High-strength keel partition wall system

By combining high-strength leveled wooden keel with fireproof and steel partition walls, the problems of flammability, complex construction, and insufficient strength are solved, resulting in a high-strength, simplified construction, and aesthetically pleasing keel partition wall system.

CN223922548UActive Publication Date: 2026-02-17ZHEJIANG DINMEI INTELLIGENT DECORATION CO LTD
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Patent Information

Application Number
CN202423162437.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2026-02-17
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing keel structures are flammable, complex to construct, and lack sufficient strength, making them unsuitable for modern decoration needs.

Method used

The structure combines high-strength leveling wooden keel with fireproof and ice-resistant boards and steel partitions, along with aluminum alloy and stainless steel fittings. The overall strength and aesthetics are achieved through a suspended ceiling structure and concealed light strip components.

Benefits of technology

It achieves a high-strength keel structure, simplifies the construction process, reduces space occupation, and improves safety and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a high-strength keel partition wall system which comprises a first keel structure, a second keel structure and a suspended ceiling structure, the first keel structure comprises a leveling wood keel attached to the surface of a bearing wall and an ice fire plate arranged on the outer side of the leveling wood keel in parallel, and a first connecting structure is arranged between the leveling wood keel and the ice fire plate; the second keel structure comprises a main keel, an aluminum rock plate arranged on the side, away from the bearing wall, of the main keel in parallel and a heaven and earth keel arranged at the bottom of the main keel and fixed to the ground through adjusting screws, the adjusting screws are in threaded connection with adjustable feet, and the adjustable feet are fixedly connected with the bottom of the main keel. The equipment belt assembly comprises two hanging keels hung on the wall top, the lower ends of the hanging keels are connected with hanging tables, and a top equipment belt is clamped between the hanging tables. The keel partition wall is scientific in structure, practical construction operation is convenient, and the overall high strength of the keel partition wall can be achieved through combination of different types of structures.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of building decoration, and particularly relates to a high-strength keel partition wall system. BACKGROUND

[0002] Keel is a kind of building material used to support modeling and fix structure, and indoor decoration of roughcast house is usually realized by using keel and suspended ceiling. In modern decoration, the current keel structure has the following shortcomings: flammability, the biggest disadvantage of common wood keel is flammability, so when used as suspended ceiling and partition wall keel, fireproof paint needs to be brushed on the surface to increase safety; high construction complexity, keel construction needs high technical level and occupies more top space, which is not suitable for all construction environments; insufficient strength, the keel structure is insufficient in strength due to single material. SUMMARY

[0003] The utility model aims at overcoming the deficiencies in the prior art and provides a high-strength keel partition wall system.

[0004] The utility model discloses a technical scheme for solving the technical problems:

[0005] The high-strength keel partition wall system comprises a first keel structure arranged on the surface of a load-bearing wall, a second keel structure arranged on the side of a steel partition wall away from the load-bearing wall, and a suspended ceiling structure connected between the first keel structure and the second keel structure, characterized in that: the first keel structure comprises a leveling wood keel attached to the surface of the load-bearing wall, and an ice and fire plate arranged in parallel on the outer side of the leveling wood keel, and a plurality of first connecting structures are arranged between the leveling wood keel and the ice and fire plate to connect them together; the second keel structure comprises a main keel attached to the side of the steel partition wall away from the load-bearing wall, an aluminum rock plate arranged in parallel on the side of the main keel away from the load-bearing wall, and a heaven and earth keel arranged at the bottom of the main keel and fixed to the ground through an adjusting screw, and an adjustable foot is threadedly connected to the adjusting screw, and the adjustable foot is fixedly connected to the bottom of the main keel; the suspended ceiling structure comprises a plurality of equipment belt assemblies, each equipment belt assembly comprises two suspension keels hung on the top of the wall, and a hanging table is connected to the lower end of the suspension keel, and a top equipment belt is clamped between the hanging tables; adjacent equipment belt assemblies are connected through a decorative plate, and the equipment belt assemblies, the steel partition wall and the ice and fire plate are connected through the decorative plate.

[0006] Further, the first connecting structure comprises an aluminum alloy transverse keel and a stainless steel fitting, the aluminum alloy transverse keel comprises a limiting base capable of being clamped in the ice fire plate, and a clamping hook connected to the limiting base and bent and formed, the stainless steel fitting comprises a fitting base fixed on the leveling wood keel and an extended end connected to the fitting base and matched with the clamping hook; when the aluminum alloy transverse keel is clamped in the ice fire plate, the clamping hook is exposed between the leveling wood keel and the ice fire plate, and the corresponding stainless steel fitting is inserted into the clamping hook through the extended end to form clamping.

