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Coding mechanism and key of clutch lock head

A clutch type and coding technology, applied in the field of coding mechanism and key, can solve the problems of complex lock cylinder structure, small key quantity of lock cylinder and high mutual opening rate of keys, and achieve strong security, low manufacturing cost and small volume. Effect

Active Publication Date: 2018-10-12
徐明达
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although some clutch-type lock heads and pin lock cylinders disclosed at present can solve the basic anti-theft function, the mutual opening rate of keys is high, the key quantity of the lock cylinder is small, and the structure of the lock cylinder is complicated, and the processing is difficult. Therefore it is necessary to design a coding and decoding mechanism for locks with strong anti-technical opening capability and a large amount of coding information.

Method used

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  • Coding mechanism and key of clutch lock head
  • Coding mechanism and key of clutch lock head
  • Coding mechanism and key of clutch lock head

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] Such as figure 1 Shown encoding mechanism, key 1 and clutch pin 6. The encoding mechanism includes a plurality of encoding slices 2, and its structure is as follows: figure 2 As shown, the encoding sheet 2 is in the shape of a circular ring, and a plurality of encoding sheets are divided into N types. The outer edge of the first type of encoding sheet 21 has a clutch groove 211 for the first type of encoding sheet, and the inner edge of the ring is provided with The bump that protrudes toward the center of the ring has a first-type coding piece tooth groove 212 on the bump; the second-type coding piece 22 has a second-type coding piece clutch groove 221 on the outer edge of the ring, and the inside of the ring The edge is provided with a protruding block protruding toward the center of the ring, and the second type coding piece tooth groove 222 is opened on the projection; the third type coding piece 23 has a third type coding piece clutch groove 231 on the outer edge...

Embodiment 2

[0054] Such as Figure 13 As shown, in this embodiment, the structure of the guide shaft 301 and the key 101 is different from that of Embodiment 1. The key 101 has only one rack, and there are four kinds of gear blocks with different heights on the rack, and the corresponding guide shaft 301 is also corresponding. There is only one bar-shaped hole, and each coding piece has 1 reset block and 4 layers of stepped tooth grooves. One of the tooth grooves of the same layer of coding pieces meshes with one of the tooth pieces, but on each coding piece, the clutch groove Groove is different from the same position of cog. Other structures are the same as in Embodiment 1.

Embodiment 3

[0056] Such as Figure 14 As shown, in the present embodiment, the structures of the coding piece and the key 102 are different from those of the first embodiment. Each coding piece has a reset block and a tooth groove, and there are 4 racks on the key 102, and each toothed rack has a There is only one kind of tooth block, but on each coding piece, the same position of the clutch groove and the tooth groove is different. Other structures are the same as in Embodiment 1.

[0057] In Embodiment 2 and Embodiment 3, since the racks on the key and the number of slots on the coding sheet are small, although this technical method can also be realized, the amount of coding information is small. Theoretically, the value of encoding information is infinite, but in the physical design, factors such as the size of the structure, the difference in encoding angle, and the performance of processing technology should be considered for comprehensive evaluation.

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PUM

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Abstract

An encoding mechanism and a key for a clutch-type lock. A clutch pin (6) is disposed inside the lock. The clutch pin (6) is linked to an unlocking mechanism. An encoding mechanism is disposed inside the lock, and the encoding mechanism comprises multiple encoding sheets (2). A reset block (213) and a tooth socket (212) are disposed on a protruding block (42) of an encoding sheet (2). Each encoding sheet (2) has a same protruding block (42), but has a different position relative to a clutch groove (221). The multiple encoding sheets (2) are axially stacked, in a concentric and co-axial manner. Multiple tooth blocks (11) are disposed on a key (1), which respectively correspond to the tooth sockets (212) of the multiple encoding sheets (2).

Description

technical field [0001] The invention relates to a lockset, in particular to a coding mechanism of a clutch lock head and a key matched therewith. Background technique [0002] The lock cylinder is the most critical part of the lock, which determines the anti-theft performance of the lock. At present, there are pin locks commonly used in daily life. Safety performance against technical opening. The invention of the clutch lock head greatly improves the ability to prevent non-technical opening, especially improves the ability to prevent rotation torque damage. Although some clutch-type lock heads and pin lock cylinders disclosed at present can solve the basic anti-theft function, the mutual opening rate of keys is high, the key quantity of the lock cylinder is small, and the structure of the lock cylinder is complicated, and the processing is difficult. Therefore be necessary to design a kind of encoding and decoding mechanism that anti-technical opening ability is strong, t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E05B37/02E05B19/08
CPCE05B27/08E05B37/02
Inventor 徐明达
Owner 徐明达