Integrally-formed high-strength heat insulation aluminum profile

By setting a reinforcing rib structure inside the aluminum profile and overlapping it with the heat insulation layer, and using rectangular frames and cross support plates to form a triangular hollow area filled with polyurethane foam, the problems of insufficient thickness and local strength of the aluminum profile are solved, and a high-strength, easy-to-assemble heat-insulating aluminum profile design is realized.

CN223677533UActive Publication Date: 2025-12-16JIANGSU MAIGU ALUMINUM CO LTD
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Patent Information

Application Number
CN202520600946.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-12-16
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Existing one-piece molded high-strength thermally insulated aluminum profiles have deficiencies in thickness and local strength, and are inconvenient to assemble, affecting their service life and scope of application.

Method used

The main body of the aluminum material is designed with vertical stacking. The internal reinforcing rib structure overlaps with the heat insulation layer. A triangular hollow area is formed by rectangular frames and cross support plates and filled with polyurethane foam. The positioning groove and elastic pins are used to achieve rapid assembly and enhance the connection strength.

Benefits of technology

While ensuring strength and thermal insulation performance, the thickness of the aluminum profile was reduced, improving local strength and ease of assembly, and expanding the scope of application.

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Abstract

The utility model relates to the technical field of aluminum profile structures, and discloses an integrally-formed high-strength heat insulation aluminum profile which comprises a plurality of main body aluminum profiles which are vertically overlapped and combined. A middle interlayer is arranged in the main body aluminum material, a reinforcing rib structure is arranged in the middle interlayer, a heat insulation layer is filled in the middle interlayer, and the reinforcing rib structure and the heat insulation layer are overlapped; the reinforcing rib structure is formed by transversely arranging a plurality of unit structures, and every two adjacent unit structures are fixedly connected. The reinforcing rib structure and the heat insulation layer are overlapped, the strength and the heat insulation performance of the aluminum profile are ensured, meanwhile, the problem that the thickness of the aluminum profile is too large is solved, in addition, a combined structure is arranged, a plurality of main aluminum profiles can be overlapped and combined, and the aluminum profile can be conveniently used in a scene with high strength. The thickness advantage can be sacrificed for strength superposition, and the application range universality is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to aluminium profile structure technical field more particularly to one kind is integrally formed high strength heat insulation aluminium profile. BACKGROUND

[0002] Aluminium profile titanium gold plating technology belongs to coating technology, which is based on the conventional titanium plating process and increases the pre-plating and electroplating process steps. The pre-plating process is to place the activated plated parts in a water solution of salt and hydrochloric acid for chemical treatment. Chinese patent (CN222616559U) discloses "one kind is integrally formed high strength heat insulation aluminium profile", which includes a profile, the profiles are arranged in pairs, and a reinforcing heat insulation assembly is arranged on one side of the profile. The utility model belongs to the technical field of aluminium profiles, and specifically relates to one kind is integrally formed high strength heat insulation aluminium profile which solves the problems of inconvenient disassembly, difficult replacement, and easy deformation of the aluminium profile under pressure, resulting in reduced use strength and affecting the service life of the heat insulation aluminium profile.

[0003] In the existing one kind is integrally formed high strength heat insulation aluminium profile, the strength is improved by adopting multiple superimposed reinforcing ribs, and the heat insulation plate is arranged in the interlayer to achieve the heat insulation effect. However, this method still has defects, such as the large thickness of the aluminium profile, which cannot be used in some use scenarios, and the setting of the reinforcing ribs causes a large area of hollow area in the aluminium profile, although the whole has high strength characteristics, but the local area is easy to be depressed under pressure. UTILITY MODEL CONTENTS

[0004] In order to overcome the above-mentioned defects of the prior art, the utility model provides a kind of one kind is integrally formed high strength heat insulation aluminium profile, to solve the problems of low cleaning efficiency and cleanliness of traditional cleaning device for interface woodberry, and easy to cause damage to fruit; easy to breed microorganism after cleaning and reduce shelf life.

[0005] The utility model provides the following technical scheme: a kind of one kind is integrally formed high strength heat insulation aluminium profile, including several vertical superimposed combination main body aluminium material;The main body aluminium material is internally provided with middle interlayer, and reinforcing rib structure is arranged in the middle interlayer, and the middle interlayer is filled with heat insulation layer, and the reinforcing rib structure and heat insulation layer position overlap;The reinforcing rib structure is formed by the transverse arrangement of several unit structures, and the adjacent two unit structures are fixedly connected.

