Energy-saving assembly type metal plate unit

By adopting energy-saving prefabricated metal panel units in building doors and windows, and utilizing aluminum single-panel panels, shock-absorbing and heat-insulating films, galvanized steel back panels, and thermoplastic thermal break combined aluminum alloy strips, the problem of poor thermal insulation performance of existing doors and windows has been solved, achieving efficient improvement in thermal insulation performance and rapid assembly.

CN223753917UActive Publication Date: 2026-01-02FOSHAN KETE ALUMINUM PROD CO LTD
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Patent Information

Application Number
CN202520021962.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-06
Publication Date
2026-01-02
Estimated Expiration
2035-01-06

AI Technical Summary

Technical Problem

Existing building doors and windows are usually single glass structures with poor thermal insulation performance, which cannot meet the needs of rapidly growing urban buildings.

Method used

The system adopts energy-saving prefabricated metal panel units, including aluminum single-panel front panels, shock-absorbing and heat-insulating films, first galvanized steel back panels, insulation cotton, second galvanized steel back panels, and thermoplastic thermal break combined aluminum alloy fasteners. By distributing these materials from bottom to top and connecting them to the pre-reserved slots of the outer frame using thermoplastic thermal break combined aluminum alloy fasteners, rapid assembly and nail-free assembly can be achieved.

Benefits of technology

It improves the thermal insulation performance of doors and windows, reduces the impact, noise and heat radiation of wind and rain on metal panels, shortens the process time, improves assembly efficiency, and enhances the ability to resist extreme typhoons.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of constructional engineering, and particularly relates to an energy-saving assembly type metal plate unit. The metal aluminum veneer panel, the shock absorption and heat insulation film, the first galvanized plate back plate, the heat insulation cotton and the second galvanized plate back plate are sequentially distributed from bottom to top, and the shock absorption and heat insulation film is attached to the upper end face of the metal aluminum veneer panel, so that impact noise and direct heat radiation of wind and rain on the metal plate are reduced. And secondly, the heat preservation cotton is clamped between the first galvanized plate back plate and the second galvanized plate back plate, so that the whole door and window outer frame can form a double-cavity heat insulation unit, the heat insulation performance is better than that of a glass unit, and the energy-saving effect of the whole wall surface can be improved. In addition, by arranging the thermoplastic broken bridge combined aluminum alloy buckling strips, after the thermoplastic broken bridge combined aluminum alloy buckling strips are connected with the metal plates, the thermoplastic broken bridge combined aluminum alloy buckling strips are connected with the reserved notches of the outer frame in a sleeved mode, rapid assembly and nail-free assembly can be achieved, the process time can be shortened to 25 minutes per piece, and therefore the assembly efficiency of the metal plate units is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of building engineering, especially relate to a kind of energy-saving fabricated metal plate unit. BACKGROUND

[0002] With the advancement of urbanization, especially the ascending of city economy total quantity, the rapid growth of city quantity and scale will directly increase the demand for large-scale building, and stimulate the demand for building door and window, curtain wall.

[0003] However, the existing building door and window are usually single glass structure, and the heat preservation and heat insulation performance is poor. Therefore, it is necessary to design an energy-saving fabricated metal plate unit to solve the above problems. UTILITY MODEL CONTENT

[0004] To solve the above problems, the utility model provides an energy-saving fabricated metal plate unit.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: an energy-saving fabricated metal plate unit, comprising a metal aluminum single board panel, a shock-absorbing and heat-insulating film, a first galvanized sheet back plate, thermal insulation cotton, a second galvanized sheet back plate and a thermoplastic broken bridge combined aluminum alloy clamping strip, the metal aluminum single board panel, the shock-absorbing and heat-insulating film, the first galvanized sheet back plate, the thermal insulation cotton and the second galvanized sheet back plate are distributed in turn from bottom to top, the shock-absorbing and heat-insulating film is attached to the upper end surface of the metal aluminum single board panel, the thermoplastic broken bridge combined aluminum alloy clamping strip is connected with the end part of the metal aluminum single board panel, and the thermoplastic broken bridge combined aluminum alloy clamping strip is connected with the reserved notch of the outer frame for assembly with the outer frame.

