Improved full-glass window

By adopting a flush design between the glass components and the insulated glass components in the all-glass window, the problem of high mold opening cost of all-glass windows is solved, achieving low-cost transformation, adapting to multiple series, and maintaining the same performance.

CN223577800UActive Publication Date: 2025-11-21HENAN CROWN PLASTIC MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202422815655.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-11-21
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

The high cost of molds for existing all-glass windows and the relatively low cost of aluminum alloy windows with few new mold series on the market result in high initial costs.

Method used

By installing glass components on the operable sash and insulated glass components on the fixed sash, the glass components are flush with the outermost plane of the insulated glass components, forming a full-glass window. This modified design retains the original structure and only changes the glass configuration and installation method, reducing mold costs.

Benefits of technology

It enables low-cost modification of all-glass windows without creating new molds, meeting market demands, with a wide range of applicability, maintaining window performance, and reducing initial mold-making costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a modified full-glass window, which relates to the technical field of doors and windows and comprises a frame, a fixed sash and an opening sash matched with the fixed sash are mounted in the frame, a hollow glass component is mounted on the outdoor side of the fixed sash, and a glass component is mounted on the outdoor side of the opening sash. The outermost plane of the hollow glass assembly and the outermost plane of the glass assembly are located on the same plane. According to the all-glass window, the glass assembly is installed on the opening sash, the hollow glass assembly is installed on the fixed sash, the outermost plane of the glass assembly is flush with the outermost plane of the hollow glass assembly, the all-glass window is formed, and various functional requirements of the all-glass window can be met on the premise that a new mold is not opened; the improvement cost is low, the early-stage mold opening cost is reduced, and the performance of the whole window is guaranteed. By changing the configuration of the glass, various series can be transformed, the adaptation range is wide, and the market requirement is met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to door and window technical field, especially a kind of full glass window. BACKGROUND

[0002] Full glass door and window are widely used in modern architectural design due to its unique design aesthetic and good light transmittance. Thanks to the acceleration of urbanization process and the improvement of people's demand for living environment quality, the market size of full glass door and window is gradually expanding. At present, the conventional full glass window on the market is all aluminum alloy window, and the plastic window series is less, and most of them are new mold series, with high early-stage cost. SUMMARY

[0003] In view of the deficiencies in the above background art, the utility model provides a modified full glass window, which solves the problem of high mold opening cost in the prior art.

[0004] The technical scheme of the utility model is implemented as follows: a modified full glass window, comprising a frame, a fixed sash and an opening sash installed in the frame, a hollow glass assembly installed on the fixed sash, and a glass assembly installed on the opening sash, wherein the outermost plane of the hollow glass assembly and the outermost plane of the glass assembly are located on the same plane.

[0005] Further preferably, the opening sash comprises a sash profile one, a glass one and a glass stop one installed in the sash profile one, and a sealing rubber strip one provided on the sash profile one and the glass stop one and matched with the glass one.

[0006] Further preferably, the opening sash comprises a sash profile two, a flash hollow glass one and a flash hollow glass two installed in the sash profile two, and a positioning clamp connected to the flash hollow glass one and installed on the sash profile two.

[0007] Further preferably, the flash hollow glass one comprises an inner glass, a color adjusting layer one provided on the inner glass, the inner glass connected to the positioning clamp, the inner glass sealedly connected to the sash profile two, the inner glass connected to a glass spacer one and connected to a glass two through the glass spacer one, and the glass two installed in the sash profile two.

[0008] Further preferably, the flash hollow glass two comprises a single glass, the single glass connected to the glass two through the glass spacer one, the glass two installed in the sash profile two, a high-adhesion double-sided adhesive tape pasted on the single glass, and the single glass fixed on the sash profile two through the high-adhesion double-sided adhesive tape; and a foam strip provided between the glass two on the outer flash glass and the glass two on the outer flash glass.

[0009] Further preferably, the single glass is provided with a color adjusting layer two matched with the opening sash.

[0010] Further preferably, the fixed fan comprises a mullion, one side of the mullion is matched with the opening fan, the other side of the mullion is matched with the fixed glass, the mullion and the frame are provided with glass compression strips two matched with the fixed glass, and the mullion, the frame and the glass compression strips two are provided with sealing rubber strips two matched with the fixed glass.

