Stone material curtain wall with assembly structure and assembly method thereof

By using a triangular frame and elastic sealing components, the stone slabs and light strip components are firmly integrated, solving the problem of light strip integration in irregular stone curtain wall designs, improving the night view effect and structural strength, and reducing maintenance costs.

CN117403810BActive Publication Date: 2026-05-01CHINA CONSTR FOURTH ENG DIV CORP LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA CONSTR FOURTH ENG DIV CORP LTD
Filing Date
2023-10-23
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing stone curtain walls are difficult to integrate light strips effectively in irregular designs, resulting in limited installation, aesthetic impact, high maintenance costs, and the lack of light transmission in stone slabs, which makes it difficult to improve the night view effect.

Method used

The structure employs a triangular frame, using hooks and hanging grooves to hang the stone slabs upside down on the keel assembly. Combined with elastic seals and light strip assemblies semi-embedded between the stone slabs, it forms a stable assembly structure that enhances structural strength and aesthetics.

Benefits of technology

This achieves the organic integration of light strips and stone curtain walls, enhancing the building's nighttime appearance, reducing maintenance costs, and improving the structural stability and sealing of the curtain wall.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a stone curtain wall with an assembling structure and an assembling method thereof, and relates to the technical field of buildings. The stone curtain wall comprises a wall body, a keel assembly, a first stone plate, a second stone plate, an elastic sealing element and a lamp strip assembly. The second stone plate under the action of gravity is hung on the keel assembly by using the cooperation of each hook part and each hanging groove. Then, the elastic sealing element and the first stone plate are used to cooperate with the first hook part under the action of gravity, the tongue block of the second stone plate is clamped in the installation groove in the up-down clamping mode, the second stone plate is firmly installed, and the second inclined keel is effectively prevented from being fixed by manual work or other tools in the curing process of the back adhesive, the hollow space between the second stone plate and the second inclined keel is effectively reduced, the effective area and the bonding strength of the back adhesive are ensured. In addition, the lamp strip assembly is used as the corner assembling element between the stone plates in the stone curtain wall, the lamp strip assembly is organically integrated into the stone curtain wall, the stone curtain wall has the night scene function, and the structural strength of the stone curtain wall is improved.
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Description

Technical Field

[0001] This invention relates to the field of building technology, specifically to a stone curtain wall with an assembly structure and its assembly method. Background Technology

[0002] A curtain wall is a building envelope structure consisting of panels and a supporting frame that does not bear the load or action of the main structure. Based on the panel material, it is divided into stone curtain walls, steel curtain walls, aluminum curtain walls, and glass curtain walls, etc. Based on the shape, it is divided into flat curtain walls and irregular-shaped curtain walls. Currently, stone panels are usually installed vertically on the wall surface using a supporting frame structure, and multiple stone panels are spliced ​​together to form a vertical, flat stone curtain wall. With technological advancements, various irregular-shaped curtain walls are becoming more numerous and complex in design, thus beautifying the exterior of buildings. Among them, the single-ridged convex curtain wall is the simplest irregular-shaped curtain wall. Currently, irregular-shaped curtain walls typically use steel plates, aluminum plates, and glass; due to their weight, stone slabs are rarely used in irregular-shaped curtain walls.

[0003] Furthermore, to enhance the city's nightscape, light strips are increasingly being used and installed on curtain wall surfaces. However, currently, light strips and curtain walls are considered two separate trades, resulting in poor integration between the two. Because the stone slabs of stone curtain walls are not translucent and are difficult to modify after installation, subsequent light strip installation faces numerous limitations. Installed light strips can easily affect the building's aesthetics and even damage the curtain wall structure, leading to high maintenance costs. How to organically integrate light strips into stone slab curtain walls is an important research topic. Therefore, it is necessary to design a uniquely shaped curtain wall suitable for stone slabs, while also providing nightscape functionality, ensuring secure stone slab installation and convenient construction, and enabling its application in uniquely shaped curtain walls. Summary of the Invention

[0004] The purpose of this invention is to provide a stone curtain wall with an assembly structure and its assembly method, which aims to overcome the above-mentioned problems existing in the prior art.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A stone curtain wall with an assembly structure includes a wall body and a keel assembly. The keel assembly includes a plurality of triangular frames arranged along the left and right sides of the wall body. The triangular frames include vertical keels, a first oblique keel and a second oblique keel connected end to end. The vertical keels are vertically fixed to the wall body. The lower end of the first oblique keel is fixed with a first hook and the lower end of the second oblique keel is fixed with a second hook.