[0006] Further, the unit structure is composed of a rectangular frame and a cross support plate, the cross support plate is inclined at 45 degrees, the unit structure is divided into four triangular hollow areas by the cross support plate, and the four unit structures are used to fill the heat insulation layer.

[0007] Further, the cross support plate of the unit structure is provided with a plurality of through holes one on four surfaces, the through holes one are used for connecting the four triangular hollowed-out areas, the unit structure is provided with a plurality of through holes two on two sides of the rectangle, the through holes two are used for connecting the triangular hollowed-out areas in the adjacent two unit structures, and the heat insulation layer is polyurethane foam.

[0008] Further, the unit structure is provided with a positioning groove on the top and the bottom, the main body aluminum material is provided with a plurality of positioning strips on the top and the bottom of the middle layer, and the positioning strips are clamped into the positioning grooves.

[0009] Further, the main body aluminum material comprises a main body plate, the main body plate is symmetrically provided with embedded blocks at the bottom, and the main body plate is symmetrically provided with L-shaped embedding grooves at the top, two embedded blocks of one main body aluminum material are embedded into two L-shaped embedding grooves of another main body aluminum material to complete the superposition combination.

[0010] Further, the embedded block comprises a fixed top block, the fixed top block is fixedly connected with a T-shaped rail at the bottom, the fixed top block is provided with a movable sliding block at the bottom, the movable sliding block is slidably sleeved on the side wall of the T-shaped rail, the fixed top block is provided with a column hole at the bottom, the movable sliding block is provided with a pin hole at the top, the column hole is fixedly connected with an elastic pin column inside, and the main body plate is provided with a perforation a at the side.

[0011] Further, the elastic pin column comprises a connecting column and a pin barrel, the pin barrel is slidably sleeved with a sliding block inside, the connecting column is fixedly connected with the column hole at the top end and the bottom end, the connecting column penetrates into the pin barrel inside and is fixedly connected with the sliding block at the bottom end, and the pin barrel is drivingly connected with the column hole at the top through a spring.

[0012] The technical effects and advantages of the utility model are as follows:

[0013] The utility model discloses a reinforcing rib structure and a heat insulation layer are overlapped in position, the strength and the heat insulation performance of the aluminum profile are ensured, the problem that the aluminum profile is too thick is avoided, and a combined structure is further arranged, so that the main body aluminum material can be superimposed and combined, the superimposed strength can be sacrificed when the main body aluminum material is used in a high-strength scene, the thickness advantage is increased, and the application range is wide.

[0014] In addition, the reinforcing rib structure is arranged in a plurality of directions, the distribution area of the hollowed-out area on the single surface of the main body aluminum material is reduced, and the hollowed-out area is filled with the heat insulation layer, so that the strength requirement of the aluminum profile when dealing with local pressure is improved. DRAWINGS

[0015] Figure 1 It is the whole structure schematic diagram of the utility model;

[0016] Figure 2 It is the utility modelFigure 1 The reinforcing rib structure structure schematic view in the unit structure;

[0017] Figure 3 The utility model discloses Figure 2 The unit structure front view and sectional structure schematic view in the unit structure;

[0018] Figure 4 The utility model discloses Figure 2 The main body aluminum material front structure schematic view in the main body aluminum material structure;

[0019] Figure 5 The utility model discloses Figure 1 The main body aluminum material structure sectional view schematic view in the main body aluminum material structure;

[0020] Figure 6 The utility model discloses Figure 5 The embedded block structure schematic view in the embedded block structure;

[0021] Figure 7 The utility model discloses Figure 6 The elastic pin column structure schematic view in the elastic pin column structure.

[0022] The figure mark is: 1, main body aluminum material;2, reinforcing rib structure;3, positioning strip;21, unit structure;22, triangular openwork area;23, positioning groove;24, through -hole one;25, through -hole two;11, main body board;12, embedded block;13, L shape embedding groove;14, fixed top block;15, T type rail;16, movable sliding block;17, elastic pin column;18, column hole;19, pin hole;171, connecting column;172, pin cylinder;173, sliding block;174, spring. Specific implementation

[0023] The specific implementation of the utility model is explained in detail below in combination with the drawings.

