Silica gel constant temperature device

By combining the silicone support member and the graphene heating member, the heat resistance and high thermal conductivity of the silicone are used to solve the problem of unstable temperature in the water bath heating device, and the constant temperature heating effect of the liquid in the container is achieved, which improves the heating efficiency and the stability of the device.

CN223183374UActive Publication Date: 2025-08-05东莞市好印象实业有限公司
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Patent Information

Application Number
CN202422423135.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-05
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

When existing containers are used in water bath heating devices, the opening of the check valve causes liquid mixing, affecting the constant temperature of the brewing beverage, and is not suitable for containers with a balanced air pressure structure.

Method used

A silicone constant temperature device combining silicone support and graphene heating element is adopted to adjust the working state of the heating element by controlling the adjustment parts, and the constant temperature heating of the liquid in the container is achieved by using the heat resistance and high thermal conductivity of the silicone.

Benefits of technology

Keep the liquid temperature in the container constant, reduce heat inhomogeneity, improve heating efficiency and device stability, and adapt to a variety of power supply interfaces, which are highly practical.

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Abstract

The utility model relates to a silica gel constant temperature device which comprises a silica gel bearing part, a heating part and a control adjusting part, the silica gel bearing part is used for bearing a container, the heating part is fixedly connected with the silica gel bearing part, the heating part is used for heating the silica gel bearing part, the control adjusting part is arranged on the silica gel bearing part, and the silica gel bearing part is used for bearing the container. The control adjusting part is electrically connected with the heating part, the control adjusting part is used for adjusting the working state of the heating part, and the control adjusting part is externally connected with a power source.
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Description

Technical Field

[0001] The present application relates to the field of adhesive tape production, and in particular to a silicone constant temperature device. Background Art

[0002] As people's health awareness improves, more and more brewed drinks appear in the public eye. Most of these brewed drinks are brewed with warm water. Therefore, consumers need to first boil the drinking water using a water boiling device, and then start brewing the drinks after the drinking water cools to the required temperature.

[0003] In order to maintain the taste, it is usually recommended that consumers finish drinking the beverage within a certain period of time. However, it is usually difficult for consumers to finish drinking the beverage within a short period of time. During this process, the container holding the brewed beverage begins to dissipate heat from the brewed beverage, causing the temperature of the brewed beverage to drop rapidly. When the consumer drinks the brewed beverage again, the temperature of the brewed beverage is lowered, which has a certain impact on the user's drinking taste.

[0004] Therefore, in order to solve the above problems, there is a water bath heating device. When using it, the consumer sets the required temperature and places the container containing the brewed beverage in the water bath heating device. The heating component of the water bath heating device starts to heat the liquid, and the purpose of keeping the brewed beverage warm is achieved through heat transfer.

[0005] However, there is a container on the market with a balanced air pressure structure, in which a one-way valve is provided on the bottle body or the bottle cap. When the consumer drinks the brewed beverage in the container through the inlet tube, the one-way valve is in an open state, thereby allowing air outside the container to enter the container, so that the user can inhale the brewed beverage. The problem is that this type of container is not suitable for water bath heating devices, that is: when the temperature of the brewed beverage contained in the container changes, the air pressure inside the container decreases. At this time, in order to balance the air pressure inside and outside the container, the one-way valve will open, thereby allowing the liquid in the water bath heating device to enter the container, causing the liquid and the brewed beverage to mix. There is room for improvement. Utility Model Content

[0006] In order to facilitate constant temperature control of the liquid in the container, the present application provides a silica gel constant temperature device.

[0007] The present application provides a silicone thermostat that adopts the following technical solution:

[0008] A silicone constant temperature device includes a silicone support, a heating element and a control and adjustment element. The silicone support is used to support a container. The heating element is fixedly connected to the silicone support and is used to heat the silicone support. The control and adjustment element is arranged on the silicone support and is electrically connected to the heating element. The control and adjustment element is used to adjust the working state of the heating element. The control and adjustment element is externally connected to a power supply.

[0009] By adopting the above technical solution, since the silicone material has excellent heat resistance and heat conduction ability, the working state of the heating element is adjusted by using the control adjustment member, thereby realizing the temperature adjustment of the heating element. The heat emitted by the heating element is conducted to the silicone support member, and the silicone support member is used to conduct the heat to the container placed on the silicone support member, thereby achieving the purpose of heating the liquid in the container, and playing a positive guiding role in keeping the temperature of the liquid in the container at a constant state.

