Electric heating constant-temperature vacuum cup with embedded temperature measuring module

By employing a threaded drive design for the knob and clamp, along with magnetic adsorption and the application of graphene coating, the problems of difficult disassembly and unstable heating in existing electric thermos cups have been solved. This achieves a stable connection of the temperature measurement module and stable heating, thereby improving user experience and product lifespan.

CN224099118UActive Publication Date: 2026-04-10SHENZHEN LONGXIANG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN LONGXIANG TECHNOLOGY CO LTD
Filing Date
2025-06-05
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing electric thermos cups cannot achieve quick disassembly or stable embedding of the temperature measuring module, making it difficult to thoroughly clean liquid residue. The integrated design of the temperature measuring module affects accuracy and causes unstable heating, increasing usage costs and shortening product lifespan.

Method used

The design employs a combination of knobs and clamps, using threaded drive to achieve secure embedding and quick assembly/disassembly of the temperature measurement module. Combined with magnetic adsorption and the thermal conductivity of the graphene coating, it ensures accurate temperature measurement and heating stability, and displays the temperature in real time on the screen.

Benefits of technology

This achieves a stable connection of the temperature measurement module, improves temperature measurement accuracy and heating stability, reduces liquid residue and cleaning difficulty, lowers maintenance costs, extends product lifespan, and enhances user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electric heating constant-temperature vacuum cup with an embedded temperature measuring module, which relates to the technical field of articles for daily use, and comprises a cup body and a cup cover arranged on the cup body, and further comprises an embedded component, and the embedded component comprises a knob rotationally connected to the cup cover. The second limiting groove in the temperature measuring module is inserted into the first limiting groove in the cup cover, then the rotary knob is rotated to drive the clamping plate to slide in the cup cover, the temperature measuring module can be fixedly embedded into the cup cover through the clamping plate, meanwhile, the first magnetic block and the second magnetic block attract each other, it is ensured that the temperature measuring module is stably embedded, and the temperature of liquid in the cup can be accurately measured; in the constant-temperature assembly, a heating plate is arranged in an inner cavity of the cup body, a graphene coating on the surface of the heating plate conducts heat efficiently and heats liquid, during heating, a temperature measuring module monitors the temperature in real time, data is transmitted to a control unit, the working state of the heating plate is controlled, the temperature is visually displayed through a display screen, and therefore the constant-temperature effect is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of daily necessities, especially to a electric heating constant temperature vacuum cup with embedded temperature measuring module. BACKGROUND

[0002] With the improvement of living standards, intelligent home products gradually become the mainstream of the market, electric heating constant temperature vacuum cup as a new product, has kept the function of beverage constant temperature, in order to more accurately control temperature, some vacuum cups adopt embedded temperature measuring module, through real time detection liquid temperature, ensure temperature stability, meet the demand of consumer to temperature control precision, improve user experience.

[0003] However, in actual use, there are still the following deficiencies, such as: the existing electric heating constant temperature vacuum cup, cannot realize temperature measuring module quick disassembly or stable embedding in the cup cover, and cannot realize intelligent temperature measurement, quick heating, temperature measuring module and cup cover integrated design or too tight, leading to liquid residue difficult to clean completely, long-term accumulation may breed bacteria or affect temperature measurement accuracy, if temperature measuring module fails, user cannot disassemble and replace, need to return to factory maintenance, increase use cost and time cost, temperature measuring module shakes or rubs in the cup cover, may lead to internal circuit damage or sensor probe abrasion, shorten product life, heating element distribution is unreasonable, leading to liquid local overheating or boiling instability, affect drinking experience.

[0004] Therefore, the utility model provides an electric heating constant temperature vacuum cup with embedded temperature measuring module solves the above problems. UTILITY MODEL CONTENTS

[0005] The utility model aims at solving the shortcomings in the prior art, and provides an electric heating constant temperature vacuum cup with embedded temperature measuring module.

[0006] In order to realize the above object, the utility model adopts the following technical scheme: an electric heating constant temperature vacuum cup with embedded temperature measuring module, including cup body and cup cover arranged on the cup body, further including:

[0007] The embedded assembly includes a knob rotatably connected to the cup cover, a clamping plate slidably connected in the cup cover, a first limiting groove formed in the cup cover, a temperature measuring module arranged on the inner bottom of the cup cover, a second limiting groove formed in the temperature measuring module, the second limiting groove arranged in the first limiting groove, a first magnetic block arranged on the temperature measuring module, a second magnetic block arranged on the side of the cup cover close to the first magnetic block, and the first magnetic block arranged on the second magnetic block.

