Tea pot heating base with good heat insulation effect

By combining the connection mechanism and kit between the support column and the base groove, the problems of poor heat insulation and unstable fixation of the teapot heating base are solved, achieving better heat insulation performance and stability, and reducing the product defect rate.

CN223860599UActive Publication Date: 2026-02-03ZHONGSHAN JIANGBAO ELECTRIC CO LTD
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Patent Information

Application Number
CN202423319317.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-03
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional teapot heating bases have poor insulation and poor fixation. The choice of heat-resistant pad material and thickness limits the improvement of insulation performance, and they are prone to displacement or falling off during installation.

Method used

The system employs a connection mechanism between the support column and the base groove, combined with the heat insulation mechanisms of the first and second components. The heating plate is fixed by the insertion of the support column and the base groove, and the second component is used to increase friction to prevent the first component from detaching, thus achieving a double-layer heat insulation effect.

Benefits of technology

This improved the heat insulation and stability of the teapot heating base, reduced the product defect rate, and enhanced the stability and heat insulation performance during the assembly process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tea pot heating base with a good heat insulation effect, which comprises a base main body, a heating mechanism arranged on the base main body, a connecting mechanism and a heat insulation mechanism, the connecting mechanism is connected and matched with a foundation trench through a supporting column, and a heating disc of the heating mechanism is fixedly connected to the bottom of a heating area of the base main body. The heat insulation mechanism adopts cooperation of a first sleeve piece and a second sleeve piece, the first sleeve piece is mainly used for separating contact between the supporting column and the foundation trench and achieving effective heat insulation between the base body and the heating disc, and the second sleeve piece serves as a structure further arranged between the supporting column and the first sleeve piece and has the function of preventing the first sleeve piece from being accidentally disengaged. The second external member has the effect of increasing the friction force needed by the first external member to be separated from the supporting column, so that the first external member is not prone to being separated from the supporting column in the assembling process of the base body, and meanwhile the first external member and the second external member have the double-layer heat insulation effect between the supporting column and the foundation trench.
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Description

TECHNICAL FIELD

[0001] The utility model relates to domestic appliance technical field, especially a kind of scented tea pot heating base with good heat insulation effect. BACKGROUND

[0002] With the diversification of household appliances, as an intelligent appliance matched with scented tea pot, scented tea pot heating base has been widely applied in the field of household appliances. The existing scented tea pot heating base is usually provided with a recessed heating area for placing scented tea pot, and a heating disc is built-in the heating area. The heating disc directly contacts with the bottom of scented tea pot to achieve efficient and uniform heating effect. However, the support structure between the shell of traditional scented tea pot heating base and the heating disc usually does not have effective heat insulation structure, or a layer of heat-resistant pad for heat insulation is padded between the shell and the support structure of the heating disc, which limits the heat insulation effect of the heating base on the heating disc. Specifically, on the one hand, the material selection and thickness of the heat-resistant pad limit the improvement space of its heat insulation performance; on the other hand, the heat-resistant pad is prone to displacement or falling during installation due to improper fixation, causing high product failure rate. Therefore, there is an urgent need for a scented tea pot heating base with a heat insulation structure having better heat insulation effect and fixing effect. SUMMARY

[0003] The utility model aims at providing a kind of scented tea pot heating base with good heat insulation effect, to solve the problem of poor heat insulation effect and poor fixing effect of the heat insulation structure of traditional scented tea pot heating base.

[0004] The utility model provides technical scheme as follows: a kind of scented tea pot heating base with good heat insulation effect, including base body, heating mechanism, connecting mechanism and heat insulation mechanism on the base body, the base body is provided with the heating area of recessed arrangement, the heating mechanism includes the heating disc in the heating area, the connecting mechanism includes multiple pillars and multiple base grooves, multiple pillars and multiple base grooves are correspondingly arranged between the lower side of the heating disc and the bottom of the heating area, the pillar is inserted into the base groove to make the heating disc and the bottom of the heating area fixedly connected, the heat insulation mechanism includes the first set and second set between the pillar and the base groove, the first set is inserted into the pillar close to one end of the pillar, the first set is inserted into the base groove away from one end of the pillar, to separate the contact of the pillar and the base groove, the second set is arranged between the pillar and the first set, to radially extrude the first set outward.

[0005] A kind of scented tea pot heating base with good heat insulation effect as described above, the second set is inserted into the pillar, and the first set is inserted into the second set.

[0006] As described above, in a teapot heating base with good heat insulation, the depth of the second component fitted onto the support column is greater than the depth of the first component fitted onto the second component.

[0007] As described above, in a teapot heating base with good heat insulation, the hardness of the first component is greater than that of the second component.

[0008] As described above, the second component of the teapot heating base with good heat insulation is made of elastic material.

[0009] As described above, a teapot heating base with good heat insulation is provided, wherein the second component is made of silicone.

