A container

CN224776492UActive Publication Date: 2026-09-22WUHAN SUPOR COOKWARE
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Patent Information

Application Number
CN202522272265.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-09-22
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0003]本申请提供了一种容器,用于解决目前容器仅能盛放单一类型的饮品,不能满足用户实现多种饮品饮用的需求,影响用户使用体验的问题

Benefits of technology

[0014]该方案中,运动件包括出水通道,以使第二容纳腔内的饮品能够顺利经运动件与出水口连通,提高用户能够饮用第二容纳腔内的饮品的可行性和可靠性。

✦ Generated by Eureka AI based on patent content.

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Abstract

A kind of container, container includes container body and container cover, container body includes first container body and second container body stacked from top to bottom, first container body has first containing cavity, second container body has second containing cavity.Container cover can be covered on container body, container cover includes cover body, first sealing component and second sealing component, cover body is provided with water outlet, first sealing component can be moved relative to cover body, and change the communication state between first containing cavity and water outlet, second sealing component can be moved relative to cover body, and change the communication state between second containing cavity and water outlet.Container is provided with independent first containing cavity and second containing cavity, container can store different kinds of drinks independently, user only needs to drive first sealing component or second sealing component according to actual demand, and user can drink the drink in first container body or the drink in second container body, improve experience.
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Description

Technical Field

[0001] This utility model relates to the field of container technology, and in particular to a container. Background Technology

[0002] Containers are very common drinking utensils, and different types of containers are used for different usage scenarios. Currently, containers on the market usually only have a single cavity, which can only hold a single type of beverage and cannot meet the needs of users to drink a variety of beverages, thus affecting the user experience. Utility Model Content

[0003] This application provides a container to solve the problem that current containers can only hold a single type of beverage, which cannot meet the user's need to drink multiple beverages and affects the user experience.

[0004] This application provides a container, the container comprising: The container body includes a first container body and a second container body stacked on top of each other, the first container body having a first receiving cavity and the second container body having a second receiving cavity; A container lid that can be closed onto the container body; The container lid includes a lid body, a first sealing component, and a second sealing component. The lid body is provided with a water outlet. The first sealing component is movable relative to the lid body and changes the communication state between the first receiving cavity and the water outlet. The second sealing component is movable relative to the cover and changes the communication state between the second receiving cavity and the outlet.

[0005] Specifically, the first receiving cavity and the second receiving cavity can each hold different types of beverages. When the first sealing component blocks the first receiving cavity and the outlet, and the second sealing component blocks the second receiving cavity and the outlet, the container is in a closed state; when the first sealing component connects the first receiving cavity and the outlet, and the second sealing component blocks the second receiving cavity and the outlet, the container is in a first open state; when the first sealing component blocks the first receiving cavity and the outlet, and the second sealing component connects the second receiving cavity and the outlet, the container is in a second open state.

[0006] In this design, the container is equipped with an independent first and second receiving chamber, enabling it to independently store two different types of beverages. When in use, the user only needs to activate the first or second sealing component to connect the first receiving chamber to the water outlet, or the second receiving chamber to the water outlet, so that the user can drink the beverage in the first container or the beverage in the second container. Thus, the user only needs to use one container to choose different types of beverages according to their own preferences, realizing the multi-functionality of the container and improving the user experience.

[0007] In this solution, the first sealing component includes a moving part and a first sealing part connected to the moving part. The first sealing part can seal against or release the seal against the cover, so that the first sealing part can seal the water outlet and the first receiving cavity, or can open the water outlet and the first receiving cavity.

[0008] In this design, by driving a moving component to move relative to the container body along the height direction of the container, the first sealing part can be brought into or released from sealing contact with the cap. A first sealing element is provided at the end of the cap facing the first receiving cavity along the height direction of the container. When the container is in a closed state and a second open state, the first sealing part and the first sealing element are in sealing contact along the height direction of the container, preventing the beverage in the first receiving cavity from leaking through the outlet, thus improving the sealing performance of the first container body and enhancing the safety of using the container. When the container is in the first open state, the first sealing part and the first sealing element are released from sealing contact along the height direction of the container, creating a gap between the first sealing part and the first sealing element, thereby connecting the first receiving cavity to the outlet.

[0009] In this solution, the first sealing assembly further includes a second sealing part connected to the moving part, the second sealing part being located between the first receiving cavity and the second receiving cavity to isolate the first receiving cavity and the second receiving cavity.