[0024] Referring to Figure 1 And Figure 2 The utility model provides a kind of integrally formed high-strength heat insulation aluminum profile, including several vertical superimposed combination main body aluminum material 1;Main body aluminum material 1 inside is provided with middle interlayer, and reinforcing rib structure 2 is arranged in the middle interlayer, and reinforcing rib structure 2 is overlapped with heat insulation layer position;Reinforcing rib structure 2 is formed by the transverse arrangement of several unit structures 21, and is fixedly connected between adjacent two unit structures 21.

[0025] The heat insulation performance of main body aluminum material 1 can be ensured by heat insulation layer, the strength gain of main body aluminum material 1 is carried out by reinforcing rib structure 2, the thickness of single main body aluminum material 1 is ensured not to be too large by the position overlapping setting of reinforcing rib structure 2 and heat insulation layer, when thickness has higher requirement in special scene, single main body aluminum material 1 can be used alone, if scene does not have restriction to aluminum profile, one main body aluminum material 1 can be superimposed combination, and strength is further improved.

[0026] With reference to Figure 3 , the unit structure 21 is composed of a rectangular frame and a cross support plate, the cross support plate is inclined at forty-five degrees, four triangular hollow areas 22 are separated in the unit structure 21 by the cross support plate, and the unit structure 21 is filled with a thermal insulation layer.

[0027] The unit structure 21 mainly provides support strength through the cross support plate, and the setting of the rectangular frame can facilitate the increase of the contact area between the cross support plate and the inner wall of the middle layer of the main aluminum material 1, on the one hand, the connection firmness of the reinforcing rib structure 2 in the middle layer is improved, and on the other hand, the force is conducted to the support support frame through the rectangular frame when the main aluminum material 1 is locally stressed.

[0028] With reference to Figure 3 , a plurality of through holes one 24 are arranged on the four surfaces of the cross support plate of the unit structure 21, the through holes one 24 are used to communicate the four triangular hollow areas 22 with each other, a plurality of through holes two 25 are arranged on the two sides of the rectangular frame of the unit structure 21, the through holes two 25 are used to connect the triangular hollow areas 22 in the adjacent two unit structures 21, and the thermal insulation layer is polyurethane foam.

[0029] Through the above setting, the triangular hollow areas 22 in the plurality of unit structures 21 can be communicated with each other, and the polyurethane foam thermal insulation material can be integrally formed when filling the thermal insulation layer. The polyurethane foam thermal insulation material is initially in a liquid state and can flow into the plurality of triangular hollow areas 22, and after foaming, the thermal insulation layer is formed.

[0030] With reference to Figure 3 , 4 , a plurality of positioning grooves 23 are arranged on the top and bottom of the plurality of unit structures 21, a plurality of positioning strips 3 are arranged on the top and bottom of the middle layer of the main aluminum material 1, and the positioning strips 3 are clamped into the positioning grooves 23.

[0031] Through the above setting, the connection strength of the reinforcing rib structure 2 in the middle layer can be further improved.

[0032] With reference to Figure 5 , the main aluminum material 1 comprises a main plate 11, the bottom of the main plate 11 is symmetrically provided with an embedded block 12, the top of the main plate 11 is symmetrically provided with an L-shaped embedded groove 13, and the two embedded blocks 12 of one main aluminum material 1 are embedded into the two L-shaped embedded grooves 13 of another main aluminum material 1 to complete the superposition combination.

[0033] Through the above combination mode, the quick combination effect can be achieved, and the welding connection is not needed, so that the operation convenience is improved.

[0034] With reference to Figure 6, embedded block 12 includes fixed top block 14, fixed top block 14 bottom fixedly connected with T-shaped rail 15, the bottom of the fixed top block 14 is provided with a movable sliding block 16, the movable sliding block 16 is slidably sleeved on the side wall of the T-shaped rail 15, the bottom of the fixed top block 14 is provided with a column hole 18, the top of the movable sliding block 16 is provided with a pin hole 19, the column hole 18 is fixedly connected with an elastic pin column 17 inside, and the side of the main body plate 11 is provided with a through hole a.

[0035] When the embedded block 12 is embedded in the L-shaped embedded groove 13, the movable sliding block 16 can be pushed to move horizontally on the T-shaped rail 15 by a tool passing through the through hole a, at this time, the movable sliding block 16 is vertically dislocated with the fixed top block 14, that is, the movable sliding block 16 is clamped into the horizontal slot of the L-shaped embedded groove 13, thereby ensuring that the embedded block 12 cannot fall out of the L-shaped embedded groove 13, and achieving the position locking effect, and when the movable sliding block 16 moves horizontally, when the column hole 18 overlaps with the pin hole 19, the elastic pin column 17 is inserted into the pin hole 19 under the elastic effect, thereby locking the position of the movable sliding block 16.

