Connecting frame for combined type membrane material
By designing a modular membrane material connection frame, which combines the main frame, storage components, pressing components, and locking components, the membrane material is firmly fixed and its tension can be adjusted. This solves the problems of poor installation effect and unsightly appearance of traditional membrane materials, and improves the aesthetics of the building.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional architectural membrane materials have small connection nodes, resulting in poor installation effects and problems such as membrane wrinkles and unsightly appearance.
Design a connecting frame for composite membrane materials, including a main frame, a storage component, a pressing component, and a locking component. The storage component fixes the end of the membrane material, the pressing component presses the two sides of the membrane material, and the locking component locks the pressing component and the main frame, thereby achieving firm fixation of the membrane material and tension adjustment.
It improved the installation stability and overall aesthetics of the membrane material, solved the problem of membrane material wrinkles during installation, and enhanced the aesthetic appearance of the building.
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Figure CN224063669U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of architectural membrane installation technology, and more particularly to a connecting frame for composite membrane materials. Background Technology
[0002] Architectural membrane materials are multi-layered functional polyester composite films. They are made from multiple layers of ultra-thin, highly transparent polyester films through processes such as dyeing, magnetron sputtering, and lamination. With adhesive backing, they are applied to the surface of architectural glass to improve its performance, giving it functions such as heat insulation, energy saving, UV protection, aesthetic enhancement, privacy, explosion protection, safety, and protection. Architectural membrane materials are multi-layered PET (polyester) films that, through the use of vacuum multi-layer metal plating technology, ion technology, and thin film physics and fine chemical technology, possess excellent clarity, strength, and durability, as well as high thermal insulation efficiency, impact resistance, and decorative properties. Adhesive-backed, they are adhered to the surface of glass and other materials and are widely used in building energy conservation, building safety, and building decoration, making them a high-tech building material.
[0003] In related technologies, the connection nodes of architectural membrane materials are generally small. Because the installation of architectural membrane materials is affected by factors such as the external environment and the material itself, small connection nodes cannot guarantee the connection quality and effective tightening of the membrane material, resulting in poor installation effects and defects such as membrane wrinkles and unsightly building appearance. Summary of the Invention
[0004] This application provides a connecting frame for composite membrane materials to solve the technical problem that traditional architectural membrane materials have poor installation effect and wrinkles that make the overall appearance unsightly.
[0005] Therefore, this application provides a connecting frame for a composite membrane material, comprising: a main frame body having a membrane channel extending along a first direction of the main frame body; a receiving member disposed on the main frame body, the receiving member having a receiving cavity extending along a second direction of the main frame body and communicating with the membrane channel; wherein the line containing the second direction is perpendicular to the line containing the first direction; a plurality of spaced pressing members slidably disposed on the main frame body and located on both sides of the membrane channel; and a plurality of locking members, each pressing member having at least one locking member for locking the pressing member and the main frame body.
[0006] In one possible implementation, the main frame includes an abutment and two opposing support members. The abutment is laterally disposed between the two support members and is received in the support members in a third-direction orientation of the main frame. A receiving member and two support members located above the receiving member partially enclose each other to form a film-carrying groove. The receiving member is disposed on the abutment and the pressing member is slidably disposed on the support members.
[0007] In one possible implementation, the main frame also includes an anti-slip component, which is disposed on the abutment component and correspondingly disposed below the pressing component.
[0008] In one possible implementation, the support includes a vertically connected vertical plate and a base, the base being located below the vertical plate and extending out of the vertical plate in a second direction; both the abutment and the pressing member are provided on the vertical plate.
[0009] In one possible implementation, the main frame is provided with a slide groove extending in a third direction along the main frame, and the pressing component includes a sliding protrusion and a pressure plate, with the pressure plate slidably connected in the slide groove through the sliding protrusion.
[0010] In one possible implementation, the pressure plate includes a rigid part and a flexible part connected together, with a sliding protrusion connected to the rigid part and the flexible part located below the rigid part.
[0011] In one possible implementation, the flexible part is made of rubber.
[0012] In one possible implementation, at least one pressing member is provided on the same side of the film-carrying groove, and the pressing members on both sides of the film-carrying groove are staggered.
[0013] In one possible implementation, the abutment is provided with a fastening screw hole, and the locking element includes a screw and a washer. The washer is located above the abutment and surrounds the periphery of the fastening screw hole. The screw passes through the pressing element in a third direction and is rotatably connected to the pressing element. The screw passes through the washer and is screwed into the fastening screw hole to lock the pressing element and the abutment.
[0014] In one possible implementation, the locking element includes a first magnet and a second magnet. The first magnet is disposed on the abutting element, and the second magnet is disposed below the pressing element corresponding to the first magnet. The magnetic properties of the opposite side of the second magnet and the first magnet are different.