[0007] A first stone slab is fixedly laid between two adjacent first oblique keels, and a second stone slab is fixedly laid between two adjacent second oblique keels. A first hook groove for engaging the first hook is opened at both upper corners of the second stone slab, and a second hook groove for engaging the second hook is opened at both lower corners of the second stone slab.

[0008] It also includes a light strip assembly, the lower end of which is fixed to the upper end of the second stone slab;

[0009] It also includes an elastic seal, with an installation groove formed between the first inclined keel and the first hook, and a tongue formed at the opening of the first hook groove on the second stone plate. The elastic seal includes a pressure strip, with a sealing strip fixed at the upper end of the pressure strip. The pressure strip and the tongue are filled into the installation groove from front to back. The upper surface of the pressure strip abuts against the lower end face of the first stone plate, and the upper surface of the pressure strip abuts against the upper back of the second stone plate and the light strip assembly.

[0010] Furthermore, the aforementioned triangular frame also includes a reinforcing beam, the rear end of which is fixedly connected to the aforementioned vertical keel, and the front end of which is fixedly connected to the aforementioned first oblique keel and second oblique keel.

[0011] Furthermore, the cross-sections of the aforementioned pressure strip and the aforementioned tongue block are both triangular; the aforementioned sealing strip includes a vertical section and an inclined section, the aforementioned vertical section being sandwiched between the first stone plate and the second stone plate, and the aforementioned inclined section being sandwiched between the first stone plate and the light strip assembly.

[0012] Furthermore, the lower end of the first stone slab is provided with a groove with a V-shaped cross-section, and the two inner sidewalls of the groove respectively abut against the vertical section and the inclined section.

[0013] Furthermore, the aforementioned light strip assembly includes an aluminum alloy strip, a light-transmitting cover, and a light strip. One side of the aluminum alloy strip is provided with a triangular protrusion for abutting against an elastic sealing element, and the other side is provided with a protruding edge. The two sides of the light-transmitting cover are respectively detachably snapped onto the triangular protrusion and the protruding edge. The light strip is assembled inside the cavity formed by the aluminum alloy strip and the light-transmitting cover.

[0014] An assembly method for a stone curtain wall with the structure described above includes the following steps:

[0015] (1) Arrange and fix multiple triangular frames at intervals along the left and right directions on the wall surface;

[0016] (2) The upper end of the second stone slab is hung on two adjacent first oblique keels by interlocking the first hook and the first hook; at the same time, the lower end of the second stone slab is hung on two adjacent second oblique keels by interlocking the second hook and the second hook; the left and right sides of the second stone slab are fixedly connected to the two adjacent second oblique keels by adhesive backing.

[0017] (3) Place the pressure strip of the elastic seal into the mounting groove and press the elastic seal into the mounting groove;

[0018] (4) Place the first stone slab on the two adjacent first inclined keels and press the first stone slab against the elastic seal; at the same time, the left and right sides of the first stone slab are fixedly connected to the two adjacent first inclined keels by adhesive backing.

[0019] (5) Fix the bottom surface of the light strip assembly to the upper surface of the second stone plate with glass glue, and press the light strip assembly against the elastic sealant.

[0020] Furthermore, step (1) above specifically includes:

[0021] During the wall construction process, embedded parts are inserted and connecting ears are welded to the surface of the metal parts to form the first connecting seat and the second connecting seat;

[0022] The upper ends of the vertical keel and the upper ends of the first oblique keel are fixedly connected to the first connecting seat by bolts;

[0023] The lower ends of the vertical keel and the second oblique keel are fixedly connected to the second connecting seat by bolts; the lower ends of the first oblique keel and the upper ends of the second oblique keel are fixedly connected by welding.

