1. Field of the Invention
The present invention relates to a lock core with different thicknesses of lock plates (or disks). The lock plates have at least two different thicknesses and specifications and are arranged in a core body of the lock core so as to greatly increase the permutation/combination numbers of the security code and reduce the possibility of repetition of the same unlocking code. Also, this increases the difficulty for a thief to find the unlocking positions of the respective lock plates, whereby the burglarproof and security effect is enhanced.
2. Description of the Related Art
The lock core structure of the current lock device generally includes a main body and a core body rotatably mounted in the main body. A lock bolt is mounted between the core body and the main body. A true key can be used to drive the lock bolt so as to unlock the core body from the main body. In this case, the core body can be freely rotated within the main body to unlock.
The early-stage lock device has a lock bolt in the form of multiple pairs of lock beads. The lock beads are radially mounted between the main body and the core body via springs. A true key can be used to shift the lock beads to the junction face between the main body and the core body to unlock the main body from the core body. Under such circumstance, the true key can drive and rotate the core body to unlock the lock device. However, with respect to the lock core with the lock beads, a thief can apply a rotational force to the core body to shift the respective rows of lock beads one by one with a tool and then easily unlock the lock device. Therefore, the burglarproof and security effect of such lock device is quite weak.
To solve the above problems, the applicant's Taiwanese Utility Model Patent Publication No. 088732 (Application Date: 1986 May 3) discloses a lock core structure as shown in
However, when a thief tries to unlock the lock device, the thief will generally use a tool to shift the lock plates 104 one by one. Under the assistance of the thief's own experience or an electronic device, the thief may still find the correct unlocking positions of the lock plates 104 with patience and time to unlock the lock device. This is because the lock plates 104 arranged in the core body 102 have the same thickness. A thief can easily obtain a conventional lock device in the market to learn the thickness of the lock plates 104 from the obtained lock device. In this case, the thief can advance the tool each time by a distance equal to the thickness of the lock plates to precisely align the tool with the positions of each lock plate 104 and correctly shift the lock plates 104 to unlock the lock device. It is therefore an object of the invention by the applicant to provide a lock core with different thicknesses of lock plates to increase the difficulty of unlocking the lock device via lockpicking.
It is therefore a primary object of the present invention to provide a lock core with different thicknesses of lock plates. The lock core includes a main body; a core body rotatably mounted in the main body, the core body being axially recessed to form a receiving cavity; a lock bolt normally positioned between the core body and the main body for restricting the core body from rotating; and multiple lock plates having at least two different thicknesses and specifications, the lock plates being side by side arranged in the core body and drivable by a true key to retract the lock bolt into the core body so as to unlock the main body from the core body, whereby the core body can be freely rotated within the main body to unlock. The lock plates arranged in the core body have at least two different thicknesses and specifications. Therefore, a thief cannot find the correct arrangement intervals between the lock plates. In this case, it is impossible for the thief to position a tool in a correct corresponding position of the lock plates to shift the lock plates one by one. Moreover, when the thief tries to shift a thin lock plate with a tool of a width larger than the thickness of the thin lock plate, the thief will also drive the other lock plates immediately adjacent to the thin lock plate. Therefore, it is very hard for the thief to find the correct unlocking position of the lock plates so that the burglarproof and security effect is enhanced.
In the above lock core with different thicknesses of lock plates, the main body is formed with an axial socket. A wall of the axial socket is formed with a latch cavity. One end of the core body is axially recessed to form a receiving cavity for receiving the lock plates, whereby the lock plates are arranged in the receiving cavity. A drive slot and a bolt slot are formed on the receiving cavity. The lock bolt is normally positioned between the latch cavity and the bolt slot. Each of the lock plates is axially formed with a keyhole. A periphery of each lock plate is formed with an unlocking recess, whereby the lock bolt can be slid into the unlocking recesses. The periphery of at least one of the lock plates is formed with a protruding key.
In the above lock core with different thicknesses of lock plates, the face of the true key is formed with at least two kinds of parallel dents with different thicknesses and specifications corresponding to the arrangement positions of the lock plates. Accordingly, the true key can shift the corresponding lock plates respectively to unlock.
In the above lock core with different thicknesses of lock plates, different numbers of thick and thin lock plates are selectively arranged in the receiving cavity of the core body in different permutation/combination patterns. Therefore, the total number of the lock plates and the arrangement manner of the lock plates are varied to increase the difficulty for a thief to find the correct unlocking position and unlock the lock device. Moreover, the number of permutation/combination of the security code of the lock core is increased to greatly reduce the possibility of repeat of the same unlocking code.
In the above lock core with different thicknesses of lock plates, a bottom end of the receiving cavity of the core body is formed with a key cave, whereby a front end of the true key can be inserted into the key cave and rotated within the key cave. When the front end of the true key abuts against the bottom of the key cave, the dents of the true key are such positioned as to be precisely aligned with the lock plates respectively. Accordingly, the depth of the key cave can be varied in cooperation with the total number of the thick and thin lock plates and the arrangement manner thereof so as to increase the combination number of the security code of the lock device and increase the difficulty for a thief to unlock the lock device.
