Sustainable and recyclable combined structure of indoor system partition wall and implementation method of sustainable and recyclable combined structure

By using systematic reconstruction technology, disassembled partition materials are recombined into new partition walls, solving the problem of recycling fireproof and non-fireproof partition materials. This achieves efficient resource utilization and a highly adaptable partition wall structure, reduces carbon emissions, and promotes the sustainable development of the construction industry.

CN120925595APending Publication Date: 2025-11-11SHANGHAI GRID WALL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202410562802.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-08
Publication Date
2025-11-11

AI Technical Summary

Technical Problem

In existing technologies, prefabricated glass partition walls and decorative panel partition walls lack systematic reconstruction technology for interior partitioning, which limits their recycling, especially the problem of correlation and reconfigurability between fireproof and non-fireproof partition materials has not been effectively solved.

Method used

By adopting systematic reconstruction technology, the original partitions are disassembled into materials such as profiles, glass, and panels. Through prefabricated assembly technology, new partition wall structures are formed, including wall groove groups, connecting support groups, and corner connection groups. By using dry-hanging and bolt-fixed assembly, fireproof and non-fireproof partitions can be reused multiple times.

Benefits of technology

It improves resource utilization efficiency, reduces carbon emissions in the construction industry, adapts to different building needs, promotes sustainable development, solves the integration and reuse problems of partition walls of different specialties, and enhances adaptability and practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a sustainable and recyclable combined structure of an indoor system partition wall and an implementation method of the sustainable and recyclable combined structure. Based on the combination of an assembly type technology and a systematic reconstruction technology, a plurality of basic standard profile components which are made of different materials and are similar in shape are combined through an assembly type method, and the combined structure is formed. And fireproof and non-fireproof indoor partition module groups can be formed. During cyclic utilization, original partition walls are disassembled to form materials such as profiles, glass and panels, and according to a new design scheme, the original partition materials are recombined into a new partition wall by matching, increasing and decreasing internal corner pieces, corner pieces and panel components with standard sizes; and the device can adapt to the change of floor height and length size and the change of separation layout and use functions in the cyclic utilization process. According to the method, the resource utilization efficiency can be improved, the adaptability is high, carbon emission is reduced, sustainable development is promoted, and the professional problem is comprehensively considered and solved.
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Description

Technical Field

[0001] This invention relates to the technical field of partition walls in indoor partition assembly systems, and specifically to a combined structure for sustainable recycling of indoor system partition walls and its implementation method. Background Technology

[0002] The construction industry plays a significant role in global carbon emissions, with frequent renovations of office buildings in China contributing particularly to waste and carbon emissions. Therefore, the recyclability of interior partitions is crucial. Currently, prefabricated glass partitions and decorative panel partitions are widely used in interior partitioning, but their recycling is limited due to a lack of systematic reconstruction technologies for both fire-resistant and non-fire-resistant partition materials. Summary of the Invention

[0003] This invention proposes a "systematic reconstruction technology" in the field. The concept of reconstruction refers to disassembling the original partition into materials such as profiles, glass, and panels. Based on a new design scheme, the original partition profiles, glass, and panels are recombined into a new partition wall by matching, adding or removing accessories or components, thereby achieving a systematic reorganization technology that can be reused multiple times.

[0004] A combined structure for sustainable recycling of interior partition walls and its implementation method that can solve the recycling problems of integrated system partition structure technology for both fire protection and non-fire protection in buildings.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A reusable modular structure for interior partition walls is disclosed, comprising several partition panels assembled and connected to form a partition wall. The structure includes wall grooves, connecting support groups, and corner connection groups. These groups are assembled using dry-hanging and bolt-fixed assembly methods. Each partition panel consists of glass and a panel, with two identical panels arranged vertically as a partition, including a glass group and a panel group. The wall grooves connect the partitions to the floor, ceiling, and solid wall. Each panel group is connected to the wall grooves via dry-hanging assembly. Each glass group is connected to the wall grooves via bolt-fixed assembly. The connecting support groups provide horizontal and vertical connections and support to adjacent partition panel groups. Adjacent glass groups are connected to the connecting support groups via bolts. The connecting support group is assembled with the glass group through a dry-hanging assembly; adjacent glass groups and panel groups are connected to the connecting support group through bolts to achieve fixed assembly of glass and panels; the corner connecting group is used to connect and support the corners between the partition panels; it also includes inside corner pieces and outside corner pieces, which are right-angled to the dry-hanging assembly of the two corner connecting groups, and the two corner connecting groups are respectively dry-hanging assembled with the two adjacent partition panels; adjacent glass groups are connected to the corner glass partition of the corner connecting group through bolt assembly; adjacent panel groups are connected to the corner connecting group through a dry-hanging assembly to achieve the construction of corner panel partitions; adjacent glass groups and panel groups are respectively connected to the corresponding corner connecting groups through bolt assembly and dry-hanging assembly to achieve the construction of corner glass and panel partitions.

[0006] Preferably, the dry-hanging assembly includes a support member, a panel member, and a panel assembly fitting; the support member has two parallel hanging holes and is placed vertically; the panel assembly fitting adopts a dry-hanging Z-shaped structure and is installed at the end of the panel member; the panel assembly is inserted into the hanging holes of the support member through the panel member using the dry-hanging Z-shaped structure of the panel assembly fitting; the bolt-fixed assembly includes a support member, a support cover plate member, and a support pressure condition; the support cover plate member and the support pressure condition are connected as one unit by a snap-fit ​​method; the support cover plate member and the support pressure condition are set as two sets; the support pressure condition is connected to both ends of the support member by bolts.

