Disclosure of Invention
In order to solve the technical problems, the utility model provides an easily-assembled ancient building hanging lattice module. The following presents a simplified summary in order to provide a basic understanding of some aspects of the disclosed embodiments. This summary is not an extensive overview and is intended to neither identify key/critical elements nor delineate the scope of such embodiments. Its sole purpose is to present some concepts in a simplified form as a prelude to the more detailed description that is presented later.
The utility model adopts the following technical scheme:
The utility model provides an easily-assembled ancient building hanging lattice module, which comprises two symmetrically arranged first lattice modules and a second lattice module arranged between the two first lattice modules;
The first lattice module comprises an L-shaped lattice side plate and a modeling decorative plate;
V-shaped connectors are formed in the opposite sides of the modeling decorative plates in the two first lattice modules, V-shaped connectors are arranged on the two sides of the second lattice module at positions corresponding to the V-shaped connectors, and the V-shaped connectors are embedded into the V-shaped connectors;
The L-shaped lattice side plates in the two first lattice modules are separated by a certain distance to form an installation seam, and the tops of the second lattice modules are provided with raised strips which are embedded into the installation seam.
Further, the L-shaped lattice side plate comprises a top side plate and a vertical side plate arranged at the outer end of the top side plate, and the vertical side plate is perpendicular to the top side plate.
Further, the modeling decorative plate is arranged on the L-shaped lattice side plate, the modeling decorative plate is formed by splicing a plurality of lattice members, the height of the modeling decorative plate is the same as the length of the vertical side plate, and the length of the top side plate is larger than that of the modeling decorative plate.
Further, a certain distance is formed between the inner end surfaces of the top edge plates of the L-shaped lattice side plates in the two first lattice modules so as to form the mounting seam.
Further, the first lattice module and the second lattice module are made of aluminum alloy.
Further, the height of the raised strips is smaller than the thickness of the top edge plate.
Further, glue coating grooves are formed in the inner wall of the V-shaped connector and the outer wall of the V-shaped connector.
The utility model has the beneficial effects that the ancient building hanging lattice adopts a modularized design, the first lattice module and the second lattice module are spliced into an integral lattice structure, then the integral lattice structure is installed on other structures in the form of an integral module, the embedded splicing is realized through the V-shaped interface, the V-shaped connector, the convex strip and the installation joint, the installation difficulty of scattered components is reduced, the installation precision of the lattice structure is improved, and the utility model has the advantages of simple assembly mode and stable integral structure on the premise of keeping the traditional decoration effect.
Detailed Description
Embodiments of the present utility model will be described in detail below with reference to the accompanying drawings. It should be understood that the described embodiments are merely some, but not all, embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1-5, in some illustrative embodiments, an easily assembled ancient building drop grid module is provided that is a decorative part of the ancient building drop and can be secured to the purlin and column by other support structures. Specifically, the lattice module of the present application includes a first lattice module 210 and a second lattice module 220, and the patterns and sizes of the first lattice module 210 and the second lattice module 220 are different to increase the richness of decoration.
The number of the first lattice modules 210 is two, and the two first lattice modules 210 are symmetrically arranged and are respectively located at two sides of the hanging frame, for example, one is on the left side column, the other is on the right side column, for example, a supporting structure can be installed on the column and the purlin in advance, and then the first lattice modules 210 are installed on the supporting structure. The second lattice module 220 is disposed between the two first lattice modules 210, not only can splice the two first lattice modules 210, but also can fill the vacant positions in the middle of the two first lattice modules 210, and the three lattice modules are spliced together to form an integral ancient building hanging lattice structure.
The first lattice module 210 includes an L-shaped lattice side plate and a modeling decorative plate 211. The L-shaped lattice side plates are the frame portions of the first lattice module, and serve as support structures to provide attachment points for the molded trim panel 211 and to connect with other building portions. The modeling decorative board 211 is arranged on the L-shaped lattice side board, the modeling decorative board 211 is formed by splicing a plurality of lattice members, the lattice members are in a flat plate shape, different shapes and sizes can be selected according to design requirements, the splicing mode is welding, different patterns can be spliced according to requirements, and then the patterns are welded on the L-shaped lattice side board.
The L-shaped lattice side plate comprises a top side plate 212 and a vertical side plate 213, wherein the top side plate 212 is a horizontal part of the upper part of the L-shaped lattice side plate, the vertical side plate 213 is arranged at the outer end of the top side plate 212 and is mutually perpendicular to the top side plate 212, and the top side plate 212 and the vertical side plate 213 are all made of thin-wall aluminum alloy and are of an integrated structure. The combination of top side plate 212 and riser 213 forms an L-shaped structure for use with grooves on other support structures, i.e., during installation, the L-shaped lattice side plate is required to be embedded into grooves provided by other support structures to achieve installation, and the L-shaped structural design can provide stronger supporting force and stability, which is helpful for maintaining the shape and strength of the entire lattice module.
