Space diamond cut facet grid unit frame assembly

By using welded and precision-cut spatial diamond-cut grid unit frame components, the problem of unevenness in spatial positioning and docking of aluminum profile frames is solved, achieving good appearance and safety, and meeting the appearance and functional requirements of building projects.

CN224549440UActive Publication Date: 2026-07-24SHANG HAI FU YI MU QIANG GONG CHENG YOU XIAN GONG SI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANG HAI FU YI MU QIANG GONG CHENG YOU XIAN GONG SI
Filing Date
2025-07-23
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

In the existing technology, the aluminum profile frame of the diamond-cut grille unit has a problem of non-smoothness in spatial positioning and docking, resulting in poor appearance. Moreover, the traditional connection method cannot meet the appearance size and safety requirements of the building project.

Method used

The system adopts a spatial diamond-cut grid unit frame assembly, which is made by welding eight profile frame individual keels, combining BIM model for precise cutting and positioning, using clamps to fix the keels for spatial positioning to ensure smooth connection, and then performing fluorocarbon spraying treatment.

Benefits of technology

It achieves a good connection effect of diamond-cut grille units, meets the building's appearance size and safety requirements, enhances the aesthetics and functionality of the curtain wall, and reflects the architectural design intent and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kind of space diamond cutting surface grid unit formula frame combination component, it is novel welded unit formula combination component, according to the space diamond cutting surface effect design of building, unit formula frame combination component is at least by the single keel welding of eight section frame and constitutes space diamond cutting surface grid, four frames as bottom frame by aluminum profile one, aluminum profile two and the aluminum profile four of two side section same, aluminum profile five, four section same aluminum profile three constitute cross point protruding four leg supports, four legs of four leg support are connected in the inside four corners of bottom frame, constitute space diamond cutting surface grid unit formula frame combination component.It guarantees the aluminum profile frame connection safety of space diamond cutting surface grid modeling unit and completion effect, the welded unit formula combination component curtain wall system formed, satisfy the stress system of curtain wall system, realize building penetration and aesthetic effect at the same time, ensure the rationality and reliability of curtain wall structure.
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Description

Technical Field

[0001] This utility model relates to the field of building curtain wall technology. It is a welded unit assembly component for positioning aluminum profile frames in high and low spaces with diamond-cut grille units, so as to achieve an overall architectural visual effect of consistent diamond-cut decorative grille appearance in space. Background Technology

[0002] In current architectural design, most projects use traditional aluminum profile connection methods such as corner bracket connection, nail connection, and bolt connection for aluminum profile frame connection. The combination of aluminum profile frame splicing for spatial positioning of diamond-cut grille unit involves aluminum alloy profiles entering and exiting different spaces with uneven joints, which cannot well display the appearance effect and limits the guarantee of the finished frame appearance size. Traditional connection methods can no longer meet the needs of current projects.

[0003] Building Information Modeling (BIM) is a tool used in architecture, engineering, and civil engineering. It primarily involves 3D graphics, object-oriented design, and computer-aided design related to architecture, and is widely used in architectural design and construction.

[0004] Invention patent CN201310155938.6 describes a stone-like lightweight aluminum alloy grating. It consists of an aluminum alloy lightweight grating coated with a stone-like paint. The grating is constructed by welding horizontal aluminum alloy profile segments, vertical aluminum alloy profile segments, and irregularly shaped aluminum alloy profile segments together. The irregularly shaped aluminum alloy profile segments include those with planar shapes such as straight lines, curves, squares, circles, ellipses, or other polygons. Based on the spatial coordinates and shapes of various lightweight aluminum alloy gratings provided in the design drawings and the actual dimensions of the construction site, the aluminum alloy profile segments are welded together in a component factory to form the aluminum alloy grating. A layer of stone-like paint is then sprayed onto it to produce various stone-like lightweight aluminum alloy gratings. This stone-like lightweight aluminum alloy grating has a stone-like appearance, is lightweight, meets structural load-bearing requirements and safety performance, and its manufacturing method is simple.