[0011] Further preferably, the hollow glass assembly comprises two glass threes arranged symmetrically, the two glass threes are provided with a glass spacer two, and the two ends of the two glass threes are provided with cover plates.

[0012] Further preferably, the glass three at the outermost side is provided with a color adjusting layer three, and the glass cover plate is a U-shaped cover plate.

[0013] The utility model discloses the beneficial effects are: the utility model discloses install glass assembly on opening fan, install hollow glass assembly on fixed fan, make glass assembly and hollow glass assembly most outside plane flush, form full glass window, realize the various functional requirements of full glass window under the premise of not opening new mould, through the transformation on the basis of original scheme, the transformation cost is low, reduces the early stage opening mould cost and guarantees the whole window performance.

[0014] The opening fan adopts two schemes of existing opening fan structure and cutting structure on the existing opening fan, retains each structure part of the original series, so that the performance of the door and window is not obviously affected, the original performance can be transformed on the basis of reservation, there are two schemes of not processing section bar and processing section bar, and the two schemes can be changed by changing glass configuration and installation mode, the transformation steps are few, and the workshop production and installation are facilitated, the learning cost and the error quantity caused by the transformation are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the embodiments of the utility model, the drawings needed to be used in the embodiment description will be briefly introduced, and obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to the drawings without creating labor.

[0016] Figure 1 It is the structure schematic diagram of the utility model Figure 1 ;

[0017] Figure 2 It is the cooperation schematic diagram of the frame and the opening fan in Figure 1 ;

[0018] Figure 3 It is the cooperation schematic diagram of the mullion and the opening fan in Figure 1 ;

[0019] Figure 4 for Figure 1 A schematic diagram of the mullion installation;

[0020] Figure 5 This is a schematic diagram of the structure of the present invention. Figure 2 ;

[0021] Figure 6 for Figure 5 A schematic diagram showing the interaction between the border and the opening fan;

[0022] Figure 7 for Figure 5 A schematic diagram of the mullion installation;

[0023] Figure 8 This is a schematic diagram of the processing of border 2.

[0024] In the diagram: 1. Frame, 2. Single-pane glass, 3. Fan-shaped profile one, 4. Glass one, 5. Glass strip one, 6. Sealing strip one, 7. Fan-shaped profile two, 8. Inner glass, 9. Tinted layer one, 10. Positioning clip, 11. Glass two, 11-1. Single-pane glass, 11-2. Foam strip, 12. Glass spacer one, 13. Sealant, 14. Tinted layer two, 15. Mullion, 16. Fixed glass, 17. Glass strip two, 18. Sealing strip two, 19. Glass three, 20. Glass spacer two, 21. Tinted layer three, 22. Cover plate. Detailed Implementation

[0025] 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.

[0026] like Figures 1-4 As shown in Embodiment 1, a modified all-glass window includes a frame 1. A fixed sash and an operable sash that cooperates with the fixed sash are installed within the frame 1. A double-glazed glass assembly is installed on the fixed sash, and a glass assembly is installed on the operable sash. The outermost plane of the double-glazed glass assembly and the outermost plane of the glass assembly are on the same plane. By installing the glass assembly on the operable sash and the double-glazed glass assembly on the fixed sash, making the outermost plane of the glass assembly flush with the outermost plane of the double-glazed glass assembly, an all-glass window is formed. This allows for the fulfillment of all functional requirements of an all-glass window without creating new molds. By modifying an existing solution, the modification cost is low, reducing initial mold costs while ensuring overall window performance. By changing the glass configuration, various series can be modified, providing a wide range of adaptability and meeting market demands.