[0010] In this design, the second sealing part is located between the first and second accommodating cavities, making the first and second accommodating cavities independent of each other. When using the container, it prevents the beverage in the first accommodating cavity from being mixed with the beverage in the second accommodating cavity, ensuring the best taste for the user when drinking the beverage in the first and second accommodating cavities, and further improving the user experience.

[0011] In this solution, the container further includes a connector, the first container body and the second container body are detachably connected by the connector, the connector is provided with an extension that protrudes radially along the container, and the second sealing part seals against the extension.

[0012] In this design, the dimension of the extension along the height direction of the container is greater than the maximum stroke of the first sealing assembly along the height direction. This ensures that during the movement of the first sealing assembly relative to the container body along the height direction, the second sealing part always seals against the extension, improving the sealing performance of the first container body and preventing the beverage in the first receiving cavity from mixing with the beverage in the second receiving cavity through the gap between the second sealing part and the extension, thus ensuring the taste of the beverage.

[0013] In this solution, the moving part has a water outlet channel and a through hole. The water outlet channel can communicate with the water outlet through the through hole. During the movement of the second sealing component along the height direction of the container, it can block the water outlet channel and the second receiving cavity, or open the water outlet channel and the second receiving cavity.

[0014] In this design, the moving part includes a water outlet channel, so that the beverage in the second container can be smoothly connected to the water outlet through the moving part, thereby improving the feasibility and reliability of the user being able to drink the beverage in the second container.

[0015] In this solution, the second sealing assembly includes a pressure rod and a third sealing part connected to the pressure rod. The third sealing part is located below the second sealing part. The pressure rod can move along the height direction of the container so that the third sealing part can seal against or release the seal against the moving part. This improves the reliability and stability of the container being able to smoothly switch to the closed state or the second open state.

[0016] In this design, along the height direction of the container, the through hole is located between the water outlet and the first sealing part.

[0017] In this scheme, in the second open state, since the first sealing part is sealed and abuts against the cover, and the through hole is located above the first sealing part, the first sealing part can be used to isolate the through hole and the first receiving cavity, so as to prevent the beverage in the second receiving cavity from flowing into the first receiving cavity through the through hole when pouring, thereby improving the feasibility and reliability of preventing the beverage in the second receiving cavity from mixing with the beverage in the first receiving cavity when pouring.

[0018] In this solution, the moving part includes a first section and a second section, the inner diameter of the first section is smaller than the inner diameter of the second section, the through hole is provided on the first section, and the pressure rod is provided with a first sealing part; When the third sealing part blocks the water outlet channel and the second receiving cavity, the first sealing part seals against the inner wall of the first segment, and the position where the first sealing part seals against the inner wall of the first segment is below the through hole, so as to separate the first receiving cavity from the water outlet channel. When the third sealing part opens the water outlet channel and the second receiving cavity, the first sealing part can move into the second segment so as to release the sealing contact between the first sealing part and the inner wall of the first segment.

[0019] In this design, when the container is in the closed state and the first open state, the first sealing part seals against the inner wall of the first section so that the first sealing part can separate the first receiving cavity from the water outlet channel. When the container is in the first open state, it prevents the beverage in the first receiving cavity from accidentally flowing into the water outlet channel. When the container is switched to the second open state, it prevents the beverage that has accidentally flowed into the water outlet channel from mixing with the beverage in the second receiving cavity.

[0020] In this solution, the container includes a first driving assembly, which includes a driving member, a fixing member, a rotating member, and a first elastic member disposed on the outer periphery of the pressure rod. One end of the first elastic member is connected to the moving member, and the other end is connected to the rotating member. During the movement of the driving member along the height direction of the container, it can drive the rotating member to rotate to engage with or disengage from the fixing member, so that the pressure rod drives the third sealing part to maintain in the position of sealing the water outlet channel and the second receiving cavity, or to maintain in the position of opening the water outlet channel and the second receiving cavity, thereby improving the reliability and stability of the third sealing part in sealing the water outlet channel and the second receiving cavity, as well as the reliability and stability of the third sealing part in opening the water outlet channel and the second receiving cavity.

[0021] In this design, the container is equipped with a first driving component, allowing the user to put the container into and maintain a second open state with a single press of the driving component, eliminating the need for continuous pressing to dispense water and improving ease of use. Simultaneously, the first elastic element can be used to automatically drive the rotating component to rotate relative to the fixed component, improving the feasibility of rotating the component to engage with or disengage from the fixed component.

