New energy photovoltaic glass energy-saving window device

Through the combined structure of the support frame and the limit frame, combined with the sealing strip, the stability and disassembly and maintenance convenience problems of the photovoltaic glass energy-saving window are solved, and the structural stability and airtightness are improved.

CN223387170UActive Publication Date: 2025-09-26SHANDONG TAIXIN CURTAIN WALL PROJECT LIMITED
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Patent Information

Application Number
CN202422721540.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-09-26
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Traditional photovoltaic glass energy-saving window devices have problems with insufficient stability and inconvenient disassembly and maintenance when they are limited and fixed.

Method used

The combined structure of the support frame and the limit frame is adopted, and the window glass is stably fixed by the limit parts. The detachable connection method is convenient for maintenance, and the airtightness is improved by combining with the sealing strip.

Benefits of technology

The structural stability and air tightness of photovoltaic glass energy-saving windows are improved, while being easy to disassemble and install, thereby improving maintenance convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a new energy photovoltaic glass energy-saving window device which comprises a window frame and window glass located in the window frame, a limiting frame and a supporting frame are arranged on the front side and the rear side of the window glass respectively, the supporting frame is fixedly connected with the window frame, and the limiting frame is connected with the window frame through a limiting piece. A limiting groove along the inner wall of the window frame by a circle is formed between the supporting frame and the limiting frame, and the circumferential edge of the window glass is fixed in the limiting groove. The supporting frame is supported on the rear side of the window glass, the limiting frame limits the front side of the window glass, the window glass is fixed through the supporting frame and the limiting frame, the structure is more stable, the window frame and the limiting frame are detachably connected through the limiting piece, disassembly and assembly are convenient, and photovoltaic glass can be disassembled and maintained conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of windows, and in particular to a new energy photovoltaic glass energy-saving window device. Background Art

[0002] Photovoltaic glass energy-saving window devices are window systems that integrate photovoltaic power generation and energy-saving and heat-insulating functions. This type of window utilizes the characteristics of photovoltaic glass and transparent glass to convert sunlight into electricity while also meeting the needs of window functions.

[0003] When using traditional photovoltaic glass energy-saving window devices, sealants are used to limit and fix the photovoltaic glass. However, this method is prone to insufficient positioning stability of the photovoltaic glass, which can easily cause the window to shake in windy weather and pose a safety hazard. Alternatively, metal structures are used to directly fix the photovoltaic glass to the window frame, which makes it inconvenient to disassemble and maintain the photovoltaic glass. Utility Model Content

[0004] In view of the deficiencies in the prior art, the utility model provides a photovoltaic glass energy-saving window device which is easy to disassemble and has a stable structure.

[0005] The present utility model is realized through the following technical scheme: a new energy photovoltaic glass energy-saving window device, comprising a window frame and window glass installed in the window frame, wherein a limit frame and a support frame are respectively provided on the front and rear sides of the window glass, the support frame and the window frame are fixedly connected, and the limit frame and the window frame are connected by a limit piece, and a limit groove is formed between the support frame and the limit frame along the inner wall of the window frame, and the circumferential edge of the window glass is fixed in the limit groove.

[0006] In this solution, the support frame is supported on the rear side of the window glass, and the limit frame limits the front side of the window glass. The window glass is fixed by the support frame and the limit frame, and the structure is more stable. The window frame and the limit frame are detachably connected by the limit parts, which is convenient for disassembly and assembly, and facilitates the disassembly and maintenance of the photovoltaic glass.

[0007] As an optimization, a sealing strip is provided in the limiting groove, and the edge of the window glass is sealed with the sealing strip. This optimization solution improves the airtightness of the photovoltaic glass energy-saving window.

[0008] As an optimization, the stopper includes a movable cavity defined in the inner wall of the window frame, a movable member located within the movable cavity, and a spring. The spring is located on the side of the movable member away from the stop frame and drives the movable member to connect with the stop frame. This optimization solution secures the stop frame by using the spring to push the movable member into connection with the stop frame.

[0009] As an optimization, the movable member includes a movable plate and a plug. The spring is located between the bottom of the movable cavity and the movable plate. The plug is fixedly connected to the side of the movable plate away from the spring. A positioning through hole opposite to the movable cavity is provided on the outer wall of the limiting frame, and the plug is inserted into the positioning through hole. In this optimized solution, the limiting frame can be fixed by inserting the plug into the positioning through hole. When the spring contracts and the plug is separated from the positioning through hole, the disassembly of the limiting frame can be achieved, which is convenient to use.

[0010] As an optimization, a sealing rubber plug is provided in the positioning through hole. In this optimized solution, the positioning through hole is sealed by the sealing rubber plug to prevent the positioning through hole from being blocked by foreign objects.

