Line pressing structure of door and window glass
By adopting the design of the first profile frame and the second profile frame in the pressing line structure of the door and window glass, combining the decorative groove and hammer head connection, and eliminating the square tube profile, the effect of reducing costs and avoiding safety hazards is achieved, and the unified architectural style is maintained.
Patent Information
- Application Number
- CN202422601237.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-26
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-10-26
AI Technical Summary
In the prior art, the pressure line structure of door and window glass is assembled by arranging raised square tube profiles on the surface, which increases costs and poses safety hazards.
A pressing structure including a first profile frame and a second profile frame is adopted, and a vertical reinforcement cavity and a decorative part are provided on the frame. By arranging a heat insulation component and a connection part between the profile frames, the square tube profile is eliminated, and decorative grooves and hammer heads are used for connection to form an installation cavity for installing the heat insulation strip and the steel lining, and the pressing structure form is unified.
It reduces production costs, avoids the risk of square tube profiles falling off, and maintains the consistency and safety of the architectural style.
Smart Images

Figure CN223330445U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of door and window equipment, in particular to a line pressing structure for door and window glass. Background Art
[0002] In recent years, the new Chinese style of architecture has become more popular. Since Chinese-style doors and windows are usually located at a higher position on the bottom floor, especially the main door, the height of doors and windows on other higher floors is much smaller than that on the bottom floor, which is not conducive to the uniformity of the pressure line structure.
[0003] Usually, the same pressure line structure is used after calculation according to the larger acceptance position, which is not conducive to cost control. In addition, in order to reflect the new Chinese architectural style, in addition to making concave and convex shapes on the curtain wall, corresponding shapes need to be made on the doors and windows to echo the curtain wall in order to meet the airtight and watertight requirements of the doors and windows.
[0004] The usual practice is to set a raised square tube profile on the outer surface of the pressure line structure based on the original door and window glass pressure line structure, and form a groove between the two raised square tube profiles. However, this will lead to an increase in square tube profiles, which will invisibly greatly increase the construction cost. In addition, the added square tube profiles also have the risk of falling off, resulting in certain safety hazards. Utility Model Content
[0005] The purpose of the present invention is to overcome the above-mentioned technical deficiencies and provide a pressure line structure for door and window glass, so as to solve the technical problems in the prior art that the pressure line structure for door and window glass is assembled by arranging raised square tube profiles on the surface, which invisibly leads to increased costs and potential safety hazards.
[0006] In order to achieve the above technical purpose, the present invention adopts the following technical solutions:
[0007] In a first aspect, the utility model provides a line pressing structure for door and window glass, comprising a line pressing structure;
[0008] The wire pressing structure includes a first profile frame and a second profile frame, the second profile frame is provided with a first reinforcement cavity and a second reinforcement cavity perpendicular to each other, the first reinforcement cavity and the second reinforcement cavity are both provided with steel linings, the first profile frame and the second profile frame are provided with a decorative part on the opposite sides, the first profile frame and the second profile frame are provided with an insulation component at the end close to each other, and connecting parts are provided on both sides of the insulation component.
[0009] In some embodiments, a glass fixing end is provided on a side of the first profile frame facing the second profile frame.
[0010] In some embodiments, the decorative portion includes a first decorative groove provided on a side of the first profile frame facing away from the second profile frame, and a second decorative groove on a side of the second profile frame facing away from the first profile frame.
[0011] In some embodiments, the connecting portion includes two first hammer heads, two second hammer heads, two third hammer heads and two fourth hammer heads; the two first hammer heads and the two second hammer heads are respectively connected to the opposite sides of the first profile frame and the second profile frame to form a first assembly area, the two third hammer heads and the two fourth hammer heads are respectively connected to the opposite sides of the first profile frame and the second profile frame to form a second assembly area, and thermal insulation components are installed in the first assembly area and the second assembly area.
[0012] In some embodiments, a first installation cavity is formed between the first assembly area and the second assembly area, and a second installation cavity is formed between the first reinforcement cavity and the second reinforcement cavity.
[0013] In some embodiments, the thermal insulation assembly includes a first thermal insulation strip and a second thermal insulation strip, the first thermal insulation strip is arranged in the first assembly area, and the lower end of the first thermal insulation strip is connected to the first hammer head, and the upper end is connected to the second hammer head, the second thermal insulation strip is arranged in the second assembly area, and the lower end of the second thermal insulation strip is connected to the third hammer head, and the upper end is connected to the fourth hammer head.
