Composite multipurpose mouse pad
By designing high and low friction blocks with different friction coefficients, the applicability of the mouse pad in different usage scenarios is solved, the smoothness of the mouse operation and keyboard stability are improved, and the user experience is improved.
Patent Information
- Application Number
- CN202422138961.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-30
AI Technical Summary
The operating surface friction coefficient of the existing mouse pad is single, which cannot meet the needs of both daily office and e-sports scenarios. In e-sports scenarios, the keyboard is easy to move, affecting the operator's operating level.
A composite multi-purpose mouse pad is designed, including high friction blocks and low friction blocks. The high friction block is composed of a first anti-slip layer and a first operating layer. The low friction block is composed of a second anti-slip layer and a second operating layer. The two have different dynamic friction coefficients and are suitable for different usage scenarios.
By distinguishing blocks with different friction coefficients, we can improve the smoothness of mouse operation, avoid keyboard displacement, enhance applicability, and improve user experience.
Smart Images

Figure CN223078671U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of mouse pad production, and specifically relates to a composite multi-functional mouse pad. Background Art
[0002] In the prior art, a mouse pad is a commonly used accessory for computer users. It can not only protect the desktop, but also provide a plane for the mouse sensor system to calculate the movement vector conveniently, improve the smoothness during the use of the mouse, and enhance the user experience of the mouse.
[0003] In the prior art, the operating surface of a commonly used mouse pad has a single coefficient of friction, and its function is relatively single. In different usage scenarios, users have different requirements for the coefficient of friction of the mouse pad. The existing mouse pads cannot meet the usage requirements of both daily office work and e-sports scenarios at the same time. Moreover, in the e-sports usage scenario, the operations of the mouse and keyboard are relatively frequent. During e-sports, the keyboard is prone to move relative to the placement plane, which affects the operator's operation level and reduces the operator's user experience. Therefore, improvements are urgently needed now. Summary of the Utility Model
[0004] This application aims to solve the technical problems in the prior art that the operating surface of the mouse pad has a single coefficient of friction, relatively single function, fewer applicable scenarios, cannot meet the usage requirements of both daily office work and e-sports scenarios at the same time, in the e-sports usage scenario, the operation frequency of the mouse and keyboard is high, the keyboard is prone to move relative to the placement plane, which affects the operator's operation level and reduces the operator's user experience, and proposes a composite multi-functional mouse pad.
[0005] This application adopts the following solution. A composite multi-functional mouse pad includes at least two blocks with different coefficients of friction. The at least two blocks with different coefficients of friction include a high-friction block and a low-friction block arranged beside the high-friction block. The high-friction block includes a first anti-slip layer and a first operating layer stacked in sequence from bottom to top. The low-friction block includes a second anti-slip layer and a second operating layer stacked in sequence from bottom to top. The dynamic coefficient of friction α on the upper surface of the first operating layer is greater than the dynamic coefficient of friction β on the upper surface of the second operating layer.
[0006] In one embodiment, the dynamic coefficient of friction α on the upper surface of the first operating layer satisfies the following relationship: 0.25 ≤ dynamic coefficient of friction α ≤ 0.35.
[0007] In one embodiment, the dynamic coefficient of friction β on the upper surface of the second operating layer satisfies the following relationship: 0.15 ≤ dynamic coefficient of friction β ≤ 0.25.
[0008] In one embodiment, the material of the first operating layer is fabric.
[0009] In one embodiment, the material of the first operating layer is any one of silicone cloth and Jiaji cloth.
[0010] In one embodiment, the material of the second operating layer is polyurethane, and the second operating layer is hot-pressed on the second anti-slip layer.
[0011] In one embodiment, a fabric layer is further provided between the second operating layer and the second anti-slip layer, and the material of the fabric layer is Jiaji cloth.
[0012] In one embodiment, the materials of the first anti-slip layer and the second anti-slip layer are rubber.
[0013] Compared with the prior art, the present application has the following beneficial effects:
[0014] The present application provides a composite multi-purpose mouse pad, which includes at least two blocks with different friction coefficients. The at least two blocks with different friction coefficients include a high-friction block and a low-friction block arranged beside the high-friction block. The high-friction block includes a first anti-slip layer and a first operating layer stacked in sequence from bottom to top, and the low-friction block includes a second anti-slip layer and a second operating layer stacked in sequence from bottom to top. The dynamic friction coefficient α of the upper surface of the first operating layer is greater than the dynamic friction coefficient β of the upper surface of the second operating layer. By dividing the mouse pad into two blocks with different friction coefficients, users can select different blocks for use according to different usage scenarios. In the e-sports usage scenario, users can use the low-friction block for mouse operation and use the high-friction block to place the keyboard, which can effectively improve the smoothness of mouse operation and also prevent the keyboard from shifting during use. It has the advantages of strong applicability, multiple usage scenarios, simple structure, improved user experience, and being convenient for popularization and implementation. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments.