[0008] The constant temperature assembly comprises an inner cavity arranged in a cup body, a heating plate is arranged in the cup body, a graphene coating is arranged on the heating plate, and a display screen is arranged on one side of the cup body close to the bottom.

[0009] Further, a threaded groove is arranged in the knob, and a threaded ring is arranged on one side of the clamping plate close to the threaded groove.

[0010] The beneficial effect of the above further scheme is that the threaded groove in the knob cooperates with the threaded ring of the clamping plate, and when the knob is rotated, the clamping plate is driven to slide in the cup cover through threaded transmission, so that the clamping plate can fix and embed the temperature measurement module in the cup cover.

[0011] Further, the threaded ring is threadedly connected in the threaded groove.

[0012] The beneficial effect of the above further scheme is that when the knob is rotated, the threaded transmission drives the clamping plate to slide linearly, so that the temperature measurement module is locked or released, and stable connection and quick disassembly are ensured.

[0013] Further, a protective shell is threadedly connected to the outside of the knob at the top of the cup cover.

[0014] The beneficial effect of the above further scheme is that the protective shell threadedly connected to the top of the cup cover can protect the knob after installation, prevent the knob from being rotated due to external force impact or misoperation, ensure the stability of the position of the temperature measurement module, and ensure the temperature measurement accuracy.

[0015] Further, a silica gel anti-skid sleeve is arranged at the bottom of the cup body.

[0016] The beneficial effect of the above further scheme is that the silica gel anti-skid sleeve at the bottom of the cup body increases the friction force between the silica gel and the placement plane by relying on the soft and anti-skid characteristics of silica gel, so that the thermos cup is placed more stably, and the risk of spilling is reduced.

[0017] Further, a sealing ring is connected to the top of the cup body.

[0018] The beneficial effect of the above further scheme is that the sealing ring at the top of the cup body is tightly attached when the cup cover is screwed, a sealed space is formed, heat loss and liquid leakage are effectively prevented, and the heat preservation performance and sealing performance of the thermos cup are improved.

[0019] Compared with the prior art, the advantages and positive effects of the utility model are that:

[0020] The utility model discloses a first, the second limiting slot of temperature measurement module is inserted to the first limiting slot on the cup cover, can limit temperature measurement module, subsequently, the clamping plate is slid in the cup cover with the rotation knob, the clamping plate can be fixed embedding in the cup cover with temperature measurement module, and the first magnetic block and the second magnetic block mutually adsorb, ensure temperature measurement module solid embedding, can accurate measurement cup liquid temperature, in thermostatic assembly, the heating plate is set in the cup body inner chamber, and the surface graphene coating high -efficient heat conduction, heating, temperature measurement module real -time monitoring temperature, data transmission to control unit, control heating plate working condition, through display screen with temperature intuitive presentation, thereby realize thermostatic effect. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a structure schematic drawing of the electric heating thermostatic vacuum cup of the utility model with embedded temperature measurement module;

[0022] Figure 2 It is a cup cover structure schematic drawing of the electric heating thermostatic vacuum cup of the utility model with embedded temperature measurement module;

[0023] Figure 3 It is an embedded assembly structure schematic drawing of the electric heating thermostatic vacuum cup of the utility model with embedded temperature measurement module;

[0024] Figure 4 It is an embedded assembly structure sectional view of the electric heating thermostatic vacuum cup of the utility model with embedded temperature measurement module;

[0025] Figure 5 It is a thermostatic assembly structure schematic drawing of the electric heating thermostatic vacuum cup of the utility model with embedded temperature measurement module.

[0026] REFERENCE SIGNS:

[0027] 1, cup body;2, cup cover;

[0028] 3, embedded assembly;31, knob;32, thread groove;33, clamping plate;34, thread ring;35, first limiting slot;36, temperature measurement module;37, second limiting slot;38, first magnetic block;39, second magnetic block;310, protective shell;

[0029] 4, thermostatic assembly;41, inner chamber;42, heating plate;43, graphene coating;44, display screen;45, silica gel antiskid cover;46, sealing ring. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of the present application.