[0006] Further, the thermoplastic broken bridge combined aluminum alloy clamping strip comprises a first plate block edge material, a second plate block edge material, a combined aluminum alloy clamping strip A and a combined aluminum alloy clamping strip B, and the second plate block edge material and the first plate block edge material are located on the upper and lower sides respectively.

[0007] One end of the combined aluminum alloy clamping strip A is connected with the first plate block edge material, the other end is connected with the left side of the metal aluminum single board panel, the right side of the second plate block edge material is connected with the left side of the first galvanized sheet back plate and the second galvanized sheet back plate, the lower end of the second plate block edge material is connected with the combined aluminum alloy clamping strip B, and the inner side of the combined aluminum alloy clamping strip A and the outer side of the combined aluminum alloy clamping strip B are both provided with a hook-shaped spring piece, and the hook-shaped spring piece is used for buckling with the reserved notch of the outer frame.

[0008] Further, the combined aluminum alloy clamping strip B is provided with an anti-lateral displacement flash.

[0009] Further, the thermoplastic broken bridge combined aluminum alloy buckle strip further comprises an aluminum corner, the aluminum corner is arranged at the connecting position of the second plate block edge strip and the second galvanized plate back plate, the second plate block edge strip is connected with the aluminum corner through bolts, and the second galvanized plate back plate is connected with the aluminum corner through bolts.

[0010] Further, the energy-saving assembled metal plate unit further comprises a steel structure, an attached frame, an attached frame pressing line and a side attached frame, the attached frame and the side attached frame are located on the upper side and the lower side and are connected with each other, the left side of the side attached frame is connected with the steel structure through bolts, the right side of the side attached frame is connected with the first plate block edge strip, and the attached frame is connected with the second plate block edge strip through the attached frame pressing line.

[0011] Further, the energy-saving assembled metal plate unit further comprises a first plate block male connector, a second plate block male connector, a first panel buckle strip and a second panel buckle strip, the second plate block male connector and the first plate block male connector are located on the upper side and the lower side, respectively, the left end of the first panel buckle strip is connected with the right end of the metal aluminum veneer panel, the right end of the first panel buckle strip is connected with the first plate block male connector, the second plate block male connector is connected with the right end of the first galvanized plate back plate and the second galvanized plate back plate, and the second panel buckle strip is connected with the second plate block male connector.

[0012] Further, the energy-saving assembled metal plate unit further comprises a first plate block female connector, a second plate block female connector, a first glass frame, a second glass frame and hollow coated glass, the first glass frame and the second glass frame are used for clamping the hollow coated glass, the second plate block female connector and the first plate block female connector are located on the upper side and the lower side, respectively, one end of the first plate block female connector is connected with the first plate block male connector, and the other end of the first plate block female connector is connected with the first glass frame, one end of the second plate block female connector is connected with the second plate block male connector, and the other end of the second plate block female connector is connected with the second glass frame 26.

[0013] The technical effects and advantages of the utility model are as follows:

[0014] By sequentially distributing the metal aluminum veneer panel, the shock-absorbing and heat-insulating film, the first galvanized plate back plate, the thermal insulation cotton and the second galvanized plate back plate from bottom to top, the shock-absorbing and heat-insulating film is attached to the upper end face of the metal aluminum veneer panel, so as to reduce the impact noise and direct heat radiation of wind and rain on the metal plate.

[0015] The thermal insulation cotton is clamped between the first galvanized plate back plate and the second galvanized plate back plate, so that the door and window frame as a whole forms a double-cavity heat-insulating unit, the heat-insulating performance is better than that of the glass unit, and the overall wall surface energy-saving effect can be improved.

[0016] By setting the thermoplastic broken bridge combined aluminum alloy buckling strip, the thermoplastic broken bridge combined aluminum alloy buckling strip is connected with the metal plate, and then is sleeved into the reserved notch of the outer frame for connection, so that quick assembly and nail-free assembly are facilitated, the process time can be shortened to 25 minutes per piece, and the metal plate unit assembly efficiency is improved.

