Liquid heating container

By designing a pressure cap with supporting ribs in the liquid heating container, the problem of floating medicinal materials was solved, enabling the medicinal materials to be fully soaked and safely poured out, thus improving the efficiency and safety of decoction.

CN224156043UActive Publication Date: 2026-04-24ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
Filing Date
2024-12-31
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing liquid heating containers tend to cause medicinal herbs to float on the surface of the water during decoction, resulting in long cooking times, wasted energy, and inconvenience.

Method used

A liquid heating container was designed, comprising a container body and a pressure cap. The pressure cap is provided with support ribs that extend along the side wall of the container body to prevent the pressure cap from tipping over and to ensure that the medicinal materials are fully immersed in water.

Benefits of technology

It shortens the decoction time, saves energy, improves the efficiency and safety of decoction, prevents the leakage of medicinal materials, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224156043U_ABST
    Figure CN224156043U_ABST
Patent Text Reader

Abstract

The embodiment of the utility model provides a liquid heating container. The liquid heating container comprises a container body and a heating device, the material pressing cover is placed in the container body, a material containing space used for containing materials is defined between the material pressing cover and the bottom wall of the container body, and supporting ribs are arranged on the periphery of the material pressing cover and extend along the side wall of the container body. When the liquid heating container is used for decocting medicine, the medicinal materials can be well soaked in water, the medicine decocting time can be shortened, the medicine decocting efficiency can be improved, and energy can be saved.
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Description

Technical Field

[0001] This utility model relates to the field of cooking equipment, specifically to a liquid heating container. Background Technology

[0002] Existing liquid heating containers have a relatively simple structure. When using liquid heating containers to decoct medicine, the herbs are usually simply placed in the container and water is added for boiling. However, during the boiling process, the herbs often float to the surface and require a long soaking and boiling time to become moist, resulting in a long boiling time and wasted energy. Utility Model Content

[0003] Therefore, the purpose of this utility model is to provide a liquid heating container that allows the medicinal materials to be fully soaked in water when decocting medicine, thereby shortening the decoction time and saving energy.

[0004] One embodiment of the present invention provides a liquid heating container, which includes: a container body; a pressure cap placed in the container body, wherein the pressure cap and the bottom wall of the container body form a material receiving space for receiving materials, and the outer periphery of the pressure cap is provided with supporting ribs that extend along the side wall of the container body.

[0005] The liquid heating container provided in this embodiment includes a container body and a pressure cap. When using the liquid heating container for decoction, the medicinal materials can be placed in the container body first, and the pressure cap placed above the medicinal materials inside the container body. Then, water is poured into the container body until the water covers the pressure cap. In this way, even if the medicinal materials float, they will not float on the surface of the water due to the pressure cap, but will be well soaked in the water and fully moistened. This can greatly shorten the decoction time, improve the decoction efficiency, and save energy. Moreover, a support rib extending along the side wall of the container body is provided on the outer periphery of the pressure cap. When the container body is filled with liquid medicine, the pressure cap may tend to flip. At this time, the support rib can quickly support the inner wall of the container body, which can effectively prevent the pressure cap from flipping over significantly and prevent the pressure cap from detaching from the container body when the liquid medicine is poured in, thus improving the safety of product use. In addition, since the pressure cap does not flip over significantly, it can also prevent the medicinal materials from easily flowing out of the container body and into a bowl, improving the user experience. In addition, supporting ribs are set on the outer periphery of the pressure cover to prevent the pressure cover from tipping over. The structure is simple and does not require any adjustment to the structure of the container body, making it easy to process.

[0006] In some embodiments, the support rib extends downward and / or upward from the edge of the pressure cap. When the pressure cap is placed approximately horizontally inside the container body, the support rib can better fit against the side wall of the container body, thereby facilitating quick contact with the side wall of the container body when the pressure cap is flipped, and promptly preventing the pressure cap from flipping.

[0007] In some embodiments, the support ribs are ring-shaped and distributed circumferentially around the pressure cap. This ensures that the support ribs can quickly support the container's sidewalls regardless of the container's tilt, effectively preventing the pressure cap from tipping over. Furthermore, if the pressure cap is placed inside the container using the support ribs, the ring-shaped ribs also ensure the stability of the pressure cap.