[0005] Invention patent CN202111344493.7 discloses a cantilevered irregular aluminum grid curtain wall and its construction method. The cantilevered irregular aluminum grid curtain wall includes vertical cantilever components (3), horizontal beams (4), accessory plates (8), and connectors (9). One end of the vertical cantilever component is cantilevered and installed on the concrete structure (1) of the building. Several vertical cantilever components are spaced apart horizontally and longitudinally in the installation area of ​​the irregular aluminum grid curtain wall. The horizontal beam is connected to the other end of the vertical cantilever component through the accessory plate. Several horizontal beams are horizontally connected to adjacent vertical cantilever components at the same horizontal height to form a support frame. The irregular aluminum grid (5) is longitudinally installed on the horizontal beam through the connector, so that the irregular aluminum grid is cantilevered and installed on the outside of the building, and spliced ​​to form an aluminum grid curtain wall. The irregular aluminum grid is quickly installed through the support frame, and the irregular aluminum grid is quickly spliced ​​to form an irregular aluminum grid curtain wall through the connector.

[0006] Invention patent CN202311165374.4 discloses a primary installation method for a wall panel fixing device for diamond-cut facets. The device includes a square steel frame, a U-shaped guide rail, an adjusting component, and an installation tube. The adjusting component includes a connecting tube, with a first connecting block and a second connecting block fixedly connected to both ends. A slider and a connecting plate are respectively provided on opposite sides of the first and second connecting blocks. A rotating shaft is mounted on the outer side of the connecting plate via a fixing plate. This invention allows adjustment of the overall length of the adjusting component by adjusting the length of the connecting tube, thereby adjusting the tilt angle of the honeycomb aluminum panel and the stone panel. Simultaneously, the sliding cooperation between the adjusting component and the U-shaped guide rail enables rapid installation of the honeycomb aluminum panel and the stone panel without manual fixing. This simple operation saves time and effort, is less likely to damage the stone panel, and facilitates the tight joining of adjacent honeycomb aluminum panels for optimal splicing results. Summary of the Invention

[0007] The technical problem solved by this utility model is to provide a spatial diamond-cut grille unit frame assembly component that breaks away from the conventional aluminum alloy profile connection structure, so as to ensure the spatial positioning and connection safety and good docking effect of the aluminum profile frame of the diamond-cut grille unit.

[0008] This utility model provides a spatial diamond-cut grille unit frame assembly, designed according to the spatial diamond-cut effect of architecture. The unit frame assembly is composed of at least eight profile frame single keels welded together to form the unit frame of the spatial diamond-cut grille. It is composed of aluminum profile one, aluminum profile two, and aluminum profile four and aluminum profile five with the same cross-section on both sides to form a four-sided frame as the bottom frame. Four aluminum profile three with the same cross-section form a four-legged bracket with protruding intersection point. The four legs of the four-legged bracket are connected to the four inner corners of the bottom frame to form the spatial diamond-cut grille unit frame assembly.

[0009] The spatial diamond-cut grille unit frame assembly provided by this utility model meets the spatial stress requirements of the curtain wall exterior decoration system, and ensures the rationality and safety reliability of the curtain wall structure while achieving the desired effect of the building's diamond-cut surface design.

[0010] Based on the above scheme, a three-dimensional model of the diamond-cut facet shape is given according to the BIM model, and the bevel joints of the single keel profiles of the spatial irregular positioning and docking aluminum profile frame are tightly fitted.

[0011] Furthermore, aluminum profile one and aluminum profile two on the opposite side form the relatively long side of the bottom frame, while aluminum profile four and aluminum profile five with the same side cross-section on the two long sides form the short side of the bottom frame.

[0012] Preferably, the framework of the spatial diamond-cut grid curtain wall system is formed by the connection of two bottom frames.

[0013] This utility model also provides a welding method for the aforementioned spatial diamond-cut grille unit frame assembly component. The aluminum alloy frame of the spatial diamond-cut surface is precisely cut and machined at an angle so that the bevel assembly of each keel meets the design requirements of the spatial diamond-cut grille. After the diamond-cut keel is fixed by clamps for spatial positioning and docking, the overall welded and formed product is polished and then coated with fluorocarbon.

[0014] Specifically, a three-dimensional model of the diamond-cut facet shape is provided through BIM model. The joints between the single keel profiles of the spatial irregular positioning and docking aluminum alloy profile frame are processed. The docking shape of each profile is precisely cut at the angle. The irregularly cut keel is fixed with clamps for spatial positioning and docking. After adjusting the positioning dimensions, the aluminum profile is subjected to strong penetration welding.

