Pipe-pipe mutual structure main body

By designing the main body of the pipe-to-pipe structure, the problems of excessive materials, complex construction, high cost, easy deformation and poor fire resistance of existing building structural systems are solved. This achieves more rational material utilization and simpler construction methods, improves the stability and fire resistance of the structure, and is suitable for a variety of buildings and structures.

CN121897073APending Publication Date: 2026-04-21孙善骏
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
孙善骏
Filing Date
2023-12-13
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In the existing structural systems of buildings and structures, steel structures, concrete structures, steel-concrete structures, wood structures and brick-concrete structures have problems such as using a lot of materials, complex construction, high manufacturing difficulty, high cost, easy deformation and instability, poor fire resistance, and unsatisfactory matching when combined.

Method used

The main structure is formed by interlocking pipes. Limiting components are inserted into the column pipes and their positions are determined by positioning plates. Horizontal and longitudinal beams are mounted to form the main structure. Combining metallic and non-metallic materials, pipelines and embedded parts are arranged, concrete and other materials are poured, and anti-corrosion and fireproof materials are sprayed to form a multi-layered structural system.

Benefits of technology

It achieves more rational material utilization, simpler construction, lower cost, more stable structure, improved fire resistance, and can be ideally matched and combined, making it suitable for structural systems of various buildings and structures.

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    Figure CN121897073A_ABST
Patent Text Reader

Abstract

A pipe-pipe mutual structure main body is mainly composed of a column pipe 1, a cross beam 2, a longitudinal beam 3, limiting pieces 4 and positioning plates 5, the limiting pieces 4 are inserted into the column pipe 1 in multiple directions, the positions of the limiting pieces 4 are determined by the positioning plates 5 in the column pipe 1, and the cross beam 2 and the longitudinal beam 3 are carried and stacked in the column head position formed by the limiting pieces 4. Water, electricity and gas pipelines and network telecommunication pipelines can be arranged in the formed structure main body, floor plates, secondary beams, purlines, supports and the like can be configured according to needs, various kinds of concrete can be poured into the structure main body, and various kinds of concrete can be sprayed or poured outside the structure main body. Therefore, the structure body is suitable for being applied to some buildings and structures in a matched mode.
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Description

Technical Field

[0001] This invention relates to the field of structures and materials, and is a type of pipe-to-pipe interlocking structural body mainly used for manufacturing and configuring structural bodies. It is applicable to the combination and manufacturing of various structural bodies in various buildings, structures and the like. Background Technology

[0002] Currently, there is no single type of interconnected pipe structure. In the structural systems of buildings and structures, commonly used steel structures, concrete structures, reinforced concrete structures, wood structures, and brick-concrete structures are widely used. However, their main drawbacks include the use of numerous materials, complex construction and installation, high manufacturing difficulty, high cost, susceptibility to deformation and instability, and inability to achieve ideal matching, corrosion resistance, and relatively poor fire resistance. Based on decades of experience in developing various structures, building components, and materials, the inventor needs to adopt more rational structural forms. Furthermore, in general building and structural systems, the rational allocation and utilization of materials also require more ideal structural forms. Therefore, it is necessary to invent a single interconnected pipe structure. Summary of the Invention

[0003] The present invention provides a pipe-to-pipe interlocking structure for manufacturing and configuring the main body of a structure, which is suitable for use in some buildings and structures.

[0004] The main body of the pipe-to-pipe structure of this invention is mainly made of metallic and non-metallic materials. The main body of the pipe-to-pipe structure has multiple limiting members 4 inserted into the pipe 1 from various directions. The position of the limiting members 4 is generally determined by the positioning plate 5 disposed inside the pipe 1. The crossbeams 2 and longitudinal beams 3 are mounted and stacked on the column head of the pipe 1 formed by the limiting members 4. Water, electricity, gas pipelines, network telecommunications pipelines, spare equipment pipelines, and other pipelines requiring pre-embedded parts and pre-drilled holes can be arranged in this main structure, which is mainly composed of the pipe 1, crossbeams 2, longitudinal beams 3, limiting members 4, and positioning plate 5. These are configured according to the pre-designed construction sequence on the formed main structure. The structure includes floor slabs, secondary beams, purlins, supports, and other necessary components and accessories. Various types of concrete, adhesive mixtures, anti-corrosion mixtures, clay mixtures, or combined grouting materials can be poured into the main structural body, which is primarily composed of column tubes 1, horizontal beams 2, longitudinal beams 3, limiting components 4, and positioning plates 5, for reinforcement and strengthening. Various types of concrete, adhesive mixtures, anti-corrosion mixtures, and fireproof materials can be sprayed or poured onto the exterior of this main structural body. Subsequent construction work and the addition or subtraction of construction materials and accessories to this main structural body are not limited; they can be selected and applied as needed.

