Component type mounting base and outdoor activity shed

Through the staggered splicing and self-alignment assembly mechanism of the component-type installation base, the problems of time-consuming and labor-intensive installation and ground damage of existing outdoor sheds are solved, and an efficient and stable outdoor shed support structure is achieved.

CN120759343AActive Publication Date: 2025-10-10GUANGDONG TIANHUI CONSTR TECH CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202511269914.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2025-10-10
Estimated Expiration
2045-09-08

AI Technical Summary

Technical Problem

The existing installation method of outdoor sheds requires destroying the ground, which is time-consuming and labor-intensive. It is also difficult to effectively anchor on non-hardened ground, resulting in low efficiency.

Method used

A component-type installation base is adopted, including a base plate, pipe columns, positioning rods and combined components. Through staggered splicing and self-alignment assembly mechanism, a multi-layer interlocking structure is formed to achieve stable support without ground anchoring.

Benefits of technology

It improves assembly efficiency and stability, simplifies the installation process, reduces transportation and installation difficulty, and is suitable for a variety of ground conditions.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120759343A_ABST
    Figure CN120759343A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of outdoor activity greenhouses, and particularly discloses a component type mounting base and an outdoor activity greenhouses, the outdoor activity greenhouses comprise the component type mounting base and a greenhouse roof, the component type mounting base comprises a bottom plate, a pipe stand column, a first positioning rod, a second positioning rod and a plurality of combined components, and the greenhouse roof is connected to the top of the pipe stand column; the pipe stand column is sequentially sleeved with the multiple combined components in the vertical direction. Each combined component comprises a first component and a second component, and the splicing surfaces of the first component and the second component form a first plane; every two adjacent combined components are arranged in a staggered mode around the axis of the pipe stand column, so that every two adjacent first planes are distributed in a staggered mode. The first positioning rods alternately penetrate through different limiting holes of the upper-layer first component and the lower-layer first component, and the second positioning rods synchronously penetrate through different limiting holes of the upper-layer second component and the lower-layer second component. A bricklaying-like interlocking structure is formed through rotation and dislocation, and a positioning rod self-alignment assembly mechanism is combined, so that overall ballasting and overturning resistance of the multi-layer combined component are achieved, the assembly efficiency and stability are improved, and meanwhile ground anchoring is not needed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of outdoor activity sheds, and in particular to a component-type mounting base and an outdoor activity shed. Background Art

[0002] Outdoor commercial performances, exhibitions, and sporting events often require temporary structures such as tents and awnings. These structures typically utilize a column support system, and reliable anchoring of the column base to the ground is crucial for ensuring overall wind resistance, pullout resistance, and overturning resistance. Traditional anchoring methods rely on ground anchors, counterweights such as sandbags or water-filled piers, or large concrete foundations. These methods not only require disturbing the ground or pre-placed heavy objects, but are also time-consuming and labor-intensive to install, and burdensome to transport. Traditional methods often struggle to achieve effective anchoring, especially on unhardened surfaces.

[0003] In the prior art, for example, Chinese Patent Publication No. CN212359239U discloses a securely fixed outdoor pergola comprising four sets of cylindrical fixing bases, each with a fixed base at its base. Two sets of fixing columns are mounted on top of the cylindrical fixing bases, and suspension plates are mounted at both ends of a detachable mounting frame. Inclined side sunshades are mounted on the connecting ropes at equal intervals via fixed axes. A waterproof Oxford sunshade fabric mounting rod is fixedly mounted at the base of the mounting crossbar, and a waterproof Oxford sunshade fabric mounting rod is fixedly mounted at the base. The cylindrical fixing bases with fixed bases, along with fixing piles and mounting bolts, ensure the secure installation of the entire pergola.

[0004] The above-mentioned outdoor pergola requires pre-embedded fasteners during installation. The pre-embedded fasteners need to be driven into the ground, which may damage the ground. In addition, the pergola is not modular in structure, and the installation efficiency is low.

[0005] Therefore, the existing technology still needs to be improved and developed. Summary of the Invention

[0006] In view of the above-mentioned deficiencies in the prior art, an object of the present invention is to provide a component-type installation base and an outdoor activity shed to solve the above-mentioned problems.