[0007] Preferably, the connecting support assembly includes a glass support assembly, a panel-to-panel support assembly, and a glass-to-panel support assembly; the glass support assembly includes a bolt-fixing assembly, where adjacent glass groups are respectively snapped between the external plug-in of the bolt-fixing assembly and the support member of the bolt-fixing assembly, and the external plug-in and the two ends of the support member are connected and fixed by bolts, thereby pressing and connecting the adjacent glass groups to realize the glass partition construction; the panel-to-panel support assembly includes a dry-hanging assembly, where adjacent panel groups are respectively connected through the panel members of the dry-hanging assembly, utilizing the ends of the panel members The panel assembly is inserted into the socket of the support member and fixed to achieve the panel partition construction between two adjacent panel groups; the glass and panel support group includes a bolt fixing assembly group, in an adjacent group of panel groups and a group of glass groups, the glass group is snapped between the external plug of the bolt fixing assembly group and the support member of the bolt fixing assembly group; the panel group is snapped between the external plug and the support member by a panel component; the external plug and the two ends of the support member are connected and fixed by bolts, thereby pressing and connecting the adjacent glass group and the panel group to achieve the construction of the glass and panel partition.

[0008] Preferably, the system assembly components of the corner connection group include a bolt-fixing assembly group and / or a dry-hanging assembly group connected to the inside corner piece and the outside corner piece; two adjacent glass groups are respectively connected to the inside corner piece and the outside corner piece through the bolt-fixing assembly group to realize the corner glass partition; two adjacent panel groups are respectively connected to the inside corner piece and the outside corner piece through the dry-hanging assembly group to realize the corner panel partition; one adjacent panel group and one adjacent glass group are respectively connected to the inside corner piece and the outside corner piece through the dry-hanging assembly group and the bolt-fixing assembly group to realize the corner glass and panel partition.

[0009] Preferably, the system further includes a glass and door frame assembly and a panel and door frame assembly, wherein the partition panel further includes a door kit; the glass and door frame assembly includes a bolt-fixed assembly; the door kit is snapped between the external insert of the bolt-fixed assembly and the support member of the bolt-fixed assembly; the glass assembly is snapped between the external insert and the support member; the two ends of the external insert and the support member are connected and fixed by bolts, thereby pressing and connecting the door kit and the glass assembly to achieve the glass and door frame partition; the panel and door frame assembly includes a bolt-fixed assembly; the door kit is snapped between the external insert of the bolt-fixed assembly and the support member of the bolt-fixed assembly; the panel assembly is snapped between the external insert and the support member by panel pieces; the two ends of the external insert and the support member are connected and fixed by bolts, thereby pressing and connecting the door kit and the panel assembly to achieve the panel and door frame partition.

[0010] Preferably, it further includes a three-way connection group, which includes a panel piece, a bolt-fixed assembly group, and / or a dry-hanging assembly group; two of the three sets of partition panel partitions are connected side-by-side by panel pieces on one side, and the other side of the two sets of partition panel partitions is connected to another set of partition panel partitions by two sets of corner pieces; three of the three sets of panel pieces are connected to the panel piece and the corner piece respectively by dry-hanging assembly groups; or the glass pieces in the three sets of partition panel partitions are connected to the panel piece and the corner piece respectively by bolt-fixed assembly groups; or the three sets of partition panel partitions formed by the combination of glass pieces and panel pieces are connected to the panel piece and the corner piece respectively by bolt-fixed assembly groups combined with dry-hanging assembly groups.

[0011] Preferably, the wall groove assembly includes a glass wall groove assembly and a panel wall groove assembly; the glass wall groove assembly includes a wall groove component, a wall groove decorative component, a wall groove pressing condition, and a wall groove cover plate component; the wall groove component and the wall groove decorative component are inserted together as inner connectors; the wall groove pressing condition and the wall groove cover plate component are inserted together as outer connectors; the glass assembly is placed on both sides of the inner connector, and the glass assembly is connected to the glass wall groove assembly by bolts between the inner connector and the outer connector; the panel wall groove assembly includes a dry-hanging assembly assembly, and the panel assembly is fixed by inserting the panel fittings at the ends of the panel components into the insertion holes of the support components, thereby achieving the connection and construction of the panel assembly and the panel wall groove assembly.

[0012] Preferably, the outer side of the support member in the panel wall groove assembly is connected by dry-hanging assembly; in the bolt-fixed assembly assembly, the support member located on one side of the glass assembly is snapped into place by the support decoration and the external plugs at both ends of the support member.

[0013] Preferably, the system assembly components are made of steel or aluminum; the glass is made of fire-resistant or non-fire-resistant glass.

