Glass wallboard mounting structure, wallboard assembly and mute cabin
By employing a main frame structure with concave annular mounting grooves and slots in the soundproof chamber, combined with elastic sealing strips and locking components, simple and quick installation and efficient sealing of glass wall panels are achieved, solving the problems of time-consuming and labor-intensive installation and poor sealing in existing soundproof chambers, thus improving the sound insulation effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2026-03-31
AI Technical Summary
The installation of glass wall panels in existing soundproof cabins is time-consuming and labor-intensive, poses a safety hazard of glass breakage, and has poor sealing performance.
The main frame structure with concave annular mounting grooves and slots, combined with elastic first and second sealing strips and axially movable locking elements, achieves double sealing between the glass wall panel and the main frame. The sealing strip pressure is adjusted by the locking elements to enhance the sealing effect.
It improves the efficiency and safety of glass wall panel installation, ensures better sealing performance and sound insulation, and avoids gaps caused by deformation of local sealing strips.
Smart Images

Figure CN121760465A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of soundproof cabin equipment technology, specifically to a glass wall panel installation structure, wall panel assembly, and soundproof cabin. Background Technology
[0002] Soundproof cabins, also known as soundproof office cabins, detached houses, private cabins, small meeting cabins, live streaming cabins, etc., are placed in office areas or public places. They have excellent sound insulation performance and can conveniently allow 1-4 people to gather together for meetings, conversations, emotional expression, video calls, live streaming, etc., without being disturbed by the external environment. The structure of a soundproof cabin in this technology includes a square enclosed cabin body. The four sides of the cabin body are spliced together from wall panel assemblies. The wall panel assembly includes a ring-shaped main frame formed by metal profiles and at least one wall panel unit connected within the main frame. One of the wall panel units is equipped with a door panel that allows entry into the cabin.
[0003] To improve sound insulation and lighting within the soundproof cabin, the wall panel units are typically constructed with at least a portion of glass panels, such as the door panel or the side panels of the door panel. To further enhance sound insulation, the internal glass panels generally employ a double-layer structure, including a frame and glass panels connected to the front and back of the frame, with a soundproof gap between the two panels. During on-site installation, the main frame of the wall panel assembly is first erected. The glass panels are then attached to the main frame, and finally, a rigid rubber strip is pressed into the gap between the glass panels and the main frame to seal it, ensuring excellent sound insulation and sealing performance.
[0004] The aforementioned soundproof cabin technology has the following drawbacks during actual construction or installation: When using rigid rubber strips to seal the gap between the glass wall panel and the main frame, installers need to use pry bars and hammers to gently tap and squeeze the rigid rubber strips into the gap, which is time-consuming, labor-intensive, and poses a safety hazard of glass breakage, resulting in low installation efficiency; in addition, during the process of using external force to squeeze the rigid rubber strips, the rubber strips may deform significantly in some areas, creating gaps that affect their sealing performance. Summary of the Invention
[0005] The technical problem to be solved by this application is to overcome the defects of the above-mentioned related technologies and provide a glass wall panel installation structure that makes glass wall panel installation simple, convenient and quick, and has good sound insulation effect.
[0006] The technical solution of this application is to provide a glass wall panel installation structure having the following structure: including...
[0007] The main frame has a hollow mounting cavity, the inner wall of which is provided with a concave annular mounting groove along the circumferential direction, and the bottom wall of which is provided with a concave annular slot along the circumferential direction.
[0008] A glass wall panel is connected within an annular mounting groove of the main frame. The glass wall panel includes a frame and glass panels respectively connected to both sides of the frame, with a sound insulation gap between the two glass panels. The frame has a protruding insertion part along its circumference, and the insertion part is connected to an elastic first sealing strip along its circumference. The insertion part is inserted into the annular slot, and the first sealing strip is tightly fitted to the inner wall of the annular slot. A second sealing strip is connected circumferentially to the side of the insertion part opposite to the first sealing strip, which is in sealing contact with the inner wall of the annular mounting groove.
