Assembled service desk design structure
Technical Field
The invention relates to the technical field of architectural decoration, in particular to a design structure of an assembled service desk.
Background
Along with the development of times, economy soars, and the requirements on the construction flow rhythm, construction diversity and construction efficiency of the decoration industry are continuously improved. In a compact construction period, how to solve the construction problem, improve the efficiency, ensure the quality and save the time becomes a main direction for the research and development of the current decoration industry.
At present, in the domestic large-scale decoration projects of high-grade hotels and shopping malls, the mounting sub-items of the stone facing of the service desk are mostly limited to simple shapes. And cannot give people a new idea. When the special-shaped service desk is used for construction, a traditional dry hanging installation process is adopted, and the process mostly adopts that an embedded part is arranged on a wall surface after a galvanized steel plate is fixed through a chemical anchor bolt or an expansion bolt. Then, the channel steel is used as a main framework, and then the galvanized angle steel is subjected to cutting, polishing, welding spot rust prevention treatment, stone dry hanging construction and other procedures according to the corresponding stone modeling. The traditional installation process for dry-hanging the stone is complex, particularly, the process of accurately splicing the special-shaped stone is difficult to control in place, the problem that the installation deviation of a steel frame exceeds the standard due to the fact that paying-off and positioning are inaccurate when the special-shaped stone is dry-hung is easily caused, the installation is not firm, potential safety hazards exist, and other quality problems exist, and then the process increases the construction difficulty, the construction period, the labor cost, the material loss and the potential construction hazards.
In addition, the corners of the stone are easy to collide and wear when being spliced, and in order to ensure the integrity of the stone veneer, the stone needs to be lightly taken and placed during construction, so that collision of adjacent stone slabs is avoided. Because certain dimension errors exist during processing of the stone slabs, when the dimension and specification of the stone slabs are smaller, gaps can be generated during splicing of the stone slabs; when the size specification of stone slab is big on the side, can take place to interfere between the adjacent stone slab, need carry out the edging to the stone slab this moment and handle, waste time and energy, increased the construction degree of difficulty.
Disclosure of Invention
In order to solve the technical problems, the invention provides a design structure of an assembled service desk, and gaps are reserved between adjacent side plates, so that the adjacent side plates are prevented from being interfered or collided when being spliced and installed, and the construction efficiency of the artificial stone service desk is improved; in addition, the shielding plate is covered at the gap, so that the integrity of the splicing surface of the side plate is improved.
Specifically, the invention provides a design structure of an assembled service desk, which comprises:
the outer surface of the framework component is coated with a stone plate component;
the stone plate assembly comprises side plates and a cover plate, the side plates are arranged on the side surface of the framework assembly, gaps are reserved between the adjacent side plates, and the cover plate is horizontally fixed at the upper ends of the side plates;
and the shielding plate is arranged between two adjacent side plates and covers the gap, and the upper end and the lower end of the shielding plate are flush with the upper end and the lower end of each side plate respectively.
The technical effect of the technical scheme is as follows: gaps are reserved between the adjacent side plates, so that the adjacent side plates are prevented from being interfered or collided when being spliced and installed, and the construction efficiency of the artificial stone service desk is improved; in addition, the shielding plate is covered at the gap, so that the integrity of the splicing surface of the side plate is improved.
Preferably, one side of the side plate, which is back to the framework component, is provided with a socket which penetrates through the other side of the side plate; the two ends of the shielding plate are respectively provided with an inserting part, and the two inserting parts are correspondingly embedded and fixed in the inserting ports of the two adjacent side plates respectively. The preferable technical effects are as follows: a fixed mounting of a shield plate is provided. The inserting part can be fixed in the inserting port in a building adhesive mode, and can also be fixed in the inserting port in an interference assembly mode.
Preferably, the gap is filled with a shock absorption layer in a seamless mode, and the shock absorption layer is fixedly connected with the shielding plate. The preferable technical effects are as follows: set up the buffer layer through filling in the gap to be used for protecting the edge of adjacent curb plate, and then effectively avoided the damage at curb plate edge. Wherein the shock-absorbing layer can be made of rubber or silica gel material.
Preferably, the skeleton subassembly includes base, supporting framework and roof, the vertical setting of supporting framework, just the bottom of supporting framework is passed through the base and is fixed on the floor, the top of supporting framework is fixed with the roof. The preferable technical effects are as follows: an implementation structure of a stone slab assembly is provided to facilitate the installation of the stone slab assembly.
