Arc-shaped multi-fold modeling stone cellular board

Through the connection method of unit assembly and angle patch glue, the problem of low efficiency of on-site splicing arc-shaped multi-folded stone honeycomb boards is solved, and the rapid installation and strength improvement of complex shapes is achieved.

CN223061914UActive Publication Date: 2025-07-04JIANGSU EVERGREEN DECORATING MATERIAL CO LTD
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Patent Information

Application Number
CN202422129854.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-31
Publication Date
2025-07-04
Estimated Expiration
2034-08-31

AI Technical Summary

Technical Problem

The efficiency of splicing arc-shaped multi-fold stone honeycomb boards on site is low, making it difficult to quickly achieve complex decorative effects.

Method used

The arc-shaped multi-fold shape stone honeycomb board is equipped with unit-type assembly, and the connection method is used to combine angle codes and structural glue, including right angle codes and three-hedged angle codes. Adjacent plates are fixed at the male corners and female corners, and built-in nuts are used to facilitate connection with the steel structure.

Benefits of technology

It realizes rapid installation of complex shapes, saves on-site cutting and splicing time, improves work efficiency, and enhances the connection strength of the board.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an arc-shaped multi-fold modeling stone cellular board, a main body of the arc-shaped multi-fold modeling stone cellular board comprises one or more than one bend, and at least one of single boards forming the arc-shaped multi-fold modeling stone cellular board is an arc-shaped board. The utility model provides an arc-shaped multi-fold modeling stone cellular board which at least comprises one bend, can be assembled in a unit mode to obtain more complex modeling, and saves a large amount of time for field cutting, field splicing and fixing. According to the arc-shaped multi-fold modeling stone cellular board, when the boards are connected, the boards are mechanically fixed through corner connectors and fixed through structural adhesives; and a three-side corner connector is used at the internal corner joint, so that the gluing operation is convenient.
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Description

Technical Field

[0001] The utility model relates to building decoration materials, in particular to an arc multi-fold shaped stone honeycomb panel. Background Technique

[0002] Building decoration shapes are in various forms and materials are also diverse. Many buildings use shaped plates with an arc cross-section or curved honeycomb panels to achieve decorative effects. In addition, in some scenarios, stone is used as the decorative surface for design styles. Pure stone decoration materials are not only heavy, but also costly to process into a curved surface and have low strength. The application of stone honeycomb panels can not only achieve the decorative effect of stone, but also be lightweight, improve the bending, folding and shear strength of the panels, and save the consumption of limited resources such as decorative stone, which is the general trend of the construction industry to practice the concept of sustainable development.

[0003] For a simple arc honeycomb panel or curved honeycomb panel, such as a litchi surface ultra-thin arc stone honeycomb panel disclosed in Chinese Patent Document CN 203651090 U (application number 201320835252.7), which includes a circular arc-shaped stone surface layer, a metal plate intermediate layer that fits and is pasted on the inner side of the stone surface layer, a honeycomb core layer that fits and is pasted on the inner side of the metal plate intermediate layer, and a metal plate back layer that fits and is pasted on the inner side of the honeycomb core layer. The processing and production of arc multi-fold shaped stone honeycomb panels have high requirements for technology.

[0004] However, some existing designs not only use a single arc honeycomb panel shape, but also use an arc multi-fold shape, that is, the shape includes at least one arc honeycomb panel and the arc honeycomb panel is spliced with other plates to form multiple bends. If all these bend shapes are spliced on-site, the working efficiency will be very low. Content of the Utility Model

[0005] The technical problem to be solved by the utility model is the low on-site splicing efficiency of the arc multi-fold shape spliced with honeycomb panels, and provides a unitized arc multi-fold shaped stone honeycomb panel, which can be unitized assembled to obtain a more complex shape.

[0006] The technical solution to achieve the purpose of the utility model is an arc multi-fold shaped stone honeycomb panel. The multi-fold shape includes at least one bend, and among the single plates forming the arc multi-fold shaped stone honeycomb panel, at least one is an arc plate.

[0007] When the surface where the internal angle formed by two adjacent plates is located is the decorative surface, use a right-angle corner code to connect and fix at the external angle formed by these two plates.

[0008] When the surface where the external angle formed by two adjacent plates is located is the decorative surface, use a three-sided corner code to connect and fix at the internal angle formed by these two plates.

[0009] The three-sided corner code includes two fixed sides and a connecting side between the two fixed sides.

[0010] When the three-sided corner code is connected and fixed at the internal angle formed by two adjacent honeycomb panels, the two fixed sides of the three-sided corner code are respectively tightened and fixed with nuts pre-set in the two adjacent honeycomb panels by bolts, and the two fixed sides of the three-sided corner code are respectively attached to the back surfaces of the two adjacent honeycomb panels.

