Screen assembly

By combining light-transmitting and opaque splicing boards in the screen assembly, combined with the L-shaped structure and Z-shaped buckle design, the problem that existing screens cannot take into account both the barrier and lighting are solved, and good light-transmitting, aesthetics and privacy are achieved, and the stability and easy assembly of the screen are improved.

CN223008827UActive Publication Date: 2025-06-24ZHANGZHOU SHANJUYUAN DISPLAY RACK CO LTD
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Patent Information

Application Number
CN202422385946.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-06-24
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

Existing office screens cannot take into account better partitioning and lighting effects. Fully-impermeable screens lead to reduced indoor lighting, while full-impermeable screens reduce privacy.

Method used

A screen assembly is designed to form a stepped-arranged opaque area and a right-angle translucent area through the combination of a translucent splicing plate and an opaque splicing plate, combining the splicing method of the L-shaped structure and the Z-shaped buckle, and optimize the area separation within the frame and the layout of the assembly board.

Benefits of technology

It achieves a good light transmission and aesthetic effect while maintaining good privacy. It improves the convenience of the screen through an easy-to-assemble design, and enhances the stability of the screen through the design of the base and rubber pad.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223008827U_ABST
    Figure CN223008827U_ABST
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Abstract

The utility model discloses a screen assembly which comprises a first screen, a second screen and a third screen, the first screen, the second screen and the third screen are sequentially spliced to form the screen assembly of an L-shaped structure, the first screen and the second screen are located on the same plane, and the third screen is perpendicular to the second screen. Each of the first screen, the second screen and the third screen comprises a frame and an assembling plate embedded in the frame, the assembling plate comprises a light-transmitting assembling plate and a light-proof assembling plate, and the first screen and the second screen are combined to form a light-proof area arranged in a step shape; and right-angled light-transmitting areas are respectively formed at the left lower corner and the right upper corner of the light-proof area. Through the combination of the light-transmitting splicing plates and the light-proof splicing plates, the screen assembly has good light-transmitting and attractive effects while having good privacy.
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Description

Technical Field

[0001] The utility model relates to the technical field of screens, and in particular to a screen assembly. Background Art

[0002] Screens are generally placed at prominent positions indoors, playing roles such as partitioning, beautifying, wind blocking, and coordination. Screens are also often used in modern office places to divide work areas. However, the existing office screens generally cannot balance good blocking effects and lighting effects. If a completely opaque screen is used, it often leads to a decrease in indoor lighting, being visually cramped and not conducive to aesthetics. If a completely transparent screen is used, the privacy will be reduced. Content of the Utility Model

[0003] The purpose of the utility model is to provide a screen assembly that is easy to assemble and has good light transmittance.

[0004] To achieve the above purpose, the utility model proposes a screen assembly, which includes a first screen, a second screen, and a third screen. The first screen, the second screen, and the third screen are sequentially assembled to form an L-shaped screen assembly. The first screen and the second screen are in the same plane, and the third screen is perpendicular to the second screen;

[0005] On one side of the first screen connected to the second screen, several first splicing parts are provided. At the position of the second screen corresponding to the first splicing parts of the first screen, second splicing parts are provided. One of the first splicing parts and the second splicing parts is a Z-shaped buckle, and the other is a splicing port;

[0006] On one side of the second screen connected to the third screen, several third splicing parts are provided. At the position of the third screen corresponding to the third splicing parts of the second screen, fourth splicing parts are provided. One of the third splicing parts and the fourth splicing parts is a Z-shaped buckle, and the other is a splicing port;

[0007] Each of the first screen, the second screen, and the third screen includes a frame and a splicing board embedded in the frame. The splicing board includes a light-transmitting splicing board and an opaque splicing board. The frames of the first screen and the second screen both include a rectangular outer frame and an "I"-shaped inner frame arranged inside the outer frame. With the first screen relatively on the left side of the second screen and the second screen relatively on the right side of the first screen, the "I"-shaped inner frame divides the inner part of the outer frame into an upper region, a middle region, and a lower region. The middle region is further divided into a left sub-region and a right sub-region;

[0008] Among them, light-blocking assembled boards are installed in the upper region of the first screen and the right sub-region of the middle region, and light-transmitting assembled boards are installed in the lower region of the first screen and the left sub-region of the middle region. Light-transmitting assembled boards are installed in the upper region of the second screen and the right sub-region of the middle region, and light-blocking assembled boards are installed in the lower region of the second screen and the left sub-region of the middle region. Thus, a stepped arrangement of light-blocking regions is formed between the first screen and the second screen, and right-angled light-transmitting regions are formed at the lower left corner and the upper right corner of the light-blocking regions respectively.

