Container

By designing a rotatable handle and locking button inside the container, the problem of the handle protruding outwards and taking up a lot of space is solved, and safe and convenient use and storage switching are achieved.

CN223822364UActive Publication Date: 2026-01-23WUHAN SUPOR COOKWARE
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Patent Information

Application Number
CN202520334207.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-01-23
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

The handles of containers on the market protrude from the outside of the container, taking up a lot of space and making them difficult to store.

Method used

Design a container in which the handle and the container body are rotatably connected via a rotating shaft. It is equipped with a locking key to switch between the use state and the storage state. The locking key achieves the locking or unlocking of the handle by engaging with the locking part and the limiting part.

Benefits of technology

It improves user safety and convenience, while reducing the space occupied by the handle when folded up, making it easier to store.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a container which comprises a container body, a handle and a locking key, the handle is rotationally connected with the container body so that the handle can rotate around a rotating shaft, and the rotating shaft extends in the radial direction of the container body. The locking key is movably connected to the handle or the container body and used for locking or unlocking the rotating state of the handle around the rotating shaft relative to the container body. In the unlocking state, the locking key is unlocked from the handle or the container body, so that the handle can rotate around the rotating shaft relative to the container body, and in the locking state, the locking key is locked and matched with the handle or the container body so as to limit the rotation of the handle relative to the container body. The container is provided with a locking key, so that the container can be switched to a use state or a storage state. In the using state, the locking key is matched with the handle or the container body in a locking mode to fix the handle, and the using safety is improved. And in the storage state, the locking key is unlocked from the handle or the container body, so that the handle can rotate, the space occupied by the container is reduced, and the container is convenient to store.
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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] A container generally consists of a container body and a handle. The container body is used to hold food or liquids, and the handle usually protrudes from the container body so that it can be held and the container body can be tilted. However, the handles on the market are often fixed relative to the container body. Although it is convenient for users to grip, the handle protrudes from the container body and occupies a lot of space, increasing storage space and making it difficult to store. Utility Model Content

[0003] This application provides a container to solve the problem that the handle of the container protrudes outward from the container body, occupying a large space and making it difficult to store due to increased storage space.

[0004] This application provides a container including a container body, a handle, and a locking key. The handle is rotatably connected to the container body so that it can rotate about a rotation axis extending radially along the container body. The locking key is movably connected to the handle or the container body and is used to lock or unlock the rotation of the handle relative to the container body about the rotation axis.

[0005] Specifically, the locking key is movable relative to the handle to have a locked state and an unlocked state. In the unlocked state, the locking key is released from its locking engagement with the handle or the container body, allowing the handle to rotate relative to the container body about the rotation axis. In the locked state, the locking key is locked into its engagement with the handle or the container body to restrict the handle's rotation relative to the container body.

[0006] In this design, a locking button is installed on the container to allow it to switch between a usable and a stored state. In the usable state, the locking button engages with the handle or container body to secure the handle, reducing the risk of rotation relative to the container body when the user holds it, thus improving user safety. In the stored state, the locking button disengages from the handle or container body, allowing the handle to rotate towards the container body, preventing it from protruding relative to the container's height and reducing the space occupied by the container for easier storage. Simultaneously, during the state switching process, the handle rotates around a radial axis extending from the container body, minimizing the space occupied by the handle during rotation and facilitating user operation.

[0007] In this solution, the container body includes a mating part, the locking key includes a limiting part, the locking key is movably connected to the handle, and the locking key can move radially along the container body to lock or release the mating part from the limiting part.

[0008] In this design, the locking mechanism between the mating part and the limiting part reduces the risk of the handle rotating relative to the container body when the user holds it, thus improving user safety. Simultaneously, the locking mechanism is released when the mating part and the limiting part are engaged, allowing the container to be stored.

[0009] In this design, one of the mating part and the limiting part is a protruding structure, and the other is a groove structure.

[0010] In this design, the combination of raised and recessed structures improves the reliability and firmness of the locking key's engagement with the container body when it is in the locked state, thereby enhancing the reliability and stability of the container in its usage state.

[0011] In this design, the handle is provided with a mounting groove, the locking key is located in the mounting groove, and the locking key includes a pressing part that can be exposed through the mounting groove.

[0012] In this design, the pressing part is used by the user to press, so that the user can drive the locking key to move, which improves the convenience of driving the locking key to switch from the locked state to the unlocked state, and thus improves the convenience of the user to drive the container to switch to the storage state.

