Splicing structure of fire rescue window of dragon scale plate curtain wall

CN224813342UActive Publication Date: 2026-09-29GUANGDONG CONSTAR CONSTR GRP CO LTD
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Patent Information

Application Number
CN202521832057.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2026-09-29
Estimated Expiration
2035-08-26

AI Technical Summary

Technical Problem

[0007]本实用新型的目的在于提供一种龙鳞板幕墙消防救援窗的拼接结构,以解决上述背景技术提出在龙鳞板幕墙上设置救援窗容易影响救援窗开启角度以及影响整体外观一致性的问题

Benefits of technology

[0039]与现有技术相比,本实用新型的有益效果是:该龙鳞板幕墙消防救援窗的拼接结构;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of splicing structures of dragon scale plate curtain wall fire rescue window, it is related to the technical field of curtain wall fire rescue equipment, including structural wall, first half dragon scale plate and second half dragon scale plate, glass window module, inlay installation in structural wall mouth, rescue window module, set in structural wall mouth outside and with the glass window module correspond, support module, install on structural wall outside keel, the rescue window module is hinged on the support module, the splicing structure of this dragon scale plate curtain wall fire rescue window is divided into first half dragon scale plate and second half dragon scale plate by being split along obtuse angle diagonal line of dragon scale plate, and first half dragon scale plate and second half dragon scale plate are single column assembled along its length direction on rescue window module, so that the overall layout of the dragon scale plate curtain wall of building outer wall will not be affected, the appearance consistency of overall dragon scale plate curtain wall can also be ensured, and the dragon scale plate arrangement at fire rescue window place will not affect.
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Description

Technical Field

[0001] This application relates to the technical field of curtain wall fire rescue equipment, and in particular to a splicing structure for a dragon scale panel curtain wall fire rescue window. Background Technology

[0002] The dragon scale panel curtain wall uses a diamond-shaped aluminum plate or frame as a base, with two inverted V-shaped aluminum plates extending from its two acute angles towards the center at different angles. These are referred to as the outer panel 81 and the inner panel 82, respectively. The joints of the outer panel 81 and the inner panel 82 are staggered, and a light-transmitting panel 83 and a light trough are arranged at the intersection to achieve an luminous dragon scale shape. When arranged on the exterior facade of a building, it can greatly enhance the overall aesthetic appeal of the building. Figure 1 As shown;

[0003] For high-rise buildings or densely populated commercial buildings, fire rescue windows must be installed in accordance with regulations to meet fire protection requirements and allow outdoor fire rescue personnel to enter. Generally, for conventional curtain wall materials such as glass and aluminum panels, fire rescue personnel can quickly break the windows to enter the building by using easily breakable fixed glass and detachable aluminum panels.

[0004] For example, the fire rescue window for a metal panel curtain wall proposed in application number CN202010322192.3 includes a window body hinged to the curtain wall opening, a locking element for locking the window body between the window body and the curtain wall opening, and a fixing rod fixed to the inner edge of the window body. A baffle is fixedly connected to the end of the fixing rod away from the window body, a handle is fixedly fixed to the outer side of the window body, a stop plate and an elastic element connected to the stop plate are movably connected to the fixing rod, and a fixing plate is fixedly fixed to the inner wall of the curtain wall opening for the stop plate to abut against the side of the window body. This invention allows the fire rescue window to be opened outward by more than 90° from either the inside or the outside, and the multiple vertically arranged locking elements can be used to open the window when firefighters are at different heights. This solves the problem of difficult installation of fire rescue windows on large metal curtain walls and ensures the uniformity of building facade materials and style.

[0005] However, for dragon scale panel curtain walls, the outer surface is not the flat surface of conventional aluminum panel curtain walls. It has regular protrusions distributed on it, and the diamond-shaped dragon scale panels do not match the rectangular shape of the pre-set curtain wall opening. This means that when setting up rescue windows, it is necessary to consider that when the rescue window is opened, the dragon scale panels on the curtain wall should not interfere with the dragon scale panels arranged on the rescue window, so as not to reduce the opening angle of the rescue window and affect the efficiency of fire rescue. Secondly, when arranging the dragon scale panels on the rescue window, it is necessary to ensure that the rescue window can be opened smoothly, while not causing significant damage to the appearance consistency of the dragon scale panel curtain wall.