[0010] As described above, a teapot heating base with good heat insulation has a support column located below the heating plate, a base groove located at the bottom of the heating zone, a screw hole along the axial direction of the support column, a first clearance hole along the axial direction of the first component, a second clearance hole along the axial direction of the second component, a slot along the axial direction of the base groove, and a screw hole connected and fixed to the heating zone in sequence through the slot hole, the first clearance hole, the second clearance hole, and the screw hole.

[0011] As described above, a teapot heating base with good heat insulation effect includes a heat insulation mechanism further comprising a gasket disposed on the side of the base groove away from the support column. The gasket is used to abut against the head of the screw to separate the contact between the head of the screw and the base body.

[0012] As described above, a teapot heating base with good heat insulation has three support pillars arranged in a circular pattern around the heating plate on its lower side, and three base grooves arranged in a circular pattern around the heating zone at the bottom.

[0013] Compared with the prior art, the present invention has the following advantages:

[0014] This utility model relates to a teapot heating base, which includes a heating mechanism and a connecting mechanism on the base body, and an additional heat insulation mechanism. The connecting mechanism uses a support column and a base groove to fix the heating plate of the heating mechanism to the bottom of the heating area of ​​the base body. The heat insulation mechanism uses a first kit and a second kit. The first kit is mainly used to separate the contact between the support column and the base groove, achieving effective heat insulation between the base body and the heating plate. The second kit, as a further structure between the support column and the first kit, has the function of preventing the first kit from accidentally detaching. Specifically, the second kit can be fitted at the end of the support column to increase the diameter of that end. When the first kit is fitted at that end of the support column, it will first be fitted onto the second kit and subjected to radial outward compression, increasing the friction required for the first kit to detach from the support column. This makes it less likely for the first kit to detach from the support column during the assembly of the base body. At the same time, the first kit and the second kit provide a double-layer heat insulation effect between the support column and the base groove. Attached Figure Description

[0015] Figure 1 This is a three-dimensional sectional view of the heating base of this utility model.

[0016] Figure 2 for Figure 1 Enlarged view of part A in the middle.

[0017] Figure 3 This is a schematic diagram showing the connection relationship between the heat insulation mechanism and the heating plate of the heating base of this utility model.

[0018] Figure 4 This is a three-dimensional schematic diagram of the heating base of this utility model.

[0019] Explanation of reference numerals in the attached drawings: 1. Base body; 2. Heating mechanism; 3. Connecting mechanism; 4. Heat insulation mechanism; 11. Heating zone; 21. Heating plate; 31. Support column; 32. Base groove; 41. First assembly; 42. Second assembly; 43. Gasket; 311. Screw hole; 321. Slot; 411. First clearance hole; 421. Second clearance hole. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present utility model, and not all of them. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Example 1: Please refer to the appendix Figure 1 To be continued Figure 4This embodiment provides a teapot heating base with good heat insulation, including a base body 1, a heating mechanism 2, a connecting mechanism 3, and a heat insulation mechanism 4 disposed on the base body 1. The base body 1 is provided with a recessed heating area 11. The heating mechanism 2 includes a heating plate 21 disposed in the heating area 11. The connecting mechanism 3 includes multiple support columns 31 and multiple base grooves 32. The multiple support columns 31 and multiple base grooves 32 are correspondingly disposed between the lower side of the heating plate 21 and the bottom of the heating area 11. The support columns 31 are inserted into the base grooves 32 to fix the heating plate 21 to the bottom of the heating area 11. The heat insulation mechanism 4 includes a first kit 41 and a second kit 42 disposed between the support columns 31 and the base grooves 32. The end of the first kit 41 near the support column 31 is sleeved on the support column 31, and the end of the first kit 41 away from the support column 31 is inserted into the base groove 32 to separate the contact between the support column 31 and the base groove 32. The second kit 42 is disposed between the support column 31 and the first kit 41 to press the first kit 41 radially outward. In this embodiment, the teapot heating base has a heating mechanism 2 and a connecting mechanism 3 on the base body 1, and an additional heat insulation mechanism 4. The connecting mechanism 3 uses a support column 31 and a base groove 32 to fix the heating plate 21 of the heating mechanism 2 to the bottom of the heating area 11 of the base body 1. The heat insulation mechanism 4 uses a first kit 41 and a second kit 42. The first kit 41 is mainly used to separate the contact between the support column 31 and the base groove 32, so as to achieve effective heat insulation between the base body 1 and the heating plate 21. The second kit 42 is a further component between the support column 31 and the first kit 42. The structure between 1 has the function of preventing the first kit 41 from accidentally detaching. Specifically, the second kit 42 can increase the diameter of the end of the support column 31 by being sleeved on the end of the support column 31. When the first kit 41 is sleeved on the end of the support column 31, it will first be sleeved on the second kit 42 and be subjected to radial outward compression, which increases the friction required for the first kit 41 to detach from the support column 31. This makes it less likely for the first kit 41 to detach from the support column 31 during the assembly of the base body 1. At the same time, the first kit 41 and the second kit 42 have a double-layer heat insulation effect between the support column 31 and the base groove 32.