The lock core with different thicknesses of lock plates of the present invention is structurally characterized in that different thicknesses and specifications of lock plates are arranged in the core body. The present invention has the following advantages:
1. The lock plates have different thicknesses and are randomly arranged so that a thief cannot find the intervals between the lock plates. That is, the thief cannot position the tool in a correct position to shift the lock plates. Therefore, the difficulty for the thief to unlock the lock device is greatly increased.
2. When a thief uses a tool to shift a certain lock plate, it is very likely for the thief to drive the other lock plates immediately adjacent to the lock plate. Therefore, it is very hard for the thief to shift the lock plates to the correct unlocking positions. This enhances the burglarproof and security effect of the present invention.
3. The lock plates have at least two different thicknesses and specifications. The lock plates can be arranged in different manners to form different unlocking codes. Accordingly, the number of permutation/combination of the security code is greatly increased to reduce the possibility of repetition of the same unlocking code.
4. The present invention includes different thicknesses of lock plates. Therefore, in condition of same depth of receiving cavity, the total number of the lock plates will be larger than that of the lock plates with the same thickness of the conventional lock device. The increase of the total number of the lock plates will lead to increase of the number of permutation/combination of the security code of the present invention, whereby the possibility of repeat of the same unlocking code is reduced and the difficulty for a thief to unlock the lock device is greatly increased.
The present invention can be best understood through the following description and accompanying drawings, wherein:
Please refer to
The lock core with different thicknesses of lock plates of the present invention includes a main body 10, a core body 20 rotatably mounted in the main body 10 and normally latched with the main body 10 by means of a lock bolt 30, and multiple lock plates 40a, 40b with at least two different thicknesses and specifications. (For example, as shown in
The lock plates 40a, 40b in the core body 20 have at least two different thicknesses and specifications. The lock plates are randomly arranged and combined so that a thief cannot find the arrangement intervals between the lock plates 40a, 40b, that is, the thief cannot position a tool in a correct position corresponding to the respective lock plates 40a, 40b to shift the lock plates 40a, 40b one by one. In the case that the thief shifts a thin lock plate 40a with a tool 60 wider than the thin lock plate, the tool will also drive the other lock plates 40a or 40b immediately adjacent to the thin lock plate 40a. As a result, the thief cannot successfully find the correct unlocking position of the respective lock plates 40a, 40b so that the burglarproof and security effect is enhanced.
As shown in
Referring to
As shown in
Referring to
In the lock core with different thicknesses of lock plates of the present invention, the number of the thick lock plates 40a can be different from the number of the thin lock plates 40b. The different numbers of lock plates 40a, 40b can be randomly arranged to greatly increase the difficulty for a thief to find the true unlocking positions of the respective lock plates. Also, the permutation/combination number of the security code of the lock core is increased to greatly reduce the possibility of repetition of the same unlocking code.
Referring to
In the lock core with different thicknesses of lock plates of the present invention, a spacer plate 70 is disposed between two adjacent lock plates 40a or 40b to space the two adjacent lock plates 40a, 40b from each other. The periphery of the spacer plate 70 is formed with a flange 71 for reducing the friction between the two adjacent lock plates 40a, 40b and smoothening the relative rotation of the lock plates 40a, 40b.
When a thief tries to one by one shift the lock plates 40a, 40b in the core body 20 with a tool 60 having a width W1 larger than the thickness W2 of the thin lock plate 40a, in the case that the tool 60 is used to shift the thin lock plate 40a (as shown by the solid lines of
Referring to
Please now refer to
The lock core with different thicknesses of lock plates of the present invention is structurally characterized in that at least two different thicknesses and specifications of lock plates 40a, 40b are arranged in the core body. The present invention has the following advantages:
1. The lock plates 40a, 40b have different thicknesses and are randomly arranged so that a thief cannot find the intervals between the lock plates 40a, 40b. That is, the thief cannot position the tool 60 in a correct position to shift the lock plates 40a, 40b. Therefore, the difficulty for the thief to unlock the lock device is greatly increased.
2. When a thief uses a tool to shift a certain lock plate 40a or 40b, it is very likely for the thief to drive the other lock plates 40a or 40b immediately adjacent to the lock plate. Therefore, it is very hard for the thief to shift the lock plates 40a, 40b to the correct unlocking positions. This enhances the burglarproof and security effect of the present invention.
3. The lock plates 40a, 40b have at least two different thicknesses and specifications. The lock plates 40a, 40b can be arranged in different manners and the total number of the lock plates 40a, 40b can be changed to form different unlocking codes. Accordingly, the number of permutation/combination of the security code is greatly increased to reduce the possibility of repetition of the same unlocking code.
4. The present invention includes different thicknesses of lock plates 40a, 40b. Therefore, in condition of same depth of receiving cavity 21, the total number of the lock plates 40a, 40b will be larger than that of the lock plates with the same thickness of the conventional lock device. The increase of the total number of the lock plates 40a, 40b will lead to increase of the number of permutation/combination of the security code of the present invention, whereby the possibility of repetition of the same unlocking code is reduced and the difficulty for a thief to unlock the lock device is greatly increased.
The above embodiments are only used to illustrate the present invention, not intended to limit the scope thereof. Many modifications of the above embodiments can be made without departing from the spirit of the present invention.