[0013] In this design, the locking key is further provided with a protruding positioning part, and the handle also includes a positioning groove communicating with the mounting groove, with the positioning part installed in the positioning groove.

[0014] In this design, the positioning part is installed within the positioning groove to position the locking key during assembly, improving assembly efficiency. The locking key also includes a body, with the positioning part protruding relative to the body. The body is installed within a mounting groove, and there is a certain gap between the body and the side wall of the mounting groove to allow the locking key to move. The gap between the positioning part and the side wall of the positioning groove is smaller than the gap between the body and the side wall of the mounting groove, so that the positioning part can be used for positioning. The body and the positioning part are integrally formed.

[0015] In this solution, the container body also includes an elastic element located in the mounting groove, one end of the elastic element abutting against the handle and the other end abutting against the locking key.

[0016] In this design, the container is equipped with an elastic element. When the limiting part is rotated with the handle to a position where it locks with the mating part, the limiting part of the locking key can automatically lock with the mating part, improving the convenience of switching the container to the use state.

[0017] In this solution, the container body includes a mounting base, and the surface of the mounting base is provided with a plurality of spaced first collision parts. The limiting part includes a second collision part. During the rotation of the handle, the first collision part and the second collision part slide together, and when they are aligned with each other, they collide and abut against each other.

[0018] In this configuration, one of the first collision portion and the second collision portion is a protrusion, and the other is a depression.

[0019] In this design, during the rotation of the handle, the first collision part and the second collision part slide together, and when they are aligned with each other, they collide and abut against each other, so that a clicking sound can be produced during the rotation of the handle, while also improving the user's feel when driving the handle to rotate.

[0020] In this solution, the container further includes a fastener, the container body includes a connecting shaft extending radially along the container body, the handle includes a connecting post protruding toward the container body, the connecting post is sleeved on the outer periphery of the connecting shaft, the connecting shaft includes a first through hole, the connecting post includes a second through hole, and the fastener passes through the second through hole and the first through hole in sequence to rotatably connect the container body and the handle.

[0021] In this design, the connecting shaft and the connecting column are connected by fasteners so that the handle can be installed on the container body, improving the reliability and stability of the handle installation on the container body.

[0022] In this solution, the container includes a gasket, the connecting shaft is provided with a notch, the gasket has a central hole that is irregularly matched with the notch, the gasket is clamped between the notch and the fastener, and the gasket is relatively fixed to the connecting shaft during the rotation of the handle.

[0023] In this design, the gasket is used for anti-slip, further reducing the risk of the fasteners unscrewing when the handle is turned, and further improving the reliability and stability of the connection between the handle and the container body.

[0024] In this solution, in the unlocked state, the handle rotates relative to the container body, and when the handle is parallel to the radial direction of the container body, it can be stored in the outer periphery of the container body, which helps to reduce the space occupied by the handle when the container is in the stored state, making it easier to store.

[0025] 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

[0026] Figure 1 This is a schematic diagram of the structure of the container provided in this application in a specific embodiment, wherein the container is in use;

[0027] Figure 2 This is a schematic diagram of the structure of the container provided in this application in a specific embodiment, wherein the container is in a stored state;

[0028] Figure 3 for Figure 1 The provided cross-sectional view of the container shows the locking key in the locked state;

[0029] Figure 4 An exploded view of the container provided in this application in one specific embodiment;

[0030] Figure 5 An exploded view of the container provided in this application in one specific embodiment;

[0031] Figure 6 A schematic diagram of the handle and locking key provided in this application in a specific embodiment;

[0032] Figure 7 for Figure 3 A partial structural diagram of part A in the middle;

[0033] Figure 8 This is a partial cross-sectional view of the container provided in this application in a specific embodiment, wherein the locking key is in the unlocked state;

[0034] Figure 9 for Figure 6 A partial structural diagram of part B;

[0035] Figure 10 An exploded view of the locking key and handle provided in this application in one specific embodiment;

[0036] Figure 11 This is a schematic diagram of the structure of the locking key provided in this application in a specific embodiment.

