A triangular house

By designing a triangular roof structure, combined with a base frame, inclined wall frame, and supporting skeleton, the problems of high construction difficulty and low space utilization of outdoor single buildings were solved, achieving a simple and stable structure, easy construction, and efficient use of space.

CN224300504UActive Publication Date: 2026-05-29PRANCE METALWORK BUILDING MATERIAL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
PRANCE METALWORK BUILDING MATERIAL CO LTD
Filing Date
2025-05-06
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In outdoor single-building projects, concrete construction is difficult, costly, and inconvenient. Existing prefabricated building construction is complex, and multi-story structural designs struggle to balance structural simplicity with high space utilization.

Method used

Design a triangular roof structure, including a base frame, an inclined wall frame, and a supporting skeleton. The supporting skeleton is connected to the base frame through supporting columns. The inclined wall frame and the base frame form a triangular structure. A supporting platform provides auxiliary support for the inclined wall frame. The base frame overlap beam is connected to the inclined wall frame. Waterproof sealant is used to seal the gaps. The supporting platform enables the utilization of the second-floor space.

Benefits of technology

It achieves a simple and stable structure, easy assembly, improved space utilization, reduced damage rate of core components, and enhanced stability and waterproof performance of the house.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224300504U_ABST
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Abstract

The utility model discloses a kind of triangular houses, including bottom frame, inclined wall surface frame and support skeleton, the both sides of the support skeleton are equipped with the inclined wall surface frame, the bottom frame and inclined wall surface frame are connected in triangle structure, to form house interior space;Wherein, the support skeleton is located in the house interior space, the support skeleton includes support platform and support column, the support platform is supported on the bottom frame by the support column;The both sides of the support platform are respectively connected with the inclined wall surface frame, to assist supporting the inclined wall surface frame.Using the utility model, simple and stable structure, and high space utilization rate is built simply.
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Description

Technical Field

[0001] This utility model relates to the field of prefabricated building technology, and in particular to a triangular house. Background Technology

[0002] In outdoor single-building projects, concrete construction is relatively difficult and costly due to factors such as environment, terrain, transportation conditions, and construction costs, and it lacks convenient disassembly and assembly capabilities. Furthermore, it requires a high level of skill and expertise from the construction workers.

[0003] Existing prefabricated buildings have relatively complex construction structures. Multi-story buildings require a corresponding increase in the necessary structural design of the building, making it difficult to balance a simple building structure with a multi-story structure. Therefore, most existing outdoor single-unit simple buildings are single-story structures with low utilization of the longitudinal space. Utility Model Content

[0004] The technical problem to be solved by this utility model embodiment is to provide a triangular house with a simple and stable structure, easy construction and high space utilization.

[0005] To solve the above-mentioned technical problems, this utility model provides a triangular house, including a base frame, an inclined wall frame and a support frame. The inclined wall frame is provided on both sides of the support frame. The base frame and the inclined wall frame are connected in a triangular structure to form an interior space.

[0006] The supporting frame is located within the indoor space and includes a supporting platform and supporting columns. The supporting platform is supported on the base frame by the supporting columns.

[0007] The two sides of the support platform are respectively connected to the inclined wall frame to assist in supporting the inclined wall frame.

[0008] As an improvement to the above solution, the bottom frame is provided with bottom frame overlapping beams on both sides for connecting with the inclined wall frame. The inclined wall frame is connected to the bottom frame through the bottom frame overlapping beams so that the inclined wall frame is tilted relative to the bottom frame.

[0009] As an improvement to the above solution, the inclined wall frame includes a wall body, an overlapping beam on the wall surface, and an overlapping beam on the lower wall surface. The overlapping beam on the wall surface and the overlapping beam on the lower wall surface are respectively located at the top and bottom of the wall body.

[0010] One end of the wall-mounted beam is connected to the main wall body, and the other end is provided with a bottom arc-shaped concave surface.

