CN115839157B - Decorative structure and installation method thereof - Google Patents

Decorative structure and installation method thereof Download PDF

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Publication number
CN115839157B
CN115839157B CN202211573845.0A CN202211573845A CN115839157B CN 115839157 B CN115839157 B CN 115839157B CN 202211573845 A CN202211573845 A CN 202211573845A CN 115839157 B CN115839157 B CN 115839157B
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China
Prior art keywords
keel
mounting groove
wallboard
decorative structure
groove
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CN202211573845.0A
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CN115839157A (en
Inventor
刘志宝
杨正波
时晨龙
丛阳
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China National Building Materials Innovation and Technology Research Institute Co Ltd
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China National Building Materials Innovation and Technology Research Institute Co Ltd
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Abstract

A decorative structure and method of installing the same are provided herein. The decorative structure includes: the support framework comprises a plurality of connecting pieces which are arranged at intervals; the connecting piece is provided with a first mounting groove; and a first wallboard unit comprising a first keel and a first wallboard mounted to the first keel; the first keel comprises a first hanging part and a first inserting part which is arranged at intervals with the first hanging part; the first hanging part is connected with the groove wall of the first mounting groove in a hanging mode, and the first inserting part is inserted into the first mounting groove of the other connecting piece adjacent to the connecting piece, so that a plurality of first wallboard units are assembled to the supporting framework. The decorative structure can improve the decorative effect of the supporting framework and the fireproof performance of the supporting framework through the plurality of first wallboard units. The first wallboard units are fixed to the supporting framework in a splicing mode, and the assembly and disassembly device has the advantages of being simple in assembly and disassembly operation, high in assembly efficiency and the like.

Description

Decorative structure and installation method thereof
Technical Field
This document relates to, but is not limited to, the field of construction technology, and more particularly to a decorative structure and method of installing the same.
Background
As one of the fabricated structures, the steel structure has been widely used in the market, and has gradually covered a range from public buildings to houses and the like. The steel structure building has the advantages of high construction speed, flexible structure, high assembly rate, green construction and the like, but has the defects of poor fireproof performance, poor decorative aesthetic property and the like.
At present, the common technology mainly comprises the step of spraying fireproof paint on the surface of a steel structure to play a role in fireproof, but the decoration effect is poor. Therefore, how to improve the fireproof performance and the decoration effect of the steel structure is important.
The foregoing is not necessarily a prior art, and falls within the technical scope of the inventors.
Disclosure of Invention
The application aims to provide a decorative structure and an installation method thereof. The decorative structure can improve the decorative effect of the supporting framework and the fireproof performance of the supporting framework through the plurality of first wallboard units. The first wallboard units are fixed to the supporting framework in a splicing mode, and the assembly and disassembly device has the advantages of being simple in assembly and disassembly operation, high in assembly efficiency and the like.
The technical scheme of the embodiment of the application is as follows:
a decorative structure, comprising:
the support framework comprises a plurality of connecting pieces which are arranged at intervals; the connecting piece is provided with a first mounting groove; and
a first wallboard unit including a first keel and a first wallboard mounted to the first keel; the first keel comprises a first hanging part and a first inserting part which is arranged at intervals with the first hanging part; the first hanging part is connected with the groove wall of the first mounting groove in a hanging mode, and the first inserting part is inserted into the first mounting groove of the other connecting piece adjacent to the connecting piece, so that a plurality of first wallboard units are assembled to the supporting framework.
In some exemplary embodiments, at least a portion of the first plug portion extends beyond an edge of the first wall panel.
In some exemplary embodiments, the cross-sectional shape of the first hooking portion is an inverted U-shape, and at least a portion of a sidewall of the U-shape is located in the first mounting groove and is pressed by the first plugging portion to a groove wall of the first mounting groove.
