Vacuum cup integrating hot compress and heat preservation functions
By introducing a microprocessor, temperature sensor and heating block into the thermos cup, the constant temperature control and heat compress function of moisture in the thermos cup is realized, and a lighting lamp is set on the cup lid, solving the problem of single function of the existing thermos cup and improving the practicality of night use.
Patent Information
- Application Number
- CN202422518899.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-10-18
AI Technical Summary
The existing thermos cups cannot achieve the constant temperature and heat compress functions of the insulation in the thermal insulation, and lack lighting functions at night, making them less practical.
A thermos cup integrating heat compress and insulation functions is designed. It uses a microprocessor, temperature sensor and heating block to achieve constant temperature control of water temperature, and provides heat compress function through heating blocks. At the same time, lighting lamps and touch switches are set on the cup lid to provide nighttime lighting.
The constant temperature control and heat compress function of moisture in the thermos cup is realized, which improves the functionality of the thermos cup and provides lighting convenience at night.
Smart Images

Figure CN223068317U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of heat preservation cups, and more specifically, particularly relates to a heat preservation cup integrating heat compress and heat preservation functions. Background Art
[0002] A heat preservation cup is generally a water-containing container made of ceramics or stainless steel with a vacuum layer, having a lid on the top, being tightly sealed, and the vacuum heat insulation layer can slow down the heat dissipation of liquids such as water contained inside to achieve the purpose of heat preservation. At present, the existing heat preservation cups cannot simultaneously keep the water temperature constant inside the cup and achieve heat compress through the heating element for constant temperature, with poor functionality; the existing heat preservation cups cannot provide a lighting function at night, with low practicality. Content of the Utility Model
[0003] In order to solve the above technical problems, the utility model provides a heat preservation cup integrating heat compress and heat preservation functions to solve the problems that the existing heat preservation cups cannot simultaneously keep the water temperature constant inside the cup and achieve heat compress through the heating element for constant temperature, with poor functionality; the existing heat preservation cups cannot provide a lighting function at night, with low practicality.
[0004] The heat preservation cup integrating heat compress and heat preservation functions provided by the utility model includes a cup body; a threaded seat is fixed at the bottom of the cup body, the threaded seat is of an annular structure, and a heating block is fixed inside the threaded seat; a storage battery is installed above the heating block at the bottom of the cup body, and the storage battery and the heating block are separated by a heat insulation plate. A USB charging jack is provided on the cup body, and the USB charging jack is electrically connected to the storage battery at the bottom of the cup body. A display screen is provided on the cup body, a microprocessor and a temperature sensor are installed inside the cup body, the maximum threshold and the minimum threshold in the microprocessor are 50°C and 30°C respectively, and the microprocessor, the temperature sensor, the display screen, the heating block and the storage battery at the bottom of the cup body are electrically connected.
[0005] Further, a protective cover is threadedly connected to the threaded seat, and the heating block is covered by the protective cover.
[0006] Further, the heating block is of a circular block structure, and the bottom end face of the heating block is lower than the bottom end face of the threaded seat.
[0007] Further, the protective cover is of a cylindrical barrel structure, and a rubber block is adhered to the outside of the protective cover, and the rubber block is of a cylindrical barrel structure.
[0008] Further, a cup lid is threadedly connected to the top of the cup body, a lighting lamp is installed on the top end face of the cup lid, a touch switch is also installed on the top end face of the cup lid, and there is a storage battery inside the cup lid, and the storage battery, the lighting lamp and the touch switch are electrically connected.
[0009] Furthermore, auxiliary grooves are formed in a circular array on the outer wall of the cup lid. The auxiliary grooves are semi-cylindrical groove structures, and the auxiliary grooves formed in the circular array together constitute the anti-slip member of the cup lid.
[0010] Compared with the prior art, the utility model has the following beneficial effects:
[0011] 1. With the settings of the microprocessor, temperature sensor and heating block in the utility model, on the one hand, the temperature sensor transmits the water temperature signal of the cup body to the microprocessor. When the water temperature is lower than the threshold of the microprocessor, the microprocessor controls the heating block to work to heat the water in the cup body; during the heating process, the temperature sensor continuously transmits the temperature signal to the microprocessor. When the temperature signal exceeds the threshold of the microprocessor, the microprocessor controls the heating block to stop heating; on the other hand, the heating block can be used for hot compress of the body, with comprehensive functions.
[0012] 2. With the setting of the rubber block in the utility model, on the one hand, the rubber block can achieve anti-slip; on the other hand, when unscrewing the protective cover, the rubber block can prevent the hand from slipping.