[0037] Explanation of reference numerals in the attached figures:

[0038] 1- Container;

[0039] 11-container body;

[0040] 111 - Mounting base;

[0041] 111a - Fitting part;

[0042] 111b - First collision section;

[0043] 112 - Connecting shaft;

[0044] 112a - First through hole;

[0045] 112b - Notch;

[0046] 12-Handle;

[0047] 121-Connecting post;

[0048] 121a - Second through hole;

[0049] 122 - Mounting slot;

[0050] 123 - Positioning groove;

[0051] 13-Lock key;

[0052] 131 - Limiting part;

[0053] 131a - Second collision section;

[0054] 132 - Pressing part;

[0055] 133 - Positioning section;

[0056] 134-Ontology;

[0057] 14-Fasteners;

[0058] 15-Gasket;

[0059] 16-Elastic element;

[0060] 17- Protective cover;

[0061] The accompanying drawings, which are incorporated in and form part of this specification, illustrate symbols.

[0062] The embodiments described herein, together with the specification, are used to explain the principles of this application. Detailed Implementation

[0063] 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.

[0064] In one specific embodiment, the present application will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0065] 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.

[0066] 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.

[0067] 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.

[0068] 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.

[0069] This application provides a container 1, such as Figures 1-3 As shown, container 1 includes container body 11, handle 12, and locking key 13. Handle 12 is rotatably connected to container body 11 so that handle 12 can rotate around a rotation axis. Figures 1-3 (As shown by the dashed line) Rotation, with the rotation axis extending radially along the container body 11. A locking key 13 is movably connected to the handle 12 or the container body 11, and is used to lock or unlock the rotation of the handle 12 relative to the container body 11 about the rotation axis. Specifically, the locking key 13 is movable relative to the handle 12, allowing it to have a locked state and an unlocked state. In the unlocked state, the locking key 13 is released from its locking engagement with the handle 12 or the container body 11, allowing the handle 12 to rotate relative to the container body 11 about the rotation axis. In the locked state, the locking key 13 is locked into its engagement with the handle 12 or the container body 11, restricting the rotation of the handle 12 relative to the container body 11.

[0070] In this embodiment, the locking key 13 is movably connected to the handle 12. Specifically, when the user needs to remove the container 1 from the handle 12, the locking key 13 is activated. Figure 1 The usage status shown has been switched to, as shown Figure 2 In the storage state shown, the drive lock button 13 moves relative to the handle 12, switching the lock button 13 from the locked state to the unlocked state, thereby disengaging the lock button 13 from the container body 11. This allows the user to drive the handle 12 around the rotation axis towards the container body 11. Figure 1 Rotate the handle 12 in the direction indicated by the middle arrow so that the handle 12 no longer protrudes relative to the container body 11 along the height direction of the container 1, thereby putting the container 1 in the storage state.

[0071] When the user needs to move container 1 from, for example Figure 2 The storage state shown has been switched to the following: Figure 1In the indicated usage state, the drive handle 12 rotates about the axis in a direction away from the container body 11. Figure 2 When the handle 12 is rotated (in the direction indicated by the middle arrow) to the point where it is upright relative to the container body 11, i.e., when the axis of the handle 12 is perpendicular to the radial direction of the container body 11, the locking key 13 can move relative to the handle 12 so that the locking key 13 locks into the container body 11. Then the locking key 13 switches to the locked state to restrict the rotation of the handle 12 relative to the container body 11, so that the user can hold the handle 12 and improve the safety and convenience of the user.

[0072] In other embodiments, the locking key 13 may be movably connected to the container body 11. Specifically, when the user needs to switch the container 1 from the use state to the storage state, the locking key 13 is driven to move relative to the container body 11, so that the locking key 13 switches from the locked state to the unlocked state, thereby releasing the locking key 13 from the locking engagement with the handle 12. Then, the user can drive the handle 12 to rotate around the rotation axis toward the direction closer to the container body 11, so that the handle 12 no longer protrudes relative to the container body 11 along the height direction of the container 1, thereby putting the container 1 in the storage state.

[0073] When the user needs to switch the container 1 from the storage state to the use state, the drive handle 12 rotates around the rotation axis in a direction away from the container body 11. When the handle 12 rotates to be upright relative to the container body 11, that is, when the axis of the handle 12 can be perpendicular to the radial direction of the container body 11, the locking key 13 can move relative to the container body 11 so that the locking key 13 locks with the handle 12. Then the locking key 13 switches to the locked state to restrict the rotation of the handle 12 relative to the container body 11, so that the user can hold the handle 12 and improve the safety and convenience of the user.