[0011] As an optimization, a plurality of the limiting members are evenly distributed along the circumferential direction on the inner wall of the window frame. This optimized solution further improves the connection strength and stability between the limiting frame and the window frame.

[0012] As an optimization, both the limiting frame and the sealing rubber strip are integrally formed square structures. This optimized solution has a higher structural strength for the integrally formed structure and is more convenient for installation.

[0013] As an optimization, the window frame has a cross-shaped structure, and the window glass is installed in each of the four inner frames of the cross-shaped structure. This optimized solution makes the structure of the photovoltaic glass energy-saving window device more stable.

[0014] As an optimization, the window glass is a transparent photovoltaic glass.

[0015] The beneficial effects of the present utility model are as follows: The cross-shaped structure of the window frame makes the structural strength of the window frame greater. The inner frame is supported by the support frame behind the window glass, and the limiting frame limits the front side of the window glass. The window glass is fixed by the support frame and the limiting frame, and the structure is more stable. The airtightness of the photovoltaic glass energy-saving window is improved by the sealing rubber strip.

[0016] The window frame and the limiting frame are detachably connected by the limiting member, which is convenient for disassembly and assembly and is convenient for disassembling and maintaining the photovoltaic glass. Through the limiting member composed of a movable cavity, a spring, a movable member, a positioning through hole and a sealing rubber plug, the movable member is movably installed inside the movable cavity through the spring. By inserting one end of the movable member into the positioning through hole, it is convenient for the limiting frame to be fixed in the window frame through the limiting member. A sealing rubber plug is also installed in the positioning through hole, so that it is convenient to seal the opening of the positioning through hole by the sealing rubber plug. After the sealing rubber plug is removed, a hard object can be inserted into the positioning through hole to squeeze the movable member, and the spring contracts, so that it is convenient for the movable member to be separated from the positioning through hole, achieving the purpose of disassembling the limiting frame. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a partial cross-sectional view of the connection between the limiting frame and the window frame;

[0018] Figure 2 is Figure 1 A magnified view of part A;

[0019] Figure 3 for Figure 2 Magnified view of part C;

[0020] Figure 4 It is a partial cross-sectional view of the connection between the support frame and the window frame;

[0021] Figure 5 for Figure 4 A magnified view of part B;

[0022] Figure 6 This is a schematic diagram of the installation of sealing strips and window glass;

[0023] Figure 7 This is a schematic diagram of the installation of the limit frame;

[0024] As shown in the figure:

[0025] 1. Window frame, 2. Support frame, 3. Limit frame, 4. Limit groove, 5. Sealing strip, 6. Limit part, 61. Movable cavity, 62. Spring, 63. Movable part, 631. Movable plate, 632. Plug, 64. Positioning through hole, 65. Sealing plug, 7. Window glass. DETAILED DESCRIPTION

[0026] In order to clearly illustrate the technical features of this solution, this solution is described below through specific implementation methods.

[0027] like Figures 1 to 7 As shown, a new energy photovoltaic glass energy-saving window device includes a window frame 1 and a window glass 7 installed in the window frame 1, as shown in FIG. Figure 1 As shown, the window frame 1 of this embodiment is in a field structure, and the window glass 7 is installed in the four inner frames of the field structure. The window glass 7 is transparent photovoltaic glass.

[0028] The window glass 7 is provided with a limit frame 3 and a support frame 2 on the front and rear sides respectively. The support frame 2 is fixed to the window frame 1. In this embodiment, the support frame 2 is a square frame structure. The support frame 2 is fixed to the inner wall of the window frame 1 by welding.

[0029] The limiting frame 3 is connected to the window frame 1 via a limiting member 6. A limiting groove 4 is formed between the support frame 2 and the limiting frame 3 along the inner wall of the window frame. The circumferential edge of the window glass 7 is fixed in the limiting groove 4. A sealing strip 5 is provided in the limiting groove 4, and the edge of the window glass is sealed to the sealing strip. In this embodiment, the limiting frame 3 and the sealing strip 5 are both integrally formed square frame structures.

[0030] Specifically, a plurality of stoppers 6 are evenly distributed along the circumference of the inner wall of the window frame 1. Each stopper 6 includes a movable cavity 61 defined in the inner wall of the window frame 1, a movable member 63 located within the movable cavity 61, and a spring 62. The spring 62 is located on the side of the movable member 63 away from the stop frame 3 and drives the movable member 63 to connect with the stop frame 3. The spring pushes the movable member toward the stop frame, thereby connecting the movable member to the stop frame.