[0007] Further, the lower part of the ice fire plate is connected with an L-shaped aluminum alloy skirting, the top end of the L-shaped aluminum alloy skirting abuts against the lower part of the ice fire plate, the inner side of the L-shaped aluminum alloy skirting is attached to the leveling wood keel, and the bottom surface of the L-shaped aluminum alloy skirting is attached to the ground.

[0008] Further, the lower part of the steel partition wall is connected with an L-shaped aluminum alloy skirting, the top end of the L-shaped aluminum alloy skirting abuts against the lower part of the steel partition wall, the inner side of the L-shaped aluminum alloy skirting is attached to the main keel, and the bottom surface of the L-shaped aluminum alloy skirting is attached to the ground.

[0009] Further, the top of the steel partition wall is provided with a wood beam fixed on the top of the wall, the wood beam and the top of the steel partition wall are provided with a ceiling and floor keel fixed through an adjusting screw, and an adjustable foot is threadedly connected to the adjusting screw, and the adjustable foot is fixedly connected to the top of the main keel.

[0010] Further, the suspended ceiling structure further comprises at least one set of hidden light strip assembly, the hidden light strip assembly is symmetrically arranged on both sides of the top equipment strip, the hidden light strip assembly comprises a connecting profile and a decorative panel capable of being installed together, a buckle groove is integrally formed on one side of the upper part of the connecting profile, a positioning groove is arranged on the other side of the upper part of the connecting profile, and a lamp groove is arranged between the buckle groove and the positioning groove; the other side of the connecting profile is connected with an integrally formed extension part, and a T-shaped hanger is vertically fixed on the top end of the extension part; the decorative panel comprises a lower panel, a side panel connected to one end of the lower panel and having a length capable of being matched with the connecting profile, and a buckle connected to the inner side of the upper part of the side panel and capable of being matched with the buckle groove; one end of the lower panel is clamped with the adjacent side of the suspended platform.

[0011] Further, the hidden light strip assembly further comprises an upper hanging profile, the lower part of the upper hanging profile is provided with a buckle capable of being clamped with the T-shaped hanger, and the upper part of the upper hanging profile is provided with a transverse fixing piece; a suspension keel is arranged above the upper hanging profile and hung on the top of the wall, and the transverse fixing piece is fixed with the lower end of the corresponding suspension keel.

[0012] Further, the top equipment belt comprises an equipment belt base and a plurality of bunching pieces, the upper surface of the equipment belt base is provided with a plurality of integrally formed and equidistantly arranged vertical plastic pieces, and the top end of each vertical plastic piece is provided with a ring-shaped clamping groove; the bunching piece comprises a bunching ring strip and a fixing ring strip matching the ring-shaped clamping groove in size, and the fixing ring strip and the bunching ring strip are connected together through a connecting sheet, and the bunching ring strip is internally provided with a wire through groove; and the bunching piece can be connected to any vertical plastic piece through the clamping connection of the fixing ring strip and the ring-shaped clamping groove.

[0013] Further, the equipment belt base is provided with a fixing block at both ends, the top end of the fixing block is provided with a clamping groove, the side surface of the hanging platform is provided with a clamping strip matching the clamping groove, and the equipment belt base is connected between the hanging platforms through the clamping connection of the clamping strip and the clamping groove.

[0014] Compared with the prior art, the utility model has the following advantages and effects:

[0015] The structure is scientific, the actual construction operation is convenient, and the overall high strength can be realized through the combination of different types of structures of the keel partition wall. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural schematic view of the utility model embodiment.

[0017] Figure 2 It is an A part enlarged view of Figure 1

[0018] Figure 3 It is a B part enlarged view of Figure 1

[0019] Figure 4 It is a C part enlarged view of Figure 1

[0020] Figure 5 It is a D part enlarged view of Figure 1

[0021] Figure 6 It is an E part enlarged view of Figure 1

[0022] Figure 7 It is a structural schematic view of the top equipment belt in the embodiment.

[0023] Figure 8 It is a structural schematic view of the equipment belt base in the embodiment.

[0024] Figure 9 It is a structural schematic view of the bunching piece in the embodiment.

[0025] ​​​​​The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiments of the application and together with the description serve to explain the application. DETAILED DESCRIPTION

[0026] In order to make the above-mentioned purposes, features and advantages of the utility model more obvious and easy to understand, the specific embodiments of the utility model are described in detail below with reference to the drawings.