[0006] Therefore, we propose a splicing structure for fire rescue windows in dragon scale panel curtain walls to solve the problems mentioned above. Utility Model Content

[0007] The purpose of this utility model is to provide a splicing structure for fire rescue windows on dragon scale panel curtain walls, so as to solve the problem mentioned in the background art that setting rescue windows on dragon scale panel curtain walls can easily affect the opening angle of the rescue windows and affect the overall appearance consistency.

[0008] To achieve the above objectives, this utility model provides the following technical solution: a splicing structure for a fire rescue window of a dragon scale panel curtain wall, comprising a structural wall, a first half dragon scale panel, and a second half dragon scale panel;

[0009] Glass window modules are embedded in the openings of the structural wall.

[0010] A rescue window module is installed on the outside of the opening in the structural wall and corresponds to the glass window module;

[0011] A support module is installed on the outer keel of the structural wall, and the rescue window module is hinged to the support module;

[0012] Locking module, used to lock the non-hinged side of the rescue window module;

[0013] The first half-dragon scale plate and the second half-dragon scale plate are divided along the obtuse angle diagonal of the dragon scale plate and both include a bottom edge and two waist edges. The first half-dragon scale plate is composed of an outer plate, and the second half-dragon scale plate is composed of an inner plate, a light-transmitting plate and part of the outer plate. The outward convex pole is located on the second half-dragon scale plate and is close to the bottom edge of the second half-dragon scale plate.

[0014] The rescue window module has multiple complete first and second half dragon scale plates assembled in a single column along the vertical direction to form a splicing plate. The surface area of ​​the splicing plate is larger than the area of ​​the rescue window module, and the waist edges of adjacent first and second half dragon scale plates are attached to each other. The bottom edge of the second half dragon scale plate on the rescue window module is close to the support module.

[0015] Preferably, the rescue window module includes a window frame, a first support frame for supporting the bottom edge of the first semi-dragon scale plate, and a second support frame for supporting the bottom edge of the second semi-dragon scale plate, wherein the second support frame is hinged to the support module.

[0016] With the above-mentioned structural design, the window frame provides a stable installation foundation for the first and second semi-scale panels. The first and second support frames support the bottom edges of the two types of semi-scale panels respectively, ensuring the firm installation of the splicing panel on the rescue window module. The second support frame is hinged to the support module, providing a structural foundation for the flip-opening of the rescue window module and ensuring that it can be opened smoothly.

[0017] Preferably, the support module includes:

[0018] A supporting angle steel is fixed to the keel on the bottom side of the second half of the dragon scale plate on the structural wall near the rescue window module. It has a short side and a long side. The short side is fixed to the keel, and the long side is used to support the first half of the dragon scale plate on the structural wall adjacent to the rescue window module.

[0019] A two-dimensional adjustable concealed hinge is used to achieve the hinge connection between the supporting angle steel and the second support frame.

[0020] The above-mentioned structural design ensures the stability of the overall installation of the support module by fixing the short side of the supporting angle steel to the keel. The long side not only supports the first half of the keel plate adjacent to the rescue window module on the structural wall, but also provides installation space for the two-dimensional adjustable hidden hinge. The two-dimensional adjustable hidden hinge enables flexible hinge connection between the supporting angle steel and the second support frame. Its adjustment function facilitates on-site adjustment of the installation position and angle of the rescue window module, ensuring the accuracy of splicing, while also achieving a large opening angle.

[0021] Preferably, a rib plate is added and fixed to the supporting angle steel, and its two adjacent right-angled sides are welded and fixed to the long side and short side of the supporting angle steel, respectively.