[0014] This invention also provides an implementation method for a combined structure based on the sustainable recycling of indoor system partition walls, comprising the following methods: The glass assembly on the outside of the indoor system is constructed using the glass wall groove assembly, and the panel assembly on the outside of the indoor system is constructed using the panel wall groove assembly. In a partition panel, adjacent glass groups are installed together to form a glass partition, adjacent panel groups and glass groups are installed together to form a panel-to-glass partition, and adjacent panel groups are installed together to form a panel partition. In a partition panel, adjacent glass assemblies and door kits are installed together to form a glass and door frame partition; in a partition panel, adjacent panel assemblies and door kits are installed together to form a panel and door frame partition. Adjacent partition panels in a partition wall are installed at a corner by corner connection groups; three groups of partition panels of the same or different types are installed in three directions by three-way connection groups to form a three-way partition. When the interior system needs to increase the floor height, the glass support group is used to connect the adjacent glass groups horizontally to form a glass partition, increasing the horizontal area and superimposing it on the original height partition of the interior system. When the length of the interior system needs to be increased, the adjacent glass groups and panel groups are vertically connected by glass and panel support groups to increase the vertical area and extend the connection to the length of the original interior system. When the length of the interior system needs to be reduced, the original length partition of the interior system is reduced by a vertical set of glass or a set of glass supports, and replaced with a set of glass and panel supports. The original length partition of the interior system is reused, and the removed glass set can be matched with other partitions that are recycled. By using glass and panel support assemblies, the panel assemblies can be reused as modular units that adapt to changes in size, thereby improving the reuse rate of the original partitions.

[0015] Compared with the prior art, the beneficial effects of the present invention are: Improving resource utilization efficiency: This invention achieves the recycling and reuse of interior partition walls through systematic reconstruction technology, thereby effectively reducing material waste. This reuse method allows partition wall materials that were originally considered waste to be reused, improving resource utilization efficiency.

[0016] High adaptability: This invention integrates prefabricated technology and systematic reconstruction technology, enabling the partition wall to adapt to changes in floor height, length, layout, and function. This flexibility allows the invention to meet the needs of interior partitioning in different buildings, improving its applicability and practicality.

[0017] Reduced carbon emissions: Because this invention enables the recycling of interior partition walls, it reduces the production of new materials and the disposal of old materials, which helps to reduce carbon emissions in the construction industry and is in line with the development goal of carbon neutrality.

[0018] Promoting Sustainable Development: By improving resource utilization efficiency, reducing carbon emissions, and adapting to diverse needs, this invention contributes to the sustainable development of the construction industry. It aligns with the green and low-carbon sustainable development concept and helps drive the transformation and upgrading of the construction industry.

[0019] Comprehensive consideration: This invention comprehensively considers various problems that may be encountered when reusing partitions, including changes in floor height, length dimensions, partition layout, and the functional changes of the doors in the partition system. This comprehensive consideration makes the invention more complete and practical.

[0020] Addressing the issue of specialization: Existing technologies present challenges in the interrelationship and reconfigurability of partition walls from different specializations (such as aluminum alloy glass partitions, fire-resistant glass partitions, or decorative panel partitions). This invention solves this problem by integrating prefabricated construction technology and systematic reconstruction technology, enabling the integration and reuse of fire-resistant and non-fire-resistant partition walls from different specializations.

[0021] This invention is based on several basic standard profile components of different materials and similar shapes. These basic profile components can be combined to form fireproof and non-fireproof partition module groups. The partition modules have prefabricated horizontal and vertical adjustment functions, capable of adapting to or compensating for dimensional errors in the ground, solid walls, and ceiling. Combined with panel modules, they can adapt to changes in floor height and length during recycling. By adding or removing standard-sized corner pieces, bevel pieces, and panel components, the fireproof and non-fireproof partitions can be recombined, thereby realizing changes in layout and functionality during cyclical design.

[0022] In summary, compared with existing technologies, the combined structure and implementation method of the present invention for the sustainable recycling of indoor system partition walls have many beneficial effects, including improved resource utilization efficiency, strong adaptability, reduced carbon emissions, promotion of sustainable development, comprehensive consideration, and resolution of specialized problems. These advantages make the present invention have broad application prospects and promotional value in the construction industry. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of the wall groove component in the combined structure of the indoor system partition wall proposed in this invention, which adopts a steel structure (left) or an aluminum structure (left).

[0024] Figure 2 This is a schematic diagram of a combined structure for sustainable recycling of indoor system partition walls proposed in this invention, in which the supporting components are made of steel (left) or aluminum (left).

[0025] Figure 3 This is a schematic diagram of a combined structure for sustainable recycling of indoor system partition walls proposed in this invention, in which the supporting components are placed horizontally.

[0026] Figure 4 This is a schematic diagram of a combined structure for sustainable recycling of indoor system partition walls proposed in this invention, in which the supporting components are placed vertically.

[0027] Figure 5 This is a schematic diagram of the connection between the horizontal and vertical support members in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0028] Figure 6 This is a schematic diagram of the wall groove decoration component in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0029] Figure 7 This is a schematic diagram of the supporting decorative element in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0030] Figure 8 This is a schematic diagram of the wall groove pressure condition in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0031] Figure 9 This is a schematic diagram of the supporting pressure condition in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0032] Figure 10 This is a schematic diagram of the wall groove cover plate in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0033] Figure 11 This is a schematic diagram of the supporting cover plate in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0034] Figure 12 This is a schematic diagram of the door kit in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0035] Figure 13 This is a schematic diagram of the internal corner fittings and panel assembly in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0036] Figure 14 This is a schematic diagram of the corner brackets and panel assembly components in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0037] Figure 15 This is a schematic diagram of the panel components and panel assembly parts in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0038] Figure 16 This is a schematic diagram of the panel assembly in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0039] Figure 17 The diagram shows the structural schematics of the glass wall troughs in the proposed indoor system partition wall sustainable recycling combined structure, which uses a steel structure and fireproof glass partitions (left) and an aluminum structure and non-fireproof glass partitions (right).

[0040] Figure 18 The diagram shows the structural schematics of the glass support group in the proposed sustainable and recyclable indoor system partition wall, where the glass support group is constructed with a steel structure and fireproof glass partition (left) and with an aluminum structure and non-fireproof glass partition (right).