[0027] In this embodiment, the operable sash includes a sash profile 3, within which a glass 4 and a glass retaining strip 5 for fixing the glass 4 are installed. Both the sash profile 3 and the glass retaining strip 5 are provided with sealing strips 6 that cooperate with the glass 4. The operable sash is an existing plastic door / window operable sash. The sealing strips on the operable sash ensure its airtightness. Using an existing operable sash allows for the installation of a full-glass window by simply modifying the glass installation scheme based on the original design. The glass assembly includes a single-pane glass 2, on which high-adhesion double-sided adhesive is adhered. The single-pane glass 2 is fixed to the operable sash using the high-adhesion double-sided adhesive. The single-pane glass 2 is provided with a tinting layer 2 14 that cooperates with the operable sash. Tinting layer 2 14 is a blackened treatment layer around the glass perimeter, blackening the exposed parts to ensure color consistency between the interior and exterior and without affecting the use of the high-adhesion double-sided adhesive. The single-pane glass 2 is attached to the sash profile 3 with high-adhesion double-sided adhesive to form a fully glazed operable sash, ensuring the light transmission range without affecting the original performance of the window.

[0028] In this embodiment, the fixed sash includes a mullion 15. One side of the mullion 15 engages with an operable sash, and a fixed glass 16 is installed between the other side of the mullion 15 and the frame 1. The fixed glass 16 is a triple-glazed double-glazed type. A second glass strip 17 is provided on the mullion 15 and the frame 1 to engage with the fixed glass 16. Sealing strips 18 are also provided on the mullion 15, the frame 1, and the second glass strip 17 to engage with the fixed glass 16. The fixed sash structure uses the engagement of the mullion 15, the frame 1, and the second glass strip 17 to fix the fixed glass 16. The sealing strip 18 is used to increase the sealing performance of the fixed glass 16. This structure retains the existing window frame structure. One side of the double-glazed glass is fixed to the mullion 15, and the other side is fixed to the frame 1, which helps to form a fully glazed window. The insulated glass assembly includes two symmetrically arranged glass panes 19, with a glass spacer 20 between them. Each glass pane 19 has a cover plate 22 installed at both ends. High-adhesion double-sided adhesive is applied to the innermost single-pane glass 11-1 to secure the insulated glass assembly to the corresponding mullion 15 and frame 1. A tinting layer 21 is provided on the exterior glass pane 19; this tinting layer 21 is a blackened perimeter treatment layer, applied to the exposed portion to ensure color consistency between the interior and exterior. The glass cover plate 22 is a U-shaped cover plate. The U-shaped cover plate is fastened to both ends of the glass pane 19 to protect it and also to help the glass pane 19 form a unified structure, ensuring structural stability.

[0029] The specific installation process is as follows: a) All profiles are cut, drilled, welded, hardware installed, and glass installed according to the conventional door and window manufacturing process;

[0030] b. The glass used to realize the full glass window is cut according to the required type, the hollow glass is peripherally installed with a decorative cover plate 22 and a glass support clamp 23, the glass periphery needs to be blackened, and the partition strip of the hollow glass needs to be adjusted according to the actual situation of the profile;

[0031] c. Double-sided adhesive tape is pasted at the corresponding positions of the opening sash and the fixed part;

[0032] d. The treated glass is pasted to the corresponding position, and the glass 16 support clamp 23 is fixed by screws.

[0033] As shown in Figures 4-7 , in Example 2, a modified full glass window includes a frame 1, a fixed sash and an opening sash installed in the frame 1, a hollow glass assembly installed on the outdoor side of the fixed sash, and a glass assembly installed on the outdoor side of the opening sash. The outermost plane of the hollow glass assembly and the outermost plane of the glass assembly are located on the same plane. The original plastic window sealing structure, hardware structure and steel lining structure in the frame 1, opening sash and fixed sash remain unchanged. By installing the glass assembly on the opening sash and the hollow glass assembly on the fixed sash, the outermost planes of the glass assembly and the hollow glass assembly are flush, forming a full glass window. This implementation can realize the functional requirements of a full glass window without opening a new mold. By modifying the original scheme, the cost is low, the cost of opening a mold in the early stage is reduced, and the performance of the whole window is guaranteed. By changing the glass configuration, various series can be modified, the adaptation range is wide, and the market demand is met.

[0034] In this embodiment, the opening sash includes a sash profile 7, a fly edge hollow glass 1 and a fly edge hollow glass 2 are installed in the sash profile 7, and the inner fly edge hollow glass 1 is connected with a positioning clamp 10 installed on the sash profile 7. The positioning clamp 10 is an L-shaped clamp. The use of fly edge hollow glass 1 and fly edge hollow glass 2 cancels the use of sash pressing lines, saving material costs and realizing low-cost modification of the original plastic window mold. When the opening sash is opened, the whole piece of glass is also seen, and the visual effect is better.