[0022] The above-mentioned structural design, with the ribs welded and fixed to the long and short sides of the supporting angle steel, forms a stable triangular support structure. This significantly enhances the overall structural strength and load-bearing capacity of the supporting angle steel, enabling it to better support the weight of the rescue window module and splicing plate, preventing deformation of the supporting angle steel during long-term use, and ensuring the stable operation of the rescue window module.

[0023] Preferably, the two-dimensional adjustable concealed hinge includes:

[0024] The L-shaped base has two parts, which are respectively used to fix the support angle steel and the second support frame, and has a first hinge point and a second hinge point.

[0025] The connecting rod has two parts, and its ends are respectively hinged to the two first hinge points;

[0026] The hinge rod has two hinges that are hinged together at the middle. One end of the hinge rod is hinged to the adjacent connecting rod, and the other end is hinged to the adjacent second hinge point. The end of the hinge rod near the second hinge point has a bent portion, and the inner angles of the two bent portions are arranged opposite each other.

[0027] With the above-mentioned structural design, the L-shaped base is firmly connected to the supporting angle steel and the second support frame, providing installation fulcrum for other components of the hinge; the mutual hinge of the connecting rod and the hinge rod forms a multi-link mechanism, which, together with the design of the bending part, not only enables the smooth flipping of the rescue window module, but also limits the flipping angle to avoid over-opening, while ensuring structural stability during opening and closing. The maximum opening angle can reach 160° to 180°, meeting the needs of fire rescue for large opening angles.

[0028] Preferably, a waterproof strip is provided between the supporting angle steel and the second support frame, and the side of the waterproof strip away from the glass window module is provided with a coating that is the same color as the dragon scale plate.

[0029] With the above-mentioned structural design, the waterproof strip can seal the gap between the supporting angle steel and the second support frame, effectively preventing external rainwater, dust and other substances from intruding into the inside of the rescue window module, preventing the internal moving parts from being corroded and affecting their smooth operation; while the coating with the same color as the dragon scale panel makes the waterproof strip visually unified with the surrounding dragon scale panel, beautifying the appearance of the joint and ensuring the overall appearance consistency of the dragon scale panel curtain wall.

[0030] Preferably, the locking module includes:

[0031] The locking post is rotatably installed on the side of the bottom edge of the first semi-dragon scale plate near the window frame;

[0032] A locking piece is fixedly attached to one end of the locking post that extends to the inside of the window frame;

[0033] The latch is installed on the outer keel of the structural wall. When the rescue window module is flipped to be flush with the structural wall and the locking plate is rotated to correspond with the latch, the locking plate is located on the side of the latch closer to the glass window module.

[0034] The above-described structure allows the locking plate to rotate by turning the locking pin. When the locking plate engages with the latch, it can stably lock the rescue window module in a position flush with the structural wall, preventing accidental opening. When opening is required, the locking pin can be rotated in the opposite direction to separate the locking plate from the latch. This convenient operation ensures the stability of the rescue window module in non-rescue mode and its rapid opening during rescue.

[0035] Preferably, a sleeve is provided on the structural wall opening between the glass window module and the rescue window module, and the sleeve is filled with a layer of fireproof rock wool.

[0036] The above-mentioned structural design provides both decoration and protection for the wall openings in the structural walls, making them look neater. The internal fireproof rock wool layer has excellent fireproof and heat insulation properties, which can delay the spread of fire and reduce heat transfer in the event of a fire, buying time for fire rescue and improving the fire safety performance of the building.

[0037] Preferably, the glass window module includes double-layered tempered glass with ultra-clear glass and an aluminum alloy window frame.

[0038] With the above-mentioned structural design, the double-glazed tempered glass with ultra-clear glass has high strength and safety, is not easy to break, and even if it does break, it will form small fragments without sharp edges, reducing the risk of injury. At the same time, the hollow structure gives it good heat insulation and sound insulation performance, which can improve the comfort of living and using the building. The aluminum alloy window frame has the advantages of high strength, corrosion resistance, and light weight, providing a stable installation frame for the tempered glass and ensuring the overall stability and service life of the glass window module.

