House box combined type pitched roof structure
Through the combined structure of the side tripod and the middle tripod, combined with the positioning sleeve and pin design, the problem of poor drainage and leakage of flat roofs of modular houses is solved, and a stable, excellent drainage and beautiful sloped roof structure is achieved, which is suitable for modular houses in rainy areas.
Patent Information
- Application Number
- CN202422744844.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The flat roof structure of modular houses has shortcomings in drainage performance, especially in rainy areas, which are prone to water leakage. Traditional sloped roofs have technical difficulties in modular assembly and waterproofing requirements.
The combined structure of the side tripod and the middle tripod is adopted. The beam body is connected, combined with the positioning sleeve and pin design, and a stable roof platform is formed, and the canopy window and step-shaped double-layer cornice is used to achieve fast and precise installation and excellent drainage performance.
It improves the stability and drainage effect of the roof, reduces the risk of water accumulation and leakage, improves living comfort and appearance aesthetics, and reduces energy consumption, making it suitable for use in rainy areas.
Smart Images

Figure CN223240928U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of roof structures, and in particular relates to a novel house box combined type slope roof structure. Background Art
[0002] The industrialized construction model of modular container homes has garnered considerable attention. Traditional flat roof structures in modular homes suffer from drainage issues, particularly in rainy regions, where water easily accumulates and causes leaks. While pitched roofs offer greater drainage advantages, they still present technical challenges in modular assembly and waterproofing.
[0003] In the prior art, most container house roofs usually adopt a flat roof design. Although this structure is convenient for loading and unloading and transportation, it is not effective in waterproofing and drainage, and has a relatively monotonous appearance. Summary of the Invention
[0004] The utility model aims to solve the above problems and provides a house box combined slope roof structure which is easy to install and has good drainage performance.
[0005] In order to achieve the above-mentioned purpose of the utility model, the utility model adopts the following technical scheme, which includes a roof platform and a spire structure, and is characterized in that: the spire structure includes side tripods and a middle tripod, and the side tripods and the middle tripods are connected by beams; corresponding positioning sleeves are provided between the roof platform and the side tripods, and the middle tripods; the roof platform and the side tripods, as well as the middle tripods are connected by pins in the positioning sleeves.
[0006] As a preferred solution of the present invention, the side tripod includes a first triangular frame consisting of a first straight side connected to the roof platform and two first oblique sides, and the positioning sleeve is arranged on the first straight side of the side tripod; side beams are arranged on the sides of the two first oblique sides of the side tripod, and positioning angle steels that cooperate with the beam body are arranged on the side beams.
[0007] Furthermore, a dormer window is provided on the side tripod.
[0008] Furthermore, a decorative panel mounting beam is provided between the side tripod and the edge beam.
[0009] Furthermore, the side tripod is an isosceles triangle frame composed of two right-angled triangle frames.
[0010] As another preferred solution of the present invention, the intermediate tripod includes a second triangular frame consisting of a second straight side connected to the roof platform and two second oblique sides, and the positioning sleeve is arranged on the second straight side of the intermediate tripod; the two second oblique sides of the intermediate tripod are provided with positioning angle steels that cooperate with the beam body.
[0011] As a third preferred solution of the present invention, the roof platform includes a basic frame, and eaves are provided on one or more sides outside the basic frame.
[0012] Furthermore, a decorative panel mounting beam is provided outside the eaves.
[0013] Furthermore, the roof platform is configured as a double-layer structure.
[0014] Furthermore, the eaves are configured as a stepped double-layer structure.
[0015] The beneficial effects of this utility model are as follows: By connecting the side and middle tripods with beams, this utility model meets the overall stability and strength requirements of the roof's peak structure, ensuring the roof's stability under high wind pressure and external forces. The coordinated use of locating sleeves and pins allows for quick and precise connection between the roof platform and the triangular frames, improving construction efficiency and structural safety.
[0016] The pointed roof structure effectively solves the problem of poor drainage on traditional flat roofs. The roof's slope naturally guides rainwater out, reducing water accumulation and the risk of leakage, eliminating the need for complex drainage systems and making it particularly suitable for rainy regions. Dormer windows on the side tripods increase light and ventilation, improving indoor air circulation, enhancing living comfort, and saving energy. The double-layer structure of the roof platform can be filled with thermal insulation materials to enhance thermal insulation and reduce energy consumption, meeting energy conservation and environmental protection requirements.
[0017] The stepped double-layer cornice not only improves drainage but also enhances the building's aesthetics. The decorative panel mounting beam simplifies decorative panel installation, enhancing construction convenience and a neater appearance. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a structural diagram of the present utility model.
[0019] Figure 2 It is a structural diagram of an embodiment of a side tripod.