[0036] Referring to Figure 7 , the elastic pin column 17 includes a connecting column 171 and a pin cylinder 172, the pin cylinder 172 is slidably sleeved with a sliding block 173 inside, the connecting column 171 is fixedly connected with the top of the column hole 18, the connecting column 171 penetrates into the pin cylinder 172 inside and is fixedly connected with the sliding block 173 at the bottom end, and the top of the pin cylinder 172 is drivingly connected with the top of the column hole 18 through a spring 174.

[0037] When the column hole 18 overlaps with the pin hole 19, the pin cylinder 172 can be inserted into the pin hole 19 under the elastic effect of the spring 174, and the elastic pin column 17 and the pin cylinder 172 can prevent the pin cylinder 172 from being separated from the column hole 18.

[0038] The above shows and describes the basic principle, main features and advantages of the utility model. The utility model is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The protection scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. An integrally formed high-strength heat-insulating aluminum sectional material, characterized by: The application relates to a main body aluminum material (1) comprising a plurality of vertically stacked combinations; the main body aluminum material (1) is internally provided with a middle interlayer, the middle interlayer is internally provided with a reinforcing rib structure (2) and is filled with a heat insulation layer, the reinforcing rib structure (2) is overlapped with the heat insulation layer, the reinforcing rib structure (2) is composed of a plurality of unit structures (21) arranged transversely, and two adjacent unit structures (21) are fixedly connected.

2. The integrally formed high-strength heat-insulating aluminum material according to claim 1, characterized by: The unit structure (21) is composed of a rectangular frame and a cross support plate, the cross support plate is inclined by 45 degrees, the unit structure (21) is internally divided into four triangular hollow areas (22) by the cross support plate, and the four unit structures (21) are internally filled with the heat insulation layer.

3. The integrally formed high-strength heat-insulating aluminum material according to claim 2, characterized by: A plurality of through holes (24) are formed in four surfaces of the cross support plate of the unit structure (21), the through holes (24) are used for connecting the four triangular hollow areas (22) with each other, a plurality of through holes (25) are formed in two sides of the rectangular frame of the unit structure (21), the through holes (25) are used for connecting the triangular hollow areas (22) in two adjacent unit structures (21), and the heat insulation layer is polyurethane foam.

4. The integrally formed high-strength heat-insulating aluminum material according to claim 1, characterized by: A plurality of positioning grooves (23) are formed in the top and bottom of the unit structure (21), a plurality of positioning strips (3) are arranged on the top and bottom of the middle interlayer of the main body aluminum material (1), and the positioning strips (3) are clamped into the positioning grooves (23).

5. The integrally formed high strength thermally insulated aluminum profile of claim 1, wherein: The main body aluminum material (1) comprises a main body plate (11), the bottom of the main body plate (11) is symmetrically provided with embedded blocks (12), the top of the main body plate (11) is symmetrically provided with L-shaped embedding grooves (13), two embedded blocks (12) of one main body aluminum material (1) are embedded into two L-shaped embedding grooves (13) of another main body aluminum material (1) to complete the stacked combination.

6. The integrally formed high strength thermally insulated aluminum profile of claim 5, wherein: The embedded block (12) comprises a fixed top block (14), the bottom of the fixed top block (14) is fixedly connected with a T-shaped rail (15), the bottom of the fixed top block (14) is provided with a movable sliding block (16), the movable sliding block (16) is slidingly sleeved on the side wall of the T-shaped rail (15), the bottom of the fixed top block (14) is provided with a column hole (18), the top of the movable sliding block (16) is provided with a pin hole (19), the column hole (18) is fixedly connected with an elastic pin column (17) inside, and the side of the main body plate (11) is provided with a perforation a.

7. The integrally formed high strength thermally insulated aluminum profile of claim 6, wherein: The elastic pin column (17) comprises a connecting column (171) and a pin barrel (172), the pin barrel (172) is slidingly sleeved with a sliding block (173) inside, the top end of the connecting column (171) is fixedly connected with the top of the column hole (18), the bottom end of the connecting column (171) penetrates into the pin barrel (172) and is fixedly connected with the sliding block (173), and the top of the pin barrel (172) is drivingly connected with the top of the column hole (18) through a spring (174).

Citation Information

Patent Citations

  • Integrally-formed high-strength heat insulation aluminum profile

    CN222616559U