[0017] Other features and advantages of the present application will be set forth in the following description of the application, and in part will become apparent to those skilled in the art upon examination of the following or can be learned by practice of the application. The objects and other advantages of the application can be realized and attained by the structure particularly pointed out in the description and the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0019] Figure 1 A structure diagram of the energy-saving assembled metal plate unit is shown in the embodiment of the present application;

[0020] Figure 2 A structure diagram of the energy-saving assembled metal plate unit is shown in the embodiment of the present application; Figure 1 An enlarged view of the A area in the embodiment of the present application;

[0021] Figure 3 An enlarged view of the B area in the embodiment of the present application; Figure 1 An enlarged view of the B area in the embodiment of the present application.

[0022] Signs: 1, steel structure; 2, attached frame; 3, attached frame pressing line; 4, first plate block edge material; 5, first EPDM rubber strip; 6, side attached frame; 7, sealing glue and foam strip; 8, second plate block edge material; 9, combined aluminum alloy buckling strip A; 10, combined aluminum alloy buckling strip B; 11, metal aluminum single plate panel; 12, top attached frame; 13, aluminum corner; 14, first galvanized plate back plate; 15, thermal insulation cotton; 16, second galvanized plate back plate; 17, first plate block male material; 18, second plate block male material; 19, first plate block female material; 20, second plate block female material; 21, second EPDM rubber strip; 22, buckling strip; 23, first panel buckling strip; 24, second panel buckling strip; 25, first glass frame; 26, second glass frame; 27, process hole; 28, hollow coated glass. DETAILED DESCRIPTION

[0023] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme of the embodiments of the utility model will be clearly and completely explained in combination with the drawings in the embodiments of the utility model below. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0024] As Figure 1 And Figure 2 The utility model discloses an energy -conserving fabricated metal plate unit, including metal aluminum veneer panel 11, shock -absorbing heat -insulating film, first galvanized sheet backboard 14, thermal insulation cotton 15, second galvanized sheet backboard 16 and thermoplastic broken bridge combination aluminium alloy buckling strip, metal aluminum veneer panel 11, shock -absorbing heat -insulating film, first galvanized sheet backboard 14, thermal insulation cotton 15 and second galvanized sheet backboard 16 are sequentially distributed from below to top, shock -absorbing heat -insulating film is attached on metal aluminum veneer panel 11 upper end surface, thermoplastic broken bridge combination aluminium alloy buckling strip is connected with metal aluminum veneer panel 11 end, and thermoplastic broken bridge combination aluminium alloy buckling strip is connected with the reserved notch of outer frame to be used to assemble with the outer frame.

[0025] Specifically, as Figure 1 Indicated, Figure 1 It is a plan view, and metal aluminum veneer panel 11 bottom is provided with top attached frame 12. Secondly, shock -absorbing heat -insulating film self -adhesive surface is pasted with metal aluminum veneer panel 11 upper end surface. And thermal insulation cotton 15 is fixed on first galvanized sheet backboard 14 by cotton nail, and utilizes second galvanized sheet backboard 16 to seal thermal insulation cotton 15. In addition, the reserved notch of outer frame is located on the outer frame, and the outer frame is a frame structure, for example can be four side frames and is formed into a square frame structure, and metal aluminum veneer panel 11, shock -absorbing heat -insulating film, first galvanized sheet backboard 14, thermal insulation cotton 15, second galvanized sheet backboard 16 and thermoplastic broken bridge combination aluminium alloy buckling strip are located in the outer frame.

[0026] In the embodiment, the metal aluminum veneer panel 11, the shock-absorbing and heat-insulating adhesive sheet, the first galvanized sheet back plate 14, the thermal insulation cotton 15, and the second galvanized sheet back plate 16 are sequentially arranged from bottom to top, and the shock-absorbing and heat-insulating adhesive sheet is attached to the upper end surface of the metal aluminum veneer panel 11 to reduce the impact noise and direct heat radiation of the metal sheet caused by wind and rain. Secondly, the thermal insulation cotton 15 is arranged between the first galvanized sheet back plate 14 and the second galvanized sheet back plate 16, so that the door and window outer frame as a whole forms a double-cavity heat-insulating unit, the heat-insulating performance is better than that of a glass unit, and the overall wall surface energy-saving effect can be improved. In addition, the thermoplastic broken bridge combined aluminum alloy clamping strip is arranged, the thermoplastic broken bridge combined aluminum alloy clamping strip is connected with the metal aluminum veneer panel 11, and then is sleeved into the reserved slot of the outer frame for connection, which is beneficial to realize quick assembly and nail-free assembly, the process time can be shortened to 25 minutes per piece, and the assembly efficiency of the metal sheet unit is improved.

