Integrated house multi-dimension connection structure
By using a multi-dimensional connection structure and interlocking corner fittings to directly connect with the beams, multi-dimensional rapid assembly of integrated houses is achieved, solving the problem that existing technologies cannot form a complete housing complex. This enables the integration of dormitory groups and corridor groups, enhancing structural stability and waterproof performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- ZHEJIANG PUTIAN INTEGRATED HOUSING
- Filing Date
- 2026-04-03
- Publication Date
- 2026-05-29
AI Technical Summary
Existing integrated housing clusters generally adopt an independent container arrangement pattern, which cannot achieve multi-dimensional connection, resulting in the inability to form a more complete housing group, and additional outdoor corridors need to be built.
The multi-dimensional connection structure is adopted, and the corner fittings are interlocked and directly connected to the beams to realize the multi-dimensional rapid assembly of the housing unit modules. The long side connections form dormitory groups, and the short side connections form corridor groups, eliminating the need for external corridors.
It enables rapid multi-dimensional assembly of housing unit modules to form complete dormitory and corridor complexes, saving land, improving modular functionality, and enhancing structural stability and waterproofing performance.
Smart Images

Figure CN122106183A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of building connection structures, and in particular to a multi-dimensional connection structure for integrated housing. Background Technology
[0002] Prefabricated houses are now widely used due to their characteristics such as easy movement, convenient construction, stability, good shock resistance, light weight, and easy assembly and disassembly.
[0003] Current integrated housing clusters generally adopt an evenly distributed arrangement of independent units, relying on external corridors for unit connectivity. Furthermore, traditional splicing only supports unidirectional extension in either the length or width direction, making it impossible to form a more complete housing complex. Summary of the Invention
[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide an integrated housing multi-dimensional connection structure.
[0005] To achieve the above objectives, this application adopts the following technical solution:
[0006] An integrated housing multi-dimensional connection structure includes multiple housing unit modules. Each housing unit module has a long side frame and a short side frame. Columns connect the long side frame and the short side frame, and corner brackets are provided at the ends of the columns. The corner brackets between adjacent housing unit modules are interconnected. The long side frames of adjacent housing unit modules are interconnected through a long side connection structure to form a dormitory group. The short side frames of adjacent housing unit modules are interconnected through a short side connection structure to form a corridor group.
[0007] Preferably, the long side frame includes an upper long side beam, a lower long side beam, and multiple connecting beams connected to the upper and lower long side beams respectively on both sides; the long side connecting structure has multiple components, some of which are used to connect two adjacent corner pieces, and others are used to connect two adjacent upper long side beams; when the long side connecting structure is used to connect two corner pieces, the long side connecting structure includes a long side connecting plate, one side of which is connected to the corner piece via a first long side connector, and the other side of which is connected to the adjacent corner piece via a second long side connector.
[0008] Preferably, when the long side connecting structure is used to connect two upper long side beams, the long side connecting structure further includes a pad plate, the first long side connector passes through the pad plate and the long side connecting plate in sequence and is connected to the upper long side beam, and the second long side connector passes through the pad plate and the long side connecting plate in sequence and is connected to the adjacent upper long side beam.
[0009] Preferably, a long edge-wrapping structure is provided on two adjacent upper long side beams. The long edge-wrapping structure includes a long edge-wrapping plate covering the upper surface of the two adjacent upper long side beams, a long rubber strip and a long insulation strip provided in the gap between the two adjacent upper long side beams; the end of the long edge-wrapping plate extends and covers the corner piece, the edge of the long edge-wrapping plate is bent inward and forms an inner barb, and the free end of the inner barb abuts against the lower surface of the long side connecting plate.
[0010] Preferably, the short side frame includes an upper short side beam and a lower short side beam, the upper end of the column is connected to the upper short side beam, and the lower end of the column is connected to the lower short side beam; the short side connecting structure connects to two adjacent corner pieces, the short side connecting structure includes a short side connecting plate, one side of the short side connecting plate is connected to the corner piece through a first short side connecting member, and the other side of the short side connecting plate is connected to the adjacent corner piece through a second short side connecting member; the upper short side beam is an upward-opening eaves gutter.