[0009] The main frame is connected to a plurality of locking members that are spaced apart along the length of the main frame and are axially movable. The inner end of the locking member abuts against the second sealing strip and is used to apply pressure to the second sealing strip to adjust the pressure between the first sealing strip and the inner wall of the annular slot.
[0010] In some embodiments, the plug portion has a concave annular groove along the circumferential direction on the side opposite to the first sealing strip, and the second sealing strip is connected in the annular groove.
[0011] In some embodiments, the locking element is a locking screw threaded to the back of the main frame, the inner end of the locking screw abuts against the second sealing strip, and the inner end of the locking screw is at least partially embedded in the annular groove to prevent the glass wall panel from detaching from the main frame.
[0012] In some embodiments, the annular slot is disposed on the side of the annular mounting groove near the back of the main frame; the plug portion is provided with an annular groove along the circumferential direction on the side away from the back of the main frame, the connecting end of the first sealing strip is connected in the annular groove, and the sealing portion of the first sealing strip extends in the direction away from the back of the main frame and fits tightly against the inner wall of the annular slot.
[0013] In some embodiments, the front side of the frame is provided with a recess for connecting a glass plate, and the back side of the frame is provided with an insertion slot for inserting a glass plate.
[0014] In summary, the glass wall panel installation structure of this application has the following advantages compared with related technologies: During installation, the glass wall panel is installed in the annular mounting groove of the main frame, and the insertion part of the glass wall panel is inserted into the annular slot of the main frame. The first sealing strip on the insertion part and the inner wall of the annular slot form a first sealing structure. Furthermore, a second sealing strip is connected to the side of the insertion part opposite to the first sealing strip, which seals against the inner wall of the annular mounting groove, forming a second sealing structure. Therefore, there are two sealing structures between the glass wall panel and the main frame, resulting in a better sealing effect and improved sound insulation after installation. Furthermore, the axial movement of the locking mechanism applies pressure to the second sealing strip, compressing the glass wall panel. This not only further stabilizes and strengthens the connection between the glass wall panel and the main frame, but also increases the pressure between the first sealing strip and the inner wall of the annular slot, resulting in a tighter seal between the first sealing strip and the inner wall of the annular slot at the insertion point, further improving the sealing performance between the glass wall panel and the main frame. Additionally, multiple locking mechanisms apply pressure along the thickness of the main frame to the second sealing strip, ensuring a more uniform compressive force across the entire ring of the second sealing strip and preventing gaps caused by localized deformation, thus further improving sound insulation. During glass wall panel installation, both the first and second sealing strips simultaneously seal the gap between the glass wall panel and the main frame. Therefore, after installation, there is no need to fill the gap between the glass wall panel and the main frame with sealant, improving installation efficiency. Thus, this glass wall panel installation structure makes installation simple, convenient, and quick, while providing excellent sound insulation.
[0015] Another technical solution of this application is to provide a wall panel assembly having the following structure: including a main frame and at least one glass wall panel, wherein the installation structure between the glass wall panel and the main frame adopts the glass wall panel installation structure described in any of the above embodiments.
[0016] In some embodiments, the glass wall panel comprises at least two pieces, respectively connected to the left and right sides of the mounting cavity of the main frame, with a mounting space provided in the mounting cavity between the two glass wall panels; or
[0017] The glass wall panel is at least one piece, connected to one side of the mounting cavity of the main frame, with a mounting space provided on the other side of the mounting cavity; and
[0018] The wall panel assembly also includes a glass door panel connected within the installation space. The glass door panel includes an outer frame and glass panels connected to both sides of the outer frame, with a sound insulation gap between the two glass panels. The two sides of the glass door panel are respectively sealed and fitted against the first sealing strips of the two glass wall panels on the side closest to the glass door panel.
[0019] In some embodiments, a secondary frame is connected to the annular mounting groove of the main frame of the mounting space, and a sealing element that fits and seals against the glass door panel is connected to the side of the secondary frame facing the front of the main frame.
[0020] In some embodiments, the subframe includes a protrusion that inserts into the annular slot and a stop that extends into the mounting cavity, the seal being connected to the side of the stop near the glass door panel.