In some exemplary embodiments, the connector is provided with a second mounting slot;
the decorative structure includes a second wallboard unit; the second wall panel unit includes a second keel and a second wall panel mounted to the second keel; the second keel comprises a second hanging part and a second inserting part which is arranged at intervals with the second hanging part; the second hanging part is connected with the groove wall of the second mounting groove in a hanging way, and the second inserting part is inserted into the second mounting groove of the other connecting piece adjacent to the connecting piece so as to enable a plurality of second wallboard units to be assembled to the supporting framework;
wherein the second wallboard is non-collinear with the first wallboard.
In some exemplary embodiments, at least a portion of the second plug portion extends beyond an edge of the second wall panel.
In some exemplary embodiments, the second hooking portion has an inverted U-shape in cross-section, and at least a portion of a sidewall of the U-shape is located in the second mounting groove and is pressed by the second plugging portion to a groove wall of the second mounting groove.
In some exemplary embodiments, the support frame further includes a support body, the connection member is provided with a third mounting groove, and a portion of the support body is inserted into the third mounting groove, and the connection member is detachably fixed to the support body.
In some exemplary embodiments, the support body is an i-shaped keel or an H-shaped keel, and the support body is positioned at the same section perpendicular to the length direction of the support body, the support body comprises four connecting pieces, and the four connecting pieces are respectively arranged at four corners of the i-shaped keel or the H-shaped keel.
In some exemplary embodiments, the first keel comprises a hooking keel comprising two or more spaced apart first hooking portions; the hanging keels are of an integrally formed structure.
In some exemplary embodiments, the first keel further comprises a plug keel comprising two or more of the first plug portions spaced apart; the grafting fossil fragments are integrated into one piece's structure.
In some exemplary embodiments, the first keel further comprises a cross keel located between the first hooking portion and the first plugging portion, and the cross keel is snap-fit to the support frame.
A mounting method of a decorative structure is applied to the decorative structure in any embodiment, and comprises the following steps:
fixing the supporting framework;
inserting the first plug-in connection part into the first mounting groove;
and the first hanging part is hung in the other first mounting groove adjacent to the first mounting groove.
Other aspects will become apparent upon reading and understanding the accompanying drawings and detailed description.
Drawings
The accompanying drawings are included to provide a further understanding of the technology herein, and are incorporated in and constitute a part of this specification, illustrate technology herein and together with the description serve to explain, without limitation, the technology herein.
FIG. 1 is a schematic cross-sectional view of a decorative structure according to some illustrative embodiments of the application;
FIG. 2 is an enlarged schematic view, partially in section, of a decorative structure according to some exemplary embodiments of the application;
fig. 3 is an isometric view of a first wallboard unit according to some exemplary embodiments of the present application.
Reference numerals:
10-first wallboard units, 101-first keels, 101 a-first hooking parts, 101 b-first inserting parts, 102-first wallboards, 103-hooking keels, 103 a-avoiding openings, 104-inserting keels and 105-transverse keels;
20-second wallboard units, 201-second keels, 201 a-second hitching sections, 201 b-second plugging sections, 202-second wallboards;
30-supporting framework, 301-supporting body, 302-connecting piece, 302 a-first mounting groove, 302 b-second mounting groove, 302 c-third mounting groove, 303-gasket;
100-first filling cavity, 200-second filling cavity.
Detailed Description
The technical solutions herein are further described below by means of specific embodiments in combination with the accompanying drawings. It is to be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to be limiting.
In an embodiment of the present application, as shown in fig. 1 to 3, a decoration structure is provided. In the embodiment of the present application, three directions are defined for the explanation of the technical solution, and the first direction is identified as X, the second direction is identified as Y, and the third direction is identified as Z (the identification of the third direction is shown in fig. 3). The ornamental structure extends along a third direction, which may be referred to as a height direction of the ornamental structure. As shown in fig. 1, in the plane formed by XY, the orthographic projection of the decorative structure may be polygonal, for example, square, rectangular, regular hexagon, or the like.