[0039] Compared with the prior art, the beneficial effects of this utility model are: the splicing structure of the fire rescue window of the dragon scale panel curtain wall;

[0040] 1. By dividing the dragon scale panel into a first half and a second half along its obtuse diagonal, and then assembling the first and second half dragon scale panels in a single row along the length of the rescue window module, the overall layout of the dragon scale panel curtain wall on the building exterior will not be affected. This also ensures that the arrangement of the dragon scale panels at the fire rescue window will not affect the overall appearance consistency of the dragon scale panel curtain wall. Furthermore, by setting the surface area of ​​the splicing panel to be larger than the area of ​​the rescue window module, the first and second half dragon scale panels do not need to follow the shape of the rescue window module when splicing. They only need to completely cover the rescue window module, eliminating the need for secondary division of the dragon scale panel and reducing construction difficulty.

[0041] 2. By setting the support module on the side of the rescue window module close to the bottom plate of the second half of the dragon scale plate, when the rescue window module is opened for fire rescue, the rescue window module flips from the high point to the low point of the outer slope of the dragon scale plate. This can effectively avoid the interference of the extreme point of the outer slope of the dragon scale plate on the flipping of the rescue window module, and ensure that the opening angle of the rescue window module is large enough, much larger than the opening angle of the side of the rescue window module close to the bottom plate of the first half of the dragon scale plate as the flipping edge.

[0042] 3. By installing waterproof sealing strips, the joint between the first half of the dragon scale panel on the structural wall and the second half of the dragon scale panel on the rescue window module can be sealed in a waterproof manner without affecting the smooth opening of the rescue window module. This effectively prevents external rainwater and dust from penetrating the inside of the rescue window module over a long period of time, causing erosion to the moving parts inside and affecting their smooth operation. Furthermore, the waterproof sealing strips are coated with a coating of the same color as the dragon scale panels, which helps to beautify the joints and improve the consistency of the dragon scale panel curtain wall appearance. Attached Figure Description

[0043] Figure 1 This is a side view of a single dragon scale panel curtain wall in the background technology;

[0044] Figure 2 This is a schematic diagram of the dragon scale plate being divided into a first half dragon scale plate and a second half dragon scale plate according to an embodiment of this application;

[0045] Figure 3 This is a schematic diagram of the distribution of fire rescue windows on the dragon scale panel curtain wall according to an embodiment of this application;

[0046] Figure 4 This is a schematic diagram of the rescue window module from the inside view in an embodiment of this application;

[0047] Figure 5 It is along Figure 3 Schematic diagram of the cross-sectional structure along line AA;

[0048] Figure 6 yes Figure 5 A magnified view of part B in the middle section;

[0049] Figure 7 yes Figure 5 A magnified view of part C in the diagram.

[0050] In the diagram: 1. Glass window module; 11. Tempered glass; 12. Aluminum alloy window frame;

[0051] 2. Rescue window module; 21. Window frame; 22. Second support frame;

[0052] 3. Spliced ​​panel; 31. First half of the dragon scale panel; 32. Second half of the dragon scale panel;

[0053] 41. Supporting angle steel; 42. Rib plate; 43. Waterproof sealing strip;

[0054] 51. L-shaped base; 511. First hinge point; 512. Second hinge point; 52. Connecting rod; 53. Hinge rod; 531. Bending part;

[0055] 61. Lock pin; 62. Lock plate; 63. Lock catch;

[0056] 71. Encasing; 72. Fireproof rock wool layer;

[0057] 81. Outer panel; 82. Inner panel; 83. Translucent panel;

[0058] 9. Structural walls. Detailed Implementation

[0059] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0060] Please see Figure 2-4 This utility model provides a technical solution: a splicing structure for a fire rescue window of a dragon scale panel curtain wall, including a structural wall 9, a first half dragon scale panel 31 and a second half dragon scale panel 32, and a glass window module 1, which is embedded in the opening of the structural wall 9. Specifically, it includes hollow ultra-white double-layer tempered glass 11 and an aluminum alloy window frame 12, which is set to a sealed normally closed state or an inwardly opening sash state.

