Door and window with nylon heat insulation strips

Through the combined design of nylon insulation strips and the use of sealant strips, the problem of poor insulation effect of existing insulation strips is solved, achieving more efficient insulation performance and energy consumption reduction.

CN223164423UActive Publication Date: 2025-07-29HENAN KEYU WINDOWS CO LTD
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Patent Information

Application Number
CN202422167008.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-04
Publication Date
2025-07-29
Estimated Expiration
2034-09-04

AI Technical Summary

Technical Problem

The existing heat insulation strip has a single structure, poor thermal insulation effect, and poor use effect.

Method used

The nylon insulation strip is used to form a variety of insulation configuration solutions through the combination of different forms of insulation assembly one and insulation assembly two. The C-type notch and the T-type connector form a thermal insulation wall, and the sealant strip is used to divide the thermal convection area, combining the low thermal conductivity and flexibility of PVC material.

Benefits of technology

Improves thermal insulation performance, reduces convection and thermal radiation of the profile cavity, and achieves lower energy consumption.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223164423U_ABST
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Abstract

The utility model discloses a door and window with a nylon heat insulation strip, and relates to the technical field of heat insulation strips. Comprising a plurality of heat insulation strip bodies, the heat insulation strip bodies are installed in a heat insulation window sash, two connecting grooves are formed in one side of each heat insulation strip body, and a C-shaped notch and a T-shaped connecting piece corresponding to the two connecting grooves are arranged on the other side of each heat insulation strip body. The first heat insulation assembly adopts a front and back symmetrical layout design scheme, so that a C-shaped notch and a T-shaped connecting piece can form a heat insulation wall, the general performance of the heat insulation strip body is improved, stock is reduced, the second heat insulation assembly is used in cooperation with a sealing rubber strip, a heat convection area in the center of the heat insulation strip body can be effectively divided, and the heat insulation effect is improved. The hard partition ribs can better partition the space in the heat insulation cavity, and the two heat insulation strip bodies are combined in different forms, so that various practical heat insulation configuration schemes can be formed, convection and heat radiation of the profile cavity are better reduced, and finally the purpose of reducing energy consumption is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of heat insulation strips, in particular to a door and window with a nylon heat insulation strip. Background Technique

[0002] Heat-insulating aluminum alloy is also called broken bridge aluminum, heat-insulating broken bridge aluminum, broken bridge aluminum alloy. Building profiles are a new type of building material that meets the requirements of building energy conservation. It is a composite material with heat insulation and cold insulation functions made by connecting aluminum alloy building profiles with non-metallic materials with low thermal conductivity. In addition to the characteristics of building profiles, it also has excellent heat preservation performance and sound insulation performance.

[0003] Generally, heat insulation strips need to be installed inside the heat-insulating aluminum alloy for heat insulation. However, the existing heat insulation strips have a single structure, poor heat insulation effect, and unsatisfactory use effect. Content of the Utility Model

[0004] The utility model provides a door and window with a nylon heat insulation strip to solve the problems in the background technique.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: A door and window with a nylon heat insulation strip, including a heat insulation strip main body, the heat insulation strip main body is installed inside the heat insulation window sash, the number of the heat insulation strip main bodies is several, two connection grooves are arranged on one side of the heat insulation strip main body, and a C-shaped groove opening and a T-shaped connecting piece corresponding to the two connection grooves respectively are arranged on the other side.

[0006] Further, several of the heat insulation strip main bodies are combined into several first heat insulation components and second heat insulation components in groups of two.

[0007] Further, the two heat insulation strip main bodies in the first heat insulation component are arranged with the sides with the C-shaped groove openings facing each other, and the C-shaped groove openings on the two heat insulation strip main bodies are clamped with the T-shaped connecting piece.

[0008] Further, the two heat insulation strip main bodies in the second heat insulation component are arranged in the same direction, and a sealing rubber strip is installed inside the connection groove on one side of one of the heat insulation strip main bodies, and the C-shaped groove opening and the T-shaped connecting piece on the other side of the other heat insulation strip main body are respectively in contact with one end of the two sealing rubber strips.

[0009] Further, the sealing rubber strip includes a flexible base and a hard dividing rib arranged on one side of the flexible base.

[0010] Further, several heat insulation cavities are arranged inside the heat insulation strip main body.

[0011] Further, buckles are arranged at both ends of the heat insulation strip main body.

[0012] Further, the two sides of the heat-insulating window sash are respectively the outdoor side of the window sash and the indoor side of the window sash.

[0013] Further, a plurality of installation cavities are arranged inside the heat-insulating window sash, and a plurality of the first heat-insulating components and the second heat-insulating components are respectively installed inside the plurality of installation cavities.

[0014] Further, clamping grooves engaged with the buckles are arranged on both sides of the inner wall of the installation cavity.

