A non-load-bearing partition wall structure facilitating assembly of fire-resistant glass
Patent Information
- Application Number
- CN202521725829.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-14
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-08-14
AI Technical Summary
[0004]针对以上问题,本实用新型的目的在于:提供一种便于组装防火玻璃的非承重隔墙结构,解决现有非承重防火玻璃隔墙在组装时,由于多采用轻型骨架固定,骨架型号一般固定,需要与玻璃完全契合,这对玻璃的裁切加工要求比较严格,且在安装时,往往需要先在骨架上反复调整玻璃的位置,不仅安装较为麻烦,且容易出现安装误差和缝隙不均的问题
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Figure CN224741818U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of non-load-bearing partition wall technology, specifically relating to a non-load-bearing partition wall structure that facilitates the assembly of fireproof glass. Background Technology
[0002] Non-load-bearing partition walls are mainly used in indoor public spaces, corridors, conference rooms, and other similar locations, serving to divide space, provide fire protection and insulation, and offer safety protection. Unlike traditional load-bearing walls, this structure does not bear the load of the building's main structure. Its core function lies in achieving rapid installation, stable fixation, and convenient replacement and maintenance through a reasonable combination of a frame, fasteners, and fire-resistant glass panels. Typically, during construction, a lightweight frame is first installed on the floor, walls, and ceiling. Then, the fire-resistant glass is embedded within the frame and sealed and fixed using pressure strips and adhesive strips.
[0003] Currently, non-load-bearing fireproof glass partitions often use lightweight frames for fixation during assembly. These frames are typically fixed in size and require a perfect fit with the glass, placing strict demands on glass cutting and processing. Furthermore, installation often involves repeated adjustments to the glass position on the frame, making installation cumbersome and prone to errors and uneven gaps. Especially when assembling large areas of glass, even minor installation and dimensional deviations can be magnified in the overall appearance, severely impacting the partition's aesthetics and sealing. In addition, to enhance aesthetics, many frames now use narrow frames with simple pressure strips or adhesive strips for fixation, resulting in insufficient strength to secure the glass. Therefore, the glass is susceptible to loosening or even detachment due to vibration, impact, or thermal expansion and contraction, posing a safety hazard. Utility Model Content
[0004] To address the above problems, the purpose of this utility model is to provide a non-load-bearing partition wall structure that facilitates the assembly of fireproof glass. This solves the problem that existing non-load-bearing fireproof glass partition walls often use lightweight frames for fixing during assembly. These frames are typically fixed in size and require a perfect fit with the glass, which places strict demands on glass cutting and processing. Furthermore, during installation, the glass position often needs to be repeatedly adjusted on the frame, making installation cumbersome and prone to errors and uneven gaps. Especially when assembling large areas of glass, even minor installation and dimensional deviations can be magnified in the overall effect, severely impacting the aesthetics and sealing of the partition wall. In addition, to enhance aesthetics, many frames now use narrow frames with simple pressure strips or adhesive strips for fixing, resulting in insufficient fixing strength to the glass. Therefore, the glass is prone to loosening or even falling off due to vibration, impact, or thermal expansion and contraction, posing a certain safety hazard.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a non-load-bearing partition wall structure for easy assembly of fireproof glass, comprising a non-load-bearing wall, an installation window on the side of the non-load-bearing wall, fireproof glass disposed at the center of the inner side of the installation window, and frames on both sides of the fireproof glass, with the fireproof glass sandwiched between the frames. A retaining frame is provided on each side of the frames that are far apart from each other. Each frame includes a frame body, rubber pads, an insertion interface, a fixing plate, a metal sheet, and a metal retaining ring. The frame body is a concave sheet metal frame structure with an inner opening. The frame body is fixed to the inner side of the installation window by rivets or adhesive bonding. Rubber pads are adhered to the side of the frame body closest to it, and the rubber pads are pressed tightly between the frame body and the space between the frames.
[0006] The beneficial effects of this utility model are as follows: During installation, the requirements for the cutting and processing of the glass are relatively low. It is only necessary to ensure that the four sides of the fireproof glass are within the clamping range of the frame. During installation, there is no need to repeatedly adjust the position of the glass. The frame can completely clamp the two sides of the fireproof glass. The installation is quick and simple, with a high error tolerance rate. It is not easy to have uneven gaps. The clamping stability is higher, and it can also achieve better sealing.