[0061] Rescue window module 2 is set on the outside of the opening in structural wall 9 and corresponds to glass window module 1;

[0062] The support module is installed on the outer keel of the structural wall 9 to support the rescue window module 2, which is hinged to the support module.

[0063] A locking module is used to lock the non-hinged side of rescue window module 2;

[0064] The first half-dragon scale plate 31 and the second half-dragon scale plate 32 are divided along the obtuse angle diagonal of the dragon scale plate and both include a bottom edge and two waist edges. The first half-dragon scale plate 31 is composed of an outer plate 81, and the second half-dragon scale plate 32 is composed of an inner plate 82, a light-transmitting plate 83 and part of the outer plate 81. The outward convex pole of the dragon scale plate is located on the second half-dragon scale plate 32 and is close to the bottom edge of the second half-dragon scale plate 32.

[0065] Reference Figure 3-5 Multiple complete first half-dragon scale plates 31 and second half-dragon scale plates 32 are assembled in a single column along the vertical direction to form a splicing plate 3. The surface area of ​​the splicing plate 3 is larger than the area of ​​the rescue window module 2, and the adjacent first half-dragon scale plates 31 and second half-dragon scale plates 32 are attached to each other at the waist and opposite each other at the bottom. The bottom edge of the second half-dragon scale plate 32 on the rescue window module 2 is close to the support module.

[0066] Therefore, by dividing the dragon scale panel into a first half dragon scale panel 31 and a second half dragon scale panel 32 along its obtuse diagonal, and assembling the first half dragon scale panel 31 and the second half dragon scale panel 32 in a single row along the length of the rescue window module 2, the overall layout of the dragon scale panel curtain wall of the building exterior wall will not be affected, and the arrangement of the dragon scale panels at the fire rescue window will not affect the overall appearance consistency of the dragon scale panel curtain wall. Moreover, by setting the surface area of ​​the splicing plate 3 to be larger than the area of ​​the rescue window module 2, the first half dragon scale panel 31 and the second half dragon scale panel 32 do not need to follow the shape of the rescue window module 2 when splicing, and only need to completely cover the rescue window module 2, without the need for secondary division of the dragon scale panel, thus reducing the construction difficulty.

[0067] Furthermore, by setting the support module on the side of the rescue window module 2 close to the bottom plate of the second half of the dragon scale plate 32, when the rescue window module 2 is opened for fire rescue, the rescue window module 2 flips from the high point of the outer plate 81 slope to the low point of the outer plate 81 slope on the outer protrusion. This can effectively avoid the interference of the highest point of the outer plate 81 slope at the extreme point of the outer protrusion of the dragon scale plate on the flipping of the rescue window module 2, and ensure that the opening angle of the rescue window module 2 is large enough, much larger than the opening angle of the side of the rescue window module 2 close to the bottom plate of the first half of the dragon scale plate 31 as the flipping edge.

[0068] Specifically, to ensure the stable opening of rescue window module 2, refer to Figure 5 and Figure 6 The rescue window module 2 includes a window frame 21, a first support frame for supporting the bottom edge of the first semi-dragon scale plate 31, and a second support frame 22 for supporting the bottom edge of the second semi-dragon scale plate 32. The second support frame 22 is hinged to the support module.

[0069] The support module includes: a support angle steel 41, which is fixed to the keel on the bottom side of the second half of the dragon scale plate 32 on the structural wall 9 near the rescue window module 2. It has a short side and a long side. The short side is fixed to the keel, and the long side is used to support the first half of the dragon scale plate 31 on the structural wall 9 adjacent to the rescue window module 2.

[0070] Two-dimensional adjustable concealed hinges are used to achieve the hinge connection between the supporting angle steel 41 and the second support frame 22, and its maximum opening angle can reach 160°~180°;

[0071] The rib plate 42 is fixed to the supporting angle steel 41, and its two adjacent right-angled sides are welded and fixed to the long side and short side of the supporting angle steel 41, respectively.