[0035] In this embodiment, the fly edge hollow glass 1 includes an inner glass 8, the inner glass 8 is provided with a color adjusting layer 9, the color adjusting layer 9 is a blackened glass periphery layer, the inner glass 8 is connected with the positioning clamp 10, the inner glass 8 is pasted on the positioning clamp 10 through high-adhesion double-sided adhesive tape, the inner glass 8 is fixed on the sash profile 7 through the positioning clamp 10, the inner glass 8 is sealingly connected with the sash profile 7, the inner glass 8 is connected with a glass partition strip 12 and connected with a glass 11 through the glass partition strip 12, and the glass 11 is installed in the sash profile 7. The outermost side of the inner glass 8 connected with the sash profile 7 is connected through a sealing glue 13 to form a sealing structure, which can ensure that this part of the indoor side is flush with the opening sash and improve the aesthetics of the indoor side.

[0036] In the embodiment, the finned hollow glass two includes single glass two connected with glass two 11 through glass spacer one 12, the glass two 11 is installed in the sash profile two 7, the single glass two is pasted with high-adhesion double-sided adhesive tape, and the single glass two is fixed on the sash profile two 7 through the high-adhesion double-sided adhesive tape; the glass two 11 on the outer finned glass is provided with a foam strip 11-1 between the glass two 11 on the outer finned glass. The single glass two and the glass two 11 form the finned glass, the transformation is simple, the transformation part is less, and the original plastic window has no influence on various functional structures. Except that the finned glass and the glass installation are different, the rest is unchanged. The full-glass window can be realized while the performance of the original series is maintained, the same light transmittance area as the original plastic window scheme is achieved, the light transmittance area is unchanged, the finned glass spacer position is basically consistent with the glass before the transformation, and therefore the light transmittance area is unchanged. The single glass two is provided with a color adjusting layer two 14 matched with the sash profile two 7. The color adjusting layer two 14 is a blackening treatment layer around the glass, the functions are realized by using the finned glass, the glass is simple and efficient to manufacture, the blackening treatment is performed on the exposed part, and the consistency of the indoor and outdoor colors is ensured. The manufacturing is simple, and no more steps are required. The original glass installation mode is cancelled during manufacturing, the finned glass is installed twice, and only one step of installing the glass is added, so that the influence on the overall manufacturing steps is small, and the manufacturing cost is reduced to the maximum extent.

[0037] In the embodiment, the fixed sash includes a mullion 15, a fixed glass 16 is installed between one side of the mullion 15 and the frame 1, the fixed glass 16 is two-sided three-glass, the mullion 15 and the frame 1 are provided with a glass press strip two 17 matched with the fixed glass 16, and the mullion 15, the frame 1 and the glass press strip two 17 are all provided with a sealing rubber strip two 18 matched with the fixed glass 16. The frame 1 and the mullion 15 do not need to be transformed and do not need to be opened, so that the initial investment cost is reduced. The cooperation of the mullion 15 and the frame 1 with the glass press strip two 17 is used for fixing the fixed glass 16, and the sealing rubber strip two 18 is used for increasing the sealing property of the fixed glass 16, so that the existing window frame structure is retained. The hollow glass is fixed on one side of the mullion 15 and the other side of the frame 1, and is used for assisting in forming the full-glass window. The hollow glass assembly includes two glass threes 19 arranged symmetrically, a glass spacer two 20 is arranged between the two glass threes 19, and the two glass threes 19 are both provided with a cover plate 22. High-adhesion double-sided adhesive tape is pasted on the single-layer glass 11-1 located at the innermost side, and is used for fixing the hollow glass assembly on the corresponding mullion 15 and frame 1. The glass three 19 located at the outdoor side is provided with a color adjusting layer three 21, and the color adjusting layer three 21 is a blackening treatment layer around the glass. The blackening treatment is performed on the exposed part, and the consistency of the indoor and outdoor colors is ensured. The glass cover plate 22 is a U-shaped cover plate. The U-shaped cover plate is buckled on the two ends of the glass three 19, is used for protecting the glass three 19, and is also used for assisting the glass three 19 in forming an integral structure, so that the structural stability is ensured.