[0031] As shown in Figures 1-5 , the present embodiment provides a technical solution: an electric heating constant temperature thermos cup with an embedded temperature measurement module, comprising a cup body 1 and a cup cover 2 arranged on the cup body 1, further comprising:

[0032] An embedded assembly 3, the embedded assembly 3 comprises a knob 31 rotatably connected to the cup cover 2, a clamping plate 33 is slidably connected in the cup cover 2, a first limiting groove 35 is arranged in the cup cover 2, a temperature measurement module 36 is arranged on the inner bottom of the cup cover 2, a second limiting groove 37 is arranged on the temperature measurement module 36, the second limiting groove 37 is arranged in the first limiting groove 35, a first magnetic block 38 is arranged on the temperature measurement module 36, a second magnetic block 39 is arranged on one side of the cup cover 2 close to the first magnetic block 38, and the first magnetic block 38 is arranged on the second magnetic block 39;

[0033] A constant temperature assembly 4, the constant temperature assembly 4 comprises an inner cavity 41 arranged in the cup body 1, a heating plate 42 is arranged in the cup body 1, a graphene coating 43 is arranged on the heating plate 42, a display screen 44 is arranged on one side of the cup body 1 close to the bottom, first, the second limiting groove 37 on the temperature measurement module 36 is inserted into the first limiting groove 35 on the cup cover 2, so that the temperature measurement module 36 can be limited, then the knob 31 drives the clamping plate 33 to slide in the cup cover 2, so that the clamping plate 33 can fix the temperature measurement module 36 embedded in the cup cover 2, at the same time, the first magnetic block 38 and the second magnetic block 39 are mutually adsorbed, to ensure that the temperature measurement module 36 is stably embedded, and the liquid temperature in the cup can be accurately measured, in the constant temperature assembly 4, the heating plate 42 is arranged in the inner cavity 41 of the cup body 1, and the graphene coating 43 on the surface thereof is efficient in heat conduction, for liquid heating, when heating, the temperature measurement module 36 monitors the temperature in real time, data is transmitted to a control unit, the working state of the heating plate 42 is controlled, and the temperature is directly presented through the display screen 44, so that the constant temperature effect is realized.

[0034] In the above scheme, the knob 31 cannot meet the stable position of the temperature measurement module 36 in the case of external force collision or misoperation rotation, Figures 3-4As shown: the knob 31 is provided with a threaded groove 32, the clamping plate 33 is provided with a threaded ring 34 on one side close to the threaded groove 32, the threaded groove 32 in the knob 31 cooperates with the threaded ring 34 of the clamping plate 33, when rotating the knob 31, the clamping plate 33 slides in the cup cover 2 through threaded transmission, so that the clamping plate 33 can fix the temperature measurement module 36 embedded in the cup cover 2, the threaded ring 34 is screwed in the threaded groove 32, when rotating the knob 31, the threaded transmission drives the clamping plate 33 to slide linearly, realizes the locking or releasing of the temperature measurement module 36, ensures the stable connection and quick disassembly, the top of the cup cover 2 is provided with a protective shell 310 outside the knob 31, the protective shell 310 is screwed on the top of the cup cover 2, which can protect the knob 31 after installation, prevent it from rotating due to external force impact or misoperation, ensure the position stability of the temperature measurement module 36, and ensure the temperature measurement accuracy;

[0035] As Figure 1 And Figure 5 As shown, the bottom of the cup body 1 is provided with a silica gel anti-skid sleeve 45, the silica gel anti-skid sleeve 45 at the bottom of the cup body 1 increases the friction between the placing plane by the soft and anti-skid characteristics of silica gel, makes the vacuum cup more stable, reduces the risk of spilling, the top of the cup body 1 is connected with a sealing ring 46, the sealing ring 46 at the top of the cup body 1 is tightly fitted when the cup cover 2 is screwed, forms a sealed space, effectively prevents heat loss and liquid leakage, improves the heat preservation performance and sealing performance of the vacuum cup.