[0008] In some embodiments, the support ribs are distributed circumferentially around the pressure plate. Compared to a continuous circumferential distribution of support ribs, this reduces material usage and saves costs.

[0009] In some embodiments, on the radial cross-section of the pressure cap, the length of the line connecting the highest point of the pressure cap at the first end and the lowest point of the pressure cap at the second end is greater than the target inner diameter, which is the inner diameter of the container at the pre-placed position of the pressure cap within the container. The first end and the second end of the pressure cap are radially opposite ends. This ensures that the pressure cap will not tip over significantly when the container is tipped with liquid medicine.

[0010] In some embodiments, the pressure cap is placed on the side or bottom wall of the container. This way, when the medicinal materials have already been added to the container, the pressure cap will not be placed directly on the medicinal materials, but rather on the side or bottom wall of the container, supporting the material-containing space. This prevents the pressure cap from directly pressing on the medicinal materials and causing them to burn during the decoction process.

[0011] In some embodiments, the support ribs extend at least partially downward from the edge of the pressure cap, and the pressure cap is supported on the side wall or bottom wall of the container body by the support ribs.

[0012] In these embodiments, the support rib extends downward from at least part of the edge of the pressure cover, and the pressure cover is supported on the side wall or bottom wall of the container body by the support rib. The support rib can not only prevent the pressure cover from flipping over, but also support the material holding space. Especially when the support rib is supported on the bottom wall of the container body, the support rib has multiple uses and there is no need to set up additional support legs to support the material holding space, which can simplify the structure and save costs.

[0013] In some embodiments, the container body includes a first container segment and a second container segment distributed vertically, the inner diameter of the first container segment is larger than the inner diameter of the second container segment, and the pressure cap is located inside the second container segment.

[0014] To allow the pressure cap to be easily inserted into the container body, the diameter of the pressure cap must be smaller than the inner diameter of the container body. However, to restrict the movement of the pressure cap within the container body and prevent it from tipping over when the container body is tilted to pour medicine, the gap between the pressure cap and the container body must be limited. Therefore, in these embodiments, the container body is made wider at the top and narrower at the bottom, with the pressure cap confined to the lower part of the narrower container body. On the one hand, during the process of inserting the pressure cap into the container body, it first passes through the wider first container section, making insertion easier. On the other hand, the pressure cap is finally placed in the second container section, where the gap between the pressure cap and the second container section is smaller, facilitating the restriction of the pressure cap's movement and tipping.

[0015] In some embodiments, an annular connecting section is provided between the first container segment and the second container segment. The annular connecting section extends horizontally or is funnel-shaped. If the annular connecting section extends horizontally, it helps to maximize the volume of the container while keeping the height of the container constant. If the annular connecting section is funnel-shaped, it allows for a smoother transition between the first and second connecting sections, avoiding cleaning dead zones. Furthermore, the annular connecting section can guide the pressure cap to be aligned with the second connecting section during insertion, facilitating the quick insertion of the pressure cap into the second connecting section.

[0016] In some embodiments, the pressure cap is provided with filter holes. This allows the pressure cap to also filter the medicinal materials, preventing them from entering the bowl with the medicinal liquid and improving the user experience.

[0017] In some embodiments, the pressure cover is provided with a handle. This allows the user to easily hold the handle and remove or place the pressure cover.

[0018] In some embodiments, the liquid heating container is a decoction pot. Of course, the liquid heating container includes, but is not limited to, decoctions; it can also be used to brew tea or as a health-preserving pot. Furthermore, if the floating of materials is not a concern, a pressure cap may not be necessary; users can use it as needed.

[0019] Other aspects and / or advantages of the present invention will be set forth in part in the description which follows, and in part will be clear from the description or may be learned by practice of the present invention. Attached Figure Description

[0020] The above and other objects and features of this utility model will become clearer from the following description of embodiments in conjunction with the accompanying drawings, in which:

[0021] Figure 1 A longitudinal cross-sectional schematic view of a liquid heating container according to the first embodiment of this application is shown;

[0022] Figure 2Another longitudinal cross-sectional schematic view of the liquid heating container of the first embodiment of this application is shown;

[0023] Figure 3 This invention provides a schematic longitudinal cross-sectional view of a liquid heating container according to the first embodiment of the present application when it is filled with liquid.