As shown in fig. 1, the decorative structure includes a support frame 30 and a first wallboard unit 10 fixed to the support frame 30. The decorative structure comprises a plurality of first wall panel units 10. A plurality of first wall panel units 10 may be assembled to the support frame 30 along a third direction. The number of first wall panel units 10 included in a decorative structure according to the embodiment of the present application is not limited, and may be determined according to the specific use of the decorative structure.
The support frame 30 may be provided as a metal structural member. The support frame 30 provides stable support for the plurality of first wall panel units 10. In a cross section parallel to the XY plane, the decorative structure may include four first wall panel units 10, the four first wall panel units 10 being arranged around the support skeleton 30 to be combined into a square. Alternatively, as shown in fig. 1, in a cross section parallel to the XY plane, the decorative structure includes two first wall plate units 10 disposed at intervals and two second wall plate units 20 disposed at intervals, and the two first wall plate units 10 and the two second wall plate units 20 are combined into a rectangular shape.
As shown in fig. 1, the support frame 30 includes a support body 301 and a plurality of connecting members 302 disposed at intervals. The plurality of connectors 302 may be spaced apart along the third direction. The connection member 302 is provided with a first mounting groove 302a. The shape of the first mounting groove 302a in the XY section may be set to be rectangular or the like. Alternatively, as shown in fig. 2, the cross-sectional shape of the first mounting groove 302a in the XY plane may be set to be a special shape. The connecting member 302 may be made of aluminum alloy, or the like, and may be formed by extrusion process, or the like. The extrusion process has the advantages of simple manufacturing die, low input cost and the like.
As shown in fig. 1, the first wall panel unit 10 includes a first runner 101 and a first wall panel 102 mounted to the first runner 101. The first wall panel 102 may be removably secured to the first keel 101, such as by bolting, etc. The first wall panel 102 may be a single layer board or a composite board or the like. The first wall panel 102 may be a gypsum board, a decorative wood board, a calcium silicate board, or the like.
The first keel 101 includes a first hooking portion 101a and a first inserting portion 101b spaced apart from the first hooking portion 101a. The first hooking portion 101a and the first inserting portion 101b may be disposed at opposite ends of the first keel 101, for example, the first hooking portion 101a is disposed at one end of the first keel 101 along the third direction, and the first inserting portion 101b is disposed at the other end of the first keel 101 along the third direction. As shown in fig. 1, a connection relationship of the splice positions of two first wall panel units 10 is shown. The first hooking portion 101a is hooked with a groove wall of the first mounting groove 302a, and the first inserting portion 101b is inserted into the first mounting groove 302a of the other connecting member 302 adjacent to the connecting member 302, so that the plurality of first wall plate units 10 are assembled to the supporting frame 30.
According to the decoration structure provided by the embodiment of the application, the decoration effect of the supporting framework 30 and the fireproof and corrosion-resistant performances of the supporting framework 30 can be improved through the plurality of first wallboard units 10. The plurality of first wall plate units 10 are fixed to the supporting framework 30 in a splicing manner, and have the advantages of simplicity in disassembly and assembly operation, high assembly efficiency and the like.
In some exemplary embodiments, as shown in fig. 1 and 2, the connector 302 is provided with a second mounting slot 302b. The second mounting groove 302b may be shaped and sized the same as the first mounting groove 302a. Alternatively, the second mounting groove 302b may be shaped and sized differently than the first mounting groove 302a. The cross-sectional shape of the second mounting groove 302b in the XY plane may be designed as a rectangle or the like. Alternatively, as shown in fig. 2, the sectional shape of the second mounting groove 302b in the XY plane may be set to be a special shape.