[0007] To ensure the baffle is fixed to the outside of the frame; As a further improvement to the above technical solution: metal buckles are uniformly fixedly arranged on the side of the baffle close to the frame body. The side of the frame body is provided with insertion interfaces corresponding to the metal buckles. Fixing plates are fixedly arranged on both sides of the inner side of the frame corresponding to the insertion interfaces. The sides of the fixing plates are provided with through slots. Metal pieces are fixedly arranged on the inner side of the slots. The side of the metal pieces close to the baffle is integrated with the fixing plate. The side of the metal pieces away from the baffle is the movable side. Metal retaining rings are fixedly arranged on the sides of the metal pieces that are close to each other. The metal buckles are inserted between the fixing plates through the insertion interfaces. Both sides of the metal buckles are engaged with the metal retaining rings.
[0008] The beneficial effects of this improvement are as follows: the baffles are attached to the outside of the frame, the metal buckles are inserted between the fixing plates through the plug interface, and then both sides of the metal buckles are engaged with the metal clips, so that the baffles are fixed to the outside of the frame.
[0009] In order to completely cover the frame; As a further improvement to the above technical solution: an embedded frame is fixedly provided on the side of the baffle frame near the clamping frame. The embedded frame is fitted to the inner frame surface of the frame body, the embedded frame covers the inner opening of the frame body, and the embedded frame is pressed against the side of the fireproof glass.
[0010] The beneficial effects of this improvement are: the embedded frame will press against the outer side of the fireproof glass and completely cover the frame.
[0011] To enhance sealing and aesthetics; As a further improvement to the above technical solution: the joint between the embedded frame and the fireproof glass is filled with sealant.
[0012] The beneficial effects of this improvement are: it can fill and cover seams, increasing sealing and decorative properties.
[0013] To enhance sound insulation and heat insulation; As a further improvement to the above technical solution: the fireproof glass is a multi-layered laminated glass.
[0014] The beneficial effects of this improvement are: increased sound insulation and heat insulation.
[0015] To improve the flame retardant properties of non-load-bearing walls; As a further improvement to the above technical solution: the inner side of the non-load-bearing wall is provided with a cavity, and the inner side of the cavity is filled with flame-retardant particles.
[0016] The beneficial effect of this improvement is that it can increase the overall flame retardant effect of non-load-bearing walls.
[0017] In summary, the beneficial effects of this technical solution are as follows: Fire-resistant glass is held in place by a frame installed inside a non-load-bearing wall. The rubber pads of the frame press firmly against both sides of the glass, reducing the precision requirements for glass cutting and processing. Installation eliminates the need for repeated position adjustments, resulting in a high error tolerance rate and excellent stability and sealing. The retaining frame is quickly fixed by inserting metal buckles into the frame's insertion interface and engaging with the metal clips of the fixing plate. The embedded frame fits snugly against the inner frame surface and presses against the glass sides, completely concealing the frame opening. Sealant is used to fill the joints, improving both sealing and aesthetics. The multi-layered laminated glass enhances sound and heat insulation, while the flame-retardant particles filling the cavity within the non-load-bearing wall improve overall flame-retardant performance. This comprehensive approach achieves convenient assembly, stable clamping, sealing decoration, and safety protection functions for the fire-resistant glass partition wall.
[0018] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 ; Figure 2 This is a schematic diagram of the structure of the present invention. Figure 2 ; Figure 3 This is a schematic diagram of the frame structure in this utility model; Figure 4 This is a schematic diagram of the structure of the middle baffle frame of this utility model; Figure 5This is a schematic diagram of the structural connection between the fireproof glass and the frame in this utility model; Figure 6 This is an enlarged view of a portion of the connection structure between the middle baffle frame and the clamping frame of this utility model; Figure 7 This is a cross-sectional view of the inner structure of the non-load-bearing wall in this utility model; In the diagram: 1. Non-load-bearing wall; 11. Flame-retardant particles; 2. Window installation; 3. Frame; 31. Frame body; 32. Rubber pad; 33. Insertion interface; 34. Fixing plate; 35. Metal sheet; 36. Metal clip; 4. Fireproof glass; 5. Retaining frame; 51. Metal buckle; 52. Embedded frame. Detailed Implementation
[0020] To enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be described in detail below with reference to the accompanying drawings. The description in this part is only exemplary and explanatory, and should not be used to limit the scope of protection of the present invention in any way.