[0020] Figure 3 It is a structural diagram of another embodiment of a side tripod.
[0021] Figure 4 It is a structural diagram of an embodiment of an intermediate tripod.
[0022] Figure 5It is a structural schematic diagram of another embodiment of the intermediate tripod.
[0023] Figure 6 It is a structural diagram of an embodiment of a roof platform.
[0024] Figure 7 It is a structural schematic diagram of another embodiment of a roof platform.
[0025] Figure 8 It is a structural schematic diagram of the third embodiment of the roof platform.
[0026] In the attached drawings, 1 is the roof platform, 11 is the eaves, 2 is the side tripod, 21 is the dormer window, 22 is the first oblique side, 23 is the first straight side, 3 is the middle tripod, 31 is the second oblique side, 32 is the second straight side, 4 is the beam body, 5 is the positioning sleeve, 6 is the decorative panel mounting beam, 7 is the positioning angle steel, and 8 is the spire structure. DETAILED DESCRIPTION
[0027] The utility model includes a roof platform 1 and a spire structure 8, and is characterized in that: the spire structure 8 includes a side tripod 2 and a middle tripod 3, and the side tripod 2 and the middle tripod 3, as well as the middle tripod 3 and the middle tripod 3 are connected by a beam body 4; corresponding positioning sleeves 5 are provided between the roof platform 1 and the side tripod 2, and the middle tripod 3; the roof platform 1 and the side tripod 2, as well as the middle tripod 3 are connected by pin shafts in the positioning sleeves 5.
[0028] By providing side tripods 2 and a central tripod 3, connected by beams 4, the overall stability and strength requirements of the roof peak structure 8 are met. Furthermore, the coordination of the positioning sleeves 5 and the pins allows for a quick and precise connection between the roof platform 1 and the triangular framework, significantly improving installation efficiency and ensuring stability and safety during the assembly process.
[0029] The side tripod 2 includes a first triangular frame consisting of a first straight edge 23 connected to the roof platform 1 and two first oblique edges 22, and the positioning sleeve 5 is arranged on the first straight edge 23 of the side tripod 2; side beams are arranged on the sides of the two first oblique edges 22 of the side tripod 2, and positioning angle steels 7 that cooperate with the beam body 4 are arranged on the side beams.
[0030] The side tripod 2 is designed as a triangular frame formed by a first straight edge 23 and two first oblique edges 22. Positioning sleeves 5 are provided on the straight edges to provide a more stable connection between the tripod and the roof platform 1. The provision of the side beam not only enhances the strength of the roof structure, but also, through the design of the positioning angle steel 7, allows for faster and more precise installation of the beam body 4, improving overall assembly efficiency and structural stability.
[0031] The side tripod 2 is provided with a dormer window 21 .
[0032] The dormer window 21 on the side tripod 2 increases the lighting and ventilation functions of the roof, improves the air circulation in the house, enhances the comfort of the living environment, and provides more natural light sources for the house.
[0033] A decorative panel mounting beam 6 is provided between the side tripod 2 and the edge beam.
[0034] A decorative panel mounting beam 6 is provided between the side tripod 2 and the edge beam, which makes the decorative panel installation easier, enhances the aesthetics of the roof, and provides users with a variety of appearance design options.
[0035] The side tripod 2 is an isosceles triangle frame composed of two right-angled triangle frames.
[0036] The side tripod 2 adopts a design of combining two right-angled triangle frames into an isosceles triangle frame, which makes the structure more symmetrical and balanced, improves the overall stability and wind resistance of the roof, and ensures the safety of the roof under severe weather conditions.
[0037] The intermediate tripod 3 includes a second triangular frame consisting of a second straight edge 32 connected to the roof platform 1 and two second oblique edges 31. The positioning sleeve 5 is arranged on the second straight edge 32 of the intermediate tripod 3; the two second oblique edges 31 of the intermediate tripod 3 are provided with positioning angle steels 7 that cooperate with the beam body 4.
[0038] The intermediate tripod 3 is constructed with a second straight edge 32 and two second oblique edges 31. Positioning sleeves 5 are provided on the straight edges to facilitate a secure connection between the intermediate tripod 3 and the roof platform 1. The coordinated design of the positioning angle steel 7 allows for more precise installation of the beam 4, ensuring the overall structural strength and ease of installation of the roof.
[0039] The roof platform 1 comprises a basic frame, and an eave 11 is provided on one or more sides of the basic frame.
[0040] The roof platform 1 includes a basic frame and is provided with eaves 11 on one or more outer sides, which can effectively guide rainwater to drain out, reduce water accumulation on the roof, prevent rainwater leakage, and improve the waterproof performance and service life of the house.