[0007] A component-type mounting base, comprising: base plate; The pipe column is fixed vertically on the middle part of the upper end of the base plate; A first positioning rod and a second positioning rod are symmetrically arranged on both radial sides of the pipe column and connected to the bottom plate; A plurality of combined components are sequentially sleeved on the pipe column in a vertical direction; each of the combined components includes a first component and a second component that are spliced ​​together, and the splicing surface of the two components forms a first plane; The first member is provided with first limiting holes and second limiting holes distributed at intervals in the circumferential direction, and the second member is provided with third limiting holes and fourth limiting holes distributed at intervals in the circumferential direction; The two adjacent combination members are arranged in a staggered manner around the pipe column axis, so that the two adjacent first planes are distributed in a staggered manner, and the first positioning rods are alternatively arranged in the first limiting holes or the second limiting holes of the upper and lower adjacent first members, and the second positioning rods are alternatively arranged in the third limiting holes or the fourth limiting holes of the upper and lower adjacent second members. Specifically, the component mounting base further comprises a cover plate assembly sleeved on the pipe column and located at the top of the uppermost combination member, the cover plate assembly comprises a first cover plate and a second cover plate spliced together, and the spliced surfaces of the two form a second plane. The cover plate assembly and the uppermost combination member are arranged in a staggered manner around the pipe column axis, so that the first plane and the second plane formed by the uppermost combination member are distributed in a staggered manner.

[0008] Specifically, the first cover plate is provided with fifth limiting holes and sixth limiting holes distributed at intervals in the circumferential direction, and the upper end of the first positioning rod passes through the fifth limiting hole or the sixth limiting hole; the second cover plate is provided with seventh limiting holes and eighth limiting holes distributed at intervals in the circumferential direction; and the upper end of the second positioning rod passes through the seventh limiting hole or the eighth limiting hole.

[0009] Specifically, the upper end of the first positioning rod is connected with a first screw, and the first cover plate is fixed on the top of the combination member in the vertical direction through the nut of the first screw. The upper end of the second positioning rod is connected with a second screw, and the second cover plate is fixed on the top of the combination member in the vertical direction through the nut of the second screw.

[0010] Specifically, the first limiting hole and the second limiting hole are connected with a first gap at one end of the pipe column, and the first positioning rod is arranged in the first limiting hole or the second limiting hole along the first gap. The third limiting hole and the fourth limiting hole are connected with a second gap at one end of the pipe column, and the second positioning rod is arranged in the third limiting hole or the fourth limiting hole along the second gap.

[0011] Specifically, the bottom plate is provided with first screw holes and second screw holes distributed in the circumferential direction, the first screw holes and the second screw holes are symmetrically arranged along the central axis of the pipe column, the lower end of the first positioning rod is threadedly connected with the first screw hole, and the lower end of the second positioning rod is threadedly connected with the second screw hole.

[0012] Specifically, the first member is provided with a first limiting convex and a first limiting groove at an end face thereof facing the second member, the second member is provided with a second limiting convex and a second limiting groove at an end face thereof facing the first member, the first limiting convex is matched and assembled with the second limiting groove, and the second limiting convex is matched and assembled with the first limiting groove.

[0013] Specifically, the tubular column is welded to the middle part of the upper end of the bottom plate.

[0014] An outdoor activity shed house comprises: The component mounting base has at least four; A shed roof is connected to the top of the tubular column.

[0015] Specifically, the tubular column is detachably connected with the shed roof.