[0036] Working principle:

[0037] As Figures 1-5As shown, when installing the temperature measurement module 36, the second limiting groove 37 on the temperature measurement module 36 is aligned and inserted into the first limiting groove 35 on the cup cover 2, which plays a preliminary positioning role and limits the displacement of the temperature measurement module 36 in the horizontal direction. Subsequently, the knob 31 is rotated, and the rotational movement of the knob 31 is converted into the linear sliding movement of the clamping plate 33 in the cup cover 2. The clamping plate 33 gradually approaches the temperature measurement module 36 during the sliding process, until the temperature measurement module 36 is tightly pressed and fixed in the cup cover 2. At the same time, the first magnetic block 38 on the temperature measurement module 36 is attracted to the second magnetic block 39 on the cup cover 2, and the magnetic force generated further enhances the stability of the temperature measurement module 36, avoiding loosening during use, so as to ensure that the temperature measurement module 36 can accurately measure the temperature of the liquid in the cup. The protective shell 310 threadedly connected to the top of the cup cover 2 can effectively resist external impact and prevent the knob 31 from rotating due to accidental stress, thereby maintaining the stable position of the clamping plate 33 and ensuring that the temperature measurement module 36 is always in the best working state. In the constant temperature assembly 4, the heating plate 42 is located in the inner cavity 41 of the cup body 1, and the graphene coating 43 on the surface of the heating plate 42 can quickly and uniformly transmit the heat generated by the heating plate 42 to the liquid in the cup by virtue of efficient heat conduction, thereby achieving efficient heating. During the heating process, the temperature measurement module 36 continuously and real-timely monitors the liquid temperature and transmits the collected temperature data to the built-in control unit. The received temperature data is compared and analyzed with the preset temperature value, and the working state of the heating plate 42 is accurately controlled according to the analysis result, i.e., the heating is continued or stopped, so as to maintain the stability of the liquid temperature. The display screen 44 on the cup body 1 close to the bottom presents the temperature data to the user in a clear and intuitive manner, so that the user can grasp the liquid temperature in the cup at any time. In addition, the silica gel anti-skid sleeve 45 at the bottom of the cup body 1 greatly increases the friction between the cup and the placement plane by virtue of the softness and roughness of silica gel, so that the thermos cup is more stable when placed and is not easy to be tilted. The sealing ring 46 at the top of the cup body 1 tightly fits the cup mouth after the cup cover 2 is screwed, effectively preventing heat loss through the cup mouth and preventing liquid leakage, thereby comprehensively improving the heat preservation performance and use safety of the thermos cup.

[0038] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made to the above embodiments without departing from the technical solution of the present application, according to the technical essence of the present application, still belongs to the protection scope of the technical solution of the present application.

Claims

1. An electric heating constant-temperature vacuum cup with embedded temperature measuring module, comprising a cup body (1) and a cup cover (2) arranged on the cup body (1), characterized in that, Also include: The embedded assembly (3) includes a rotating knob (31) rotatably connected to the cup cover (2), a clamping plate (33) is slidably connected in the cup cover (2), a first limiting groove (35) is formed in the cup cover (2), a temperature measuring module (36) is arranged on the inner bottom of the cup cover (2), a second limiting groove (37) is formed in the temperature measuring module (36), the second limiting groove (37) is arranged in the first limiting groove (35), a first magnetic block (38) is arranged on the temperature measuring module (36), a second magnetic block (39) is arranged on the side of the cup cover (2) close to the first magnetic block (38), and the first magnetic block (38) is arranged on the second magnetic block (39); The constant temperature assembly (4) includes an inner cavity (41) arranged in the cup body (1), a heating plate (42) is arranged in the cup body (1), a graphene coating (43) is arranged on the heating plate (42), and a display screen (44) is arranged on one side of the cup body (1) close to the bottom.

2. The electric heating constant temperature thermos cup with embedded temperature measuring module according to claim 1, characterized in that: The rotating knob (31) is provided with a threaded groove (32), and the clamping plate (33) is provided with a threaded ring (34) on one side close to the threaded groove (32).

3. The electric heating constant temperature thermos cup with embedded temperature measuring module according to claim 2, characterized in that: The threaded ring (34) is screwedly connected in the threaded groove (32).

4. The electric heating constant temperature thermos cup with embedded temperature measuring module according to claim 1, characterized in that: The top of the cup cover (2) is screwedly connected with a protective shell (310) on the outside of the rotating knob (31).

5. The electric heating constant temperature thermos cup with embedded temperature measuring module according to claim 1, characterized in that: The bottom of the cup body (1) is provided with a silica gel anti-skid sleeve (45).

6. The electric heating constant-temperature thermos cup with embedded temperature measuring module according to claim 1, characterized in that: The top of the cup body (1) is connected with a sealing ring (46).