一种便于开启的容器

By designing a linked handle and locking mechanism within the container, the container can be easily unlocked by rotating the handle. This solves the problems of cumbersome operation and poor security of existing containers, providing a convenient and labor-saving user experience while improving security.

CN224511992UActive Publication Date: 2026-07-17GUANGDONG MUSEN DAILY PRODUCTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG MUSEN DAILY PRODUCTS CO LTD
Filing Date
2025-09-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing containers have separate handles and locking mechanisms that are cumbersome to operate. Button unlocking is difficult and can be accidentally unlocked by foreign objects, resulting in inconvenience and poor security.

Method used

By designing an easy-to-open container, the active components are unlocked by rotating the handle, eliminating the need for buttons and enabling the handle and locking mechanism to work together, simplifying the opening and unlocking process to a single operation.

Benefits of technology

The operation is more convenient and effortless, avoiding accidental unlocking caused by foreign objects, improving safety, and has heat insulation function.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224511992U_ABST
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Abstract

本实用新型公开了一种便于开启的容器,包括容器主体、锁定件、和提手环,容器主体,内部形成有容纳腔,容器主体包括外壳主体、和可活动地连接至外壳主体的活动组件,活动组件能够在禁止容纳腔与外界导通的闭合位置和允许容纳腔与外界导通的打开位置之间活动,锁定件可活动地连接到外壳主体或活动组件内,锁定件能够相对于外壳主体或活动组件在锁定状态和解除锁定状态之间活动,提手环沿第一转动方向从携行位置转动设定角度后驱动锁定件相对于活动组件发生移动并进入第二状态,活动组件能够活动至打开位置。该容器能够通过转动提手环来解锁活动组件,一次性打开提手环和解锁活动组件,操作更加便捷、更加轻松省力,并防止意外解锁活动组件。
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Claims

1. A container which is easy to open, characterized in that include: The container body has an internal cavity. The container body includes an outer shell and a movable component movably connected to the outer shell. The movable component is movable between a closed position that prevents the cavity from communicating with the outside and an open position that allows the cavity to communicate with the outside. A locking element is movably connected to the housing body or movable component, the locking element being movable relative to the housing body or movable component between a locked state and an unlocked state; A handle ring is rotatably connected to the housing body, and the handle ring can be rotated to switch from a first state that keeps the locking member in a locked state to a second state that releases the locking member; After the handle ring rotates from the carrying position by a set angle along the first rotation direction, it drives the locking member to move relative to the movable component and enter the second state. The carrying position is the position where the handle ring is raised to lift the container. In the second state, the locking member is in the unlocked state, and the movable component can move relative to the outer shell body to the open position.

2. The container of claim 1, wherein: The outer shell body includes an outer shell body and an outer shell cover that covers the top opening of the receiving cavity; The outer shell cover is provided with an outlet channel that connects to the top cavity; The movable component is movably connected to the outer shell cover. When the movable component is in the closed position, it closes the outlet channel to prevent the top cavity from communicating with the outside. When the movable component is in the open position, it opens the outlet channel to allow the top cavity to communicate with the outside. The locking element is movably connected to the housing cover or movable component; The handle is rotatably connected to the outer casing.

3. The container of claim 1, wherein: The outer shell body includes an outer shell body, an outer shell cover covering the top opening of the receiving cavity, and an outer shell handle connected to the outer shell cover. The outer shell cover is provided with an outlet channel that connects to the top cavity; The movable component is movably connected to the outer shell cover or the outer shell handle. When the movable component is in the closed position, it closes the outlet channel to prevent the top cavity from communicating with the outside. When the movable component is in the open position, it opens the outlet channel to allow the top cavity to communicate with the outside. The locking element is movably connected to the housing cover, housing handle, or movable component; The handle is rotatably connected to the housing cover or housing handle.

4. The container of claim 1, wherein: The outer shell body includes an outer shell body and an outer shell cover that covers the top opening of the receiving cavity, the outer shell cover being movably connected to the outer shell body; The movable component is formed by the outer shell cover. When the movable component is in the closed position, the top cavity is closed by the outer shell cover to prevent the top cavity from communicating with the outside. When the movable component is in the open position, the top cavity is opened by the outer shell cover to allow the top cavity to communicate with the outside. The locking element is movably connected to the housing body or the housing cover; The handle is rotatably connected to the outer casing.

5. The container of claim 1, wherein: The outer shell body includes an outer shell body, an outer shell cover covering the top opening of the receiving cavity, and an outer shell handle connected to the outer shell cover. The outer shell cover is movably connected to the outer shell body or the outer shell handle. The movable component is formed by the outer shell cover. When the movable component is in the closed position, the top cavity is closed by the outer shell cover to prevent the top cavity from communicating with the outside. When the movable component is in the open position, the top cavity is opened by the outer shell cover to allow the top cavity to communicate with the outside. The locking element is movably connected to the housing body, housing handle, or housing cover. The handle is rotatably connected to the housing body or the housing handle.

6. The container according to any one of claims 1-5, characterized in that: When the handle ring rotates from the carrying position to the driving position along the first rotation direction, it is in the first state. The driving position is the position where the handle ring triggers the locking member to move from the locked state to the unlocked state. When the handle ring is in the minimum driving position, the driving part on the handle ring can abut against the trigger part on the locking member, and can rotate with the handle ring towards the second state along the first rotation direction, applying a pushing force to the trigger part arranged along the first rotation direction or along the tangential direction of the first rotation direction, so as to trigger the locking member to move from the locked state to the unlocked state.