[0011] The top of the bottom frame lap beam is provided with a bottom arc-shaped convex surface that matches the bottom arc-shaped concave surface, so as to fit into the bottom arc-shaped concave surface.

[0012] As an improvement to the above solution, the bottom frame is provided with a bottom frame overlap groove for installing the bottom frame overlap beam, and the bottom of the bottom frame overlap beam is inserted into the bottom frame overlap groove.

[0013] As an improvement to the above solution, the inclined wall frames on both sides are connected by a top overlapping beam;

[0014] The top lap beam has a top arc-shaped convex surface, and the lap beam on the wall has a top arc-shaped concave surface that matches the top arc-shaped convex surface, so that the top arc-shaped convex surface can be inserted.

[0015] As an improvement to the above solution, the main wall structure includes longitudinal keel, transverse connecting beams, and wall panels;

[0016] Multiple longitudinal keels are provided between the overlapping beams on the wall surface and the overlapping beams on the lower wall surface. Multiple transverse connecting beams are distributed at intervals between adjacent longitudinal keels. The longitudinal keels and transverse connecting beams are connected to form a grid structure with multiple grid openings. The wall panel is laid at the grid openings.

[0017] As an improvement to the above solution, both the overlapping beams on the wall surface and the overlapping beams on the lower wall surface are provided with keel connection surfaces for connecting with the longitudinal keel, and the keel connection surfaces are provided with support edges for supporting the longitudinal keel.

[0018] As an improvement to the above solution, both the longitudinal keel and the transverse connecting beam are provided with waterproof connecting strips for connecting waterproof seals. The waterproof connecting strips are distributed around the grid opening to cover the gaps between adjacent wall panels through the waterproof seals.

[0019] As an improvement to the above solution, the waterproof seal provided with the longitudinal keel is a waterproof cover, and the waterproof connecting strip provided with the longitudinal keel is a longitudinal connecting strip;

[0020] The waterproof cover is connected to the longitudinal connecting strip via a threaded connector. The longitudinal connecting strip has a connecting groove for connecting with the threaded connector. The two sides of the waterproof cover abut against the surface of the wall panel to cover the gap between the longitudinal connecting strip and the wall panel.

[0021] As an improvement to the above solution, the waterproof sealing element provided by the transverse connecting beam is a sealing strip, the waterproof connecting strip provided by the transverse connecting beam is a transverse connecting strip, and the sealing strip is provided with a sealing slot adapted to the transverse connecting strip for insertion of the transverse connecting strip;

[0022] The sealing strip has sealing side grooves on both sides that are adapted to the wall panel. The sealing side grooves are located on both sides of the sealing slot. Two adjacent wall panels are respectively inserted into the sealing side grooves on both sides of the sealing strip to seal the gap between the transverse connecting strip and the wall panel.

[0023] Implementing this utility model has the following beneficial effects:

[0024] This utility model discloses a triangular house, including a base frame, an inclined wall frame, and a support frame. The inclined wall frame is provided on both sides of the support frame. The base frame and the inclined wall frame are connected in a triangular structure to form an interior space. The triangular frame design can improve the structural stability of the house.

[0025] Moreover, the supporting frame is located within the indoor space. The supporting frame includes a supporting platform and supporting columns. The supporting platform is supported on the bottom frame by the supporting columns. The setting of the supporting platform can realize the utilization of the second floor space inside the house.

[0026] Accordingly, the two sides of the support platform are respectively connected to the inclined wall frame to assist in supporting the inclined wall frame, so that the inclined wall frame on both sides can receive an upward support force, so as to avoid the problem of bending and sagging due to the inclined wall frame being too tall. At the same time, it can also cause the inclined wall frame on both sides to tend to converge inward, thereby greatly offsetting the lateral force at the connection between the inclined wall frame and the bottom frame. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the triangular house structure of this utility model;

[0028] Figure 2 This is a schematic diagram of the connection structure between the base frame and the inclined wall frame of this utility model;

[0029] Figure 3 This is a view of the connection structure between the inclined wall panels of this utility model;

[0030] Figure 4 This is a schematic diagram of the longitudinal keel structure of this utility model;

[0031] Figure 5 This is a schematic diagram of the transverse connecting beam of this utility model. Detailed Implementation

[0032] To make the objectives, technical solutions and advantages of this utility model clearer, the utility model will be described in further detail below with reference to the accompanying drawings.