As a preferred scheme of this application, the curb plate articulates the setting on the supporting framework. Of course, the side plates can also be fixed on the support framework in a welding mode, and in specific implementation, the connecting seat is fixed on the side plates through expansion bolts and then is welded on the support framework.
Preferably, be fixed with the portion of hanging and connecting on the supporting framework, the curb plate orientation the one side of supporting framework is fixed with the piece that articulates, the piece that articulates sets up on the portion of hanging and connecting. Wherein the hanging part is L-shaped, a hanging interface is arranged on the hanging block, and the hanging interface is sleeved on the hanging part.
Preferably, the supporting framework comprises longitudinal beams and cross beams, the longitudinal beams are vertically arranged respectively, the top ends of the longitudinal beams are fixed to the top plate, the bottom ends of the longitudinal beams are fixed to the base, and the cross beams are horizontally arranged on the longitudinal beams. The preferable technical effects are as follows: through the staggered arrangement of the longitudinal beams and the cross beams, the structural strength of the supporting framework is improved.
Preferably, one end of the insertion part is fixed on the shielding plate, and the other end of the insertion part penetrates through the insertion port and extends to the outside of the insertion port; the other ends of the two insertion parts connected with the same side plate are fixed through a hoop. When the clamp is specifically implemented, the other ends of the two inserting parts are respectively provided with a clamping groove, and the two clamping parts of the clamp are respectively and correspondingly inserted into the clamping grooves of the two inserting parts, so that the two inserting parts are clamped. The preferable technical effects are as follows: the stability of the inserting part is improved, and the inserting part is not easy to loosen; and has the advantage that the installation effectiveness is high.
Preferably, reinforcing ribs are obliquely fixed between the longitudinal beams and the transverse beams. The reinforcing ribs are obliquely fixed between the longitudinal beams and the cross beams, so that the reinforcing ribs, the longitudinal beams and the cross beams form a triangular structure, and the structural strength of the supporting framework can be further improved.
Preferably, the cover plate is fixed on the upper surface of the top plate through building glue. The top plate has a large supporting area, so that the cover plate can be effectively supported; therefore, the cover plate can be effectively fixed by adopting the building adhesive. The installation mode has the advantage of high installation efficiency.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the embodiments or the description of the prior art will be briefly described below.
FIG. 1 is a schematic perspective view of a design structure of a fabricated service desk according to this embodiment;
FIG. 2 is a schematic view of the connection between the side panels and the frame assembly in this embodiment;
FIG. 3 is an enlarged partial schematic view at A in FIG. 2;
FIG. 4A is a schematic perspective view showing a connection relationship between adjacent side plates, and FIG. 4B is a schematic partial sectional view of FIG. a;
FIG. 5 is an enlarged view of the portion of the sentence at B in FIG. 4;
FIG. 6 is a front view of a design structure of a fabricated service desk according to the present embodiment;
FIG. 7 is a schematic view of the cross-sectional structure C-C of FIG. 6;
fig. 8 is a schematic perspective view of a skeleton assembly in a design structure of a fabricated service desk according to this embodiment.
Wherein the reference numbers referred to in the figures are as follows:
11-a skeleton component; 12-a slate component; 13-side plate; 14-a cover plate; 15-a gap; 16-a shield plate; 17-a socket; 18-a plug-in part; 19-a shock-absorbing layer; 20-a base; 21-a supporting framework; 22-a top plate; 23-hanging part; 24-a hanging block; 25-a stringer; 26-a cross beam; 27-a clamp; 28-reinforcing ribs.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1, fig. 2, fig. 3 and fig. 6, the present embodiment provides a design structure of a fabricated service desk, including:
the outer surface of the framework component 11 is coated with a stone plate component 12;
the stone plate component 12 comprises side plates 13 and a cover plate 14, the side plates 13 are arranged on the side surface of the framework component 11, gaps 15 are reserved between the adjacent side plates 13, and the cover plate 14 is horizontally fixed at the upper ends of the side plates 13;
and the shielding plate 16 is arranged between two adjacent side plates 13 and covers the gap 15 in a shielding manner, and the upper end and the lower end of the shielding plate 16 are respectively flush with the upper end and the lower end of each side plate 13.
The technical effect of the technical scheme is as follows: the gaps 15 are reserved between the adjacent side plates 13, so that the adjacent side plates 13 are prevented from being interfered or collided when being spliced and installed, and the construction efficiency of the artificial stone service desk is improved; in addition, the integrity of the splicing surface of the side plate 13 is improved by covering the gap 15 with the shielding plate 16.
