Partition wallboard connecting seat

By attaching reinforcement plates to the stainless steel side plates of the partition wall connecting seat and connecting them with connectors, the problem of side wall deformation after grouting is solved, reducing production costs and improving product strength and aesthetics.

CN223003579UActive Publication Date: 2025-06-20JIANGSU AIPIN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422120091.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-06-20
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The existing partition wall panel connecting seats have deformed side walls due to the expansion, shrinkage and gravity of the concrete after grouting, which affects the aesthetics. In order to solve this problem, a large number of rib plates are needed to be installed inside the base, resulting in high production costs and material costs.

Method used

Reinforcement plates are attached to the side walls of the left and right side panels of the stainless steel, and the two side panels are connected by a plurality of vertically arranged plate connectors. The two ends of the connectors are respectively arranged at the joints of the reinforcement plates to improve the strength of the side walls and reduce the use of the reinforcement plates.

Benefits of technology

By strengthening the adhesion of the plate and setting of the connectors, the side wall strength of the partition wall panel connection seat is improved, the number of internal reinforcement plates is reduced, the production cost is reduced, and the concrete fluidity is improved.

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Abstract

The utility model relates to a partition wall plate connecting seat which comprises a stainless steel left side plate, a stainless steel right side plate and a connecting piece used for connecting the stainless steel left side plate and the stainless steel right side plate, and the stainless steel left side plate and the stainless steel right side plate are oppositely arranged. Reinforcing plates are attached to the opposite side walls of the stainless steel left side plate and the stainless steel right side plate respectively, the multiple connecting pieces are distributed between the stainless steel left side plate and the stainless steel right side plate in a dispersed mode, one end of any connecting piece is connected with the stainless steel left side plate, and the other end of any connecting piece is connected with the stainless steel right side plate. The technical problem that the product cost is high due to the fact that rib plates need to be arranged in the partition wall plate connecting base in a high-density mode can be solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of building decoration, and particularly relates to a partition wall panel connecting seat. Background Art

[0002] The partition wall panel connecting seat is an infrastructure for connecting and supporting partition wall panels, and its stability directly affects the stability of the partition wall panels. Conventional partition wall panel connecting seats are usually made of aluminum-plastic profiles. Such profiles usually have a closed inner cavity, making it difficult to grout the inside. They are only fixed to the ground with bolts, resulting in insufficient connection strength between the base and the ground.

[0003] This year, we launched a stainless-steel partition wall panel base to replace the traditional aluminum-plastic profile base. The stainless-steel partition wall panel connecting seat is made by sheet metal processing. Therefore, a grouting channel is reserved in the structure, enabling grouting inside the base after installation to improve the connection strength between the base and the ground and the overall strength of the base itself. However, in actual applications, we found that due to the expansion, contraction during the curing process of the concrete after grouting and the self-weight of the concrete, the side plates on both sides of the partition wall panel connecting seat showed slight deformation problems, resulting in a decline in the aesthetic degree of the final form of the product. To overcome this problem, a large number of dense rib plates need to be connected between the two side plates of the partition wall panel connecting seat. The spacing of the rib plates is about 50 cm. As the height of the partition wall panel connecting seat increases, the spacing of the rib plates needs to be more dense, which will greatly increase the processing cost and material cost of the product, resulting in an increase in the product price and affecting the acceptance degree of the consumer side. Summary of the Utility Model

[0004] The technical problem to be solved by the utility model is to provide a partition wall panel connecting seat to solve the technical problem that high-density rib plates need to be arranged inside the base, resulting in high product costs.

[0005] To solve the above technical problem, the technical solution adopted by the utility model is: a partition wall panel connecting seat, including relatively arranged stainless-steel left side plate, stainless-steel right side plate and a connecting piece for connecting the stainless-steel left side plate and the stainless-steel right side plate. A connecting structure for connecting the partition wall panel is connected to the tops of the stainless-steel left side plate and the stainless-steel right side plate. Reinforcing plates are respectively adhered to the opposite side walls of the stainless-steel left side plate and the stainless-steel right side plate. There are multiple connecting pieces, which are discretely distributed between the stainless-steel left side plate and the stainless-steel right side plate. One end of any connecting piece is connected to the stainless-steel left side plate, and the other end is connected to the stainless-steel right side plate. The connecting piece is a vertically arranged plate, and both ends of any connecting piece are respectively arranged at the butt joint of the reinforcing plates.

[0006] As a preferred solution, through holes are provided on the connecting piece. The through holes are located between the two reinforcing plates, and the connecting piece extends from the upper end to the lower end of the stainless-steel left side plate and the stainless-steel right side plate.