[0022] In this solution, the container includes a second driving component, which includes a pressing member and a second elastic member. The pressing member is connected to the moving member, and one end of the second elastic member can be connected to the moving member, while the other end can be connected to the cover.

[0023] In this design, pressing the pressing element moves the first sealing component toward the second container, switching the container from a closed state to a first open state. During this process, the second elastic element undergoes elastic deformation. When the pressing is released, the first sealing component automatically resets under the rebound force of the second elastic element, allowing the container to automatically switch back to the closed state without manual user intervention, thus improving ease of use.

[0024] It should be understood that the above general description and the following detailed description are merely exemplary and do not limit this application. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of the container provided in this application in a specific embodiment; Figure 2 This is a cross-sectional schematic diagram of the container provided in this application in a specific embodiment, wherein the container is in a closed state; Figure 3 This is a cross-sectional schematic diagram of the container provided in this application in a specific embodiment, wherein the container is in a first open state; Figure 4 This is a cross-sectional schematic diagram of the container provided in this application in a specific embodiment, wherein the container is in a second open state; Figure 5 A cross-sectional schematic diagram of the container provided in this application in another specific embodiment; Figure 6 A schematic diagram of the structure of the cover provided in this application in a specific embodiment; Figure 7 An exploded view of a portion of the structure of the first driving component provided in this application in a specific embodiment; Figure 8 for Figure 3 A magnified view of part A in the middle; Figure 9 for Figure 4 A magnified view of part B in the middle section.

[0026] Explanation of reference numerals in the attached figures: 1- Container; 11-container body; 111 - First container body; 1111 - First receiving cavity; 1112 - First opening; 1113 - Second opening; 112 - Second container body; 1121 - Second receiving cavity; 1122 - Third opening; 12-Container lid; 121-Cap; 1211 - Outlet; 1212 - First seal; 122 - First sealing assembly; 1221 - Moving parts; 1221a - Water outlet channel; 1221b - Through hole; 1221c - First paragraph; 1221d - Second paragraph; 1222 - First sealing section; 1223 - Second sealing section; 1223a - Second seal; 123 - Second sealing component; 1231 - Compression bar; 1232 - Third sealing section; 1232a - Fourth seal; 1233 - First sealing part; 124-Lid; 1241 - Water outlet; 1242 - Mounting cavity; 1243 - Handle; 13-Connector; 131-Extension; 1311 - Third seal; 14-First drive component; 141-Driver; 1411 - First tooth; 142 - Fastener; 1421 - Second tooth; 1422 - Avoidance Pass; 143 - Rotating component; 1431 - Third tooth; 144 - First elastic element; 15-Second drive component; 151 - Pressing element; 152 - Second elastic element.

[0027] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application. Detailed Implementation

[0028] To better understand the technical solution of this application, the embodiments of this application will be described in detail below with reference to the accompanying drawings.

[0029] In one specific embodiment, the present application will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0030] It should be understood that the described embodiments are merely some, not all, of the embodiments in this application. All other embodiments obtained by those skilled in the art based on the embodiments in this application without inventive effort are within the scope of protection of this application.

[0031] The terminology used in the embodiments of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The singular forms “a,” “the,” and “the” used in the embodiments of this application and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise.

[0032] It should be understood that the term "and / or" used in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this article generally indicates that the preceding and following related objects have an "or" relationship.

[0033] It should be noted that the directional terms such as "upper," "lower," "left," and "right" described in the embodiments of this application are used to describe the angles shown in the accompanying drawings and should not be construed as limiting the embodiments of this application. Furthermore, in the context, it should be understood that when it is mentioned that an element is connected "upper" or "lower" to another element, it can be directly connected to the other element "upper" or "lower," or indirectly connected to the other element "upper" or "lower" through an intermediate element.

[0034] This application provides a container 1, such as... Figures 1-4 As shown, container 1 includes container body 11 and container lid 12. Container body 11 includes a first container body 111 and a second container body 112 stacked on top of each other. That is, along the height direction of container 1, the first container body 11 is located above the second container body 112. The first container body 111 has a first receiving cavity 1111, and the second container body 112 has a second receiving cavity 1121. Container lid 12 can be closed on container body 11.

[0035] The container lid 12 includes a lid body 121, a first sealing component 122, and a second sealing component 123. The lid body 121 is provided with an outlet 1211. The first sealing component 122 can move relative to the lid body 121 and change the communication state between the first receiving cavity 1111 and the outlet 1211. That is, the first sealing component 122 can be controlled to move, so that the first sealing component 122 connects the first receiving cavity 1111 and the outlet 1211, or blocks the first receiving cavity 1111 and the outlet 1211.

