Shock-resistant mobile phone screen
By setting a paper honeycomb anti-collision mesh inside the rubber shock-absorbing ring, the problems of complex structure and high cost of existing shock-resistant mobile phone screens are solved, achieving low-cost, high-efficiency shock resistance and simple assembly process.
Patent Information
- Application Number
- CN202422973083.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Existing shockproof mobile phone screens have complex shockproof structures, high component costs, and are inconvenient to assemble.
A honeycomb-type anti-collision mesh is used as the internal structure of the rubber shock absorber. The honeycomb-type anti-collision mesh, made of paper material, is combined with the rubber shock absorber and installed through slots, which simplifies the assembly process and reduces costs. At the same time, the three-dimensional structure of the honeycomb mesh enhances the shock resistance.
It achieves low-cost and efficient shock protection. The honeycomb anti-collision mesh disperses the impact force when the phone is dropped, reducing damage to the phone screen, simplifying the assembly process and reducing the cost of parts replacement.
Smart Images

Figure CN223584216U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of mobile phone quality, specifically point to a kind of shockproof mobile phone screen. BACKGROUND
[0002] In the existing mobile phone production process, in order to increase the display range of mobile phone screen, mobile phone gradually develops from the original button type to the touch screen type of present stage, the position of finger pressing is fed back through the touch layer of mobile phone screen, and then the touch signal is converted into electric signal through chip, and after the signal is received by mobile phone system, the key result will be displayed on display layer, in order to ensure that mobile phone screen will not be damaged due to the falling of mobile phone in the process of use, corresponding shockproof structure is usually installed on the periphery of mobile phone screen.
[0003] The existing mobile phone screen shockproof structure usually installs tempered film on the top of mobile phone screen, which replaces mobile phone screen as the first stress surface, and the tempered film has high strength pressure resistance and drop resistance, so that it can fully absorb the impact force when facing a certain amount of impact, and then the rubber shockproof ring is installed on the side wall of mobile phone screen, so as to absorb the impact force generated by the side drop of mobile phone screen.
[0004] In order to weaken the impact force of tempered film, buffer block is usually installed around the tempered film, such as the mobile phone display screen with shockproof and drop resistance with patent No.: 202122280587.4, arc-shaped buffer block and spring buffer structure are installed below the tempered film, which is complex in structure, difficult to assemble quickly in operation, and high in cost of parts, so that it is difficult to replace in batches. UTILITY MODEL CONTENTS
[0005] The technical problem to be solved by the utility model is that the shockproof structure of the existing shockproof mobile phone screen is not only complex in structure, but also small in size, so that it is inconvenient to assemble and high in cost.
[0006] To solve the above technical problems, the technical scheme provided by the utility model is as follows: a shockproof mobile phone screen, which comprises a mobile phone screen, a tempered film arranged above the mobile phone screen, a rubber shockproof ring arranged on the outer wall end of the mobile phone screen, a plurality of honeycomb anti-collision nets arranged in the rubber shockproof ring, a clamping groove for storing the honeycomb anti-collision nets arranged in the rubber shockproof ring, a sealing gasket arranged above the clamping groove of the rubber shockproof ring, and an arc-shaped gasket for fixing the tempered film arranged on one side of the sealing gasket.
[0007] As an improvement, the honeycomb anti-collision net is of paper structure, and the mesh direction of the honeycomb anti-collision net is the direction of the side wall of the clamping groove.
[0008] As an improvement, the rubber shockproof ring is connected with the plane end of the sealing gasket through hot melt adhesive.
[0009] As an improvement, the thickness of the arc-shaped gasket is greater than the thickness of the tempered film.
[0010] As an improvement, the rubber shockproof ring is an L-shaped gasket, and the mobile phone screen is located above the bottom L-shaped gasket of the rubber shockproof ring.
[0011] As an improvement, the mobile phone screen comprises a touch layer and a display layer arranged in sequence, and the display layer is provided with a back plate layer clamped above the bottom L-shaped gasket of the rubber shockproof ring.
[0012] The mobile phone screen of the utility model has the advantages that: the device installs the honeycomb type anti-collision net in the clamping groove of the rubber shockproof ring, the honeycomb type anti-collision net adopts paper material, so that the cost is low, and the shock-absorbing effect is good; when installing, the honeycomb type anti-collision net can be clamped into the clamping groove, and when the honeycomb type anti-collision net is placed horizontally in the clamping groove, the net plate three-dimensional structure of the honeycomb type anti-collision net can enhance the lateral stress structure strength of the rubber shockproof ring; when the mobile phone falls from the side, the rubber shockproof ring can absorb the residual force through the net plate of the honeycomb type anti-collision net after absorbing the impact force in the first layer; when the mobile phone falls horizontally, the honeycomb type anti-collision net can play the role of spring, and convert the impact force into the elasticity of the paper net, so as to protect the tempered film. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 is the total structure diagram of the shockproof mobile phone screen of the utility model.
[0014] Figure 2 is the total structure explosion diagram of the shockproof mobile phone screen of the utility model.
[0015] Figure 3 is the total structure sectional view of the shockproof mobile phone screen of the utility model.
[0016] Figure 4 is the honeycomb type anti-collision net structure diagram of the shockproof mobile phone screen of the utility model.
[0017] As shown in the drawings: 1, mobile phone screen; 11, touch layer; 12, display layer 13, back plate layer; 2, tempered film; 3, rubber shockproof ring; 31, clamping groove; 32, sealing gasket; 33, arc-shaped gasket; 4, honeycomb type anti-collision net. DETAILED DESCRIPTION
[0018] The utility model will be further explained in detail in combination with the drawings.