[0011] When the right-angle corner code is connected and fixed at the external angle formed by two adjacent panels, the two fixed sides of the right-angle corner code are respectively tightened and fixed with nuts pre-set in the two adjacent honeycomb panels by bolts, and the two fixed sides of the right-angle corner code are respectively attached to the back surfaces of the two adjacent honeycomb panels.

[0012] Optionally, in addition to the corner code connection, nuts are pre-set at other positions within the single honeycomb panel forming the multi-fold shape.

[0013] Optionally, the decorative surface of the single honeycomb panel forming the arc-shaped multi-fold shape is a stone surface.

[0014] The utility model has positive effects:

[0015] (1) The utility model provides an arc-shaped multi-fold shaped stone honeycomb panel, including at least one bend, and at least one arc-shaped panel in the multi-fold shape, which can be assembled unitarily to obtain a more complex shape, saving a large amount of time for on-site cutting, on-site splicing and fixing.

[0016] (2) When the plates of the arc-shaped multi-fold shaped stone honeycomb panel of the utility model are connected, not only mechanical fixing with corner codes is used, but also fixing with structural adhesive; three-sided corner codes are used at the internal angle connection, facilitating the caulking operation.

[0017] (3) For the convenience of installation, nuts are also built into the plate body of the arc-shaped multi-fold shaped stone honeycomb panel, facilitating connection and fixing with a steel structure using fasteners. Description of the Drawings

[0018] Figure 1 It is a schematic external view of the arc-shaped multi-fold shaped stone honeycomb panel of Embodiment 1.

[0019] Figure 2 It is a front view of the assembled structure of the arc-shaped multi-fold shaped stone honeycomb panel in the form of Embodiment 1.

[0020] Figure 3 It is a schematic external view of the arc-shaped multi-fold shaped stone honeycomb panel of Embodiment 2.

[0021] Figure 4 It is a front view of the assembled structure of the arc-shaped multi-fold shaped stone honeycomb panel in the form of Embodiment 2.

[0022] Figure 5It is an enlarged sectional view of a trihedral angle code.

[0023] Figure 6 It is a schematic external view of an arc multi-fold shaped stone honeycomb panel of Embodiment 3.

[0024] Figure 7 It is a schematic external view of an arc multi-fold shaped stone honeycomb panel of Embodiment 4.

[0025] The markings in the above-mentioned drawings are as follows:

[0026] The first honeycomb panel 1, the first decorative surface 1-1, the second honeycomb panel 2, the second decorative surface 2-1, the third honeycomb panel 3, the third decorative surface 3-1, the trihedral angle code 4, the fixed edge 4-1, the connecting edge 4-2, the right-angle code 5, the nut 6, and the bolt 7. Specific embodiments

[0027] (Embodiment 1)

[0028] See Figure 1 、 Figure 2 and Figure 5 For this arc multi-fold shaped stone honeycomb panel of this embodiment, the overall cross-section is in a groove shape or a door frame shape. Figure 1 As shown in the figure, it is in a door frame shape, and it becomes a groove shape after being flipped 180°; it includes two bends.

[0029] This arc multi-fold shaped stone honeycomb panel of this embodiment includes the first honeycomb panel 1, the second honeycomb panel 2, the third honeycomb panel 3, the trihedral angle code 4, the nut 6, and the bolt 7.

[0030] The main body of the arc multi-fold shaped stone honeycomb panel is composed of the first honeycomb panel 1, the second honeycomb panel 2, and the third honeycomb panel 3. The first honeycomb panel 1 is a curved panel, and the third honeycomb panel 3 is a curved panel. The first honeycomb panel 1 and the third honeycomb panel 3 are connected to both ends of the second honeycomb panel 2 and are located on the same side of the second honeycomb panel 2. The second honeycomb panel 2 is a curved panel or a flat panel.

[0031] The decorative surfaces of the first honeycomb panel 1, the second honeycomb panel 2, and the third honeycomb panel 3 face outward respectively. The surfaces where the external corners formed by the first honeycomb panel 1 and the second honeycomb panel 2, and the third honeycomb panel 3 and the second honeycomb panel 2 are located are decorative surfaces. Specifically, in this embodiment, the first decorative surface 1-1 of the first honeycomb panel 1 faces left, the second decorative surface 2-1 of the second honeycomb panel 2 faces upward, and the third decorative surface 3-1 of the third honeycomb panel 3 faces right.