[0027] Embodiment

[0028] As Figures 1-6 shown, the embodiment includes a first keel structure 1 arranged on the surface of a load-bearing wall, a second keel structure 2 arranged on the side of a steel partition wall away from the load-bearing wall, and a suspended ceiling structure 3 connected between the first keel structure 1 and the second keel structure 2 and located below the top of the wall. The first keel structure 1 includes a leveling wooden keel 11 attached to the surface of the load-bearing wall and an ice fire plate 12 arranged parallel to the outside of the leveling wooden keel 11, and there is a gap between the leveling wooden keel 11 and the ice fire plate 12. A plurality of first connecting structures are arranged in the gap at equal intervals, and the first connecting structures connect and fix the leveling wooden keel 11 and the ice fire plate 12. The first connecting structure includes an aluminum alloy horizontal keel 13 and a stainless steel fitting 14. The aluminum alloy horizontal keel 13 includes a limiting base 15 capable of being clamped in the ice fire plate 12 and a clamping hook 16 connected to the limiting base 15 and bent into shape. The stainless steel fitting 14 includes a fitting base 17 fixed on the leveling wooden keel 11 and an extension end 18 connected to the fitting base 17 and matched with the clamping hook 16. Specifically, when the aluminum alloy horizontal keel 13 is clamped in the ice fire plate 12, the clamping hook 16 is exposed between the leveling wooden keel 11 and the ice fire plate 12, and the corresponding stainless steel fitting 14 is inserted into the clamping hook 16 through the extension end 18 to form clamping. The lower part of the ice fire plate 12 is connected with an L-shaped aluminum alloy skirting 4, the top end of the L-shaped aluminum alloy skirting 4 at this position abuts against the lower part of the ice fire plate 12, the inner side of the L-shaped aluminum alloy skirting 4 is attached to the leveling wooden keel 11, and the bottom surface of the L-shaped aluminum alloy skirting 4 is attached to the ground.

[0029] As Figures 1-6As shown, the second keel structure 2 includes a main keel 21 attached to the steel partition wall away from the load-bearing wall, an aluminum rock plate 22 arranged parallel to the main keel 21 away from the load-bearing wall, a ceiling- floor keel 23 arranged at the bottom of the main keel 21 and fixed to the ground through an adjusting screw 26, and an adjustable foot 24 threadedly connected to the adjusting screw 26. The adjustable foot 24 is fixedly connected to the bottom of the main keel 21. Specifically, by rotating the adjustable foot 24, the height of the adjustable foot 24 relative to the adjusting screw 26 changes, thereby changing the height of the column and the main keel 21. The top of the steel partition wall is provided with a wooden beam 25 fixed to the top of the wall. The wooden beam 25 and the top of the steel partition wall are provided with a ceiling- floor keel 23 fixed by an adjusting screw 26. The adjusting screw 26 is threadedly connected to an adjustable foot 24 fixedly connected to the top of the main keel 21. The adjustable foot 24 has a similar function to the adjustable foot 24 located below the main keel 21. The lower part of the steel partition wall is connected to an L-shaped aluminum alloy skirting 4. The top end of the L-shaped aluminum alloy skirting 4 at this position abuts against the lower part of the steel partition wall. The inner side of the L-shaped aluminum alloy skirting 4 is attached to the main keel 21. The bottom surface of the L-shaped aluminum alloy skirting 4 is attached to the ground. In this embodiment, a fastening groove 20 is arranged in the main keel 21 to increase the overall strength of the main keel 21.