[0041] Figure 19 The diagram shows the structural schematics of the glass and panel support group in the proposed indoor system partition wall sustainable recycling combined structure, which uses a steel structure to combine fireproof glass and panel partitions (left) and an aluminum structure to combine non-fireproof glass and panel partitions (right).

[0042] Figure 20 This is a schematic diagram of the panel wall groove assembly in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0043] Figure 21 This is a schematic diagram of the panel and panel support assembly in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0044] Figure 22 This is a schematic diagram of the combined structure of a sustainable and recyclable indoor system partition wall proposed in this invention, in which the glass and door frame assembly is constructed by combining steel door kits with fireproof glass partitions (left) and aluminum door kits with non-fireproof glass partitions (right).

[0045] Figure 23 This is a schematic diagram of a combined structure for sustainable recycling of indoor system partition walls proposed in this invention, in which the panel and door frame assembly is constructed using steel door kits and panel partitions, and aluminum door kits and panel partitions.

[0046] Figure 24 This is a schematic diagram of the planar structure of a fireproof glass partition corner connecting a non-fireproof glass partition in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0047] Figure 25 This is a schematic diagram of the fireproof glass partition corner connecting panel partition in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0048] Figure 26 This is a schematic diagram of the planar structure of the panel partition corner connection panel partition in the combined structure of the indoor system partition wall proposed in this invention for sustainable recycling.

[0049] Figure 27This is a schematic diagram of a three-way connection planar structure in a composite structure for sustainable recycling of indoor system partition walls proposed in this invention, in which panel partitions are connected to two-way fireproof or non-fireproof glass partitions.

[0050] Figure 28 This is a schematic diagram of a three-way connection planar structure in which a two-way panel partition connects a fireproof or non-fireproof glass partition to a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0051] Figure 29 This is a schematic diagram of the three-way connection planar structure of the panel partition in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0052] Figure 30 This is a schematic diagram of the planar structure of the glass partition connecting the door frame corner in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0053] Figure 31 This is a schematic diagram of the planar structure of the door frame, the three-way connecting panel partition, and the glass partition in the combined structure of the indoor system partition wall proposed in this invention for sustainable recycling.

[0054] Figure 32 This is a schematic diagram of the planar structure of the three-way connected panel partition of the two door frames in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0055] Figure 33 This is a schematic diagram of the elevation of the partition in the original interior system.

[0056] Figure 34 This is a schematic diagram of the elevation of the indoor system partition wall with variable floor height in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0057] Figure 35 This is a schematic elevation view of the indoor system partition wall with varying floor lengths in a combined structure for sustainable recycling of indoor system partition walls proposed in this invention.

[0058] Figure 36 This is a schematic elevation view of a combined structure for sustainable recycling of indoor system partition walls proposed in this invention, showing a shortened indoor system partition floor.

[0059] Numbering on the map: 1. Wall groove components; 2. Support components; 3. Wall groove finishing components; 4. Support finishing components; 5. Wall groove pressure conditions; 6. Support pressure conditions; 7. Wall groove cover plate components; 8. Support cover plate components; 9. Door kit components; 10. Internal corner components; 11. External corner components; 12. Panel components; 13. Panel assembly components; 14. Glass wall groove assembly; 15. Glass support assembly; 16. Glass and panel support assembly; 17. Panel wall groove assembly; 18. Panel and panel support assembly; 19. Glass and door frame assembly; 20. Panel and door frame assembly. Detailed Implementation

[0060] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0061] like Figures 1 to 29 As shown, this invention provides a modular structure for the sustainable recycling of interior partition walls, used for connecting, supporting, and separating several partition panels. It includes a glass wall groove assembly 14, a panel wall groove assembly 17, a glass support assembly 15, a panel-to-panel support assembly 18, a glass-to-panel support assembly 16, a corner connection assembly, a glass-to-door frame assembly 19, a panel-to-door frame assembly 20, and a three-way connection assembly.

[0062] In this embodiment, the partition panel includes glass, panels and door kit 9. Two pieces of glass are set as a glass group, and two panels are set as a panel group.

[0063] In this embodiment, the glass wall groove assembly 14, the panel wall groove assembly 17, the glass support assembly 15, the panel and panel support assembly 18, the glass and panel support assembly 16, the corner connection assembly, the glass and door frame assembly 19, the panel and door frame assembly 20, and the three-way connection assembly all adopt plug-in or bolt system assembly components. The system assembly components include dry-hanging assembly assembly and bolt-fixed assembly assembly.

[0064] The dry-hanging assembly includes a support member 2, a panel member 12, and a panel assembly accessory 13. The support member 2 has two parallel insertion holes. The support member 2 is placed vertically. The panel assembly accessory 13 is installed at the end of the panel member 12. The panel assembly is inserted into the insertion hole of the support member 2 through the panel member 12 and the panel assembly accessory 13.

[0065] The bolt-fixed assembly includes a support member 2, a support cover plate member 8, and a support pressure condition 6; the support cover plate member 8 and the support pressure condition 6 are connected as an external plug-in by a snap-fit ​​method. There are two sets of external plug-ins, and the two sets of external plug-ins are connected to the two ends of the support member 2 by bolts.