[0013] 3. With the settings of the lighting lamp and touch switch in the utility model, when used at night, touching the touch switch with the hand can control the lighting lamp to turn on, facilitating night lighting.
[0014] 4. With the setting of the auxiliary groove in the utility model, during the process of opening the cup lid, the auxiliary groove can prevent the hand from slipping. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is an axonometric structural schematic diagram of the heat preservation cup integrating the functions of hot compress and heat preservation of the utility model;
[0016] Figure 2 is an axonometric split structural schematic diagram of the heat preservation cup integrating the functions of hot compress and heat preservation of the utility model;
[0017] Figure 3 is the utility model Figure 2 magnified structural schematic diagram at A;
[0018] Figure 4 is the utility model Figure 2 axonometric structural schematic diagram after further splitting;
[0019] Figure 5 is the utility model Figure 4 axonometric structural schematic diagram after rotation;
[0020] Figure 6 is the system composition structural schematic diagram of the utility model;
[0021] In the figure, the correspondence between the component names and the drawing numbers is as follows:
[0022] 1. Cup body; 101. USB charging jack; 102. Display screen; 103. Microprocessor; 104. Temperature sensor; 2. Cup lid; 201. Auxiliary slot; 202. Lighting lamp; 203. Touch switch; 301. Threaded base; 302. Heating block; 303. Protective cover; 304. Rubber block. Detailed implementation manners
[0023] In order to make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the drawings of the embodiments of the present utility model. Obviously, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present utility model without creative efforts shall fall within the scope of protection of the present utility model.
[0024] Unless otherwise defined, the technical terms or scientific terms used herein shall have the ordinary meanings understood by those of ordinary skill in the art to which the present utility model belongs. The words such as "a", "an" or "the" used in the specification and claims of the patent application of the present utility model do not indicate a limitation in quantity, but rather indicate the existence of at least one. Words such as "comprising" or "including" mean that the elements or objects appearing before the word cover the elements or objects listed after the word and their equivalents. "Connection" or "connected" and other similar words are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Upper", "lower", "left", "right", etc. are only used to represent relative positional relationships, and when the absolute position of the object being described changes, the relative positional relationship may also change accordingly.
[0025] The following further describes the implementation manners of the present utility model in detail with reference to the drawings and embodiments. Embodiment 1:
[0026] As shown in the attached Figure 1 to the attached Figure 6As shown in the figure, the heat-preserving cup integrating the functions of hot compress and heat preservation provided by the utility model includes a cup body 1; a threaded seat 301 is fixed at the bottom of the cup body 1. The threaded seat 301 is of an annular structure, and a heating block 302 is fixed inside the threaded seat 301; a storage battery is installed above the heating block 302 at the bottom of the cup body 1. The storage battery and the heating block 302 are separated by a heat-insulating plate. A USB charging jack 101 is arranged on the cup body 1, and the USB charging jack 101 is electrically connected to the storage battery at the bottom of the cup body 1. A display screen 102 is arranged on the cup body 1. A microprocessor 103 and a temperature sensor 104 are installed inside the cup body 1. The highest threshold and the lowest threshold in the microprocessor 103 are 50°C and 30°C respectively. The microprocessor 103, the temperature sensor 104, the display screen 102, the heating block 302 and the storage battery at the bottom of the cup body 1 are electrically connected. During the use process, the temperature sensor 104 transmits the water temperature signal of the cup body 1 to the microprocessor 103. When the water temperature is lower than the threshold of the microprocessor 103, the microprocessor 103 controls the heating block 302 to work to heat the water inside the cup body 1; during the heating process, the temperature sensor 104 transmits the temperature signal to the microprocessor 103 in real time. When the temperature signal exceeds the threshold of the microprocessor 103, the microprocessor 103 controls the heating block 302 to stop heating. During the use process, the temperature sensor 104 transmits the water temperature information to the display screen 102 for display in real time.
[0027] Wherein, a protective cover 303 is threadedly connected to the threaded seat 301, and the heating block 302 is covered by the protective cover 303. During placement, the heating block 302 can be protected through the protective cover 303.
[0028] Wherein, the heating block 302 is of a circular block structure, and the bottom end surface of the heating block 302 is lower than the bottom end surface of the threaded seat 301. When hot compress is needed, the protective cover 303 is unscrewed, and hot compress can be realized through the heating block 302.
