Louver hollow glass window frame structure with built-in drying function

By installing drying tubes and molecular sieves in the frame of the louvered hollow glass window, combined with the detachable connection of buckles and bending components, the problem of insufficient contact between the spacer strip and air is solved, achieving a more efficient drying effect and a fixed structure.

CN223482566UActive Publication Date: 2025-10-28SICHUAN SHUANGHUA TECH DEV CO LTD
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Patent Information

Application Number
CN202423011136.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-10-28
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

In existing hollow glass structures with built-in blinds, the spacer strip cannot fully contact the air inside the hollow cavity, resulting in reduced drying efficiency.

Method used

A drying tube is installed between the louver frame and the cover plate. The drying tube is filled with molecular sieves and has a through hole on the side closest to the louver. The drying tube is fixed by a detachable connection, and the fixing is achieved by a combination of buckles and bending parts. The sealing effect is further enhanced by the use of sealant and partitions.

Benefits of technology

The increased contact area between the drying tube and the air in the hollow cavity enhances the drying effect, while the detachable connection and sealing structure ensure a secure fit, thus improving the overall drying efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shutter hollow glass window frame structure with a built-in drying function, and belongs to the technical field of built-in shutter hollow glass window frame structures. The shutter hollow glass window frame structure with the built-in drying function comprises a body, the body comprises a pair of glass, a hollow cavity is formed between the bottom ends and the upper ends of the pair of glass, shutter frames are arranged on the two sides of the interior of the hollow cavity, a shutter blind is arranged between the pair of shutter frames, and cover plates are arranged at the upper ends of the pair of shutter frames. Drying pipes are arranged on the sides, close to the center, between the shutter frame and the cover plate, the pair of drying pipes are filled with molecular sieves, a plurality of through holes are formed in the sides, close to the shutter blind, of the pair of drying pipes, and grooves are formed in the upper ends and the bottom ends of the pair of drying pipes; the inner bottom end of the shutter frame and the bottom end of the cover plate are located in the groove and connected with protruding blocks, and the opposite ends of the pair of protruding blocks extend into the groove and are in clearance fit with the groove.
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Description

Technical Field

[0001] This utility model relates to the technical field of insulated glass window frame structure with built-in louvers, specifically an insulated glass window frame structure with built-in drying function. Background Technology

[0002] Venetian blind insulated windows, also known as internally mounted Venetian blinds insulated windows, are a new product where blinds are installed inside the cavity of an insulated glass unit. They are typically opened and closed manually using a pull cord, magnetic blocks, or mechanical methods. Utilizing advanced technology, the blinds are installed entirely within the insulated glass unit, using magnetic force to control them. The angle of the blinds within the insulated glass unit can be adjusted to allow full light transmission, partial light transmission, or complete blackout, while simultaneously allowing full light transmission when the blinds are fully extended. Insulated windows typically have high-strength, low-thermal-conductivity side frames around the perimeter of the glass as fixed supports to ensure the structural stability of the window itself.

[0003] Based on the above, the inventors have discovered the following problems: the current built-in louvered hollow glass structure consists of two glass panels with a certain distance between them. It requires a spacer strip inside the hollow glass to fix the glass panels and control their distance. The spacer strip has many small holes on its surface and is filled with desiccant to absorb water molecules in the air. However, the spacer strip is usually installed on one side of the louvered frame, which blocks the front of the spacer strip, preventing it from being exposed to the air inside the hollow cavity and thus reducing the drying efficiency.

[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and provided a louvered insulated glass window frame structure with built-in drying function, in order to achieve a more practical purpose. Utility Model Content

[0005] The purpose of this invention is to provide a louvered insulated glass window frame structure with built-in drying function to solve the problems mentioned in the background art.

[0006] In view of the above problems, the technical solution proposed by this utility model is as follows:

[0007] A louvered insulated glass window frame structure with built-in drying function includes a main body. The main body includes a pair of glass panes, with a hollow cavity formed between the bottom and top ends of the pair of glass panes. Louvered frames are provided on both sides of the interior of the hollow cavity. A louvered curtain is provided between the pair of louvered frames, and a cover plate is provided at the top end of each pair of louvered frames. A drying tube is provided on the side of each pair of drying tubes near the center between the louvered frames and the cover plate. The interior of each pair of drying tubes is filled with molecular sieves, and several through holes are opened on the side of each pair of drying tubes near the louvered curtain. Grooves are opened at the top and bottom ends of each pair of drying tubes. The bottom end of the interior of the louvered frames and the bottom end of the cover plate are connected to protrusions in the grooves. The opposite ends of each pair of protrusions extend into the interior of the grooves and are fitted with the grooves with a gap.

