High-pressure-resistance composite aluminum veneer

By introducing the support structure of high-strength aluminum alloy and carbon steel materials into the composite aluminum veneer and the interlayer design of separation, the problem of compressive resistance and fire-proof layer replacement of composite aluminum veneer is solved, and a higher service life and convenience are achieved.

CN223226929UActive Publication Date: 2025-08-15JILIN YUHUANQIU ALUMINUM CO LTD
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Patent Information

Application Number
CN202422567096.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-08-15
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

The existing composite aluminum veneer has shortcomings in compressive resistance and convenience of use, which is easy to deform and the fire-proof layer is cumbersome to replace, which affects service life and efficiency.

Method used

The supporting structure of vertical frames and transverse frames composed of high-strength aluminum alloy and carbon steel materials is used to separate the fire-proof, heat-insulating and sound-silencing interlayers to simplify the replacement process of fire-proof layer.

Benefits of technology

It improves the compressive resistance and service life of composite aluminum veneer, while simplifying the replacement process of fireproof layer and improving the convenience of use.

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Abstract

The utility model relates to the technical field of composite aluminum veneers, in particular to a high-pressure-resistance composite aluminum veneer which comprises a composite aluminum veneer body, side plates and a bottom plate, the two side plates are fixedly installed on the two sides of the outer wall of the composite aluminum veneer body, a high-pressure-resistance supporting structure is arranged in the composite aluminum veneer body, and the bottom plate is fixedly installed on the side plates. A fireproof interlayer separation structure is arranged on the inner side of the composite aluminum veneer body. According to the high-pressure-resistance composite aluminum veneer, the vertical frames are made of high-strength aluminum alloy materials, the reinforcing ribs are made of carbon steel materials vertically penetrating through the interiors of the vertical frames, and the reinforcing ribs can provide firm supporting force for the upper ends and the lower ends of the vertical frames; the shape of the composite aluminum veneer body supported upwards by the vertical frames is not easy to change, the connectivity among the vertical frames can be enhanced by the transverse frames, an integral supporting structure is formed among the vertical frames, the anti-pressure capability can be greatly improved, and the service life of the high-pressure-resistance composite aluminum veneer is prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of composite aluminum veneer panels, in particular to a high-compression-resistant composite aluminum veneer panel. Background Art

[0002] Aluminum veneer refers to a building decoration material that is processed through chromization and other treatments and then fluorocarbon spraying technology. In actual use, aluminum veneer is often combined with other materials to form a composite aluminum veneer.

[0003] For example, the authorization announcement number "CN219451333U" is named as a composite aluminum veneer, which adopts a loading structure. The corresponding interlayer material can be added to the inside according to actual use needs, so that the aluminum veneer can achieve a variety of composite use effects. However, the existing composite aluminum veneer adopts an internal multi-layer structure that can be tightly attached to facilitate subsequent replacement and maintenance. However, the frame-type pressure pad is embedded in the inside of the composite aluminum veneer, and the internal cavity area of the aluminum veneer is large. The overall aluminum veneer needs to rely on the relatively weak frames around it for support when resisting pressure. Therefore, the composite aluminum veneer structure has weak compression and deformation resistance. When subjected to external force, the composite aluminum veneer is prone to deformation and bending, which seriously affects the service life of the composite aluminum veneer.

[0004] At the same time, the existing composite aluminum veneer adopts the method of arranging the fireproof layer, the sound-absorbing interlayer and the heat-insulating interlayer in parallel inside the aluminum veneer. Since the fireproof layer closest to the outside is more seriously damaged and aged, the outermost fireproof layer is replaced more frequently, while the aging degree of the sound-absorbing interlayer and the heat-insulating interlayer on the rear side is far less than that of the fireproof layer. However, when replacing the fireproof layer of the existing composite aluminum veneer, it is always necessary to first remove the sound-absorbing interlayer and the heat-insulating interlayer that do not need to be replaced, and then replace the innermost fireproof layer. Not only is the operation step cumbersome, but it is also extremely wasteful of staff labor, which reduces the convenience of use of the existing composite aluminum veneer. Utility Model Content

[0005] The utility model aims to solve the problems of reduced service life and inconvenience in use of composite aluminum veneers, and proposes a high-compression-resistant composite aluminum veneer.

[0006] To achieve the above purpose, the present invention provides the following technical solutions:

[0007] A high-compression-resistant composite aluminum veneer is designed, comprising a composite aluminum veneer body, side panels and a bottom panel, wherein the two side panels are fixedly mounted on both sides of the outer wall of the composite aluminum veneer body, the bottom panel is fixedly mounted on the bottom end of the composite aluminum veneer body, a high-compression-resistant support structure is provided inside the composite aluminum veneer body, and a fireproof interlayer separation structure is provided on the inner side of the composite aluminum veneer body.