[0016] The present application has the following beneficial effects: The present application provides a component mounting base and an outdoor activity shed house. The outdoor activity shed house comprises a component mounting base and a shed roof. The component mounting base has a plurality of component mounting bases. Each component mounting base comprises a bottom plate, a tubular column, a first positioning rod, a second positioning rod and a plurality of combined components. The shed roof is connected to the top of the tubular column. The plurality of combined components are sequentially sleeved on the tubular column in the vertical direction. Each combined component comprises a first member and a second member which are assembled together. The assembling surface of the first member and the second member forms a first plane. Adjacent two combined components are arranged in a staggered manner around the axis of the tubular column, so that the adjacent two first planes are distributed in a staggered manner. The first positioning rod is alternately arranged in different limiting holes of the upper and lower first members. The second positioning rod is synchronously arranged in different limiting holes of the upper and lower second members. The present application forms a brick-like interlocking structure by rotating and staggering. In combination with the self-alignment assembly mechanism of the positioning rod, the overall stability of the multi-layer combined components is improved. The assembly efficiency and stability are improved. Meanwhile, ground anchoring is not required. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a perspective view of the component mounting base of the present application; Figure 2 It is a structural schematic view of the component mounting base of the present application; Figure 3 It is a structural schematic view of the component mounting base of the present application before and after installation; Figure 4 It is a perspective view of the cover plate assembly of the present application; Figure 5 It is a perspective view of the combined component of the present application; Figure 6 It is a structural schematic view of the present application in which adjacent two combined components are installed in a circumferential staggered manner Figure 1 ; Figure 7Structure diagram of the present application for circumferential dislocation installation of two adjacent combined members Figure 2 ; Figure 8 Three-dimensional view of the outdoor activity shed of the present application.

[0018] The reference signs are: bottom plate 10, first screw hole 11, second screw hole 12, pipe stand column 20, first positioning rod 31, second positioning rod 32, combined member 40, first member 41, first limiting hole 411, second limiting hole 412, first gap 413, first limiting convex 414, first limiting groove 415, second member 42, third limiting hole 421, fourth limiting hole 422, second gap 423, second limiting convex 424, second limiting groove 425, cover plate assembly 50, first cover plate 51, fifth limiting hole 511, sixth limiting hole 512, second cover plate 52, seventh limiting hole 521, eighth limiting hole 522, first screw 61, second screw 62, shed roof 70. DETAILED DESCRIPTION

[0019] The present application provides a component installation base and an outdoor activity shed, in order to make the purpose, technical scheme and effect of the present application more clear and definite, the present application is further described in detail below with reference to the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and are not used to limit the present application.

[0020] In the description of the present application, it should be understood that the orientation description, such as the orientation or position relationship indicated by up, down, front, back, left, right, etc. is based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0021] Please refer to Figures 1-8 The present embodiment discloses an outdoor activity shed, which comprises a component installation base and a shed roof 70, the component installation base has six, each component installation base comprises a bottom plate 10, a pipe stand column 20, a first positioning rod 31, a second positioning rod 32 and a plurality of combined members 40, and the shed roof 70 is connected to the top of the pipe stand column 20.

[0022] The pipe column 20 is vertically fixed to the middle of the upper end of the base plate 10; the first positioning rod 31 and the second positioning rod 32 are symmetrically arranged on the two sides of the pipe column 20 in the radial direction and are connected with the base plate 10; a plurality of combined components 40 are sequentially sleeved on the pipe column 20 in the vertical direction; each combined component 40 comprises a first component 41 and a second component 42 which are spliced and combined, and the splicing surfaces of the two form a first plane; the first component 41 is provided with a plurality of first limiting holes 411 and second limiting holes 412 which are distributed at intervals in the circumferential direction, and the second component 42 is provided with a plurality of third limiting holes 421 and fourth limiting holes 422 which are distributed at intervals in the circumferential direction; the adjacent two combined components 40 are arranged in a staggered manner around the axis of the pipe column 20, so that the adjacent two first planes are distributed in a staggered manner, and the first positioning rod 31 is alternately arranged in the first limiting hole 411 or the second limiting hole 412 of the upper and lower adjacent first components 41, and the second positioning rod 32 is alternately arranged in the third limiting hole 421 or the fourth limiting hole 422 of the upper and lower adjacent second components 42. After the pipe column 20 is fixed to the base plate 10, the first positioning rod 31 and the second positioning rod 32 are symmetrically arranged on the two sides of the base plate 10. When installing the combined components 40 layer by layer, the first component 41 and the second component 42 are first spliced into a ring-shaped unit and sleeved into the pipe column 20, and the splicing surfaces form a first plane. The upper combined component 40 is rotated around the axis of the pipe column 20 to a predetermined angle, so that the first positioning rod 31 is automatically arranged in the corresponding limiting hole of the upper first component 41, and the second positioning rod 32 is arranged in the corresponding limiting hole of the upper second component 42. Repeat the stacking process to the required height to form the staggered layout of the adjacent layers of the first planes.