[0015] Secondly, this application also provides a modular membrane structure, including the connecting frame for modular membrane structures as described above.
[0016] According to the embodiments of this application, a connecting frame for a composite membrane material is provided. The connecting frame includes: a main frame body having a membrane channel extending along a first direction of the main frame body; a receiving member disposed on the main frame body, having a receiving cavity extending along a second direction of the main frame body and communicating with the membrane channel; wherein the line containing the second direction is perpendicular to the line containing the first direction; a plurality of spaced-apart pressing members slidably disposed on the main frame body and located on both sides of the membrane channel; and a plurality of locking members, with at least one locking member provided on each pressing member, the locking member being used to lock the pressing member and the main frame body. This embodiment of the application uses a receiving component to accommodate the end cylinder of the combined membrane material, allowing the combined membrane material to flow along the membrane channel from the receiving component, thereby fixing the end of the combined membrane material and improving the installation firmness of the combined membrane material. At the same time, multiple pressing components set on both sides of the membrane channel press the combined membrane material passing through the membrane channel, and locking components set on the pressing components lock the pressing components and the main frame, thereby achieving pressing and fixing on both sides of the combined membrane material. This can further improve the connection and firmness of the combined membrane material, and also allow for adjustment of the tension of the combined membrane material, solving the installation wrinkle problem of the combined membrane material, improving the installation effect, and enhancing the overall aesthetics of the building appearance. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, those skilled in the art can obtain other drawings based on these drawings without creative effort. In addition, in the drawings, the same parts use the same reference numerals, and the drawings are not drawn to scale.
[0018] Figure 1 This is a three-dimensional structural diagram of the connecting frame provided in an embodiment of this application;
[0019] Figure 2 A three-dimensional structural diagram of the storage component of the connecting frame provided in an embodiment of this application;
[0020] Figure 3 A three-dimensional structural schematic diagram of the pressing component of the connecting frame provided in an embodiment of this application;
[0021] Figure 4 for Figure 1 Enlarged view of point A in the middle.
[0022] Explanation of reference numerals in the attached figures:
[0023] 100. Main frame; 101. Slide groove; 102. Fastening screw hole; 110. Abutment part; 120. Support part; 121. Vertical plate; 122. Base; 130. Anti-slip part;
[0024] 200. Storage component; 201. Storage cavity;
[0025] 300. Press-fit part; 310. Sliding part; 320. Pressure plate; 321. Rigid part; 322. Flexible part;
[0026] 400. Locking component; 410. Screw; 420. Washer;
[0027] Y, first direction; X, second direction; Z, third direction. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0029] See Figures 1 to 4 A connecting frame for composite membrane materials includes: a main frame 100 having a membrane channel extending along a first direction Y of the main frame 100; a receiving member 200 disposed on the main frame 100, the receiving member 200 having a receiving cavity 201 extending along a second direction X of the main frame 100 and communicating with the membrane channel; wherein the line containing the second direction X is perpendicular to the line containing the first direction Y; a plurality of spaced pressing members 300 slidably disposed on the main frame 100 and located on both sides of the membrane channel; and a plurality of locking members 400, each pressing member 300 having at least one locking member 400 for locking the pressing member 300 and the main frame 100.
[0030] In this embodiment, the end cylinder of the composite membrane material is accommodated by the receiving component 200, allowing the composite membrane material to flow through the receiving component 200 along the membrane channel, thereby fixing the end of the composite membrane material and improving the installation firmness of the composite membrane material. At the same time, multiple pressing components 300 provided on both sides of the membrane channel press the composite membrane material passing through the membrane channel, and the locking components 400 provided on the pressing components 300 lock the pressing components 300 and the main frame 100, thereby achieving the pressing and fixing of both sides of the composite membrane material. This can not only further improve the connection and firmness of the composite membrane material, but also adjust the tension of the composite membrane material, solve the installation wrinkle problem of the composite membrane material, improve the installation effect, and improve the overall aesthetics of the building appearance.
[0031] Specifically, the connecting frame is configured as a combined component including at least a main frame 100, a storage component 200, multiple pressing components 300, and multiple locking components 400. The main frame 100 has a near-H-shaped frame structure, with its horizontal portion located in the upper middle position of the whole, used to support the combined membrane material. Figure 2 The receiving component 200 can be a hollow square column structure with a notch extending along the second direction X and located near the bottom of the membrane channel, connecting the hollow receiving cavity 201 of the receiving component 200 and the membrane channel. A columnar body with a composite membrane material attached can be inserted into the receiving cavity 201, allowing the composite membrane material to pass through the notch and enter the membrane channel, thus achieving the installation and fixation of the end of the composite membrane material. Multiple pressing components 300 and multiple locking components 400 are distributed on both sides of the membrane channel to press, lock, and fix different positions on both sides of the composite membrane material extending through the channel, thereby fixing both sides of the composite membrane material and adjusting its tension to prevent installation wrinkles, improving installation aesthetics and effect.