[0024] The front and rear ends of the reinforcing beam are fixedly connected to the vertical keel and the second diagonal keel by welding.

[0025] Furthermore, step (1) above also includes: fixing at least one first horizontal keel between two adjacent first oblique keels by welding, and fixing at least one second horizontal keel between two adjacent second oblique keels by welding; in step (2) above, the first stone slab is fixedly connected to the first horizontal keel by adhesive backing; in step (4) above, the second stone slab is bonded to the second horizontal keel by adhesive backing.

[0026] Compared with the prior art, the beneficial effects of the present invention are:

[0027] Firstly, in this invention, the second stone slab, under load, is tilted and hung upside down on the keel assembly by utilizing the first hook and second hook, respectively, in conjunction with the first and second mounting grooves. Based on this, an elastic seal and the first stone slab, under positive gravity, work together with the first hook to clamp the tongue of the second stone slab into the mounting groove, ensuring a secure installation. Simultaneously, the elastic seal allows for elastic contact between the first and second stone slabs to accommodate thermal expansion and contraction and ensure a tight seal. Thanks to this structure, no manual labor or other tools are needed to assist in fixing the second inclined keel during the adhesive curing process; the adhesive can complete the entire curing process without the second inclined keel shifting, effectively reducing air pockets between the second stone slab and the second inclined keel, and ensuring the effective working area and bonding strength of the cured adhesive.

[0028] Secondly, in this invention, the light strip assembly is semi-embedded between the first stone slab and the second stone slab, and the light strip assembly is used as the corner fitting between the stone slabs in the stone curtain wall, so that the light strip assembly is organically integrated into the stone curtain wall, giving the stone curtain wall a night view function, strengthening the structural strength of the stone curtain wall, and making the appearance neat.

[0029] Thirdly, in this invention, the triangular frame, the pressure strip of the elastic sealing element, and the tongue of the second stone slab all adopt a triangular structure, making full use of the stability of the triangle and the effect of gravity to enhance the structural strength of the stone curtain wall. The design is ingenious and the assembly effect is good. In addition, the groove opened at the lower end of the first stone slab further strengthens the installation strength of the first stone slab, allowing the first stone slab to better limit and lock the second stone slab in conjunction with the first hook. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the assembly structure of the stone curtain wall in this invention.

[0031] Figure 2 This is a schematic diagram showing the disassembly of the stone curtain wall in this invention.

[0032] Figure 3 for Figure 1 A magnified view of part A in the diagram.

[0033] Figure 4 This is a partial structural diagram of the first oblique keel in this invention.

[0034] Figure 5 This is a partial structural diagram of the second oblique keel in this invention.

[0035] Figure 6 This is a partial structural diagram of the second stone slab in this invention.

[0036] Figure 7This is a partial structural diagram of the elastic seal in this invention.

[0037] Figure 8 This is a partial structural diagram of the first stone material in this invention.

[0038] Figure 9 This is a partial structural diagram of the light strip assembly in this invention. Detailed Implementation

[0039] Specific embodiments of the present invention will now be described with reference to the accompanying drawings. Many details are described below to provide a comprehensive understanding of the invention; however, those skilled in the art will be able to implement the invention without these details.

[0040] To simplify the description, the accompanying drawings of this invention only show the assembly structure of one structural unit of the stone curtain wall. Those skilled in the art can arrange and combine this structural unit as needed to form a complete stone curtain wall. In actual construction, those skilled in the art can also splice and combine the irregularly shaped stone curtain wall disclosed in this invention with a planar conventional stone curtain wall as needed.

[0041] like Figures 1 to 5 As shown, a stone curtain wall with an assembly structure mainly includes a wall body 1, a keel assembly, a first stone slab 9, a second stone slab 7, an elastic sealing element 8, and a light strip assembly 9.

