Double-layer conical roof tent
By constructing a double-layered cone-shaped tent, using a high-strength anodized aluminum alloy frame and aluminum alloy stairs, the problems of low site utilization and limited view of single-layered cone-shaped tents were solved, achieving twice the activity space and a wider view, and improving structural stability and safety.
Patent Information
- Application Number
- CN202520017312.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-03
AI Technical Summary
The existing cone-shaped tent structure is a single-layer design, which results in low site utilization, limited visibility, unstable installation, inability to connect with the wall, and is unsightly and unsafe to use.
The structure is constructed with a high-strength anodized aluminum alloy, featuring a double-layered frame, a conical roof and curtains, wooden flooring, and aluminum alloy stairs to enhance wind and snow resistance, creating a double-layered living space that can be connected to the walls.
It maximizes the use of space, provides double the activity space and field of vision, enhances the user experience, strengthens structural stability and safety, and is suitable for installation on various walls.
Smart Images

Figure CN223952333U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of canopy products, especially to a double-layer conical roof. BACKGROUND
[0002] In many outdoor activities, in order to achieve outdoor wind-shielding, rain-shielding, sun-shielding or light-transmitting, etc., basically, a canopy structure with flexible renting and convenient disassembling is selected. This canopy structure is a large tent structure installed on the ground. The space after installation is larger, which can accommodate more people to use. Especially, the structure of the conical roof canopy is most popular and has a high utilization rate. Such conical roof canopy is a large single-layer canopy structure. However, in the actual use process, many problems are found, as follows: (1) Due to the limited outdoor use site, and the conical roof canopy is a large tent structure with large size, it is difficult to install two conical roof canopies for use in the use site. Basically, only one large conical roof canopy structure can be installed. However, the conical roof canopy of the prior art is a single-layer design. Thus, it cannot meet the needs of more activity space and cannot accommodate more users, and cannot realize the maximum use of the use site. At least double activity area and space cannot be obtained, and the user experience and comfort cannot be further improved. In addition, the single-layer design structure cannot realize a farther and wider view for the user during use, as shown in Figure 20 (2) The traditional conical roof canopy is installed on the ground. A ground mat is directly laid on the ground or no ground mat is laid, and foldable chairs, stools, etc. can be flexibly selected. This way, first, it is not high-end and not aesthetic. Second, when it rains or blows, rain, moisture or dry soil can stain the ground mat, making it difficult to clean and not clean, reducing the number of uses. Third, when encountering strong wind, the ground mat will be blown up or blown over, causing the objects on the ground mat to be blown over as well. Special ground mat fixing nails are needed to fix it, but sometimes there are no special objects to fix the nails. (3) The existing conical roof canopy will add a conical roof and a curtain according to needs. The main frame of the conical roof canopy is composed of a cross beam and a stand column. Generally, a bumper is installed between the cross beam and the stand column to improve the supporting strength and ensure stability. The bumper mounting seat 42 for installing the bumper is a U-shaped slot structure, as shown in Figure 21The bumper mounting seat is mounted on the bottom of the cross beam and the inner side of the column, and the part of the cross beam bottom and the part of the column are clamped and wrapped, so that the curtain mounting groove provided on the cross beam and the column is shielded, the curtain mounting is not continuous, or the mounting point of the curtain cannot be provided at the position, and the mounting of the curtain is not firm.(4) The existing conical roof house is basically independently installed on the ground of the site, relies on the column and the like to realize the support of the frame and the like, and the four sides or any side of the conical roof house cannot be connected and mounted with other wall bodies or closely arranged, and is like an independent house state of a nail house; thus, the application and installation of the conical roof house cannot be effectively popularized, and cannot be installed on some wall bodies.
