An integrated display housing

CN224624971UActive Publication Date: 2026-08-11DONGGUAN CJTOUCH ELECTRONIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]为了克服现有技术方案的不足,本实用新型提供一种一体式显示器外壳,能有效的解决现有的显示器外壳整体机械强度低,在搬运过程中容易造成侧面受到撞击而变形或损坏,抗冲击和抗变形能力差,以及无法适用不同的墙体进行适配安装,安装稳定性差的技术问题

Benefits of technology

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model provides an integrated monitor housing, which, by setting up a metal box and metal frame that fits tightly with the monitor body and by providing support through a supporting beam, forms a sturdy structure, effectively improving the overall mechanical strength and greatly enhancing the impact and deformation resistance of the monitor body. It can prevent the monitor body from being deformed or damaged by side impacts during transportation. The supporting beam provides multiple mounting points through several mounting holes, making it easy to adapt to different walls. The symmetrical arrangement of snap-fit ​​blocks and screw holes achieves stable installation and strong fixation. The snap-fit ​​blocks can be snapped into the desktop to improve placement stability.

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Abstract

This utility model discloses an integrated display housing in the field of display casings, including a metal box, a metal frame, and a display body. A mounting plate is vertically disposed at one end of the metal box, the metal frame is welded to the surface of the mounting plate, and the display body is embedded in the metal frame. The side of the metal frame is tightly fitted to the surface of the display body. A support beam is disposed on the surface of the metal box, and the bottom of the mounting plate is fitted to one end of the support beam. One end of the support beam has several mounting openings. This integrated display housing, by setting up a metal box and metal frame that are tightly fitted to the display body, and by providing support through the support beam, forms a robust structure, effectively improving the overall mechanical strength and greatly enhancing the impact and deformation resistance of the display body. It can prevent the display body from being deformed or damaged by side impacts during transportation.
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Description

Technical Field

[0001] This utility model relates to the field of display housings, specifically an integrated display housing. Background Technology

[0002] A monitor, or computer screen, receives signals from the computer and displays images, much like a television receiver. Some computer screens use LCD displays; computer screens are also called visual displays. Conventional, square monitors are now very common. The monitor casing is the external structure that encloses and protects the internal components of the monitor. It typically consists of a front bezel, back cover, and base, and its core function is to ensure stable operation and extend the monitor's lifespan.

[0003] Existing monitor casings suffer from the following drawbacks: Many existing monitor casings use ordinary plastic to reduce costs. Compared to metal, ordinary plastic has lower strength and toughness. For example, when subjected to external impact, plastic casings are prone to cracking or deformation, unable to effectively disperse impact force through their structure like metal. Taking common ABS plastic as an example, its hardness and strength are far inferior to aluminum alloy or metal when facing significant impacts, making the monitor casing vulnerable to impacts during transport. Even some monitor casings using relatively better materials lack sufficient consideration for enhancing mechanical strength in their structural design. For instance, the absence of properly arranged reinforcing ribs or support structures prevents the casing from effectively dispersing pressure, leading to localized stress concentration and reducing overall impact and deformation resistance. If the casing lacks reinforcement in critical stress-bearing areas, such as the sides, it is prone to deformation or damage upon impact. During transport, the sides of the monitor are the most vulnerable to impact. Due to the lack of stress-dispersing design, impact force easily concentrates in a small area, causing localized deformation or cracking of the casing. Existing monitor casings typically employ fixed installation methods, such as relying solely on a limited number of screw holes on the back cover for wall mounting. This single fixing point setup cannot adapt to the requirements of different wall materials (such as brick walls, plaster walls, glass walls, etc.) and wall surface conditions (such as flatness, roughness, etc.). For some special walls, the screws may not be securely fastened, leading to unstable installation. Existing monitor stands are often designed for specific desktops or mounting brackets, lacking versatility. Their shape, size, and connection methods are relatively fixed, failing to effectively adapt to different types of wall mounting structures. For example, some stands use specific sized clips or screw connections, only compatible with matching desktops or brackets, making installation on different walls difficult. Existing stand designs are mostly flat, unable to adjust to uneven surfaces. On unstable surfaces, the monitor is prone to wobbling, and may even fall, causing damage. Installation stability is poor, and it cannot be fixed in one location. Therefore, current monitor casings still have the following problems: low mechanical strength, making them prone to deformation or damage from side impacts during transportation; poor impact and deformation resistance; inability to adapt to different wall surfaces; and poor installation stability. Further improvements are needed. Utility Model Content

[0004] To overcome the shortcomings of existing technical solutions, this utility model provides an integrated display housing that can effectively solve the technical problems of existing display housings having low overall mechanical strength, being easily deformed or damaged by side impacts during transportation, having poor impact and deformation resistance, being unable to be adapted to different walls for installation, and having poor installation stability.