7. The container of claim 6, wherein: When the locking element is in the locked state The triggering part is arranged above the rotation axis of the handle ring. When the handle ring is in the driving position, the triggering part can move behind the rotation axis of the handle ring under the pushing force of the driving part, so as to drive the locking member from the locked state to the unlocked state; or, The triggering part is arranged below the rotation axis of the handle ring. When the handle ring is in the driving position, the triggering part can move forward towards the rotation axis of the handle ring under the pushing force of the driving part, so as to drive the locking member from the locked state to the unlocked state; or, The triggering part is arranged behind the rotation axis of the handle ring. When the handle ring is in the driving position, the triggering part can move downwards along the rotation axis of the handle ring under the pushing force of the driving part, so as to drive the locking member from the locked state to the unlocked state; or, The triggering part is arranged in front of the rotation axis of the handle ring. When the handle ring is in the driving position, the triggering part can move upward towards the rotation axis of the handle ring under the pushing force of the driving part, so as to drive the locking member from the locked state to the unlocked state.

8. The container of claim 7, wherein The handle includes: The lifting ring is constructed as a non-closed ring structure, and the two ends of the lifting ring are rotatably connected to the outer shell body along the rotation axis of the lifting ring. The drive unit is connected to the end of the lifting ring and can rotate around the rotation axis of the handle ring as the lifting ring rotates. When the handle is in the carrying position, the side of the handle portion away from the axis of rotation of the handle is arranged at intervals above the outer shell body; When the handle ring is in the driving position, the side of the handle ring that is away from the rotation axis of the handle ring is arranged at intervals on the side of the outer shell body, and the driving part abuts against the trigger part and can rotate with the handle ring in the first rotation direction, and push the trigger part to move in the tangential direction of the first rotation direction, so as to drive the locking member to move from the locked state to the unlocked state.

9. The container according to claim 8, characterized in that, The lifting ring portion includes: The main body of the lifting ring is constructed into a non-closed ring structure; Two drive shafts are respectively connected to both ends of the lifting ring body and are arranged coaxially with the rotation axis of the lifting ring. The two drive shafts are rotatably connected to both sides of the outer shell body. The drive unit is provided in two parts, and the two drive units are respectively protruding from the ends or sides of the two drive shafts. The locking member is provided with two trigger parts corresponding to the two drive units. When the handle ring is in the driving position, the two driving parts abut against the corresponding trigger parts and can rotate along the first rotation direction with the two driving shafts. They synchronously push the corresponding trigger parts to move along the tangential direction of the first rotation direction, so as to jointly drive the locking member to move from the locked state to the unlocked state.

10. The container of claim 9, wherein: The outer shell body includes two connecting seats arranged opposite each other, the two connecting seats are arranged at intervals along the rotation axis of the handle ring, and a gap area is formed between the two connecting seats, and the trigger part is arranged in the gap area; The two drive shafts are respectively configured as convex shaft structures formed by the inner sidewalls protruding from the two ends of the self-lifting ring body. The two connecting seats are respectively provided with shaft channels one corresponding to the drive shafts along the rotation axis of the handle ring. The two drive shafts extend into the shaft channels one and are rotatably connected to the two connecting seats. After connection, the drive part is arranged in the interval area.

11. The container of claim 10, wherein: The drive shaft includes several shaft pieces arranged around the rotation axis of the handle ring. The free ends of the shaft pieces are provided with a limiting block one protruding radially outward along the rotation axis of the handle ring. The drive part is disposed at the free ends of one or more shaft pieces. When the drive shaft passes through the shaft channel one, the free ends of each shaft piece can be squeezed together by the shaft channel one and deformed and reduced to extend into the inner side of the connecting seat. After extending in, the connecting seat is limited between the handle ring body and the limiting block one.

12. The container of claim 11, wherein: The drive shaft and the lifting ring body are provided with a positioning channel through the rotation axis of the lifting ring. A positioning shaft is detachably connected in the positioning channel, which can prevent the free ends of each shaft piece from approaching each other. The shaft plate is provided with a limiting block two protruding radially into the positioning channel along the rotation axis of the handle ring. The peripheral side wall of the positioning shaft is provided with a limiting groove corresponding to the limiting block two. The positioning shaft and the handle ring are axially limited within the limiting groove by the limiting block two.

13. The container of claim 10, wherein: The drive shaft and the lifting ring body are provided with positioning channels running through them along the rotation axis of the lifting ring. The two ends of the lifting ring are connected by positioning shafts connected in the two positioning channels.

14. The container of claim 13, wherein: The positioning shaft includes a shaft part one, a limiting head one connected to the outer end of the shaft part one, a shaft part two, and a limiting head two connected to the outer end of the shaft part two. The inner ends of the shaft part one and the inner ends of the shaft part two are connected to each other. After connection, the limiting head one and the limiting head two are respectively limited to the outer side walls of the two ends of the lifting ring body.

15. The container of any one of claims 1-5, 7-14, wherein: When the locking member is in the unlocked state, it allows the movable component to move to the open position. It also includes a first reset member for resetting the movable component to the open position and a second reset member for resetting the locking member to the locked state.