[0008] Furthermore, a second bend is connected to the bottom end of the cover plate near the groove, and a first bend is connected to the upper end of the louver frame near the second bend, with the first bend and the second bend engaging with each other.

[0009] The beneficial effect of adopting the above-mentioned further solution is that by setting the first bending part and the second bending part, and the first bending part and the second bending part engaging with each other, the cover plate and the louver frame are fixed to each other on one side, thereby limiting the drying tube between the cover plate and the louver frame on one side.

[0010] Furthermore, the cover plate is connected to a second buckle at the end away from the groove, and the upper end of the louver frame is connected to a first buckle near the second buckle, with the first buckle and the second buckle engaging with each other.

[0011] The beneficial effect of adopting the above-mentioned further solution is that by setting the first buckle and the second buckle, and the first buckle and the second buckle engaging with each other, the cover plate and the other side of the louver frame are fixed to each other. The cover plate and the louver frame are fixed together by the cooperation of the first buckle and the second buckle, as well as the first bending part and the second bending part. When the first buckle and the second buckle are separated, the first bending part and the second bending part are separated, thereby realizing the separation of the louver frame and the cover plate.

[0012] Furthermore, the louvered frame is connected to a pair of left latches on the side away from the drying tube, and the louvered frame is provided with a spacer strip on the side away from the drying tube. A pair of right latches are connected to the outside of the spacer strip, and the pair of right latches engage with the pair of left latches respectively.

[0013] The beneficial effect of adopting the above-mentioned further solution is that by using the left and right buckles together, and by having the left and right buckles engage with each other, the spacer strip and the louver frame can be fixed.

[0014] Furthermore, the upper and lower ends of the spacer bar are connected to the lower and upper ends of a pair of glasses respectively through a first sealant.

[0015] The beneficial effect of adopting the above further solution is that by providing the spacer bar and arranging the first sealant at the gap where the glass contacts the spacer bar, the spacer bar is fixed between a pair of glasses.

[0016] Furthermore, the sealing mechanism includes a pair of first partition plates, which are respectively arranged on both sides of the hollow cavity, and the opposite surfaces of the pair of first partition plates are respectively connected to the outer side walls of a pair of spacer bars through a second sealant.

[0017] The beneficial effect of adopting the above further solution is that by providing the first partition plate and arranging the second sealant at the gap where the first partition plate contacts the spacer bar, the first partition plate is connected to the spacer bar, thereby limiting the first partition plate.

[0018] Furthermore, square grooves are formed on the front and back surfaces of the pair of first partition plates, and squares are provided inside the four square grooves. Second partition plates are connected between the pair of squares at the same level, and the opposite surfaces of the pair of second partition plates are respectively fitted to the two ends of the first partition plate.

[0019] The beneficial effect of adopting the above further solution is that through the cooperation of the square grooves and the squares, when a pair of squares at the same level are placed into the square grooves, the front ends between the pair of first partition plates are fitted to the back surface of one second partition plate, and when the other pair of squares at the same level are placed into the square grooves, the back ends between the pair of first partition plates are fitted to the front surface of the other second partition plate, forming a "hui" (Chinese character for "return") shape between the two first partition plates and the two second partition plates, so that the two first partition plates and the two second partition plates separate and seal the hollow cavity for protection.

[0020] Furthermore, first threaded holes are formed inside the four square grooves, second threaded holes are formed on the four squares, and bolts are threadedly connected between the opposite first threaded holes and second threaded holes.

[0021] The beneficial effect of adopting the above further solution is that through the cooperation of the first threaded holes, the second threaded holes and the bolts, it is convenient to fix the first partition plate and the second partition plate.