The height of the molding decorative plate 211 is the same as the length of the standing plate 213, so that when the molding decorative plate 211 is welded on the L-shaped lattice side plate, the bottom structures of the first lattice module 210 can be on the same horizontal plane, maintain the overall flatness, and can wrap the top and the side of the molding decorative plate 211, thereby protecting and providing sufficient support. The top edge panel 212 has a length greater than the length of the molded trim panel 211 such that when the two first lattice modules 210 are spliced side by side, the molded trim panels 211 in the two first lattice modules 210 are not directly connected to each other, but rather leave a region for receiving the second lattice module 220.
The two first lattice modules 210 are provided with two V-shaped interfaces 214 on the opposite sides of the modeling decoration board 211, and the two V-shaped interfaces 214 are sequentially provided from top to bottom and are positioned at the edges of the modeling decoration board 211. The two sides of the second lattice module 220 are provided with V-shaped connectors 221 at positions corresponding to the V-shaped interfaces 214, and the V-shaped connectors 221 are matched with the V-shaped interfaces 214, wherein the matching means that the V-shaped connectors 221 are embedded into the V-shaped interfaces 214 after the first lattice module 210 and the second lattice module 220 are assembled.
The L-shaped side panels of the two first lattice modules 210 are spaced apart from each other by a certain distance to form a mounting slot 215, and in particular, after the first lattice modules 210 are mounted and fixed, the inner end surfaces of the top edge panels 212 of the L-shaped side panels of the two first lattice modules 210 are spaced apart from each other by a certain distance to form the mounting slot 215, which is for accommodating a specific design element of the second lattice module 220.
The top of the second lattice module 220 is provided with a raised line 222, the raised line 222 is located at the top center of the module, and after the second lattice module 220 is spliced between the two first lattice modules 210, the raised line 222 is embedded into the mounting slot 215 to fill the gap between the two first lattice modules 210.
In construction, a first lattice module 210 is first installed and fixed at a predetermined position, and then another first lattice module 210 is installed to the other side in the same manner, and the installation slit 215 between them is ensured to be proper in size, leaving a space for the convex strips 222 of the second lattice module 220. Then, the V-shaped connector 221 of the second lattice module 220 is corresponding to the V-shaped interface 214 on the first lattice module 210 by embedding and mounting, and the convex strips 222 are clamped into the mounting slots 215 formed between the first lattice modules 210 to realize clamping and fixing. The three lattice modules are mutually supported and fixed, and finally form a continuous lattice pattern.
Through decompose into the module with the lattice, splice in proper order during installation can, can simplify the installation, improve installation effectiveness, and modular design makes the change of single module become simple, has reduced maintenance cost, can adapt to different building styles and design requirement according to actual demand adjustment lattice module simultaneously, and prefabricated lattice module can install fast, has shortened construction cycle.
The design of the first lattice module 210 and the second lattice module 220 achieves accurate butt joint and fixation between the modules, position errors possibly generated in the installation process are avoided, and the connection stability between the modules is improved by the embedded connection mode, so that the whole hanging lattice module is firmer. In addition, the compact interface design ensures that the assembled hanging flower lattice has no obvious gaps in vision, maintains the overall aesthetic property of decoration, has traditional aesthetic feeling and has the installation convenience of modern buildings.
The height of the ribs 222 is less than the thickness of the top panel 212, and a lower rib 222 means less force is required to fit into the mounting slot 215 and more easily mount the second lattice module 220 in place.
The first lattice module 210 and the second lattice module 220 are made of aluminum alloy. The aluminum alloy has the characteristics of small density and high strength, so that the lattice module is light in weight and convenient to transport and install while maintaining structural stability. The aluminum alloy surface can form a layer of compact oxide film, has good corrosion resistance, is suitable for outdoor use, can resist wind and rain erosion, and prolongs the service life. The aluminum alloy is easy to be processed into complex shapes through various processes such as extrusion, casting, cutting and the like, and is suitable for manufacturing the lattice module with the traditional aesthetic characteristics.
Glue coating grooves 230 are formed on the inner wall of the V-shaped connector 214 and the outer wall of the V-shaped connector 221, glue can be pre-filled in the glue coating grooves 230 in the assembly process, when the V-shaped connector 221 is embedded into the V-shaped connector 214, the glue can fill gaps between the V-shaped connector 214 and the V-shaped connector 221, and firm connection is formed after solidification. The use of glue greatly improves the connection strength between the modules, so that the whole hanging lattice structure is more stable and can bear larger external force.
The foregoing is merely illustrative of the present utility model, and the present utility model is not limited thereto, and any changes or substitutions easily contemplated by those skilled in the art within the scope of the present utility model should be included in the present utility model. Therefore, the protection scope of the utility model is subject to the protection scope of the claims.