An extra-large stone grid unit

The design of three stone honeycomb panels and connecting components enhances the connection strength of the extra-large stone grid unit, solves the problem of insufficient width of existing stone grid units, and achieves the stability and strength requirements of the extra-large stone grid unit.

CN224578997UActive Publication Date: 2026-07-31JIANGSU EVERGREEN DECORATING MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU EVERGREEN DECORATING MATERIAL CO LTD
Filing Date
2025-09-15
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

The existing rectangular strip-shaped stone grid units are too short to meet the needs of ultra-large stone grid units.

Method used

The design employs three stone honeycomb panels, with the connection strength enhanced by connecting components (including connecting rods, square tubes, and connectors) to form an extra-large grid unit.

Benefits of technology

After increasing the width of the extra-large stone grid unit, high connection strength was maintained, thus solving the problem of reduced connection strength.

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Abstract

This utility model discloses an ultra-large stone grating unit, including stone honeycomb panels and connecting components. The stone honeycomb panels include a first honeycomb panel, a second honeycomb panel, and a third honeycomb panel, which are spliced ​​together to form a channel steel shape. The connecting components are disposed within the channel-shaped space. The connecting components include a connecting rod, a square tube, and a connector. The square tube includes a first square tube and a second square tube, the connecting rod is disposed between the first and second square tubes, and the connector connects the square tube to the stone honeycomb panel. The grating unit of this utility model includes three stone honeycomb panels, with the second and third honeycomb panels fixedly connected to both sides of the first honeycomb panel. Due to the setting of the connecting components, the connection strength between the three honeycomb panels is high, and the width of the first honeycomb panel can be widened to obtain an ultra-large grating unit, solving the problem of reduced connection strength after the width of the grating unit is increased.
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Description

Technical Field

[0001] This utility model relates to a stone grid unit, specifically to an extra-large stone grid unit. Background Technology

[0002] Grille decorations on building facades are a facade design element that combines aesthetics and functionality. They are typically composed of strips or sheets made of metal, wood, composite materials, etc., arranged and combined according to specific rules. Decorative grilles are classified according to their materials, including metal grilles, wooden grilles, plastic grilles, stone grilles, and glass grilles.

[0003] For stone gratings, gratings made entirely of stone are relatively expensive and have high requirements for installation and strength. Gratings made of stone honeycomb panels not only have the function of a stone decorative surface, but are also lightweight and high-strength.

[0004] Chinese patent document CN 222314460 U (application number 202323662032.1) discloses a grating panel made of stone honeycomb panel, including a main body, connectors, and adapters. The main body includes a first panel, a second panel, a side panel, a first end panel, and a second end panel, which are assembled into a rectangular main body with one open side. A pair of adapters are spaced apart along the length of the inner side of the first and second panels, and the adapters are attached to the back panel of the honeycomb panel. This grating panel is a plate-shaped grating unit and is not suitable as an extra-large (especially wide) stone grating unit. Utility Model Content

[0005] The technical problem to be solved by this utility model is that the existing rectangular strip stone grid units are too short, and an ultra-large stone grid unit is provided.

[0006] The technical solution to achieve the purpose of this utility model is an ultra-large stone grid unit, including a stone honeycomb panel and a connecting component. The stone honeycomb panel includes a first honeycomb panel, a second honeycomb panel and a third honeycomb panel. The second honeycomb panel and the third honeycomb panel are vertically spliced ​​on both sides of the width direction X of the first honeycomb panel. The first honeycomb panel, the second honeycomb panel and the third honeycomb panel are spliced ​​into a channel steel shape. The connecting component is set in the channel space.

[0007] The connecting assembly includes a connecting rod, a square tube, and a connector. The square tube includes a first square tube and a second square tube. The connecting rod is disposed between the first square tube and the second square tube. The connector connects the square tube to the stone honeycomb panel.

[0008] The first square tube is located at the inside corner formed by the first honeycomb panel and the second honeycomb panel, and the second square tube is located at the inside corner formed by the first honeycomb panel and the third honeycomb panel.

[0009] The connector includes a first connector and a second connector. The first connector connects the first honeycomb panel to the first square tube, and the second connector connects the second honeycomb panel to the first square tube. The connector also includes a third connector and a fourth connector. The third connector connects the first honeycomb panel to the second square tube, and the fourth connector connects the third honeycomb panel to the second square tube.

