一种带缓冲硅胶层的机械键盘卫星轴结构
By incorporating an elastic silicone body within the soybean cavity of the satellite shaft, the noise and feel issues of the satellite shaft structure were resolved, achieving optimized quietness and feel, extending service life, and reducing maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 渴创技术(深圳)有限公司
- Filing Date
- 2025-07-15
- Publication Date
- 2026-07-17
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Figure CN224519761U_ABST
Abstract
Claims
1. A mechanical keyboard stabilizer structure with a buffer silicone layer, characterized in that, include: Satellite axis soybean (1), cavity (11), satellite axis small bean (2), elastic silicone body (3), independent silicone block (31) Satellite-axis soybean (1) having at least one cavity (11); Satellite axis bean (2) is movably installed in the cavity (11) of the satellite axis bean (1), and its pressing motion trajectory points to the inside of the cavity (11); An elastic silicone body (3) is fixedly disposed in the cavity (11), and at least a portion of it is located on the pressing motion trajectory of the satellite axis bean (2).
2. The mechanical keyboard spacebar structure with a cushioned silicone layer of claim 1, wherein: The elastic silicone body (3) is a single piece structure that completely fills the bottom area of the cavity (11).
3. The mechanical keyboard spacebar structure with a cushioned silicone layer of claim 1, wherein: The elastic silicone body (3) is composed of at least two independent silicone blocks (31), which are respectively disposed in different collision areas of the cavity (11).
4. The mechanical keyboard spacebar structure with a cushioned silicone layer of claim 1, wherein: The bottom of the cavity (11) is provided with a groove, and the elastic silicone body (3) is fixed in the groove by interference fit.
5. The mechanical keyboard spacebar structure with a cushioned silicone layer of claim 1, wherein: The satellite axis soybean (1) and the elastic silicone body (3) are integrally molded by a two-color injection molding process.
6. The mechanical keyboard spacebar structure with a cushioned silicone layer of claim 1, wherein: The independent silicone blocks (31) are asymmetrically distributed, with one independent silicone block (31) located in the initial pressing contact area of the satellite axis bean (2) and the other independent silicone block (31) located in the collision area at the end of the stroke. The hardness of the independent silicone block (31) in the collision area at the end of the stroke is greater than that of the independent silicone block (31) in the initial pressing contact area.
7. The mechanical keyboard spacebar structure with a cushioned silicone layer of claim 1, wherein: The joint surface between the elastic silicone body (3) and the satellite axis soybean (1) is provided with an interlocking structure.
8. The mechanical keyboard spacebar structure with a cushioned silicone layer of claim 7, wherein: The interlocking structure includes honeycomb micropores, which are located at the bottom of the inner wall of the cavity (11). The elastic silicone body (3) is injected into the honeycomb micropores to form an anchoring column.
9. The mechanical keyboard stabilizer structure with a buffer silicone layer according to claim 7, characterized in that: The interlocking structure includes a dovetail groove, which is located at the bottom of the inner wall of the cavity (11), and the elastic silicone body (3) is provided with a dovetail protrusion corresponding to the dovetail groove.
10. A mechanical keyboard stabilizer structure with a buffer silicone layer according to claim 1, characterized in that: The bottom of the cavity (11) of the satellite axis soybean (1) is provided with a detachable silicone compartment. The detachable silicone compartment has a buckle structure. The elastic silicone body (3) can be slidably embedded in the detachable silicone compartment, which makes it convenient for users to replace elastic silicone bodies (3) with different hardness.