[0009] Preferably, the frame of the third screen is also divided into an upper region, a middle region, and a lower region. The upper region, the middle region, and the lower region of the third screen are adjacent to the upper region, the middle region, and the lower region of the second screen respectively. Light-blocking assembled boards are installed in the upper region and the middle region of the third screen, and a light-transmitting assembled board is installed in the lower region of the third screen.

[0010] Preferably, a base for supporting on the ground is fixedly connected to the lower ends of the frames of the first screen, the second screen, and the third screen. Among them, one base is provided at each of the left and right ends of the lower side of the frame of the first screen, one base is provided at the end of the lower side of the frame of the second screen far from the first screen, and one base is provided at the end of the lower side of the frame of the third screen far from the second screen.

[0011] Preferably, a plurality of rubber pads are evenly arranged along the edge of the base on the surface of the base in contact with the ground.

[0012] The beneficial effects of the present utility model are as follows:

[0013] (1) Through the combination of the light-transmitting splicing boards and the light-blocking splicing boards, the screen assembly has good privacy while also having good light transmission and aesthetic effects.

[0014] (2) Through the cooperation of the Z-shaped buckles and the butting interfaces, the screen assembly is easier to assemble.

[0015] (3) Rubber pads are provided on the surface of the base in contact with the ground, so that the screen can be placed more stably, avoiding accidentally knocking down the screen when people walk in public areas. Description of the Drawings

[0016] Figure 1 It is a schematic diagram of the screen assembly in the preferred embodiment of the present utility model;

[0017] Figure 2 It is a disassembled schematic diagram of the screen assembly in the preferred embodiment of the present utility model (angle one);

[0018] Figure 3 It is a disassembled schematic diagram of the screen assembly in the preferred embodiment of the present utility model (angle two). Detailed implementation manners

[0019] The embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present utility model, and should not be construed as limiting the present utility model. For those not specified in the embodiments in terms of specific technologies or conditions, the technologies or conditions described in the literature in the field or the product specifications shall be followed.

[0020] The present invention will be further described below in conjunction with the drawings and specific implementation manners.

[0021] Refer to Figures 1-3 As shown, as a preferred embodiment of the present utility model, a screen assembly is proposed. The screen assembly includes a first screen 1, a second screen 2, and a third screen 3. The first screen 1, the second screen 2, and the third screen 3 are sequentially assembled to form an L-shaped screen assembly. The first screen 1 and the second screen 2 are in the same plane, and the third screen 3 is perpendicular to the second screen 2. In this embodiment, three screens are assembled into a screen assembly, which is suitable for scene partitioning. In other embodiments, the number of assembled screens can also be selected according to requirements for assembly.

[0022] In this embodiment, a base for supporting the ground is fixedly connected to the lower ends of the frames of the first screen 1, the second screen 2, and the third screen 3. Among them, two bases 7 are provided at the left and right ends of the lower side of the frame of the first screen 1, and one base 7 is provided at the end of the lower side of the frame of the second screen 2 far from the first screen 1, and one base 7 is provided at the end of the lower side of the frame of the third screen 3 far from the second screen 2. A plurality of rubber pads 12 are uniformly arranged along the edge of the base 7 on the surface of the base 7 in contact with the ground for anti-slip.

[0023] On one side where the first screen 1 is connected to the second screen 2, several first splicing parts 8 are provided. At the position corresponding to the first splicing parts 8 of the first screen 1 on the second screen 2, second splicing parts 9 are provided. One of the first splicing parts 8 and the second splicing parts 9 is a Z-shaped buckle, and the other is a splicing port. On one side where the second screen 2 is connected to the third screen 3, several third splicing parts 10 are provided. At the position corresponding to the third splicing parts 10 of the second screen 2 on the third screen 3, fourth splicing parts 11 are provided. One of the third splicing parts 10 and the fourth splicing parts 11 is a Z-shaped buckle, and the other is a splicing port, making the splicing faster and more convenient.

[0024] At the same time, each of the first screen 1, the second screen 2 and the third screen 3 includes a frame and an assembly board 4 embedded in the frame. In order to take into account both lighting and aesthetics, the assembly board 4 includes a light-transmitting assembly board and an opaque assembly board. The frames of the first screen 1 and the second screen 2 both include a rectangular outer frame 5 and an "I"-shaped inner frame 6 arranged inside the outer frame. The first screen 1 is relatively located on the left side of the second screen 2, and the second screen 2 is relatively located on the right side of the first screen 1. The "I"-shaped inner frame 6 divides the interior of the outer frame 5 into an upper area, a middle area and a lower area, and the middle area is further divided into a left sub-area and a right sub-area.