[0024] Figure 4 A schematic diagram of the material pressing cover and supporting rib of the first embodiment of this application is shown;

[0025] Figure 5 A partial longitudinal sectional view of a liquid heating container according to the first embodiment of this application is shown;

[0026] Figure 6 A longitudinal cross-sectional schematic view of a liquid heating container according to a second embodiment of this application is shown;

[0027] Figure 7 A longitudinal sectional view of the container body and the pressure cap according to the third embodiment of this application is shown;

[0028] Figure 8 A longitudinal sectional view of the container body and pressure cap of the fourth embodiment of this application is shown.

[0029] Figures 1 to 8 Explanation of icon numbers:

[0030] 10 Container body; 110 First container section; 111 Stepped surface; 112 Spout filter port; 120 Second container section; 130 Annular connecting section; 140 Handle; 150 Spout; 20 Pressing cover; 210 Support rib; 220 Filter hole; 230 Handle; 30 Material holding space; 40 Container lid; 410 Outer lid; 420 Inner lid; 430 Insulation cavity. Detailed Implementation

[0031] The following detailed embodiments are provided to aid the reader in gaining a comprehensive understanding of the methods, apparatus, and / or systems described herein. However, various changes, modifications, and equivalents of the methods, apparatus, and / or systems described herein will become apparent upon understanding this disclosure. For example, the order of operations described herein is merely illustrative and is not limited to those orders set forth herein, but may be changed as will become clear upon understanding this disclosure, except for operations that must occur in a specific order. Furthermore, for clarity and conciseness, descriptions of features known in the art may be omitted.

[0032] The features described herein may be implemented in different forms and should not be construed as limited to the examples described herein. Rather, the examples described herein are provided only to illustrate some of the many feasible ways of implementing the methods, apparatus, and / or systems described herein, which will become clear upon understanding the disclosure of this application.

[0033] As used herein, the term “and / or” includes any one of the associated listed items and any combination of any two or more.

[0034] Although terms such as “first,” “second,” and “third” may be used herein to describe various components, assemblies, regions, layers, or parts, these components, assemblies, regions, layers, or parts should not be limited by these terms. Rather, these terms are used only to distinguish one component, assembly, region, layer, or part from another. Thus, without departing from the teaching of the examples described herein, the first component, first assembly, first region, first layer, or first part referred to as the first component, first assembly, first region, first layer, or first part may also be referred to as the second component, second assembly, second region, second layer, or second part.

[0035] In the specification, when an element such as a layer, region, or substrate is described as being "on" another element, "connected to," or "bonded to" another element, the element may be directly "on" another element, directly "connected to," or "bonded to" the other element, or one or more other elements may be present in between. Conversely, when an element is described as being "directly on" another element, "directly connected to," or "directly bonded to" another element, no other elements may be present in between.

[0036] The terminology used herein is for the purpose of describing various examples only and is not intended to limit disclosure. Unless the context clearly indicates otherwise, the singular form is intended to include the plural form as well. The terms “comprising,” “including,” and “having” indicate the presence of the described features, quantities, operations, components, elements, and / or combinations thereof, but do not preclude the presence or addition of one or more other features, quantities, operations, components, elements, and / or combinations thereof. The term “a plurality” represents any quantity of two or more.

[0037] The directional terms “above,” “below,” “top,” and “bottom” used in this application, unless otherwise specified, are based on the orientation of the product when it is in normal use.

[0038] Unless otherwise defined, all terms used herein, including technical and scientific terms, shall have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains after understanding the invention. Unless expressly defined herein, terms such as those defined in a general dictionary shall be interpreted as having a meaning consistent with their meaning in the context of the relevant field and in this invention, and shall not be interpreted in an idealized or overly formalistic manner.

[0039] The following will combine Figures 1 to 8 This invention introduces a liquid heating container provided by an embodiment of the present invention.

[0040] like Figure 1 , Figure 2 , Figures 6 to 8 As shown, one embodiment of the present invention provides a liquid heating container, which includes: a container body 10; a pressing cover 20 placed inside the container body 10, the pressing cover 20 and the bottom wall of the container body 10 forming a material holding space 30 for holding materials, and a supporting rib 210 provided on the outer periphery of the pressing cover 20, the supporting rib 210 extending along the side wall of the container body 10.