[0010] Preferably, the heating element is configured as a graphene heating element.

[0011] By adopting the above technical solution, the graphene material has an excellent high-efficiency conversion rate, which is beneficial to reducing energy loss in the process of converting electrical energy into thermal energy. At the same time, the graphene material has the advantage of high thermal conductivity, so that the heating element can generate heat evenly, so that the temperature of each part of the surface of the silicone support is roughly the same, reducing the probability of poor heating effect on the container due to uneven heating of the surface of the silicone support.

[0012] Preferably, the heating element is arranged inside the silicone supporting element.

[0013] By adopting the above technical solution, the heating element is set inside the silicone support, which is beneficial to improving the conduction efficiency of the heat emitted by the heating element to the silicone support. At the same time, during the production process of the silicone support, the heating element is already wrapped inside the silicone support, and there is no need to perform secondary assembly of the heating element, which is beneficial to improving the production efficiency of the silicone constant temperature device.

[0014] Preferably, an anti-slip layer is provided on the surface of the silicone support member facing away from the contact surface with the container.

[0015] By adopting the above technical solution, the anti-slip layer is helpful to improve the friction between the silicone thermostat and the placement surface, thereby improving the stability of the silicone thermostat when placed on the placement surface.

[0016] Preferably, the control and adjustment component is connected to an external power supply via a Type-C interface or a USB interface.

[0017] By adopting the above technical solution, the versatility is strong, the silicone thermostat can work normally without the need for additional voltage conversion devices or power supply interfaces, and the practicability is high.

[0018] Preferably, a mounting groove is provided on the silicone supporting member, and the control and adjustment member is arranged in the mounting groove.

[0019] By adopting the above technical solution, since an installation groove is provided on the silicone support member and the control adjustment member is arranged in the installation groove, the connection between the control adjustment member and the silicone support member is relatively flat, which plays a positive guiding role in improving the appearance quality of the silicone constant temperature device.

[0020] Preferably, a temperature sensor is provided on the silicone supporting member, and the temperature sensor is electrically connected to the control and adjustment member.

[0021] By adopting the above technical solution, the temperature of the container is detected by a temperature sensor, and the detection signal is sent to the control and adjustment component. The working state of the heating element is adjusted in real time by the control and adjustment component, thereby reducing the probability of temperature fluctuations in the liquid in the container due to the heat dissipation speed of the container being greater than the speed at which the heat is finally transferred to the container by the heating element.

[0022] Preferably, a base shell is provided outside the silicone supporting member, and the silicone supporting member is provided inside the base shell.

[0023] By adopting the above technical solution, the silicone support is fixed by the base shell, which is beneficial to improving the stability of the silicone constant temperature device when placed on the placement surface and reducing the shaking of the container when placed on the silicone support.

[0024] In summary, this application includes at least one of the following beneficial technical effects:

[0025] 1. The heat generated by the heating element is transferred to the silicone support, which then transfers the heat to the container placed on the silicone support, thereby heating the liquid in the container and playing a positive guiding role in keeping the temperature of the liquid in the container constant.

[0026] 2. The heating element is made of graphene material, which enables the heating element to heat evenly, so that the temperature of each part of the silicone support surface is roughly the same, reducing the probability of poor heating effect on the container due to uneven heating of the silicone support surface;

[0027] 3. Placing the heating element inside the silicone support is conducive to improving the conduction efficiency of the heat generated by the heating element to the silicone support. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1This is a schematic diagram of the overall structure of a silicone thermostat according to an embodiment of the present application.

[0029] Figure 2 yes Figure 1 A schematic diagram of the structure of a silicone thermostat with the silicone support hidden.

[0030] Figure 3 yes Figure 1 Schematic diagram of the structure of a silicone constant temperature device from another perspective.

[0031] Figure 4 This is an example diagram of the display component when the control and adjustment component in a silicone thermostatic device according to an embodiment of the present application is working.