As an embodiment of the present application, as shown in fig. 3 to 5, one side of the side plate 13 facing away from the frame assembly 11 is provided with a socket 17 penetrating to the other side of the side plate 13; the two ends of the shielding plate 16 are respectively provided with an inserting portion 18, and the two inserting portions 18 are respectively correspondingly inserted and fixed in the inserting ports 17 of the two adjacent side plates 13. The preferable technical effects are as follows: a fixed mounting of the shield plate 16 is provided. The inserting portion 18 may be fixed in the inserting port 17 by means of a building adhesive, or may be fixed in the inserting port 17 by means of interference fit.
As an embodiment of the present application, as shown in fig. 5, the gap 15 is seamlessly filled with the damper layer 19, and the damper layer 19 is fixedly connected to the shielding plate 16. The preferable technical effects are as follows: through filling in gap 15 and setting up buffer layer 19 to be used for protecting the edge of adjacent curb plate 13, and then effectively avoided the damage at curb plate 13 edge. Wherein the shock absorbing layer 19 can be made of rubber or silica gel material.
As an embodiment of the present application, as shown in fig. 8, the frame assembly 11 includes a base 20, a supporting frame 21 and a top plate 22, the supporting frame 21 is vertically disposed, a bottom end of the supporting frame 21 is fixed on a floor through the base 20, and the top end of the supporting frame 21 is fixed with the top plate 22. The preferable technical effects are as follows: an embodiment of the frame assembly 11 is provided to facilitate the installation of the slate assembly 12.
As an embodiment of the present application, as shown in fig. 3 and 7, the side plates 13 are hooked to the support frame 21. Of course, the side plate 13 may also be fixed to the support frame 21 by welding (not shown in the drawings), and in specific implementation, the connecting seat is fixed to the side plate 13 by an expansion bolt, and then the connecting seat is welded to the support frame 21.
As an embodiment of the present application, as shown in fig. 3 and 7, a hanging portion 23 is fixed to the support frame 21, a hanging block 24 is fixed to a surface of the side plate 13 facing the support frame 21, and the hanging block 24 is hung on the hanging portion 23. The hanging part 23 is L-shaped, and the hanging block 24 is provided with a hanging port which is sleeved on the hanging part 23. Wherein the hanging portion 23 is provided on the cross beam 26.
As an embodiment of the present application, as shown in fig. 3 and 8, the supporting framework 21 includes longitudinal beams 25 and cross beams 26, the longitudinal beams 25 are respectively vertically disposed, top ends of the longitudinal beams 25 are fixed on the top plate 22, bottom ends of the longitudinal beams 25 are fixed on the base 20, and the cross beams 26 are horizontally disposed on the longitudinal beams 25. The technical effects of the embodiment are as follows: the structural strength of the support frame 21 is improved by the staggered arrangement of the longitudinal beams 25 and the transverse beams 26.
As an embodiment of the present application, as shown in fig. 5, one end of the insertion part 18 is fixed on the shielding plate 16, and the other end of the insertion part 18 passes through the insertion port 17 and extends to the outside of the insertion port 17; the other ends of the two plug portions 18 connected to the same side plate 13 are fixed by clips 27. During specific implementation, the other ends of the two insertion parts 18 are respectively provided with a clamping groove, and the two buckling parts of the hoop 27 are respectively and correspondingly inserted into the clamping grooves of the two insertion parts 18, so that the two insertion parts 18 are clamped. The preferable technical effects are as follows: the stability of the inserting part 18 is improved, and the inserting part 18 is not easy to loosen; and has the advantage that the installation effectiveness is high.
In one embodiment of the present application, the cover plate 14 is fixed to the upper surface of the top plate 22 by a construction glue. The top plate 22 has a large supporting area, so that the cover plate 14 can be effectively supported; therefore, the cover plate 14 can be effectively fixed by using the building adhesive. The installation mode has the advantage of high installation efficiency.
As an embodiment of the present application, as shown in fig. 8, a bead 28 is fixed obliquely between the side member 25 and the cross member 26. The reinforcing ribs 28 are fixed between the longitudinal beams 25 and the transverse beams 26 in an inclined manner, so that the reinforcing ribs 28, the longitudinal beams 25 and the transverse beams 26 form a triangular structure, and the structural strength of the support framework 21 can be further improved.
It will be apparent to those skilled in the art that various changes and modifications can be made without departing from the inventive concept thereof, and these changes and modifications can be made without departing from the spirit and scope of the invention.