[0033] See Figure 1 , 2In embodiment 3, this utility model provides a triangular house, including a base frame 1, an inclined wall frame 2, and a support frame 3. The inclined wall frame 2 is provided on both sides of the support frame 3. The base frame 1 and the inclined wall frame 2 are connected in a triangular structure to form an interior space a.

[0034] The supporting frame 3 is located in the indoor space a. The supporting frame 3 includes a supporting platform 31 and a supporting column 32. The supporting platform 31 is supported on the bottom frame 1 by the supporting column 32.

[0035] The two sides of the support platform 31 are respectively connected to the inclined wall frame 2 to assist in supporting the inclined wall frame 2.

[0036] Specifically, since the forces acting on the connection between the inclined wall frame 2 and the base frame 1 are generally large, especially the lateral forces which easily generate significant shear forces on the connectors, wear or structural deformation is likely to occur during long-term use and frequent disassembly. Therefore, the base frame 1 is provided with bottom frame overlapping beams 4 on both sides for connecting to the inclined wall frame 2. The inclined wall frame 2 is connected to the base frame 1 via these beams, allowing it to be tilted relative to the base frame 1. Thus, the bottom frame overlapping beams 4 effectively prevent mutual wear and damage caused by direct contact between the inclined wall frame 2 and the base frame 1. Furthermore, when the bottom frame overlapping beams 4 are damaged or deformed and cannot be used effectively, only the beams need to be replaced, thereby reducing the damage rate of the core components during repeated disassembly and use.

[0037] To facilitate installation at different tilt angles, the inclined wall frame 2 includes a wall body 21, an upper wall-mounted overlapping beam 22, and a lower wall-mounted overlapping beam 23. The upper wall-mounted overlapping beam 22 and the lower wall-mounted overlapping beam 23 are respectively located at the top and bottom of the wall body 21. One end of the lower wall-mounted overlapping beam 23 is connected to the wall body 21, and the other end has a bottom arc-shaped concave surface 231. The top of the bottom frame overlapping beam 4 has a bottom arc-shaped convex surface 41 that matches the bottom arc-shaped concave surface 231, so as to fit into the bottom arc-shaped concave surface 231. That is, through the setting of the bottom arc-shaped convex surface 41 and the bottom arc-shaped concave surface 231, the connection between the inclined wall frame 2 and the bottom frame 1 can have a hinged effect. Similarly, the inclined wall frames 2 on both sides are connected by a top overlapping beam 5; the top overlapping beam 5 is provided with a top arc-shaped convex surface 51, and the overlapping beam 22 on the wall is provided with a top arc-shaped concave surface 221 that matches the top arc-shaped convex surface 51 so that the top arc-shaped convex surface 51 can be inserted.

[0038] To facilitate the installation of the bottom frame overlapping beam 4, the bottom frame 1 is provided with a bottom frame overlapping groove 1a for installing the bottom frame overlapping beam 4, and the bottom of the bottom frame overlapping beam 4 is inserted into the bottom frame overlapping groove 1a.

[0039] The wall body 21 includes longitudinal keel 211, transverse connecting beam 212 and wall panel 213; multiple longitudinal keels 211 are provided between the wall surface overlapping beam 22 and the wall surface lower overlapping beam 23, and multiple transverse connecting beams 212 are distributed at intervals between adjacent longitudinal keels 211. The longitudinal keels 211 and transverse connecting beams 212 are connected to form a grid structure with multiple grid openings 2a, and the wall panel 213 is laid at the grid openings 2a;

[0040] To improve the waterproofness of the wall panel 21, both the longitudinal keel 211 and the transverse connecting beam 212 are provided with waterproof connecting strips for connecting waterproof seals. The waterproof connecting strips are distributed around the grid opening to cover the gaps between adjacent wall panels 213 through the waterproof seals.