[0023] The combined component 40 of the embodiment adopts a modular symmetric design, the first component 41 and the second component 42 are the same in structure and can be mass-produced, and the combined component 40 is formed after the two are spliced. The adjacent layers of combined components 40 are staggered by rotating around the pipe column 20 to realize the staggered arrangement of the splicing joints and optimize the load transmission path. The multiple layers of combined components 40 form a support foot that is circular as a whole, and constitute a multi-layer interlocking anti-overturning structure, which can realize stable pressure bearing without ground anchoring.

[0024] The first positioning rod 31 is alternately arranged in different limiting holes of the first components 41 of adjacent layers, and the second positioning rod 32 is synchronously arranged in different limiting holes of the second components 42 of adjacent layers, forming a self-alignment assembly mechanism and improving the installation efficiency.

[0025] As a preferred embodiment, the component type installation base further comprises a cover plate assembly 50 sleeved on the pipe column 20 and located on the top of the uppermost combined component 40, the cover plate assembly 50 comprises a first cover plate 51 and a second cover plate 52 which are spliced and combined, and the splicing surfaces of the two form a second plane; the cover plate assembly 50 and the uppermost combined component 40 are arranged in a staggered manner around the axis of the pipe column 20, so that the first plane and the second plane formed by the uppermost combined component 40 are distributed in a staggered manner.

[0026] When the combination component 40 is repeatedly stacked to the target height, the cover plate assembly 50 is installed above the top layer combination component 40, specifically, the first cover plate 51 and the second cover plate 52 are spliced and rotated around the pipe column 20 to be misaligned, so that the second plane formed by the splicing surface of the first cover plate 51 and the second cover plate 52 is staggered with the top layer first plane, improving the structural stability.

[0027] As a preferred embodiment, the first cover plate 51 is provided with a fifth limiting hole 511 and a sixth limiting hole 512 distributed at intervals in the circumferential direction, and the upper end of the first positioning rod 31 passes through the fifth limiting hole 511 or the sixth limiting hole 512; the second cover plate 52 is provided with a seventh limiting hole 521 and an eighth limiting hole 522 distributed at intervals in the circumferential direction; and the upper end of the second positioning rod 32 passes through the seventh limiting hole 521 or the eighth limiting hole 522.

[0028] As a preferred embodiment, the upper end of the first positioning rod 31 is connected with a first screw 61, and the first cover plate 51 is fixed vertically on the top of the combination component 40 through the nut of the first screw 61; the upper end of the second positioning rod 32 is connected with a second screw 62, and the second cover plate 52 is fixed vertically on the top of the combination component 40 through the nut of the second screw 62.

[0029] After the installation of the top layer combination component 40 is completed, the first cover plate 51 and the second cover plate 52 are spliced into the cover plate assembly 50 along the circumferential direction of the pipe column 20, and the splicing surface forms a second plane. The cover plate assembly 50 is adjusted to be rotated around the axis of the pipe column 20 to be misaligned, so that the upper end of the first positioning rod 31 is aligned with the fifth limiting hole 511 or the sixth limiting hole 512 of the first cover plate 51, and the upper end of the second positioning rod 32 is aligned with the seventh limiting hole 521 or the eighth limiting hole 522 of the second cover plate 52. Then, the upper end of the first positioning rod 31 and the upper end of the second positioning rod 32 are respectively tightened by the first screw 61 and the second screw 62, so as to press and fix the cover plate assembly 50 on the surface of the top layer combination component 40.

[0030] As a preferred embodiment, the first limiting hole 411 and the second limiting hole 412 are connected with the first gap 413 at one end of the tubular column 20, and the first positioning rod 31 is inserted into the first limiting hole 411 or the second limiting hole 412 along the first gap 413; the third limiting hole 421 and the fourth limiting hole 422 are connected with the second gap 423 at one end of the tubular column 20, and the second positioning rod 32 is inserted into the third limiting hole 421 or the fourth limiting hole 422 along the second gap 423. When assembling the first component 41, the first positioning rod 31 is radially pushed into the first limiting hole 411 or the second limiting hole 412 through the first gap 413; when assembling the second component 42 synchronously, the second positioning rod 32 is radially pushed into the third limiting hole 421 or the fourth limiting hole 422 through the second gap 423. This operation does not need to pass the first component 41 and the second component 42 from the top of the first positioning rod 31 and the second positioning rod 32, and realizes that the first component 41 and the second component 42 are integrally pushed along the tubular column 20 after being pre-assembled on the ground, thereby simplifying the high-altitude operation process.