[0066] like Figure 17As shown, the glass wall groove assembly 14 is used to connect the glass assemblies on the outside of the indoor system; each glass assembly is connected to the glass wall groove assembly 14 by bolts; the glass wall groove assembly 14 includes a set of wall groove components 1, a set of wall groove decorative components 3, two sets of wall groove pressing conditions 5, and two sets of wall groove cover plate components 7; the opening of the set of wall groove components 1 is inserted into the opening of the set of wall groove decorative components 3 as an inner connection; the set of wall groove pressing conditions 5 and the set of wall groove cover plate components 7 are inserted into each other as outer connections.

[0067] Glass assemblies are placed on both sides of the inner connector. The glass assemblies are pressed between the inner and outer connectors by bolts, thereby connecting and assembling the glass assemblies with the glass wall groove assembly 14.

[0068] like Figure 20 As shown, the panel wall groove assembly 17 includes a dry-hanging assembly for connecting the panel assembly on the outside of the indoor system; each panel assembly is connected to the panel wall groove assembly 17 via the dry-hanging assembly; the panel assembly is fixed in the insertion hole of the support member 2 by the panel fitting 13 at the end of the panel member 12, thereby realizing the connection and construction of the panel assembly and the panel wall groove assembly 17.

[0069] like Figure 18 , 19 As shown in Figures 21 and 22, the glass support assembly 15, the panel and panel support assembly 18, and the glass and panel support assembly 16 are used to provide connection and support for two adjacent sets of partition panels in the horizontal and vertical directions.

[0070] like Figure 18 As shown, the glass support assembly 15 includes a bolt fixing assembly. Two adjacent glass groups are respectively snapped between the outer plug of the bolt fixing assembly and the support member 2 of the bolt fixing assembly. The outer plug and the two ends of the support member 2 are connected and fixed by bolts, thereby pressing and connecting the two adjacent glass groups to form a glass partition.

[0071] like Figure 21 The panel and panel support group 18 includes a dry-hanging assembly group. Two adjacent panel groups are connected by panel parts 12 of the dry-hanging assembly group. The panel parts 13 at the ends of the panel parts 12 are dry-hanging and fixed in the hanging holes of the support members 2, so as to connect the two adjacent panel groups and build a panel partition.

[0072] like Figure 19 As shown, the glass and panel support assembly 16 includes a bolt fixing assembly. In an adjacent set of panel assemblies and a set of glass assemblies, the glass assembly is snapped between the outer plug of the bolt fixing assembly and the support member 2 of the bolt fixing assembly; the panel assembly is snapped between the outer plug and the support member 2 through the panel member 12; the pressure strip is connected and fixed to both ends of the support member 2 by bolts, thereby pressing and connecting the adjacent glass assemblies and panel assemblies to form a glass and panel partition.

[0073] like Figures 24-26 As shown, the corner connection assembly is used to connect and support the corners between the partition panels; it includes internal corner piece 10, external corner piece 11, bolt fixing assembly and / or dry hanging assembly.

[0074] Two adjacent glass panels are connected by bolted assembly groups to form a corner glass partition using internal corner brackets 10 and external corner brackets 11. Two adjacent panel panels are connected by dry-hanging assembly groups to form a corner panel partition using internal corner brackets 10 and external corner brackets 11. A group of adjacent panel panels and a group of adjacent glass panels are connected by dry-hanging assembly groups and bolted assembly groups to form a corner glass and panel partition using internal corner brackets 10 and external corner brackets 11.

[0075] like Figure 22 and Figure 23 As shown, the glass and door frame assembly 19 includes a bolt-fixed assembly; the door assembly 9 is snapped between the outer plug of the bolt-fixed assembly and the support member 2 of the bolt-fixed assembly; the glass assembly is snapped between the outer plug and the support member 2; the two ends of the outer plug and the support member 2 are connected and fixed by bolts, thereby pressing and connecting the door assembly 9 and the glass assembly to form a glass and door frame partition.

[0076] The panel and door frame assembly 20 includes a bolt-fixed assembly; the door kit 9 ​​is snapped between the outer plug of the bolt-fixed assembly and the support member 2 of the bolt-fixed assembly; the panel assembly is snapped between the outer plug and the support member 2 via the panel member 12; the two ends of the outer plug and the support member 2 are connected and fixed by bolts, thereby pressing and connecting the door kit 9 ​​and the panel assembly to form a panel and door frame partition.

[0077] like Figures 27-29 As shown, the three-way connection assembly includes panel piece 12, bolt-fixed assembly assembly and / or dry-hanging assembly assembly.

[0078] Two of the three sets of partition panels are connected side by side through panel piece 12, and the other side of the two sets of partition panels is connected to another set of partition panels through two sets of internal corner pieces 10. The three sets of panel partitions are connected to panel piece 12 and corner piece 10 respectively by dry-hanging assembly; or the glass pieces in the three sets of panel partitions are connected to panel piece 12 and corner piece 10 respectively by bolt fixing assembly; or the three sets of panel partitions composed of glass pieces and panel pieces are connected to panel piece 12 and corner piece 10 respectively by bolt fixing assembly and dry-hanging assembly to form a three-way partition.

[0079] In this embodiment, two sets of glass panels and one set of panel panels are connected and separated into a partition in three directions by two sets of internal corner brackets 10 and one set of panel brackets 12. One set of glass panels can be located in another position according to the design layout requirements.

[0080] A glass panel and two panel panels are connected and separated in three directions by two sets of internal corner brackets 10 and one set of panel brackets 12. The glass panel can be located in another position according to the design layout requirements.

[0081] A set of glass panels and two sets of door kits 9 are connected in three directions to form a partition via two sets of internal corner brackets 10 and a set of panel pieces 12. The partition of one set of door kits 9 can be located in another position according to the design layout requirements.