[0041] See Figure 4 The waterproof sealing element provided on the longitudinal keel 211 is a waterproof cover 211a, and the waterproof connecting strip provided on the longitudinal keel 211 is a longitudinal connecting strip 211b;

[0042] The waterproof cover is connected to the longitudinal connecting strip 211b via a threaded connector 211c. The longitudinal connecting strip 211b has a connecting groove 211d for connecting with the threaded connector 211c. The two sides of the waterproof cover 211a abut against the surface of the wall panel 213 to cover the gap between the longitudinal connecting strip 211b and the wall panel 213. Preferably, the bottom of the two sides of the waterproof cover 211a has a sealing groove for installing a waterproof strip. The waterproof cover contacts the surface of the wall panel 213 via the waterproof strip. The threaded connector 211c can be a screw. The longitudinal connecting strip 211b also has a drainage channel 211e located below the connecting groove 211d, so that after the threaded connector passes through the connecting groove 211d, its end is located within the drainage channel 211e, allowing rainwater seeping in along the threaded connector 211c to be drained through the drainage channel 211e.

[0043] The arrangement of multiple waterproof covers 211a allows for the formation of a water flow channel between adjacent waterproof covers 211a for downward drainage.

[0044] See Figure 5The waterproof sealing element provided by the transverse connecting beam 212 is a sealing strip 212a, and the waterproof connecting strip provided by the transverse connecting beam 212 is a transverse connecting strip 212b. The sealing strip 212a is provided with a sealing slot 2121 adapted to the transverse connecting strip 212b for insertion of the transverse connecting strip 212b. Preferably, the two sides of the transverse connecting strip 212b and the sealing slot 2121 are provided with serrated surfaces for mutually preventing separation.

[0045] The sealing strip 212a has sealing side grooves 2122 on both sides that are adapted to the wall panel 213. The sealing side grooves 2122 are located on both sides of the sealing slot 2121. Two adjacent wall panels 213 are respectively inserted into the sealing side grooves 2122 on both sides of the sealing strip 212a to seal the gap between the transverse connecting strip 212b and the wall panel 213.

[0046] Preferably, the maximum height of the top surface of the sealing strip 212a protruding relative to the surface of the wall panel 213 does not exceed 2mm, and the top surface of the sealing strip 212a is arc-shaped to reduce its obstruction effect on the water flow channel.

[0047] Preferably, the wall-mounted overlapping beam 22, the wall-mounted overlapping beam 23, the longitudinal keel 211, and the transverse connecting beam 212 are all profile structures.

[0048] Preferably, the base frame 1 includes a plurality of spaced-apart base frame joists 11 and base frame crossbeams 12, and overlapping joists 13 located on both sides of the base frame joists. Adjacent base frame joists 11 are connected by the base frame crossbeams 12 to form a grid structure. The bottom of the support column 32 is provided with an auxiliary support plate 321 to support the connection between the base frame joists 11 and the base frame crossbeams 12. The base frame overlapping groove 1a is formed at the top of the overlapping joists 13.

[0049] The support platform 31 includes a support frame 311 and a support keel 312 disposed on the support frame 311. The top of the support column 32 is connected to the support frame 311 to support the support frame 311. The two ends of the support keel 312 are respectively connected to the longitudinal keels 211 of the inclined wall frame 2 on both sides. The length of the support keel 312 will vary depending on the different heights of the support platform 31. Therefore, in actual assembly, a support keel of suitable length can be freely selected for installation.

[0050] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.