[0074] Therefore, a locking key 13 is provided on container 1 to allow it to switch between a use state and a storage state. In the use state, the locking key 13 engages with the handle 12 or the container body 11 to secure the handle 12, reducing the risk of the handle 12 rotating relative to the container body 11 when the user holds it, thus improving user safety. In the storage state, the locking key 13 disengages from the handle 12 or the container body 11, allowing the handle 12 to rotate towards the container body 11, preventing it from protruding relative to the container body 11 along its height, thereby reducing the space occupied by the container 1 and facilitating storage. Simultaneously, during the switching of container 1's states, the handle 12 moves around a rotation axis extending radially along the container body 11, further reducing the space occupied by the handle 12 during rotation, and facilitating user operation. It should be noted that the container 1 provided in this embodiment can be a kettle, teapot, or other similar container.

[0075] In addition, the locking button 13 is located between the top of the container body 11 and the handle 12 so that the user can drive the locking button 13 to move.

[0076] The following describes in detail an embodiment in which the locking key 13 is movably connected to the handle 12.

[0077] In one possible implementation, such as Figures 1-3 , Figure 7 and Figure 8 As shown, the container body 11 includes a mating part 111a, and the locking key 13 includes a limiting part 131. The locking key 13 is movably connected to the handle 12. The locking key 13 can move radially along the container body 11 so that the mating part 111a and the limiting part 131 are locked or unlocked.

[0078] In this embodiment, the container body 11 includes a mounting base 111, and a mating part 111a is disposed on the mounting base 111. When the container 1 needs to be in use, the mating part 111a locks with the limiting part 131 to restrict the handle 12 from rotating relative to the container body 11. When the container 1 needs to be stored, the mating part 111a releases the locking engagement with the limiting part 131, allowing the handle 12 to rotate relative to the container body 11. Therefore, by locking the mating part 111a with the limiting part 131, the risk of the handle 12 rotating relative to the container body 11 when the user holds the handle 12 is reduced, improving user safety. At the same time, by releasing the locking engagement between the mating part 111a and the limiting part 131, the container 1 can be stored.

[0079] In one possible implementation, such as Figures 5-9 As shown, one of the mating part 111a and the limiting part 131 is a protruding structure, and the other is a groove structure.

[0080] In this embodiment, the mating part 111a is a groove structure, and the limiting part 131 is a protrusion structure. In other embodiments, the mating part 111a can be a protrusion structure, and the limiting part 131 can be a groove structure. Therefore, the combination of the protrusion structure and the recess structure helps to improve the reliability and firmness of the locking key 13 when it is in the locked state and its locking engagement with the container body 11, thereby improving the reliability and stability of the container 1 in the use state.

[0081] In one possible implementation, such as Figure 7 and Figure 11 As shown, the handle 12 is provided with a mounting groove 122, and the locking key 13 is located in the mounting groove 122. The locking key 13 includes a pressing part 132. In the locked state, the pressing part 132 is exposed through the mounting groove 122.

[0082] In this embodiment, the pressing part 132 is used by the user to press so that the user can drive the locking key 13 to move, thereby improving the convenience of driving the locking key 13 to switch from the locked state to the unlocked state, and further improving the convenience of the user to drive the container 1 to switch to the storage state.

[0083] In one possible implementation, such as Figure 10 and Figure 11 As shown, the locking key 13 is also provided with a protruding positioning part 133, and the handle 12 also includes a positioning groove 123 communicating with the mounting groove 122, with the positioning part 133 installed in the positioning groove 123. The opening size of the positioning groove 123 is smaller than the opening size of the mounting groove 122.

[0084] In this embodiment, the positioning part 133 is installed in the positioning groove 123 to position the locking key 13 during assembly, thereby improving assembly efficiency. The locking key 13 also includes a body 134, with the positioning part 133 protruding relative to the body 134. The body 134 is installed in the mounting groove 122, and there is a certain gap between the body 134 and the side wall of the mounting groove 122 to allow the locking key 13 to move. The gap between the positioning part 133 and the side wall of the positioning groove 123 is smaller than the gap between the body 134 and the side wall of the mounting groove 122, so that the positioning part 133 can be used for positioning. The body 134 can be integrally formed with the positioning part 133.

[0085] In one possible implementation, such as Figure 7 and Figure 8 As shown, the container body 11 also includes an elastic member 16 located in the mounting groove 122. One end of the elastic member 16 abuts against the handle 12, and the other end abuts against the locking key 13.