[0021] In summary, compared with related technologies, the wall panel assembly of this application has the following advantages: the installation structure between the glass wall panels and the main frame adopts the aforementioned glass wall panel installation structure, thus making the assembly of the wall panel assembly simple, convenient, and quick, and providing good sound insulation. Furthermore, the wall panel assembly includes two glass wall panels and one glass door panel; during assembly, the two glass wall panels are first installed on both sides of the main frame, and then the glass door panel is assembled, making installation convenient; additionally, the two sides of the glass door panel can be sealed against the first sealing strips on the glass wall panels on both sides, resulting in a simple structure and further improving the assembly efficiency of the wall panel assembly.
[0022] Another technical solution of this application is to provide a soundproof cabin with the following structure: it includes at least one wall panel assembly as described in the above embodiments. This makes the soundproof cabin simple, convenient, and quick to assemble, and provides good sound insulation. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of a glass wall panel installation structure according to some embodiments of this application.
[0024] Figure 2 This is a schematic diagram of the main framework according to some embodiments of this application.
[0025] Figure 3 This is a cross-sectional perspective view of the main frame according to some embodiments of this application.
[0026] Figure 4 This is a partial cross-sectional schematic diagram of the main frame according to some embodiments of this application.
[0027] Figure 5 This is a structural schematic diagram of a glass wall panel according to some embodiments of this application.
[0028] Figure 6 This is a three-dimensional cross-sectional structural schematic diagram of a glass wall panel according to some embodiments of this application.
[0029] Figure 7 yes Figure 6 A magnified structural diagram of part A in the diagram.
[0030] Figure 8 This is a partial cross-sectional schematic diagram of a glass wall panel according to some embodiments of this application.
[0031] Figure 9 This is a cross-sectional schematic diagram of a wall panel assembly according to some embodiments of this application.
[0032] Figure 10 yes Figure 9 A magnified structural diagram of part B in the diagram.
[0033] Figure 11 yes Figure 9 A magnified structural diagram of part C in the diagram.
[0034] Figure 12 yes Figure 9 A magnified schematic diagram of part D in the diagram.
[0035] Figure 13 This is a structural schematic diagram of a wall panel assembly according to some embodiments of this application.
[0036] Figure 14 This is a schematic diagram of the installation structure of a glass door panel according to some embodiments of this application.
[0037] Figure 15 This is a longitudinal sectional view of a wall panel assembly according to some embodiments of this application.
[0038] Figure 16 yes Figure 15 A magnified structural diagram of part E in the diagram.
[0039] Explanation of reference numerals in the attached figures:
[0040] 1. Main frame; 100. Mounting cavity; 101. Annular mounting groove; 102. Annular slot; 103. First profile; 104. Second profile; 105. First flange; 106. Second flange; 107. Sub-frame; 108. Protrusion; 109. Stop; 110. Sealing element; 2. Glass wall panel; 200. Frame; 201. Insertion part; 202. First sealing strip; 203. Annular groove; 204. Annular recess; 205. Second sealing strip; 206. Recess; 207. Insertion groove; 3. Locking element; 4. Glass plate; 400. Sound insulation gap; 5. Glass door panel; 500. Outer frame. Detailed Implementation
[0041] First, those skilled in the art should understand that these embodiments are merely used to explain the technical principles of the embodiments of this application and are not intended to limit the scope of protection of the embodiments of this application. Those skilled in the art can make adjustments as needed to adapt to specific application scenarios.
[0042] In the description of the embodiments of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application based on the specific circumstances.
[0043] In the embodiments of this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0044] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0045] See Figures 1-10 As shown; this application discloses an installation structure for a soundproof cabin glass wall panel 2, that is, an installation structure between the glass wall panel 2 of the soundproof cabin and the main frame 1 of the wall panel assembly; the main frame 1 of the wall panel assembly is a closed ring, and its interior is hollow and has an installation cavity 100 for installing the glass wall panel 2. The main frame 1 is a square frame structure made of metal profile splicing. The inner wall of the installation cavity 100 of the main frame 1 has a concave annular installation groove 101 along the circumference, and the bottom wall of the annular installation groove 101 has a concave annular slot 102 along the circumference.