[0016] Figure 1 It is a schematic structural diagram of a composite multi-purpose mouse pad in one embodiment of the present application.
[0017] Figure 2 It is a schematic structural diagram of a composite multi-purpose mouse pad in one embodiment of the present application.
[0018] Figure 3 It is a schematic structural diagram of a composite multi-purpose mouse pad in one embodiment of the present application.
[0019] Figure 4It is a schematic structural diagram of a composite multi-functional mouse pad in one embodiment of the present application.
[0020] Figure 5 It is a schematic structural diagram of a composite multi-functional mouse pad in one embodiment of the present application. Detailed implementation manners
[0021] Combined as Figures 1-5 shown, to further illustrate the technical solution, a composite multi-functional mouse pad includes at least two blocks with different friction coefficients. The at least two blocks with different friction coefficients include a high-friction block 1 and a low-friction block 2 arranged beside the high-friction block 1. The high-friction block 1 includes a first anti-slip layer 10 and a first operation layer 11 stacked in sequence from bottom to top. The low-friction block 2 includes a second anti-slip layer 20 and a second operation layer 21 stacked in sequence from bottom to top. The dynamic friction coefficient α of the upper surface of the first operation layer 11 is greater than the dynamic friction coefficient β of the upper surface of the second operation layer 21.
[0022] The present application provides a composite multi-functional mouse pad, which includes at least two blocks with different friction coefficients. The at least two blocks with different friction coefficients include a high-friction block and a low-friction block arranged beside the high-friction block. The high-friction block includes a first anti-slip layer and a first operation layer stacked in sequence from bottom to top. The low-friction block includes a second anti-slip layer and a second operation layer stacked in sequence from bottom to top. The dynamic friction coefficient α of the upper surface of the first operation layer is greater than the dynamic friction coefficient β of the upper surface of the second operation layer. By dividing the mouse pad into two blocks with different friction coefficients, users can select different blocks for use according to different usage scenarios. In the e-sports usage scenario, users can use the low-friction block for mouse operation and use the high-friction block to place the keyboard, which can effectively improve the smoothness of mouse operation and avoid the keyboard from shifting during use. It has the advantages of strong applicability, multiple usage scenarios, simple structure, improving the user experience, and being convenient for popularization and implementation.
[0023] During the implementation of this embodiment, the dynamic friction coefficient α of the upper surface of the first operation layer 11 satisfies the following relationship: 0.25 ≤ dynamic friction coefficient α ≤ 0.35.
[0024] During the actual implementation process, the dynamic friction coefficient α of the upper surface of the first operation layer 11 is 0.3.
[0025] During the implementation of this embodiment, the dynamic friction coefficient β of the upper surface of the second operation layer 21 satisfies the following relationship: 0.15 ≤ dynamic friction coefficient β ≤ 0.25.
[0026] During the actual implementation process, the dynamic friction coefficient β of the upper surface of the second operation layer 21 is 0.2.
[0027] During the implementation of this embodiment, the material of the first operation layer 11 is fabric.
[0028] During the implementation of this embodiment, the material of the first operation layer 11 is any one of silica gel cloth and Jiaji cloth.
[0029] During the implementation of this embodiment, the material of the second operation layer 21 is polyurethane, and the second operation layer 21 is hot-pressed on the second anti-slip layer 20.
[0030] During the implementation of this embodiment, a fabric layer 3 is further provided between the second operation layer 21 and the second anti-slip layer 20, and the material of the fabric layer 3 is Jiaji cloth.
[0031] During the implementation of this embodiment, the materials of the first anti-slip layer 10 and the second anti-slip layer 20 are rubber.
[0032] As Figure 1 shown, in one of the embodiments, the first anti-slip layer and the second anti-slip layer are integrally formed rubber, a fabric layer is provided on the second anti-slip layer, the material of the second operation layer is polyurethane, the second operation layer is hot-pressed on the fabric layer by a heat transfer process, a first operation layer is provided on the first anti-slip layer, the dynamic friction coefficient of the first operation layer is 0.3, and the dynamic friction coefficient of the second operation layer is 0.2;
[0033] In the e-sports usage scenario, the second operation layer can be used for the mouse to slide, the second operation layer can effectively improve the sliding smoothness of the mouse, the user can place the keyboard on the first operation layer, and the keyboard is not prone to displacement in the heavy e-sports usage scenario, effectively improving the user's e-sports experience;
[0034] In the daily office scenario, the user can also place the mouse on the high-friction area or the low-friction area according to their own needs, which has the advantages of strong applicability, multiple usage scenarios, simple structure, improving the user's usage experience, and being convenient for popularization and implementation.