[0008] Preferably, the high compressive resistance support structure includes an inner core and a transverse frame, the inner core is fixedly installed inside the composite aluminum single plate body, a plurality of vertical frames are fixedly installed on the inner side of the inner core, a plurality of reinforcing ribs are fixedly installed on the inner sides of the vertical frames, a plurality of anti-deformation blocks are fixedly connected to the outer walls of the reinforcing ribs, and the transverse frame is fixedly installed inside the inner core.

[0009] Preferably, the ends of the transverse frames are fixedly connected to the side walls of the plurality of vertical frames, and the plurality of vertical frames are arranged parallel to and equidistant from each other.

[0010] Preferably, a plurality of through holes are fixedly opened on the inner side of the inner core, and a support frame is fixedly installed on the inner side of the plurality of through holes.

[0011] Preferably, the fireproof interlayer separation setting structure includes an installation groove and a positioning groove, the installation groove is fixedly opened on the upper inner side of the composite aluminum single plate body, the inner side of the installation groove is slidably connected with the fireproof interlayer, multiple fireproof interlayers are fixedly connected with splicing blocks on both sides, and the two sides of the splicing blocks are slidably connected to the inner side of the installation groove, the positioning groove is fixedly opened on the lower inner side of the composite aluminum single plate body, the upper inner side of the positioning groove is movably connected with a heat insulating interlayer, and the rear side of the heat insulating interlayer is movably connected with a sound-absorbing interlayer.

[0012] Preferably, an anti-oxidation coating is fixedly connected to the top end of the outer wall of the composite aluminum single plate body.

[0013] The utility model proposes a high-compression-resistant composite aluminum single panel, which has the following beneficial effects: the vertical frame is made of high-strength aluminum alloy material, and the reinforcing ribs are made of carbon steel material vertically penetrating the interior of the vertical frame. The reinforcing ribs can provide a firm supporting force for the vertical frame at the upper and lower ends. In this way, when the composite aluminum single panel is subjected to external compression, the vertical frame supports the composite aluminum single panel upward, and the shape of the panel body is not easily changed. The horizontal frame can strengthen the connectivity between the multiple vertical frames. The multiple vertical frames form an overall supporting structure with greatly improved compressive resistance, which increases the service life of the high-compression-resistant composite aluminum single panel.

[0014] An installation groove is opened above the composite aluminum veneer board body, so that a fireproof interlayer made of rock wool material can be inserted into the installation groove close to the front side of the composite aluminum veneer board body, so that the fireproof interlayer can provide a certain fireproof ability, and a heat-insulating interlayer made of polystyrene material can be inserted into the inside of the positioning groove. The sound-absorbing interlayer is made of artificial fiber material, which can effectively absorb and block the propagation of sound. In this way, by separating the fireproof interlayer from the heat-insulating interlayer and the sound-absorbing interlayer on the rear side, it is convenient for manual replacement of the fireproof interlayer that is most prone to aging, thereby improving the ease of use of the high-compression-resistant composite aluminum veneer. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1It is a three-dimensional schematic diagram of the utility model;

[0016] Figure 2 for Figure 1 A front cross-sectional schematic diagram of ;

[0017] Figure 3 for Figure 1 A schematic side cross-sectional view of

[0018] Figure 4 for Figure 2 Enlarged cross-sectional view of part A in the middle;

[0019] Figure 5 for Figure 2 Enlarged cross-sectional view of part B in the middle;

[0020] Figure 6 for Figure 2 Enlarged cross-sectional view of part C in the middle.

[0021] In the figure: 1. Composite aluminum veneer plate, 2. Side panel, 3. Bottom plate, 4. Anti-oxidation coating, 5. High-compression-resistant support structure, 51. Inner core, 52. Vertical frame, 53. Anti-deformation block, 54. Reinforcement rib, 55. Horizontal frame, 61. Through hole, 62. Support frame, 7. Fireproof interlayer separation setting structure, 71. Installation groove, 72. Fireproof interlayer, 73. Splicing block, 74. Thermal insulation interlayer, 75. Sound-absorbing interlayer, 76. Positioning groove. DETAILED DESCRIPTION

[0022] The present invention will be further described below with reference to the accompanying drawings:

[0023] Example 1:

[0024] See also Figure 1-6 : In this embodiment, a high-compression-resistant composite aluminum veneer panel includes a composite aluminum veneer panel body 1, side panels 2 and a bottom panel 3. The two side panels 2 are fixedly installed on both sides of the outer wall of the composite aluminum veneer panel body 1, and the bottom panel 3 is fixedly installed at the bottom end of the composite aluminum veneer panel body 1. The bottom panel 3 is welded to both ends of the side panels 2 at the bottom, and the sides of the side panels 2 are welded to the composite aluminum veneer panel body 1, so that a main frame structure of the composite aluminum veneer can be formed. The interior of the composite aluminum veneer panel body 1 is provided with a high-compression-resistant support structure 5, and the inner side of the composite aluminum veneer panel body 1 is provided with a fire-proof interlayer separation setting structure 7.