[0036] The second sealing component 123 can move relative to the cover 121 and change the communication state between the second receiving cavity 1121 and the outlet 1211, that is, control the movement of the first sealing component 122 so that the second sealing component 123 connects the second receiving cavity 1121 and the outlet 1211, or blocks the second receiving cavity 1121 and the outlet 1211.

[0037] Specifically, the first receiving cavity 1111 and the second receiving cavity 1111 can each hold different types of beverages. When the first sealing component 122 seals the first receiving cavity 1111 and the outlet 1211, and the second sealing component 123 seals the second receiving cavity 1121 and the outlet 1211, the container 1 is in a closed state; when the first sealing component 122 connects the first receiving cavity 1111 and the outlet 1211, and the second sealing component 123 seals the second receiving cavity 1121 and the outlet 1211, the container 1 is in a first open state; when the first sealing component 122 seals the first receiving cavity 1111 and the outlet 1211, and the second sealing component 123 connects the second receiving cavity 1121 and the outlet 1211, the container 1 is in a second open state.

[0038] When a user needs to drink the beverage in the first container 111, the container 1 needs to be opened from the container. Figure 2 The off state shown is switched to as follows Figure 3 In the first open state shown, the first sealing component 122 is driven to move relative to the container body 11 along the height direction of the container 1 towards the second container body 112, so that the first receiving cavity 1111 is connected to the water outlet 1211, thereby switching the container 1 to the first open state so that the user can drink the beverage in the first receiving cavity 1111.

[0039] When a user needs to drink the beverage in the second container 112, the container 1 must be opened from the container. Figure 2 The off state shown is switched to as follows Figure 4 In the second open state shown, the second sealing component 123 is driven to move relative to the container body 11 along the height direction of the container 1 and toward the second container body 112, so that the second receiving cavity 1121 is connected to the water outlet 1211, thereby switching the container 1 to the second open state so that the user can drink the beverage in the second receiving cavity 1121.

[0040] Therefore, container 1 is provided with independent first receiving cavity 1111 and second receiving cavity 1121, enabling container 1 to independently store two different types of beverages. When in use, the user only needs to drive the first sealing component 122 or the second sealing component 123 according to actual needs to connect the first receiving cavity 1111 with the water outlet 1211, or connect the second receiving cavity 1121 with the water outlet 1211. The user can then drink the beverage in the first container 111 or the beverage in the second container 112. Thus, the user only needs to use one container 1 to choose to drink different types of beverages according to their own preferences, realizing the multi-functionality of container 1 and improving the user experience.

[0041] In one possible implementation, such as Figure 6 As shown, container 1 includes a cover 124, which includes a mounting cavity 1242, a water outlet 1241, and a handle 1243. The cover 124 is detachably connected to the container body 11, and the cover 121 is detachably installed in the mounting cavity 1242. The water outlet 1241 is connected to the water outlet 1211, and the handle 1243 makes it convenient for the user to hold and pour the container 1.

[0042] In one possible implementation, such as Figure 2 and Figure 3 As shown, the first sealing assembly 122 includes a moving part 1221 and a first sealing part 1222 connected to the moving part 1221. The first sealing part 1222 can seal against or release the seal against the cover 121, so that the first sealing part 1222 can seal the outlet 1211 and the first receiving cavity 1111, or can open the outlet 1211 and the first receiving cavity 1111.

[0043] In this embodiment, by driving the moving part 1221 to move relative to the container body 11 along the height direction of the container 1, the first sealing part 1222 can be brought into or released from sealing contact with the cover 121. Along the height direction of the container 1, a first sealing element 1212 is provided at the end of the cover 121 facing the first receiving cavity 1111. When the container 1 is in a closed state and a second open state, the first sealing part 1222 and the first sealing element 1212 are in sealing contact along the height direction of the container 1, preventing the beverage in the first receiving cavity 1111 from leaking through the outlet 1211, thus improving the sealing performance of the first container body 111 and enhancing the safety of using the container 1. When the container 1 is in the first open state, the first sealing part 1222 and the first sealing element 1212 are released from sealing contact along the height direction of the container 1, creating a gap between them, thereby allowing communication between the first receiving cavity 1111 and the outlet 1211.