[0010] Furthermore, adjacent honeycomb panels are connected by corner brackets, which include a first corner bracket and a second corner bracket. The first honeycomb panel and the second honeycomb panel are connected by the first corner bracket, and the first honeycomb panel and the third honeycomb panel are connected by the second corner bracket.

[0011] Specifically, one plate of the first corner bracket is attached to the surface of the aluminum back plate of the first honeycomb panel, and the other plate is attached to the surface of the aluminum back plate of the second honeycomb panel. The first corner bracket is then connected and fixed to the first and second honeycomb panels respectively using fasteners.

[0012] One plate of the second corner bracket is attached to the surface of the aluminum back plate of the first honeycomb panel, and the other plate is attached to the surface of the aluminum back plate of the third honeycomb panel. The second corner bracket is connected and fixed to the first honeycomb panel and the third honeycomb panel respectively by fasteners.

[0013] The square tubes are arranged on both sides of the width direction of the first honeycomb panel, and the connecting rods are arranged at intervals between the first and second square tubes along the length direction of the square tubes.

[0014] The two ends of the connecting rod are fixed to the first square tube and the second square tube, respectively.

[0015] Alternatively, the first square tube, the second square tube, and the connecting rod can be a single unit.

[0016] The first square tube includes four side plates (upper, lower, left, and right) and corresponding four side surfaces (upper, lower, left, and right). The upper and lower side surfaces are parallel to the first honeycomb panel, and the lower side surface is closer to the first honeycomb panel than the upper side surface. The left and right side surfaces are parallel to the second honeycomb panel, and the left side surface is closer to the second honeycomb panel than the right side surface. A first connector connects the first honeycomb panel to the right side plate of the first square tube, and a second connector connects the second honeycomb panel to the upper side plate of the first square tube.

[0017] The second square tube includes four side plates (upper, lower, left, and right) and corresponding four side surfaces (upper, lower, left, and right). The upper and lower side surfaces are parallel to the first honeycomb panel, and the lower side surface is closer to the first honeycomb panel than the upper side surface. The left and right side surfaces are parallel to the third honeycomb panel, and the right side surface is closer to the second honeycomb panel than the left side surface. The third connector connects the first honeycomb panel to the left side plate of the second square tube, and the fourth connector connects the third honeycomb panel to the upper side plate of the second square tube. The connector is L-shaped and includes two connecting plates, each with a hole.

[0018] This utility model has positive effects: The grid unit of this utility model includes three stone honeycomb panels. The second and third honeycomb panels are fixedly connected to both sides of the first honeycomb panel. Due to the setting of the connecting components, the connection strength between the three honeycomb panels is high. The width of the first honeycomb panel can be widened to obtain an ultra-large grid unit, which solves the problem of reduced connection strength after the width of the grid unit is increased. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of the grid unit of this utility model.

[0020] Figure 2 This is a schematic diagram of the connector.

[0021] Figure 3 This is a schematic diagram showing the connection between the grille unit and the mounting components.

[0022] The markings in the above figures are as follows: Stone honeycomb panel 1, first honeycomb panel 1a, second honeycomb panel 1b, third honeycomb panel 1c, stone panel 1-1, middle aluminum plate 1-2, honeycomb core 1-3, aluminum back plate 1-4, corner bracket 2, first corner bracket 2-1, second corner bracket 2-2, connecting rod 3, square tube 4, first square tube 4-1, second square tube 4-2, connector 5, first connector 5-1, second connector 5-2, third connector 5-3, fourth connector 5-4, hole 5-5, lifting lug 6, hanging rod 7. Detailed Implementation

[0023] The following describes some of the possible embodiments of this utility model, intended to provide a basic understanding of the utility model, and is not intended to identify the key or decisive elements of the utility model or limit the scope of protection to be provided. It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose other interchangeable implementations without changing the essential spirit of the utility model. Therefore, the following specific embodiments are merely illustrative examples of the technical solution of this utility model and should not be considered as the entirety of this utility model or as a limitation or restriction of the technical solution of this utility model.