[0030] As Figures 1-9As shown, the ceiling structure 3 includes three device belt assemblies and a set of hidden light belt assemblies, and the first device belt assembly, the second device belt assembly, the first hidden light belt assembly, the third device belt assembly and the second hidden light belt assembly are sequentially arranged from the first joist structure 1 to the second joist structure 2, and are connected by the decorative plates, the first device belt assembly is connected by the decorative plate between the first joist structure 1, and the second hidden light belt assembly is connected by the decorative plate between the second joist structure 2. The device belt assembly includes two hanging joists 31 hung on the wall top, and the hanging joists 31 are connected with the hanging tables 32 at the lower end, and the hanging tables 32 are clamped with the top device belt. The top device belt includes a device belt base 33 and nine cluster pieces 34, and the upper surface of the device belt base 33 is provided with nine vertical plastic parts 35 which are integrally formed and equidistantly arranged, and the top end of the vertical plastic part 35 is provided with a ring-shaped clamping groove 36. The cluster piece 34 includes a cluster ring 37 and a fixed ring 38 which is matched with the ring-shaped clamping groove 36 in size, that is, the fixed ring 38 can be clamped in the ring-shaped clamping groove 36. The fixed ring 38 and the cluster ring 37 are connected together by the connecting piece, and the cluster ring 37 is provided with a wire through groove 39 which is used for passing the wire and the like. The cluster piece 34 can be clamped and connected on the vertical plastic part 35 by the cooperation of the fixed ring 38 and the ring-shaped clamping groove 36, and each cluster piece 34 can pass the cluster wire and the like by the cluster ring 37. The device belt base 33 is provided with a fixed block 310 at both ends, and the top end of the fixed block 310 is provided with a clamping groove 311, and the side surface of the hanging table 32 is provided with a clamping strip 312 which is matched with the clamping groove 311, and the device belt base 33 is clamped and connected between the hanging tables 32 by the clamping strip 312 and the clamping groove 311. The cluster piece 34 can be used for passing the corresponding line and plays a role of cluster. When it is needed to view, repair and replace the corresponding line, the corresponding cluster piece 34 can be taken down for operation.

[0031] As Figures 1-7 , Figure 9As shown, the hidden light strip assembly is symmetrically arranged on both sides of the top device strip, and the hidden light strip assembly comprises an upper hanging profile 313, a connecting profile 314 and a decorative panel 315. The lower part of the upper hanging profile 313 is provided with a buckle 316, and the upper part of the upper hanging profile 313 is provided with a transverse fixing piece 317. The upper part of the upper hanging profile 313 is provided with a hanging furring 31 hung on the top of the wall, and the transverse fixing piece 317 is fixed with the lower end of the corresponding hanging furring 31. The connecting profile 314 is provided with an integrally formed buckle groove 318 on one side of the upper part, and is provided with a positioning groove 319 on the other side of the upper part, and is further provided with a lamp groove 320 between the buckle groove 318 and the positioning groove 319. The connecting profile 314 is connected with an integrally formed extension 321 on the other side, and the extension 321 is vertically fixed with a T-shaped hanging piece 322 at the top end. The T-shaped hanging piece 322 can be clamped with the buckle 316 to form a fixed state, specifically, the connecting profile 314 is fixed on the lower part of the upper hanging profile 313 through the cooperation of the T-shaped hanging piece 322 and the buckle 316. The positioning groove 319 is used for clamping or fixing with the lower part of the longitudinal decorative plate, so that the connecting profile 314 maintains a stable structure state, and the lamp groove 320 is used for installing the light strip, and sufficient space can accommodate the circuit, so that the whole suspended ceiling structure 3 maintains the appearance.

[0032] As shown in the drawings, Figures 1-6 The decorative panel 315 comprises a lower panel 323, a side panel 324 connected to one end of the lower panel 323 and having a length capable of cooperating with the connecting profile 314, and a buckle 325 connected to the inner side of the upper part of the side panel 324 and capable of cooperating with the buckle groove 318. The decorative panel 315 can be hung on the connecting profile 314 by a simple mounting method, and in this state, the buckle 325 abuts in the buckle groove 318, and the buckle 325 and the side panel 324 can be fixed by screwing or other fixing methods to enhance the fixing effect. The lower panel 323 is clamped with the side surface of the adjacent hanging platform 32 at one end.

[0033] The above described in the specification of the present application is only an example of the present application. Those skilled in the art of the present application can make various modifications or supplements or use similar ways to replace the described specific embodiments, as long as they do not deviate from the content of the specification of the present application or exceed the scope defined by the claims, and should belong to the protection scope of the present application.

Claims

1. A high strength stud partition system comprising a first stud structure disposed on a surface of a load bearing wall, a second stud structure disposed on a side of a steel partition remote from the load bearing wall and a ceiling structure connected between the first and second stud structures, characterised in that: The first keel structure comprises a leveling wooden keel attached to the surface of the load-bearing wall, a fire plate arranged in parallel outside the leveling wooden keel, and a first connecting structure arranged between the leveling wooden keel and the fire plate to connect them together. The second keel structure comprises a main keel attached to the side of the steel partition wall away from the load-bearing wall, an aluminum rock plate arranged in parallel on the side of the main keel away from the load-bearing wall, a heaven-and-earth keel arranged at the bottom of the main keel and fixed to the ground through an adjusting screw, and an adjustable foot threadedly connected to the adjusting screw and fixed to the bottom of the main keel. The suspended ceiling structure comprises a plurality of equipment belt assemblies, each of which comprises two suspension keels hung on the top of the wall, and a hanging platform connected to the lower ends of the suspension keels and having a top equipment belt arranged thereon. The adjacent equipment belt assemblies are connected by a decorative plate, and the equipment belt assemblies, the steel partition wall and the fire plate are connected by the decorative plate.