[0022] Compared with the prior art, the beneficial effects of this utility model are as follows: This louvered hollow glass window frame structure with built-in drying function, by setting a pair of glass panes with a hollow cavity between them, facilitates the installation of the louvered frame and the louvered blinds. By setting a drying tube, the interior of the drying tube is filled with molecular sieves, and several through holes are opened on the side of the drying tube near the louvered blinds, so that the molecular sieves inside the drying tube are exposed to the air in the hollow cavity and directly contact the air inside the hollow cavity, resulting in better adsorption and greatly increasing the drying effect. The connection between the drying tube and the louvered frame is detachable, so that the cover plate and the louvered frame are fixed together by the cooperation of the first and second buckles and the first and second bends. At the same time, two protrusions are respectively placed inside the grooves, which facilitates the fixing of the drying tube between the cover plate and the louvered frame. The drying tube can be disassembled and installed by removing or installing the cover plate. Attached Figure Description

[0023] Figure 1 A three-dimensional structural diagram of the louvered insulated glass window frame structure with built-in drying function provided by this utility model;

[0024] Figure 2 An exploded three-dimensional structural diagram of the sealing mechanism of the louvered hollow glass window frame structure with built-in drying function provided by this utility model.

[0025] Figure 3 A partially exploded three-dimensional structural diagram of the louvered insulated glass window frame structure with built-in drying function provided by this utility model;

[0026] Figure 4 A partial front cross-sectional view of the louvered insulated glass window frame structure with built-in drying function provided by this utility model.

[0027] Figure 5 The louvered insulated glass window frame structure with built-in drying function provided by this utility model Figure 4 Enlarged schematic diagram of structure A in the middle.

[0028] In the diagram: 100, main body; 1001, glass; 1002, louver frame; 1003, cover plate; 1004, drying tube; 1005, through hole; 1006, groove; 1007, protrusion; 1008, first bend; 1009, second bend; 1010, first buckle; 1011, second buckle; 1012, left buckle; 1013, spacer strip; 1014, right buckle; 1015, louvered blind; 200, sealing mechanism; 2001, first partition; 2002, square groove; 2003, block; 2004, second partition; 2005, first threaded hole; 2006, second threaded hole; 2007, bolt. Detailed Implementation

[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] Please see Figures 1-5 This utility model provides a technical solution: a louvered hollow glass window frame structure with built-in drying function, including a main body 100. The main body 100 includes a pair of glass panes 1001, with a hollow cavity formed between the bottom and top ends of the pair of glass panes 1001. Louvered frames 1002 are provided on both sides of the interior of the hollow cavity. A louvered blind 1015 is provided between the pair of louvered frames 1002, and a cover plate 1003 is provided at the top end of each pair of louvered frames 1002. A pair of drying tubes 1004 are provided on one side near the center of each of the 003 sections. The interior of each pair of drying tubes 1004 is filled with molecular sieves. Several through holes 1005 are provided on the side of each pair of drying tubes 1004 near the venetian blind 1015. Grooves 1006 are provided at the upper and lower ends of each pair of drying tubes 1004. Protrusions 1007 are connected to the bottom of the inner part of the venetian blind frame 1002 and the bottom of the cover plate 1003 located in the grooves 1006. A pair of protrusions 1007 are positioned opposite each other. All ends extend into the interior of the groove 1006 and are fitted with the groove 1006 with a clearance. By providing a pair of glass 1001s with a hollow cavity between them, it is convenient to install the venetian frame 1002 and the venetian blind 1015. By providing a drying tube 1004, the interior of which is filled with molecular sieves, and several through holes 1005 are provided on the side of the drying tube 1004 near the venetian blind 1015, so that the molecular sieves inside the drying tube 1004 are exposed in the hollow cavity. The air is in direct contact with the air inside the hollow cavity, resulting in better adsorption and greatly increasing the drying effect. The connection between the drying tube 1004 and the louvered frame 1002 is detachable. When the cover plate 1003 and the louvered frame 1002 are fixed as a whole, the two protrusions 1007 are respectively placed inside the groove 1006, which makes it easy to fix the drying tube 1004 between the cover plate 1003 and the louvered frame 1002. The drying tube 1004 can be disassembled and installed by disassembling or installing the cover plate 1003.