[0005] The main column tube 1 of a pipe-to-pipe structure is generally made of various metal or non-metal tubular materials of the required shape; the crossbeams 2 and longitudinal beams 3 are also generally preferably made of various metal or non-metal tubular materials of the required shape, or various beams made of various pre-formed materials can also be selected; the limiting component 4 is generally made of various metal or non-metal tubular materials of the required shape, or other steel parts or pre-formed materials can also be selected; the positioning plate 5 is generally made of metal or non-metal sheet of the required shape; the quantity of the above-mentioned main accessories is not limited; other required accessories, configuration holes, etc. are selected and configured as needed without limitation.

[0006] In practical applications, there are no restrictions on the use of welding, nailing, and other processes. Other auxiliary parts, connectors, and holes can be configured as needed. There are no restrictions on the matching connectors required for subsequent manufacturing and use of components, such as column plates, beam plates, and reinforcing plates. New inventions can also be designed to match these components. The various parts and components of a single pipe-to-pipe structure can be manufactured separately, assembled, or packaged as individual parts. There are no restrictions on the quantity, materials, shape, processes, or connection and installation methods of the main components, parts, and components. This structure can be flexibly applied repeatedly in various ways when forming multi-layered, multi-directional, or single-piece pipe-to-pipe structures.

[0007] In summary, limiting members 4 are inserted into the column tube 1 from multiple directions. The position of the limiting members 4 is generally determined by the positioning plate 5 located inside the column tube 1. The crossbeam 2 and longitudinal beam 3 are mounted and stacked on the column head of the column tube 1 formed by the limiting members 4. The column tube 1, crossbeam 2, longitudinal beam 3, limiting members 4, and positioning plate 5 can be made of metal or non-metal materials. Water, electricity, gas, and network telecommunications pipelines, equipment backup pipelines, and other necessary embedded parts can be arranged in this main structure formed by the column tube 1, crossbeam 2, longitudinal beam 3, limiting members 4, and positioning plate 5. The construction design sequence involves configuring floor slabs, secondary beams, purlins, supports, and other necessary components and accessories on the formed main structure. Various types of concrete, adhesive mixtures, anti-corrosion mixtures, clay mixtures, or combined grouting materials can be poured into this main structure for reinforcement and strengthening. Various types of concrete, adhesive mixtures, anti-corrosion mixtures, and fireproof materials can be sprayed or poured onto the exterior of this main structure. This main structure can be repeatedly installed vertically and horizontally, and it is permissible to add or remove construction materials and accessories while maintaining consistent structural characteristics.

[0008] This invention provides a pipe-to-pipe structural body, which employs multiple directions of inserting limiting members 4 within the column pipe 1. The position of the limiting members 4 is generally determined by the positioning plate 5 within the column pipe 1. Horizontal beams 2 and longitudinal beams 3 are mounted and stacked within the positions formed by the limiting members 4. Within this structural body, mainly formed by the column pipe 1, horizontal beams 2, longitudinal beams 3, limiting members 4, and positioning plate 5, water, electricity, gas pipelines, network and telecommunications pipelines, equipment backup pipelines, and other pre-embedded components can be arranged. Floor slabs, secondary beams, purlins, supports, and other necessary components and accessories can be configured on this structural body according to the construction design sequence. Various types of concrete, adhesive mixtures, anti-corrosion mixtures, clay mixtures, or combined grouting materials can be poured into this structural body for reinforcement and strengthening. Various types of concrete, adhesive mixtures, and anti-corrosion mixtures can be sprayed or poured onto the exterior of this structural body. Therefore, this structural body is suitable for application in various buildings and structures.

