收纳盒

By incorporating an automatic drive mechanism, positioning post, and arc-shaped groove into the Bluetooth earphone case, the problem of manually opening and closing the case is solved, enabling the inner shell to automatically flip and lock stably, thus improving user experience and ease of operation.

CN224504863UActive Publication Date: 2026-07-17JIANGXI LUXSHARE INTELLIGENT MFG CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI LUXSHARE INTELLIGENT MFG CO LTD
Filing Date
2025-07-17
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing Bluetooth earphone cases require manual flip-top operation, which limits the opening angle of the inner shell and results in a poor user experience.

Method used

Design a storage box in which the inner shell automatically rotates to the outer position via a drive component. A positioning post and an arc-shaped groove are provided between the inner and outer shells to cooperate. Combined with an elastic element and a locking mechanism, the inner shell can be automatically opened and stably locked.

Benefits of technology

The inner shell can automatically rotate 180° to the external position, making it convenient to take out and put away Bluetooth earphones, improving the user experience. It also requires no manual operation, and the opening angle of the inner shell is not limited, ensuring good stability.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224504863U_ABST
    Figure CN224504863U_ABST
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Abstract

本实用新型涉及包装技术领域,具体公开了一种收纳盒,该收纳盒包括内壳、外壳和驱动件,内壳收容于外壳,内壳能够相对外壳移动,且在内壳的移动过程中,内壳的端部在第一位置和第二位置之间转动切换,驱动件被配置为在内壳的端部由第一位置切换至第二位置的过程中给内壳提供动力,第一位置和第二位置位于同一方向上。当需要将内壳打开时,内壳在移动的过程中,内壳从外壳内部的第一位置转到外壳外部的第二位置,方便用户将蓝牙耳从端部取出,或者将蓝牙耳机从端部放入,操作方便,并且内壳移动的过程中通过驱动件提供动力,能够使得内壳自动打开,无需用户手动操作,提高了用户体验。
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Claims

1. A storage case characterized by, The device includes an inner shell, an outer shell, and a drive unit. The inner shell is housed within the outer shell and is movable relative to the outer shell. During the movement of the inner shell, an end of the inner shell rotates between a first position and a second position. The drive unit is configured to provide power to the inner shell as the end of the inner shell switches from the first position to the second position. The first position and the second position are located in the same direction.

2. The storage box according to claim 1, wherein The inner shell is provided with a positioning post, and the outer shell is provided with an arc-shaped groove; the positioning post and the arc-shaped groove are slidably engaged.

3. The storage box according to claim 2, characterized in that, The storage box also includes a slider that is slidably connected to the outer shell. The positioning post is always located on the movement path of the slider, and the slider can abut against the positioning post. The drive element includes a first elastic element connected between the slider and the housing, the first elastic element being configured to provide an elastic force to the slider during the switching of the end of the inner housing from the first position to the second position, and causing the slider to push the positioning post to slide along the arcuate groove.

4. The case according to claim 3, wherein The storage box also includes a locking mechanism, which is used to lock or unlock the relative position of the slider and the outer shell when the end is in the first position.

5. The case of claim 4, wherein The locking mechanism includes a slot disposed on one of the slider and the outer shell, and a snap-fit ​​member movably disposed on the other of the slider and the outer shell. When the end of the inner shell is in the first position, the snap-fit ​​member engages with the slot.

6. The case of claim 5, wherein The locking mechanism further includes a second elastic element, which is configured to ensure that the snap-fit ​​member always has a tendency to insert into the slot when the end of the inner shell is in the first position.

7. The case of claim 6, wherein The locking mechanism further includes an unlocking component, which is movably disposed on the outer shell. When the end of the inner shell is in the first position, the unlocking component is used to drive the latching member out of the slot.

8. The case of claim 7, wherein When the snap-fit ​​is movably disposed on the housing and the slot is disposed on the slider: The unlocking component includes a pressing member fixedly connected to the latching member, and the pressing member and the latching member are floated on the housing via the second elastic member; Alternatively, the unlocking component includes a pressing member and a third elastic member, with the first end of the latching member rotatably connected to the housing, the pressing member floating on the housing via the third elastic member, and the second end of the latching member extending into the moving path of the pressing member.

9. The case of claim 7, wherein When the latching member is movably disposed on the slider and the slot is disposed on the housing: The latching member is floatingly disposed on the slider via the second elastic element. The unlocking component includes a first link and a second link. The first end of the first link and the first end of the second link are pivotally connected. The second end of the first link is rotatably connected to the outer shell. The second end of the second link is slidably connected to the outer shell. The slider is located on the side of the second link away from the first link. When the end of the inner shell is located in the first position, the slider is located on the movement path of the second end of the second link.

10. The case of claim 9, wherein, The unlocking assembly further includes a roller rotatably connected to the second end of the second link, the roller engaging with the housing in a rolling manner; or... The first end of the first connecting rod and the first end of the second connecting rod are rotatably connected via a pivot. The unlocking assembly further includes a pressing member slidably connected to the housing, the pressing member being opposite to the pivot; or... The first end of the first link and the first end of the second link are rotatably connected by a pivot. The unlocking assembly also includes a torsion spring sleeved on the pivot. The two torsion arms of the torsion spring are respectively connected to the first link and the second link, and the torsion spring is configured such that the second link always has a tendency to close relative to the first link.

11. The case of any of claims 2-10, wherein, The outer shell has arc-shaped grooves on both opposite sides, and the inner shell has positioning posts on both opposite sides.

12. The case of any of claims 1-10, wherein, The end is provided with an opening for receiving; the outer casing is provided with at least a covering surface that covers the receiving portion.