[0007] As a preferred solution, it further includes at least one grounding part, the grounding part is clamped with the lower edges of the two oppositely arranged reinforcing plates, a positioning hole is formed in the middle of the grounding part, and the grounding part is fixedly connected to the ground through a positioning bolt inserted into the positioning hole.

[0008] As a preferred solution, two clamping grooves are provided on the grounding part and are respectively clamped with the lower edges of the two oppositely arranged reinforcing plates, and the lower edges of the two oppositely arranged reinforcing plates are respectively inserted into the corresponding clamping grooves.

[0009] As a preferred solution, the grounding part is formed into a right-angled U-shaped structure by secondary same-direction perpendicular bending of a plate piece. The middle part of the grounding part is attached to the ground, and the two ends are perpendicular to the ground to form insertion pieces, and the two reinforcing plates are respectively inserted into the grounding part.

[0010] As a preferred solution, the reinforcing plates are bonded to both the left stainless steel plate and the right stainless steel plate, and at least one of the two opposite surfaces of the two reinforcing plates is a waterproof surface.

[0011] The beneficial effects of the present utility model are as follows: By respectively attaching reinforcing plates to the opposite side walls of the left stainless steel plate and the right stainless steel plate, the strength of the two side walls of the partition wall panel connecting seat is greatly improved, so that the two side walls can bear greater lateral forces, effectively solving the problem of bulging and deformation of the side walls after grouting inside the partition wall panel connecting seat. In this way, users can reduce the connecting parts arranged inside the base, improve production efficiency, reduce production costs, and at the same time improve the fluidity of the concrete inside the base.

[0012] The present utility model can also realize the function of reducing the thickness of the left stainless steel plate and the right stainless steel plate, thereby reducing the usage amount of stainless steel and further reducing production costs. Description of the Drawings

[0013] The following further details the specific embodiments of the present utility model in conjunction with the drawings, where:

[0014] Figure 1 is a cross-sectional view of the specific structure of the partition wall panel connecting seat described in Embodiment 1 of the present utility model;

[0015] Figure 2 is Figure 1 a schematic diagram of the specific structure of the grounding part shown in

[0016] Figure 3 is Figure 1 another installation structure schematic diagram of the grounding part shown in

[0017] Figure 4 is a schematic diagram of the specific structure of another grounding part;

[0018] Figure 5 Schematic diagram of the specific structure of another grounding part

[0019] Figure 6 It is a schematic diagram of the connection structure directly connecting the connection structure with the left stainless-steel plate and the right stainless-steel plate

[0020] Figures 1 to 6 In the figure: 1. Left stainless-steel plate; 2. Right stainless-steel plate; 3. Partition wall panel; 4. Connection structure; 401. Left side wall; 402. Right side wall; 403. Left bottom plate; 404. Right bottom plate; 5. Reinforcing plate; 6. Connector; 7. Through hole; 8. Grounding part; 9. Positioning hole; 10. Positioning bolt; 11. Card slot; 13. Insert piece; 14. Slot; 15. Connection slot; 16. Grouting port; 17. Inclined panel; 18. Transition section; 19. Embedded section Specific implementation mode

[0021] The following combines with the attached drawings to describe in detail the specific implementation scheme of the present utility model Embodiment 1

[0022] As Figure 1 A partition wall panel connecting seat shown in the figure includes relatively arranged left stainless-steel plate 1, right stainless-steel plate 2 and a connector 6 for connecting the left stainless-steel plate 1 and the right stainless-steel plate 2. A connection structure 4 for connecting the partition wall panel 3 is connected to the tops of the left stainless-steel plate 1 and the right stainless-steel plate 2. Reinforcing plates 5 are respectively adhered to the opposite side walls of the left stainless-steel plate 1 and the right stainless-steel plate 2. There are multiple connectors 6, which are discretely distributed between the left stainless-steel plate 1 and the right stainless-steel plate 2. One end of any connector 6 is connected to the left stainless-steel plate 1, and the other end is connected to the right stainless-steel plate 2

[0023] In this embodiment, the reinforcing plate 5 is connected to the left stainless-steel plate 1 and the reinforcing plate 5 is connected to the right stainless-steel plate 2 in an adhesive form. In order to improve the bonding effect and avoid the negative impact of moisture on the bonding effect, in this embodiment, preferably, the two opposite surfaces of the two reinforcing plates 5 are both set as waterproof surfaces, and the waterproof surface can be a glazed surface or formed by plating a waterproof film