[0044] In one possible implementation, such as Figure 3As shown, container 1 includes a second driving assembly 15, which drives the first sealing assembly 122 to move along the height direction of container 1. The second driving assembly 15 includes a pressing member 151 and a second elastic member 152. The pressing member 151 is connected to the moving member 1221, and the second elastic member 152 is sleeved on the outer periphery of the moving member 1221. One end of the second elastic member 152 can be connected to the moving member 1221, and the other end can be connected to the cover 121.

[0045] In this embodiment, pressing the pressing member 151 causes the first sealing component 122 to move towards the second container body 112, switching the container 1 from a closed state to a first open state. At this time, the second elastic member 152 undergoes elastic deformation. When the pressing is released, the first sealing component 122 automatically resets under the rebound force of the second elastic member 152, allowing the container 1 to automatically switch to a closed state without manual reset by the user, improving ease of use. Simultaneously, in both the closed and open states, the second elastic member 152 lifts the moving member 1221, causing the first sealing part 1222 to press against the first sealing member 1212, improving the sealing effect of the first sealing part 1222.

[0046] In one possible implementation, such as Figure 3 As shown, the first sealing assembly 122 also includes a second sealing part 1223 connected to the moving part 1221. The second sealing part 1223 is located between the first receiving cavity 1111 and the second receiving cavity 1121 to isolate the first receiving cavity 1111 and the second receiving cavity 1121.

[0047] Specifically, the first receiving cavity 1111 includes a first opening 1112 and a second opening 1113. The second receiving cavity 1121 encloses the third opening 1122. Along the height direction of the container 1, the second opening 1113 is located between the first opening 1112 and the third opening 1122. Along the height direction of the container 1, the second sealing part 1223 is disposed between the second opening 1113 and the third opening 1122 to isolate the first receiving cavity 1111 and the second receiving cavity 1121. At the same time, the second sealing part 1223 and the side wall of the first container body 111 form the first receiving cavity 1111. That is, the second sealing part 1223 can serve as the bottom wall of the first receiving cavity 1111 so that the first container body 111 can hold beverages.

[0048] Therefore, the second sealing part 1223 is located between the first receiving cavity 1111 and the second receiving cavity 1121, making the first receiving cavity 1111 and the second receiving cavity 1121 independent of each other. When using the container 1, it prevents the beverage in the first receiving cavity 1111 from being mixed with the beverage in the second receiving cavity 1121, ensuring the best taste of the beverage in the first receiving cavity 1111 and the second receiving cavity 1121 for the user, and further improving the user experience.

[0049] In another possible implementation, such as Figure 5 As shown in this application, container 1 can hold a single type of beverage. Container 1 may only include the second container body 112. Container lid 12 can be directly closed at the third opening 1122. By pressing the second drive component 15, the second receiving cavity 1121 and the water outlet 1211 can be connected, thereby improving the applicability of container 1.

[0050] In one possible implementation, such as Figure 2 and Figure 3 As shown, container 1 also includes connector 13. The first container body 111 and the second container body 112 are detachably connected by connector 13. Connector 13 is provided with an extension 131 that protrudes radially along container 1. The second sealing part 1223 seals against the extension 131.

[0051] In this embodiment, along the height direction of container 1, one end of connector 13 can be threaded to the first container body 111, and the other end can be threaded to the second container body 112. The dimension of extension 131 along the height direction of container 1 is greater than the maximum stroke of the first sealing assembly 122 along the height direction. This ensures that during the movement of the first sealing assembly 122 relative to container body 11 along the height direction of container 1, the second sealing part 1223 is always in sealed contact with the extension 131, improving the sealing performance of the first container body 111 and preventing the beverage in the first receiving cavity 1111 from mixing with the beverage in the second receiving cavity 1121 through the gap between the second sealing part 1223 and the extension 131, thus ensuring the taste of the beverage. Simultaneously, the second sealing part 1223 is provided with a second sealing element 1223a, and the extension 131 is provided with a third sealing element 1311, improving the reliability of the sealing contact between the second sealing part 1223 and the extension 131, further enhancing the sealing performance of the first container body 111.

[0052] In one possible implementation, such as Figures 2-4 As shown, the moving part 1221 has a water outlet channel 1221a and a through hole 1221b. The water outlet channel 1221a can be connected to the water outlet 1211 through the through hole 1221b. During the movement of the second sealing component 123 along the height direction of the container 1, it can block the water outlet channel 1221a and the second receiving cavity 1121, or open the water outlet channel 1221a and the second receiving cavity 1121.