[0038] The specific installation process is: a. The fan section 7 is cut according to Figure 8 The method;

[0039] b. The remaining sections except the fan section are cut according to the conventional door and window manufacturing process, and then all the sections are subjected to the conventional processes of punching, welding, hardware installation, etc.

[0040] c. The glass for realizing the full-glass window is cut according to the required type, the peripheral glass support clamps 23 and the decorative cover plates 22 of the hollow glass are installed, the glass periphery needs to be blackened, and the partition strip of the hollow glass needs to be adjusted according to the actual situation of the section;

[0041] d. The glass positioning clamp 10 is installed on the fan, and high-adhesion double-sided adhesive tape is pasted on the clamp 23;

[0042] e. The glass on the outdoor side of the fan is installed, the sealant 13 is applied on the periphery of the glass for sealing, and the foam strip 11-2 is pasted on the periphery on the indoor side;

[0043] f. Double-sided adhesive tape is pasted on the corresponding positions of the opening fan and the fixed part;

[0044] g. The processed glass is pasted to the corresponding position, and the screw 16 is used to fix the glass support clamp 23.

[0045] It should be noted that all the above schemes and steps are for workshop manufacturing, and the door and window installation method is fixed piece installation. If the fixed piece installation method cannot be used, it needs to be installed on site.

[0046] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A retrofit all-glass window, characterized by: The frame (1) is provided with a fixed sash and an opening sash, the fixed sash is provided with a hollow glass assembly, and the opening sash is provided with a glass assembly; the outermost plane of the hollow glass assembly is located on the same plane as the outermost plane of the glass assembly; The opening sash comprises a sash profile II (7), the sash profile II (7) is provided with a flash hollow glass I and a flash hollow glass II, and the flash hollow glass I is connected with a positioning clamp (10) arranged on the sash profile II (7). The flash hollow glass I comprises an inner glass (8), the inner glass (8) is provided with a color adjusting layer I (9), the inner glass (8) is connected with the positioning clamp (10), the inner glass (8) is sealingly connected with the sash profile II (7), the inner glass (8) is connected with a glass spacer I (12) and connected with a glass II (11) through the glass spacer I (12), and the glass II (11) is arranged in the sash profile II (7).

2. The modified full-glass window according to claim 1, wherein: The opening sash comprises a sash profile I (3), the sash profile I (3) is provided with a glass I (4) and a glass press strip I (5) for fixing the glass I (4), and the sash profile I (3) and the glass press strip I (5) are provided with a sealing rubber strip I (6) matched with the glass I (4).

3. The modified full-glass window according to claim 1, wherein: The flash hollow glass II comprises a single glass (2), the single glass (2) is connected with the glass II (11) through the glass spacer I (12), the glass II (11) is arranged in the sash profile II (7), the single glass (2) is pasted with high-adhesion double-sided adhesive, and the single glass (2) is fixed on the sash profile II (7) through the high-adhesion double-sided adhesive; the glass II (11) on the outer flash glass is provided with a foam strip (11-1) between the glass II (11) on the outer flash glass.

4. The modified full-glass window according to claim 3, wherein: The single glass (2) is provided with a color adjusting layer II (14) matched with the sash profile II (7).

5. The reconstructed all-glass window according to claim 3 or 4, characterized in that: The fixed sash comprises a mullion (15), one side of the mullion (15) is matched with the opening sash, the other side of the mullion (15) is provided with a fixed glass (16) between the mullion (15) and the frame (1), the mullion (15) and the frame (1) are provided with a glass press strip II (17) matched with the fixed glass (16), and the mullion (15), the frame (1) and the glass press strip II (17) are provided with a sealing rubber strip II (18) matched with the fixed glass (16).

6. The modified full-glass window according to claim 5, wherein: The hollow glass assembly comprises two symmetrical glass III (19), the two glass III (19) are provided with a glass spacer II (20), and the two ends of the two glass III (19) are provided with a cover plate (22).

7. The modified full-glass window according to claim 6, wherein: The outermost glass III (19) is provided with a color adjusting layer III (21).

8. The modified all-glass window according to claim 6 or 7, characterized in that: The cover plate (22) is a U-shaped cover plate.