[0032] The first honeycomb panel 1 and the second honeycomb panel 2 are connected by a three-sided corner code 4. The first honeycomb panel 1 and the second honeycomb panel 2 are respectively processed with beveled surfaces and the cut surfaces are fitted and spliced. After positioning with a mold, the two fixed sides of the three-sided corner code 4 are respectively tightened and fixed with bolts 7 and the nuts 6 preset in the first honeycomb panel 1 and the second honeycomb panel 2. The two fixed sides of the three-sided corner code 4 are respectively fitted to the backs of the first honeycomb panel 1 and the second honeycomb panel 2.

[0033] Similarly, the third honeycomb panel 3 and the second honeycomb panel 2 are connected by a three-sided corner code 4. The third honeycomb panel 3 and the second honeycomb panel 2 are respectively processed with beveled surfaces and the cut surfaces are fitted and spliced. After positioning with a mold, the two fixed sides of the three-sided corner code 4 are respectively tightened and fixed with bolts 7 and the nuts 6 preset in the third honeycomb panel 3 and the second honeycomb panel 2. The two fixed sides of the three-sided corner code 4 are respectively fitted to the backs of the third honeycomb panel 3 and the second honeycomb panel 2.

[0034] See Figure 5 , the cross-section of the three-sided corner code 4 is in the shape of ︹, including two fixed sides 4-1 and a connecting side 4-2 between the two fixed sides 4-1. After the two fixed sides 4-1 are fixed to the first honeycomb panel 1 and the second honeycomb panel 2, a gap is left between the connecting side 4-2 and the internal corner for convenient caulking. Similarly, after the two fixed sides 4-1 are fixed to the second honeycomb panel 2 and the third honeycomb panel 3, a gap is left between the connecting side 4-2 and the corresponding internal corner.

[0035] In addition to the corner code connection points, other nuts 6 are also preset in the first honeycomb panel 1 and the third honeycomb panel 3 for installation with the steel structure.

[0036] (Embodiment 2)

[0037] See Figure 3 , Figure 4 and Figure 5 , the arc-shaped multi-folded stone honeycomb panel of this embodiment includes two bends, and the overall cross-section is in the shape of a right-angled Z; it includes a first honeycomb panel 1, a second honeycomb panel 2, a third honeycomb panel 3, a three-sided corner code 4, a right-angled corner code 5, a nut 6 and a bolt 7. The main body of the arc-shaped multi-folded stone honeycomb panel is composed of the first honeycomb panel 1, the second honeycomb panel 2 and the third honeycomb panel 3, and the first honeycomb panel 1, the second honeycomb panel 2 and the third honeycomb panel 3 are curved panels.

[0038] The first honeycomb panel 1 and the third honeycomb panel 3 are connected to both ends of the second honeycomb panel 2 and are located on both sides of the second honeycomb panel 2.

[0039] The decorative surfaces of the first honeycomb panel 1, the second honeycomb panel 2, and the third honeycomb panel 3 face outward, and the surfaces where the internal angle formed by the first honeycomb panel 1 and the second honeycomb panel 2 and the external angle formed by the third honeycomb panel 3 and the second honeycomb panel 2 are located are decorative surfaces. Specifically, in this embodiment, the first decorative surface 1-1 of the first honeycomb panel 1 faces right, the second decorative surface 2-1 of the second honeycomb panel 2 faces upward, and the third decorative surface 3-1 of the third honeycomb panel 3 faces right.

[0040] The first honeycomb panel 1 and the second honeycomb panel 2 are connected to each other on their respective backs by a right-angle corner fitting 5. The first honeycomb panel 1 and the second honeycomb panel 2 are respectively processed with beveled surfaces and the cut surfaces are fitted and spliced. After positioning with a mold, the two fixing sides of the right-angle corner fitting 5 are respectively tightened and fixed with bolts 7 and the nuts 6 preset in the first honeycomb panel 1 and the second honeycomb panel 2.

[0041] The third honeycomb panel 3 and the second honeycomb panel 2 are connected by a three-sided corner fitting 4. The third honeycomb panel 3 and the second honeycomb panel 2 are respectively processed with beveled surfaces and the cut surfaces are fitted and spliced. After positioning with a mold, the two fixing sides of the three-sided corner fitting 4 are respectively tightened and fixed with bolts 7 and the nuts 6 preset in the third honeycomb panel 3 and the second honeycomb panel 2, and the two fixing sides of the three-sided corner fitting 4 are respectively attached to the backs of the third honeycomb panel 3 and the second honeycomb panel 2.

[0042] In addition to the corner fitting connection, other nuts 6 are also preset in the first honeycomb panel 1 and the third honeycomb panel 3 for installation with the steel structure.

[0043] (Embodiment 3)

[0044] See Figure 6 , the arc-shaped multi-folded stone honeycomb panel of this embodiment is L-shaped and includes one bend. The main body is composed of the first honeycomb panel 1 and the second honeycomb panel 2. The first honeycomb panel 1 is a curved panel, and the second honeycomb panel 2 is a curved panel, and can also be a flat panel according to design requirements.