[0053] In one possible implementation, such as Figures 2-4As shown, the second sealing assembly 123 includes a pressure rod 1231 and a third sealing part 1232 connected to the pressure rod 1231. The third sealing part 1232 is located below the second sealing part 1223. The pressure rod 1231 can move along the height direction of the container 1 so that the third sealing part 1232 can seal against or release the seal against the moving part 1221. This improves the reliability and stability of the container being able to smoothly switch to the closed state or the second open state.

[0054] When a user needs to drink the beverage in the second container 112, the container 1 must be opened from the container. Figure 2 The off state shown is switched to as follows Figure 3 In the first open state shown, the driving rod 1231 moves along the height direction of the container 1 toward the second receiving cavity 1121, so that the third sealing part 1232 and the second sealing part 1223 are released from sealing contact, and the second receiving cavity 1121 can then communicate with the water outlet channel 1221a, thereby switching the container 1 to the second open state so that the user can drink the beverage in the second receiving cavity 1121.

[0055] Therefore, the moving part 1221 has a water outlet channel 1221a so that the beverage in the second receiving cavity 1121 can be smoothly connected to the water outlet 1211 through the moving part 1221, improving the feasibility and reliability of the user being able to drink the beverage in the second receiving cavity 1121. At the same time, the moving part 1221 is located inside the container body 11, and the moving part 1221 has the function of serving as a flow channel for the second receiving cavity 1121 and controlling the blocking or connection between the first receiving cavity 1111 and the water outlet 1211, which helps to simplify the structure of the container 1, reduce production costs, and save space for placing the container 1.

[0056] Among them, such as Figure 3 As shown, the third sealing part 1232 is provided with a fourth sealing element 1232a to improve the sealing performance of the third sealing part 1232 abutting against the second sealing part 1223.

[0057] In one possible implementation, such as Figure 4 As shown, along the height direction of container 1, the through hole 1221b is located between the water outlet 1211 and the first sealing part 1222.

[0058] In this embodiment, in the second open state, since the first sealing part 1222 is in sealed contact with the cover 121 and the through hole 1221b is located above the first sealing part, the first sealing part 1222 can be used to isolate the through hole 1221b and the first receiving cavity 1111. This prevents the beverage in the second receiving cavity 1121 from flowing into the first receiving cavity 1111 through the through hole 1221b when pouring, thus improving the feasibility and reliability of preventing the beverage in the second receiving cavity 1121 from mixing with the beverage in the first receiving cavity 1111 when pouring. At the same time, in the first open state and the second open state, different beverages can flow out through the same outlet 1211, which helps to simplify the structure of the container 1 and reduce production costs.

[0059] In one possible implementation, such as Figure 8 and Figure 9 As shown, the moving part 1221 includes a first section 1221c and a second section 1221d. The inner diameter of the first section 1221c is smaller than the inner diameter of the second section 1221d. A through hole 1221b is provided on the first section 1221c. The pressure rod 1231 is provided with a first sealing part 1233.

[0060] When the third sealing part 1232 seals the water outlet channel 1221a and the second receiving cavity 1121, the first sealing part 1233 seals against the inner wall of the first section 1221c, and the position where the first sealing part 1233 seals against the inner wall of the first section 1221c is located below the through hole 1221b, so as to separate the first receiving cavity 1111 and the water outlet channel 1221a. When the third sealing part 1232 opens the water outlet channel 1221a and the second receiving cavity 1121, the first sealing part 1233 can move into the second section 1221d, so that the first sealing part 1233 releases the seal against the inner wall of the first section 1221c.

[0061] In this embodiment, in the closed state and the first open state, the first sealing part 1233 seals against the inner wall of the first segment 1221c, so that the first sealing part 1233 can separate the first receiving cavity 1111 from the water outlet channel 1221a. When the container 1 is in the first open state, it prevents the beverage in the first receiving cavity 1111 from accidentally flowing into the water outlet channel 1221a. When the container 1 is switched to the second open state, it prevents the beverage that accidentally flows into the water outlet channel 1221a from mixing with the beverage in the second receiving cavity 1121. Meanwhile, the inner diameter of the first segment 1221c is smaller than the inner diameter of the second segment 1221d. When the first sealing part 1233 moves to the second segment 1221d, the sealing part 1233 and the inner wall of the first segment 1221c are released from sealing and contact. There is a gap between the first sealing part 1233 and the interior of the second segment 1221d so that the beverage in the second receiving cavity 1121 can flow smoothly from the water outlet channel 1221a to the water outlet 1211, improving the feasibility and reliability of smooth water discharge in the second open state.