[0042] like Figures 1 to 5 As shown, the aforementioned keel assembly includes multiple triangular frames arranged along the left and right sides of the wall 1. Each triangular frame mainly comprises vertical keels 3, a first diagonal keel 5, and a second diagonal keel 6 connected end-to-end. Furthermore, the vertical keels 3 are vertically fixed to the wall. The vertical keels 3, the first diagonal keel 5, and the second diagonal keel 6 are, but are not limited to, made of steel alloy materials.

[0043] like Figures 1 to 5 As shown, in one specific embodiment, a first connecting seat 21 and a second connecting seat 22 are fixedly provided on the surface of the wall 1. More specifically, both the first connecting seat 21 and the second connecting seat 22 consist of embedded parts and connecting ears. The embedded parts are metal parts pre-embedded inside the wall during the construction of the wall 1, and the connecting ears are fixedly connected to the exposed end face of the embedded parts by welding, thereby forming the first connecting seat 21 and the second connecting seat 22 on the surface of the wall 1.

[0044] like Figures 1 to 5 As shown, the upper ends of the vertical keel 3 and the first oblique keel 5 are fixedly connected to the first connecting seat 21 by bolts; the lower ends of the vertical keel 3 and the second oblique keel 6 are fixedly connected to the second connecting seat 22 by bolts. The lower ends of the first oblique keel 5 and the upper ends of the second oblique keel 6 abut against each other and are fixedly connected by welding.

[0045] like Figures 1 to 5 As shown, in one specific embodiment, the above-mentioned keel assembly further includes a reinforcing beam 4, the front and rear ends of which are fixedly connected to the second oblique keel 6 of the vertical keel 3 by welding. Preferably, the lower end of the first oblique keel 5 is integrally formed with a first abutment plate 52, and the upper end of the second oblique keel 6 is integrally formed with a second abutment plate 61. The first abutment plate 52 and the second abutment plate 61 are stacked and welded together with the front end of the reinforcing beam 4.

[0046] like Figures 1 to 5 As shown, to facilitate adjustment of the installation position and verticality of the vertical keel 3, the through holes for bolts in the first connecting seat 21 and the second connecting seat 22 are horizontal strip holes, while the vertical keel 3 has vertical strip holes. Preferably, the vertical keel 3 is made of 40×50×1.2mm square steel to ensure its structural strength; the first oblique keel 5 and the second oblique keel 6 are made of 50×40×1.5mm L-shaped angle steel, achieving weight reduction and material saving while ensuring structural strength. Furthermore, in actual construction, the dimensions of the vertical keel 3 and the first oblique keel 5 should take into account the size and weight of the stone slab. For example, for heavy and large stone slabs, the dimensions of the vertical keel 3 and the first oblique keel 5 need to be appropriately increased.

[0047] like Figures 1 to 5 As shown, in one specific embodiment, in order to facilitate installation and fixing, and to facilitate connection with other boards in the vertical direction, the upper end of the first inclined keel 5 is integrally formed with a first vertical section 51, and the lower end of the second inclined keel 6 is integrally formed with a second vertical section 63.

[0048] like Figures 1 to 5 As shown, a first stone slab 9 is fixedly laid between two adjacent first diagonal keels 5. Specifically, the left and right edge areas of the back of the first stone slab 9 are fixedly connected to the two adjacent first diagonal keels 5 by adhesive backing, thereby laying the first stone slab 9 between two adjacent triangular frames. The adhesive backing includes, but is not limited to, dry-hanging AB glue.

[0049] like Figures 1 to 5 As shown, a second stone slab 7 is fixedly laid between two adjacent second diagonal keels 6, and the second stone slab 7 and the first stone slab 9 form a structural unit of an outwardly protruding irregular curtain wall. Specifically, a first hook 53 is fixedly provided at the lower end of the first diagonal keel 5, and a second hook 62 is fixedly provided at the lower end of the second diagonal keel 6.