[0031] The first limiting hole 411 and the second limiting hole 412 are connected with the first gap 413 to the lateral space of the tubular column 20, and the third limiting hole 421 and the fourth limiting hole 422 are also designed in the same way. The first gap 413 and the second gap 423 are both continuous opening structures pre-formed by a mold, and have the functions of positioning rod installation channel and preform demolding stress release. The lateral gap design enables the combined component 40 to be pre-assembled away from the tubular column 20, and then integrally radially moved to the positioning rod clamping position to form a quick-assembly non-destructive interface.

[0032] As a preferred embodiment, the bottom plate 10 is provided with the first screw hole 11 and the second screw hole 12 distributed in the circumferential direction, the first screw hole 11 and the second screw hole 12 are symmetrically arranged along the central axis direction of the tubular column 20, the lower end of the first positioning rod 31 is threadedly connected with the first screw hole 11, and the lower end of the second positioning rod 32 is threadedly connected with the second screw hole 12. The first positioning rod 31 and the second positioning rod 32 are installed by thread connection, thereby improving the installation efficiency.

[0033] As a preferred embodiment, the end face of the first component 41 towards the second component 42 is provided with the first limiting convex 414 and the first limiting groove 415, the end face of the second component 42 towards the first component 41 is provided with the second limiting convex 424 and the second limiting groove 425, the first limiting convex 414 is matched with the second limiting groove 425, and the second limiting convex 424 is matched with the first limiting groove 415. When assembling the first component 41 and the second component 42, the first limiting convex 414 of the end face of the first component 41 is aligned with the second limiting groove 425 of the second component 42 and pushed in, and at the same time, the second limiting convex 424 of the end face of the second component 42 is simultaneously clamped into the first limiting groove 415 of the first component 41, thereby forming a bidirectional occlusion joint surface. This pushing type operation enables the two components to be automatically aligned and positioned during the horizontal folding process, thereby avoiding vertical misalignment.

[0034] The first member 41 is provided with a first limiting protrusion 414 and a first limiting groove 415 on the end surface, and the second member 42 is provided with a second limiting protrusion 424 and a second limiting groove 425 on the end surface, which are mirror-symmetrically distributed. When spliced, the first limiting protrusion 414 and the second limiting groove 425 are embedded with each other, and the second limiting protrusion 424 and the first limiting groove 415 are cross-locked, forming a bidirectional interlocking structure in the plane. The concave-convex engagement surface eliminates the horizontal displacement degree between the members, and enhances the shear resistance of the spliced joint.

[0035] As a preferred embodiment, the pipe stand column 20 is welded to the middle part of the upper end of the bottom plate 10, and is fixed by welding, so that the structure is more firm.

[0036] As a preferred embodiment, the pipe stand column 20 is detachably connected with the shed roof 70, and can be specifically connected in a detachable manner such as threaded connection, buckle connection, screw connection, etc., so as to reduce the installation difficulty and improve the installation efficiency.

[0037] The preferred embodiments of the present application are specifically described above, but the present application is not limited to the above-mentioned embodiments. Those skilled in the art can make various equivalent modifications or replacements without departing from the spirit of the present application, and these equivalent modifications or replacements are all included in the scope defined by the claims of the present application.

Claims

1. A component-type mounting base, characterized in that: include: bottom plate (10); A pipe column (20) is vertically fixed to the middle of the upper end of the base plate (10); A first positioning rod (31) and a second positioning rod (32) are symmetrically arranged on both radial sides of the tube column (20) and connected to the bottom plate (10); A plurality of combined components (40) are sequentially sleeved on the pipe column (20) in the vertical direction; each of the combined components (40) includes a first component (41) and a second component (42) that are spliced ​​together, and the splicing surface of the two components forms a first plane; The first component (41) is provided with a first limiting hole (411) and a second limiting hole (412) distributed at intervals along the circumferential direction, and the second component (42) is provided with a third limiting hole (421) and a fourth limiting hole (422) distributed at intervals along the circumferential direction; Two adjacent combined components (40) are staggered around the axis of the tube column (20), so that the two adjacent first planes are staggered, and the first positioning rods (31) are alternately inserted into the first limiting holes (411) or the second limiting holes (412) of the upper and lower adjacent first components (41), and the second positioning rods (32) are alternately inserted into the third limiting holes (421) or the fourth limiting holes (422) of the upper and lower adjacent second components (42).