[0015] Compared with the prior art, the present utility model provides a door and window with a nylon heat-insulating strip, and has the following beneficial effects:

[0016] For the door and window with a nylon heat-insulating strip, the first heat-insulating component adopts a front-back symmetric layout design scheme, so that the C-shaped groove and the T-shaped connecting piece can form a heat-insulating wall, improving the general performance of the heat-insulating strip body itself, reducing inventory. The second heat-insulating component is used in cooperation with the sealing strip, which can effectively divide the heat convection area in the center of the heat-insulating strip body. The rigid dividing ribs better divide the space in the heat-insulating cavity. Through the combination of two different forms of heat-insulating strip bodies, various practical heat-insulating configuration schemes can be formed by itself, so as to better reduce the convection and heat radiation of the profile cavity, and finally achieve the goal of reducing energy consumption. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a structural sectional view of the present utility model;

[0018] Figure 2 is a structural sectional view of the installation cavity of the present utility model;

[0019] Figure 3 is a structural sectional view of the heat-insulating strip body of the present utility model;

[0020] Figure 4 is a structural sectional view of the second heat-insulating component of the present utility model.

[0021] In the figure: 1, heat-insulating window sash; 11, outdoor side of the window sash; 12, indoor side of the window sash; 13, window screen; 14, glass; 15, heat-insulating strip body; 151, connecting groove; 152, C-shaped groove; 153, T-shaped connecting piece; 154, heat-insulating cavity; 155, buckle; 16, installation cavity; 161, clamping groove; 17, first heat-insulating component; 18, second heat-insulating component; 19, sealing strip; 191, flexible base; 192, rigid dividing rib. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0023] Please refer to Figures 1-4 , the present utility model discloses a door and window with a nylon heat insulation strip, including a heat insulation strip main body 15. The heat insulation strip main body 15 is installed inside a heat insulation window sash 1. The number of the heat insulation strip main bodies 15 is several. Two connection grooves 151 are arranged on one side of the heat insulation strip main body 15, and a C-shaped notch 152 and a T-shaped connector 153 corresponding to the two connection grooves 151 respectively are arranged on the other side. The heat insulation strip main body 15 is made of nylon material.

[0024] Specifically, several heat insulation strip main bodies 15 are combined into several first heat insulation assemblies 17 and second heat insulation assemblies 18 in groups of two. The sides of the two heat insulation strip main bodies 15 in the first heat insulation assembly 17 with the C-shaped notches 152 face each other, and the C-shaped notches 152 on the two heat insulation strip main bodies 15 are clamped with the T-shaped connectors 153. The two heat insulation strip main bodies 15 in the second heat insulation assembly 18 are arranged in the same direction, and a sealing strip 19 is installed inside the connection groove 151 on one side of one of the heat insulation strip main bodies 15. One end of each of the C-shaped notch 152 and the T-shaped connector 153 on the other heat insulation strip main body 15 is in contact with one end of the two sealing strips 19. The sealing strip 19 includes a flexible base 191 and a hard dividing rib 192 arranged on one side of the flexible base 191.

[0025] The first heat insulation assembly 17 and the second heat insulation assembly 18 are two different installation and use schemes of the heat insulation strip main body 15. The structures of the heat insulation strip main bodies 15 used are the same, and only the positions and directions of the heat insulation strip main bodies 15 need to be adjusted.

[0026] The sides of the two heat insulation strip main bodies 15 in the first heat insulation assembly 17 with the C-shaped notches 152 face each other and are staggered, so that the C-shaped notches 152 on the two heat insulation strip main bodies 15 are opposite to and clamped with the T-shaped connectors 153. In this combination method, the C-shaped notch 152 and the T-shaped connector 153 can form a heat insulation wall, further ensuring the heat insulation performance of the heat insulation window sash 1. The front-back symmetry layout design scheme improves the general performance of the heat insulation strip main body 15 itself and reduces inventory.

[0027] The two heat insulation strip bodies 15 in the second heat insulation component 18 are in the same direction. Through the connecting groove 151, the sealing strip 19 can be installed between the two heat insulation strip bodies 15. The sealing strip 19 is made of soft-hard composite PVC material, which can effectively divide the heat convection area in the center of the heat insulation strip body 15. At the same time, by using the low heat conduction coefficient of PVC itself, the energy consumption caused by heat convection and radiation can be reduced. The flexible performance of PVC itself enables the profile to have good secondary bending performance, so as to better manufacture special-shaped windows, such as arc window types. The flexible base 191 is convenient for compression into the connecting groove 151 and can prevent the displacement of the strip, so that the strip can be better positioned in the profile cavity. The rigid dividing rib 192 can better divide the space in the heat insulation cavity.