[0050] like Figures 1 to 9As shown, the second stone slab 7 has a first mounting groove 71 at each of its two upper corners and a second mounting groove 72 at each of its two lower corners. The left and right edges of the back of the second stone slab 7 are fixedly connected to two adjacent second inclined keels 6 using adhesive backing, thus allowing the second stone slab 7 to be laid in an inverted, tilted manner between two adjacent triangular frames. Simultaneously, the first hook 53 engages with the inside of the first mounting groove 71, and the second hook 62 engages with the inside of the second mounting groove 72. The first hook 53, in conjunction with the first mounting groove 71, and the second hook 62, in conjunction with the second mounting groove 72, reinforce the inverted, tilted second inclined keels 6. Therefore, during the curing process of the adhesive backing, no manual or other tools are needed to assist in fixing the second inclined keels 6; simultaneously, the adhesive backing can complete the entire curing process without the second inclined keels 6 shaking, reducing air pockets between the second inclined keels 6, ensuring the effective working area of ​​the cured adhesive backing, and improving the bonding strength.

[0051] like Figures 1 to 5 As shown, preferably, the first hook 53 is integrally formed with the first oblique keel 5, and the second hook 62 is integrally formed with the second oblique keel 6, and both the first hook 53 and the second hook 62 are solid parts.

[0052] like Figures 1 to 5 As shown, the lower end of the light strip assembly 10 is fixed to the upper end of the second slab 7. A mounting groove 54 is formed between the first inclined keel 5 and the first hook portion 53. The elastic seal 8 includes an integrally formed pressure strip 81 and a sealing strip 82. A tongue block 711 is formed at the opening of the first hook groove 71 on the second slab 7. After assembly, the pressure strip 81 and the tongue block 711 are filled into the interior of the mounting groove 54, with the upper surface of the pressure strip 81 abutting against the lower end face of the first slab 9 and the upper surface of the pressure strip 81 abutting against the upper back face of the second slab 7 and the light strip assembly. Preferably, the cross-sections of the pressure strip 81 and the tongue block 711 are triangular to improve the stability of the assembly structure. A stepped surface 810 is formed between the pressure strip 81 and the sealing strip 82 to abut against the lower end of the first slab 9.

[0053] like Figures 1 to 9As shown, in one specific embodiment, the sealing strip 82 is divided into a vertical section 821 and an inclined section 822. The vertical section 821 is sandwiched between the first stone slab 9 and the second stone slab 7, while the inclined section is sandwiched between the first stone slab 9 and the light strip assembly 10. For this purpose, the lower end of the first stone slab 9 has a V-shaped groove 71. The two inner sidewalls of this groove 71 abut against the vertical section 821 and the inclined section 822 respectively, ensuring a tight seal between the first stone slab 9 and the sealing strip 82, improving waterproofing. The elastic sealing element 8 provides a specific elastic space between the first stone slab 9 and the second stone slab 7 to accommodate thermal expansion and contraction. Furthermore, the inclined first stone slab 9, the elastic sealing element 8, and the first hook 53 limit and clamp the tongue block 711, further reinforcing the second stone slab 7.

[0054] like Figures 1 to 9 As shown, in one specific embodiment, the light strip assembly 10 includes an aluminum alloy strip 101, a light-transmitting cover 102, and a light strip (not shown in the figure). One side of the aluminum alloy strip 101 has a triangular protrusion 1011 for abutting against an elastic sealing element, and the other side has a protruding edge 1012. The light-transmitting cover 102 is, but is not limited to, a plastic product. Both sides of the light-transmitting cover 102 are detachably snapped onto the triangular protrusion 1011 and the protruding edge 1012, respectively, forming a cavity for mounting the light strip. The light strip is, but is not limited to, a surface-mount LED light strip, with the back of the light strip fixed to the inner bottom surface of the aluminum alloy strip 101 using 3M adhesive or similar methods. After assembly, the outer wall of the triangular protrusion 1011 abuts against the inclined section 822. The design of the triangular protrusion 1011 strengthens the structural strength of the light strip assembly 10, making it less prone to deformation, thus providing some support for the first stone slab 9.