[0082] A panel assembly and two door kits 9 are connected in three directions to form a partition via two sets of internal corner brackets 10 and a panel assembly 12. A panel assembly can be positioned in another direction depending on the design layout requirements.

[0083] According to the design layout, the original three-way connected partition can be converted into a two-way right-angle connection by a set of inside corner brackets 10 and a set of outside corner brackets 11. The excess part can be distributed to other partitions that need to be connected, thereby improving the reuse rate.

[0084] Furthermore, in this embodiment, the outer side of the support member 2 in the panel wall groove assembly 17 is inserted through the wall groove member 1, so that half of the support member is in the wall groove, and the partition panel is connected to the hanging hole of the support member by dry hanging.

[0085] Furthermore, in this embodiment, the system assembly components adopt steel or aluminum structures; the glass adopts fire-resistant glass or non-fire-resistant glass, with the steel structure and fire-resistant glass assembly forming a fire-resistant glass partition, and the aluminum structure and non-fire-resistant glass assembly forming a non-fire-resistant glass partition.

[0086] This invention also provides a method for implementing a combined structure for the sustainable recycling of indoor system partition walls, including the following methods: The glass assembly on the outside of the indoor system is constructed using glass wall grooves, and the panel assembly on the outside of the indoor system is constructed using the panel wall grooves.

[0087] In a partition panel, adjacent glass groups are installed together to form a glass partition, adjacent panel groups and glass groups are installed together to form a glass panel partition, and adjacent panel groups are installed together to form a panel partition.

[0088] In a panel partition, adjacent glass panels and door kits are installed together to form a glass and door frame partition. (This is repeated twice in the original text.)

[0089] Adjacent partition panels are connected at corners to form a partition. Three sets of partition panels of the same or different types are connected in three directions to form a three-way partition.

[0090] The present invention also provides a method for adjusting the glass wall groove assembly 14, including the following: Step 1: Use an external special adjustment tool "jack" at the lower end of the support arm of the wall groove decoration 3, place the glass assembly on both sides of the wall groove decoration 3, and adjust the "jack" screw to the required horizontal position of the wall groove decoration 3.

[0091] Step 2: Secure the glass assembly using wall groove pressure condition 5 and screws.

[0092] Step 3: Remove the adjustment tool and fasten the wall groove cover plate 7.

[0093] When the glass wall groove assembly 1 is located between the solid wall and the ceiling, the wall groove trim 3 can be used to manually adjust and align the horizontal and vertical lines. Other installation steps are the same as above.

[0094] And the adjustment method of panel assembly, such as Figure 5 As shown, two support members 2 are vertically located on the ground and top surfaces of the partition. Each support member has several hanging holes on both sides, and the bottom of the support member 2 is equipped with an adjustable screw and nut to position the hanging holes at the desired horizontal height. Figure 15 Panel fittings 13 are installed on the two inner sides of the panel component 12 shown. The panel component 12 is dry-hung onto both sides of the partition. Figure 20 As shown in Figure 21, the inside corner piece 10 and the outside corner piece 11 adopt the same dry-hanging method.

[0095] In addition, the present invention also provides the following: (1) A method for reorganizing several partitions when the layout of the interior system partition wall changes, based on the sustainable and recyclable design: 1) such as Figure 24 As shown, the glass support assembly 15 and the non-fireproof glass assembly are connected by internal corner brackets 10 and external corner brackets 11 to form a non-fireproof glass partition. This can be changed as needed for the design cycle. Figure 25 As shown, the fire-resistant glass panels are joined at the corners to form a panel assembly. Similarly, as... Figure 25 As shown, it can be changed to... Figure 26 The panel group shown is connected to the corner panel group.

[0096] 2) such as Figure 24 , 25 As shown in Figure 26, the original partition can be cross-replaced and reorganized according to the design layout requirements.

[0097] 3) such as Figure 27As shown, after the glass support assembly 15 is combined with the non-fireproof glass assembly or the fireproof glass assembly to form a fireproof glass partition or a non-fireproof glass partition, the panel assembly is connected in three directions through the two internal corner pieces 10 and the panel piece 12. This can be changed as needed for the cyclical design. Figure 28 As shown, the fire-resistant glass assembly can be positioned in any of three directions. Similarly, as... Figure 28 As shown, it can be changed to... Figure 29 The panel group shown is connected in three directions.

[0098] 4) such as Figure 24 , 25 As shown in Figures 26, 27, 28, and 29, the partitions are connected by standard internal corner pieces 10, external corner pieces 11, and panel pieces 12 to form corners and three-way connections. One of the figures shows the original partition. The partitions can be added, removed, or replaced and reorganized according to the design layout requirements.

[0099] (2) A method for recombining several partitions and door frames when designing a cyclical partition function; 1) such as Figure 30 As shown, after the glass support assembly 15 is assembled with a non-fireproof glass assembly or a fireproof glass assembly to form a fireproof glass partition or a non-fireproof partition, the door kit 9 ​​is connected at the corner by the inside corner bracket 10 and the outside corner bracket 11. This can be changed as needed for the cyclical design. Figure 31 The door assembly 9 is shown to be connected to the panel assembly 17 in three directions. Similarly, as... Figure 31 As shown, it can be changed to... Figure 32 The door kit shown replaces one glass panel to form a connection between two functional system door kits and panel assembly.