[0003] Therefore, it is necessary to improve the structure of the conical roof house of the prior art to solve the problems of the prior art, and to develop a double-layer conical roof house with a double-layer structure, improved far and wide vision, and climbing and overlooking. SUMMARY
[0004] The utility model discloses a double-layer conical roof house which adopts high-strength aluminum oxide alloy (material 6061-T6) to form a two-layer frame and a staircase, is provided with a conical roof at the top of the frame and a curtain outside the two-layer movable area, and is provided with a bottom plate on the ground of the one-layer frame and the ground of the two-layer frame, and the overall frame and the bottom plate structure are firm and durable, can resist a wind speed of 100 kilometers per hour (wind load 0.5 kilonewton per square meter), and have higher wind resistance and snow load resistance than the structure of a single-layer house. The double-layer conical roof house has a double-layer movable space structure, can not meet more movable space due to site limitation, can obtain double movable area and space under the same projection area, realizes maximum use of the site, and provides a more comfortable environment and experience for users, and the double-layer conical roof house is widely used, can accommodate more customers, provides far and wide vision, can create a VIP viewing area or rest area, climbing and overlooking, and has good applicability.
[0005] The utility model solves its technical problem adopts the technical scheme that a double-layer conical roof house, including many first layer stand on the ground around the first layer vertical column of forming square plane, the first layer crossbeam subassembly of forming the first layer main frame of laying on each first layer vertical column top surface, the first layer floor of laying on the ground and placing between each first layer vertical column, the second layer floor of laying on the first layer crossbeam subassembly, the guardrail of setting around crossbeam subassembly around, the second layer vertical column of standing on the first layer crossbeam subassembly around forming square plane, the second layer crossbeam subassembly of forming the second layer main frame of setting on each second layer vertical column top surface, the conical support of installing between second layer vertical column and second layer crossbeam subassembly installation position and showing conical distribution, the conical roof of wrapping second layer main frame and conical support, the surrounding curtain of wrapping the first layer main frame, the aluminum alloy stair of installing between ground and first layer crossbeam subassembly and leading to into the second layer main frame space.
[0006] Further, the first layer crossbeam subassembly includes a plurality of first layer crossbeams that are mutually installed with corresponding first layer vertical columns, an I-beam that is disposed between mutually facing first layer crossbeams and is horizontally distributed, a bumper that is installed between the first layer crossbeams and corresponding first layer vertical columns, and a crossbeam fixed mounting seat that fixes and installs the first layer vertical columns and corresponding first layer crossbeams.
[0007] Further, the first layer crossbeam has a surrounding curtain mounting groove at a corner position for installing a surrounding curtain, an end of the bumper has a bumper mounting seat that is fixedly installed with an inner side surface of the first layer crossbeam and does not block the surrounding curtain mounting groove, and a bumper edge seat that is fixedly installed corresponding to the bumper mounting seat is pre-embedded in an inner cavity of the first layer crossbeam.
[0008] Further, the crossbeam fixed mounting seat includes a crossbeam mounting middle clamping plate, a crossbeam supporting mounting plate that is installed on a side surface of the crossbeam mounting middle clamping plate and is used for installing and supporting the corresponding first layer crossbeams, a vertical column mounting hole that is arranged corresponding to the first layer vertical column, and a crossbeam mounting hole that is arranged corresponding to the first layer crossbeam.
[0009] Further, the first layer vertical column has a first layer bottom plate that is installed at a bottom portion, the first layer bottom plate includes a first layer connecting plate that is fixedly installed with the ground, and a vertical insertion plate that is vertically installed on the first layer connecting plate and is fixedly installed with the bottom portion of the first layer vertical column, the vertical insertion plate is composed of two symmetrically arranged laser cutting plates and a seamless reinforcing pipe that is installed between the two laser cutting plates.
[0010] Further, the second layer vertical column has a second layer bottom plate that is installed at a bottom portion, a second layer connecting plate that is installed between adjacent first layer crossbeams, and the second layer bottom plate is installed on the second layer connecting plate.
[0011] Further, the second layer crossbeam assembly comprises a plurality of second layer crossbeams which are installed with the top of the second layer stand, and the conical support comprises four conical support crossbeams which are installed with the top of the second layer stand between two second layer crossbeams arranged in the same direction, and the top of the four conical support crossbeams is connected and fixed to the same fixed point.
