The present disclosure relates to a chain lock, particularly an easy-to-operate chain lock.
Bicycles are often secured with locks to prevent theft. Most chain locks are keyed by inserting the chain into the lock. However, if the chain is not operated carefully, it can get stuck in the locking structure inside the lock (such as a snap hook) and cannot be locked, making it inconvenient to operate.
In response to the above problems, the present disclosure provides a chain lock, in particular an easy-to-operate chain lock.
The chain lock comprises a lock body and a chain, one end of the chain is connected to the lock body and the other end is connected to a bolt. The lock body has a cylindrical lock seat and a lock core that rotate together. The side wall of the lock seat features an insertion portion that defines a width in the axial direction. The insertion portion has a first slot and a second slot connected along the direction of rotation of the lock body, where the width of the first slot is greater than the width of the second slot.
Wherein, an actuating element connects the lock seat to the lock core.
Wherein, the bolt has an inserter disposed on a base with a circular groove between its top and bottom.
Wherein, the lock body also comprises a first shell and a second shell sleeved within the first shell. The first shell has a first jack in the radial direction, and the second shell has a second jack in the radial direction. The first jack, second jack, and insertion portion are connected.
Wherein, the first shell has a first perforation in the axial direction, and the second shell has a second perforation in the axial direction. Both perforations are connected to a keyhole of the lock core for a key insertion.
Wherein, the lock core and the lock seat are disposed within the second shell.
Wherein, the lock body further comprises an installation seat inside the second shell, which connects to the chain and the lock seat.
To clearly illustrate the specific method of implementation, structure, and effect achieved by the present disclosure, the following embodiments are provided and illustrated with drawings:
Referring to
The lock body 10 comprises a first shell 11 and a second shell 12 which is sleeved within the first shell 11, and a lock core 13, a lock seat 15, and an installation seat 16 are disposed within the second shell 12. The installation seat 16 connects to the lock seat 15 at one end and to the chain 20 at the other end. An actuating element 14 is sleeved within one end of the lock core 13 and is connected to the lock seat 15 via the two wings of the actuating element 14, allowing simultaneous rotation of the lock core 13 and the lock seat 15. The lock core 13 has a keyhole 13a for inserting a key. When the key is inserted, the lock core 13 and the lock seat 15 rotate together to form either a locked state (as shown in
In this embodiment, the side wall of the lock seat 15 features an insertion portion for the insertion of the bolt 30 defining a width in the axial direction. The insertion portion has a first slot 151 and a second slot 152 connected to each other, wherein the width W1 of the first slot 151 is greater than the width W2 of the second slot 152, defining the approximate T-shape of the insertion portion. Wherein the first shell 11 has a first jack 11b in the radial direction and the second shell 12 has a second jack 12b in the radial direction, both of which are connected to the insertion portion.
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Number | Date | Country | Kind |
---|---|---|---|
23175535.6 | May 2023 | EP | regional |