[0027] Optionally, as shown in Figure 2 the thermoplastic broken bridge combined aluminum alloy clamping strip includes a first plate block edge strip 4, a second plate block edge strip 8, a combined aluminum alloy clamping strip A 9, and a combined aluminum alloy clamping strip B 10, and the second plate block edge strip 8 and the first plate block edge strip 4 are respectively located on the upper and lower sides;

[0028] One end of the combined aluminum alloy clamping strip A 9 is connected with the first plate block edge strip 4, the other end is connected with the left side of the metal aluminum veneer panel 11, the right side of the second plate block edge strip 8 is connected with the left side of the first galvanized sheet back plate 14 and the second galvanized sheet back plate 16, the lower end of the second plate block edge strip 8 is connected with the combined aluminum alloy clamping strip B 10, and the inner side of the combined aluminum alloy clamping strip A 9 and the outer side of the combined aluminum alloy clamping strip B 10 are both provided with a hook-shaped spring piece, and the hook-shaped spring piece is used for buckling with the reserved slot of the outer frame.

[0029] In the embodiment, the hook-shaped spring pieces on the combined aluminum alloy clamping strip A 9 and the combined aluminum alloy clamping strip B 10 are buckled with the reserved slot of the outer frame at the left end, so that the thermoplastic broken bridge combined aluminum alloy clamping strip is connected with the reserved slot of the outer frame. Secondly, the first plate block edge strip 4 is used to connect the combined aluminum alloy clamping strip A 9, and the second plate block edge strip 8 is used to connect the combined aluminum alloy clamping strip B 10, so that the first plate block edge strip 4 can be used as a left lower side stress member of the door and window plate block, and the second plate block edge strip 8 can be used as a left upper side stress member of the door and window plate block.

[0030] Optionally, the combined aluminum alloy clamping strip B 10 is provided with a side shift-resistant flash.

[0031] In the embodiment, the side shift-resistant flash is arranged on the combined aluminum alloy clamping strip B 10, so that the front shear resistance and the side bending resistance of the connection point of the combined aluminum alloy clamping strip B 10 are improved, and the extreme typhoon resistance is improved.

[0032] Optionally, as shown in Figure 2 The thermoplastic broken bridge combined aluminum alloy buckling strip further comprises an aluminum corner 13 arranged at the connection between the second plate block edge strip 8 and the second galvanized plate back plate 16. The second plate block edge strip 8 is connected to the aluminum corner 13 by bolts, and the second galvanized plate back plate 16 is connected to the aluminum corner 13 by bolts.

[0033] In this embodiment, the aluminum corner 13 arranged at the connection between the second plate block edge strip 8 and the second galvanized plate back plate 16 can facilitate the connection of the second plate block edge strip 8 to one side of the aluminum corner 13 by bolts and the connection of the second galvanized plate back plate 16 to the other side of the aluminum corner 13 by bolts.

[0034] Optionally, as shown in Figure 2 The energy-saving assembled metal plate unit further comprises a steel structure 1, an auxiliary frame 2, an auxiliary frame pressing line 3, and a side auxiliary frame 6. The auxiliary frame 2 and the side auxiliary frame 6 are located on the upper and lower sides and are connected to each other. The left side of the side auxiliary frame 6 is connected to the steel structure 1 by bolts, the right side of the side auxiliary frame 6 is connected to the first plate block edge strip 4, and the auxiliary frame 2 is connected to the second plate block edge strip 8 by the auxiliary frame pressing line 3.

[0035] Specifically, as shown in Figure 2 The right side of the side auxiliary frame 6 is connected to the first plate block edge strip 4 by the first EPDM rubber strip 5, and one end of the auxiliary frame pressing line 3 is connected to the second plate block edge strip 8 by the first EPDM rubber strip 5. In addition, the steel structure 1 can also be replaced by a concrete structure. Furthermore, sealing glue and foam strips 7 are arranged between the side auxiliary frame 6 and the steel structure 1, and sealing glue and foam strips 7 are also arranged between the auxiliary frame 2 and the steel structure 1.