[0012] Further, the first layer floor and the second layer floor each comprise a floor edge beam which constitutes a frame structure, a floor middle beam which is installed between the mutually facing floor edge beams, and a plurality of wood core boards which are installed between the floor edge beams and the floor middle beam and are mutually spliced; the first layer floor is provided with one wood core board, and the second layer floor is provided with two wood core boards which are mutually overlapped; one side of the wood core board is provided with a floor groove, and the other side is provided with a floor convex groove which is mutually spliced with the floor groove of the adjacent wood core board; the bottom of the wood core board of the first layer floor and the bottom of the two overlapped wood core boards of the second layer floor are each provided with a floor reinforcing pipe.
[0013] Further, the aluminum alloy staircase comprises an aluminum alloy staircase stand, aluminum alloy staircase edge beams which are fixedly installed with the ground and corresponding first layer crossbeams and are supported and installed by the aluminum alloy staircase stand and are symmetrically arranged, and aluminum alloy steps which are installed between the symmetric aluminum alloy staircase edge beams; the top surface of the aluminum alloy step is provided with an anti-skid step surface; the conical roof and the curtain are both flame-retardant double-sided PVC synthetic fiber cloth.
[0014] In summary, the double-layer conical roof house of the present application adopts high-strength aluminum oxide alloy (material 6061-T6) to form a two-layer frame and a staircase, is provided with a conical roof on the top of the frame and a curtain outside the two-layer movable area, and is provided with a floor on the one-layer ground and the two-layer ground of the two-layer frame, so that the overall frame and the floor structure are firm and durable, the wind resistance reaches 100 kilometers per hour (wind load 0.5 kilonewton per square meter), and the double-layer conical roof house has higher wind resistance and snow load capacity than the single-layer conical roof house. The entire double-layer conical roof house has a double-layer movable space structure and cannot meet more movable space due to limited space, so that double the movable area and space are obtained under the same projection area, the space is maximized, and a more comfortable environment and experience are provided for users; and the double-layer conical roof house is widely used, can accommodate more customers, provides a wider field of view, and can create a VIP viewing area or a rest area, and has good applicability.
[0015] Compared with the single-layer conical roof structure of the prior art, the double-layer conical roof house of the present application has the following beneficial effects:
[0016] (1) the frame of the double-layer conical tent house is made of full aluminum material, is firm and durable, and the tent cloth arranged on the outer side is made of flame-retardant PVC synthetic fiber cloth, and the flame-retardant standard meets the European standard;
[0017] (2) the two-layer structure design is adopted, the area can be expanded, and the use area is 200% utilized; (4) the wooden floor is arranged on the ground of the second layer structure, cleaning is facilitated, the grade is improved, and the waterproof and corrosion-resistant performance effect is achieved;
[0018] (5) the stairway is provided with an aluminum step structure, is provided with an anti-skid design, is firm and anti-skid, and the safety performance in use is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a structure schematic view of a double-layer conical tent house of the embodiment 1 of the utility model;
[0020] Figure 2 is a structure schematic view of a double-layer conical tent house without setting a conical tent and a curtain of the embodiment 1 of the utility model;
[0021] Figure 3 is Figure 2 a structure schematic view without arranging the first layer floor and the second layer floor;
[0022] Figure 4 is a partial structure exploded schematic view of the first layer crossbeam and the first layer stand column installation;
[0023] Figure 5 is a partial structure exploded schematic view of the first layer crossbeam and the I-shaped crossbeam installation;
[0024] Figure 6 is a partial structure exploded schematic view of the first layer crossbeam and the second layer stand column installation;
[0025] Figure 7 is a partial structure exploded schematic view of the first layer stand column and the first layer bottom plate installation;