[0024] In practical applications, users can choose to set the two opposite surfaces of the two reinforcing plates 5 as waterproof surfaces or set one of them as a waterproof surface according to the actual use environment of the partition wall panel connecting seat

[0025] As Figure 1As shown in the figure, in this embodiment, the connecting member 6 is a vertically arranged plate. The two ends of any connecting member 6 respectively pass through the joints of two adjacent reinforcing plates 5 and are welded to the stainless steel left plate 1 and the stainless steel right plate 2. A through hole 7 for the circulation of concrete is provided on the connecting member 6. The through hole 7 is located between the two reinforcing plates 5, and the connecting member 6 extends from the upper end to the lower end of the stainless steel left plate 1 and the stainless steel right plate 2.

[0026] The connecting member 6 connects the stainless steel left plate 1 and the stainless steel right plate 2 to form an integral whole, which can not only keep the partition wall connecting seat in a stable form before grouting for the convenience of later grouting, but also ensure the reliable connection between the stainless steel left plate 1, the stainless steel right plate 2 and the reinforcing plate 5, so that even if the stainless steel left plate 1 and the stainless steel right plate 2 are debonded from the reinforcing plate 5, they will not fall off from the reinforcing plate 5.

[0027] As Figure 1 shown in the figure, this embodiment further includes at least one grounding member 8. The grounding member 8 is clamped to the lower edges of two relatively arranged reinforcing plates 5. A positioning hole 9 is provided in the middle of the grounding member. The grounding member 8 is fixedly connected to the ground through a positioning bolt 10 inserted into the positioning hole 9.

[0028] As Figure 2 shown in the figure, the grounding member 8 used in this embodiment is formed by bending a plate twice in the same direction at a right angle to form a right-angled U-shaped structure. The middle part of the grounding member 8 is in contact with the ground, and the two ends are perpendicular to the ground to form insertion pieces 13. The lower ends of two relatively arranged reinforcing plates 5 are respectively inserted into the U-shaped groove of the grounding member 8, and the outer sides of the two reinforcing plates 5 are respectively in contact with the inner side walls of the U-shaped groove of the grounding member 8.

[0029] In practical applications, slots 14 corresponding to the two insertion pieces 13 can also be provided on the bottom surface of the reinforcing plate 5, and the two reinforcing plates 5 can be positioned by being inserted into the corresponding insertion pieces 13. As Figure 3 shown

[0030] The length of the grounding member 8 can be set as required.

[0031] As Figure 1 shown in the figure, a connection groove 15 for inserting the partition wall panel 3 is provided at the top of the connection structure 4 described in this embodiment. A grouting port 16 is provided on the inner bottom surface of the connection groove 15. The grouting port 16 is communicated with the gap between the two reinforcing plates 5. The lower ends of both sides of the connection structure 4 are integrally formed with the tops of the stainless steel left plate 1 and the stainless steel right plate 2. In actual production, the lower ends of both sides of the connection structure 4 can also be connected to the tops of the stainless steel left plate 1 and the stainless steel right plate 2 by welding.

[0032] In this embodiment, it is preferred that both sides of the connecting structure 4 are connected to the stainless steel left side plate 1 and the stainless steel right side plate 2 on the same side through the inclined panels 17 that slope downward and outward. This can widen the distance between the two reinforcing plates 5, increase the thickness of the partition wall panel connecting seat, and further improve the strength and impact resistance of the partition wall panel connecting seat after grouting. Using the inclined panels 17 to connect the connecting structure 4 and the stainless steel left side plate 1 and the stainless steel right side plate 2 can eliminate the right-angle internal corner structure that is prone to dirt accumulation, facilitating the cleaning of the surface of the partition wall panel connecting seat.

[0033] In this embodiment, it is preferred that the upper edge of the connecting member 6 extends upward to abut against the bottom surface of the connecting structure 4 to form a support for the connecting structure 4. The two side edges of the connecting member 6 corresponding to the inclined panels 17 are respectively connected to the two inclined panels 17.

[0034] As Figure 1 shown, the lower edges of the stainless steel left side plate 1 and the stainless steel right side plate 2 in this embodiment both bend downward and outward to form a transition section 18. The transition section 18 bends outward into an arc shape, with the concave arc surface of the transition section 18 facing outward. The lower edge of the reinforcing plate 5 extends to face the transition section 18, forming a free end with a certain length, which is convenient for inserting into the card slot 11 of the grounding member 8.

[0035] The arc-shaped transition section 18 is convenient for cleaning, avoiding the residue of dust and other dirt on the outer surface of the partition wall panel connecting seat and eliminating sanitary dead corners.

