Self-sliding shifting teacup
By designing a self-sliding teacup, which utilizes inclined curved surfaces and raised rotating curved surfaces, the cup body automatically slides and snaps into the cup holder, solving the problem of the cup easily tipping over and achieving stable placement and preventing water spillage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-04-14
AI Technical Summary
Existing cups are easily knocked over during use, especially during work and study, causing liquids to spill and affecting study and daily life. In addition, existing anti-tipping devices require deliberate alignment with the groove to ensure stability.
Design a self-sliding teacup with an inclined curved surface and a raised rotating curved surface at the bottom of the cup body. The cup body automatically slides and locks into the cup holder using gravity, ensuring stability and eliminating the need for deliberate alignment with the groove.
It automatically slides and locks the cup in place at any angle, preventing it from tipping over and spilling water, making it more convenient and stable to use.
Smart Images

Figure CN224112426U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cup technology, specifically a self-sliding, shifting teacup. Background Technology
[0002] In daily life, cups are easily knocked over, especially the cups on the desks of students and office workers. During work and study, people inevitably knock over the cups, causing them to tip over. If the force is strong, the cups may fall to the ground, and the water inside may spill out and soak books or office documents, affecting people's study and life.
[0003] Currently, there are some cup anti-tipping holders on the market. They have a groove under the cylindrical base so that the bottom of the cup can be locked in the groove to prevent the cup from tipping over. However, this type of cup requires you to deliberately align it with the groove to keep it stable, which is not very convenient to use. Utility Model Content
[0004] To solve the above technical problems, this utility model provides a self-sliding displacement teacup to address the issues in the prior art.
[0005] The present invention adopts the following technical solution:
[0006] A self-sliding teacup includes a cup body and a cup holder. The bottom surface of the cup holder has an inclined curved surface with a higher outer side and a lower inner side. The bottom surface of the cup holder has a raised rotary curved surface with lower ends and a higher middle. The bottom of the cup body is placed on the inclined curved surface and the raised rotary curved surface. The bottom of the cup body has a groove that accommodates the raised rotary curved surface as the cup body slides down along the inclined curved surface and the heavy curved surface under the action of gravity.
[0007] Preferably, the cup body is a symmetrical cylindrical shape with a circular bottom, and the bottom of the cup body is provided with a spherical groove coaxial with it.
[0008] Preferably, the cup body is a symmetrical polygonal cylinder with a regular polygonal bottom, and the bottom of the cup body is provided with a spherical groove coaxial with the cylindrical body.
[0009] Preferably, the cup holder is a symmetrical disc or regular polygon, and the bottom surface of the cup holder has a raised rotating surface coaxial with its center point.
[0010] Preferably, the cup holder has an open shape that is wider at the top and narrower at the bottom.
[0011] Preferably, the ratio of the height of the raised rotary surface to the height of the cup holder is 1:1 to 1.5.
[0012] Preferably, the curvature of the raised rotary surface is the same as the curvature of the inclined surface with a higher outer side and a lower inner side on the periphery of the cup holder bottom surface.
[0013] Preferably, the spherical surface of the spherical groove and the spherical surface of the raised rotary surface can fit together completely.
[0014] Compared with the prior art, the present invention has the following advantages:
[0015] The principle of automatic sliding of this utility model is as follows: one end of the bottom of the cup body contacts the bottom surface of the cup holder and has an inclined curved surface (22) with the outer side higher than the inner side. The other end of the bottom of the cup body contacts the bottom surface of the cup holder (20) with a raised rotating curved surface (21) that is lower at both ends and higher in the middle. Since both contact surfaces are curved, they will slide downwards under the action of gravity. At the same time, in order to avoid the raised rotating curved surface pressing against the bottom of the cup body, a groove is needed at the bottom of the cup body to accommodate the raised rotating curved surface (21).
[0016] This invention sets the curvature of the inclined curved surface (22) and the raised rotary curved surface to be the same, which ensures that the cup body slides down at the same speed when it comes into contact with the two surfaces, and ensures that the cup body will not tip over or spill water.
[0017] By utilizing the height difference between the cup holder and the raised curved surface, as well as the cup's own weight, the cup will automatically slide down and lock into the cup holder no matter what angle or position it is placed from, without the need for deliberate alignment. Attached Figure Description
[0018] Figure 1 This is an overall structural diagram of the present invention.
[0019] Figure 2 This is a cross-sectional view of the present invention.
[0020] In the figure, there is a cup body 10, a cup holder 20, a spherical groove 11, a raised rotary surface 21, and an inclined surface 22. Detailed Implementation
[0021] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0022] like Figure 1-2As shown, this utility model provides a self-sliding shifting teacup, including a cup body 10 and a cup holder 20. The bottom surface of the cup holder 20 is provided with an inclined curved surface 22 that is higher on the outer side and lower on the inner side. The bottom surface of the cup holder 20 is provided with a raised rotating curved surface 21 that is lower at both ends and higher in the middle. The bottom of the cup body 10 is placed on the inclined curved surface and the raised rotating curved surface 21. The bottom of the cup body 10 is provided with a groove that accommodates the raised rotating curved surface 21 as the cup body 10 slides down along the inclined curved surface and the raised rotating curved surface under the action of gravity.