[0009] Attached image description: Figure 1 This is a partial schematic diagram of a single-layer main body with interconnected pipe structures. Figure 2 This is a partial schematic diagram of a double-layered main body with interconnected pipe structures. Figure 3 This is a partial schematic diagram of a multi-layered main body with interconnected pipe structures. Figure 4 , Figure 5 , Figure 6 These are schematic diagrams of the main positioning plate 5 of a pipe-to-pipe interconnected structure; Figure 7 This is a schematic diagram of a pipe-to-pipe interconnection structure with configuration holes on the parts; each diagram is a specific example and not a limitation. The main body of a pipe-to-pipe interconnection structure mainly consists of column pipe 1, crossbeam 2, longitudinal beam 3, limiting component 4, positioning plate 5, etc.

[0010] Detailed Implementation: Referring to the various illustrations, the main body of a pipe-to-pipe structure is primarily made of metallic and non-metallic materials. The main structure consists of multiple locating members 4 inserted within the column pipe 1. The position of the locating members 4 is generally determined by the positioning plate 5 within or above the column pipe 1. Horizontal beams 2 and longitudinal beams 3 are placed and stacked within the column head position formed by the locating members 4, occupying the space divided by the locating members 4. Within this main structure, water, electricity, and gas pipelines, network and telecommunication lines, spare equipment pipelines, and other necessary embedded parts can be arranged according to requirements, following the sequence specified in the construction design. The main structure is equipped with floor slabs, secondary beams, purlins, supports, and other necessary components and accessories. Various types of concrete, adhesive mixtures, anti-corrosion mixtures, clay mixtures, or combined grouting materials can be poured into this main structure for reinforcement and strengthening. Various types of concrete, adhesive mixtures, and anti-corrosion mixtures can be sprayed or poured onto the exterior of this main structure, which is mainly composed of column tubes 1, horizontal beams 2, longitudinal beams 3, limiting components 4, and positioning plates 5. Subsequent construction and additions / reductions to the main structure, as well as materials and accessories, are not limited and can be selected and applied as needed. The main column tube 1 of a pipe-to-pipe structure is generally made of various required shapes of metal or non-metal tubular materials; the crossbeams 2 and longitudinal beams 3 are also generally preferably made of various required shapes of metal or non-metal tubular materials, but can also be various beams made of various pre-formed materials; the limiting component 4 is generally made of various required shapes of metal or non-metal tubular materials, but can also be made of other steel parts, steel materials, or pre-formed materials; the positioning plate 5 is generally made of required shapes of metal or non-metal sheet materials; the quantity of the above-mentioned components is not limited, and other required accessories, configuration holes, etc. are selected and configured as needed without limitation. Other required auxiliary parts and connectors are configured as needed without limitation.

Claims

1. A main body of a pipe-to-pipe structure, mainly composed of column pipes (1), crossbeams (2), longitudinal beams (3), limiting members (4), and positioning plates (5), characterized in that: The limiting member (4) is inserted into the tube from multiple directions inside the tube (1). The position of the limiting member (4) is generally determined by the positioning plate (5) arranged inside the tube (1). The crossbeam (2) and the longitudinal beam (3) are mounted and stacked on the column head of the tube (1) formed by the limiting member (4).

2. The main body of the pipe-to-pipe structure according to claim 1, characterized in that: The main structure, consisting of column tubes (1), crossbeams (2), longitudinal beams (3), limiting components (4), and positioning plates (5), can accommodate water, electricity, gas, and network telecommunications pipelines, equipment backup pipelines, and other necessary embedded parts.

3. The main body of the pipe-to-pipe structure according to claim 1, characterized in that: Floor slabs, secondary beams, purlins, supports, and other necessary components and accessories can be installed on the main structure in the order specified in the construction design.

4. The main body of the pipe-to-pipe structure according to claim 1, characterized in that: Various types of concrete, adhesive mixtures, anti-corrosion mixtures, clay mixtures, or combined injection materials can be poured into this main structure to reinforce and strengthen it.

5. The main body of the pipe-to-pipe structure according to claim 1, characterized in that: Various types of concrete, adhesive mixtures, anti-corrosion mixtures, and fireproof materials can be sprayed or poured onto the exterior of this main structure.

6. The main body of the pipe-to-pipe structure according to claim 1, characterized in that: The column tube (1), crossbeam (2), longitudinal beam (3), limiting component (4), and positioning plate (5) can be made of metal or non-metal materials.

7. The main body of the pipe-to-pipe structure according to claim 1, characterized in that: This main structure can be repeatedly installed vertically and horizontally, and construction materials and accessories can be added or removed while maintaining the same structural characteristics.