[0036] When the lower edges of both the stainless steel left side plate 1 and the stainless steel right side plate 2 are connected with the transition section 18, the lower edge of the connecting member 6 in this embodiment preferably extends downward to be flush with the lower edge of the transition section 18.

[0037] In this embodiment, it is also preferred that an insertion section 19 extending vertically downward is provided at the lower edge of the transition section 18. The insertion section 19 is used to be inserted into the floor to make the lower edge of the transition section 18 smoothly connected to the ground, avoiding water on the ground from seeping into the partition wall panel connecting seat from the bottom of the partition wall panel connecting seat.

[0038] In this embodiment, the reinforcing plates 5 are all composed of spliced tiles. The thickness of the reinforcing plates 5 is 4 mm to 12 mm. The thickness of the reinforcing plates 5 can be adjusted according to the height and thickness of the partition wall panel connecting seat. The thickness of the reinforcing plates 5 is directly proportional to the height and thickness of the partition wall panel connecting seat and inversely proportional to the strength and flexural modulus of the reinforcing plates 5 themselves.

[0039] In practical applications, marble, enamel plate, gypsum board, terrazzo, and glass brick can also be used to replace the tiles.

[0040] Selecting ceramic tiles as the reinforcement plate 5 has many advantages. Firstly, one side of the ceramic tile is a smooth glazed surface with good anti-permeation performance, which can effectively prevent the moisture between the two reinforcement plates 5 from seeping out and affecting the bonding effect between the reinforcement plate 5 and the stainless steel left side plate 1 or the stainless steel right side plate 2. Secondly, the other side of the ceramic tile is originally designed to bond with mortar and concrete. Therefore, after grouting the inside of the partition wall panel connector, the bonding strength between the ceramic tile and the concrete is very good, ensuring that the reinforcement plate 5 will not fall off during later use.

[0041] In this embodiment, the height of the partition wall panel connector is 50 cm - 110 cm. Although the height of the partition wall panel connector is specifically described in this embodiment, in actual applications, the height of the partition wall panel connector can be adjusted between 10 cm and 200 cm (including the end values) according to needs.

[0042] As Figure 3 shown is the second installation structure of the grounding part 8 described in this embodiment. One vertical side wall of the grounding part 8 serves as the insertion piece 13. A slot 14 matching the insertion piece 13 is opened on the bottom surface of one reinforcement plate 5. The reinforcement plate 5 provided with the slot 14 is inserted on the insertion piece 13 of the grounding part 8 and partially inserted into the card slot 11. This special installation structure of the grounding part 8 enables the stainless steel left side plate 1 bonded to the reinforcement plate 5 provided with the slot 14 to extend straight downwards below the reinforcement plate 5.

[0043] In actual applications, there are many other structures for the grounding part 8, such as Figure 4 and Figure 5 shown are all made by bending and welding plate pieces, etc., and can also be made into other shapes by injection molding, die pressing, etc.

[0044] In this embodiment, the positioning bolt 10 is preferably an expansion bolt, which can ensure the connection strength with the ground. In actual applications, the positioning bolt 10 can also be a pre-embedded bolt. The lower end of the pre-embedded bolt is pre-embedded in the ground, and the screw rod section passes through the positioning hole 9 and extends into the partition wall panel connector. After grouting, the concrete wraps the screw rod of the positioning bolt 10 to form a reliable connection. Of course, using nails to replace the positioning bolt 10 can also fix the grounding part 8 on the ground. Using nails to replace the positioning bolt 10 belongs to equivalent replacement.

[0045] The structure of the connecting structure 4 can be diverse. The connecting structure 4 shown in this embodiment 1 specifically includes a left side wall 401 and a right side wall 402 formed by folding and overlapping stainless steel plates, and a connecting groove 15 is formed between the left side wall 401 and the right side wall 402. When the spacing between the left side wall 401 and the right side wall 402 is almost equal to the spacing between the stainless steel left plate 1 and the stainless steel right plate 2, the top surface of the reinforcing plate 5 is just opposite to the connecting groove 15 up and down. At this time, the upper edge of the reinforcing plate 5 can be used as a supporting surface for supporting the bottom surface of the partition wall panel 3, or the lower ends of the left side wall 401 and the right side wall 402 facing each other can be vertically bent toward the center line direction of the partition wall panel connecting seat to form a left bottom plate 403 and a right bottom plate 404 to support the partition wall panel 3. The left bottom plate 403 and the right bottom plate 404 are parallel to each other and have the same height. The left bottom plate 403 and the right bottom plate 404 are preferably set apart, and the gap between the left bottom plate 403 and the right bottom plate 404 forms a grouting port 16. Of course, the user can also connect the left bottom plate 403 and the right bottom plate 404 , but it is necessary to open a grouting port 16 on the left bottom plate 403 and / or the right bottom plate 404 .