[0072] The two-dimensional adjustable concealed hinge includes: an L-shaped base 51, which has two parts and is respectively used to fix to the long side of the supporting angle steel 41 and the second support frame 22, and has a first hinge point 511 and a second hinge point 512.

[0073] The connecting rod 52 has two parts, and its ends are respectively hinged to two first hinge points 511;

[0074] The hinge rod 53 has two hinges that are hinged together at the middle. One end of the hinge rod 53 is hinged to the adjacent connecting rod 52, and the other end is hinged to the adjacent second hinge point 512. The end of the hinge rod 53 near the second hinge point 512 has a bent portion 531, and the inner angles of the two bent portions 531 are arranged opposite each other.

[0075] Furthermore, a waterproof strip 43 is provided between the supporting angle steel 41 and the second support frame 22. Specifically, two waterproof strips 43 can be provided and arranged on the second support frame 22 and the supporting angle steel 41 respectively, so that the two waterproof strips 43 can also provide a certain degree of water and dust protection during the flipping process of the rescue window module 2. The side of the waterproof strip 43 away from the glass window module 1 is provided with a coating with the same color as the dragon scale plate.

[0076] Therefore, by setting up the support frame angle steel with long side, a large installation space can be formed between the dragon scale panel curtain wall and the structural wall 9, which is used to install two-dimensional adjustable hidden hinges to maximize the opening angle of the rescue window module 2; at the same time, it is convenient to make easy adjustment of the splicing flatness of the first half dragon scale panel 31 on the structural wall 9 and the second half dragon scale panel 32 on the rescue window module 2, which facilitates on-site construction operations.

[0077] The waterproof strip 43 is installed to waterproof and seal the joint between the first half of the dragon scale panel 31 on the structural wall 9 and the second half of the dragon scale panel 32 on the rescue window module 2. At the same time, it does not affect the smooth opening of the rescue window module 2, and effectively prevents external rainwater and dust from penetrating the inside of the rescue window module 2 for a long time, causing corrosion to the various moving parts inside and affecting the smoothness of movement. In addition, the waterproof strip 43 is coated with a coating of the same color as the dragon scale panel, which helps to beautify the joint and improve the consistency of the dragon scale panel curtain wall appearance.

[0078] Reference Figure 5 and Figure 7 The locking module includes: a locking pin 61, which is rotatably mounted on the side of the bottom edge of the first half-dragon scale plate 31 near the top of the window frame 21;

[0079] Locking plate 62 is fixedly connected to one end of locking post 61 that extends to the inside of window frame 21;

[0080] The latch 63 is installed on the outer keel of the structural wall 9. When the rescue window module 2 is flipped to be flush with the structural wall 9 and the locking piece 62 is rotated to correspond with the latch 63, the locking piece 62 is located on the side of the latch 63 that is closer to the glass window module 1.

[0081] Therefore, by rotating the locking pin 61, such as by inserting a key into the locking pin 61, the rescue window module 2 can be easily opened and locked.

[0082] Secondly, a sleeve 71 is installed on the wall of the structural wall 9 between the glass window module 1 and the rescue window module 2, and the sleeve 71 is filled with a fireproof rock wool layer 72.

[0083] This completes a series of tasks. The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0084] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A splicing structure for a fire rescue window in a dragon scale panel curtain wall, comprising a structural wall (9), a first half dragon scale panel (31), and a second half dragon scale panel (32), characterized in that: A glass window module (1) is embedded in the opening of the structural wall (9); The rescue window module (2) is set outside the opening in the structural wall (9) and corresponds to the glass window module (1); The support module is installed on the outer keel of the structural wall (9), and the rescue window module (2) is hinged to the support module; Locking module for locking the non-hinged side of rescue window module (2); The first half-dragon scale plate (31) and the second half-dragon scale plate (32) are divided along the obtuse angle diagonal of the dragon scale plate and both include a bottom edge and two waist edges. The first half-dragon scale plate (31) is composed of an outer plate (81). The second half-dragon scale plate (32) is composed of an inner plate (82), a light-transmitting plate (83) and part of the outer plate (81). The outward convex pole is located on the second half-dragon scale plate (32) and close to the bottom edge of the second half-dragon scale plate (32). Multiple complete first half-dragon scale plates (31) and second half-dragon scale plates (32) are assembled in a single column along the vertical direction on the rescue window module (2) to form a splicing plate (3). The surface area of ​​the splicing plate (3) is larger than the area of ​​the rescue window module (2), and the waist edges of adjacent first half-dragon scale plates (31) and second half-dragon scale plates (32) are attached to each other. The bottom edge of the second half-dragon scale plate (32) on the rescue window module (2) is close to the support module.