[0046] Specifically, see Figure 2 , Figure 3 and Figure 4As shown, the main frame 1 has a front surface and a rear surface. The front surface faces the outside of the soundproof cabin, and the rear surface faces the inside of the soundproof cabin. The main frame 1 is formed by interlocking and splicing a first profile 103 and a second profile 104 made of metal along the longitudinal direction. The first profile 103 is located on the outside of the main frame 1 and has a first guard edge 105, which is disposed on the front surface of the main frame 1. The second profile 104 is located on the inside of the main frame 1 and has a second guard edge 106, which is disposed on the rear surface of the main frame 1. The width of the first guard edge 105 is smaller than the width of the second guard edge 106. An annular mounting groove 101 for installing the glass wall panel 2 is formed between the first guard edge 105 and the second guard edge 106. An annular slot 102 is disposed on the second profile 104 and is located on the side closer to the second guard edge 106. The glass wall panel 2 is generally installed in the mounting cavity 100 of the main frame 1 by interlocking along the length direction of the annular mounting groove 101.
[0047] In this embodiment, to achieve better sound insulation, the glass wall panel 2 is a double-glazed structure, as detailed below. Figure 5 , Figure 6 , Figure 7 and Figure 8 As shown, the glass wall panel 2 includes a metal frame 200 and glass panels 4 connected to both sides of the frame 200, with a sound insulation gap 400 between the two glass panels 4. Specifically, the frame 200 is square or roughly square in structure, with a recess 206 for connecting the glass panels 4 on its front side facing the outside of the soundproof chamber, and an insertion groove 207 for inserting the glass panels 4 on its back side. There is a certain gap between the recess 206 and the insertion groove 207. The glass panels 4 are respectively installed in the recess 206 and the insertion groove 207 and sealed to the frame 200 with adhesive. The glass wall panel 2 has a good sound insulation effect.
[0048] To facilitate the installation of the glass wall panel 2 and the main frame 1, and to ensure the sealing or sound insulation of the glass wall panel 2 and the main frame 1 after assembly, in the above embodiment, see... Figure 7 and Figure 8 As shown, the frame 200 has a protruding insertion portion 201 along the circumferential direction, and the insertion portion 201 is connected to an elastic first sealing strip 202 along the circumferential direction. The insertion portion 201 is inserted into the annular slot 102, and the first sealing strip 202 is tightly fitted to the inner wall of the annular slot 102; specifically, see again Figure 8As shown, the insertion part 201 has an annular groove 203 on the side opposite to the back of the main frame 1. The connecting end of the first sealing strip 202 is connected to the annular groove 203, and the sealing part of the first sealing strip 202 extends in the direction opposite to the back of the main frame 1 and fits tightly against the inner wall of the annular slot 102. The first sealing strip 202 is connected to the insertion part 201 around the circumference of the glass wall panel 2. It is made of a soft elastic material, such as rubber. When the glass wall panel 2 is installed, when the insertion part 201 is inserted into the annular slot 102, the first sealing strip 202 can be pressed tightly against the inner wall of the annular slot 102 for sealing.
[0049] Furthermore, in this embodiment, a second sealing strip 205, which seals against the inner wall of the annular mounting groove 101, is circumferentially connected to the side of the insertion portion 201 opposite to the first sealing strip 202; see also Figure 7 and Figure 8 As shown, the second sealing strip 205 is arranged around the circumference of the glass wall panel 2. It is made of sound insulation material, preferably EVA foam. It forms a sealing structure with the inner wall of the annular mounting groove 101, thus further improving the sealing between the glass wall panel 2 and the main frame 1 and improving the sound insulation performance.