[0014] In some embodiments, the ends of the first thermal insulation strip and the second thermal insulation strip connected to the second profile frame are flush, and the length of the first thermal insulation strip is smaller than the length of the second thermal insulation strip.
[0015] Compared with the prior art, the present invention provides a press line structure for door and window glass. Compared with the prior art, the present invention can unify the form of the press line structure and set a decorative part on the surface of the press line structure, which can replace the original square tube profile. While reducing costs, it can avoid the risk of the square tube profile falling off. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is an overall schematic diagram of the pressure line structure of the door and window glass provided by the embodiment of the utility model;
[0017] Figure 2 This is a schematic diagram of the assembly of the first profile frame and the second profile frame of the pressure line structure of the door and window glass provided by an embodiment of the utility model;
[0018] Figure 3 It is a schematic diagram of the steel lining assembly of the pressure line structure of the door and window glass provided by an embodiment of the utility model.
[0019] Explanation of the accompanying drawings: 1. Wire pressing structure; 2. First profile frame; 21. Glass fixing end; 3. Second profile frame; 31. First reinforcement cavity; 32. Second reinforcement cavity; 33. Steel lining; 34. First installation cavity; 35. Second installation cavity; 4. Decorative part; 41. First decorative groove; 42. Second decorative groove; 5. Thermal insulation assembly; 51. First thermal insulation strip; 52. Second thermal insulation strip; 6. Connecting part; 61. First hammer head; 62. Second hammer head; 63. Third hammer head; 64. Fourth hammer head. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0021] In order to solve the technical problem that the pressing line structure of door and window glass in the prior art is to assemble the door and window glass by setting a raised square tube profile on the surface, which invisibly leads to increased costs and poses a safety hazard, the utility model provides a pressing line structure for door and window glass, which can reduce production costs and avoid safety hazards.
[0022] It should be noted that the pressing line structure of the door and window glass described in the present invention is used for but not limited to the door and window field. For the convenience of explanation, in the present invention, only the application of the pressing line structure of the door and window glass in the door and window field is used as an example for explanation. The principle of applying the pressing line structure of the door and window glass to other types of equipment is essentially the same as the principle applied to the door and window field, and will not be repeated here.
[0023] See also Figure 1 , Figure 1 This is a structural schematic diagram of the press line structure of the door and window glass in one embodiment of the utility model. The press line structure of the door and window glass includes a press line structure 1. The press line structure 1 includes a first profile frame 2 and a second profile frame 3. The second profile frame 3 is provided with a first reinforcement cavity 31 and a second reinforcement cavity 32 perpendicular to each other. The first reinforcement cavity 31 and the second reinforcement cavity 32 are both provided with a steel lining 33. The first profile frame 2 and the second profile frame 3 are provided with a decorative portion 4 on the opposite sides thereof. The first profile frame 2 and the second profile frame 3 are provided with an insulation component 5 at the end close to each other, and connecting portions 6 are provided on both sides of the insulation component 5.
[0024] In this embodiment, the device can unify the form of the wire pressing structure 1 and set a decorative part 4 on the surface of the wire pressing structure 1, which can replace the original square tube profile, reducing costs while avoiding the risk of the square tube profile falling off.
[0025] In one embodiment, see Figure 2 and Figure 3 To facilitate the assembly between the first profile frame 2 and the second profile frame 3, a glass fixing end 21 is provided on the side of the first profile frame 2 facing the second profile frame 3, and the decorative portion 4 includes a first decorative groove 41 provided on the side of the first profile frame 2 facing away from the second profile frame 3, and a second decorative groove 42 provided on the side of the second profile frame 3 facing away from the first profile frame 2.
[0026] In this embodiment, by opening the first decorative groove 41 and the second decorative groove 42 on the opposite sides of the first profile frame 2 and the second profile frame 3, the square tube can be eliminated, thereby reducing costs. The openings of the first decorative groove 41 and the second decorative groove 42 are opposite and aligned in position, so that the pressure line structure 1 of the door and window maintains a consistent style indoors and outdoors.