As shown in fig. 1, the decorative structure further includes a second wall panel unit 20. The second wall panel unit 20 includes a second keel 201 and a second wall panel 202 mounted to the second keel 201. The second wall panel 202 may be removably secured to the second keel 201, such as by bolting, etc. The second wall panel 202 may be a single layer board or a composite board, etc. The second wall panel 202 may be a gypsum board, a decorative wood board, a calcium silicate board, or the like.
As shown in fig. 1 and 2, the second keel 201 includes a second hooking portion 201a and a second insertion portion 201b spaced apart from the second hooking portion 201 a. The second hooking portion 201a and the second inserting portion 201b may be disposed at opposite ends of the second keel 201, for example, the second hooking portion 201a is disposed at one end of the second keel 201 along the third direction, and the second inserting portion 201b is disposed at the other end of the second keel 201 along the third direction. As shown in fig. 1 and 2, the second hooking portion 201a is hooked with a groove wall of the second mounting groove 302b, and the second inserting portion 201b is inserted into the second mounting groove 302b of the other connector 302 adjacent to the connector 302, so that the plurality of second wall plate units 20 are assembled to the supporting frame 30. Wherein the second wall panel 202 is non-collinear and non-parallel with the first wall panel 102. As shown in fig. 1, the second wall panels 202 may be disposed perpendicular to the first wall panels 102, and the two second wall panels 202 and the two first wall panels 102 may be combined together into a rectangle.
In some exemplary embodiments, as shown in fig. 1, the first mounting groove 302a and the second mounting groove 302b may share one groove wall, and thus, the structure of the connection member 302 may be simplified and the weight of the connection member 302 may be reduced.
In some exemplary embodiments, as shown in fig. 1, the projection of the first mounting groove 302a may be designed in an unsealed shape in the plane of the XY formation, which may simplify the complexity of the manufacturing process of the connector 302. The unsealed portion of the first mounting groove 302a may be provided with a crimp, by which structural rigidity and strength of the first mounting groove 302a may be improved, and the crimp may play a role in fixing and holding the first plug portion 101b. The structure of the second mounting groove 302b may be designed with reference to the first mounting groove 302a.
In some exemplary embodiments, as shown in fig. 1, the support frame 30 and the first wall panel unit 10 may be combined into a first filling chamber 100. The projection of the first filling chamber 100 within XY may be rectangular or the like. The first filling chamber 100 may be filled with a fire-proof material or the like to enhance the overall fire-proof performance of the product. Alternatively, the first filling cavity 100 is used as a space for threading, so that the integration of the product can be improved, and the protection can be provided for the pipe and the line, and the service life of the pipe and the line can be prolonged.
In some exemplary embodiments, as shown in fig. 1, the support frame 30 and the second wall panel unit 20 may be combined into a second filling chamber 200. The projection of the second filling chamber 200 in XY may be rectangular or the like. The second filling cavity 200 may be designed with reference to the first filling cavity 100, and the two filling cavities may be designed to be identical or different, and will not be described in detail herein.
In some exemplary embodiments, as shown in fig. 1 and 2, the connector 302 is provided with a third mounting slot 302c. A portion of the support body 301 may be inserted into the third mounting groove 302c, and the connection member 302 may be detachably fixed to the support body 301. For example, as shown in fig. 2, a portion of the supporting body 301 may be fixed in the third mounting groove 302c by a bolt, one end of which penetrates from one groove wall of the third mounting groove 302c, and the portion of the supporting body 301 is pressed against the other groove wall of the third mounting groove 302c. The cross-sectional shape of the third mounting groove 302c may be a transverse U-shape in the XY-plane. The portion of the supporting body 301 may be roughened, so that friction between the bolt and the supporting body 301 may be increased, and stability of connection between the connecting member 302 and the supporting body 301 may be improved. Alternatively, a partial recess is formed in the surface of the support 301, and a bolt may be placed in the recess during connection to ensure that the connection member 302 is firmly connected to the support 301.