[0086] When the locking button 13 needs to be switched to the unlocked state, the user presses the pressing part 132 to release the locking engagement between the limiting part 131 and the mating part 111a, and the elastic member 16 is compressed. When the locking button 13 needs to be switched to the locked state, the limiting part 131 rotates with the handle 12 to the position where it locks into the mating part 111a. Under the action of the rebound force of the elastic member 16, the locking button 13 moves, thereby locking the limiting part 131 into the mating part 111a.

[0087] Therefore, by providing an elastic element 16 to the container 1, when the limiting part 131 is rotated with the handle 12 to the position where it locks into the mating part 111a, the limiting part 131 of the locking key 13 can automatically lock into the mating part 111a, thereby improving the convenience of switching the container 1 to the use state.

[0088] In one possible implementation, such as Figure 5 , Figure 9 and Figure 11As shown, the surface of the mounting base 111 is provided with a plurality of spaced first collision parts 111b, and the limiting part 131 includes a second collision part 131a. During the rotation of the handle 12, the first collision part 111b and the second collision part 131a slide together, and when they are aligned with each other, they collide and abut against each other.

[0089] In this configuration, one of the first collision portion 111b and the second collision portion 131a is a protrusion, and the other is a depression.

[0090] Specifically, in this embodiment, the first collision part 111b is recessed, and the second collision part 131a is protruding. In other embodiments, the first collision part 111b is protruding, and the second collision part 131a is recessed. During the rotation of the handle 12, the first collision part 111b and the second collision part 131a slide together, and when they are aligned, they collide and abut against each other, so that a clicking sound is produced during the rotation of the handle 12, while also improving the user's feel when driving the handle 12 to rotate.

[0091] In one possible implementation, such as Figure 4 and Figure 7 As shown, the container 1 also includes a fastener 14, the container body 11 includes a connecting shaft 112 extending radially along the container body 11, the handle 12 includes a connecting post 121 protruding toward the container body 11, the connecting post 121 is sleeved on the outer periphery of the connecting shaft 112, the connecting shaft 112 includes a first through hole 112a, the connecting post 121 includes a second through hole 121a, and the fastener 14 passes through the second through hole 121a and the first through hole 112a in sequence to rotatably connect the container body 11 and the handle 12.

[0092] In this embodiment, the connecting shaft 112 and the connecting post 121 are connected by fasteners 14 so that the handle 12 can be installed on the container body 11, thereby improving the reliability and stability of the handle 12 installed on the container body 11.

[0093] In addition, such as Figure 4 and Figure 7 As shown, container 1 also includes a protective cover 17, which is snapped into the handle 12. The protective cover 17 is used to block the second through hole 121a and protect the fastener 14, while also improving the aesthetics of container 1.

[0094] In one possible implementation, such as Figure 4 and Figure 7 As shown, the fastener 14 includes a connecting portion, and the diameter of the first through hole 112a is smaller than the diameter of the connecting portion.

[0095] In this embodiment, the fastener 14 is a self-tapping screw, the screw rod is the aforementioned connecting part, the diameter of the first through hole 112a is slightly smaller than the diameter of the screw rod, the nut abuts inside the first through hole 112a, and the thread on the screw rod is screwed into the smaller diameter, unthreaded first through hole 112a, so that the handle 12 is connected to the container body 11. By providing the container 1 with a self-tapping screw fastener 14, the risk of the fastener 14 unscrewing when the handle 12 is rotated is reduced, further improving the reliability and stability of the connection between the handle 12 and the container body 11.

[0096] In one possible implementation, such as Figure 4 , Figure 5 and Figure 7 As shown, the container 1 includes a gasket 15, the connecting shaft 112 is provided with a notch 112b, the gasket 15 has a central hole that is irregularly matched with the notch 112b, the gasket 15 is clamped between the notch 112b and the fastener 14, and the gasket 15 is relatively fixed to the connecting shaft 112 during the rotation of the handle 12.

[0097] In this embodiment, the gasket 15 can be made of anti-slip material such as silicone. The gasket 15 is sleeved with the connecting shaft 112 through the central hole, thereby clamping the gasket 15 between the notch 112b and the fastener 14. The gasket 15 is used for anti-slip, so that the gasket 15 is relatively fixed with the connecting shaft 112 during the rotation of the handle 12, further reducing the risk that the fastener 14 will unscrew when the handle 12 is rotated, and further improving the reliability and stability of the connection between the handle 12 and the container body 11.