[0025] The high-compression-resistant support structure 5 includes an inner core 51 and a transverse frame 55. The inner core 51 is fixedly installed inside the composite aluminum veneer board body 1. The inner core 51 is made of high-strength lightweight aluminum plate material. The inner core 51 is horizontally arranged in the middle position inside the composite aluminum veneer board body 1. A plurality of vertical frames 52 are fixedly installed on the inner side of the inner core 51. The vertical frames 52 are made of high-strength aluminum alloy material. The vertical frames 52 are vertically arranged at the same distance inside the composite aluminum veneer board body 1. Reinforcement ribs 54 are fixedly installed on the inner side of the plurality of vertical frames 52. The reinforcement ribs 54 are made of carbon steel material that vertically penetrates the interior of the vertical frames 52.

[0026] The reinforcing ribs 54 can provide a firm support force for the upper and lower ends of the vertical frame 52. The outer wall of the reinforcing rib 54 is fixedly connected with a plurality of anti-deformation blocks 53. The anti-deformation blocks 53 are welded to the left and right sides of the reinforcing rib 54 and are connected to the inner wall of the transverse frame 55 by high-hardness carbon steel. In this way, when the composite aluminum single plate is squeezed by the outside, the vertical frame 52 supports the composite aluminum single plate body 1 upward and the shape is not easy to change. The transverse frame 55 is fixedly installed inside the inner sandwich 51. The transverse frame 55 can strengthen the connectivity between the multiple vertical frames 52. The multiple vertical frames 52 form an integral support structure with greatly improved compressive strength. The ends of the transverse frame 55 are fixedly connected to the side walls of the multiple vertical frames 52. The multiple vertical frames 52 are arranged parallel and equidistant to each other.

[0027] The inner sandwich core 51 is made of high-strength lightweight aluminum plate material, the inner sandwich core 51 is horizontally arranged in the middle position of the inner part of the composite aluminum single board body 1, the vertical frame 52 is made of high-strength aluminum alloy material, the vertical frames 52 are vertically arranged inside the composite aluminum single board body 1 at the same distance, and the reinforcing ribs 54 are made of carbon steel material that vertically penetrates the interior of the vertical frame 52. The reinforcing ribs 54 can provide a firm support force for the vertical frame 52 at the upper and lower ends, and the anti-deformation blocks 53 are welded on the left and right sides of the reinforcing ribs 54 and are connected to the inner wall of the horizontal frame 55 obliquely with high-hardness carbon steel. In this way, when the composite aluminum single board is squeezed by the outside world, the vertical frame 52 supports the composite aluminum single board body 1 upward and the shape is not easy to change. The horizontal frame 55 can strengthen the connectivity between the multiple vertical frames 52, and the multiple vertical frames 52 form an overall support structure. The compressive resistance will be greatly improved, which will increase the service life of the high-compression-resistant composite aluminum single board.

[0028] A plurality of through holes 61 are fixedly opened on the inner side of the inner core 51, and the through holes 61 pass horizontally through the inner core 51. The through holes 61 can play a certain role in flame retardancy and reducing the weight of the composite aluminum single plate body 1. A support frame 62 is fixedly installed on the inner side of the plurality of through holes 61. The support frame 62 is made of lightweight aluminum alloy strips. The support frame 62 is placed on the inner side of the through hole 61 to reinforce and support the through hole 61.

[0029] The fireproof interlayer separation setting structure 7 includes an installation groove 71 and a positioning groove 76. The installation groove 71 is fixedly opened on the upper inner side of the composite aluminum single plate body 1. The installation groove 71 is opened above the composite aluminum single plate body 1, so that the fireproof interlayer 72 made of rock wool material can be inserted into the inside of the installation groove 71 close to the front side of the composite aluminum single plate body 1, so that the fireproof interlayer 72 can provide a certain fireproof ability. The inner side of the installation groove 71 is slidingly connected with the fireproof interlayer 72, and the two sides of the multiple fireproof interlayers 72 are fixedly connected with splicing blocks 73. The splicing blocks 73 can connect the sides of multiple fireproof interlayers 72 to reduce the loopholes between the fireproof interlayers 72.