In some exemplary embodiments, as shown in fig. 1, the second and third mounting grooves 302b and 302c may be provided at both sides of the first mounting groove 302a, respectively. The first mounting groove 302a and a portion of the groove wall of the third mounting groove 302c may be shared to simplify the design of the connector 302.
In some exemplary embodiments, as shown in fig. 2, support frame 30 may further include a spacer 303. At least a portion of the spacer 303 may be located within the third mounting groove 302c. The bolt fixes a portion of the support body 301 in the third mounting groove 302c via the spacer 303. The position of the connector 302 can be adjusted by the bolts and the gaskets 303 so as to facilitate the installation of the first wall plate unit 10 and the second wall plate unit 20 and ensure the proper position of the wall plate units. The friction between the connecting piece 302 and the supporting body 301 can be increased by the arranged gasket 303, so that the connecting strength can be improved.
In some exemplary embodiments, as shown in fig. 1, only one spacer 303 is illustrated as an example, and the plurality of connectors 302 are mated with the plurality of spacers 303 in the same manner. The gasket 303 may be made of metal or rubber. Alternatively, the gasket 303 may be provided to include a combination of a plurality of sub-gaskets, or the like. The plurality of sub-gasket combinations may include combinations of metal sub-gaskets and rubber sub-gaskets, and the like. In the embodiment of the present application, the pad 303 is set to include only one sub-pad, as shown in fig. 1.
In some exemplary embodiments, as shown in fig. 1, the support 301 may be configured as an i-shaped keel or an H-shaped keel or a profiled keel, etc., to mate with the plurality of connectors 302 provided. At the same cross-sectional position perpendicular to the length direction (along the third direction) of the supporting frame 30, the supporting frame 30 may be configured to include four connectors 302, and the four connectors 302 may be disposed at four corners of the i-shaped keel or the H-shaped keel, respectively, so as to implement installation of four wallboard units.
In some exemplary embodiments, as shown in fig. 3, the first keel 101 includes a hooking keel 103. The hooking keels 103 include two or more first hooking portions 101a disposed at intervals. More than two first hooking portions 101a may be disposed at intervals along the second direction. By using the plurality of first hanging parts 101a arranged at intervals, the multipoint connection between the first wallboard unit 10 and the supporting framework 30 can be realized, and the installation stability of the first wallboard unit 10 can be improved.
In some exemplary embodiments, as shown in fig. 3, the hooking keels 103 may be provided as an integrally formed structure, which may avoid post-assembly and improve structural strength.
In some exemplary embodiments, as shown in fig. 2 and 3, the hooking keels 103 may further include more than one avoidance gap 103a. The avoidance gap 103a is configured to provide an avoidance space when the first hooking portion 101a of the hooking keel 103 performs a hooking operation. As shown in fig. 2, the relief notch 103a may be used to relief the third mounting groove 302c of the connector 302, etc.
In some exemplary embodiments, as shown in fig. 3, the first keel 101 may also include a plug-in keel 104. The plugging keel 104 includes two or more first plugging portions 101b disposed at intervals. The two or more first plugging portions 101b are disposed at intervals along the second direction. By using the first plugging portions 101b arranged at intervals, the multipoint connection between the first wallboard unit 10 and the supporting framework 30 can be realized, and the installation stability of the first wallboard unit 10 can be improved.
In some exemplary embodiments, as shown in fig. 3, the plug keels 104 may be provided as an integrally formed structure. For example, as shown in fig. 3, the plug keels 104 may be generally U-shaped, etc. The splicing keels 104 are arranged into an integrally formed structure, so that later assembly can be avoided, and the structural strength is improved.
In some exemplary embodiments, as shown in fig. 3, the first runner 101 may also include a cross runner 105. As shown in fig. 3, taking the example that the first keel 101 includes two cross keels 105, the two cross keels 105 are disposed at intervals along the third direction, and the two cross keels 105 are disposed between the first hooking portion 101a and the first inserting portion 101b. The cross runner 105 may be snap-fit to the support frame 30.