[0032] See Figure 1 and Figure 4 In one possible implementation, the main frame 100 includes an abutment 110 and two opposing support members 120. The abutment 110 is laterally disposed between the two support members 120 and is housed within the support members 120 in a third direction Z of the main frame 100. A receiving member 200 and the two support members 120 located above the receiving member 200 partially enclose each other to form a film-carrying groove. The receiving member 200 is disposed on the abutment 110, and the pressing member 300 is slidably disposed on the support members 120. The main frame 100 also includes an anti-slip member 130, which is disposed on the abutment 110 and correspondingly disposed below the pressing member 300. The support member 120 includes a vertically connected vertical plate 121 and a base 122. The base 122 is located below the vertical plate 121 and extends out of the vertical plate 121 in a second direction X. Both the abutment 110 and the pressing member 300 are disposed on the vertical plate 121.
[0033] In this embodiment, the specific configuration of the main frame 100 is optimized. Specifically, the main frame 100 is configured as a combined component including at least an abutment 110, a support 120, and an anti-slip component 130. The abutment 110 can be a horizontal plate or a horizontal rail for supporting the combined membrane material. The storage component 200 is located at the far end of the abutment 110 and extends slightly beyond the support 120 in the first direction Y to facilitate the installation of the connecting cylinder connected to the combined membrane material. The support member 120 includes a base 122 and a vertical plate 121 vertically mounted on the base 122. The base 122 extends the vertical plate 121 in the second direction X to increase its contact area with the ground and improve the overall balance and stability of the main frame 100. A connecting member 110 is connected to the vertical plate 121 near its top, providing support for the connecting member 110. The vertical plate 121 extending from the connecting member 110 in the third direction Z forms a membrane channel with the connecting member 110, which can be a flat, near-U-shaped channel. The anti-slip member 130 can be an anti-slip silicone layer or a rubber layer with a smooth surface. It can be bonded to the connecting member 110 and located below the pressing member 300 to cooperate with the pressing member 300, sealing and pressing the two edges of the composite membrane material and improving the waterproof performance of the composite membrane material at the connection nodes. The main frame 100 provided in this example has strong structural balance and stability, high tightness in the installation of combined membrane materials, and strong waterproof performance at the connection nodes.
[0034] It should be noted that the line containing the third direction Z, the line containing the second direction X, and the line containing the first direction Y are all perpendicular to each other.
[0035] See Figure 1 and Figure 3 In one possible implementation, at least one pressing member 300 is provided on the same side of the film-carrying groove, and the pressing members 300 on both sides of the film-carrying groove are staggered. The main frame 100 is provided with a sliding groove 101 extending in the third direction Z along the main frame. The pressing member 300 includes a sliding protrusion 310 and a pressure plate 320, with the pressure plate 320 slidably connected to the sliding protrusion 310 within the sliding groove 101. The pressure plate 320 includes a rigid portion 321 and a flexible portion 322 connected together. The sliding protrusion 310 is connected to the rigid portion 321, and the flexible portion 322 is located below the rigid portion 321. The flexible portion 322 is made of rubber.
[0036] In this embodiment, multiple staggered pressing members 300 are used to press and fix different positions on opposite sides of the combined membrane material located in the membrane groove. This improves the installation and fixing effect of the combined membrane material while adjusting its tension, thereby preventing wrinkles and improving the overall aesthetics. Specifically, the pressing member 300 is configured as a combination component including at least a sliding protrusion 310 and a pressure plate 320. The sliding protrusion 310 is made of a rigid material with certain rigidity and strength to ensure reliable connection with the sliding groove 101 on the vertical plate 121. The pressure plate 320 can be a two-layer plate structure. Its top layer is a rectangular plate-shaped rigid part 321 with high hardness, which can meet the connection and fastening requirements with the sliding protrusion 310 and the fastening member 400. Its bottom layer is a rectangular plate-shaped flexible part 322 with low hardness and high flexibility. For example, it can be a rubber layer. This rubber layer can be connected to the rigid part 321 by adhesive. The flexible part 322 can provide a pressing buffer for the combined membrane material, which can not only prevent the rigid pressing member 300 from crushing / scratching the combined membrane material and improving the safe use of the membrane material, but also enhance the sealing and waterproof performance between the pressing member 300 and the combined membrane material.