[0030] The two sides of the splicing block 73 are slidably connected to the inner side of the mounting groove 71, and the positioning groove 76 is fixedly opened on the inner side of the lower side of the composite aluminum single plate body 1. The positioning groove 76 is opened below the composite aluminum single plate body 1, and the inner side of the positioning groove 76 can be inserted into the heat insulation interlayer 74 made of polystyrene material, which can reduce the external heat conduction to the inner side of the composite aluminum single plate body 1. The upper inner side of the positioning groove 76 is movably connected with the heat insulation interlayer 74, and the rear side of the heat insulation interlayer 74 is movably connected with the sound-absorbing interlayer 75. The sound-absorbing interlayer 75 is made of artificial fiber material and can effectively absorb and block the propagation of sound. In this way, by separating the fireproof interlayer 72 from the heat insulation interlayer 74 and the sound-absorbing interlayer 75 on the rear side, it is convenient to manually replace the fireproof interlayer 72 that is most susceptible to aging, thereby improving the ease of use of the high-pressure-resistant composite aluminum single plate.

[0031] The mounting groove 71 is opened above the composite aluminum single board body 1, so that the fireproof interlayer 72 made of rock wool material can be inserted into the mounting groove 71 close to the front side of the composite aluminum single board body 1, so that the fireproof interlayer 72 can provide a certain fireproof ability, and the splicing block 73 can connect the sides of multiple fireproof interlayers 72 to reduce the gaps between the fireproof interlayers 72. The positioning groove 76 is opened below the composite aluminum single board body 1, and the inner side of the positioning groove 76 can be inserted with a heat-insulating interlayer 74 made of polystyrene material, which can reduce the external heat conduction to the inner side of the composite aluminum single board body 1. The sound-absorbing interlayer 75 is made of artificial fiber material, which can effectively absorb and block the propagation of sound. In this way, by separating the fireproof interlayer 72 from the heat-insulating interlayer 74 and the sound-absorbing interlayer 75 on the rear side, it is convenient for manual replacement of the fireproof interlayer 72 that is most prone to aging, thereby improving the ease of use of the high-pressure-resistant composite aluminum single board.

[0032] Working principle:

[0033] When using a high-compression-resistant composite aluminum single panel, the side panels 2, the bottom panel 3 and the composite aluminum single panel body 1 are welded together to form a complete composite aluminum single panel. The internal sandwich core 51 is provided with a horizontal and vertical reinforcement structure to improve the compression resistance of the composite aluminum single panel. The composite aluminum single panel can be installed on the exterior wall of a building or used for decoration.

[0034] The compressive structure of high-compression composite aluminum veneer:

[0035] The inner sandwich core 51 is made of a high-strength lightweight aluminum plate material, the inner sandwich core 51 is horizontally arranged in the middle position of the inner part of the composite aluminum single plate body 1, the vertical frame 52 is made of a high-strength aluminum alloy material, the vertical frames 52 are vertically arranged inside the composite aluminum single plate body 1 at the same distance, and the reinforcing ribs 54 are made of a carbon steel material that vertically penetrates the interior of the vertical frame 52. The reinforcing ribs 54 can provide a strong supporting force for the vertical frame 52 at both ends. The anti-deformation blocks 53 are welded on the left and right sides of the reinforcing ribs 54 and are connected to the inner wall of the horizontal frame 55 obliquely with high-hardness carbon steel. In this way, when the composite aluminum single plate is squeezed by the outside, the vertical frame 52 supports the composite aluminum single plate body 1 upward and the shape is not easily changed. The horizontal frame 55 can strengthen the connectivity between the multiple vertical frames 52, and the multiple vertical frames 52 form an integral support structure with greatly improved compressive strength.

[0036] Through-hole structure of high-compression composite aluminum veneer:

[0037] The through holes 61 extend horizontally through the inner core 51. The through holes 61 can play a certain role in flame retardancy and reducing the weight of the composite aluminum single plate body 1. A support frame 62 is fixedly installed on the inner side of the multiple through holes 61. The support frame 62 is made of a lightweight aluminum alloy bar. The support frame 62 is placed inside the through holes 61 to reinforce and support the through holes 61.