2. A component-type mounting base according to claim 1, characterized in that: The component-type mounting base further includes a cover plate assembly (50) sleeved on the pipe column (20) and located on the top of the uppermost combined component (40), the cover plate assembly (50) including a first cover plate (51) and a second cover plate (52) that are spliced ​​together, and a spliced ​​surface of the two covers forms a second plane; The cover plate assembly (50) and the uppermost combined component (40) are staggered around the axis of the tube column (20), so that the first plane and the second plane formed by the uppermost combined component (40) are staggered.

3. The component-type mounting base according to claim 2, characterized in that: The first cover plate (51) is provided with a fifth limiting hole (511) and a sixth limiting hole (512) spaced apart along the circumferential direction, and the upper end of the first positioning rod (31) passes through the fifth limiting hole (511) or the sixth limiting hole (512); the second cover plate (52) is provided with a seventh limiting hole (521) and an eighth limiting hole (522) spaced apart along the circumferential direction; the upper end of the second positioning rod (32) passes through the seventh limiting hole (521) or the eighth limiting hole (522).

4. The component-type mounting base according to claim 2, characterized in that: The upper end of the first positioning rod (31) is connected to a first screw (61), and the first cover plate (51) is fixed vertically to the top of the combined component (40) through the nut of the first screw (61); The upper end of the second positioning rod (32) is connected to a second screw (62), and the second cover plate (52) is fixed vertically to the top of the combined component (40) through the nut of the second screw (62).

5. The component-type mounting base according to claim 1, characterized in that: The first limiting hole (411) and the second limiting hole (412) are connected to one end of the pipe column (20) with a first slit (413), and the first positioning rod (31) is installed into the first limiting hole (411) or the second limiting hole (412) along the first slit (413); The third limiting hole (421) and the fourth limiting hole (422) are connected to one end of the pipe column (20) with a second slit (423), and the second positioning rod (32) is installed into the third limiting hole (421) or the fourth limiting hole (422) along the second slit (423).

6. The component-type mounting base according to claim 1, characterized in that: The base plate (10) is provided with a first screw hole (11) and a second screw hole (12) distributed along the circumferential direction. The first screw hole (11) and the second screw hole (12) are symmetrically arranged along the central axis direction of the tube column (20). The lower end of the first positioning rod (31) is threadedly connected to the first screw hole (11), and the lower end of the second positioning rod (32) is threadedly connected to the second screw hole (12).

7. The component-type mounting base according to claim 1, characterized in that: The end surface of the first component (41) facing the second component (42) is provided with a first limiting protrusion (414) and a first limiting groove (415); the end surface of the second component (42) facing the first component (41) is provided with a second limiting protrusion (424) and a second limiting groove (425); the first limiting protrusion (414) and the second limiting groove (425) are spliced ​​and matched, and the second limiting protrusion (424) and the first limiting groove (415) are spliced ​​and matched.

8. The component-type mounting base according to claim 1, characterized in that: The tube column (20) is welded to the middle portion of the upper end of the bottom plate (10).

9. An outdoor activity shed, characterized in that: include: The component-type mounting base according to any one of claims 1 to 8, wherein there are at least four component-type mounting bases; The roof (70) is connected to the top of the pipe column (20).

10. The outdoor activity shed according to claim 9, characterized in that: The pipe column (20) is detachably connected to the roof (70).

Citation Information

Patent Citations

  • Outdoor shade shed firm in fixation

    CN212359239U

  • Steel pipe stand column pile combined supporting system and construction method thereof

    CN118933405A

  • Take a step to lift canopy support stand tilting prevention device

    CN207229135U

  • Modularized assembly type building structure

    CN219343475U

  • Structure Anti-torsion system and device, and method of use providing compression and tension support

    WO2013040586A1