Novel curtain wall window structure
By combining the left and right pillars and the fixing strip with the central pillar, a T-shaped structure is formed. The inner cavity of the pillars is filled with heat insulation material, which solves the problems of complex structure, poor sealing effect and ordinary appearance of aluminum alloy windows when installed in large areas, and achieves efficient heat preservation, heat insulation and stable installation of windows.
Patent Information
- Application Number
- CN202520100040.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-16
AI Technical Summary
Existing aluminum alloy windows have a complex structure when installed over a large area, making installation inconvenient. They also have mediocre sealing performance, ordinary appearance, and are easily corroded by rainwater.
The left and right columns, along with the fixing strips and the central column, form a T-shaped structure to enhance the overall strength of the window frame. Insulation material is filled into the inner cavity of the columns, and protective columns are used to improve installation accuracy and aesthetics.
It significantly improves the window's heat insulation, heat insulation, sealing and installation convenience, enhances structural stability and aesthetic appearance, and simplifies the installation process.
Smart Images

Figure CN223739248U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of curtain wall window technology, specifically relating to a novel curtain wall window structure. Background Technology
[0002] Aluminum alloys have a wide range of applications in daily life. However, in the daily use of existing aluminum alloy windows, because the frame and opening auxiliary components of the outdoor aluminum alloy window are spliced together, rainwater can easily seep into the interior of the aluminum alloy window frame through the joints during rainy weather, causing corrosion. Thermally broken aluminum alloy windows are an improvement on older aluminum alloy windows, designed to enhance the thermal insulation performance of doors and windows. The principle of thermally broken aluminum alloy windows is to use nylon to both separate and tightly connect the indoor and outdoor aluminum alloy layers into a whole, forming a new type of thermally insulated aluminum profile.
[0003] Currently, when installing large windows, their structure is relatively complex with many exposed layers, making installation and connection inconvenient, and the sealing effect is generally poor, as is the appearance. Utility Model Content
[0004] I. Technical problems to be solved
[0005] This utility model addresses the aforementioned deficiencies in existing technologies by proposing a novel curtain wall window structure. The left and right columns, along with a fixing strip, work together to secure the double-glazed windows to the central column. This increases the area of the central column, improves the overall structural strength, allows for a larger window area, and provides greater insulation filling within the profile's inner cavity. This solves the current problems of complex structures, numerous exposed lines, inconvenient installation and connection, mediocre sealing, and unattractive appearance associated with installing large-area windows.
[0006] II. Technical Solution
[0007] To solve the above-mentioned technical problems, this utility model provides a novel curtain wall window structure, including a window frame, a window sash on the inner side of the window frame, double-glazed glass installed inside the window sash, and thermal break columns vertically arranged inside the window frame. The thermal break columns include a central column, a left column, a right column, and a fixing strip. The central column is a T-shaped structure and is vertically fixed inside the window frame. The left column is fixed to the left side of the central column by bolts. The right column is fixed to the right side of the central column by bolts. The fixing strip is pressed between the inner side of the central column and the outer side of the double-glazed glass, and between the outer sides of the left and right columns and the inner sides of the double-glazed glass. The left column, right column, and fixing strip are connected to fix the double-glazed glass to the central column.
[0008] Preferably, the central column includes an inner column, an outer column, and a thermal break strip; the inner column is located on the inner side of the double-glazed glass; the outer column is located on the outer side of the double-glazed glass; the thermal break strip has two strips arranged side by side between the inner and outer columns for fixing the inner and outer columns; the inner and outer columns are reinforced by bolts.
[0009] Preferably, the inner cavities of the inner and outer columns, as well as the cavity between the two insulation strips, are all filled with insulation material.
[0010] Preferably, the outer sides of the inner column, left column, and right column are covered with protective columns, which are fixedly installed on the outer side of the inner column by bolts.
[0011] Preferably, the protective column has a fixing groove, the bolts are installed inside the fixing groove, and a protective cover plate is provided at the opening of the fixing groove.
[0012] Preferably, the protective column has a first groove on both sides inside, and the left and right columns have a fixing block matching the first groove on the outer side away from the inner column. The left and right columns have a second groove on the outer side. One side of the fixing strip is fastened inside the second groove, and the other side of the fixing strip abuts against the inner side of the double-layer glass.
[0013] Preferably, the inner ends of the outer column are provided with a third groove, one side of the fixing strip is clamped in the third groove, and the other side of the fixing strip abuts against the outer side of the double-layer glass.
[0014] Preferably, the outer side of the inner column and the inner side of the outer column are symmetrically provided with a fourth groove and a fifth groove, and the two sides of the heat insulation strip are respectively clamped inside the fourth groove and the fifth groove.