[0015] The welding requirements are as follows: 1) The surface of the welding wire must be clean and free of oxide scale. Welding wire with a thick oxide scale on its surface is not allowed to be used. 2) The assembly of the weldment should be accurate. Before the formal welding, the bevel size of the aluminum profile should be checked and welding can only be carried out after it is qualified. 3) Before welding begins, the oxide layer on the surface of the aluminum profile at the welding location must be cleaned using a stainless steel brush. 4) The weld and heat-affected zone surfaces shall be 100% inspected and shall be free from defects such as cracks, lack of fusion, porosity, arc craters, slag inclusions and spatter. 5) Before welding, fixtures and backing plates should be made for the aluminum profiles; ensure that the parts are clamped on both sides when using fixtures; the backing plate material should be stainless steel or carbon steel; 6) The arc crater should be filled and the arc connection should be fused and penetrated; when closing the arc, raise the arc at a uniform speed and at the same time accelerate the filling of the welding wire until the arc is extinguished, so that the weld at the arc extinguishing point protrudes locally and grind off the excess height.

[0016] The technical solution adopted by this utility model to solve its technical problem is: a spatial diamond-cut grille unit frame assembly component, which uses clamps to fix the diamond-cut keel for spatial positioning and docking, and after welding and polishing, it is coated with fluorocarbon. This not only meets the overall external dimensions of the frame assembly, but also meets the smooth docking effect of the exterior decoration after the frame docking, meets the rigidity and strength requirements, and also achieves the integrity and continuity of the exterior decoration effect of the frame. The spatial diamond-cut aluminum alloy frame welding method is a good solution for the unit assembly component system.

[0017] The beneficial effects of this utility model are: while pursuing a perfect visual effect, it first respects and attaches importance to the spatial diamond-cut facet effect design of the building. Through the welding and polishing of the aluminum alloy frame of the combined component system, the aesthetics and functionality of the aluminum profile frame system curtain wall of the spatial diamond-cut facet grille unit are better improved, thereby reflecting the architect's design intention and the quality of the building itself. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings.

[0019] The present invention will be further described below with reference to the accompanying drawings.

[0020] Figure 1 This is a three-dimensional schematic diagram of the welding of a diamond-cut aluminum profile frame. Figure 2 This is a schematic diagram of the basic cross-section of various shapes of aluminum profile frames of this utility model, including long frame aluminum profile 1, aluminum profile 2, short frame aluminum profile 4, aluminum profile 5, and aluminum profile 3 forming the four-legged bracket with the intersection protrusion. Figure 3 This is a partial 3D schematic diagram of the frame of a diamond-cut surface in space; Figure 4 A three-dimensional schematic diagram of a curtain wall composed of a spatial diamond-cut grille. 10 – Space diamond-cut facet grid one; 20 – Space diamond-cut facet grid two; 1 – Aluminum profile one, 2 – Aluminum profile two 4 – Aluminum profile four, 5 – Aluminum profile five 3 - Aluminum Profiles (Part 3) Detailed Implementation

[0021] A spatial diamond-cut grille unit-type frame assembly component, such as Figures 1 to 3As shown, designed according to the spatial diamond-cut facet effect of the building, the unit frame of the spatial diamond-cut facet grille is formed by welding eight profile frames together. The four sides are formed by aluminum profile 1, aluminum profile 2, and aluminum profiles 4 and 5 with the same side cross-section. Four aluminum profiles 3 with the same cross-section form the four-legged support with protruding intersections. The four legs of the support are connected to the four corners of the inner side of the four sides, forming the unit frame of the spatial diamond-cut facet grille.

[0022] Based on the BIM model, a three-dimensional model of the diamond-cut facet shape is provided, and the bevel joints of the single keel profiles of the spatial irregular positioning and docking aluminum profile frame are tightly fitted.

[0023] like Figure 1 and 2 As shown, aluminum profile 1 and aluminum profile 2 on the opposite side form the long side of the four-sided frame, while aluminum profiles 4 and 5 with the same side cutouts form the short side of the four-sided frame.

[0024] The welding method for the spatial diamond-cut grille unit frame assembly component in this embodiment is as follows: The aluminum alloy frame with the diamond-cut facets is precisely cut at an angle so that the bevels of each keel meet the design requirements of the diamond-cut facet grid. After the diamond-cut facet keels are fixed with clamps for spatial positioning and docking, the overall welded keel is polished and then coated with fluorocarbon.