[0026] Figure 8 is a three-dimensional schematic view of a crossbeam fixed mounting seat;
[0027] Figure 9 is a front view schematic view of the crossbeam fixed mounting seat;
[0028] Figure 10 is a right view schematic view of the crossbeam fixed mounting seat;
[0029] Figure 11 is a three-dimensional view of the first layer bottom plate;
[0030] Figure 12is a front view of the first floor base plate;
[0031] Figure 13 is a top view of the first floor base plate;
[0032] Figure 14 is a left view of the first floor base plate;
[0033] Figure 15 is a partial structural schematic view of the first floor;
[0034] Figure 16 is a perspective view of the wood core plate;
[0035] Figure 17 is a partial schematic view of the aluminum alloy stairway;
[0036] Figure 18 is a front view of the aluminum alloy tread plate;
[0037] Figure 19 is a right view of the first floor cross beam;
[0038] Figure 20 is a structural schematic view of a single-layer conical roof house of the prior art;
[0039] Figure 21 is a partial exploded schematic view of the cross beam and post installation of the prior art;
[0040] The reference signs in the drawings are as follows: 1. first floor post; 2. first floor cross beam assembly; 3. first floor floor; 4. second floor floor; 5. guardrail; 6. second floor post; 7. second floor cross beam assembly; 8. conical support; 9. conical roof; 10. curtain; 11. aluminum alloy stairway; 12. first floor cross beam; 13. I-beam; 14. bumper; 15. cross beam fixed mounting seat; 16. curtain mounting groove; 17. bumper mounting seat; 18. bumper side seat; 19. cross beam installation intermediate clamping plate; 20. cross beam bearing mounting plate; 21. post mounting hole; 22. cross beam mounting hole; 23. first floor base plate; 24. first floor connecting plate; 25. vertical insertion plate; 26. laser cutting plate; 27. seamless reinforcing pipe; 28. second floor base plate; 29. second floor connecting plate; 30. second floor cross beam; 31. conical support cross beam; 32. floor edge beam; 33. floor intermediate beam; 34. wood core plate; 35. floor groove; 36. floor convex groove; 37. floor reinforcing pipe; 38. aluminum alloy stairway post; 39. aluminum alloy stairway edge beam; 40. aluminum alloy tread plate; 41. anti-skid tread plate surface; 42. bumper mounting seat. DETAILED DESCRIPTION
[0041] Example 1
[0042] A double-layer conical roof house described in this Example 1, as Figure 1 ,Figure 2 and Figure 3 As shown in the figure, it comprises nine first layer columns 1 standing on the ground to form a square plane, a first layer crossbeam assembly 2 laid on the top surface of each first layer column to form a first layer main frame, a first layer floor 3 laid on the ground and placed between each first layer column, a second layer floor 4 laid on the first layer crossbeam assembly, a guardrail 5 arranged around the crossbeam assembly, a second layer column 6 standing on the first layer crossbeam assembly to form a square plane and arranged in a straight line with the first layer column, a second layer crossbeam assembly 7 arranged on the top surface of each second layer column to form a second layer main frame, a conical support 8 installed between the second layer column and the installation position of the second layer crossbeam assembly and distributed in a conical shape, a conical top cover 9 wrapping the second layer main frame and the conical support, a surrounding curtain 10 wrapping the first layer main frame, and an aluminum alloy staircase 11 installed between the ground and the first layer crossbeam assembly and leading to the space of the second layer main frame. The double-layer conical top cover house adopts a double-layer frame structure to form a double-layer using space. The frame components mainly include columns, crossbeams, conical supports, floors, staircases, guardrails, etc., and the cover cloth components mainly include a conical top cover and a surrounding curtain, etc. PVC.
[0043] When the double-layer conical top cover house is installed, the crossbeams are first spliced with the columns and the corresponding connecting pieces to form a first layer main frame, then the staircase is assembled on the ground and connected with the first layer main frame to form a connection installation leading to the second layer main frame, the second layer floor is laid, and the guardrail is installed; then the conical support and the conical top cover pre-assembled on the ground are hoisted to the second layer main frame and fixed, the connection position between the second layer column frame and the first layer main frame is connected firmly by screws, and finally the first layer floor is installed and the corresponding surrounding curtain is installed.