[0027] In one embodiment, see Figure 2 and Figure 3 In order to improve the working efficiency of the heat insulation component 5, the connecting portion 6 includes two first hammer heads 61, two second hammer heads 62, two third hammer heads 63 and two fourth hammer heads 64; the two first hammer heads 61 and the two second hammer heads 62 are respectively connected to the opposite side of the first profile frame 2 and the second profile frame 3, and form a first assembly area, the two third hammer heads 63 and the two fourth hammer heads 64 are respectively connected to the opposite side of the first profile frame 2 and the second profile frame 3, and form a second assembly area, the heat insulation component 5 is installed in the first assembly area and the second assembly area, and a first assembly area is formed between the first assembly area and the second assembly area. Cavity 34, a second installation cavity 35 is formed between the first reinforcement cavity 31 and the second reinforcement cavity 32, the thermal insulation assembly 5 includes a first thermal insulation strip 51 and a second thermal insulation strip 52, the first thermal insulation strip 51 is arranged in the first assembly area, and the lower end of the first thermal insulation strip 51 is connected to the first hammer head 61, and the upper end is connected to the second hammer head 62, the second thermal insulation strip 52 is arranged in the second assembly area, and the lower end of the second thermal insulation strip 52 is connected to the third hammer head 63, and the upper end is connected to the fourth hammer head 64, the first thermal insulation strip 51 and the second thermal insulation strip 52 are flush with one end connected to the second profile frame 3, and the length of the first thermal insulation strip 51 is less than the length of the second thermal insulation strip 52.
[0028] In this embodiment, the heat insulation component 5 includes a first heat insulation strip 51, a first hammer head 61 is provided on the side of the first profile frame 2 facing the second profile frame 3, and a second hammer head 62 is provided on the side of the second profile frame 3 facing the first profile frame 2, and the two ends of the first heat insulation strip 51 are respectively fixed in the first hammer head 61 and the second hammer head 62, and the first heat insulation strip 51 is located on the inner side of the first decorative groove 41; the heat insulation component 5 also includes a second heat insulation strip 52, a third hammer head 63 is provided on the side of the first profile frame 2 facing the second profile frame 3, and a fourth hammer head 64 is provided on the side of the second profile frame 3 facing the first profile frame 2, and the two ends of the second heat insulation strip 52 are respectively fixed in the third hammer head 63 and the fourth hammer head 64, and the second heat insulation strip 52 is away from the glass fixing end 21, wherein the first hammer head 61 connected to one end of the first heat insulation strip 51 is provided with an inward first decorative groove 41, while the third hammer head 63 connected to one end of the second heat insulation strip 52 does not have it, and the first heat insulation strip 51 and the second heat insulation strip 5 2 is connected to one end of the second profile frame 3 flush, so the length of the first thermal insulation strip 51 is shorter than that of the second thermal insulation strip 52. A first installation cavity 34 is formed between the second thermal insulation strip 52 and the first thermal insulation strip 51. The first installation cavity 34 can be used to install a pulley or handrail component depending on the specific construction situation. The interior of the second profile frame 3 is provided with a first reinforcement cavity 31 and a second reinforcement cavity 32. The first reinforcement cavity 31 is located inside the second decorative groove 42, and the second reinforcement cavity 32 is located on the side of the first reinforcement cavity 31 away from the glass fixing end 21. Steel liners 33 are respectively installed in the first reinforcement cavity 31 and the second reinforcement cavity 32 to further strengthen the overall structure. The second reinforcement cavity 32 can be used to install a handle component depending on the specific construction situation. The second reinforcement cavity 32 and the first reinforcement cavity 31 are perpendicular to each other, and a second installation cavity 35 is formed therebetween. The second installation cavity 35 can be used to install a transmission block or a lock block depending on the specific construction situation. The glass fixing end 21 is used to fix the vacuum glass.