[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] Please see Figures 1-5 This utility model provides a technical solution: a second bent portion 1009 is connected to the bottom end of the cover plate 1003 near the groove 1006; a first bent portion 1008 is connected to the upper end of the louvered frame 1002 near the second bent portion 1009; the first bent portion 1008 and the second bent portion 1009 are interlocked; a second buckle 1011 is connected to the end of the cover plate 1003 away from the groove 1006; a first buckle 1010 is connected to the upper end of the louvered frame 1002 near the second buckle 1011; the first buckle... 1010 and the second buckle 1011 engage with each other. A pair of left buckles 1012 are connected to the side of the louvered frame 1002 away from the drying tube 1004. A spacer strip 1013 is provided on the side of the louvered frame 1002 away from the drying tube 1004. A pair of right buckles 1014 are connected to the outside of the spacer strip 1013. The pair of right buckles 1014 engage with the pair of left buckles 1012 respectively. The upper and lower ends of the spacer strip 1013 are connected to the lower and upper ends of the pair of glass panes 1001 by a first sealant. A first bending portion 1008 and a second bending portion 1009 are provided, and the first bending portion 1008 and the second bending portion 1009 are interlocked. A first latch 1010 and a second latch 1011 are provided, and the first latch 1010 and the second latch 1011 are interlocked, so that the cover plate 1003 and the louver frame 1002 are fixed together through the cooperation of the first latch 1010 and the second latch 1011, and the first bending portion 1008 and the second bending portion 1009. When buckle 1011 is separated, the first bend 1008 and the second bend 1009 are separated, thereby separating the louver frame 1002 and the cover plate 1003. Through the cooperation of the left buckle 1012 and the right buckle 1014, and the interlocking of the left buckle 1012 and the right buckle 1014, the spacer strip 1013 and the louver frame 1002 are fixed. By setting the spacer strip 1013 and setting the first sealant at the gap where the glass 1001 and the spacer strip 1013 contact, the spacer strip 1013 is fixed between a pair of glass 1001.

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0034] Please see Figures 1-5 This utility model provides a technical solution: the sealing mechanism 200 includes a pair of first partitions 2001, which are respectively disposed on both sides of the hollow cavity. The opposite sides of the pair of first partitions 2001 are connected to the outer walls of a pair of spacers 1013 via a second sealant. Square grooves 2002 are provided on both the front and back of each pair of first partitions 2001. Square blocks 2003 are provided inside each of the four square grooves 2002. Second partitions 2004 are connected between pairs of blocks 2003 at the same level. The opposite sides of each pair of second partitions 2004 are respectively fitted to the two ends of the first partitions 2001. First threaded holes 2005 are provided inside each of the four square grooves 2002. Second threaded holes 2006 are provided on each of the four blocks. Bolts 2007 are threadedly connected between the opposite first threaded holes 2005 and second threaded holes 2006. By setting the first partitions 2001, and the first partitions 2001 and... A second sealant is applied to the gap where the spacer strip 1013 contacts, thereby connecting the first partition 2001 to the spacer strip 1013 and limiting the position of the first partition 2001. Through the cooperation of the square groove 2002 and the square blocks 2003, when a pair of square blocks 2003 at the same level are placed into the square groove 2002, the front ends of a pair of first partitions 2001 are in contact with the back of a second partition 2004. When another pair of square blocks 2003 at the same level are placed into the square groove 2002, ... The rear ends of a pair of first partitions 2001 are fitted against the front of another second partition 2004, so that the two first partitions 2001 and the two second partitions 2004 form a "U" shape, which allows the two first partitions 2001 and the two second partitions 2004 to separate and seal the hollow cavity. The first threaded hole 2005, the second threaded hole 2006 and the bolt 2007 are used to facilitate the fixing of the first partitions 2001 and the second partitions 2004.

[0035] Specifically, the working principle of this type of louvered insulated glass window frame structure with built-in drying function is as follows: In use, firstly, the drying tube 1004 is placed on one side of the louvered frame 1002, so that the protrusion 1007 on the louvered frame 1002 is inserted into the groove 1006 at the bottom of the drying tube 1004. Then, the protrusion 1007 at the bottom of the cover plate 1003 is inserted into the groove 1006 at the upper end of the drying tube 1004. Simultaneously, a first bending portion 1008 and a second bending portion 1009 are provided, and the first bending portion 1008 and the second bending portion 1009 interlock. A first latch 1010 and a second latch 1011 are also provided. Furthermore, the first buckle 1010 and the second buckle 1011 engage with each other, thereby securing the cover plate 1003 and the louvered frame 1002 together through the cooperation of the first buckle 1010 and the second buckle 1011, as well as the first bend 1008 and the second bend 1009. This achieves overall fixation of the cover plate 1003 and the louvered frame 1002, and fixes the drying tube 1004 between the cover plate 1003 and the louvered frame 1002. The drying tube 1004 is filled with molecular sieves, and several through holes 1005 are opened on the side of the drying tube 1004 near the louvered curtain 1015, allowing the drying... The molecular sieve inside tube 1004 is exposed to the air in the hollow cavity and is in direct contact with the air inside the hollow cavity, resulting in better adsorption and significantly increased drying effect. Through the coordinated use of the left snap fastener 1012 and the right snap fastener 1014, and their interlocking, the spacer strip 1013 and the louver frame 1002 are fixed together. By setting the spacer strip 1013 and applying a first sealant at the gap where the glass 1001 contacts the spacer strip 1013, the spacer strip 1013 is fixed between a pair of glass 1001s. This is achieved through the first partition 2001 and the spacer... A second sealant is applied to the gap where the spacer 1013 contacts, thereby connecting the first partition 2001 with the spacer 1013. When the front ends of a pair of first partitions 2001 are in contact with the back of a second partition 2004, and when the rear ends of a pair of first partitions 2001 are in contact with the front of another second partition 2004, a "U" shape is formed between the two first partitions 2001 and the two second partitions 2004. The first threaded hole 2005, the second threaded hole 2006, and the bolt 2007 are used to facilitate the fixing between the first partitions 2001 and the second partitions 2004.