[0021] like Figure 1 — Figure 7As shown: A non-load-bearing partition wall structure for easy assembly of fire-resistant glass includes a non-load-bearing wall 1. An installation window 2 is provided on the side of the non-load-bearing wall 1. A fire-resistant glass 4 is disposed at the center of the inner side of the installation window 2. Frames 3 are provided on both sides of the fire-resistant glass 4, and the fire-resistant glass 4 is sandwiched between the frames 3. A retaining frame 5 is provided on each side of the frames 3 that are far apart from each other. Each frame 3 includes a frame body 31, a rubber pad 32, an insertion interface 33, a fixing plate 34, a metal sheet 35, and a metal retaining ring 36. The frame body 31 is a concave sheet metal frame structure with an inner opening. The frame body 31 is fixed to the inner side of the installation window 2 by riveting or adhesive bonding. The fire-resistant glass 4 is disposed between the frames 31, with the frames 31 close to the fire-resistant glass 4. Rubber pads 32 are adhered to one side of the frame 31 and the fireproof glass 4. The rubber pads 32 are pressed between the frame 31 and the fireproof glass 4. During installation, the requirements for the glass cutting and processing are relatively low; it is only necessary to ensure that all four sides of the fireproof glass 4 are within the clamping range of the frame 31. Furthermore, during installation, there is no need to repeatedly adjust the glass position; the frame 31 can completely clamp both sides of the fireproof glass 4. Installation is quick and simple, with a high error tolerance rate, and is less prone to uneven gaps. The clamping stability is also higher, providing better sealing. Metal buckles 51 are evenly fixed on the side of the frame 5 near the frame 31. The side of the frame 31 has insertion interfaces 33 corresponding to the metal buckles 51, and the inner side of the frame 31 has corresponding insertion interfaces. Fixing plates 34 are fixedly installed on both sides of the frame 33. Each fixing plate 34 has a through-hole on its side. A metal sheet 35 is fixedly installed inside each slot. The side of the metal sheet 35 closest to the frame 5 is integrated with the fixing plate 34. The side of the metal sheet 35 furthest from the frame 5 is the movable side. Metal retaining rings 36 are fixedly installed on the sides of the metal sheets 35 that are close to each other. Metal buckles 51 are inserted between the fixing plates 34 through insertion interfaces 33. Both sides of the metal buckles 51 engage with the metal retaining rings 36. The frame 5 is then attached to the outside of the frame 31. The metal buckles 51 are inserted between the fixing plates 34 through insertion interfaces 33, and then both sides of the metal buckles 51 engage with the metal retaining rings 36, thus fixing the frame 5 to the frame. On the outer side of 31, an embedded frame 52 is fixedly installed on the side of the baffle 5 near the clamping frame 3. The embedded frame 52 is set to fit against the inner frame surface of the frame 31. The embedded frame 52 covers the inner opening of the frame 31. The embedded frame 52 is pressed against the side of the fireproof glass 4. The embedded frame 52 will press against the outer side of the fireproof glass 4 and completely cover the frame 31. The joint between the embedded frame 52 and the fireproof glass 4 is filled with sealant, which can fill and cover the seam, increase the sealing and decoration. The fireproof glass 4 is a multi-layer laminated glass, which increases the sound insulation and heat insulation effect. A cavity is opened on the inner side of the non-load-bearing wall 1. The inner side of the cavity is filled with flame-retardant particles 11, which can increase the overall flame-retardant effect of the non-load-bearing wall 1.
[0022] Working principle and usage process of this utility model: In use, the non-load-bearing wall 1 does not function as a load-bearing wall and is generally a prefabricated assembly type wall. It can be installed in a conventional way, that is, in the early stage of decoration, it is clamped to the ground and roof with an alloy frame. Since the alloy frame will be covered by floor tiles and ceiling decoration later, the non-load-bearing wall 1 is generally not removed. The fireproof glass 4 on its inner side is generally assembled in the later stage of decoration. Currently, the frame is usually fixed inside the window 2, and the fireproof glass 4 is embedded in the frame for fixation. This raises the issue raised in the background section. In this technical solution, after the non-load-bearing wall 1 is installed in a conventional way, when installing the fireproof glass 4 later, one side of the frame 31 is first fixed inside the window 2. It can be fixed by adhesive or by fixing it inside the opening of the frame 31. After securing the fireproof glass 4 with rivets and other structural fasteners, insert the fireproof glass 4 from the other side, followed by the frame 31 on the other side. Ensure that the rubber pads 32 on both sides are pressed tightly against the fireproof glass 4 before fixing the frame 31 on the side to be installed. The two frames 31 clamping the fireproof glass 4 will fix the fireproof glass 4 inside the installation window 2. Then, attach the baffle 5 to the outside of the frame 31. Insert the metal buckle 51 between the fixing plates 34 through the insertion interface 33. Then, both sides of the metal buckle 51 are engaged with the metal clips 36, fixing the baffle 5 to the outside of the frame 31. The embedded frame 52 will press against the outer side of the fireproof glass 4 and completely cover the frame 31. Then, squeeze out sealant lines along the joint between the embedded frame 52 and the fireproof glass 4 for filling and decoration.