[0029] In order to better understand the present invention, the following Figures 1 to 3The technical solution of the present invention is described in detail: the device is provided with a first decorative groove 41 and a second decorative groove 42 on the opposite sides of the first profile frame 2 and the second profile frame 3, respectively, so that the square tube profile can be eliminated, which greatly reduces the construction cost. Through the combination of the first decorative groove 41 and the second decorative groove 42, the pressure line structure 1 of the door and window maintains the same style indoors and outdoors. The heat insulation component 5 includes a first heat insulation strip 51, and the first profile frame 2 is provided with a first hammer head 61 on the side facing the second profile frame 3. The second profile frame 3 is provided with a first hammer head 61 on the side facing the first profile frame 2. A second hammer 62 is provided, and the two ends of the first thermal insulation strip 51 are respectively fixed in the first hammer 61 and the second hammer 62, and the first thermal insulation strip 51 is located on the inner side of the first decorative groove 41; the thermal insulation assembly 5 also includes a second thermal insulation strip 52, and a third hammer 63 is provided on the side of the first profile frame 2 facing the second profile frame 3, and a fourth hammer 64 is provided on the side of the second profile frame 3 facing the first profile frame 2, and the two ends of the second thermal insulation strip 52 are respectively fixed in the third hammer 63 and the fourth hammer 64, and the second thermal insulation strip 52 is away from the glass fixing end 21; due to the connection of one end of the first thermal insulation strip 51 The first hammer head 61 is provided with an inward first decorative groove 41, while the third hammer head 63 connected to one end of the second thermal insulation strip 52 does not have one. In addition, the first thermal insulation strip 51 and the second thermal insulation strip 52 are flush with one end connected to the second profile frame 3. Therefore, the length of the first thermal insulation strip 51 is less than that of the second thermal insulation strip 52. A first installation cavity 34 is formed between the second thermal insulation strip 52 and the first thermal insulation strip 51. The first installation cavity 34 can be used to install a pulley or a handle component depending on the specific construction situation. The interior of the second profile frame 3 is provided with a first reinforcement cavity 31 and a second reinforcement cavity 32. The first reinforcement cavity 31 is located inside the decorative groove, and the second reinforcement cavity 32 is located on the side of the first reinforcement cavity 31 away from the glass fixing end 21. Steel liners 33 are respectively installed in the first reinforcement cavity 31 and the second reinforcement cavity 32 to further strengthen the overall structure. The second reinforcement cavity 32 can be used to install components of the handle depending on the specific construction conditions. The second reinforcement cavity 32 and the first reinforcement cavity 31 are perpendicular to each other and form a second installation cavity 35 therebetween. The second installation cavity 35 can be used to install a transmission block and a locking block depending on the specific construction conditions. The glass fixing end 21 is used to fix the vacuum glass.
[0030] The specific embodiments of the present invention described above do not limit the scope of protection of the present invention. Any other corresponding changes and modifications made based on the technical concept of the present invention should be included in the scope of protection of the claims of the present invention.
Claims
1. A pressure line structure for door and window glass, characterized in that: Including wire pressing structure; The wire pressing structure includes a first profile frame and a second profile frame, the second profile frame is provided with a first reinforcement cavity and a second reinforcement cavity perpendicular to each other, the first reinforcement cavity and the second reinforcement cavity are both provided with steel linings, the first profile frame and the second profile frame are provided with a decorative part on the opposite sides, the first profile frame and the second profile frame are provided with an insulation component at the end close to each other, and connecting parts are provided on both sides of the insulation component.
2. The pressure line structure for door and window glass according to claim 1, characterized in that: A glass fixing end is provided on a side of the first profile frame facing the second profile frame.
3. The pressure line structure for door and window glass according to claim 1, characterized in that: The decorative portion includes a first decorative groove provided on a side of the first profile frame facing away from the second profile frame, and a second decorative groove on a side of the second profile frame facing away from the first profile frame.
4. The pressure line structure for door and window glass according to claim 1, characterized in that: The connecting portion includes two first hammer heads, two second hammer heads, two third hammer heads and two fourth hammer heads; the two first hammer heads and the two second hammer heads are respectively connected to the opposite sides of the first profile frame and the second profile frame, and form a first assembly area; the two third hammer heads and the two fourth hammer heads are respectively connected to the opposite sides of the first profile frame and the second profile frame, and form a second assembly area; thermal insulation components are installed in both the first assembly area and the second assembly area.
5. The pressure line structure for door and window glass according to claim 4, characterized in that: A first installation cavity is formed between the first assembly area and the second assembly area, and a second installation cavity is formed between the first reinforcement cavity and the second reinforcement cavity.
6. The pressure line structure for door and window glass according to claim 4, characterized in that: The thermal insulation assembly includes a first thermal insulation strip and a second thermal insulation strip. The first thermal insulation strip is arranged in the first assembly area, and the lower end of the first thermal insulation strip is connected to the first hammer head, and the upper end is connected to the second hammer head. The second thermal insulation strip is arranged in the second assembly area, and the lower end of the second thermal insulation strip is connected to the third hammer head, and the upper end is connected to the fourth hammer head.
7. The pressure line structure for door and window glass according to claim 6, characterized in that: The ends of the first thermal insulation strip and the second thermal insulation strip connected to the second profile frame are flush, and the length of the first thermal insulation strip is smaller than the length of the second thermal insulation strip.