[0011] Preferably, the eaves gutter has a folded edge, and a short edge structure is provided on the folded edge of adjacent eaves gutters. The short edge structure includes a short edge plate covering the upper surface of the folded edge, a short rubber strip and a short insulation strip provided at the gap between two adjacent upper short edge beams; the edge of the short edge plate is bent inward to form an inner barb, and the free end of the inner barb abuts against the lower surface of the folded edge.
[0012] Preferably, the corner piece includes an upper angle steel fixed to the upper end of the column and a lower angle steel fixed to the lower end of the column. The upper angle steel is provided with an angle connector and an angle positioning hole, and the lower angle steel is provided with an angle connector adapted to the angle connector and an angle positioning member adapted to the angle positioning hole.
[0013] In summary, the present invention has the following beneficial technical effects:
[0014] The system utilizes a dual mechanism of corner fitting interlocking and direct beam connection to achieve rapid, multi-dimensional assembly of housing units. Longer side connections form dormitory clusters for accommodation, while shorter side connections create long corridor clusters, eliminating the need for additional outdoor walkways and enhancing modular functionality. Attached Figure Description
[0015] Figure 1 This is a structural schematic diagram of the housing unit module of the present invention.
[0016] Figure 2 This is a schematic diagram of the connection of the housing unit module of the present invention as a dormitory group.
[0017] Figure 3 This is a schematic diagram of the connection of the housing unit modules of the present invention as a corridor group.
[0018] Figure 4 This is a three-dimensional schematic diagram of the long edge structure in this invention. Figure 1.
[0019] Figure 5 This is a three-dimensional schematic diagram of the long edge structure in this invention. Figure 2 .
[0020] Figure 6 This is a planar schematic diagram of the long-edge structure in this invention.
[0021] Figure 7 This is a three-dimensional schematic diagram of the end-edge structure in this invention.
[0022] Figure 8 This is a planar schematic diagram of the short-edge structure in this invention.
[0023] Figure 9 This is a schematic diagram of the angle steel connection when the housing unit modules are connected vertically in this invention.
[0024] Explanation of reference numerals in the attached drawings: 1. Housing unit module; 2. Long side frame; 21. Upper long side beam; 22. Lower long side beam; 23. Connecting beam; 3. Long side connection structure; 31. Long side connecting plate; 32. First long side connector; 33. Second long side connector; 34. Pad; 4. Long edging structure; 41. Long edging plate; 42. Long rubber strip; 43. Long insulation strip; 5. Short side frame; 51. Upper short side beam; 52. 1. Folded edge; 52. Lower short side beam; 6. Short side connection structure; 61. Short side connection plate; 62. First short side connector; 63. Second short side connector; 7. Short edge covering structure; 71. Short edge covering plate; 72. Short rubber strip; 73. Short insulation strip; 8. Column; 9. Corner piece; 91. Upper angle steel; 92. Corner connector; 93. Corner positioning hole; 94. Lower angle steel; 95. Corner connection hole; 96. Corner positioning piece. Detailed Implementation
[0025] The directional terms such as up, down, left, right, front, back, front, back, top, and bottom mentioned or possibly used in this specification are defined relative to the structures shown in the accompanying drawings. These are relative concepts and may therefore vary depending on their location and usage. Therefore, these or other directional terms should not be interpreted as restrictive. Furthermore, the terms "first," "second," "third," and similar expressions are used for descriptive and distinguishing purposes only and should not be construed as indicating or implying the relative importance of the corresponding components.
[0026] The following is in conjunction with the appendix Figure 1 -Appendix Figure 9 This application will be described in further detail.
[0027] This application discloses an integrated housing multi-dimensional connection structure, which is composed of multiple standardized housing unit modules 1. The housing unit module 1 includes a long side frame 2 and a short side frame 5. The two frames are rigidly connected by columns 8. Corner fittings 9 are provided at the ends of the columns 8. Adjacent long side frames 2 and / or short side frames 5 are interlocked by the corner fittings 9 to achieve force transmission.
[0028] The housing unit module 1 can be expanded horizontally and vertically.
[0029] Horizontal expansion includes both lateral expansion and vertical expansion.
[0030] When expanding horizontally, the long side frames 2 of adjacent house unit modules 1 are connected to each other through the long side connecting structure 3 to form a dormitory group.