[0029] Wherein, the protective cover 303 is of a cylindrical barrel structure, and a rubber block 304 is adhered to the outside of the protective cover 303. The rubber block 304 is of a cylindrical barrel structure. During placement, anti-slip can be realized through the rubber block 304. When unscrewing the protective cover 303, the rubber block 304 can prevent the hand from slipping. Embodiment Two:
[0030] On the basis of Embodiment One, a cup cover 2 is threadedly connected to the top of the cup body 1. An illuminating lamp 202 is installed on the top end surface of the cup cover 2, and a touch switch 203 is also installed on the top end surface of the cup cover 2. There is a storage battery inside the cup cover 2. The storage battery, the illuminating lamp 202 and the touch switch 203 are electrically connected. During night use, touching the touch switch 203 by hand can control the illuminating lamp 202 to light up, which is convenient for night lighting. Embodiment Three:
[0031] On the basis of the second embodiment, auxiliary grooves 201 are formed on the outer wall of the cup lid 2 in an annular array. The auxiliary grooves 201 are semi-cylindrical groove-shaped structures. The auxiliary grooves 201 formed in the annular array together constitute the anti-slip member of the cup lid 2. During the process of opening the cup lid 2, the auxiliary grooves 201 can prevent the hand from slipping.
[0032] The temperature sensor 104 of the present utility model transmits the water temperature signal of the cup body 1 to the microprocessor 103. When the water temperature is lower than the threshold value of the microprocessor 103, the microprocessor 103 controls the heating block 302 to work to heat the water in the cup body 1; during the heating process, the temperature sensor 104 transmits the temperature signal to the microprocessor 103 in real time. When the temperature signal exceeds the threshold value of the microprocessor 103, the microprocessor 103 controls the heating block 302 to stop heating. During the use process, the temperature sensor 104 transmits the water temperature information to the display screen 102 for display in real time; when using at night, touching the touch switch 203 with the hand can control the lighting lamp 202 to light up, which is convenient for night lighting; when hot compress is needed, unscrew the protective cover 303, and the hot compress can be realized through the heating block 302.
[0033] Although the present application has been described with reference to the above embodiments, those skilled in the art will understand that various changes can be made without departing from the concept and scope of the present application as defined by the appended claims. Although this specification contains many details of specific implementation manners, these should not be construed as limitations on the scope claimed by the present application, but rather as descriptions of features specific to particular embodiments. The scope of the present application is defined by the appended claims and their equivalents, and is not limited to the embodiments described above.
Claims
1. A heat preservation cup integrating heat compress and heat preservation functions, comprising a cup body (1); characterized in that: A threaded seat (301) is fixed to the bottom of the cup body (1). The threaded seat (301) is of an annular structure, and a heating block (302) is fixed inside the threaded seat (301); a storage battery is installed above the heating block (302) at the bottom of the cup body (1), and the storage battery and the heating block (302) are separated by a heat insulation plate. A USB charging jack (101) is provided on the cup body (1), and the USB charging jack (101) is electrically connected to the storage battery at the bottom of the cup body (1). A display screen (102) is provided on the cup body (1), and a microprocessor (103) and a temperature sensor (104) are installed inside the cup body (1). The maximum threshold and the minimum threshold in the microprocessor (103) are 50 °C and 30 °C respectively. The microprocessor (103), the temperature sensor (104), the display screen (102), the heating block (302), and the storage battery at the bottom of the cup body (1) are electrically connected.
2. The heat preservation cup integrating the functions of heat compress and heat preservation according to claim 1, characterized in that: A protective cover (303) is threadedly connected to the threaded seat (301), and the heating block (302) is covered by the protective cover (303).
3. The heat-insulating cup integrating the functions of hot compress and heat preservation according to claim 2, characterized in that: The heating block (302) is of a circular block structure, and the bottom end surface of the heating block (302) is lower than the bottom end surface of the threaded seat (301).
4. The heat-insulated cup integrating the functions of hot compress and heat preservation as claimed in claim 3, wherein: The protective cover (303) is of a cylindrical barrel structure, and a rubber block (304) is adhered to the outside of the protective cover (303). The rubber block (304) is of a cylindrical barrel structure.
5. The heat-insulated cup integrating the functions of hot compress and heat preservation as claimed in claim 4, wherein: A cup cover (2) is threadedly connected to the top of the cup body (1). A lighting lamp (202) is installed on the top end surface of the cup cover (2), and a touch switch (203) is also installed on the top end surface of the cup cover (2). There is a storage battery inside the cup cover (2), and the storage battery, the lighting lamp (202), and the touch switch (203) are electrically connected.
6. The heat-insulating cup integrating heat compress and heat preservation functions as claimed in claim 5, wherein: Auxiliary grooves (201) are formed in an annular array on the outer wall of the cup cover (2). The auxiliary grooves (201) are of a semi-cylindrical groove structure, and the auxiliary grooves (201) formed in the annular array together constitute an anti-slip part of the cup cover (2).