[0038] An installation groove 71 is opened above the composite aluminum single board body 1, so that the fireproof interlayer 72 made of rock wool material can be inserted into the installation groove 71 close to the front side of the composite aluminum single board body 1, so that the fireproof interlayer 72 can provide a certain fire protection ability, and the splicing block 73 can connect the sides of multiple fireproof interlayers 72 to reduce the loopholes between the fireproof interlayers 72. The positioning groove 76 is opened below the composite aluminum single board body 1, and the inner side of the positioning groove 76 can be inserted with a heat-insulating interlayer 74 made of polystyrene material, which can reduce the external heat conduction to the inner side of the composite aluminum single board body 1. The sound-absorbing interlayer 75 is made of artificial fiber material, which can effectively absorb and block the propagation of sound. In this way, by separating the fireproof interlayer 72 from the heat-insulating interlayer 74 and the sound-absorbing interlayer 75 on the rear side, it is convenient for manual replacement of the fireproof interlayer 72 that is most prone to aging.

[0039] Example 2:

[0040] See also Figure 1-6: In this embodiment, a high-compression-resistant composite aluminum veneer also includes an anti-oxidation coating 4 fixedly connected to the top of the outer wall of the composite aluminum veneer plate body 1. The anti-oxidation coating 4 is made of silicon carbide material and is evenly coated on the outermost side of the composite aluminum veneer plate body 1. In this way, the anti-oxidation coating 4 can reduce the oxidation and rust of the composite aluminum veneer plate body 1 made of metal aluminum by the external environment, thereby improving the service life of the composite aluminum veneer.

[0041] Working principle:

[0042] The anti-oxidation coating 4 is made of silicon carbide material and is evenly coated on the outermost side of the composite aluminum veneer plate body 1. In this way, the anti-oxidation coating 4 can reduce the oxidation and corrosion of the composite aluminum veneer plate body 1 made of metal aluminum by the external environment, thereby increasing the service life of the composite aluminum veneer.

[0043] While the present invention has been shown and described with reference to preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein within the scope of the claims.

Claims

1. A high-compression-resistant composite aluminum veneer panel, comprising a composite aluminum veneer panel body (1), side panels (2) and a bottom panel (3), wherein the two side panels (2) are fixedly mounted on both sides of the outer wall of the composite aluminum veneer panel body (1), and the bottom panel (3) is fixedly mounted on the bottom end of the composite aluminum veneer panel body (1), characterized in that: A high-compression-resistant support structure (5) is provided inside the composite aluminum single plate body (1), and a fireproof interlayer separation setting structure (7) is provided on the inner side of the composite aluminum single plate body (1).

2. The high compressive strength composite aluminum veneer according to claim 1, characterized in that: The high-compression-resistance support structure (5) comprises an inner core (51) and a transverse frame (55), wherein the inner core (51) is fixedly mounted inside the composite aluminum single plate body (1), a plurality of vertical frames (52) are fixedly mounted on the inner side of the inner core (51), a plurality of reinforcing ribs (54) are fixedly mounted on the inner side of the plurality of vertical frames (52), a plurality of anti-deformation blocks (53) are fixedly connected to the outer wall of the reinforcing ribs (54), and the transverse frame (55) is fixedly mounted inside the inner core (51).

3. The high compressive strength composite aluminum veneer according to claim 2, characterized in that: The ends of the transverse frames (55) are fixedly connected to the side walls of the plurality of vertical frames (52), and the plurality of vertical frames (52) are arranged parallel to each other and at equal distances.

4. The high-compression-resistant composite aluminum veneer according to claim 2, characterized in that: A plurality of through holes (61) are fixedly opened on the inner side of the inner core (51), and a support frame (62) is fixedly installed on the inner side of the plurality of through holes (61).

5. The high compressive strength composite aluminum veneer according to claim 1, characterized in that: The fireproof interlayer separation setting structure (7) includes a mounting groove (71) and a positioning groove (76), wherein the mounting groove (71) is fixedly provided on the upper inner side of the composite aluminum single plate body (1), and the inner side of the mounting groove (71) is slidably connected to the fireproof interlayer (72), and the two sides of the plurality of fireproof interlayers (72) are fixedly connected to the splicing blocks (73), and the two sides of the splicing blocks (73) are slidably connected to the inner side of the mounting groove (71), and the positioning groove (76) is fixedly provided on the lower inner side of the composite aluminum single plate body (1), and the upper inner side of the positioning groove (76) is movably connected to the heat insulation interlayer (74), and the rear side of the heat insulation interlayer (74) is movably connected to the sound-absorbing interlayer (75).

6. The high compressive strength composite aluminum veneer according to claim 1, characterized in that: An anti-oxidation coating (4) is fixedly connected to the top end of the outer wall of the composite aluminum single plate body (1).

Citation Information

Patent Citations

  • Composite aluminum veneer

    CN219451333U