[0041] The liquid heating container provided in this embodiment includes a container body 10 and a pressure cap 20. When using the liquid heating container for decoction, the medicinal materials can be placed inside the container body 10 first, and the pressure cap 20 can be placed above the medicinal materials inside the container body 10. Then, water is poured into the container body 10 so that the water covers the pressure cap 20. In this way, even if the medicinal materials float, they will not float on the water surface due to the obstruction of the pressure cap 20, but will be well soaked in the water and fully moistened. This can greatly shorten the decoction time, improve the decoction efficiency, and save energy. Moreover, a support rib 210 extending along the side wall of the container body 10 is provided on the outer periphery of the pressure cap 20. The support rib 210 can support the inner wall of the container body 10 when the container body 10 is tilted, so as to prevent the pressure cap 20 from tipping over. Specifically, when the liquid medicine is poured into the container body 10, the pressure cap 20 tends to flip over. At this time, the support rib 210 can quickly support it on the inner wall of the container body 10, effectively preventing the pressure cap 20 from flipping over significantly and avoiding it detaching from the container body 10 when the liquid medicine is poured in, thus improving product safety. Moreover, since the pressure cap 20 does not flip over significantly, it can also prevent the medicinal materials from easily flowing out of the container body 10 and into the bowl, improving the user experience. In addition, the support rib 210 on the outer periphery of the pressure cap 20 to prevent it from flipping over is simple in structure and does not require any adjustment to the structure of the container body 10, making it easy to manufacture.

[0042] It should be noted that the support rib 210 extends along the side wall of the container body 10, and can extend vertically or obliquely. The support rib 210 can be parallel to the side wall of the container body 10 or not parallel to the side wall of the container body 10. As long as the support rib 210 can quickly abut against the side wall of the container body 10 during the initial stage of the pressure cover 20's rotation, preventing the pressure cover 20 from continuing to rotate, it is acceptable. The specific shape of the support rib 210 can be varied, all of which conform to the technical concept of this application.

[0043] Furthermore, in some embodiments, the support rib 210 extends downward and / or upward from the edge of the pressure cap 20. When the pressure cap 20 is placed approximately horizontally inside the container body 10, the support rib 210 can better fit against the side wall of the container body 10, thereby facilitating quick contact with the side wall of the container body 10 when the pressure cap 20 is flipped, and timely preventing the pressure cap 20 from flipping.

[0044] like Figures 1 to 3 As shown, the support rib 210 extends downward from the edge of the pressure cover 20. The support rib 210 can be similar to a flanged structure, which is simple in structure and easy to process. Moreover, the downward extension of the support rib 210 can lower the center of gravity, thereby reducing the probability of the pressure cover 20 flipping over.

[0045] like Figure 6 As shown, the support rib 210 extends downward and upward from the edge of the pressure cover 20. The support rib 210 and the pressure cover 20 are in the shape of an I-beam, which is simple in structure and easy to process.

[0046] As an example, the support rib 210 and the pressure cover 20 are integrally formed, and the two are firmly connected, making them easy to process.

[0047] Furthermore, in some embodiments, such as Figure 4 As shown, the support ribs 210 are ring-shaped and distributed circumferentially around the pressure cap 20. This ensures that regardless of the orientation of the container body 10, the support ribs 210 can quickly support the side wall of the container body 10, effectively preventing the pressure cap 20 from tipping over significantly. Furthermore, if the pressure cap 20 is placed inside the container body 10 using the support ribs 210, the ring-shaped support ribs 210 also ensure the stability of the pressure cap 20.

[0048] Of course, the support ribs 210 can also be distributed circumferentially around the pressure plate 20. Compared with a continuous circumferential distribution of the support ribs 210, this reduces material usage and saves costs. The distribution positions of the support ribs 210 are not limited to this, and will not be listed here.

[0049] Furthermore, in some embodiments, such as Figure 7As shown, in the radial cross-section of the pressure cap 20, the length D of the line connecting the highest point of the pressure cap 20 at its first end and the lowest point of the pressure cap 20 at its second end is greater than the target inner diameter A. The target inner diameter A is the inner diameter of the container body 10 at the pre-placed position of the pressure cap 20. The first end and the second end of the pressure cap 20 are radially opposite ends. This ensures that the pressure cap 20 will not tip over significantly when the container body 10 is tipped with liquid medicine.