[0005] The technical solution adopted by this utility model to solve its technical problem is: an integrated display shell, including a metal box, a metal frame, and a display body. A mounting plate is vertically arranged at one end of the metal box. The metal frame is welded to the surface of the mounting plate. The display body is embedded in the metal frame. The side of the metal frame is tightly fitted to the surface of the display body. A supporting beam is provided on the surface of the metal box. The bottom of the mounting plate is fitted to one end of the supporting beam. A plurality of mounting holes are provided at one end of the supporting beam. A detachable metal base is provided at the bottom of the metal box. A plurality of screw holes are provided on the surface of the metal base. Adjacent screw holes are symmetrically arranged. A plurality of snap-fit ​​blocks extend outward from the bottom of the metal base. Adjacent snap-fit ​​blocks are symmetrically arranged.

[0006] Furthermore, the snap-fit ​​block is T-shaped, and the bottom of the metal base is also provided with wiring holes.

[0007] Furthermore, a mounting base is installed on the top of the metal box by screws, and a high-definition camera for high-definition shooting is provided at one end of the mounting base.

[0008] Furthermore, one end of the metal box is provided with several heat dissipation vents, which are equidistantly arranged between adjacent vents. The interior of the metal box forms a cavity, and the heat dissipation vents are connected to the cavity. One end of the mounting plate is provided with an air channel that is connected to the cavity. When the display body dissipates heat, hot air passes through the air channel, through the cavity, and then through the heat dissipation vents to be discharged to the outside. The interior of the metal box is also provided with a partition, which divides the cavity into two parts. The surface of the partition is also provided with wire-passing holes.

[0009] Furthermore, the surface of the metal box is provided with several double doors.

[0010] Furthermore, the metal frame is made of aluminum alloy or aluminum-magnesium alloy.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model provides an integrated monitor housing, which, by setting up a metal box and metal frame that fits tightly with the monitor body and by providing support through a supporting beam, forms a sturdy structure, effectively improving the overall mechanical strength and greatly enhancing the impact and deformation resistance of the monitor body. It can prevent the monitor body from being deformed or damaged by side impacts during transportation. The supporting beam provides multiple mounting points through several mounting holes, making it easy to adapt to different walls. The symmetrical arrangement of snap-fit ​​blocks and screw holes achieves stable installation and strong fixation. The snap-fit ​​blocks can be snapped into the desktop to improve placement stability. Attached Figure Description

[0012] Figure 1 This is a front view of an integrated display housing according to the present invention;

[0013] Figure 2 This is a rear view of an integrated display housing according to the present invention;

[0014] Figure 3 This is a top view of an integrated display housing according to the present invention;

[0015] Figure 4 This is a bottom view of an integrated display housing according to the present invention;

[0016] Figure 5 This is a schematic diagram of the partition of an integrated display housing according to the present invention.

[0017] Numbering on the map:

[0018] 1-Support beam; 2-Monitor body; 3-Metal case; 4-Double doors; 5-Metal base; 6-Mounting plate; 7-Metal frame; 8-Fixing seat; 9-HD camera; 10-Heat vent; 11-Mounting port; 12-Screw hole; 13-Wiring hole; 14-Snap-fit ​​block; 15-Partition; 16-Cable hole. Detailed Implementation

[0019] 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.

[0020] The following is combined Figures 1-5 A detailed description of an integrated display housing according to this utility model is provided:

[0021] An integrated display housing includes a metal box 3, a metal frame 7, and a display body 2. A mounting plate 6 is vertically mounted on one end of the metal box 3. The metal frame 7 is welded to the surface of the mounting plate 6. The display body 2 is embedded in the metal frame 7. The side of the metal frame 7 is tightly fitted to the surface of the display body 2. A supporting beam 1 is provided on the surface of the metal box 3. The bottom of the mounting plate 6 is fitted to one end of the supporting beam 1. A plurality of mounting openings 11 are provided at one end of the supporting beam 1. A detachable metal base 5 is provided at the bottom of the metal box 3. A plurality of screw holes 12 are provided on the surface of the metal base 5, symmetrically arranged between adjacent screw holes 12. A plurality of snap-fit ​​blocks 14 extend outward from the bottom of the metal base 5, symmetrically arranged between adjacent snap-fit ​​blocks 14.

[0022] The latching block 14 is T-shaped, and the bottom of the metal base 5 is also provided with a wiring hole 13. Utilizing the latching characteristics of the T-shaped structure, the interlocking force between the base and the supporting surface is enhanced, preventing displacement or detachment due to external vibrations. This makes the connection between the base and the desktop or other surfaces more stable and reliable, preventing slippage or tipping. It is particularly suitable for high-risk scenarios such as public displays. The wiring hole 13 provides a dedicated channel for power cables, signal cables, etc., avoiding exposed or tangled cables, improving equipment neatness, and reducing the risk of failure due to cable compression or pulling. The wiring hole 13 at the bottom facilitates centralized management of power cables and signal cables, making the cable layout neat, reducing clutter, and improving aesthetics and safety.