[0045] When the surface where the internal angle formed by the first honeycomb panel 1 and the second honeycomb panel 2 is located is the decorative surface, refer to Figure 4 , the first honeycomb panel 1 and the second honeycomb panel 2 are connected to each other on their respective backs by a right-angle corner fitting 5. The first honeycomb panel 1 and the second honeycomb panel 2 are respectively processed with beveled surfaces and the cut surfaces are fitted and spliced. After positioning with a mold, the two fixing sides of the right-angle corner fitting 5 are respectively tightened and fixed with bolts 7 and the nuts 6 preset in the first honeycomb panel 1 and the second honeycomb panel 2.

[0046] When the surface where the external angle formed by the first honeycomb panel 1 and the second honeycomb panel 2 is located is the decorative surface, refer to Figure 4, the first honeycomb panel 1 and the second honeycomb panel 2 are connected by a three-sided corner code 4. The first honeycomb panel 1 and the second honeycomb panel 2 are respectively processed with beveled sections and the sections are fitted and spliced. After positioning with a mold, the two fixed sides of the three-sided corner code 4 are respectively tightened and fixed with bolts 7 to the nuts 6 pre-set in the third honeycomb panel 3 and the second honeycomb panel 2. The two fixed sides of the three-sided corner code 4 are respectively attached to the back surfaces of the third honeycomb panel 3 and the second honeycomb panel 2.

[0047] (Example 4)

[0048] See Figure 7 , the arc-shaped multi-folded stone honeycomb panel of this example includes three bends. Among the four panels that form the main body, at least one is an arc-shaped panel.

[0049] Referring to the connection methods of Example 1 and Example 2, when the surface where the internal angle formed by two adjacent panels is the decorative surface, a right-angle corner code 5 is used to connect and fix at the external angle formed by these two panels.

[0050] When the surface where the external angle formed by two adjacent panels is the decorative surface, a three-sided corner code 4 is used to connect and fix at the internal angle formed by these two panels.

[0051] During the decoration process, the arc-shaped multi-folded stone honeycomb panel of the present utility model serves as a splicing unit. According to the design drawings, unit splicing is carried out to obtain the target decorative appearance.

[0052] Compared with the traditional installation where each board needs to be cut, spliced, and fixed on-site between every two boards, using the arc-shaped multi-folded stone honeycomb panel of this example for unit splicing can save a lot of time.

Claims

1. An arc-shaped multi-folded stone honeycomb panel, characterized in that: The multi-fold shape includes at least one bend. Among the single plates forming the stone honeycomb panel with an arc multi-fold shape, at least one is an arc plate; When the surface where the internal angle formed by two adjacent plates is the decorative surface, a right-angle corner fitting (5) is used to connect and fix at the external angle formed by these two plates; When the surface where the external angle formed by two adjacent plates is the decorative surface, a three-sided corner fitting (4) is used to connect and fix at the internal angle formed by these two plates; The said three-sided corner fitting (4) includes two fixing edges (4-1) and a connecting edge (4-2) between the two fixing edges (4-1).

2. The arc-shaped multi-folded stone honeycomb panel according to claim 1, wherein: When the three-sided corner fitting (4) is connected and fixed at the internal angle formed by two adjacent honeycomb panels, the two fixing edges of the three-sided corner fitting (4) are respectively tightened and fixed with bolts (7) to the nuts (6) pre-set in the two adjacent honeycomb panels, and the two fixing edges of the three-sided corner fitting (4) are respectively fitted to the back surfaces of the two adjacent honeycomb panels.

3. The arc-shaped multi-folded stone honeycomb panel according to claim 1, characterized in that: When the right-angle corner fitting (5) is connected and fixed at the external angle formed by two adjacent plates, the two fixing edges of the right-angle corner fitting (5) are respectively tightened and fixed with bolts (7) to the nuts (6) pre-set in the two adjacent honeycomb panels, and the two fixing edges of the right-angle corner fitting (5) are respectively fitted to the back surfaces of the two adjacent honeycomb panels.

4. The arc-shaped multi-folded stone honeycomb panel according to claim 1, wherein: Except for the corner fitting connection positions, nuts (6) are also pre-set at other positions within the single plates of the honeycomb panels forming the multi-fold shape.

5. The arc-shaped multi-folded stone honeycomb panel according to claim 1, characterized in that: The decorative surface of the single plates of the honeycomb panel forming the arc multi-fold shape is a stone surface.

Citation Information

Patent Citations

  • Circular-arc stone cellular board with ultrathin bush hammered face

    CN203651090U