[0041] A decorative panel mounting beam 6 is provided outside the eaves 11 .
[0042] The decorative panel mounting beam 6 is arranged outside the eaves 11, which makes the installation process of the decorative panel more convenient and improves the construction efficiency. At the same time, it provides the house with a beautiful and neat appearance and increases the flexibility of design.
[0043] The roof platform 1 is configured as a double-layer structure.
[0044] The roof platform 1 is designed as a double-layer structure, which further enhances the thermal insulation and heat preservation performance of the roof, ensures the comfort inside the house, and helps to reduce energy consumption and improve energy-saving effects.
[0045] The cornice 11 is configured as a stepped double-layer structure.
[0046] The eaves 11 are designed as a stepped double-layer structure, which effectively improves the drainage performance of the roof, prevents rainwater from flowing into the interior of the house, and enhances the waterproof effect. In addition, this design increases the layering and decorative effect of the roof, improving the overall aesthetics of the house.
[0047] like Figure 1 As shown, the roof platform 1 is installed on the top of the container house. Figures 6-8 The three embodiments shown are connected to each other to form a rectangular roof platform 1 structure. The roof platform 1 has stepped eaves 11 on all sides. The decorative plate mounting beams 6 are welded in advance at the eaves 11. The side tripods 2 and the middle tripod 3 are connected in accordance with the Figure 1 As shown, it is positioned and fixed by the pin shaft and the positioning sleeve 5; then the beam body 4 is installed between the side tripod 2 and the middle tripod 3, and between the middle tripod 3 and the middle tripod 3 to complete the construction of the overall frame; after the frame is built, two layers of European pine boards are laid and fixed with self-tapping screws, and a layer of asphalt tiles. The overall structure is simple and easy to assemble. There is no need to set up a complicated drainage system. If it needs to be transported, the top cover can be disassembled into multiple parts and loaded into the house box below, which reduces the transportation space on the return trip and reduces the return transportation cost.
[0048] It can be understood that the above specific description of the present invention is only used to illustrate the present invention and is not limited to the technical solutions described in the embodiments of the present invention. Ordinary technicians in this field should understand that the present invention can still be modified or replaced by equivalents to achieve the same technical effects; as long as the use requirements are met, they are within the scope of protection of the present invention.
Claims
1. A house box combined slope roof structure, comprising a roof platform (1) and a spire structure (8), characterized in that: The pointed roof structure (8) comprises a side tripod (2) and a middle tripod (3), and the side tripod (2) and the middle tripod (3), as well as the middle tripod (3) and the middle tripod (3) are connected via a beam body (4); corresponding positioning sleeves (5) are provided between the roof platform (1) and the side tripod (2), as well as the middle tripod (3); the roof platform (1) and the side tripod (2), as well as the middle tripod (3) are connected via a pin shaft in the positioning sleeve (5).
2. The housing box combined slope roof structure according to claim 1, characterized in that: The side tripod (2) comprises a first triangular frame formed by a first straight side (23) and two first oblique sides (22) connected to the roof platform (1); the positioning sleeve (5) is arranged on the first straight side (23) of the side tripod (2); side beams are arranged on the sides of the two first oblique sides (22) of the side tripod (2), and positioning angle steels (7) that cooperate with the beam body (4) are arranged on the side beams.
3. The housing box combined slope roof structure according to claim 2, characterized in that: The side tripod (2) is provided with a tiger window (21).
4. The housing box combined slope roof structure according to claim 2, characterized in that: A decorative panel mounting beam (6) is provided between the side tripod (2) and the edge beam.
5. The housing box combined slope roof structure according to claim 2, characterized in that: The side tripod (2) is an isosceles triangle frame formed by combining two right-angled triangle frames.
6. The housing box combined slope roof structure according to claim 1, characterized in that: The intermediate tripod (3) comprises a second triangular frame formed by a second straight side (32) connected to the roof platform (1) and two second oblique sides (31); the positioning sleeve (5) is arranged on the second straight side (32) of the intermediate tripod (3); and positioning angle steels (7) that cooperate with the beam body (4) are arranged on the two second oblique sides (31) of the intermediate tripod (3).
7. The housing box combined slope roof structure according to claim 1, characterized in that: The roof platform (1) comprises a basic frame, and eaves (11) are provided on one or more sides outside the basic frame.
8. The housing box combined slope roof structure according to claim 7, characterized in that: A decorative panel mounting beam (6) is provided outside the eaves (11).
9. The housing box combined slope roof structure according to claim 7, characterized in that: The roof platform (1) is configured as a double-layer structure.
10. The housing box combined slope roof structure according to claim 9, characterized in that: The eaves (11) are configured as a stepped double-layer structure.