[0050] Figure 7 The figure shows the length D of the line connecting the highest point of the pressure cap 20 at the first end and the lowest point of the pressure cap 20 at the second end. Figure 7 In the middle, the support rib 210 extends downward from the edge of the pressure cover 20. Figure 3 The image also shows the support rib 210 extending downwards from the edge of the pressure cover 20. (Combined) Figure 3 and Figure 7 As shown, if the container body 10 is tilted into liquid medicine, the highest point (point E) of the first end and the lowest point (point F) of the second end of the pressure cap 20 are supported by the side wall of the container body 10 respectively. The two interact with each other. Under the support of points E and F, the length D of the line connecting points E and F is greater than the target inner diameter A, and the pressure cap 20 will not flip over.

[0051] Of course, if the supporting reinforcement is 210... Figure 6 As shown, the support ribs extend not only upwards from the edge of the pressure cap 20 but also downwards from the edge of the pressure cap 20. Therefore, when the container body 10 is filled with liquid medicine, the highest point of the support rib 210 at the left end of the pressure cap 20 and the lowest point of the support rib 210 at the right end of the pressure cap 20 will be supported by the side wall of the container body 10. At this time, ensuring that the length of the line connecting the highest point at the upper left of the support rib 210 and the lowest point at the lower right of the support rib 210 is greater than the target inner diameter A can effectively prevent the pressure cap 20 from tipping over significantly.

[0052] In the specific design, such as Figure 7 As shown, the larger the diameter B and target inner diameter A of the pressure cap 20, the easier it is to manufacture and assemble, and the lower the cost. At the same time, a larger clearance between the pressure cap 20 and the container body 10 facilitates the placement of the pressure cap 20, but a larger clearance also increases the likelihood of the pressure cap 20 flipping over. Therefore, the length D of the connecting line can be increased by changing the length C of the support rib 210, thereby solving the problem of the pressure cap 20 flipping over. This not only does not affect the size of the container body 10, but also does not increase or decrease the clearance between the pressure cap 20 and the container body 10, making it easier for the pressure cap 20 to be placed into the container body 10. For example, the length C of the support rib 210 can be increased to accommodate a container body 10 with a large inner diameter.

[0053] Furthermore, in some embodiments, such as Figure 1 , Figure 2 , Figure 6 , Figure 7 and Figure 8 As shown, the pressure cap 20 is placed on the side or bottom wall of the container body 10. In this way, when the medicinal materials have been put into the container body 10, the pressure cap 20 will not be placed directly on the medicinal materials, but on the side or bottom wall of the container body 10, supporting the material holding space 30. This can prevent the pressure cap 20 from pressing directly on the medicinal materials and causing the medicinal materials to burn at the bottom during the decoction process.

[0054] As an example, such as Figure 7 and Figure 8 As shown, the support rib 210 extends downward from at least part of the edge of the pressure cover 20, and the pressure cover 20 is supported on the side wall or bottom wall of the container body 10 by the support rib 210.

[0055] Here, the support rib 210 extends downward from at least part of the edge of the pressure cover 20, and the pressure cover 20 is supported on the side wall or bottom wall of the container body 10 by the support rib 210. The support rib 210 can not only prevent the pressure cover 20 from flipping over, but also support the material holding space 30. Especially when the support rib 210 is supported on the bottom wall of the container body 10, the support rib 210 serves multiple purposes and there is no need to set up additional support legs to support the material holding space 30, which can simplify the structure and save costs.

[0056] It can be noted that in other examples, the support rib 210 may also extend upwards only from the edge of the pressure cover 20. In this case, the pressure cover 20 can be placed directly on the side wall of the container body 10, using the side wall of the container body 10 to support the material receiving space 30. Alternatively, a support leg can be provided below the pressure cover 20, and the support leg can be placed on the bottom wall of the container body 10 to support the material receiving space 30.

[0057] Furthermore, in some embodiments, such as Figure 7 and Figure 8 As shown, the container body 10 includes a first container section 110 and a second container section 120 distributed vertically. The inner diameter of the first container section 110 is larger than the inner diameter of the second container section 120, and the pressure cover 20 is located inside the second container section 120.