Claims

1. A louvered insulated glass window frame structure with built-in drying function, characterized in that, The system includes a main body (100), which includes a pair of glass panes (1001). A hollow cavity is formed between the bottom and top ends of the pair of glass panes (1001). Both sides of the hollow cavity are provided with louvered frames (1002). A louvered blind (1015) is provided between the pair of louvered frames (1002). A cover plate (1003) is provided at the top end of each pair of louvered frames (1002). A drying tube (1004) is provided on one side near the center between the louvered frames (1002) and the cover plate (1003). The interior of each of the drying tubes (1004) is filled with molecular sieves, and each of the pair of drying tubes (1004) has several through holes (1005) on the side near the venetian blind (1015). The upper and lower ends of the pair of drying tubes (1004) are provided with grooves (1006). The bottom end of the inner side of the venetian frame (1002) and the bottom end of the cover plate (1003) are connected to the grooves (1006) with protrusions (1007). The opposite ends of the pair of protrusions (1007) extend into the interior of the grooves (1006) and are in clearance fit with the grooves (1006).

2. The louvered insulated glass window frame structure with built-in drying function according to claim 1, characterized in that, The bottom end of the cover plate (1003) is connected to a second bend (1009) near the groove (1006), and the upper end of the louver frame (1002) is connected to a first bend (1008) near the second bend (1009). The first bend (1008) and the second bend (1009) are engaged with each other.

3. The louvered insulated glass window frame structure with built-in drying function according to claim 2, characterized in that, The cover plate (1003) is connected to a second buckle (1011) at the end away from the groove (1006), and the upper end of the louver frame (1002) is connected to a first buckle (1010) near the second buckle (1011). The first buckle (1010) and the second buckle (1011) engage with each other.

4. The louvered insulated glass window frame structure with built-in drying function according to claim 3, characterized in that, The louvered frame (1002) is connected to a pair of left buckles (1012) on the side away from the drying tube (1004), and the louvered frame (1002) is provided with a spacer strip (1013) on the side away from the drying tube (1004). A pair of right buckles (1014) are connected to the outside of the spacer strip (1013), and the pair of right buckles (1014) are respectively engaged with the pair of left buckles (1012).

5. The louvered insulated glass window frame structure with built-in drying function according to claim 4, characterized in that, The upper and lower ends of the spacer (1013) are connected to the lower and upper ends of the pair of glass (1001) by a first sealant.

6. The louvered insulated glass window frame structure with built-in drying function according to claim 5, characterized in that, It also includes a sealing mechanism (200), which includes a pair of first partitions (2001), the pair of first partitions (2001) being respectively disposed on both sides of the hollow cavity, and the opposite sides of the pair of first partitions (2001) being connected to the outer side walls of a pair of spacers (1013) by a second sealant.

7. The louvered insulated glass window frame structure with built-in drying function according to claim 6, characterized in that, Square grooves (2002) are provided on both the front and back sides of a pair of first partitions (2001). Each of the four square grooves (2002) contains a block (2003). A second partition (2004) is connected between a pair of blocks (2003) at the same level. The opposite sides of a pair of second partitions (2004) are respectively attached to the two ends of the first partitions (2001).

8. The louvered insulated glass window frame structure with built-in drying function according to claim 7, characterized in that, Each of the four square slots (2002) has a first threaded hole (2005) inside, and each of the four square blocks has a second threaded hole (2006). A bolt (2007) is threadedly connected between the first threaded hole (2005) and the second threaded hole (2006).