[0031] When expanding vertically, the short side frames 5 of adjacent house unit modules 1 are connected to each other through short side connection structures 6 to form a corridor group.
[0032] When expanding vertically, the housing unit module 1 overlaps vertically to create a two-story or multi-story house.
[0033] The expansion in multiple dimensions can break through the limitations of existing single-dimensional splicing. The integrated structural design of corridor groups and dormitory groups eliminates the need for external corridors, saving land and supporting the clustered deployment of high-rise buildings.
[0034] The specific structure of the lateral extension is as follows: the long side frame 2 includes an upper long side beam 21, a lower long side beam 22, and multiple connecting beams 23 that are respectively connected to the upper long side beam 21 and the lower long side beam 22 on both sides; there are multiple long side connection structures 3, some of which are used to connect two adjacent corner pieces 9, and other of which are used to connect two adjacent upper long side beams 21; when the long side connection structure 3 is used to connect two corner pieces 9, the long side connection structure 3 includes a long side connection plate 31, one side of the long side connection plate 31 is connected to the corner piece 9 through a first long side connector 32, and the other side of the long side connection plate 31 is connected to the adjacent corner piece 9 through a second long side connector 33.
[0035] When the long-side connecting structure 3 is used to connect two upper long-side beams 21, the long-side connecting structure 3 also includes a pad 34, which allows the height of the long-side beam to be consistent with the height of the angle steel. The first long-side connector 32 passes through the pad 34 and the long-side connecting plate 31 in sequence and is connected to the upper long-side beam 21. The second long-side connector 33 passes through the pad 34 and the long-side connecting plate 31 in sequence and is connected to the adjacent upper long-side beam 21.
[0036] Two adjacent upper long side beams 21 are provided with long edge structures 4. The long edge structure 4 includes a long edge plate 41 covering the upper surface of the two adjacent upper long side beams 21, a long rubber strip 42 and a long insulation strip 43 located in the gap between the two adjacent upper long side beams 21. The end of the long edge plate 41 extends and covers the corner piece 9. The edge of the long edge plate 41 is bent inward to form an inner barb. The free end of the inner barb abuts against the lower surface of the long side connecting plate 31. The long edge plate 41 can prevent rainwater penetration, the long rubber strip 42 is used to fill structural gaps, and the long insulation strip 43 can block heat conduction.
[0037] The short-side frame 5 includes an upper short-side beam 51 and a lower short-side beam 52. The upper end of the column 8 is connected to the upper short-side beam 51, and the lower end of the column 8 is connected to the lower short-side beam 52. The short-side connecting structure 6 connects to two adjacent corner pieces 9. The short-side connecting structure 6 includes a short-side connecting plate 61. One side of the short-side connecting plate 61 is connected to the corner piece 9 through a first short-side connecting piece 62, and the other side of the short-side connecting plate 61 is connected to the adjacent corner piece 9 through a second short-side connecting piece 63. The upper short-side beam 51 is an upward-opening eaves gutter. The eaves gutter replaces the external corridor drainage pipe, and the short-edge structure 7 can achieve dynamic waterproofing, solving the problem of leakage at traditional roof joints.
[0038] The eaves gutter has a folded edge 511, and a short edge structure 7 is provided on the folded edge 511 of the adjacent eaves gutter. The short edge structure 7 includes a short edge plate 71 covering the upper surface of the folded edge 511, a short rubber strip 72 and a short insulation strip 73 located at the gap between two adjacent upper short edge beams; the edge of the short edge plate 71 is bent inward to form an inner barb, and the free end of the inner barb abuts against the lower surface of the folded edge 511.
[0039] The corner piece 9 includes an upper angle steel 91 fixed to the upper end of the column 8 and a lower angle steel 94 fixed to the lower end of the column 8. The upper angle steel 91 is provided with an angle connector 92 and an angle positioning hole 93. The lower angle steel 94 is provided with an angle connector 95 that matches the angle connector 92 and an angle positioning part 96 that matches the angle positioning hole 93.
[0040] The above are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, based on the technical solutions of this invention, those skilled in the art can propose various interchangeable structural methods and implementation methods without changing the essential spirit of this invention. Therefore, the above specific embodiments and accompanying drawings are merely illustrative descriptions of the technical solutions of this invention and should not be considered as the entirety of this invention or as a limitation or restriction of the technical solutions of this invention. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the scope of protection of this application.