[0015] III. Beneficial Effects
[0016] Compared with the prior art, the beneficial effects of this utility model are as follows: the left column, right column and fixing strip are connected to fix the double glass to the central column, which increases the area of the central column, improves the overall structural strength, allows for a larger window area to be used in the window frame, and provides greater thermal insulation filling in the thermal insulation strip inside the profile cavity, significantly improving the heat preservation and insulation effect of the window. Attached Figure Description
[0017] Figure 1 This is a plan view of a new type of curtain wall window structure.
[0018] Figure 2 A cross-sectional view of a thermally broken column of a novel curtain wall window structure. Figure 1 .
[0019] Figure 3 A cross-sectional view of a thermally broken column of a novel curtain wall window structure. Figure 2.
[0020] In the picture:
[0021] 1 is the window frame; 2 is the window sash; 3 is double-glazed glass; 4 is the thermal break column; 5 is the central column; 51 is the inner column; 511 is the fourth groove; 52 is the outer column; 521 is the third groove; 522 is the fifth groove; 53 is the thermal break strip; 6 is the left column; 7 is the right column; 8 is the fixing strip; 9 is the protective column; 91 is the fixing groove; 92 is the protective cover plate; 93 is the first groove; 10 is the fixing block; 11 is the second groove. Detailed Implementation
[0022] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0023] Example 1:
[0024] Combination Figure 1 and Figure 2 As shown, a novel curtain wall window structure includes a window frame 1, a window sash 2 on the inner side of the window frame 1, double-glazed glass 3 installed inside the window sash 2, and thermal break columns 4 vertically arranged inside the window frame 1. The thermal break columns 4 include a central column 5, a left column 6, a right column 7, and a fixing strip 8. The central column 5 is a T-shaped structure and is vertically fixed inside the window frame 1. The left column 6 is fixed to the left side of the central column 5 by bolts. The right column 7 is fixed to the right side of the central column 5 by bolts. The fixing strip 8 is pressed between the inner side of the central column 5 and the outer side of the double-glazed glass 3, and between the outer side of the left column 6 and the right column 7 and the inner side of the double-glazed glass 3. The left column 6, the right column 7, and the fixing strip 8 are connected to fix the double-glazed glass 3 onto the central column 5.
[0025] This utility model proposes a novel curtain wall window structure, which not only enhances the aesthetics of the building's appearance but also greatly improves the window's thermal insulation, sound insulation, and sealing performance.
[0026] The window frame 1 serves as the supporting foundation of the entire structure, ensuring its stability and durability. The window sash 2 is located inside the window frame 1 and is connected to it via a sliding rail or hinge system, allowing for flexible opening and closing. The double-glazed windows 3 installed inside the window sash 2 are key to improving the window's thermal insulation and soundproofing performance. An air gap between the double-glazed windows 3 forms a good thermal and sound insulation barrier.
[0027] Inside the window frame 1, there are vertically installed thermal break columns 4, which specifically include a central column 5, a left column 6, a right column 7, and a fixing strip 8.
[0028] The central column 5 has a T-shaped structure and is vertically installed inside the window frame 1, serving as the main support and heat insulation component. The left column 6 and right column 7 are fixed to the left and right sides of the central column 5 respectively with high-strength bolts, forming a stable frame structure. The fixing strip 8 is pressed between the inner side of the central column 5 and the outer side of the double-glazed glass 3, and between the outer side of the left column 6 and right column 7 and the inner side of the double-glazed glass 3, ensuring the secure installation of the double-glazed glass 3 and enhancing the window's sealing performance.
[0029] The combination of the left column 6, the right column 7, and the fixing strip 8 not only firmly fixes the double-glazed glass 3 to the central column 5, but also effectively prevents the exchange of heat between the indoor and outdoor spaces through a tight sealing structure, thus improving the window's heat insulation effect.
[0030] Combination Figure 2 and Figure 3 As shown, the central column 5 includes an inner column 51, an outer column 52, and a thermal break strip 53. The inner column 51 is located on the inner side of the double-glazed glass 3. The inner column 51 not only ensures the strength and stability of the structure but also effectively reduces heat transfer between the interior and exterior through its smooth surface treatment, thus improving the window's thermal insulation performance. The outer column 52 is located on the outer side of the double-glazed glass 3. The outer column 52 can withstand the onslaught of severe weather and protect the integrity of the window's internal structure.
[0031] Two thermal break strips 53 are arranged side-by-side between the inner column 51 and the outer column 52 to fix the inner column 51 and the outer column 52. The thermal break strip 53 has an extremely low thermal conductivity, which can effectively block the heat transfer path between the indoor and outdoor areas, thereby significantly improving the heat preservation and insulation effect of the window. At the same time, the thermal break strip 53 also serves to fix the inner column 51 and the outer column 52, enhancing the overall stability of the central column 5.