[0050] Understandably, during the installation of the glass wall panel 2 in this soundproof cabin glass wall panel installation structure, the glass wall panel 2 is installed in the annular mounting groove 101 of the main frame 1, and the insertion part 201 of the glass wall panel 2 is inserted into the annular slot 102 of the main frame 1. The first sealing strip 202 on the insertion part 201 and the inner wall of the annular slot 102 form a first sealing structure. In addition, a second sealing strip 205 is connected to the side of the insertion part 201 away from the first sealing strip 202, which seals against the inner wall of the annular mounting groove 101. The second sealing strip 205 forms a second sealing structure. Therefore, there are two sealing structures between the glass wall panel 2 and the main frame 1, which makes the sealing effect between the glass wall panel 2 and the main frame 1 better, and the sound insulation effect after the glass wall panel 2 is installed is better.
[0051] Further in this embodiment, see Figure 4 and Figure 10As shown, a plurality of locking members 3 are connected to the main frame 1, which are spaced apart along the length of the main frame 1 and can move axially. The inner end of the locking member 3 abuts against the second sealing strip 205 and is used to apply pressure to the second sealing strip 205 to adjust the pressure between the first sealing strip 202 and the inner wall of the annular slot 102. That is, by driving the axial movement of the locking member 3, pressure can be applied to the second sealing strip 205 to squeeze the glass wall panel 2. This not only makes the connection between the glass wall panel 2 and the main frame 1 more stable and firm, but also increases the pressure between the first sealing strip 202 and the inner wall of the annular slot 102 by the pressure applied by the locking member 3 to the second sealing strip 205. This makes the seal between the first sealing strip 202 on the insertion part 201 and the inner wall of the annular slot 102 tighter, further improving the sealing performance between the glass wall panel 2 and the main frame 1. In addition, multiple locking members 3 apply pressure to the second sealing strip 205 along the thickness direction of the main frame 1, so that the compressive force on the entire ring of the second sealing strip 205 is more uniform, avoiding the local deformation of the second sealing strip 205 and the generation of gaps. Therefore, the sound insulation can be further improved.
[0052] In the above embodiment, during the installation of the glass wall panel 2, the first sealing strip 202 and the second sealing strip 205 simultaneously seal the gap or seam between the glass wall panel 2 and the main frame 1. After the glass wall panel 2 is installed, there is no need to fill the gap between the glass wall panel 2 and the main frame 1 with sealing material, which improves the installation efficiency of the glass wall panel 2. Furthermore, the pressure on the glass wall panel 2 can be adjusted by driving the locking member 3 to move axially, thereby adjusting the tightness between the first sealing strip 202 and the inner wall of the annular slot 102, making the sealing between them better. Therefore, the installation structure of the soundproof cabin glass wall panel 2 makes the installation of the glass wall panel 2 simple, convenient, and quick, and provides good sound insulation.
[0053] The second sealing strip 205 is generally pre-assembled on the glass wall panel 2 when it leaves the factory. Specifically, in this embodiment, see [link to documentation]. Figure 8 As shown, a recessed annular groove 204 is provided circumferentially on the side of the insertion portion 201 of the frame 200 of the glass wall panel 2 away from the first sealing strip 202. The second sealing strip 205 is connected to the annular groove 204 by adhesive bonding. The annular groove 204 is a recessed groove with a trapezoidal cross-section. The second sealing strip 205 protrudes from the annular groove 204, and the second sealing strip 205 and the first sealing strip 202 are respectively provided on both sides of the insertion portion 201.
[0054] It is easy to understand that the locking parts 3 are preferably distributed at equal intervals along the length of the main frame 1. In order to make the force applied by the locking parts 3 to the second sealing strip 205 more uniform, a pressure strip extending along the length of the second sealing strip 205 can be connected to the inner end of the locking parts 3, so that the force applied to the second sealing strip 205 is more uniform and the second sealing strip 205 is prevented from being deformed and producing gaps due to localized force concentration.