[0036] In this embodiment, the side auxiliary frame 6 is connected to the first plate block edge strip 4, and the auxiliary frame 2 is connected to the second plate block edge strip 8 by the auxiliary frame pressing line 3. The upper end of the side auxiliary frame 6 is connected to the lower end of the auxiliary frame 2, so that the side auxiliary frame 6, the first plate block edge strip 4, the auxiliary frame 2, and the second plate block edge strip 8 are combined into one whole. Thus, the left side of the side auxiliary frame 6 is connected to the steel structure 1 by bolts, which facilitates the fixation of the entire door and window system by the steel structure 1. Furthermore, the sealing glue and foam strips 7 between the side auxiliary frame 6 and the steel structure 1 can be used for sealing the gap between the side auxiliary frame 6 and the steel structure 1, and the sealing glue and foam strips 7 between the auxiliary frame 2 and the steel structure 1 can be used for sealing the gap between the auxiliary frame 2 and the steel structure 1.

[0037] Optionally, as shown in Figure 3As shown, the energy-saving prefabricated metal panel unit also includes a first panel material 17, a second panel material 18, a first panel fastener 23, and a second panel fastener 24. The second panel material 18 and the first panel material 17 are located on the upper and lower sides, respectively. The left end of the first panel fastener 23 is connected to the right end of the aluminum single panel panel 11, and the right end is connected to the first panel material 17. The second panel material 18 is connected to the right end of the first galvanized steel back plate 14 and the second galvanized steel back plate 16. The second panel fastener 24 is connected to the second panel material 18.

[0038] In this embodiment, the first panel fastener 23 and the second panel fastener 24 are used to assemble and connect with the pre-reserved groove on the right end of the outer frame. The first panel fastener 23 connects the first panel material 17 and the aluminum single-panel panel 11, so the first panel material 17 can be used as the load-bearing component on the lower right side of the door and window panel. The second panel fastener 24 connects the second panel material 18 and the first galvanized steel back plate 14 and the second galvanized steel back plate 16, so the second panel material 18 can be used as the load-bearing component on the upper right side of the door and window panel.

[0039] Optionally, such as Figure 3 As shown, the energy-saving prefabricated metal panel unit also includes a first panel parent material 19, a second panel parent material 20, a first glass frame 25, a second glass frame 26, and insulated coated glass 28. The first glass frame 25 and the second glass frame 26 are used to clamp the insulated coated glass 28. The second panel parent material 20 and the first panel parent material 19 are located on the upper and lower sides, respectively. One end of the first panel parent material 19 is connected to the first panel public material 17, and the other end is connected to the first glass frame 25. One end of the second panel parent material 20 is connected to the second panel public material 18, and the other end is connected to the second glass frame 26.

[0040] Specifically, such as Figure 3 As shown, the second panel parent material 20 is connected to the second panel parent material 18 via a second EPDM adhesive strip 21 and a fastening strip 22. Furthermore, the second glass frame 26 has process holes 27 for screws to pass through and connect the second glass frame 26 to the second panel parent material 20. Additionally, the first panel parent material 19 and the second panel parent material 20 can be an integral structure, as can the first glass frame 25 and the second glass frame 26.

[0041] In the embodiment, by arranging the first glass frame 25, the second glass frame 26 and the hollow coated glass 28, the hollow coated glass 28 can be clamped by the first glass frame 25 and the second glass frame 26, which is conducive to ensuring the stability of the metal plate unit. Secondly, the first plate block female connector 19 is used to connect the first plate block male connector 17 and the first glass frame 25, so as to ensure the stability of the first glass frame 25, and the second plate block female connector 20 is used to connect the second plate block male connector 18 and the second glass frame 26, so as to ensure the stability of the second glass frame 26, thereby improving the stability of the metal plate unit.

[0042] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced equivalently, and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the utility model.