[0032] The inner column 51 and the outer column 52 are reinforced with bolts. To ensure the stability of the central column 5, the inner column 51 and the outer column 52 are connected by high-strength bolts. The tightening of the bolts ensures the stability and durability of the central column 5.
[0033] Combination Figure 2 and Figure 3 As shown, the inner cavities of the inner column 51 and the outer column 52, as well as the cavity between the two insulation strips 53, are all filled with insulation material.
[0034] To further improve the thermal insulation performance of the window, the inner cavities of the inner pillar 51 and the outer pillar 52, as well as the inner cavities of the two thermal insulation strips 53 arranged side by side between the inner pillar 51 and the outer pillar 52, are all filled with high-performance thermal insulation material.
[0035] Thermal insulation materials maximize the blocking of heat transfer paths. These typically include, but are not limited to, polyurethane foam, polystyrene foam, and aerogel, materials known for their extremely low thermal conductivity, effectively slowing or preventing heat flow. When these materials are filled into the cavities of the columns and thermal insulation strip 53, a continuous insulation layer is formed, much like putting a "thermal coat" on the window, significantly improving its thermal insulation performance.
[0036] Combination Figure 1 , Figure 2 and Figure 3 As shown, the outer sides of the inner pillar 51, left pillar 6 and right pillar 7 are covered with protective pillars 9. The protective pillars 9 not only enhance the stability and durability of the entire window system, but also add a touch of refinement and elegance to the appearance of the window.
[0037] The protective support post 9 is fixedly installed on the outer side of the inner support post 51 by bolts. The protective support post 9 is also fixed to the corresponding positions of the left support post 6 and the right support post 7, forming a tight fit and connection. This installation method not only simplifies the installation process but also improves installation accuracy, ensuring the overall stability of the window system.
[0038] Combination Figure 2 and Figure 3 As shown, a fixing groove 91 is provided on the protective column 9. The fixing groove 91 not only meets the requirements of bolt installation, but also ensures the tight fit between the protective column 9 and the inner column 51 and other components.
[0039] Bolts are installed inside the fixing groove 91, and a protective cover plate 92 is provided at the opening of the fixing groove 91. To further enhance the protective performance and aesthetics of the protective column 9, a protective cover plate 92 is cleverly placed at the opening of the fixing groove 91. The protective cover plate 92 not only has excellent corrosion resistance and durability, but also effectively blocks the opening of the fixing groove 91, preventing dust, moisture, and other impurities from entering the fixing groove 91 and causing corrosion or damage to the bolts and other connecting components.
[0040] Combination Figure 2 and Figure 3As shown, the protective pillar 9 has first grooves 93 on both sides of its interior. The left pillar 6 and right pillar 7 have fixing blocks 10 on their outer sides away from the inner pillar 51, which match the first grooves 93. The protective pillar 9 enhances the overall stability of the window and improves its sealing and aesthetics. The first grooves 93 perfectly match the fixing blocks 10 on the outer sides of the left pillar 6 and right pillar 7 away from the inner pillar 51. When the left pillar 6 and right pillar 7 are assembled with the protective pillar 9, the fixing blocks 10 precisely embed into the first grooves 93, forming a secure snap-fit structure. This not only simplifies the installation process and improves installation efficiency but also ensures a tight fit and connection between the left pillar 6, right pillar 7, and protective pillar 9.
[0041] The left pillar 6 and right pillar 7 have second grooves 11 on their outer sides. One side of the fixing strip 8 is fastened inside the second groove 11, and the other side of the fixing strip 8 abuts against the inner side of the double-glazed glass 3. These second grooves 11 fit perfectly with one side of the fixing strip 8. During installation, one side of the fixing strip 8 is tightly fastened inside the second groove 11, while the other side abuts against the inner side of the double-glazed glass 3. This not only enhances the window's sealing performance, effectively preventing the intrusion of wind, rain, dust, and noise, but also improves the window's heat insulation and soundproofing effects.
[0042] Combination Figure 2 and Figure 3 As shown, the inner ends of the outer column 52 are provided with a third groove 521. The third groove 521 not only enhances the sealing performance of the window, but also improves the stability and aesthetics of the overall structure.
[0043] One side of the fixing strip 8 is tightly secured inside the third groove 521. During installation, this secure connection is formed by tightly securing one side of the fixing strip 8 inside the third groove 521. This not only simplifies the installation process and improves installation efficiency, but also ensures a tight fit between the fixing strip 8 and the outer column 52, effectively preventing the intrusion of wind, rain, dust, and noise.
