解锁机构、铐式锁

By introducing a spring-loaded component into the lock, the lock cylinder automatically rotates and unlocks when the key is inserted, solving the problem of traditional locks requiring manual operation and improving unlocking efficiency and user experience.

CN224514959UActive Publication Date: 2026-07-17ZHEJIANG ZHONGLI GRP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG ZHONGLI GRP
Filing Date
2026-05-29
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Conventional locks require manual insertion and rotation of the key to unlock, resulting in a poor user experience and low efficiency.

Method used

Design an unlocking mechanism that uses a spring-loaded component to automatically rotate the lock cylinder to unlock it when the key is inserted. The spring-loaded component provides a direction for unlocking, simplifying the operation process.

Benefits of technology

It enables automatic unlocking without the need for manual key rotation, improving unlocking efficiency and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种解锁机构、铐式锁,包括锁芯、钥匙,所述锁芯上连接有弹力部件,所述弹力部件具有两个连接端,一端连接在锁芯上,另一端连接在固定位置;所述弹力部件提供锁芯朝向开锁方向运动的趋势,所述钥匙插入锁芯时,锁芯通过弹力部件朝向解锁方向转动解锁。能够简化开锁操作,有助于提高开锁效率,改善用户的使用体验。
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Claims

1. An unlocking mechanism comprising a lock cylinder, a key, characterized in that, The lock cylinder is connected to a spring-loaded component, which has two connecting ends, one end of which is connected to the lock cylinder and the other end of which is connected to a fixed position. The spring-loaded component provides a tendency for the lock cylinder to move in the unlocking direction. When the key is inserted into the lock cylinder, the lock cylinder is unlocked by rotating in the unlocking direction through the spring-loaded component.

2. The unlocking mechanism of claim 1, wherein, It also includes a housing, in which the lock cylinder is rotatably connected. A first connecting groove is provided inside the housing, and a second connecting groove is provided on the lock cylinder. The two connecting ends of the elastic component are respectively connected to the first connecting groove and the second connecting groove. The rotation of the lock cylinder causes the second connecting groove to rotate, which in turn causes the elastic component to deform and store energy.

3. The unlocking mechanism of claim 2, wherein, The first connecting groove is located inside the housing at the position corresponding to the end of the lock cylinder, the second connecting groove is located at the end of the lock cylinder, and the elastic component is located between the first connecting groove and the second connecting groove.

4. The unlocking mechanism of claim 3, wherein, The elastic component is a torsion spring, and both ends are bent inward to form a connecting end; the housing is provided with a channel whose size is adapted to the outer diameter of the elastic component at the corresponding position of the elastic component.

5. The unlocking mechanism of claim 4, wherein, The lock cylinder has a second protrusion at the end corresponding to the elastic component. The second connecting groove is located on the second protrusion, and both ends of the second connecting groove penetrate the side of the second protrusion.

6. The unlocking mechanism of claim 5, wherein, The end face of the second protrusion engages with the connecting end of the elastic component to form an abutment. When the position of the connecting end corresponds to the second connecting groove, the connecting end can enter the connecting groove.

7. The unlocking mechanism according to claim 5 or 6, characterized in that The bottom of the channel of the housing is provided with a protrusion, and the connecting groove is located on the protrusion, with both ends of the connecting groove penetrating the side of the protrusion.

8. The unlocking mechanism of claim 7, wherein, The end face of the protrusion 1 engages with the connecting end of the elastic component to form an abutment. When the position of the connecting end corresponds to the connecting groove 1, the connecting end can enter the connecting groove.

9. The unlocking mechanism of claim 8, wherein, The torsion spring has axial elastic force.

10. A hasp lock characterized in that, Includes the unlocking mechanism as described in any one of claims 1 to 9.