Claims

1. A triangular house, characterized in that, It includes a base frame, inclined wall frame and support frame, with the inclined wall frame on both sides of the support frame, and the base frame and inclined wall frame are connected in a triangular structure to form an interior space; The supporting frame is located within the indoor space and includes a supporting platform and supporting columns. The supporting platform is supported on the base frame by the supporting columns. The two sides of the support platform are respectively connected to the inclined wall frame to assist in supporting the inclined wall frame.

2. The triangular house as described in claim 1, characterized in that, The bottom frame is provided with bottom frame overlap beams on both sides for connecting with the inclined wall frame. The inclined wall frame is connected to the bottom frame through the bottom frame overlap beams so that the inclined wall frame is tilted relative to the bottom frame.

3. The triangular house as described in claim 2, characterized in that, The inclined wall frame includes a main wall body, overlapping beams on the wall surface, and overlapping beams on the lower wall surface. The overlapping beams on the wall surface and the overlapping beams on the lower wall surface are respectively located at the top and bottom of the main wall body. One end of the wall-mounted beam is connected to the main wall body, and the other end is provided with a bottom arc-shaped concave surface. The top of the bottom frame lap beam is provided with a bottom arc-shaped convex surface that matches the bottom arc-shaped concave surface, so as to fit into the bottom arc-shaped concave surface.

4. The triangular house as described in claim 2, characterized in that, The bottom frame is provided with a bottom frame lap groove for installing the bottom frame lap beam, and the bottom of the bottom frame lap beam is inserted into the bottom frame lap groove.

5. The triangular house as described in claim 3, characterized in that, The inclined wall frames on both sides are connected by a top overlapping beam; The top lap beam has a top arc-shaped convex surface, and the lap beam on the wall has a top arc-shaped concave surface that matches the top arc-shaped convex surface, so that the top arc-shaped convex surface can be inserted.

6. The triangular house as described in claim 3, characterized in that, The main wall structure includes longitudinal keel, transverse connecting beams, and wall panels; Multiple longitudinal keels are provided between the overlapping beams on the wall surface and the overlapping beams on the lower wall surface. Multiple transverse connecting beams are distributed at intervals between adjacent longitudinal keels. The longitudinal keels and transverse connecting beams are connected to form a grid structure with multiple grid openings. The wall panel is laid at the grid openings.

7. The triangular house as described in claim 6, characterized in that, Both the overlapping beams on the wall surface and the overlapping beams on the lower wall surface are provided with keel connection surfaces for connecting with the longitudinal keel, and the keel connection surfaces are provided with support edges for supporting the longitudinal keel.

8. The triangular house as described in claim 6, characterized in that, Both the longitudinal keel and the transverse connecting beam are equipped with waterproof connecting strips for connecting waterproof seals. The waterproof connecting strips are distributed around the grid opening to cover the gaps between adjacent wall panels through the waterproof seals.

9. The triangular house as described in claim 8, characterized in that, The waterproof sealing element provided with the longitudinal keel is a waterproof cover, and the waterproof connecting strip provided with the longitudinal keel is a longitudinal connecting strip; The waterproof cover is connected to the longitudinal connecting strip via a threaded connector. The longitudinal connecting strip has a connecting groove for connecting with the threaded connector. The two sides of the waterproof cover abut against the surface of the wall panel to cover the gap between the longitudinal connecting strip and the wall panel.

10. The triangular house as described in claim 9, characterized in that, The waterproof sealing element provided by the transverse connecting beam is a sealing strip, and the waterproof connecting strip provided by the transverse connecting beam is a transverse connecting strip. The sealing strip is provided with a sealing slot adapted to the transverse connecting strip for insertion of the transverse connecting strip. The sealing strip has sealing side grooves on both sides that are adapted to the wall panel. The sealing side grooves are located on both sides of the sealing slot. Two adjacent wall panels are respectively inserted into the sealing side grooves on both sides of the sealing strip to seal the gap between the transverse connecting strip and the wall panel.