[0023] In this embodiment, as Figure 1 As shown, the cup body 10 is a symmetrical cylindrical shape with a circular bottom. The bottom of the cup body 10 is provided with a spherical groove 11 that is coaxial with the cylinder.
[0024] The ratio of the height of the raised rotary surface 21 to the height of the cup holder 20 is 1:1 to 1.5. In this embodiment, the ratio is 1:1.2. By utilizing the height difference between the two and the weight of the cup body 10 itself, the cup will slide down and be stuck on the cup holder no matter what angle or position it is placed from.
[0025] The curvature of the raised rotary surface 21 is the same as the curvature of the inclined surface with a higher outer side and a lower inner side on the periphery of the bottom surface of the cup holder 20. This ensures that the sliding speed of the cup body 10 is the same, and that the cup body 10 remains horizontal, preventing the liquid inside from spilling. Specific details are as follows: Figure 2 As shown, the raised rotary surface 21 includes a second raised rotary surface 21b on the left and a first raised rotary surface 21a on the right, and the inclined surface 22 includes a second raised rotary surface 22b on the left and a first raised rotary surface 22a on the right. When the cup is placed on the right side of the tray, one end of its bottom contacts the circumference of the cup holder's bottom surface, which has an inclined surface 22b that is higher on the outside and lower on the inside. The other end of the cup's bottom contacts the raised rotary surface 21a on the bottom surface of the cup holder 20, which is lower at both ends and higher in the middle. Since both contact surfaces are curved, they will slide downwards under the influence of gravity. Conversely, if the cup is placed on the left side, it will also slide automatically.
[0026] The spherical surface of the spherical groove 11 and the spherical surface of the raised rotary surface 21 can fit together completely, ensuring the smooth sliding of the cup body 10, and at the same time, making the cup body 10 snap into the cup holder 20 to prevent the cup body from tipping over.
[0027] In another embodiment, the cup body 10 is a symmetrical polygonal cylinder with a regular polygonal bottom. In one embodiment, a regular 6-shaped deformation is used, and the bottom of the cup body 10 is provided with a spherical groove 11 coaxial with the cylindrical body.
[0028] The cup holder 20 is a symmetrical regular polygon. In one embodiment, it adopts a regular 6 deformation. The bottom surface of the cup holder 20 is provided with a raised rotary surface 21 coaxial with its center point.
[0029] The cup holder 20 has an open shape that is wider at the top and narrower at the bottom.
[0030] In another embodiment, the cup body 10 and the cup holder 20 are regular octagons.
[0031] The above are merely preferred embodiments of this utility model. The scope of protection of this utility model is defined by the scope of the claims. Any improvements and modifications made by those skilled in the art without departing from the spirit and scope of this utility model should also be considered as part of the scope of protection of this utility model.
Claims
1. A self-sliding, shifting teacup, comprising a cup body (10) and a cup holder (20), characterized in that, The cup holder (20) has an inclined curved surface (22) with a high outer side and a low inner side on the bottom periphery. The bottom surface of the cup holder (20) has a raised rotating curved surface (21) with low ends and high middle. The bottom of the cup body (10) is placed on the inclined curved surface and the raised rotating curved surface (21). The bottom of the cup body (10) has a groove that accommodates the raised rotating curved surface (21) as the cup body (10) slides down along the inclined curved surface and the raised rotating curved surface under the action of gravity.
2. A self-sliding, shifting teacup according to claim 1, characterized in that, The cup body (10) is a symmetrical cylindrical shape with a circular bottom. The bottom of the cup body (10) is provided with a spherical groove (11) coaxial with the cylinder.
3. A self-sliding, shifting teacup according to claim 1, characterized in that, The cup body (10) is a symmetrical polygonal cylindrical shape with a regular polygonal bottom. The bottom of the cup body (10) is provided with a spherical groove (11) coaxial with the cylindrical body.
4. A self-sliding, shifting teacup according to claim 1, characterized in that, The cup holder (20) is a symmetrical disc or regular polygon, and a raised rotating surface (21) coaxial with its center point is provided in the middle of the bottom surface of the cup holder (20).
5. A self-sliding, shifting teacup according to claim 4, characterized in that, The cup holder (20) has an open shape that is wider at the top and narrower at the bottom.
6. A self-sliding, shifting teacup according to claim 1, characterized in that, The ratio of the height of the raised rotary surface (21) to the height of the cup holder (20) is 1:1 to 1.
5.
7. A self-sliding, shifting teacup according to claim 2, characterized in that, The curvature of the raised rotary surface (21) is the same as the curvature of the inclined surface with a higher outer side and a lower inner side on the periphery of the bottom surface of the cup holder (20).
8. A self-sliding, shifting teacup according to claim 2, characterized in that, The spherical surface of the spherical groove (11) and the spherical surface of the raised rotary surface (21) can fit together completely.