[0058] To allow the pressure cap 20 to be easily inserted into the container body 10, the diameter of the pressure cap 20 must be smaller than the inner diameter of the container body 10. However, to restrict the movement of the pressure cap 20 within the container body 10 and to prevent the pressure cap 20 from flipping when the container body 10 is tilted to pour medicine, the gap between the pressure cap 20 and the container body 10 must also be limited. Therefore, in these embodiments, the container body 10 is made wider at the top and narrower at the bottom, with the pressure cap 20 confined to the lower part of the narrower container body 10. On the one hand, during the process of inserting the pressure cap 20 into the container body 10, it first passes through the wider first container section 110, making insertion easier. On the other hand, the pressure cap 20 is finally placed in the second container section 120, and the gap between the pressure cap 20 and the second container section 120 is smaller, which facilitates limiting the movement and flipping of the pressure cap 20.

[0059] As an example, such as Figure 7 As shown, an annular connecting section 130 extends horizontally between the first container segment 110 and the second container segment 120. This helps to maximize the volume of the container body 10 while maintaining a constant height.

[0060] As an example, such as Figure 8 As shown, an annular connecting section 130 is provided between the first container section 110 and the second container section 120. The annular connecting section 130 is funnel-shaped. The annular connecting section 130 allows for a smoother transition between the first and second connecting sections, avoiding cleaning dead zones. Furthermore, the annular connecting section 130 can guide the pressure cap 20 to be aligned with and inserted into the second connecting section, facilitating the quick insertion of the pressure cap 20 into the second connecting section.

[0061] Furthermore, in some embodiments, such as Figure 4 and Figure 5 As shown, the pressing cover 20 is provided with filter holes 220. This allows the pressing cover 20 to also filter the medicinal materials, preventing them from entering the bowl with the medicinal liquid and improving the user experience.

[0062] like Figure 1 , Figure 2 , Figure 3 and Figure 5 As shown, a spout 150 is provided on the container body 10, and a spout filter 112 is provided on the container body 10 corresponding to the position of the spout 150. Existing decoction pot structures only have this one layer of filtration structure (spout filter 112), making it easy for medicinal herbs to spill into the bowl when the liquid is poured. In this embodiment, a filter hole 220 is provided on the pressure cap 20, which can initially filter out particles from the medicinal herbs, and then filter again through the spout filter 112, reducing the likelihood of medicinal herbs spilling into the bowl.

[0063] As an example, such as Figure 4As shown, there are multiple filter holes 220, distributed in at least two concentric rings around the center line of the pressure cover 20. Furthermore, the diameter of the filter holes 220 located in the outer ring can be larger than the diameter of the filter holes 220 located in the inner ring, or the multiple filter holes 220 can have the same diameter.

[0064] Furthermore, in some embodiments, such as Figure 1 , Figure 3 , Figure 5 and Figure 6 As shown, a handle 230 is provided on the pressure cover 20. This makes it convenient for users to hold the handle 230 to pick up and put down the pressure cover 20.

[0065] Furthermore, in some embodiments, such as Figure 1 and Figure 2 As shown, the liquid heating container also includes a container cover 40, which includes an outer cover 410 and an inner cover 420. The top opening of the container body 10 has a stepped surface 111. The edge of the inner cover 420 rests on the stepped surface 111. The inner cover 420 is provided with a vent hole. The edge of the outer cover 410 is pressed against the edge of the inner cover 420, and together with the inner cover 420, they form a sealed heat-insulating cavity 430.

[0066] In these embodiments, the container lid 40 includes an outer lid 410 and an inner lid 420. The inner lid 420 has a vent hole, while the outer lid 410 does not have a vent structure. During the decoction process, the steam inside the container body 10 can escape into the sealed heat-insulating cavity 430 through the vent hole on the inner lid 420, which can relieve the air pressure inside the pot. Since the outer lid 410 does not have a vent structure, the steam in the heat-insulating cavity 430 will not overflow, which can avoid a large amount of heat loss and improve the decoction efficiency. Moreover, the sealed heat-insulating cavity 430 is not directly connected to the outside, and has a good heat preservation effect.