[0031] The movable member 63 includes a movable plate 631 and a plug 632. The spring 62 is located between the bottom of the movable cavity and the movable plate. In this embodiment, the ends of the spring 62 are welded to the movable cavity 61 and the movable plate 631, respectively. The plug 632 is fixed to the side of the movable plate 631 away from the spring 62. The outer wall of the limit frame 3 is provided with a positioning hole 64 opposite the movable cavity 61. In this embodiment, the positioning hole 64 is a through hole that passes through the limit frame. A sealing plug 65 is provided in the positioning hole 64, and the plug 632 is inserted into the positioning hole 64. The spring 62 pushes the plug into the positioning hole of the limit frame, thereby achieving the limit fixation of the limit frame.

[0032] like Figure 6 、 7 As shown, during installation, the support frame 2 and the window frame 1 are first welded together to support the window glass. The sealing strip 5 is then installed on the front side of the support frame 2. The window glass 7 is then installed within the sealing strip 5, so that the inner circumferential wall of the sealing strip 5 and the outer circumferential wall of the window glass 7 are sealed and fit together to improve airtightness. Finally, the limit frame 3 is installed in front of the window glass 7 to limit and fix the window glass. During installation, the spring 62 of the limit member 6 pushes one end of the movable member 63 into the positioning hole 64 of the limit frame 3, thereby achieving detachable fixation between the limit frame 3 and the window frame 1. By clamping the window glass 7 between the limit frame 3 and the support frame 2, the window glass is fixed, and the structure is more stable.

[0033] When the window glass 7 needs to be removed, first remove the sealing plug 65 that blocks the positioning hole 64, then use a hard object to insert the positioning hole 64 from the outer end of the positioning hole, and squeeze the movable part 63 inward to push the spring 62 to contract, thereby separating the plug 632 of the movable part from the positioning hole 64, and dismantle the limit frame 3. After the limit frame 3 is dismantled, the window glass 7 can be taken out, which is convenient for later maintenance.

[0034] Of course, the above description is not limited to the above examples. The technical features not described in the present invention can be achieved through or by adopting existing technologies, and will not be repeated here. The above embodiments and drawings are only used to illustrate the technical solution of the present invention and are not limitations of the present invention. The present invention is described in detail with reference to the preferred implementation methods. Ordinary technicians in this field should understand that the changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention do not depart from the purpose of the present invention and should also fall within the scope of protection of the claims of the present invention.

Claims

1. A new energy photovoltaic glass energy-saving window device, comprising a window frame (1) and a window glass (7) installed in the window frame (1), wherein the window glass (7) is transparent photovoltaic glass, and is characterized in that: On the front and back sides of the window glass (7), a limiting frame (3) and a support frame (2) are respectively provided. The support frame (2) is fixedly connected to the window frame (1). The limiting frame (3) is connected to the window frame (1) through a limiting member (6). A limiting groove (4) extending along the inner wall of the window frame in one week is formed between the support frame and the limiting frame. The circumferential edge of the window glass (7) is fixed in the limiting groove (4).

2. The new energy photovoltaic glass energy-saving window device according to claim 1, characterized in that: A sealing strip (5) is provided in the limiting groove (4), and the edge of the window glass (7) is hermetically fitted with the sealing strip.

3. The new energy photovoltaic glass energy-saving window device according to claim 1, characterized in that: The limiting member (6) includes a movable cavity (61) formed on the inner wall of the window frame (1), and a movable member (63) and a spring (62) located in the movable cavity. The spring (62) is located on the side of the movable member (63) away from the limiting frame (3) and drives the movable member (63) to be connected to the limiting frame (3).

4. The new energy photovoltaic glass energy-saving window device according to claim 3, characterized in that: The movable member (63) includes a movable plate (631) and a plug (632). The spring is located between the bottom of the movable cavity and the movable plate. The plug (632) is fixedly connected to the side of the movable plate (631) away from the spring (62). A positioning through hole (64) opposite to the movable cavity (61) is provided on the outer wall of the limiting frame (3), and the plug (632) is inserted into the positioning through hole (64).

5. The new energy photovoltaic glass energy-saving window device according to claim 4, characterized in that: A plugging rubber plug (65) is provided in the positioning through hole (64).

6. The new energy photovoltaic glass energy-saving window device according to claim 3, characterized in that: A plurality of the limiting members (6) are evenly distributed along the circumference on the inner wall of the window frame (1).

7. The new energy photovoltaic glass energy-saving window device according to claim 1, characterized in that: Both the limiting frame (3) and the sealing strip (5) are integrally formed square structures.

8. The new energy photovoltaic glass energy-saving window device according to claim 1, characterized in that: The window frame (1) is in a cross-shaped structure, and the window glass (7) is installed in each of the four inner frames of the cross-shaped structure.