[0044] The overall double-layer conical top cover house adopts a modular design structure, has a short construction period, and can repeatedly disassemble corresponding components. The disassembled components can be stacked together, which is convenient for storage and transportation. In addition, the double-layer conical top cover house can also be installed with various walls, such as ceiling interior decoration, glass wall, ABS hard wall, sandwich wall, glass door, sliding rail door, electric rolling shutter door, etc., which expands the use range and use site.
[0045] In this embodiment 1, as Figure 4 and Figure 5As shown, the first layer crossbeam assembly comprises a plurality of first layer crossbeams 12 installed with corresponding first layer columns, an I-shaped crossbeam 13 arranged between the mutually facing first layer crossbeams and distributed horizontally, a bumper 14 installed between the first layer crossbeams and the corresponding first layer columns, and a crossbeam fixed mounting seat 15 for fixedly mounting the first layer columns and the corresponding first layer crossbeams. The first layer crossbeam assembly is composed of a plurality of first layer crossbeams to form a square frame shape, each side of the square frame shape is formed by two first layer crossbeam assemblies connected in the same direction, and a first layer column is also connected at the position where the two first layer crossbeam assemblies are connected, i.e., the square frame structure composed of the first layer crossbeams forms a similar "day" structure. The installation connection of the adjacent two first layer crossbeams and the first layer column is formed by the crossbeam fixed mounting seat. The I-shaped crossbeam is installed between the first layer crossbeams arranged on the side of the square frame and the first layer crossbeams at the intermediate position of the square frame, and is fixedly installed by external hexagonal bolts and screws. Similarly, the adjacent first layer crossbeams and the first layer columns and the crossbeam fixed mounting seat are also fixedly installed by external hexagonal bolts and screws. The bumper is used for the installation connection of the first layer crossbeams and the first layer columns at the corner position, and is used for tensioning the first layer crossbeams and the first layer columns, so as to ensure the connection and 90-degree right angle state between the two components.
[0046] In this embodiment 1, as shown in Figure 4 and Figure 19 , the four corner positions of the first layer crossbeam are provided with a curtain mounting groove 16 for installing a curtain, the end of the bumper is provided with a bumper mounting seat 17 fixedly installed with the bottom surface of the first layer crossbeam and the inner side surface of the first layer column without blocking the curtain mounting groove, and a bumper side seat 18 fixedly installed with the bumper mounting seat is pre-embedded and installed in the inner cavity of the first layer crossbeam. The curtain mounting groove is used for installing the curtain, and when installed, the clamping strip of the curtain is clamped into the curtain mounting groove to form the installation and fixation of the curtain. The bumper is fixedly installed with the corresponding first layer crossbeam and first layer column through the bumper mounting seat, and the bumper is installed at an inclination of 45 degrees. When installing the bumper, first, the bumper side seat is pre-embedded and installed in the corresponding position of the inner cavity of the first layer crossbeam, then the bumper mounting seat is fixedly installed with the bumper side seat, and finally the bumper is installed. The bumper mounting seat is T-shaped sheet structure, which will not block the curtain mounting groove after installation, so that the problem of blocking the curtain mounting groove by the U-shaped groove structure of the bumper mounting seat in the prior art can be avoided.
[0047] In this embodiment 1, as shown in Figure 8 , Figure 9 and Figure 10As shown, the crossbeam fixing mounting base comprises a crossbeam mounting middle clamping plate 19, a crossbeam supporting mounting plate 20 for mounting and supporting the corresponding first layer crossbeam on the side surface of the crossbeam mounting middle clamping plate; the crossbeam mounting middle clamping plate is further provided with a column mounting hole 21 corresponding to the first layer column and a crossbeam mounting hole 22 corresponding to the first layer crossbeam. The mounting holes are used for mounting corresponding components, the crossbeam supporting mounting plate has a similar U-shaped structure, and the bottom has two supporting plates for support; the crossbeam supporting mounting plate is fully welded by a plurality of flat iron contact surfaces, and the crossbeam mounting middle clamping plate and the crossbeam supporting mounting plate are also fully welded by contact surfaces.
