一种超薄型杯柜结构
By designing an ultra-thin cup cabinet structure, combined with microcrystalline panels and graphene conductive heating elements, efficient sterilization and disinfection are achieved in a limited space, reducing the risk of burns and solving the problem of large size and space occupation of disinfection cabinets.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN OLIVE ELECTRIC CO LTD
- Filing Date
- 2025-04-26
- Publication Date
- 2026-07-17
AI Technical Summary
Existing disinfection cabinets are bulky, taking up a lot of indoor space for users, and pose a risk of burns.
An ultra-thin cup cabinet structure is designed, which combines microcrystalline board and graphene conductive heating element. It is installed on the cabinet body through drawer slides, and multiple heat dissipation holes and chambers are set. It uses far-infrared sterilization and disinfection, and the temperature is controlled by a thermostat to avoid burns.
It achieves efficient sterilization and disinfection in a small space, reduces the risk of burns, and improves user convenience and safety.
Smart Images

Figure CN224505924U_ABST
Abstract
Claims
1. An ultra-thin cup cabinet structure, comprising a drawer (4) mounted on the cabinet body via drawer slides, characterized in that: The cabinet includes an inner shell (2), a back panel (7), a bottom plate (8), a front panel (9), and an outer cover (1). The front panel (9) is provided with an assembly hole for the drawer (4) to enter and exit. The inner shell (2), the back panel (7), and the bottom plate (8) together form a first chamber for accommodating the drawer (4). The assembly hole is connected to the first chamber. The bottom plate (8) is provided with a microcrystalline plate (3). A graphene conductive heating element (5) is provided on the downward-facing surface of the microcrystalline plate (3). The bottom of the drawer (4) is provided with a teacup fixing hole (4.11) and a sixth heat dissipation hole (4.12). The sixth heat dissipation hole (4.12) is located next to the teacup fixing hole (4.11).
2. The ultra-thin cup cabinet structure according to claim 1, characterized in that The outer cover (1), the rear plate (7), the inner shell (2), the bottom plate (8), and the front panel (9) together form a second chamber located to the left of the first chamber, a third chamber located above the first chamber, and a fourth chamber located to the right of the first chamber. The second chamber is connected to the fourth chamber through the third chamber.
3. The ultra-thin cup cabinet structure according to claim 2, characterized in that The inner shell (2) has a second groove (2.4) formed by stamping on the left outer wall. The inner wall of the inner shell (2) forms a second boss corresponding to the location of the second groove (2.4). The drawer slide is located in the first cavity and is installed on the second boss. The second groove (2.4) has a second mounting hole (2.41) in the middle for fixing the fixed slide in the drawer slide.
4. The ultra-thin cup cabinet structure according to claim 3, characterized in that A second heat dissipation hole (2.3) is also provided on the left outer wall of the inner shell (2), and the second heat dissipation hole (2.3) connects the second chamber and the first chamber; a first heat dissipation hole (2.1) is also provided on the right outer wall of the inner shell (2), and the first heat dissipation hole (2.1) connects the first chamber and the fourth chamber.
5. The ultra-thin cup cabinet structure according to claim 4, characterized in that The base plate (8) has a third groove (8.3) in the middle. The left and right sides of the third groove (8.3) are respectively provided with fourth heat dissipation holes (8.1) that communicate with the outside. The front and rear sides of the third groove (8.3) are respectively provided with eighth heat dissipation holes (8.2) that communicate with the outside. The microcrystalline plate (3) is set on the support base. The support base is set on the base plate (8) or in the third groove (8.3). The eighth heat dissipation hole (8.2) and the fourth heat dissipation hole (8.1) are respectively set around the microcrystalline plate (3). The fourth heat dissipation hole (8.1) communicates with the fourth chamber.
6. The ultra-thin cup cabinet structure according to claim 4, wherein The rear plate (7) is provided with a third heat dissipation hole (7.1), and the fourth chamber is connected to the outside through the third heat dissipation hole (7.1); a temperature controller or temperature sensor is provided on the right outer wall of the inner shell (2), and the temperature controller is close to the third heat dissipation hole (7.1).
7. The ultra-thin cup cabinet structure according to claim 1, characterized in that: The drawer (4) has a third mounting hole (4.2) and a fourth mounting hole (4.3) on its left and right side walls, respectively, for installing the movable slide rail in the drawer slide rail.
8. The ultra-thin cup cabinet structure according to claim 1, wherein The bottom of the drawer (4) is high on one side and low on the other side. The teacup fixing hole (4.11) is located on the high side, and two or more seventh heat dissipation holes (4.13) are arranged in strips on the low side.
9. The ultra-thin cup cabinet structure according to claim 1, wherein The bottom plate (8) has a protruding foot pad (10) facing downwards, and the outer wall of the rear plate (7) has a bracket (6) for fixing the power cord.
10. The ultra-thin cup cabinet structure according to claim 9, characterized in that The overall height from the top surface of the cabinet to the bottom surface of the foot pad (10) is 15cm to 15.5cm.