[0032] Explanation of the accompanying drawings: 1. Silicone supporting part; 2. Heating part; 3. Control and adjustment part; 31. Temperature adjustment key; 32. Display part; 4. Anti-slip layer; 41. Raised ridge; 5. Mounting groove. DETAILED DESCRIPTION

[0033] The following is combined with Figure 1-4 This application is described in further detail.

[0034] The present application discloses a silicone thermostat. Figure 1 and Figure 2 A silicone constant temperature device includes a silicone supporting part 1, a heating part 2 and a control and adjustment part 3. The silicone supporting part 1 is used to support a container. The heating part 2 is fixedly connected to the silicone supporting part 1. The heating part 2 is used to heat the silicone supporting part 1. The control and adjustment part 3 is arranged on the silicone supporting part 1. The control and adjustment part 3 is electrically connected to the heating part 2. The control and adjustment part 3 is used to adjust the working state of the heating part 2. The control and adjustment part 3 is connected to an external power supply.

[0035] Specifically, the silicone support 1 is made of silicone material, which has excellent corrosion resistance and softness. When the container is placed on the surface of the silicone support 1, the container uses its own gravity to cause the silicone support 1 to undergo a recoverable deformation, which is beneficial to improving the tight fit between the container and the silicone support 1, thereby increasing the heating area of the container, and playing a positive guiding role in improving the efficiency of the heating element 2 to indirectly heat the container through the silicone support 1.

[0036] Furthermore, the silicone material has excellent temperature resistance and remains stable within the range of -40°C (International Unit, degrees Celsius) to 230°C, reducing the risk of damage or irreversible deformation of the silicone support member 1 when the heating element 2 heats the silicone support member 1.

[0037] Correspondingly, the heating element 2 is set to be a graphene heating element. The graphene material has an excellent high-efficiency conversion rate, which is beneficial to reducing energy loss in the process of converting electrical energy into thermal energy. At the same time, the graphene material has the advantage of high thermal conductivity, so that the heating element 2 can generate heat evenly, so that the temperature at various points on the surface of the silicone support member 1 is roughly the same, reducing the probability of poor heating effect on the container due to uneven heating of the surface of the silicone support member 1.

[0038] Meanwhile, in other embodiments, the heating element 2 may be a heating wire, but the key point is that the maximum threshold value of the heating wire allowed to rise in temperature is not allowed to exceed the temperature resistance threshold value of the silicone support element 1 .

[0039] On the other hand, in this embodiment, preferably, the heating element 2 is arranged inside the silicone support member 1. Arranging the heating element 2 inside the silicone support member 1 is beneficial to improving the conduction efficiency of the heat emitted by the heating element 2 to the silicone support member 1. At the same time, during the production process of the silicone support member 1, the heating element 2 is already wrapped inside the silicone support member 1, and there is no need to perform secondary assembly of the heating element 2, which is beneficial to improving the production efficiency of the silicone constant temperature device.

[0040] In other embodiments, the installation position and shape of the heating element 2 can be changed according to the specific shape and requirements of the silicone supporting layer.

[0041] Reference Figure 3 and Figure 4 An anti-slip layer 4 is provided on the surface of the silicone support member 1 that is away from the surface in contact with the container.

[0042] Specifically, the anti-slip layer 4 is integrally formed with the silicone support 1 and includes a plurality of ridges 41 formed by protrusions on the surface of the silicone support 1 facing away from the contact surface with the container. The anti-slip layer 4 helps increase the friction between the silicone thermostat and the placement surface, thereby improving the stability of the silicone thermostat when placed on the placement surface. In other embodiments, the anti-slip layer 4 can also be configured as an anti-slip mat.

[0043] Furthermore, the silicone support member 1 is provided with a mounting groove 5, into which the control and adjustment member 3 is disposed. The mounting groove 5 is formed by a recessed sidewall of the silicone support member 1 along the thickness direction, extending toward the geometric center of the silicone support member 1. The control and adjustment member 3 is then installed within the mounting groove 5, thereby ensuring a relatively smooth connection between the control and adjustment member 3 and the silicone support member 1, positively guiding the appearance and quality of the silicone thermostat.

[0044] Correspondingly, the control and adjustment component 3 is connected to an external power supply via a Type-C interface or a USB interface. This allows the silicone thermostat to be compatible with a variety of power adapters (such as mobile phone chargers, computer communication interfaces, etc.), and can operate normally using low-voltage electricity (5V to 9V). This has strong versatility and does not require additional voltage conversion devices or power interfaces to ensure the silicone thermostat operates normally, making it highly practical.