[0055] like Figures 1 to 9 As shown, since the light-transmitting surface of the light strip assembly 10 faces upward, it is particularly suitable for installation at a height of 2 meters or more above the ground, allowing the light strip assembly 10 to be out of sight. When installed at a height of less than 2 meters above the ground, to avoid glare, the light-transmitting surface of the light strip assembly 10 is preferably treated with a frosted finish to soften the light.

[0056] This invention also discloses an assembly method for a stone curtain wall structure as described above, comprising the following steps:

[0057] (1) Arranging and fixing multiple triangular frames at intervals along the left-right direction onto the surface of wall 1; specifically including:

[0058] (1.1) Embedded parts are embedded during the construction of wall 1, and connecting ears are welded to the surface of the metal parts to form the first connecting seat 21 and the second connecting seat 22;

[0059] (1.2) The upper end of the vertical keel 3 and the upper end of the first oblique keel 5 are fixedly connected to the first connecting seat 21 by bolts;

[0060] (1.3) The lower end of the vertical keel 3 and the lower end of the second oblique keel 6 are fixedly connected to the second connecting seat 22 by bolts; the lower end of the first oblique keel 5 and the upper end of the second oblique keel 6 are fixedly connected by welding.

[0061] (1.4) The front and rear ends of the reinforcing beam 4 are fixedly connected to the vertical keel 3 and the second diagonal keel 6 by welding respectively;

[0062] (1.5) At least one first horizontal keel (not shown in the figure) is fixedly connected between two adjacent first oblique keels 5 by welding, and at least one second horizontal keel (not shown in the figure) is fixedly connected between two adjacent second oblique keels 6 by welding. The specific positions of the first and second horizontal keels can be installed according to actual needs, with the aim of strengthening the structural strength of the keel assembly, and simultaneously using the first and second horizontal keels to reinforce the first stone slab 9 and the second stone slab 7 respectively. Taking the second horizontal keel as an example, the lower end of the second oblique keel 6 is integrally formed with a connecting plate 64, and the left and right ends of the second horizontal keel are fixedly welded to two adjacent connecting plates 64 respectively.

[0063] (2) Apply adhesive to two adjacent second oblique keels 6; hang the upper end of the second stone slab 7 on the two adjacent first oblique keels 5 through the mutual engagement of the first hook 71 and the first hook 53; at the same time, hang the lower end of the second stone slab 7 on the two adjacent second oblique keels 6 through the mutual engagement of the second hook 72 and the second hook 62, fix the left and right sides of the second stone slab 7 to the two adjacent second oblique keels 6 with adhesive, and also glue the second stone slab 7 to the aforementioned second horizontal keel with adhesive.

[0064] (3) Place the pressure strip 81 of the elastic seal 8 into the mounting groove 54 and press the elastic seal 8 into the mounting groove 54.

[0065] (4) Apply adhesive to two adjacent first oblique keels 5; place the first stone slab 9 on the two adjacent first oblique keels 5 and press the first stone slab 9 against the elastic sealing member 8; at the same time, the left and right sides of the first stone slab 9 are fixedly connected to the two adjacent first oblique keels 5 by adhesive, and the first stone slab 9 is fixedly connected to the first horizontal keel by adhesive.

[0066] (5) The bottom surface of the light strip assembly 10 is fixedly connected to the upper surface of the second stone plate 7 with glass glue, and the light strip assembly 10 is pressed against the elastic sealing member 8.

[0067] The above are merely specific embodiments of the present invention, but the design concept of the present invention is not limited thereto. Any non-substantial modifications made to the present invention using this concept shall be considered as infringing upon the protection scope of the present invention.