[0100] 2) such as Figure 30 , 31 As shown in Figure 32, the original door kit is connected to the partition, and the partition is reorganized by adding or removing door kits or replacing the partition.

[0101] (3) Methods for reorganizing floor and dimension changes during cyclical design; like Figure 33 The image shows the existing indoor system. When the indoor system requires an increase in floor height, such as... Figure 35 As shown, adjacent glass groups are horizontally connected by glass support group 15 to form a glass partition, increasing the horizontal area and superimposed on the height partition of the original indoor system.

[0102] When the indoor system needs to be lengthened, such as Figure 35 As shown, the glass and panel support group 16 vertically connects adjacent glass groups and panel groups to form a glass and panel partition, increasing the vertical area and extending the length of the partition connected to the original indoor system.

[0103] When the length of the indoor system needs to be reduced, such as Figure 36As shown, the original interior system's length partition is reduced by a vertical set of glass or a set of glass supports 15, and replaced with a set of glass and panel supports 16. The original interior system's length partition is reused.

[0104] With the glass and panel support assembly 16, the panel assembly can be used as a modular assembly to accommodate changes in size during recycling, thereby improving the reuse rate of the original partition.

[0105] The above embodiments are some examples of the combined structure and implementation method of the indoor system partition wall for sustainable recycling of the present invention. Based on the principle of system structure combination, more connection and recombination methods can be expanded to achieve a higher reuse rate.

[0106] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0107] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.

[0108] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A modular structure for sustainable and recyclable indoor partition walls, used to assemble and connect several partition panels to form a partition wall, characterized in that, It includes a wall groove assembly, a connecting support assembly, and a corner connection assembly, all of which are assembled using a dry-hanging assembly assembly and a bolt-fixed assembly assembly. The partition panel includes glass and a panel. Each pair of identical partition panels is set as a partition, consisting of a glass group and a panel group. The wall groove assembly is used to connect the partition between the ground, the ceiling, and the solid wall; each panel assembly is dry-hanging and assembled with the wall groove assembly, and each glass assembly is bolted and assembled with the wall groove assembly. The connecting support group is used to provide connection and support for two adjacent sets of partition panels in the horizontal and vertical directions. The connecting support group is bolted between two adjacent sets of glass groups. The connecting support group is dry-hanging assembled with the connecting support group between two adjacent sets of panels. The glass and panel are fixedly assembled by bolting between a set of glass groups and a set of panel groups. The corner connection group is used to connect and support the corners between the partition panels; it also includes a corner piece (10) and a corner piece (11), the corner piece (10) and the corner piece (11) are connected at right angles to the dry-hanging assembly of the two corner connection groups, and the two corner connection groups are respectively dry-hanging assembly connected to the two adjacent partition panels. The corner glass partitions of the corner connection group are connected by bolts between two adjacent glass groups; the corner panel partitions of the corner connection group are constructed by dry-hanging assembly between two adjacent panel groups; the corner glass and panel partitions of the corresponding corner connection group are constructed by bolt assembly and dry-hanging assembly.

2. The combined structure for sustainable recycling of indoor system partition walls according to claim 1, characterized in that, The dry-hanging assembly includes a support (2), a panel (12), and a panel assembly (13); the support (2) has two parallel hanging holes and is placed vertically; the panel assembly (13) adopts a dry-hanging Z-shaped structure and is installed at the end of the panel (12); the panel assembly is inserted into the hanging hole of the support (2) through the panel (12) using the dry-hanging Z-shaped structure of the panel assembly (13); The bolt-fixed assembly includes a support member (2), a support cover plate member (8), and a support pressure condition (6); the support cover plate member (8) and the support pressure condition (6) are connected as one unit by a snap fastener, and the support cover plate member (8) and the support pressure condition (6) are set as two sets, and the support pressure condition is connected to both ends of the support member (2) by bolts.

3. The combined structure for sustainable recycling of indoor system partition walls according to claim 2, characterized in that, The connecting support group includes a glass support group (15), a panel and panel support group (18), and a glass and panel support group (16). The glass support group (15) includes a bolt fixing assembly group. Two adjacent glass groups are respectively snapped between the external plug of the bolt fixing assembly group and the support member (2) of the bolt fixing assembly group. The external plug and the two ends of the support member (2) are connected and fixed by bolts, thereby pressing and connecting the two adjacent glass groups to realize the glass partition construction. The panel and panel support group (18) includes a dry-hanging assembly group. Two adjacent panel groups are connected by the panel parts (12) of the dry-hanging assembly group. The panel fittings (13) at the end of the panel parts (12) are inserted into the holes of the support members (2) for fixation, thereby realizing the panel partition construction of two adjacent panel groups. The glass and panel support assembly (16) includes a bolt fixing assembly. In an adjacent set of panel groups and a set of glass groups, the glass group is snapped between the external plug of the bolt fixing assembly and the support member (2) of the bolt fixing assembly; the panel group is snapped between the external plug and the support member (2) through a panel member (12); the two ends of the external plug and the support member (2) are connected and fixed by bolts, thereby pressing and connecting the adjacent glass group and the panel group to realize the glass and panel partition construction.

4. The combined structure for sustainable recycling of indoor system partition walls according to claim 2, characterized in that, The system assembly of the corner connection group includes a bolt-fixed assembly and / or a dry-hanging assembly connected to the inside corner piece (10) and the outside corner piece (11); The two adjacent glass groups are respectively connected by the bolt fixing assembly to the inside corner piece (10) and the outside corner piece (11) to realize the corner glass partition construction; The two adjacent panel groups are connected by the internal corner piece (10) and the external corner piece (11) through the dry-hanging assembly group to realize the corner panel partition construction; An adjacent set of panel groups and a set of glass groups are connected by the internal corner piece (10) and the external corner piece (11) through the dry-hanging assembly group and the bolt fixing assembly group to realize the construction of corner glass and panel partition.