Claims

1. An energy saving fabricated metal plate unit, characterized by, The application relates to a metal aluminum single-plate panel (11), shock-absorbing and heat-insulating adhesive film, a first galvanized plate back plate (14), thermal cotton (15), a second galvanized plate back plate (16) and a thermoplastic broken-bridge combined aluminum alloy clamping strip, wherein the metal aluminum single-plate panel (11), the shock-absorbing and heat-insulating adhesive film, the first galvanized plate back plate (14), the thermal cotton (15) and the second galvanized plate back plate (16) are sequentially arranged from bottom to top, the shock-absorbing and heat-insulating adhesive film is attached to the upper end surface of the metal aluminum single-plate panel (11), the thermoplastic broken-bridge combined aluminum alloy clamping strip is connected with the end part of the metal aluminum single-plate panel (11), and the thermoplastic broken-bridge combined aluminum alloy clamping strip is connected with a reserved notch of an outer frame for assembly with the outer frame.

2. The energy-efficient fabricated metal panel unit according to claim 1, wherein, The thermoplastic broken-bridge combined aluminum alloy clamping strip comprises a first plate block edge strip (4), a second plate block edge strip (8), a combined aluminum alloy clamping strip A (9) and a combined aluminum alloy clamping strip B (10), and the second plate block edge strip (8) and the first plate block edge strip (4) are respectively arranged on the upper side and the lower side. One end of the combined aluminum alloy clamping strip A (9) is connected with the first plate block edge strip (4), and the other end is connected with the left side of the metal aluminum single-plate panel (11); the right side of the second plate block edge strip (8) is connected with the left side of the first galvanized plate back plate (14) and the second galvanized plate back plate (16); the lower end of the second plate block edge strip (8) is connected with the combined aluminum alloy clamping strip B (10); the inner side of the combined aluminum alloy clamping strip A (9) and the outer side of the combined aluminum alloy clamping strip B (10) are both provided with a hook-shaped spring piece which is used for buckling with the reserved notch of the outer frame.

3. The energy-efficient fabricated metal panel unit according to claim 2, wherein, The combined aluminum alloy clamping strip B (10) is provided with an anti-lateral displacement flash.

4. The energy-efficient fabricated metal panel unit according to claim 3, wherein, The application further comprises an aluminum corner (13) which is arranged at the connecting position of the second plate block edge strip (8) and the second galvanized plate back plate (16), the second plate block edge strip (8) is connected with the aluminum corner (13) through a bolt, and the second galvanized plate back plate (16) is connected with the aluminum corner (13) through a bolt.

5. The energy-efficient fabricated metal panel unit according to claim 4, wherein, The application further comprises a steel structure (1), an attached frame (2), an attached frame pressing line (3) and a side attached frame (6), the attached frame (2) and the side attached frame (6) are arranged on the upper side and the lower side and are connected with each other, the left side of the side attached frame (6) is connected with the steel structure (1) through a bolt, the right side of the side attached frame (6) is connected with the first plate block edge strip (4), and the attached frame (2) is connected with the second plate block edge strip (8) through the attached frame pressing line (3).

6. The energy-efficient fabricated metal panel unit according to claim 5, wherein, Further comprise first plate public enterprise material (17), second plate public enterprise material (18), first panel buckling strip (23) and second panel buckting strip (24), the second plate public enterprise material (18) and the first plate public enterprise material (17) are located on the upper and lower sides respectively, the left end of the first panel buckling strip (23) is connected with the right end of the metal aluminum veneer panel (11), the right end is connected with the first plate public enterprise material (17), the second plate public enterprise material (18) is connected with the right end of the first galvanized sheet backboard (14) and the second galvanized sheet backboard (16), the second panel buckling strip (24) is connected with the second plate public enterprise material (18).

7. The energy-efficient fabricated metal panel unit according to claim 6, wherein, Further comprise first plate public enterprise material (17), second plate public enterprise material (18), first panel buckling strip (23) and second panel buckting strip (24), the second plate public enterprise material (18) and the first plate public enterprise material (17) are located on the upper and lower sides respectively, the left end of the first panel buckling strip (23) is connected with the right end of the metal aluminum veneer panel (11), the right end is connected with the first plate public enterprise material (17), the second plate public enterprise material (18) is connected with the right end of the first galvanized sheet backboard (14) and the second galvanized sheet backboard (16), the second panel buckling strip (24) is connected with the second plate public enterprise material (18).