[0023] The top of the metal box 3 is fitted with a mounting base 8 by screws, and one end of the mounting base 8 is equipped with a high-definition camera 9 for high-definition shooting. Installing the camera via the mounting base 8 on the top of the metal box 3 expands the display's functionality (such as video conferencing and remote monitoring), meeting diverse usage needs.

[0024] The metal casing 3 has several heat dissipation vents 10 at one end, with adjacent vents 10 evenly spaced. The interior of the metal casing 3 forms a cavity, and the heat dissipation vents 10 are connected to the cavity. One end of the mounting plate 6 has an air channel connected to the cavity. When the display body 2 dissipates heat, hot air passes through the air channel, through the cavity, and then through the heat dissipation vents 10 to be discharged to the outside. The metal casing 3 also has a partition 15 inside, dividing the cavity into two parts. The surface of the partition 15 also has cable routing holes 16. Hot air enters the cavity through the air channel and exits through the heat dissipation vents 10, forming an efficient heat dissipation path, reducing the internal temperature of the display, and extending the lifespan of electronic components. Dividing the cavity into two parts optimizes airflow distribution, prevents hot air recirculation, and further improves heat dissipation efficiency, making it particularly suitable for high-load operating scenarios (such as long-term video playback). The power cord and wires of the monitor body 2 can be passed through the wiring hole 13 and connected to the monitor body 2 through the wire hole 16 on the partition 15, which can hide the power cord and wires inside the metal box 3, making the whole thing neater.

[0025] The surface of the metal box 3 is provided with several double doors 4. These doors allow the metal box 3 to be opened, and the internal cavity can store wires, power cords, etc., greatly improving its practicality. The double door design allows users or maintenance personnel to easily open the box to inspect, upgrade, or replace internal hardware (such as motherboards, power supplies, etc.), significantly enhancing the maintainability of the equipment.

[0026] The metal frame 7 is made of aluminum alloy. This reduces the overall weight, making it easier to handle and install, while also providing resistance to deformation and adapting to different usage environments.

[0027] This embodiment of an integrated monitor housing, by setting a metal box 3 and a metal frame 7, which are closely fitted to the monitor body 2, and by providing support through a supporting beam 1, forms a sturdy structure, effectively improving the overall mechanical strength and greatly enhancing the impact and deformation resistance of the monitor body 2. It can prevent the monitor body 2 from being deformed or damaged by side impacts during transportation. The supporting beam 1 is provided with several mounting ports 11 to provide a variety of mounting points, which is convenient for installation on different walls. The symmetrical arrangement of the snap-fit ​​blocks 14 and screw holes 12 achieves stable installation and strong fixation. The snap-fit ​​blocks 14 can be snapped into the desktop to improve placement stability.

[0028] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this invention, and no reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. An integrated display housing comprising a metal case, a metal frame and a display main body, characterized by: A mounting plate is vertically mounted at one end of the metal box. The metal frame is welded to the surface of the mounting plate. The display body is embedded in the metal frame. The side of the metal frame is tightly fitted to the surface of the display body. A support beam is provided on the surface of the metal box. The bottom of the mounting plate is fitted to one end of the support beam. A plurality of mounting holes are provided at one end of the support beam. A detachable metal base is provided at the bottom of the metal box. A plurality of screw holes are provided on the surface of the metal base. Adjacent screw holes are symmetrically arranged. A plurality of snap-fit ​​blocks extend outward from the bottom of the metal base. Adjacent snap-fit ​​blocks are symmetrically arranged.

2. An integrated display housing as defined in claim 1, wherein: The snap-fit ​​block is T-shaped, and the bottom of the metal base is also provided with wiring holes.

3. The one-piece display housing of claim 1, wherein: The top of the metal box is fitted with a mounting base by screws, and a high-definition camera for high-definition shooting is provided at one end of the mounting base.

4. The one-piece display housing of claim 1, wherein: The metal box has several heat dissipation vents at one end, with adjacent vents arranged at equal intervals. The interior of the metal box forms a cavity, and the heat dissipation vents are connected to the cavity. One end of the mounting plate has an air channel that is connected to the cavity. When the display body dissipates heat, hot air passes through the air channel, through the cavity, and then through the heat dissipation vents to be discharged to the outside. The interior of the metal box also has a partition that divides the cavity into two parts, and the surface of the partition is also provided with cable routing holes.

5. The one-piece display housing of any one of claims 1-4, wherein: The surface of the metal box is provided with several double doors.

6. The one-piece display housing of any one of claims 1-4, wherein: The metal frame is made of aluminum alloy or aluminum-magnesium alloy.