2. The splicing structure of a fire rescue window for a dragon scale panel curtain wall according to claim 1, characterized in that, The rescue window module (2) includes a window frame (21), a first support frame for supporting the bottom edge of the first semi-dragon scale plate (31), and a second support frame (22) for supporting the bottom edge of the second semi-dragon scale plate (32). The second support frame (22) is hinged to the support module.

3. The splicing structure of a fire rescue window for a dragon scale panel curtain wall according to claim 2, characterized in that, The support module includes: A supporting angle steel (41) is fixed to the keel on the bottom side of the second half-scale plate (32) on the structural wall (9) near the rescue window module (2). It has a short side and a long side. The short side is fixed to the keel, and the long side is used to support the first half-scale plate (31) on the structural wall (9) adjacent to the rescue window module (2). A two-dimensional adjustable concealed hinge is used to achieve the hinge connection between the supporting angle steel (41) and the second support frame (22).

4. The splicing structure of a fire rescue window for a dragon scale panel curtain wall according to claim 3, characterized in that, Also includes: The rib plate (42) is fixed to the supporting angle steel (41), and its two adjacent right-angled sides are welded and fixed to the long side and short side of the supporting angle steel (41) respectively.

5. The splicing structure of a fire rescue window for a dragon scale panel curtain wall according to claim 3, characterized in that, The two-dimensional adjustable concealed hinge includes: The L-shaped base (51) has two parts, which are respectively used to fix the support angle steel (41) and the second support frame (22), and have a first hinge point (511) and a second hinge point (512). The connecting rod (52) has two parts, and its ends are respectively hinged to the two first hinge points (511); The hinge rod (53) has two hinges at the middle, one end of which is hinged to the adjacent connecting rod (52), and the other end is hinged to the adjacent second hinge point (512). The end of the hinge rod (53) near the second hinge point (512) has a bend (531), and the inner angles of the two bends (531) are arranged opposite each other.

6. The splicing structure of a fire rescue window for a dragon scale panel curtain wall according to claim 3, characterized in that, A waterproof strip (43) is provided between the supporting angle steel (41) and the second support frame (22), and the waterproof strip (43) is provided with a coating of the same color as the dragon scale plate on the side away from the glass window module (1).

7. The splicing structure of a dragon scale panel curtain wall fire rescue window according to claim 2, characterized in that, The locking module includes: Locking post (61) is rotatably mounted on the side of the bottom edge of the first semi-dragon scale plate (31) near the window frame (21); Locking plate (62) is fixed to one end of the locking post (61) extending to the inside of the window frame (21); The latch (63) is installed on the outer keel of the structural wall (9). When the rescue window module (2) is flipped to be flush with the structural wall (9) and the locking piece (62) is rotated to correspond with the latch (63), the locking piece (62) is located on the side of the latch (63) close to the glass window module (1).

8. The splicing structure of a fire rescue window for a dragon scale panel curtain wall according to claim 1, characterized in that, A sleeve (71) is provided on the wall of the structural wall (9) between the glass window module (1) and the rescue window module (2), and the sleeve (71) is filled with a fireproof rock wool layer (72).

9. The splicing structure of a fire rescue window for a dragon scale panel curtain wall according to claim 1, characterized in that, The glass window module (1) includes hollow, ultra-clear double-layer tempered glass (11) and an aluminum alloy window frame (12).

Citation Information

Patent Citations

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