[0024] In the description of the embodiments of this application, the technical terms "upper", "lower", "front", "rear", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application.

[0025] (Example 1) See Figures 1 to 3The extra-large stone grid unit in this embodiment includes a stone honeycomb panel 1 and a connecting component. The stone honeycomb panel 1 includes a first honeycomb panel 1a, a second honeycomb panel 1b and a third honeycomb panel 1c. The second honeycomb panel 1b and the third honeycomb panel 1c are vertically spliced ​​on both sides of the width direction X of the first honeycomb panel 1a. The first honeycomb panel 1a, the second honeycomb panel 1b and the third honeycomb panel 1c are spliced ​​into a channel shape, and the connecting component is set in the channel space.

[0026] Each honeycomb panel, from the outside in, includes a stone panel 1-1, an intermediate aluminum plate 1-2, a honeycomb core 1-3, and an aluminum back plate 1-4 connected in sequence. The honeycomb core 1-3 is bonded and fixed between the intermediate aluminum plate 1-2 and the aluminum back plate 1-4. The stone panel 1-1 is bonded to the other side of the intermediate aluminum plate 1-2. The surface of the stone panel 1-1 is also the decorative surface of the honeycomb panel.

[0027] When the first honeycomb panel 1a and the second honeycomb panel 1b are spliced, the joints of the first honeycomb panel 1a and the second honeycomb panel 1b are beveled, and then spliced ​​so that the stone panels of the two honeycomb panels form a right angle. Similarly, when the first honeycomb panel 1a and the third honeycomb panel 1c are spliced, the joints of the first honeycomb panel 1a and the third honeycomb panel 1c are beveled, and then spliced ​​so that the stone panels of the two honeycomb panels form a right angle.

[0028] The connecting assembly includes corner bracket 2, connecting rod 3, square tube 4 and connector 5. Corner bracket 2 connects two adjacent honeycomb panels. Square tube 4 includes a first square tube 4-1 and a second square tube 4-2. Connecting rod 3 is arranged between the first square tube 4-1 and the second square tube 4-2 along the width direction of the first honeycomb panel 1a. Connector 5 is used to connect square tube 4 and stone honeycomb panel 1.

[0029] The corner bracket 2 includes a first corner bracket 2-1 and a second corner bracket 2-2. The first honeycomb panel 1a and the second honeycomb panel 1b are connected by the first corner bracket 2-1, which is located on one side of the internal angle formed by the first honeycomb panel 1a and the second honeycomb panel 1b. One plate of the first corner bracket 2-1 is attached to the surface of the aluminum back plate of the first honeycomb panel 1a, and the other plate is attached to the surface of the aluminum back plate of the second honeycomb panel 1b. The first corner bracket 2-1 is connected and fixed to the first honeycomb panel 1a and the second honeycomb panel 1b respectively by fasteners.

[0030] The first honeycomb panel 1a and the third honeycomb panel 1c are connected by a second angle bracket 2-2, which is located on one side of the internal angle formed by the first honeycomb panel 1a and the third honeycomb panel 1c. One plate of the second angle bracket 2-2 is attached to the surface of the aluminum back plate of the first honeycomb panel 1a, and the other plate is attached to the surface of the aluminum back plate of the third honeycomb panel 1c. The second angle bracket 2-2 is connected and fixed to the first honeycomb panel 1a and the third honeycomb panel 1c respectively by fasteners.

[0031] Square tubes 4 are arranged on both sides of the width direction of the first honeycomb panel 1a. Optionally, the length of the square tubes 4 is basically the same as the length of the stone honeycomb panel 1.

[0032] The square tube 4 includes the first square tube 4-1 and the second square tube 4-2.

[0033] The first square tube 4-1 is located at the inside corner formed by the first honeycomb panel 1a and the second honeycomb panel 1b. According to... Figure 1 The first square tube 4-1 includes four side plates: upper, lower, left, and right, corresponding to four sides. The upper and lower sides are parallel to the first honeycomb panel 1a, with the lower side being closer to the first honeycomb panel 1a than the upper side. The left and right sides are parallel to the second honeycomb panel 1b, with the left side being closer to the second honeycomb panel 1b than the right side.