[0048] In this embodiment 1, as shown in Figure 7 、 Figure 11 、 Figure 12 、 Figure 13 and Figure 14 As shown, the first layer column is mounted with a first layer bottom plate 23, the first layer bottom plate is formed by a first layer connecting plate 24 fixedly mounted with the ground, a vertical insertion plate 25 vertically mounted on the first layer connecting plate and formed by inserting and fixedly mounting with the bottom of the first layer column, the vertical insertion plate is composed of two symmetrically arranged laser cutting plates 26 and a seamless reinforcing pipe 27 mounted between the two laser cutting plates. The first layer column is connected with the vertical insertion plate by bolts and nuts, the first layer connecting plate is fixed to the ground by expansion screws, the connection between the laser welding plate of the vertical insertion plate and the first layer connecting plate adopts welding connection, and the connection between the seamless reinforcing pipe and the laser welding plate adopts circumferential welding connection.
[0049] In this embodiment 1, as shown in Figure 6 As shown, the second layer column is mounted with a second layer bottom plate 28, a second layer connecting plate 29 is mounted between adjacent first layer crossbeams, and the second layer bottom plate is mounted on the second layer connecting plate. The second layer column is connected and mounted with the second layer bottom plate by bolts, and the second layer bottom plate is fixedly mounted with the secondary connecting plate by welding nuts, so that the second layer column is fixedly mounted and vertically arranged on the first layer crossbeam assembly, forming the connection of the first layer and the second layer frame and achieving the installation effect of double-layer structure.
[0050] In the second layer of the embodiment 1, the second layer crossbeam assembly includes a plurality of second layer crossbeams 30 installed with the top of the second layer column, the conical support includes four conical support crossbeams 31 installed with the top of the second layer column between two second layer crossbeams arranged in the same direction, and the top of the four conical support crossbeams is connected and fixed to the same fixed point. The number of the second layer columns is consistent with the number of the first layer columns, and the second layer columns are installed vertically along the same line. The second layer crossbeams and the second layer columns form the frame of the second layer, and the positions where the second layer columns are connected between the adjacent second layer crossbeams are connected in series by steel material fixed seats to form a whole; the conical support is composed of four conical support crossbeams, and the conical support crossbeams are arranged obliquely, the bottom ends are respectively installed between the connection positions of two first layer crossbeams arranged in the same direction, and the top ends are connected and concentrated at a point to form the conical structure of the whole conical support.
[0051] In the second layer of the embodiment 1, as shown in Figure 15 and Figure 16 The first layer floor and the second layer floor each include a floor edge beam 32 forming a frame structure, a floor middle beam 33 installed between the floor edge beams facing each other, and a plurality of wood core boards 34 installed between the floor edge beams and the floor middle beams and connected to each other. The first layer floor is provided with one wood core board, and the second layer floor is provided with two wood core boards to form a mutual superimposed arrangement. One side of the wood core board is provided with a floor groove 35, and the other side is provided with a floor protrusion 36 connected to the floor groove of the adjacent wood core board. The bottom of the wood core board of the first layer floor and the bottom of the two superimposed wood core boards of the second layer floor are each provided with a floor reinforcing pipe 37. The floor edge beams form the square frame edges of the first layer floor and the second layer floor, and the floor middle beams support each wood core board together with the floor edge beams arranged in the same direction, and the floor edge beams act as a partition beam separating each column of wood core boards. In addition, the wood core boards arranged in the same row are connected and installed by the floor groove and the floor protrusion to form a clamping connection. Finally, the floor reinforcing pipes at the bottom of the first layer floor and the second layer floor are used to improve the supporting capacity and prevent the wood core boards from deforming and cracking.