Claims
1. An integrated housing multi-dimensional connection structure, comprising multiple housing unit modules (1), characterized in that: The housing unit module (1) has a long side frame (2) and a short side frame (5). A column (8) is connected between the long side frame (2) and the short side frame (5). A corner piece (9) is provided at the end of the column (8). The corner pieces (9) between adjacent housing unit modules (1) are connected to each other. The long side frames (2) of adjacent housing unit modules (1) are connected to each other through a long side connection structure (3) to form a dormitory group. The short side frames (5) of adjacent housing unit modules (1) are connected to each other through a short side connection structure (6) to form a corridor group.
2. The multi-dimensional connection structure for integrated housing as described in claim 1, characterized in that: The long side frame (2) includes an upper long side beam (21), a lower long side beam (22), and multiple connecting beams (23) that are respectively connected to the upper long side beam (21) and the lower long side beam (22); the long side connecting structure (3) has multiple components, some of which are used to connect two adjacent corner pieces (9), and other components are used to connect two adjacent upper long side beams (21); when the long side connecting structure (3) is used to connect two corner pieces (9), the long side connecting structure (3) includes a long side connecting plate (31), one side of the long side connecting plate (31) is connected to the corner piece (9) through a first long side connector (32), and the other side of the long side connecting plate (31) is connected to the adjacent corner piece (9) through a second long side connector (33).
3. The multi-dimensional connection structure for integrated housing as described in claim 2, characterized in that: When the long side connection structure (3) is used to connect two upper long side beams (21), the long side connection structure (3) also includes a pad (34). The first long side connector (32) passes through the pad (34) and the long side connection plate (31) in sequence and is connected to the upper long side beam (21). The second long side connector (33) passes through the pad (34) and the long side connection plate (31) in sequence and is connected to the adjacent upper long side beam (21).
4. The multi-dimensional connection structure for integrated housing as described in claim 3, characterized in that: Two adjacent upper long side beams (21) are provided with a long edge structure (4). The long edge structure (4) includes a long edge plate (41) covering the upper surface of the two adjacent upper long side beams (21), a long rubber strip (42) and a long insulation strip (43) located in the gap between the two adjacent upper long side beams (21). The end of the long edge plate (41) extends and covers the corner piece (9). The edge of the long edge plate (41) is bent inward and forms an inner barb. The free end of the inner barb abuts against the lower surface of the long side connecting plate (31).
5. The multi-dimensional connection structure for integrated housing as described in claim 1, characterized in that: The short side frame (5) includes an upper short side beam (51) and a lower short side beam (52). The upper end of the column (8) is connected to the upper short side beam (51), and the lower end of the column (8) is connected to the lower short side beam (52). The short side connection structure (6) is connected to two adjacent corner pieces (9). The short side connection structure (6) includes a short side connection plate (61). One side of the short side connection plate (61) is connected to the corner piece (9) through a first short side connector (62), and the other side of the short side connection plate (61) is connected to the adjacent corner piece (9) through a second short side connector (63). The upper short side beam (51) is an eaves gutter with an upward opening.
6. The multi-dimensional connection structure for integrated housing as described in claim 5, characterized in that: The eaves gutter has a folded edge (511), and a short edge structure (7) is provided on the folded edge (511) of the adjacent eaves gutter. The short edge structure (7) includes a short edge plate (71) covering the upper surface of the folded edge (511), a short rubber strip (72) and a short insulation strip (73) provided in the gap between two adjacent upper short side beams (51). The edge of the short edge plate (71) is bent inward and forms an inner barb. The free end of the inner barb abuts against the lower surface of the folded edge (511).
7. The multi-dimensional connection structure for integrated housing as described in claim 1, characterized in that: The corner piece (9) includes an upper angle steel (91) fixed to the upper end of the column (8) and a lower angle steel (94) fixed to the lower end of the column (8). The upper angle steel (91) is provided with an angle connector (92) and an angle positioning hole (93). The lower angle steel (94) is provided with an angle connector (95) adapted to the angle connector (92) and an angle positioning part (96) adapted to the angle positioning hole (93).