[0062] It should be noted that, in the closed state, since the third sealing part 1232 is located below the second sealing part 1223 and abuts against the second sealing part 1223, during the process of switching the container 1 from the closed state to the first open state, the third sealing part 1232 moves together with the moving part 1221 under the action of the second sealing part 1223, so that the position of the first sealing part 1233 relative to the moving part 1221 remains unchanged. In the first open state, the first sealing part 1233 is still sealed against the inner wall of the first section 1221c, preventing the beverage in the first receiving cavity 1111 from mixing with the liquid in the second receiving cavity 1121.

[0063] In one possible implementation, such as Figure 8 As shown, the first sealing part 1233 can be made of a material that can be elastically deformed, such as silicone or rubber. The cross-section of the first sealing part 1233 is conical, which is beneficial to improving the elastic deformation capability of the first sealing part 1233 and improving the sealing effect of the first sealing part 1233.

[0064] In one possible implementation, such as Figure 4 and Figure 7 As shown, container 1 includes a first driving assembly 14, which includes a driving member 141, a fixing member 142, a rotating member 143, and a first elastic member 144 disposed on the outer periphery of the pressure rod 1231. One end of the first elastic member 144 is connected to the moving member 1221, and the other end is connected to the rotating member 143. During the movement of the driving member 141 along the height direction of container 1, it can drive the rotating member 143 to rotate to engage or disengage with the fixing member 142, so that the pressure rod 1231 drives the third sealing part 1232 to maintain in the position of blocking the water outlet channel 1221a and the second receiving cavity 1121, or to maintain in the position of opening the water outlet channel 1221a and the second receiving cavity 1121, thereby improving the reliability and stability of the third sealing part 1232 in blocking the water outlet channel 1221a and the second receiving cavity 1121, as well as the reliability and stability of the third sealing part 1232 in opening the water outlet channel 1221a and the second receiving cavity 1121.

[0065] Specifically, the driving member 141 includes a first tooth 1411, the rotating member 143 includes a second tooth 1421, and the fixing member 142 includes a third tooth 1431 and a clearance opening 1422. The first tooth 1411 and the second tooth 1421 can slide together.

[0066] When switching to the second open state, press the drive member 141 so that the drive member 141 can move towards the second container body 112 along the height direction of the container 1. Then the drive member 141 drives the rotating member 143 and the pressure rod 1231 to move towards the second container body 112, so that the third sealing part 1232 and the second sealing part 1223 are released from contact. At the same time, the inclined surface of the first tooth 1411 and the inclined surface of the second tooth 1421 slide and engage, and under the action of the first elastic member 144, the rotating member 143 rotates relative to the fixed member 142. Then the second tooth 1421 engages with the third tooth 1431 to limit the rotating member 143 from continuing to rotate, so that the container 1 can be maintained in the second open state.

[0067] When switching to the off state, press the drive member 141 again. The drive member 141 and the rotating member 143 move away from the second container body 112 along the height direction of the container 1 under the action of the first elastic member 144. This also drives the pressure rod 1231 to move away from the second container body 112 along the height direction of the container 1. At the same time, the inclined surface of the second tooth 1421 and the inclined surface of the third tooth 1431 slide into contact, so that the rotating member 143 rotates relative to the fixed member 142. This causes the second tooth 1421 to disengage from the third tooth 1431. The second tooth 1421 then rotates to the clearance opening 1422 to limit the rotating member 143 from continuing to rotate. This allows the third sealing part 1232 to seal against the second sealing part 1223, thereby maintaining the third sealing part 1232 in the position of blocking the water outlet channel 1221a and the second receiving cavity 1121.

[0068] Therefore, the container 1 is provided with a first drive assembly 14, so that the user can put the container 1 into and maintain the second open state by pressing the drive member 141 once, without the user having to press to dispense water, thus improving the convenience of use. At the same time, the first elastic member 144 can be used to automatically drive the rotating member 143 to rotate relative to the fixed member 142, improving the feasibility of rotating the rotating member 143 to engage or disengage with the fixed member 142. In the closed and open states, the first elastic member 144 is used to push up the pressure rod 1231, so that the fourth sealing member 1232a is squeezed against the second sealing part 1223, thereby improving the sealing effect of the third sealing part 1232.

[0069] The above descriptions are merely specific implementations of the embodiments of this application, but the protection scope of the embodiments of this application is not limited thereto. Any changes or substitutions within the technical scope disclosed in the embodiments of this application should be covered within the protection scope of the embodiments of this application. Therefore, the protection scope of the embodiments of this application should be determined by the protection scope of the claims.