[0019] As described in the specification Figure 1 , 2As shown in Figures 3 and 4, the device includes a mobile phone screen 1, which comprises a touch layer 11 and a display layer 12 arranged sequentially. Below the display layer 12 is a backplate layer 13 that sits atop an L-shaped pad on the bottom surface of a rubber shock-absorbing ring 3. A tempered glass film 2 is located above the mobile phone screen 1. A rubber shock-absorbing ring 3, which is an L-shaped washer, is located on the outer wall of the mobile phone screen 1. The mobile phone screen 1 is situated above the L-shaped pad on the bottom surface of the rubber shock-absorbing ring 3. The interior of the rubber shock-absorbing ring 3 contains several honeycomb-type anti-collision meshes 4, and a slot 31 for storing the honeycomb-type anti-collision meshes 4. The anti-collision net 4 is a paper structure. The mesh direction of the honeycomb anti-collision net 4 is the side wall direction of the slot 31. The touch layer 11, display layer 12 and back plate layer 13 of the mobile phone screen 1 are arranged from top to bottom. The back plate layer 13 is clipped above the L-shaped pad on the bottom surface of the rubber shock-absorbing ring 3 and the two are sealed with glass glue. The honeycomb anti-collision net 4 is placed in the slot 31 in sequence, with the open ends of the honeycomb anti-collision net 4 arranged to the left and right, and tightly pressed against the two side walls of the slot 31. The paper structure of the honeycomb anti-collision net 4 is not only inexpensive, but also has a good shock absorption and drop protection effect. It is easy to assemble and easy to replace.
[0020] A sealing gasket 32 is provided above the slot 31 of the rubber shock absorber 3. An arc-shaped gasket 33 for fixing the tempered glass film 2 is provided on one side of the sealing gasket 32. The thickness of the arc-shaped gasket 33 is greater than the thickness of the tempered glass film 2. The bottom end of the sealing gasket 32 is placed on the open end of the slot 31, and the two are sealed and connected with hot melt adhesive. This prevents the honeycomb anti-collision mesh 4 from getting damp and ensures that the honeycomb anti-collision mesh 4 will not fall off. The arc-shaped gasket 33 can not only provide a first-layer buffer when the screen of the mobile phone first touches the ground, but also limit the position of the tempered glass film 2 to prevent it from sliding off during use. For example, if it is kept in a pocket for a long time, the tempered glass film 2 will gradually deviate from its original position due to the constant friction of the pocket. The tempered glass film 2 is attached to the touch layer 11 to protect the touch layer 11.
[0021] The utility model discloses when the cell -phone screen falls, the rubber shock -proof ring 3 will carry out the first layer shock absorption when the corner part force, when the impact force that falls produces is greater than the shock absorption of the clamping groove 31 of rubber shock -proof ring 3, honeycomb type crash net 4 will produce vibration under the action of impact force, will impact force through the dispersion absorption of three -dimensional support plate of honeycomb type crash net 4, thereby weakening the impact force that cell -phone screen 1 received the vast majority, avoid the partial fragmentation of cell -phone screen 1 under the action of impact force, when the cell -phone falls, the arc gasket 33 will carry out the first layer shock absorption when plane end force, when the impact pressure is bigger, honeycomb type crash net 4 will carry out compression, through the compression of honeycomb type crash net 4 will the residual impact force absorption, thereby protect the tempered film 2 is not harmed.
[0022] The above describes the utility model and its implementation mode, and this kind of description has no limit, and the embodiment of the utility model shown in the drawing is only one, and the actual structure is not limited to this. In general, if the ordinary skilled person in the art is inspired, without departing from the utility model creation tenet, the similar structure mode and embodiment of not creative design with this technical scheme, all should belong to the protection scope of the utility model.
Claims
1. A shockproof mobile phone screen, comprising a mobile phone screen (1), wherein a tempered glass film (2) is provided on the upper part of the mobile phone screen (1), and a rubber shockproof ring (3) is provided on the outer wall end of the mobile phone screen (1), characterized in that: The rubber shock absorber (3) has several honeycomb anti-collision nets (4) inside. The rubber shock absorber (3) has a slot (31) for storing the honeycomb anti-collision nets (4) inside. A sealing gasket (32) is provided above the slot (31) of the rubber shock absorber (3). An arc-shaped gasket (33) for fixing the tempered glass film (2) is provided on one side of the sealing gasket (32).
2. The shock-resistant mobile phone screen according to claim 1, characterized in that: The honeycomb anti-collision net (4) is a paper structure, and the mesh direction of the honeycomb anti-collision net (4) is the direction of the side wall of the slot (31).
3. The shock-resistant mobile phone screen according to claim 1, characterized in that: The rubber shock absorber (3) is connected to the flat end of the sealing gasket (32) by hot melt adhesive.
4. The shock-resistant mobile phone screen according to claim 1, characterized in that: The thickness of the arc-shaped gasket (33) is greater than the thickness of the tempered glass film (2).
5. The shock-resistant mobile phone screen according to claim 1, characterized in that: The rubber shock absorber (3) is an L-shaped washer, and the mobile phone screen (1) is located above the L-shaped washer on the bottom surface of the rubber shock absorber (3).
6. The shock-resistant mobile phone screen according to claim 1, characterized in that: The mobile phone screen (1) includes a touch layer (11) and a display layer (12) arranged in sequence. Below the display layer (12) is a back plate layer (13) that is clipped onto the L-shaped pad on the bottom surface of the rubber shock absorber (3).
Citation Information
Patent Citations
Shock-resistant and drop-resistant mobile phone display screen
CN216162738U