[0046] Figure 1 In the technical solution shown, since the distance between the left wall 401 and the right wall 402 is smaller than the distance between the stainless steel left plate 1 and the stainless steel right plate, the two reinforcing plates 5 are located outside the two sides of the connecting groove 15, so the upper edges of the two reinforcing plates 5 cannot be used to support the bottom surface of the partition wall panel 3.

[0047] And as Figure 6 The distance between the left side wall 401 and the right side wall 402 of the connecting structure 4 is almost equal to the distance between the stainless steel left side plate 1 and the stainless steel right side plate 2. It can be seen that the upper edges of the two reinforcing plates 5 are located directly below the connecting groove 15, which can effectively support the bottom surface of the partition wall panel 3. However, in order to improve the flatness of the supporting surface supporting the bottom surface of the partition wall panel 3, Figure 6 In the technical solution shown, the lower ends of the left side wall 401 and the right side wall 402 facing each other are still bent vertically toward the center line direction of the partition wall panel connecting seat to form a left bottom plate 403 and a right bottom plate 404.

[0048] In practical applications, only one side of the connecting structure 4 can be connected to the stainless steel left plate 1 or the stainless steel right plate 2 on the same side through the inclined plate 17 that tilts downward and outward, while the other side extends vertically downward to the top of the stainless steel right plate 2 or the stainless steel left plate 1 and is connected thereto.

[0049] The direction along the length of the partition wall panel connecting seat in the above-mentioned embodiment 1 refers to the laying direction of the partition wall panel connecting seat on the ground.

[0050] The above embodiments merely illustrate the principles and effects of the present invention and some applied embodiments, rather than limiting the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all fall within the protection scope of the present invention.

Claims

1. A partition wall panel connecting seat, comprising a stainless steel left side plate (1), a stainless steel right side plate (2) arranged opposite to each other, and a connecting piece (6) for connecting the stainless steel left side plate (1) and the stainless steel right side plate (2), wherein the top ends of the stainless steel left side plate (1) and the stainless steel right side plate (2) are connected with a connecting structure (4) for connecting the partition wall panel (3), characterized in that: Reinforcing plates (5) are respectively attached to the opposing side walls of the stainless steel left side plate (1) and the stainless steel right side plate (2). There are a plurality of connecting members (6) which are discretely distributed between the stainless steel left side plate (1) and the stainless steel right side plate (2). One end of any connecting member (6) is connected to the stainless steel left side plate (1), and the other end is connected to the stainless steel right side plate (2). The connecting member (6) is a vertically arranged plate, and both ends of any connecting member (6) are respectively arranged at the butt joint of the reinforcing plate (5).

2. The partition wall panel connection seat according to claim 1, characterized in that: A through hole (7) is provided on the connecting piece (6), and the through hole (7) is located between the two reinforcing plates (5). The connecting piece (6) extends from the upper end to the lower end of the stainless steel left plate (1) and the stainless steel right plate (2).

3. The partition wall panel connection seat according to claim 1 or 2, characterized in that: It also comprises at least one grounding member (8), the grounding member (8) being clamped with the lower edges of two oppositely arranged reinforcing plates (5), a positioning hole (9) being provided in the middle of the grounding member, and the grounding member (8) being fixedly connected to the ground via a positioning bolt (10) inserted into the positioning hole (9).

4. The partition wall panel connection seat according to claim 3, characterized in that: The grounding member (8) is provided with two slots (11) respectively engaged with the lower edges of the two oppositely arranged reinforcing plates (5), and the lower edges of the two oppositely arranged reinforcing plates (5) are respectively inserted into the corresponding slots (11).

5. The partition wall panel connection seat according to claim 3, characterized in that: The grounding piece (8) is formed by a plate piece being bent vertically twice in the same direction to form a right-angled U-shaped structure. The middle of the grounding piece (8) is in contact with the ground, and both ends are perpendicular to the ground to form plug-in pieces (13). The two reinforcing plates (5) are respectively plugged into the grounding piece (8).

6. The partition wall panel connection seat according to claim 1, characterized in that: The reinforcing plate (5) is bonded to the stainless steel left side plate (1), and the reinforcing plate (5) is bonded to the stainless steel right side plate (2), and at least one of the two opposite surfaces of the two reinforcing plates (5) is a waterproof surface.