[0028] The settings of the first heat insulation component 17 and the second heat insulation component 18 can form a variety of practical heat insulation configuration schemes through different combinations of the two heat insulation strip bodies 15, so as to better reduce the convection and heat radiation in the profile cavity and finally achieve the goal of reducing energy consumption.

[0029] Specifically, several heat insulation cavities are arranged inside the heat insulation strip body 15. The arrangement of the heat insulation cavities further increases the heat insulation performance of a single heat insulation strip body 15.

[0030] Specifically, buckles 155 are arranged at both ends of the heat insulation strip body 15. The buckles 155 are used to install the heat insulation strip body 15 inside the heat insulation window sash 1.

[0031] Specifically, the two sides of the heat insulation window sash 1 are respectively the outdoor side 11 of the window sash and the indoor side 12 of the window sash. A window screen 13 and glass 14 located on one side of the window screen 13 are also arranged inside the heat insulation window sash 1. The window screen 13 is located on the outdoor side 11 of the window sash, and the glass 14 is located on the indoor side 12 of the window sash.

[0032] Specifically, several installation cavities 16 are arranged inside the heat insulation window sash 1. Several first heat insulation components 17 and second heat insulation components 18 are respectively installed inside the several installation cavities 16. Clamping grooves 161 engaged with the buckles 155 are arranged on both sides of the inner wall of the installation cavity 16. Refer to Figure 2 , the heat insulation strip body 15 is connected and installed inside the installation cavity 16 through the buckles 155 at both ends thereof and the clamping grooves 161, so as to further improve the heat insulation performance of the heat insulation window sash 1.

[0033] In summary, for the door and window with a nylon heat insulation strip, the heat insulation component 17 adopts a symmetrical layout design on the front and back sides, so that the C-shaped notch 152 and the T-shaped connector 153 can form a heat insulation wall, improving the general performance of the heat insulation strip body 15 itself and reducing inventory. The heat insulation component 18 is used in cooperation with the sealing strip 19, which can effectively divide the heat convection area in the center of the heat insulation strip body 15. The rigid dividing rib 192 better divides the space in the heat insulation cavity. Through the combination of two heat insulation strip bodies 15 in different forms, various practical heat insulation configuration schemes can be formed, thereby better reducing the convection and heat radiation in the profile cavity and finally achieving the goal of reducing energy consumption.

[0034] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A door and window with a nylon heat insulation strip, comprising a heat insulation strip main body (15), characterized in that: The heat insulation strip body (15) is installed inside the heat insulation window sash (1). The number of the heat insulation strip bodies (15) is several. Two connecting grooves (151) are arranged on one side of the heat insulation strip body (15), and a C-shaped notch (152) and a T-shaped connector (153) corresponding to the two connecting grooves (151) respectively are arranged on the other side.

2. The door and window with a nylon heat insulation strip according to claim 1, characterized in that: Several of the heat insulation strip bodies (15) are combined into several first heat insulation assemblies (17) and second heat insulation assemblies (18) in groups of two.

3. The door and window with a nylon heat insulation strip according to claim 2, characterized in that: In the first heat insulation assembly (17), the sides of the two heat insulation strip bodies (15) with the C-shaped notches (152) face each other, and the C-shaped notches (152) on the two heat insulation strip bodies (15) are clamped with the T-shaped connectors (153).

4. The door and window with a nylon heat insulation strip according to claim 2, characterized in that: In the second heat insulation assembly (18), the two heat insulation strip bodies (15) are arranged in the same direction. A sealing strip (19) is installed inside the connecting groove (151) on one side of one of the heat insulation strip bodies (15), and the C-shaped notch (152) and the T-shaped connector (153) on one side of the other heat insulation strip body (15) are respectively in contact with one end of the two sealing strips (19).

5. The door and window with a nylon heat insulation strip according to claim 4, characterized in that: The sealing strip (19) includes a flexible base (191) and a rigid dividing rib (192) arranged on one side of the flexible base (191).

6. The door and window with a nylon heat insulation strip according to claim 1, characterized in that: Several heat insulation cavities are arranged inside the heat insulation strip body (15).

7. The door and window with a nylon heat insulation strip according to claim 1, characterized in that: Clasps (155) are arranged at both ends of the heat insulation strip body (15).

8. A kind of door and window with nylon heat insulation strips according to claim 1, characterized in that: On both sides of the heat insulation window sash (1) are the outdoor side (11) of the window sash and the indoor side (12) of the window sash respectively.

9. The door and window with a nylon heat insulation strip according to claim 2, characterized in that: Several installation cavities (16) are arranged inside the heat insulation window sash (1). The several first heat insulation assemblies (17) and second heat insulation assemblies (18) are respectively installed inside the several installation cavities (16).

10. A door and window with a nylon heat insulation strip according to claim 9, characterized in that: On both sides of the inner wall of the installation cavity (16), clamping grooves (161) for clamping with the clasps (155) are arranged.