[0022] The second kit 42 is fitted onto the support column 31, and the first kit 41 is fitted onto the second kit 42. Preferably, the depth to which the second kit 42 is fitted onto the support column 31 is greater than the depth to which the first kit 41 is fitted onto the second kit 42, so that the first kit 41 is continuously fitted onto the second kit 42, which has a diameter greater than the diameter of the support column.

[0023] Preferably, the hardness of the first component 41 is greater than that of the second component 42, wherein the second component 42 can be made of a 94V0 grade heat-resistant material.

[0024] Preferably, the second kit 42 is made of an elastic material. In particular, the second kit 42 is made of silicone, which has a certain degree of elasticity, provides good fit to the support column 31, and provides a certain degree of elastic compression to the first kit 41, making the first kit 41 more securely fitted onto the support column 31.

[0025] The support column 31 is located on the lower side of the heating plate 21, and the base groove 32 is located at the bottom of the heating zone 11. The support column 31 has a screw hole 311 along the axial direction. The first component 41 has a first clearance hole 411 along the axial direction. The second component 42 has a second clearance hole 421 along the axial direction. The base groove 32 has a slot 321 along the axial direction. The heating plate 21 is fixed to the heating zone 11 by screws connected to the screw hole 311 and the slot 321, the first clearance hole 411, the second clearance hole 421 and the screw hole 311 in sequence.

[0026] Preferably, the heat insulation mechanism 4 further includes a gasket 43 disposed on the side of the base groove 32 away from the support column 31. The gasket 43 is used to abut against the head of the screw to separate the contact between the head of the screw and the base body 1. The gasket 43 has a certain isolation effect on the heat conducted from the support column 31 to the screw.

[0027] Preferably, the heating plate 21 has three pillars 31 arranged in a circular pattern around the axis on its lower side, and the heating zone 11 has three base grooves 32 arranged in a circular pattern around the axis at its bottom, which is the optimal structural choice for saving costs.

[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A heating base for a teapot with good heat insulation, characterized in that: The device includes a base body (1), a heating mechanism (2) disposed on the base body (1), a connecting mechanism (3), and a heat insulation mechanism (4). The base body (1) has a recessed heating area (11). The heating mechanism (2) includes a heating plate (21) disposed on the heating area (11). The connecting mechanism (3) includes multiple support columns (31) and multiple base grooves (32). The multiple support columns (31) and the multiple base grooves (32) are correspondingly disposed between the lower side of the heating plate (21) and the bottom of the heating area (11). The support columns (31) are inserted into the base grooves (32) to allow the heating plate (21) to... The heat insulation mechanism (4) is fixedly connected to the bottom of the heating zone (11). It includes a first kit (41) and a second kit (42) disposed between the support column (31) and the base groove (32). The first kit (41) is sleeved on the support column (31) at one end near the support column (31) and inserted into the base groove (32) at the other end away from the support column (31) to separate the contact between the support column (31) and the base groove (32). The second kit (42) is disposed between the support column (31) and the first kit (41) to press the first kit (41) radially outward.

2. The heating base for a teapot with good heat insulation as described in claim 1, characterized in that: The second kit (42) is fitted onto the support (31), and the first kit (41) is fitted onto the second kit (42).

3. The heating base for a teapot with good heat insulation as described in claim 2, characterized in that: The depth to which the second kit (42) is fitted onto the support (31) is greater than the depth to which the first kit (41) is fitted onto the second kit (42).

4. The heating base for a teapot with good heat insulation as described in claim 2, characterized in that: The first kit (41) has a higher hardness than the second kit (42).

5. The heating base for a teapot with good heat insulation as described in claim 4, characterized in that: The second kit (42) is made of elastic material.

6. The heating base for a teapot with good heat insulation as described in claim 5, characterized in that: The second kit (42) is made of silicone.

7. The heating base for a teapot with good heat insulation as described in claim 1, characterized in that: The support column (31) is located on the lower side of the heating plate (21), the base groove (32) is located at the bottom of the heating zone (11), the support column (31) has a screw hole (311) along the axial direction, the first kit (41) has a first clearance hole (411) along the axial direction, the second kit (42) has a second clearance hole (421) along the axial direction, the base groove (32) has a slot (321) along the axial direction, and the heating plate (21) is fixed to the heating zone (11) by screws connected to the screw hole (311) in sequence through the slot (321), the first clearance hole (411), the second clearance hole (421) and the screw hole (311).

8. The heating base for a teapot with good heat insulation as described in claim 7, characterized in that: The heat insulation mechanism (4) further includes a gasket (43) disposed on the side of the base groove (32) away from the support column (31), the gasket (43) being used to abut the head of the screw to separate the contact between the head of the screw and the base body (1).

9. A heating base for a teapot with good heat insulation as described in claim 7, characterized in that: The heating plate (21) has three support columns (31) arranged in a circular pattern around the axis on its lower side, and the heating zone (11) has three base grooves (32) arranged in a circular pattern around the axis at its bottom.