2. The high strength stud wall system of claim 1, wherein: The first connecting structure comprises an aluminum alloy horizontal keel and a stainless steel fitting, the aluminum alloy horizontal keel comprises a limiting base capable of being clamped in the fire plate and a clamping hook connected to the limiting base and bent and formed, and the stainless steel fitting comprises a fitting base fixed to the leveling wooden keel and an extended end connected to the fitting base and matched with the clamping hook. When the aluminum alloy horizontal keel is clamped in the fire plate, the clamping hook is exposed between the leveling wooden keel and the fire plate, and the corresponding stainless steel fitting is inserted into the clamping hook through the extended end to form clamping.

3. The high strength stud wall system of claim 1, wherein: The lower part of the fire plate is connected with an L-shaped aluminum alloy skirting, the top end of the L-shaped aluminum alloy skirting abuts against the lower part of the fire plate, the inner side of the L-shaped aluminum alloy skirting is attached to the leveling wooden keel, and the bottom surface of the L-shaped aluminum alloy skirting is attached to the ground.

4. The high strength stud wall system of claim 1, wherein: The lower part of the steel partition wall is connected with an L-shaped aluminum alloy skirting, the top end of the L-shaped aluminum alloy skirting abuts against the lower part of the steel partition wall, the inner side of the L-shaped aluminum alloy skirting is attached to the main keel, and the bottom surface of the L-shaped aluminum alloy skirting is attached to the ground.

5. The high strength stud wall system of claim 1, wherein: The top of the steel partition wall is provided with a wooden beam fixed to the top of the wall, a heaven-and-earth keel is arranged between the top of the steel partition wall and the wooden beam and fixed to the ground through an adjusting screw, and an adjustable foot is threadedly connected to the adjusting screw and fixed to the top of the main keel.

6. The high strength stud wall system of claim 1, wherein: The suspended ceiling structure further comprises at least one set of hidden light strip assembly, the hidden light strip assembly is symmetrically arranged on both sides of the top equipment belt, and the hidden light strip assembly comprises a connecting profile and a decorative panel which are capable of being installed together, a buckle groove is integrally formed on one side of the upper part of the connecting profile, a positioning groove is arranged on the other side of the upper part of the connecting profile, and a lamp groove is further arranged between the buckle groove and the positioning groove; an extended part is integrally formed on the other side of the connecting profile, and a T-shaped hanger is vertically fixed to the top end of the extended part; The decorative panel comprises a lower panel and a side panel connected to one end of the lower panel and having a length capable of being matched with the connecting profile, and a buckle is connected to the inner side of the upper part of the side panel and capable of being matched with the buckle groove; One end of the lower panel is clamped with the side of the adjacent hanging platform.

7. The high strength stud wall system of claim 6, wherein: The hidden light strip assembly further comprises an upper hanging profile, the upper hanging profile is provided with a buckle capable of being matched and clamped with the T-shaped hanger, and the upper hanging profile is provided with a horizontal fixing piece. The upper hanging profile is provided with a hanging keel hung on the top of the wall, and the horizontal fixing member is fixed with the lower end of the corresponding hanging keel.

8. The high strength stud wall system of claim 1, wherein: The top equipment belt comprises an equipment belt base and a plurality of bundling members, and the upper surface of the equipment belt base is provided with a plurality of integrally formed vertical plastic members arranged at equal intervals, and the top end of each vertical plastic member is provided with a ring-shaped clamping groove. The bundling member comprises a bundling ring strip and a fixing ring strip matched with the ring-shaped clamping groove, and the fixing ring strip and the bundling ring strip are connected together through a connecting sheet, and a wire through groove is formed in the bundling ring strip. The bundling member can be connected to any vertical plastic member through the clamping connection of the fixing ring strip and the ring-shaped clamping groove.

9. The high strength stud wall system of claim 8, wherein: The both ends of the equipment belt base are provided with fixing blocks, and the top end of each fixing block is provided with a clamping groove. The side surface of the hanging platform is provided with a clamping strip matched with the clamping groove, and the equipment belt base is connected between the hanging platforms through the clamping connection of the clamping strip and the clamping groove.