[0067] Furthermore, the outer cover 410 is mounted on the inner cover 420, with the inner cover 420 bearing the weight of the outer cover 410. After the container cover 40 is closed on the container body 10, the weight of the outer cover 410 and the inner cover 420 acts on the same step of the container body 10. Compared to a single cover being placed on the container body 10, this reduces the likelihood of steam inside the container body 10 opening the container cover 40, thereby reducing the chance of heat leakage and improving heating efficiency. Moreover, it eliminates the need for an additional support structure on the container body 10 to support the outer cover 410, simplifying the structure of the container body 10.

[0068] Furthermore, such as Figure 1As shown, a stepped surface 111 is provided on the side wall of the container body 10. The edge of the inner cover 420 is pressed against the stepped surface 111, and the edge of the outer cover 410 is pressed against the edge of the inner cover 420. The stepped surface 111 is lower than the top opening of the container body 10, and a handle 140 mounting hole is provided on the part of the side wall of the container body 10 that is higher than the stepped surface 111. The two ends of the handle 140 are connected to the container body 10 through the handle 140 mounting hole to avoid interference between the handle 140 and the container cover 40.

[0069] Furthermore, in some embodiments, the liquid heating container is a decoction pot.

[0070] Of course, liquid heating containers include, but are not limited to, decocting medicine; they can also be used to brew tea or as a health-preserving kettle. Furthermore, if the floating of materials is not a concern, the pressure cap 20 can be omitted during use; users can use them as needed.

[0071] Furthermore, if the liquid heating container is primarily used for decocting medicine, it can be made of ceramic. Of course, it can also be made of other materials, such as glass, in which case it can be a health-preserving kettle. Alternatively, if the liquid heating container is made of metal, it can also be an electric kettle. The shape and material of the liquid heating container can be determined based on its primary function, but its use is not limited to this primary function and will not be described in detail here.

[0072] While the embodiments of the present invention have been described in detail above, those skilled in the art can make various modifications and variations to the embodiments of the present invention without departing from the spirit and scope thereof. It should be understood that, to those skilled in the art, these modifications and variations will still fall within the spirit and scope of the embodiments of the present invention as defined in the claims.

Claims

1. A liquid heating vessel characterised in that, The liquid heating container includes: container body(10); A pressure cap (20) is placed inside the container body (10). The pressure cap (20) and the bottom wall of the container body (10) form a material holding space (30) for holding materials. A support rib (210) is provided on the outer periphery of the pressure cap (20). The support rib (210) extends along the side wall of the container body (10).

2. The liquid heating vessel of claim 1, wherein, The support rib (210) extends downward and / or upward from the edge of the pressure cap (20).

3. The liquid heating vessel of claim 1, wherein, The support ribs (210) are in a ring shape and are distributed around the material pressing cover (20) in a circumferential manner, or the support ribs (210) are distributed at intervals around the material pressing cover (20) in a circumferential manner.

4. The liquid heating vessel of any one of claims 1 to 3, wherein, On the radial section of the pressure cap (20), the length of the line connecting the highest point of the pressure cap (20) at the first end and the lowest point of the pressure cap (20) at the second end is greater than the target inner diameter. The target inner diameter is the inner diameter of the container body (10) at the pre-placement position of the pressure cap (20). The first end and the second end of the pressure cap (20) are radially opposite ends.

5. The liquid heating vessel of any one of claims 1 to 3, wherein, The pressure cap (20) is placed on the side wall or bottom wall of the container body (10).

6. The liquid heating vessel of claim 5, wherein, The support rib (210) extends at least partially downward from the edge of the pressure cap (20), which is supported by the support rib (210) on the side wall or bottom wall of the container body (10).

7. The liquid heating vessel of any one of claims 1 to 3, wherein, The container body (10) includes a first container section (110) and a second container section (120) distributed vertically. The inner diameter of the first container section (110) is larger than the inner diameter of the second container section (120). The pressure cap (20) is located inside the second container section (120).

8. The liquid heating vessel of claim 7, wherein, The first container segment (110) and the second container segment (120) have an annular connecting segment (130), which extends horizontally or is arranged in a funnel shape.

9. The liquid heating vessel according to any one of claims 1 to 3, wherein, The pressure cover (20) is provided with filter holes (220).

10. The liquid heating vessel according to any one of claims 1 to 3, wherein, The pressure cover (20) is provided with a handle (230).

11. The liquid heating vessel according to any one of claims 1 to 3, wherein, The liquid heating container is a decoction pot.