[0034] The first square tube 4-1 is connected to the first honeycomb panel 1a and the second honeycomb panel 1b respectively via connectors 5. Connector 5 is an L-shaped connector, with the structure as follows: Figure 2 As shown, it includes two connecting plates, each with a hole 5-5.

[0035] The connector 5 includes a first connector 5-1 and a second connector 5-2. The first connector 5-1 connects the first honeycomb panel 1a to the right side plate of the first square tube 4-1, and the second connector 5-2 connects the second honeycomb panel 1b to the upper side plate of the first square tube 4-1. For example, one connecting plate of the first connector 5-1 is attached to the aluminum back plate of the first honeycomb panel 1a and then fastened to the first connector 5-1 and the first honeycomb panel 1a by fasteners, and the other connecting plate is attached to the right side of the first square tube 4-1 and then fastened to the first connector 5-1 and the right side plate of the first square tube 4-1 by fasteners (not shown in the figure). The method by which the second connector 5-2 connects the second honeycomb panel 1b to the first square tube 4-1 is the same as that of the first connector 5-1.

[0036] The second square tube 4-2 is located at the inside corner formed by the first honeycomb panel 1a and the third honeycomb panel 1c. According to... Figure 1 The second square tube 4-2 includes four side plates: upper, lower, left, and right. The upper and lower sides are parallel to the first honeycomb plate 1a, and the lower side is closer to the first honeycomb plate 1a than the upper side. The left and right sides are parallel to the third honeycomb plate 1c, and the right side is closer to the second honeycomb plate 1b than the left side.

[0037] The second square tube 4-2 is connected to the first honeycomb panel 1a and the third honeycomb panel 1c respectively via connectors 5.

[0038] The connector 5 also includes a third connector 5-3 and a fourth connector 5-4. The third connector 5-3 connects the first honeycomb panel 1a to the left side plate of the second square tube 4-2, and the fourth connector 5-4 connects the third honeycomb panel 1c to the upper side plate of the second square tube 4-2. The way the third connector 5-3 and the fourth connector 5-4 connect the honeycomb panel and the square tube is the same as that of the first connector 5-1.

[0039] Along the length of the first square tube 4-1 and the second square tube 4-2, connecting rods 3 are spaced apart between the first square tube 4-1 and the second square tube 4-2. The two ends of the connecting rods 3 are fixed to the right side plate of the first square tube 4-1 and the left side plate of the second square tube 4-2, respectively. The fixing method can be any suitable method such as fasteners or welding. Alternatively, the first square tube 4-1, the second square tube 4-2, and the connecting rods 3 can be a single piece.

[0040] By setting connecting rods 3 and square tubes 4 between the first honeycomb plate 1a, the second honeycomb plate 1b and the third honeycomb plate 1c, the mechanical strength of the groove structure formed by the first honeycomb plate 1a, the second honeycomb plate 1b and the third honeycomb plate 1c is enhanced. Even when the width of the first honeycomb plate 1a is relatively wide, it still has strong stability. If the width of the first honeycomb plate 1a continues to increase, the spacing between adjacent connecting rods 3 can be reduced to ensure the connection strength.

[0041] See Figure 3 When using the grille of this utility model, it can be installed on the building using the lifting lugs 6 and the hanging rods 7. For example, the first square tube 4-1 and the second square tube 4-2 are respectively fixed to the lifting lugs 6, and the lifting lugs 6 are hung on the hanging rods 7.