5. The combined structure for sustainable recycling of indoor system partition walls according to claim 2, characterized in that, It also includes a glass and door frame assembly (19) and a panel and door frame assembly (20), the partition panel further including a door kit (9); The glass and door frame assembly (19) includes a bolt fixing assembly; the door kit (9) is snapped between the external plug of the bolt fixing assembly and the support member (2) of the bolt fixing assembly; the glass assembly is snapped between the external plug and the support member (2); the two ends of the external plug and the support member (2) are connected and fixed by bolts, thereby pressing and connecting the door kit (9) and the glass assembly to realize the glass and door frame partition construction; The panel and door frame assembly (20) includes a bolt fixing assembly; the door kit (9) is snapped between the external plug of the bolt fixing assembly and the support member (2) of the bolt fixing assembly; the panel assembly is snapped between the external plug and the support member (2) by a panel piece (12); the two ends of the external plug and the support member (2) are connected and fixed by bolts, thereby pressing and connecting the door kit (9) and the panel assembly to realize the panel and door frame partition construction.

6. The combined structure for sustainable recycling of indoor system partition walls according to claim 2, characterized in that, It also includes a three-way connection group, which includes a panel piece (12), a bolt-fixed assembly group and / or a dry-hanging assembly group; Two of the three sets of partition panels are connected side by side through panel piece (12), and the other side of the two sets of partition panels is connected to the other set of partition panels through two sets of internal corner pieces (10). The three sets of panel groups in the three sets of partition panels are connected to the panel piece (12) and the inside corner piece (10) respectively by dry-hanging assembly group; or the glass group in the three sets of partition panels is connected to the panel piece (12) and the inside corner piece (10) respectively by bolt fixing assembly group; or the three sets of partition panels formed by the glass group and the panel group are connected to the panel piece (12) and the inside corner piece (10) respectively by bolt fixing assembly group combined with dry-hanging assembly group.

7. The combined structure for sustainable recycling of indoor system partition walls according to claim 2, characterized in that, The wall groove assembly includes a glass wall groove assembly (14) and a panel wall groove assembly (17). The glass wall groove assembly (14) includes a wall groove component (1), a wall groove decoration component (3), a wall groove pressing condition (5), and a wall groove cover plate component (7); the wall groove component (1) and the wall groove decoration component (3) are inserted together as inner components; the wall groove pressing condition (5) and the wall groove cover plate component (7) are inserted together as outer components; the glass assembly is placed on both sides of the inner component, and the glass assembly is connected to the glass wall groove assembly (14) by bolts through the inner component and the outer component; The panel wall groove assembly (17) includes a dry-hanging assembly assembly. The panel assembly is fixed by inserting the panel mounting fitting (13) at the end of the panel piece (12) into the insertion hole of the support member (2), thereby realizing the connection and construction of the panel assembly and the panel wall groove assembly (17).

8. The combined structure for sustainable recycling of indoor system partition walls according to claim 7, characterized in that, The outer side of the support member (2) in the panel wall groove assembly (17) is connected by dry hanging assembly; In the bolt-fixed assembly, the support member (2) is located on one side of the glass assembly and is snapped into place by the support decoration member (4) and the external plugs at both ends of the support member (2).

9. The combined structure for sustainable recycling of indoor system partition walls according to claim 1, characterized in that, The system assembly components are made of steel or aluminum; the glass is made of fire-resistant or non-fire-resistant glass.

10. A method for implementing a combined structure based on the sustainable recycling of indoor system partition walls as described in claims 1 to 9, characterized in that, Including the following methods: The glass assembly on the outside of the indoor system is constructed by means of the glass wall groove assembly (14), and the panel assembly on the outside of the indoor system is constructed by means of the panel wall groove assembly (17). In the partition panel, adjacent glass groups are installed as glass partitions by glass support groups (15), adjacent panel groups and glass groups are installed as panel-glass partitions by glass and panel support groups (16), and adjacent panel groups are installed as panel partitions by panel-panel support groups (18). The adjacent glass groups and door kits in the partition panel are installed into a glass and door frame partition by glass and door frame assembly (19); the adjacent panel groups and door kits in the partition panel are installed into a panel and door frame partition by panel and door frame assembly (20); Adjacent partition panels in a partition wall are installed at a corner by corner connection groups; three groups of partition panels of the same or different types are installed in three directions by three-way connection groups to form a three-way partition. When the indoor system needs to increase the floor height, the glass support group (15) is used to connect the adjacent glass groups horizontally as a glass partition to increase the horizontal area and is superimposed on the original indoor system height partition. When the length of the indoor system needs to be increased, the glass and panel groups are vertically connected to the adjacent glass groups and panel groups through the glass and panel support group (16) to increase the vertical area and extend the connection to the length of the original indoor system. When the length of the interior system needs to be reduced, the original interior system's length partition is reduced by a vertical set of glass or a set of glass supports (15), and replaced with a set of glass and panel supports (16). The original interior system's length partition is reused, and the removed glass set is matched with other partitions that are recycled. By using the glass and panel support assembly (16), the panel assembly can be used as a modular assembly to accommodate changes in size during recycling, thereby improving the reuse rate of the original partition.