[0055] The locking element 3 can have various structures. It can be a pin that fits tightly against the back of the main frame 1, adjusting the pressure on the second sealing strip 205 by the depth of pin insertion; or it can be a small cam wrench connected to the back of the main frame 1, using the cam portion of the cam wrench to press the second sealing strip 205; in this embodiment, see... Figure 4 and Figure 10 As shown, the locking component 3 is a locking screw threaded onto the back of the main frame 1. Specifically, the locking screw is threaded onto the second flange 106 along its length. The inner end of the locking screw abuts against the second sealing strip 205, and at least partially embedded in the annular groove 204 to prevent the glass wall panel 2 from detaching from the main frame 1. After the glass wall panel 2 is installed with the main frame 1, the user can tighten the locking screw, causing the inner end of the locking screw to press against the second sealing strip 205, thereby applying pressure to the first sealing strip 202. Furthermore, the fact that the inner end of the locking screw is at least partially embedded in the annular groove 204 ensures that the glass wall panel 2 remains in its predetermined installation position and prevents it from shifting or detaching from the main frame 1, thus improving the connection stability between the glass wall panel 2 and the main frame 1.
[0056] Another embodiment of this application discloses a wall panel assembly, see [link to relevant documentation] Figure 9 , Figures 11-16 As shown, the wall panel assembly includes a main frame 1 and at least one glass wall panel 2. The installation structure between the glass wall panel 2 and the main frame 1 adopts the soundproof cabin glass wall panel 2 installation structure described in the above embodiment. Therefore, the wall panel assembly is simple, convenient, and quick to assemble, and has good sound insulation effect.
[0057] Further in this embodiment, the wall panel assembly also includes a glass door panel 5, and the wall panel assembly has at least two glass wall panels 2, which are respectively connected to the left and right sides of the mounting cavity 100 of the main frame 1. During installation, the glass wall panels 2 are slid from the middle of the main frame 1 to both sides of the main frame 1 and fixed, thus forming an installation space for the glass door panel 5 in the mounting cavity 100 between the two glass wall panels 2. The glass door panel 5 is installed in the installation space, and it is easy to understand that one side of the glass door panel 5 can be rotated to open or close. In this embodiment, see Figure 14 , Figure 15 and Figure 16As shown, the glass door panel 5 includes an outer frame 500 and glass panels 4 respectively connected to both sides of the outer frame 500, with a sound insulation gap 400 between the two glass panels 4. The glass door panel 5 is also a double-glazed structure, providing good sound insulation performance. When the glass door panel 5 is installed in the installation space between two glass wall panels 2, both sides of the glass door panel 5 abut and seal against the first sealing strip 202 on the side of the two glass wall panels 2 closest to the glass door panel 5. (See Figure 1) Figure 11 and Figure 12 As shown.
[0058] In some embodiments, the glass wall panel 2 is at least one piece and is connected to one side of the mounting cavity 100 of the main frame 1. The other side of the mounting cavity 100 is provided with a mounting space for installing the glass door panel 5.
[0059] To further improve the sealing between the glass door panel 5 and the main frame 1 and enhance sound insulation performance; see [link to relevant documentation]. Figure 15 As shown, sub-frames 107 are connected to the annular mounting grooves 101 above and below the mounting space of the main frame 1, respectively. A sealing element 110 that fits and seals against the glass door panel 5 is connected to the side of the sub-frame 107 facing the front of the main frame 1. Specifically, the sub-frame 107 includes a protrusion 108 that inserts into the annular slot 102 and a stop portion 109 that extends into the mounting cavity 100. The sealing element 110 is connected to the side of the stop portion 109 near the glass door panel 5.
[0060] It is easy to understand that the first sealing strip 202 on the side of the two glass wall panels 2 closest to the glass door panel 5, together with the sealing element 110 on the sub-frame 107 above and below the installation space, constitute a sealing structure that can seal the four sides of the glass door panel 5, thereby making the sealing performance of the glass door panel 5 better and the sound insulation performance better.
[0061] Another embodiment of this application discloses a soundproof cabin, which includes at least one wall panel assembly as described in the above embodiment, thereby making the soundproof cabin simple, convenient and quick to assemble, and providing good sound insulation.