Claims

1. A super stone grid unit, characterized by: The invention includes a stone honeycomb panel (1) and a connecting component. The stone honeycomb panel (1) includes a first honeycomb panel (1a), a second honeycomb panel (1b) and a third honeycomb panel (1c). The second honeycomb panel (1b) and the third honeycomb panel (1c) are vertically spliced ​​on both sides of the width direction X of the first honeycomb panel (1a). The first honeycomb panel (1a), the second honeycomb panel (1b) and the third honeycomb panel (1c) are spliced ​​into a channel shape. The connecting component is set in the channel space. The connecting assembly includes a connecting rod (3), a square tube (4) and a connector (5). The square tube (4) includes a first square tube (4-1) and a second square tube (4-2). The connecting rod (3) is located between the first square tube (4-1) and the second square tube (4-2). The connector (5) connects the square tube (4) to the stone honeycomb panel (1). The first square tube (4-1) is located at the inside corner formed by the first honeycomb plate (1a) and the second honeycomb plate (1b), and the second square tube (4-2) is located at the inside corner formed by the first honeycomb plate (1a) and the third honeycomb plate (1c). The connector (5) includes a first connector (5-1) and a second connector (5-2). The first connector (5-1) connects the first honeycomb panel (1a) and the first square tube (4-1), and the second connector (5-2) connects the second honeycomb panel (1b) and the first square tube (4-1). The connector (5) also includes a third connector (5-3) and a fourth connector (5-4). The third connector (5-3) connects the first honeycomb panel (1a) and the second square tube (4-2), and the fourth connector (5-4) connects the third honeycomb panel (1c) and the second square tube (4-2).

2. The oversized stone grid unit of claim 1, wherein: Two adjacent honeycomb panels are connected by corner brackets (2). Corner brackets (2) include a first corner bracket (2-1) and a second corner bracket (2-2). The first honeycomb panel (1a) and the second honeycomb panel (1b) are connected by the first corner bracket (2-1), and the first honeycomb panel (1a) and the third honeycomb panel (1c) are connected by the second corner bracket (2-2).

3. The oversized stone grid unit of claim 2, wherein: One plate of the first corner bracket (2-1) is attached to the surface of the aluminum back plate of the first honeycomb plate (1a), and the other plate is attached to the surface of the aluminum back plate of the second honeycomb plate (1b). The first corner bracket (2-1) is connected and fixed to the first honeycomb plate (1a) and the second honeycomb plate (1b) respectively by fasteners.

4. The oversized stone grid unit of claim 2, wherein: One plate of the second corner bracket (2-2) is attached to the surface of the aluminum back plate of the first honeycomb plate (1a), and the other plate is attached to the surface of the aluminum back plate of the third honeycomb plate (1c). The second corner bracket (2-2) is connected and fixed to the first honeycomb plate (1a) and the third honeycomb plate (1c) respectively by fasteners.

5. The oversized stone grid unit of claim 1, wherein: Square tubes (4) are arranged on both sides of the width direction of the first honeycomb plate (1a), and connecting rods (3) are arranged at intervals between the first square tube (4-1) and the second square tube (4-2) along the length direction of the square tubes (4).

6. The oversized stone grid unit of claim 5, wherein: The two ends of the connecting rod (3) are fixed to the first square tube (4-1) and the second square tube (4-2) respectively.

7. The oversized stone grid unit of claim 6, wherein: The first square tube (4-1), the second square tube (4-2), and the connecting rod (3) are a single piece.

8. The oversized stone grid unit of claim 1, wherein: The first square tube (4-1) includes four side plates (upper, lower, left, and right) and corresponding four side surfaces (upper, lower, left, and right). The upper and lower side surfaces are parallel to the first honeycomb panel (1a), and the lower side surface is closer to the first honeycomb panel (1a) than the upper side surface. The left and right side surfaces are parallel to the second honeycomb panel (1b), and the left side surface is closer to the second honeycomb panel (1b) than the right side surface. The first connector (5-1) connects the first honeycomb panel (1a) to the right side plate of the first square tube (4-1), and the second connector (5-2) connects the second honeycomb panel (1b) to the upper side plate of the first square tube (4-1).

9. The oversized stone grid unit of claim 1, wherein: The second square tube (4-2) includes four side plates (upper, lower, left, and right) and corresponding four side surfaces (upper, lower, left, and right). The upper and lower side surfaces are parallel to the first honeycomb plate (1a), and the lower side surface is closer to the first honeycomb plate (1a) than the upper side surface. The left and right side surfaces are parallel to the third honeycomb plate (1c), and the right side surface is closer to the second honeycomb plate (1b) than the left side surface. The third connector (5-3) connects the first honeycomb plate (1a) to the left side plate of the second square tube (4-2), and the fourth connector (5-4) connects the third honeycomb plate (1c) to the upper side plate of the second square tube (4-2).

10. The extra-large stone grid unit according to claim 8 or 9, characterized in that: The connector (5) is L-shaped and includes two connecting plates, each with a hole (5-5).