[0045] First, it should be noted that the control and adjustment member 3 includes a temperature adjustment key 31, a display member 32, and a controller (composed of a circuit substrate and its associated electronic components, which are existing components and whose specific composition and operating principle are not described in detail here). In this embodiment, the temperature adjustment key 31 is a touch-sensitive adjustment key, and the display member 32 is configured as an electronic display screen. The temperature adjustment key 31 is used to adjust the heating power of the heating element 2, and the display member 32 is used to display the maximum temperature that the heating element 2 can currently heat the container.

[0046] At the same time, a temperature sensor is provided on the silicone support 1, and the temperature sensor is electrically connected to the control and adjustment member 3. The temperature sensor can be a temperature probe for detecting temperature, and the temperature of the container placed on the silicone support 1 is detected in real time by the temperature sensor, and the detection signal is sent to the control and adjustment member 3.

[0047] For example, when the consumer sets the heating temperature of the heating element 2 to 40°C through the temperature adjustment button 31, but the actual temperature of the container detected by the temperature sensor is lower than 40°C, the control adjustment element 3 will actively adjust the heating power of the heating element 2 so that the liquid in the container can quickly heat up to 40°C.

[0048] When the temperature sensor detects that the liquid temperature in the container meets the set value, the control adjustment component 3 will actively reduce the heating power of the heating component 2, so that the heating power of the heating component 2 is in an automatic adjustment state, which plays a positive guiding role in improving the constant temperature effect of the liquid in the container.

[0049] In another embodiment, a base shell is provided on the outside of the silicone support member 1, and the silicone support member 1 is arranged inside the base shell. The base shell protects the silicone support member 1, which is beneficial to improving the stability of the silicone constant temperature device when it is placed on the placement surface and reducing the shaking of the container when it is placed on the silicone support member 1.

[0050] The implementation principle of a silicone constant temperature device in an embodiment of the present application is: since the silicone material has excellent heat resistance and heat conduction ability, the control adjustment component 3 is used to adjust the working state of the heating component 2, thereby realizing the temperature adjustment of the heating component 2, and the heat emitted by the heating component 2 is conducted to the silicone support component 1, and the silicone support component 1 is used to conduct the heat to the container placed on the silicone support component 1, thereby achieving the purpose of heating the liquid in the container, and playing a positive guiding role in keeping the temperature of the liquid in the container at a constant state.

[0051] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A silica gel constant temperature device, characterized in that: The invention comprises a silica gel supporting part (1), a heating part (2) and a control and adjustment part (3); the silica gel supporting part (1) is used to support a container; the heating part (2) is fixedly connected to the silica gel supporting part (1); the heating part (2) is used to heat the silica gel supporting part (1); the control and adjustment part (3) is arranged on the silica gel supporting part (1); the control and adjustment part (3) is electrically connected to the heating part (2); the control and adjustment part (3) is used to adjust the working state of the heating part (2); and the control and adjustment part (3) is externally connected to a power supply.

2. A silica gel constant temperature device according to claim 1, characterized in that: The heating element (2) is configured as a graphene heating element.

3. A silica gel constant temperature device according to claim 2, characterized in that: The heating element (2) is arranged inside the silica gel supporting element (1).

4. The silica gel constant temperature device according to claim 1, characterized in that: An anti-slip layer (4) is provided on the surface of the silica gel supporting member (1) facing away from the contact surface with the container.

5. The silica gel constant temperature device according to claim 1, characterized in that: The control and adjustment component (3) is connected to an external power supply via a Type-C interface or a USB interface.

6. The silica gel constant temperature device according to claim 1, characterized in that: The silica gel supporting member (1) is provided with a mounting groove (5), and the control adjustment member (3) is arranged in the mounting groove (5).

7. The silica gel constant temperature device according to claim 1, characterized in that: A base shell is provided on the outside of the silica gel supporting member (1), and the silica gel supporting member (1) is arranged in the base shell.

8. The silica gel constant temperature device according to claim 1, characterized in that: The silica gel supporting member (1) is provided with a temperature sensor, and the temperature sensor is electrically connected to the control and adjustment member (3).