    CN222351109U