[0052] In the second layer of the embodiment 1, as shown in Figure 17 and Figure 18As shown, the aluminum alloy stair includes aluminum alloy stair columns 38, aluminum alloy stair side beams 39 fixedly installed with the ground and corresponding first floor cross beams and symmetrically arranged and supported by the aluminum alloy stair columns, and aluminum alloy steps 40 installed between the symmetric aluminum alloy stair side beams, the top surface of the aluminum alloy steps being provided with anti-skid step surfaces 41. The aluminum alloy stair columns are installed on the ground and used to support the entire aluminum alloy stair, achieving the purpose of stable installation of the entire aluminum alloy stair. The aluminum alloy stair side beams are used as installation beams of the aluminum alloy steps and stair handrails. The anti-skid step surfaces provided on the surfaces of the aluminum alloy steps achieve the anti-skid effect and the purpose of safety.
[0053] In the embodiment 1, the conical roof and the surrounding curtain are both flame-retardant double-sided PVC synthetic fiber cloth. The tent cloth of the conical roof and the surrounding curtain is composed of flame-retardant double-sided PVC synthetic fiber cloth, the flame-retardant standard conforms to the European standard, achieving the function of fire prevention and avoiding the situation of large-area fire caused by accidental fire when fire is made in the tent house.
[0054] In the embodiment 1, the double-layer conical roof house is composed of high-strength aluminum oxide alloy (material 6061-T6) for the two-layer frame and the stairs, the conical roof is arranged on the top of the frame, the surrounding curtain is arranged outside the two-layer movable area, and the floor and the second floor are both paved with the floor board. The overall frame and the floor board structure are firm and durable, the wind resistance reaches 100 kilometers per hour (wind load 0.5 kilonewton per square meter), and the double-layer conical roof house has higher wind resistance and snow load capacity than the single-layer tent house. The entire double-layer conical roof house has a double-layer movable space structure, which can meet the requirement of more movable space without being limited by the site. Under the same projection area, the double-layer structure can obtain double movable area and space, realizes the maximum utilization of the site, and provides more comfortable environment and experience for users. In addition to accommodating more customers and providing a wider field of view, the double-layer conical roof house can also create a VIP viewing area or a rest area, and has good application.
[0055] Compared with the single-layer conical roof structure of the prior art, the double-layer conical roof house of the embodiment 1 has the following beneficial effects:
[0056] (1) The frame of the double-layer conical roof house is made of full aluminum material, which is firm and durable. The tent cloth arranged outside is made of flame-retardant double-sided PVC synthetic fiber cloth, and the flame-retardant standard conforms to the European standard.
[0057] (2) The two-layer structure design can expand the area and utilize the area by 200%; (3) The overall structure has strong wind resistance, can prevent rainwater, and can effectively isolate ultraviolet rays; (4) The wooden floor boards are installed on the ground of the two-layer structure, which is convenient for cleaning and improving the grade, and also achieves the performance effect of waterproof and corrosion resistance.
[0058] (5) The set of stairs is provided with an aluminum step plate structure with an anti-skid design, is firm and anti-skid, and greatly improves the safety performance in use.
[0059] The above is only a preferred embodiment of the present application, and does not limit the structure of the present application in any form. Any simple modification, equivalent change and modification of the above embodiment according to the technical essence of the present application still belongs to the scope of the technical solution of the present application.
Claims
1. A double-layered conical roof house, characterized in that, The application relates to a square-shaped floor structure, which comprises a plurality of first-layer columns (1) standing on the ground and surrounding a square-shaped plane, a first-layer crossbeam assembly (2) arranged on the top surface of each first-layer column to form a first-layer main frame, a first-layer floor (3) arranged on the ground and placed between each first-layer column, a second-layer floor (4) arranged on the first-layer crossbeam assembly, a guardrail (5) arranged around the crossbeam assembly, a second-layer column (6) standing on the first-layer crossbeam assembly and surrounding a square-shaped plane, a second-layer crossbeam assembly (7) arranged on the top surface of each second-layer column to form a second-layer main frame, a conical support (8) arranged between the second-layer column and the mounting position of the second-layer crossbeam assembly and tapering, a conical roof (9) wrapping the second-layer main frame and the conical support, a curtain (10) wrapping the first-layer main frame, and an aluminum alloy stair (11) arranged between the ground and the first-layer crossbeam assembly and leading into the space of the second-layer main frame.