As shown in fig. 3, the cross runner 105 may be configured as a U-shaped runner, with the bottom plate of the U-shaped runner connected to the first wall plate 102 by, for example, a threaded connection or the like. The U-shaped opening of the U-shaped keel faces away from the first wall plate 102 so that the U-shaped keel is connected with the supporting framework 30 in a clamping manner. More than one transverse keel 105 is arranged between the first hanging part 101a and the first inserting part 101b, so that the connection point between the first wallboard 102 and the supporting framework 30 can be increased, the overall connection point layout can be optimized, and the stability and reliability of the installation of the first wallboard 102 are ensured. The second keel 201 may be designed with reference to the structure of the first keel 101, and will not be described in detail herein.
In some exemplary embodiments, as shown in fig. 3, at least a portion of the first plugging portion 101b extends beyond the edge of the first wall plate 102, and when the first wall plate unit 10 is plugged into the first mounting groove 302a of the connector 302, the portion of the first plugging portion 101b extending beyond the edge of the first wall plate 102 may serve as a mounting guide, improving the operation efficiency of plugging and mounting, and shortening the overall assembly period.
In some exemplary embodiments, as shown in fig. 3, the first hooking portion 101a has an inverted U-shape in cross-section. As shown in fig. 1, after the first hooking portion 101a is installed in place, at least a portion of a U-shaped sidewall of the first hooking portion 101a is located in the first installation groove 302a and is pressed to a groove wall of the first installation groove 302a by the first inserting portion 101b.
The two adjacent first keels 101 share one connecting piece 302, so that the number of parts and the design structure of products can be simplified on the whole, the first connecting portion 101a is tightly pressed in the first mounting groove 302a by the first inserting portion 101b, the first wallboard unit 10 is prevented from shaking, and the reliability of connection is ensured.
In some exemplary embodiments, the second plug portion 201b may be designed with reference to the first plug portion 101b, with at least a portion of the second plug portion 201b extending beyond the edge of the second wall panel 202 for ease of installation.
In some exemplary embodiments, the cross-sectional shape of the second hooking portion 201a is an inverted U-shape, and at least a portion of one side wall of the U-shape is located in the second mounting groove 302b and is pressed by the second plugging portion 201b to the groove wall of the second mounting groove 302b.
In yet another embodiment of the present application, a method for installing a decorative structure is provided. The installation method is applied to the decorative structure of any one of the embodiments described above. The installation method comprises the following steps:
fixing the support frame 30 includes attaching the connector 302 to the support body 301 and then fixing the support body 301 to a desired location, such as between an upper floor and a lower floor, or other location where a decorative structure is desired.
The first insertion portion 101b of the first wall plate unit 10 is inserted into the first mounting groove 302a.
The first hooking portion 101a of the first wall plate unit 10 is hooked into the other first installation groove 302a adjacent to the first installation groove 302a, and the operation is repeated so as to assemble a plurality of first wall plate units 10 onto the supporting frame 30, so as to form an entire decorative wall.
The assembly of the plurality of second wall panel units 20 may refer to the assembly of the first wall panel unit 10, or the assembly of more wall panel units may refer to the assembly of the first wall panel unit 10, to achieve the assembly of the decorative structure as a whole.
In the description herein, the terms "upper," "lower," "one side," "another side," "one end," "another end," "sides," "opposite," "four corners," "perimeter," and the like are used for convenience in describing embodiments of the present application and simplifying the description, and do not denote or imply that the structures referred to have a particular orientation, are configured and operated in a particular orientation, and are not to be construed as limitations herein.
In the description of embodiments of the present application, unless explicitly stated and limited otherwise, the terms "connected," "directly connected," "indirectly connected," "fixedly connected," "mounted," "assembled" should be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; the terms "mounted," "connected," and "fixedly connected" may be directly connected or indirectly connected through intervening media, and may also be in communication between two elements. The specific meaning of the terms herein above will be understood to those of ordinary skill in the art in a specific context.