[0035] As Figure 2 shown, in one of the embodiments, the first anti-slip layer and the second anti-slip layer are integrally formed rubber, the dynamic friction coefficient of the second operation layer is 0.2, and the material of the first operation layer is silica gel cloth with a surface dynamic friction coefficient of 0.3.
[0036] As Figure 3 shown, in one of the embodiments, the first anti-slip layer and the second anti-slip layer are integrally formed rubber, the material of the second operation layer can be adjusted to Jiaji cloth with a dynamic friction coefficient of 0.2, and the material of the first operation layer is silica gel cloth with a surface dynamic friction coefficient of 0.3.
[0037] As Figure 4As shown, the first anti-slip layer and the second anti-slip layer are integrally formed rubber. A fabric layer is provided on the second anti-slip layer. The material of the fabric layer is Jiaji cloth. The material of the second operating layer is polyurethane. The second operating layer is thermocompressed on the fabric layer by a heat transfer process. A first operating layer is provided on the first anti-slip layer. The material of the first operating layer is Jiaji cloth. The dynamic friction coefficient of the Jiaji cloth used for the first operating layer is 0.3, and the dynamic friction coefficient of the second operating layer is 0.2.
[0038] As Figure 5 As shown, the first anti-slip layer and the second anti-slip layer are integrally formed rubber. The dynamic friction coefficient of the second operating layer is 0.2. A fabric layer is provided on the first anti-slip layer. A first operating layer is provided on the fabric layer. The material of the first operating layer is silica gel cloth with a dynamic friction coefficient of 0.3.
[0039] The present application provides a composite multi-functional mouse pad, which includes a high-friction block and a low-friction block provided on the high-friction block. The high-friction block includes a first anti-slip layer and a first operating layer stacked in sequence from bottom to top. The low-friction block includes a second anti-slip layer and a second operating layer stacked in sequence from bottom to top. The dynamic friction coefficient α of the upper surface of the first operating layer is greater than the dynamic friction coefficient β of the upper surface of the second operating layer. By dividing the mouse pad into two blocks with different friction coefficients, users can select different blocks for use according to different usage scenarios. In the e-sports usage scenario, users can use the low-friction block for mouse operation and use the high-friction block to place the keyboard, which can effectively improve the smoothness of mouse operation and also prevent the keyboard from shifting during use. It has the advantages of strong applicability, multiple usage scenarios, simple structure, improved user experience, and being convenient for popularization and implementation.
[0040] The above are the embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. A composite multi-functional mouse pad, characterized in that, It includes at least two blocks with different friction coefficients. The at least two blocks with different friction coefficients include a high-friction block (1) and a low-friction block (2) arranged on one side of the high-friction block (1). The high-friction block (1) includes a first anti-slip layer (10) and a first operation layer (11) stacked in sequence from bottom to top. The low-friction block (2) includes a second anti-slip layer (20) and a second operation layer (21) stacked in sequence from bottom to top. The dynamic friction coefficient α of the upper surface of the first operation layer (11) is greater than the dynamic friction coefficient β of the upper surface of the second operation layer (21).
2. The composite multi-functional mouse pad according to claim 1, characterized in that, The dynamic friction coefficient α of the upper surface of the first operation layer (11) satisfies the following relationship: 0.25 ≤ dynamic friction coefficient α ≤ 0.
35.
3. The composite multi-functional mouse pad according to claim 1, wherein The dynamic friction coefficient β of the upper surface of the second operation layer (21) satisfies the following relationship: 0.15 ≤ dynamic friction coefficient β ≤ 0.
25.
4. A composite multi-functional mouse pad according to claim 1, characterized in that, The material of the first operation layer (11) is fabric.
5. The composite multi-functional mouse pad according to claim 4, wherein The material of the first operation layer (11) is any one of silica gel cloth and Jiaji cloth.
6. The composite multi-functional mouse pad according to claim 1, characterized in that, The material of the second operation layer (21) is polyurethane, and the second operation layer (21) is hot-pressed on the second anti-slip layer (20).
7. A composite multi-functional mouse pad according to claim 1, characterized in that, A fabric layer (3) is further provided between the first operation layer (11) and / or the second operation layer (21) and the first anti-slip layer (10) and / or the second anti-slip layer (20). The material of the fabric layer (3) is Jiaji cloth.
8. A composite multi-functional mouse pad according to claim 1, characterized in that, The materials of the first anti-slip layer (10) and the second anti-slip layer (20) are rubber.