2. A double cone top house according to claim 1, wherein, The first-layer crossbeam assembly comprises a plurality of first-layer crossbeams (12) which are mutually installed with the corresponding first-layer columns, an I-shaped crossbeam (13) arranged between the mutually facing first-layer crossbeams and horizontally distributed, a bumper (14) installed between the first-layer crossbeam and the corresponding first-layer column, and a crossbeam fixed mounting seat (15) which fixes and installs the first-layer column and the corresponding first-layer crossbeam.
3. A double cone roof house according to claim 2, characterized in that The four-corner positions of the first-layer crossbeam are provided with curtain mounting grooves (16) for installing the curtain, the end of the bumper is provided with a bumper mounting seat (17) which is fixedly installed with the bottom surface of the first-layer crossbeam and the inner side surface of the first-layer column and does not block the curtain mounting groove, and a bumper side seat (18) which is fixedly installed with the bumper mounting seat is pre-embedded in the inner cavity of the first-layer crossbeam.
4. A double cone roof house according to claim 3, characterized in that The crossbeam fixed mounting seat comprises a crossbeam mounting middle clamping plate (19), a crossbeam supporting mounting plate (20) which is installed on the side surface of the crossbeam mounting middle clamping plate and is used for installing and supporting the corresponding first-layer crossbeam, a column mounting hole (21) which is arranged corresponding to the first-layer column and a crossbeam mounting hole (22) which is arranged corresponding to the first-layer crossbeam are further arranged on the crossbeam mounting middle clamping plate.
5. A double cone roof house according to claim 4, characterized in that The bottom of the first-layer column is provided with a first-layer bottom plate (23), the first-layer bottom plate is composed of a first-layer connecting plate (24) which is fixedly installed with the ground, a vertical insertion plate (25) which is vertically installed on the first-layer connecting plate and is fixedly installed with the bottom of the first-layer column by insertion, and the vertical insertion plate is composed of two symmetrically arranged laser cutting plates (26) and a seamless reinforced pipe (27) which is installed between the two laser cutting plates.
6. A double cone roof house according to claim 5, characterized in that The bottom of the second-layer column is provided with a second-layer bottom plate (28), a two-layer connecting plate (29) is installed between the adjacent first-layer crossbeams, and the second-layer bottom plate is installed on the two-layer connecting plate.
7. A double-layer conical roof house according to claim 6, characterized in that, The second-layer crossbeam assembly comprises a plurality of second-layer crossbeams (30) which are mutually installed with the top of the second-layer column, the conical support comprises four conical support crossbeams (31) which are obliquely and fixedly connected with the top of the second-layer column between the two second-layer crossbeams arranged in the same direction, and the top of the four conical support crossbeams is fixedly connected with the same fixed point.
8. A double-layer conical roof house according to claim 7, characterized in that, The first floor and the second floor each comprise floor edge beams (32) forming a frame structure, floor middle beams (33) installed between the mutually facing floor edge beams, and a plurality of wood core boards (34) installed between the floor edge beams and the floor middle beams and mutually spliced; the first floor is provided with one layer of wood core boards, and the second floor is provided with two layers of wood core boards to form mutual superposition; one side of the wood core board is provided with a floor groove (35), and the other side is provided with a floor convex groove (36) which is mutually spliced with the floor groove of the adjacent wood core board; the bottom of the wood core board of the first floor and the bottom of the two superposed wood core boards of the second floor are each provided with a floor reinforcing pipe (37).
9. A double-layer conical roof house according to claim 8, characterized in that, The aluminum alloy stair comprises aluminum alloy stair columns (38), aluminum alloy stair edge beams (39) fixedly installed on the ground and corresponding first layer cross beams and supported by the aluminum alloy stair columns and symmetrically distributed, and aluminum alloy steps (40) installed between the symmetric aluminum alloy stair edge beams; the top surface of the aluminum alloy step is provided with an anti-skid step surface (41).
10. A double-layer conical roof house according to claim 9, characterized in that, The conical roof and the curtain are both flame-retardant double-sided PVC synthetic fiber cloth.