While the embodiments disclosed herein are described above, the descriptions are presented only to facilitate an understanding of the embodiments disclosed herein and are not intended to limit the scope of the present disclosure. Any person skilled in the art may make any modifications and variations in form and detail of the implementations without departing from the spirit and scope of the disclosure, but the scope of the claims herein shall be defined by the appended claims.

Claims (11)

1. A decorative structure, comprising:
the support framework comprises a plurality of connecting pieces and support bodies which are arranged at intervals; the connecting piece is provided with a first mounting groove, a second mounting groove and a third mounting groove, the first mounting groove and the second mounting groove share one groove wall, part of the groove walls of the first mounting groove and the third mounting groove share the same groove wall, and part of the supporting body is inserted into the third mounting groove;
a first wallboard unit including a first keel and a first wallboard mounted to the first keel; the first keel comprises a first hanging part and a first inserting part which is arranged at intervals with the first hanging part, and the first hanging part and the first inserting part are arranged at two opposite ends of the first keel; the first hanging part is connected with the groove wall of the first mounting groove in a hanging way, and the first inserting part is inserted into the first mounting groove of the other connecting piece adjacent to the connecting piece so as to enable the plurality of first wallboard units to be assembled to the supporting framework; and
a second wallboard unit including a second keel and a second wallboard mounted to the second keel; the second keel comprises a second hanging part and a second inserting part which is arranged at intervals with the second hanging part, and the second hanging part and the second inserting part are arranged at two opposite end parts of the second keel; the second hanging part is connected with the groove wall of the second mounting groove in a hanging way, and the second inserting part is inserted into the second mounting groove of the other connecting piece adjacent to the connecting piece so as to enable a plurality of second wallboard units to be assembled to the supporting framework; wherein the second wallboard is non-collinear with the first wallboard.
2. The decorative structure of claim 1 wherein at least a portion of the first plug portion extends beyond an edge of the first wall panel.
3. The ornamental structure of claim 1 wherein said first hooking portion has an inverted U-shape in cross-section, with at least a portion of a sidewall of said U-shape being positioned within said first mounting groove and being compressed by said first mating portion to a groove wall of said first mounting groove.
4. A decorative structure according to any one of claims 1 to 3, wherein at least part of the second plug portion extends beyond the edge of the second wall panel.
5. A decorative structure according to any one of claims 1 to 3, wherein the second hooking portion has an inverted U-shape in cross-section, and at least a portion of a side wall of the U-shape is located in the second mounting groove and is pressed by the second insertion portion to a groove wall of the second mounting groove.
6. A decorative structure according to any one of claims 1 to 3, wherein the connector is detachably secured to the support body.
7. The decorative structure of claim 6 wherein said support body is an i-shaped keel or an H-shaped keel, said support frame including four said connectors at the same cross-sectional location perpendicular to the length of said support frame, said connectors being disposed at the four corners of said i-shaped keel or said H-shaped keel.
8. A decorative structure according to any one of claims 1 to 3, wherein the first keel comprises a hitch keel comprising two or more spaced apart first hitch portions; the hanging keels are of an integrally formed structure.
9. A decorative structure according to any one of claims 1 to 3, wherein the first keel further comprises a plug keel comprising two or more of the first plug portions spaced apart; the grafting fossil fragments are integrated into one piece's structure.
10. The ornamental structure of any one of claims 1 to 3 wherein said first keel further comprises a cross keel, said cross keel being located between said first hooking portion and said first plugging portion, and said cross keel being snap-fit to said support frame.
11. A method of installing a decorative structure according to any one of claims 1 to 10, comprising:
fixing the supporting framework;
inserting the first plug-in connection part into the first mounting groove;
and the first hanging part is hung in the other first mounting groove adjacent to the first mounting groove.
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