[0025] Among them, the upper area and the right sub-area of ​​the middle area of ​​the first screen 1 are installed with opaque assembly panels, the lower area and the left sub-area of ​​the middle area of ​​the first screen 1 are installed with translucent assembly panels, the upper area and the right sub-area of ​​the middle area of ​​the second screen 2 are installed with translucent assembly panels, and the lower area and the left sub-area of ​​the middle area of ​​the second screen 2 are installed with opaque assembly panels, so that the first screen 1 and the second screen 2 are combined to form a stepped opaque area, and the lower left corner and the upper right corner of the opaque area form a right-angled translucent area respectively. The frame of the third screen 3 is also divided into an upper area, a middle area and a lower area. The upper area, the middle area and the lower area of ​​the third screen 3 are respectively adjacent to the upper area, the middle area and the lower area of ​​the second screen 2. The upper area and the middle area of ​​the third screen 3 are installed with opaque assembly panels, and the lower area of ​​the third screen 3 is installed with a translucent assembly panel. The translucent area and the opaque area of ​​the entire screen assembly are staggered, which further takes into account both lighting and partitioning.

[0026] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are illustrative and cannot be understood as limitations on the present invention. Ordinary technicians in the field can change, modify, replace and modify the above embodiments within the scope of the present invention without departing from the principles and purpose of the present invention.

Claims

1. A screen assembly, characterized in that: The screen assembly comprises a first screen, a second screen and a third screen, wherein the first screen, the second screen and the third screen are assembled in sequence to form an L-shaped screen assembly, wherein the first screen and the second screen are in the same plane, and the third screen and the second screen are perpendicular to each other. A plurality of first splicing parts are provided on one side where the first screen is connected to the second screen, and a second splicing part is provided on the second screen at a position corresponding to the first splicing part of the first screen, wherein one of the first splicing part and the second splicing part is a Z-shaped buckle, and the other is a splicing interface. A plurality of third splicing parts are provided on one side where the second screen is connected to the third screen, and a fourth splicing part is provided on the third screen at a position corresponding to the third splicing part of the second screen, one of the third splicing part and the fourth splicing part is a Z-shaped buckle, and the other is a splicing interface. Each of the first screen, the second screen and the third screen comprises a frame and an assembly board embedded in the frame, the assembly board comprises a light-transmitting assembly board and an opaque assembly board, the frames of the first screen and the second screen comprise a rectangular outer frame and an "I"-shaped inner frame arranged within the outer frame, the first screen is relatively located on the left side of the second screen, and the second screen is relatively located on the right side of the first screen, the "I"-shaped inner frame divides the interior of the outer frame into an upper area, a middle area and a lower area, and the middle area is further divided into a left sub-area and a right sub-area, Among them, the upper area and the right sub-area of ​​the middle area of ​​the first screen are installed with opaque assembly panels, the lower area and the left sub-area of ​​the middle area of ​​the first screen are installed with translucent assembly panels, the upper area and the right sub-area of ​​the middle area of ​​the second screen are installed with translucent assembly panels, and the lower area and the left sub-area of ​​the middle area of ​​the second screen are installed with opaque assembly panels, so that the first screen and the second screen are combined to form a stepped opaque area, and the lower left corner and the upper right corner of the opaque area form right-angled translucent areas respectively.

2. The screen assembly according to claim 1, characterized in that: The frame of the third screen is also divided into an upper area, a middle area and a lower area. The upper area, the middle area and the lower area of ​​the third screen are respectively adjacent to the upper area, the middle area and the lower area of ​​the second screen. The upper area and the middle area of ​​the third screen are installed with opaque assembly panels, and the lower area of ​​the third screen is installed with a translucent assembly panel.

3. The screen assembly according to claim 1, characterized in that: The lower ends of the frames of the first screen, the second screen and the third screen are fixedly connected with bases for ground support, wherein a base is provided at each of the left and right ends of the lower side of the frame of the first screen, a base is provided at the end of the lower side of the frame of the second screen away from the first screen, and a base is provided at the end of the lower side of the frame of the third screen away from the second screen.

4. The screen assembly according to claim 3, characterized in that: A plurality of rubber pads are evenly arranged along the edge of the base on the side of the base that contacts the ground.