[0062] In the description of the embodiments of this application, it should be noted that the terms "inner" and "outer" and other terms indicating direction or positional relationship are based on the direction or positional relationship shown in the drawings. This is only for the convenience of description and does not indicate or imply that the device or component must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this application.
[0063] In the description of this application, the references to terms such as "an embodiment," "some embodiments," "in this embodiment," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0064] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A glass wall panel mounting structure characterized by: The invention relates to a glass wallboard assembly, comprising a main frame having a hollow mounting cavity, an inner wall of the mounting cavity being provided with an annular mounting groove concave in a circumferential direction, a bottom wall of the annular mounting groove being provided with an annular insertion groove concave in a circumferential direction; a glass wallboard connected in the annular mounting groove of the main frame, the glass wallboard comprising a frame body and glass panels connected to two sides of the frame body respectively, and having a sound insulation gap between the two glass panels; the frame body is provided with an insertion part convex in a circumferential direction, and a first elastic sealing strip connected to the insertion part in a circumferential direction, the insertion part being inserted in the annular insertion groove and the first sealing strip being tightly fitted to the inner wall of the annular insertion groove; a second sealing strip connected to the side of the insertion part away from the first sealing strip in a circumferential direction is tightly fitted to the inner wall of the annular mounting groove; a plurality of axial movement locking members distributed in a length direction of the main frame are connected to the main frame, inner ends of the locking members abutting against the second sealing strip are used to apply pressure to the second sealing strip to adjust the pressure between the first sealing strip and the inner wall of the annular insertion groove.
2. The glass wall panel mounting structure according to claim 1, characterized by: the side of the insertion part away from the first sealing strip is provided with an annular groove concave in a circumferential direction, and the second sealing strip is connected in the annular groove.
3. The glass wall panel mounting structure according to claim 2, characterized by: the locking member is a locking screw screwed to the back of the main frame, the inner end of the locking screw abutting against the second sealing strip is at least partially embedded in the annular groove to prevent the glass wallboard from being separated from the main frame.
4. The glass wall panel mounting structure according to claim 1, characterized by: the annular insertion groove is arranged on the side of the annular mounting groove close to the back of the main frame; the side of the insertion part away from the back of the main frame is provided with an annular clamping groove in a circumferential direction, and the connecting end of the first sealing strip is connected in the annular clamping groove, so that the sealing part of the first sealing strip extends away from the back of the main frame and is tightly fitted to the inner wall of the annular insertion groove.
5. The glass wall panel mounting structure according to claim 1, characterized by: the front side of the frame body is provided with a recess for connecting the glass panel, and the back side of the frame body is provided with an insertion groove for inserting the glass panel.
6. A wall panel assembly comprising a main frame and at least one glass wall panel, characterized in that: the mounting structure between the glass wallboard and the main frame adopts the glass wallboard mounting structure of any one of claims 1-5.
7. The wallboard assembly of claim 6, wherein: the glass wallboard is at least two, and is connected to the left and right sides of the mounting cavity of the main frame respectively, and the mounting cavity between the two glass wallboards is provided with a mounting space; or the glass wallboard is at least one, and is connected to one side of the mounting cavity of the main frame, and the other side of the mounting cavity is provided with a mounting space; and the silent cabin wallboard assembly further comprises a glass door panel connected in the mounting space, the glass door panel comprising an outer frame and glass panels connected to two sides of the outer frame respectively, and having a sound insulation gap between the two glass panels; the two sides of the glass door panel abut against and are tightly fitted to the first sealing strips close to the glass door panel on the two glass wallboards respectively.
8. The wallboard assembly of claim 7, wherein: the annular mounting groove of the main frame of the mounting space is respectively connected with a sub-frame, and the side of the sub-frame facing the front of the main frame is connected with a sealing member tightly fitted to the glass door panel.
9. The wallboard assembly of claim 8, wherein: the sub-frame comprises a convex part inserted in the annular insertion groove and a stop part extending into the mounting cavity, and the sealing member is connected to the side of the stop part close to the glass door panel.
10. A soundproof cabin characterized by: A wall assembly comprising at least one wall panel as claimed in claim 9.