[0025] The fixture includes a clamp and a backing plate.

[0026] A 3D model of the diamond-cut facet shape is generated using BIM modeling. The joints between the individual keel profiles of the spatial irregular positioning and docking aluminum alloy frame require special processing. The docking shape of each profile is precisely cut at an angle. Special clamps that match the aluminum profiles are used to fix the irregularly cut keels for spatial positioning and docking. After adjusting the positioning dimensions, the aluminum profiles are welded with equal penetration. The specific welding requirements are as follows: 1. The surface of the welding wire must be clean and free of oxide scale. Welding wire with a thick oxide scale on its surface is not allowed to be used. 2. The assembly of weldments should be accurate. If the assembly is not good, it should not be forced to fit together to avoid excessive stress. Before the formal welding, the bevel size should be checked and welding can only be carried out after it is qualified. 3. Before welding begins, the oxide layer on the surface of the aluminum material to be welded must be cleaned using a special stainless steel brush. 4. The weld and heat-affected zone surfaces shall be 100% inspected and shall be free from defects such as cracks, lack of fusion, porosity, arc craters, slag inclusions and spatter. 5. Aluminum is prone to deformation and collapse during welding. Therefore, clamps should be made in a targeted manner before welding. When using clamps, both sides of the parts need to be clamped. The rigidity and clamping force of the clamps should be moderate. If they are too small, they will not be able to control the deformation. If they are too large, the weld will be too restrained and will easily crack. The backing plate material is generally stainless steel or carbon steel. 6. The arc crater should be filled, and the arc connection should be fused and penetrated. When closing the arc, raise the arc at a uniform speed and accelerate the filling of the welding wire until the arc is extinguished, so that the weld at the extinguished arc protrudes locally, and grind off any excess height.

[0027] A curtain wall composed of the spatial diamond-cut grille unit frame assembly components of this utility model, such as... Figure 4 As shown, the two spatial diamond-cut grilles 10 and 20 are assembled together, that is, the bottom frames of the two spatial diamond-cut grille unit frame-frame combination components are joined together, and the aluminum profile 3 forms a four-legged bracket with protruding intersections and is connected to the bottom frame, covering part of the diamond-cut grille curtain wall formed by the grille on the unit frame.

[0028] This embodiment utilizes an aluminum profile frame assembly for a spatial diamond-cut grille unit. This assembly addresses the connection between different spatial levels, overcoming the limitations of existing aluminum profile frame components where the joints are not smooth, hindering aesthetic presentation and limiting the final frame's dimensions. Traditional connection methods are insufficient for the project's needs. The integrated welding of the aluminum profile diamond-cut frame is a reasonable and reliable method for connecting spatial frames, allowing for the welding and fixing of irregular spatial shapes to adapt to architectural requirements. This breaks away from conventional aluminum alloy profile connection methods.

Claims

1. A spatial diamond-cut grille unit-type frame assembly component, designed according to the spatial diamond-cut effect of architecture, characterized in that... The unit frame assembly is formed by welding together at least eight profile frames to form a unit frame of a space diamond-cut grille. The four sides are formed by aluminum profile one (1), aluminum profile two (2) and aluminum profile four (4) and aluminum profile five (5) with the same cross-section on both sides as the bottom frame. Four aluminum profile three (3) with the same cross-section form a four-legged bracket with protruding intersection. The four legs of the four-legged bracket are connected to the four corners of the inner side of the bottom frame to form a unit frame assembly of a space diamond-cut grille.

2. The spatial diamond-cut grille unit frame assembly component according to claim 1, characterized in that, Based on the BIM model, a three-dimensional model of the diamond-cut facet shape is provided, and the bevel joints of the single keel profiles of the spatial irregular positioning and docking aluminum profile frame are tightly fitted.

3. The spatial diamond-cut grille unit frame assembly component according to claim 1 or 2, characterized in that, The bottom frame is formed by aluminum profile 1 (1) and aluminum profile 2 (2) on opposite sides, and aluminum profile 4 (4) and aluminum profile 5 (5) with the same cross-section on the two sides.

4. The spatial diamond-cut grille unit frame assembly component according to claim 3, characterized in that, The two bottom frames are joined together to form a spatial diamond-cut grid frame.

Citation Information

Patent Citations

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