Claims

1. A container, characterized in that, The container (1) includes: The container body (11) includes a first container body (111) and a second container body (112) stacked on top of each other. The first container body (111) has a first receiving cavity (1111), and the second container body (112) has a second receiving cavity (1121). A container lid (12) that can be closed onto the container body (11); The container lid (12) includes a lid body (121), a first sealing component (122), and a second sealing component (123). The lid body (121) is provided with a water outlet (1211). The first sealing component (122) can move relative to the lid body (121) and change the communication state between the first receiving cavity (1111) and the water outlet (1211). The second sealing component (123) is movable relative to the cover (121) and changes the communication state between the second receiving cavity (1121) and the outlet (1211).

2. The container according to claim 1, characterized in that, The first sealing assembly (122) includes a moving part (1221) and a first sealing part (1222) connected to the moving part (1221). The first sealing part (1222) can seal against or release the seal against the cover (121) so that the first sealing part (1222) can seal the outlet (1211) and the first receiving cavity (1111), or can open the outlet (1211) and the first receiving cavity (1111).

3. The container according to claim 2, characterized in that, The first sealing assembly (122) further includes a second sealing part (1223) connected to the moving part (1221), the second sealing part (1223) being located between the first receiving cavity (1111) and the second receiving cavity (1121) to isolate the first receiving cavity (1111) and the second receiving cavity (1121).

4. The container according to claim 3, characterized in that, The container (1) further includes a connector (13), the first container body (111) and the second container body (112) are detachably connected by the connector (13), the connector (13) is provided with an extension (131) that protrudes radially along the container (1), and the second sealing part (1223) is sealed against the extension (131).

5. The container according to claim 3, characterized in that, The moving part (1221) has a water outlet channel (1221a) and a through hole (1221b). The water outlet channel (1221a) can communicate with the water outlet (1211) through the through hole (1221b). During the movement of the second sealing component (123) along the height direction of the container (1), it can seal the water outlet channel (1221a) and the second receiving cavity (1121), or open the water outlet channel (1221a) and the second receiving cavity (1121).

6. The container according to claim 5, characterized in that, The second sealing assembly (123) includes a pressure rod (1231) and a third sealing part (1232) connected to the pressure rod (1231). The third sealing part (1232) is located below the second sealing part (1223). The pressure rod (1231) is movable along the height direction of the container (1) so that the third sealing part (1232) can seal against or release from the moving part (1221).

7. The container according to claim 6, characterized in that, Along the height direction of the container (1), the through hole (1221b) is located between the outlet (1211) and the first sealing part (1222).

8. The container according to claim 7, characterized in that, The moving part (1221) includes a first section (1221c) and a second section (1221d). The inner diameter of the first section (1221c) is smaller than the inner diameter of the second section (1221d). The through hole (1221b) is provided on the first section (1221c). The pressure rod (1231) is provided with a first sealing part (1233). When the third sealing part (1232) seals the water outlet channel (1221a) and the second receiving cavity (1121), the first sealing part (1233) seals against the inner wall of the first segment (1221c), and the position where the first sealing part (1233) seals against the inner wall of the first segment (1221c) is located below the through hole (1221b) to separate the first receiving cavity (1111) from the water outlet channel (1221a). When the third sealing part (1232) opens the water outlet channel (1221a) and the second receiving cavity (1121), the first sealing part (1233) can move into the second segment (1221d) so that the first sealing part (1233) releases the seal against the inner wall of the first segment (1221c).

9. The container according to claim 6, characterized in that, The container (1) includes a first drive assembly (14), which includes a drive member (141), a fixing member (142), a rotating member (143), and a first elastic member (144) disposed on the outer periphery of the pressure rod (1231). One end of the first elastic member (144) is connected to the moving member (1221), and the other end is connected to the rotating member (143). During the movement of the drive member (141) along the height direction of the container (1), it can drive the rotating member (143) to rotate to cooperate with or disengage from the fixing member (142), so that the pressure rod (1231) drives the third sealing part (1232) to maintain in the position of blocking the water outlet channel (1221a) and the second receiving cavity (1121), or to maintain in the position of opening the water outlet channel (1221a) and the second receiving cavity (1121).

10. The container according to any one of claims 2-9, characterized in that, The container (1) includes a second drive assembly (15), which includes a pressing member (151) and a second elastic member (152). The pressing member (151) is connected to the moving member (1221), and one end of the second elastic member (152) can be connected to the moving member (1221), and the other end can be connected to the cover (121).