[0037] See Figure 1 and Figure 4 In one possible implementation, the abutment 110 is provided with a fastening screw hole 102, and the locking member 400 includes a screw 410 and a washer 420. The washer 420 is located above the abutment 110 and surrounds the periphery of the fastening screw hole 102. The screw 410 passes through the pressing member 300 in the third direction Z and is rotatably connected to the pressing member 300. The screw 410 passes through the washer 420 and is screwed into the fastening screw hole 102 to lock the pressing member 300 and the abutment 110.
[0038] In this embodiment, the connection between the pressing member 300 and the abutment member 110 is configured as a screw 410 locking connection. The screw 410 is rotatably inserted into the pressing member 300, and its depth of insertion is adjustable, allowing it to pass through the washer 420 located below it and screw into the fastening screw hole 102, thus achieving a locking and fastening connection between the pressing member 300 and the abutment member 110. When disassembly is required, the screw 410 is rotated in the opposite direction to unscrew it from the fastening screw hole 102 and release it from the force restraint of the washer 420, thereby unlocking the pressing member 300 and the abutment member 110. The connection between the pressing member 300 and the abutment member 110 provided in this example has strong fastening properties and higher locking reliability in the locked state.
[0039] In one possible implementation, the locking member 400 includes a first magnet (not shown) and a second magnet (not shown). The first magnet is disposed on the abutment member 110, and the second magnet is disposed below the pressing member 300, corresponding to the first magnet. The magnetic properties of the opposite side of the second magnet and the first magnet are different.
[0040] In this embodiment, the connection between the pressing member 300 and the abutment member 110 is configured as a magnetic locking connection. The first magnet can be a magnet and is embedded in the abutment member 110. The second magnet can be a magnet and is inserted into the pressing member 300. The first magnet protrudes from the abutment member 110, and the second magnet protrudes from the pressing member 300 to improve the magnetic attraction effect between the two.
[0041] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, 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. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0042] The above description is merely a specific embodiment of this application, enabling those skilled in the art to understand or implement this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed herein.
Claims
1. A connecting frame for a modular membrane, characterized in that, The utility model relates to a film conveying device, comprising: a main frame body having a film conveying groove extending in a first direction of the main frame body; a receiving member provided on the main frame body, the receiving member being provided with a receiving cavity extending in a second direction of the main frame body and communicating with the film conveying groove; wherein the second direction is perpendicular to the first direction; a plurality of pressing members arranged at intervals, the pressing members being slidingly arranged on the main frame body and located on both sides of the film conveying groove; and a plurality of locking members, at least one locking member being arranged on each pressing member, the locking members being used for locking the pressing members and the main frame body. The main frame body comprises an abutting member and two oppositely arranged supporting members, the abutting member being arranged transversely between the two supporting members and accommodated in the supporting members in a third direction of the main frame body; the receiving member and the two supporting members above the receiving member partially enclose the film conveying groove, the receiving member being arranged on the abutting member, and the pressing members being slidingly arranged on the supporting members.
2. The connection frame of claim 1, wherein The main frame body further comprises an anti-skid member, the anti-skid member being arranged on the abutting member and corresponding to the pressing members below.
3. The connection frame of claim 2, wherein The supporting members comprise vertical plates and bases connected vertically, the bases being located below the vertical plates and extending out of the vertical plates in the second direction; the abutting member and the pressing members are arranged on the vertical plates.
4. The connection frame of claim 2, wherein The main frame body is provided with a sliding groove extending in the third direction of the main frame body, the pressing members comprising sliding protrusions and pressing plates, the pressing plates being slidingly connected in the sliding groove through the sliding protrusions.
5. The connection frame of claim 1, wherein The pressing plates comprise rigid portions and flexible portions connected, the sliding protrusions being connected to the rigid portions, and the flexible portions being located below the rigid portions.
6. The connection frame of claim 5, wherein The flexible portions are made of rubber material.
7. The connection frame of claim 6, wherein At least one pressing member is arranged on the same side of the film conveying groove, and the pressing members on both sides of the film conveying groove are arranged alternately.
8. The connection frame of claim 1, wherein The abutting member is provided with a fastening screw hole, the locking members comprising screws and washers, the washers being arranged above the abutting member and surrounding the periphery of the fastening screw hole; the screws penetrating the pressing members in the third direction and being rotationally connected to the pressing members, the screws penetrating the washers and being screwed into the fastening screw holes to lock the pressing members and the abutting member.
9. The connection frame of claim 2, wherein The locking members comprise first magnets and second magnets, the first magnets being arranged on the abutting member, the second magnets being arranged below the pressing members corresponding to the first magnets, and the second magnets having different magnetic properties from the opposite sides of the first magnets.
10. The connection frame of claim 2, wherein