Claims

1. A stone curtain wall with an assembled structure, comprising a wall body and a keel assembly, characterized in that: The keel assembly includes multiple triangular frames arranged along the left and right sides of the wall. Each triangular frame includes a vertical keel, a first oblique keel, and a second oblique keel connected end to end. The vertical keel is vertically fixed to the wall. The lower end of the first oblique keel is fixed with a first hook, and the lower end of the second oblique keel is fixed with a second hook. The triangular frame also includes a reinforcing beam. The rear end of the reinforcing beam is fixedly connected to the vertical keel, and the front end is fixedly connected to the first oblique keel and the second oblique keel. A first stone slab is fixedly laid between two adjacent first oblique keels, and a second stone slab is fixedly laid between two adjacent second oblique keels. A first hook groove for engaging the first hook part is opened at both upper corners of the second stone slab, and a second hook groove for engaging the second hook part is opened at both lower corners of the second stone slab. It also includes a light strip assembly, the lower end of which is fixed to the upper end of the second stone slab; It also includes an elastic sealing element. An installation groove is formed between the first inclined keel and the first hook. A tongue is formed at the opening of the first hook groove on the second stone slab. The elastic sealing element includes a pressure strip, and a sealing strip is fixed at the upper end of the pressure strip. The pressure strip and the tongue are filled into the installation groove from front to back. The upper surface of the pressure strip abuts against the lower end face of the first stone slab, and the upper surface of the pressure strip abuts against the upper back face of the second stone slab and the light strip assembly. The cross-section of the pressure strip and the tongue is triangular. The sealing strip includes a vertical section and an inclined section. The vertical section is sandwiched between the first stone slab and the second stone slab, and the inclined section is sandwiched between the first stone slab and the light strip assembly. The lower end of the first stone slab is provided with a groove with a V-shaped cross-section. The two inner sidewalls of the groove abut against the vertical section and the inclined section, respectively. The light strip assembly includes an aluminum alloy strip, a light-transmitting cover, and a light strip. One side of the aluminum alloy strip is provided with a triangular protrusion for abutting against an elastic sealing element, and the other side is provided with a protruding edge. The two sides of the light-transmitting cover are detachably snapped onto the triangular protrusion and the protruding edge, respectively. The light strip is assembled inside the cavity formed by the aluminum alloy strip and the light-transmitting cover.

2. A method for assembling a stone curtain wall as described in claim 1, characterized in that, Includes the following steps: (1) Arrange and fix multiple triangular frames at intervals along the left and right directions on the wall surface; (2) The upper end of the second stone slab is hung on two adjacent first oblique keels by interlocking the first hook and the first hook; at the same time, the lower end of the second stone slab is hung on two adjacent second oblique keels by interlocking the second hook and the second hook; the left and right sides of the second stone slab are fixedly connected to the two adjacent second oblique keels by adhesive backing. (3) Place the pressure strip of the elastic seal into the mounting groove and press the elastic seal into the mounting groove; (4) Place the first stone slab on the two adjacent first inclined keels and press the first stone slab against the elastic seal; at the same time, the left and right sides of the first stone slab are fixedly connected to the two adjacent first inclined keels by adhesive backing. (5) Fix the bottom surface of the light strip assembly to the upper surface of the second stone slab with glass glue, and press the light strip assembly against the elastic sealant.

3. The assembly method according to claim 2, characterized in that, Step (1) specifically includes: During the wall construction process, embedded parts are inserted and connecting ears are welded to the surface of the metal parts to form the first connecting seat and the second connecting seat; The upper ends of the vertical keel and the upper ends of the first oblique keel are fixedly connected to the first connecting seat by bolts; The lower ends of the vertical keel and the second oblique keel are fixedly connected to the second connecting seat by bolts; the lower ends of the first oblique keel and the upper ends of the second oblique keel are fixedly connected by welding. The front and rear ends of the reinforcing beam are fixedly connected to the vertical keel and the second diagonal keel by welding.

4. The assembly method according to claim 3, characterized in that, Step (1) further includes: fixing at least one first horizontal keel between two adjacent first oblique keels by welding, and fixing at least one second horizontal keel between two adjacent second oblique keels by welding; in step (2), the first stone slab is fixedly connected to the first horizontal keel by adhesive backing; in step (4), the second stone slab is bonded to the second horizontal keel by adhesive backing.

Citation Information

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