[0098] In one possible implementation, such as Figure 2 As shown, in the unlocked state, the handle 12 rotates relative to the container body 11 and can be retracted into the outer periphery of the container body 11 when the handle 12 is parallel to the radial direction of the container body 11.

[0099] In this embodiment, the handle 12 rotates relative to the container body 11 and can be retracted into the outer periphery of the container body 11 when the handle 12 is parallel to the radial direction of the container body 11. That is, when the cross-section of the outer wall of the curved handle 12 is approximately parallel to the plane containing the outer wall of the container body 11 along the radial direction of the container body 11, the handle 12 can wrap around at least a portion of the outer periphery of the container body 11, thereby switching the container 1 to the retracted state. Therefore, retracting the handle 12 into the outer periphery of the container body 11 when it is parallel to the radial direction of the container body 11 helps to reduce the space occupied by the handle 12 when the container 1 is in the retracted state, making it easier to store.

[0100] In this embodiment, the outer wall of the container body 11 is arc-shaped, and the outer contour of the handle 12 can also be arc-shaped so that the handle 12 can surround a part of the container body 11.

[0101] 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: container body(11); A handle (12) is rotatably connected to the container body (11) so that the handle (12) can rotate about a rotation axis that extends radially along the container body (11); A locking key (13) is movably connected to the handle (12) or the container body (11). The locking key (13) is used to lock or unlock the rotation of the handle (12) relative to the container body (11) about the rotation axis.

2. The container according to claim 1, characterized in that, The container body (11) includes a mating part (111a), and the locking key (13) includes a limiting part (131). The locking key (13) is movably connected to the handle (12). The locking key (13) can move radially along the container body (11) so that the mating part (111a) and the limiting part (131) are locked or unlocked.

3. The container according to claim 2, characterized in that, One of the mating part (111a) and the limiting part (131) is a protruding structure, and the other is a groove structure.

4. The container according to claim 2, characterized in that, The handle (12) is provided with a mounting groove (122), and the locking key (13) is located in the mounting groove (122). The locking key (13) includes a pressing part (132), which can be exposed through the mounting groove (122).

5. The container according to claim 4, characterized in that, The locking key (13) is also provided with a protruding positioning part (133), and the handle (12) also includes a positioning groove (123) communicating with the mounting groove (122), and the positioning part (133) is installed in the positioning groove (123).

6. The container according to claim 4, characterized in that, The container body (11) also includes an elastic element (16) located in the mounting groove (122), one end of the elastic element (16) abutting against the handle (12) and the other end abutting against the locking key (13).

7. The container according to any one of claims 2-6, characterized in that, The container body (11) includes a mounting base (111), and the surface of the mounting base (111) is provided with a plurality of spaced first collision parts (111b). The limiting part (131) includes a second collision part (131a). During the rotation of the handle (12), the first collision part (111b) and the second collision part (131a) slide together and collide and abut against each other when they are aligned. In this configuration, one of the first collision portion (111b) and the second collision portion (131a) is a protrusion, and the other is a depression.

8. The container according to any one of claims 2-6, characterized in that, The container (1) further includes a fastener (14), the container body (11) includes a connecting shaft (112) extending radially along the container body (11), the handle (12) includes a connecting post (121) protruding toward the container body (11), the connecting post (121) is sleeved on the outer periphery of the connecting shaft (112), the connecting shaft (112) includes a first through hole (112a), the connecting post (121) includes a second through hole (121a), and the fastener (14) passes through the second through hole (121a) and the first through hole (112a) in sequence to rotatably connect the container body (11) and the handle (12).

9. The container according to claim 8, characterized in that, The container (1) includes a gasket (15), the connecting shaft (112) is provided with a notch (112b), the gasket (15) has a central hole that fits the notch (112b) in a different shape, the gasket (15) is sandwiched between the notch (112b) and the fastener (14), and the gasket (15) is fixed relative to the connecting shaft (112) during the rotation of the handle (12).

10. The container according to any one of claims 2-6, characterized in that, In the unlocked state, the handle (12) rotates relative to the container body (11) and can be retracted into the outer periphery of the container body (11) when the handle (12) is parallel to the radial direction of the container body (11).