[0023] During the above installation, the requirements for the cutting and processing of the glass are relatively low. It is only necessary to ensure that all four sides of the fireproof glass 4 are within the clamping range of the frame 31. Moreover, during installation, there is no need to repeatedly adjust the position of the glass. The frame 31 can completely clamp both sides of the fireproof glass 4. The installation is quick and simple, with a high error tolerance rate and less likelihood of uneven gaps. The clamping stability is also higher, and it can also provide better sealing. In addition, the baffle 5 can completely cover the frame 31. The baffle 5 can be painted the same color as the non-load-bearing wall 1, which means that the exposed part of the fireproof glass 4 is a frameless design, increasing the aesthetics.
[0024] It should be noted that when installing the frame 31, space needs to be left on both sides of the installation window 2 for the installation of the retaining frame 5, so that the retaining frame 5 can be flush with the wall surface of the non-load-bearing wall 1 after installation.
[0025] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Specific examples have been used in this document to illustrate the principles and implementation methods of the invention; these examples are merely for the purpose of helping to understand the method and core ideas of the invention. The above descriptions are only preferred embodiments of the invention. It should be pointed out that, due to the limitations of written expression, there are objectively infinite specific structures. For those skilled in the art, several improvements, modifications, or variations can be made without departing from the principles of the invention, and the above technical features can be combined in an appropriate manner. These improvements, modifications, variations, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of this invention.
Claims
1. A non-load-bearing partition wall structure for easy assembly of fire-resistant glass, characterized in that: The system includes a non-load-bearing wall (1), with an installation window (2) on the side of the non-load-bearing wall (1). A fireproof glass (4) is installed at the center of the inner side of the installation window (2). A frame (3) is installed on both sides of the fireproof glass (4). The fireproof glass (4) is sandwiched between the frames (3). A baffle (5) is installed on the side of each frame (3) that is far apart from each other. The frame (3) includes a frame body (31), a rubber pad (32), an insertion interface (33), and a fixing plate (3). 4) Metal sheet (35) and metal clip (36), the frame (31) is a concave sheet metal frame structure with an inner opening, the frame (31) is fixed to the inner side of the installation window (2) by rivets or glue, the fireproof glass (4) is set between the frames (31), and rubber pads (32) are glued to the side of the frame (31) near the fireproof glass (4), and the rubber pads (32) are pressed between the frame (31) and the fireproof glass (4).
2. A non-load bearing partition wall structure of fire resistant glazing for ease of assembly as claimed in claim 1 wherein: Metal buckles (51) are uniformly fixed on one side of the frame (5) near the frame (31). The side of the frame (31) is provided with insertion interfaces (33) corresponding to the metal buckles (51). Fixing plates (34) are fixed on both sides of the inner side of the frame (31) corresponding to the insertion interfaces (33). The side of the fixing plates (34) is provided with through slots. Metal pieces (35) are fixed on the inner side of the slots. The side of the metal pieces (35) near the frame (5) is integrated with the fixing plates (34). The side of the metal pieces (35) away from the frame (5) is the movable side. Metal retaining rings (36) are fixed on the side of the metal pieces (35) that are close to each other. The metal buckles (51) are inserted between the fixing plates (34) through the insertion interfaces (33). Both sides of the metal buckles (51) are engaged with the metal retaining rings (36).
3. A non-load bearing partition wall structure of fire resistant glazing for ease of assembly as claimed in claim 1 wherein: An embedded frame (52) is fixedly provided on the side of the baffle (5) near the clamping frame (3). The embedded frame (52) is fitted to the inner frame surface of the frame (31). The embedded frame (52) covers the inner opening of the frame (31). The embedded frame (52) is pressed against the side of the fireproof glass (4).
4. A non-load bearing partition wall structure incorporating fire resistant glazing according to claim 3, wherein: The sealant is used to fill the joint between the embedded frame (52) and the fireproof glass (4).
5. A non-load bearing partition wall structure of fire resistant glazing assembly convenience according to claim 1, characterized in that: The fireproof glass (4) is a multi-layered laminated glass.
6. A non-load bearing partition wall structure of fire resistant glazing assembly convenience according to claim 1, characterized in that: The non-load-bearing wall (1) has a cavity on its inner side, and the inner side of the cavity is filled with flame-retardant particles (11).