[0044] The other side of the fixing strip 8 abuts against the outside of the double-glazed glass 3. The fixing strip 8 not only enhances the sealing performance of the window, but also improves the heat insulation and sound insulation effect of the window.
[0045] Combination Figure 2 and Figure 3 As shown, the outer side of the inner column 51 and the inner side of the outer column 52 are symmetrically provided with a fourth groove 511 and a fifth groove 522 side by side. The fourth groove 511 and the fifth groove 522 not only enhance the heat insulation effect of the window, but also improve the refinement and harmony of the overall structure.
[0046] The two sides of the thermal insulation strip 53 are respectively secured inside the fourth groove 511 and the fifth groove 522. During installation, the two sides of the thermal insulation strip 53 are tightly secured inside the fourth groove 511 and the fifth groove 522, forming a stable and sealed connection. This not only simplifies the installation process and improves installation efficiency, but also ensures a tight fit between the thermal insulation strip 53 and the column, effectively blocking the heat transfer path.
[0047] The above are merely preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model.
Claims
1. A new curtain wall window structure, characterized in that, The novel curtain wall window structure comprises a window frame (1), a window sash (2) is arranged on the inner side of the window frame (1), double-layer glass (3) is arranged in the window sash (2), a broken bridge vertical column (4) is vertically arranged in the window frame (1), and the broken bridge vertical column (4) comprises a middle vertical column (5), a left vertical column (6), a right vertical column (7) and a fixed adhesive tape (8); The middle vertical column (5) is vertically arranged in the window frame (1) in a T-shaped structure; The left vertical column (6) is fixedly arranged on the left side of the middle vertical column (5) through bolts; The right vertical column (7) is fixedly arranged on the right side of the middle vertical column (5) through bolts; The fixed adhesive tape (8) is tightly arranged between the inner side of the middle vertical column (5) and the outer side of the double-layer glass (3) and between the outer sides of the left vertical column (6) and the right vertical column (7) and the inner side of the double-layer glass (3); The left vertical column (6), the right vertical column (7) and the fixed adhesive tape (8) are connected in cooperation for fixing the double-layer glass (3) on the middle vertical column (5).
2. The novel curtain wall window structure according to claim 1, characterized in that, The middle vertical column (5) comprises an inner vertical column (51), an outer vertical column (52) and a heat insulation strip (53); The inner vertical column (51) is arranged on the inner side of the double-layer glass (3); The outer vertical column (52) is arranged on the outer side of the double-layer glass (3); The heat insulation strip (53) is arranged between the inner vertical column (51) and the outer vertical column (52) in two parallel strips for fixing the inner vertical column (51) and the outer vertical column (52); The inner vertical column (51) and the outer vertical column (52) are reinforced through bolts.
3. The novel curtain wall window structure according to claim 2, characterized in that, The inner vertical column (51) and the outer vertical column (52) and the inner cavities between the two heat insulation strips (53) are filled with heat insulation materials.
4. The novel curtain wall window structure according to claim 2, characterized in that, The outer sides of the inner vertical column (51), the left vertical column (6) and the right vertical column (7) are covered with protective vertical columns (9), and the protective vertical columns (9) are fixedly arranged on the outer sides of the inner vertical column (51) through bolts.
5. The novel curtain wall window structure according to claim 4, characterized in that, A fixed groove (91) is formed in the protective vertical column (9), bolts are arranged in the fixed groove (91), and a protective cover plate (92) is arranged at the opening of the fixed groove (91).
6. The novel curtain wall window structure according to claim 5, characterized in that, First recesses (93) are arranged on the inner sides of the protective vertical column (9), fixed clamping blocks (10) matched with the first recesses (93) are arranged on the outer sides of the left vertical column (6) and the right vertical column (7) away from the inner vertical column (51), second recesses (11) are arranged on the outer sides of the left vertical column (6) and the right vertical column (7), one side of the fixed adhesive tape (8) is clamped in the second recess (11), and the other side of the fixed adhesive tape (8) abuts against the inner side of the double-layer glass (3).
7. The novel curtain wall window structure according to claim 3, characterized in that, Third recesses (521) are arranged on the inner sides of the outer vertical column (52), one side of the fixed adhesive tape (8) is clamped in the third recess (521), and the other side of the fixed adhesive tape (8) abuts against the outer side of the double-layer glass (3).
8. The novel curtain wall window structure according to claim 3, characterized in that, Fourth recesses (511) and fifth recesses (522) are symmetrically arranged on the outer side of the inner vertical column (51) and the inner side of the outer vertical column (52) in parallel, and the two sides of the heat insulation strip (53) are clamped in the fourth recess (511) and the fifth recess (522) respectively.