The invention relates to the arrangement of the key for controlling the lock with a cylindrical plug and furthermore a lock for validating this key.
The closest document of the prior art for the subject of the submitted invention is the published international patent application WO 2015/051475 Al that describes the arrangement of the key for controlling the lock with a cylindrical plug and, furthermore, the lock for validating this key. The key shank consists of a hollow enclosed body where in the internal surface of the shank cavity is a shaped coding track, possibly a coding channel. The lock for validating the key includes a blocking arm with a reference to the coding track or channel. The key shank consisting of a hollow enclosed body with coding elements is also described in patent documents U.S. Pat. Nos. 587,603 and 494,340. The disadvantage of these arrangements is the limited number of lock combinations on the order of up to several tens of thousands.
The task of the submitted invention is to especially increase the level of security, distribution, and the combination capability of keys for locks with a cylindrical plug so that code reading is prevented or made maximally difficult.
The subject of this invention is a key for controlling a cylindrical plug and, furthermore, a lock assembly with at least one cylindrical plug, rotatable in its housing, where in the plug body in its outer longitudinal groove is situated a sprung sidebar, which is pushed to the inner surface of the housing.
The principle of the invention consists in the key shank body being in at least a part of its length formed by a hollow partially enclosed profile, the outer round surface of which is shaped so that the key shank is rotatable in the lock cavity, while at least in the end part of the lateral section of the shank an open cavity is created for inserting an arm of the validating lever of the lock.
At least a part of the shank may be created in the U- or V-shape, while in at least one such part of the shank, the bottom and/or the wall of the inner and outer arch of the shank is fitted with at least one open coding track and/or at least one coding channel with a shaped coding surface.
The shape and/or the dimensions and/or the position of the open shaped coding track and/or coding channel change in the direction of key insertion in the longitudinal axis of its shank.
In the partially enclosed key shank profile, there may be at least two coding channels that have tracks mutually separated or intersecting.
On the outer surfaces of the key shank, additional coding elements in the shape of dimples or holes and/or grooves may also be shaped.
The subject of this invention is also a lock for verifying the authorisation of the aforementioned key, where the lock contains at least one cylindrical plug with a cavity for inserting a hollow, partially enclosed profile of the key shank, where the shank body is at least in a part of its length formed by a hollow, partially enclosed profile, the outer round surface of which is shaped for turning the key in the lock's cavity. At least in the end part of the lateral key section, an open cavity is created for inserting the lock validating lever's arm. The cylindrical plug is rotatable in its housing while in the plug body, a sprung sidebar of the lock is situated in the outer longitudinal groove, pushed to the inner surface of the housing. The sidebar is adapted for inserting into the turning validating levers that are arranged in a row in the longitudinal axis of the plug on the pivot in the plug and they are located in the lateral slots along the plug's length. These validating levers are in the blocked functional state in case of incorrect coding of the key, preventing the insertion of the sidebar into the groove in the plug, thus turning the plug inside the lock housing, while in the unblocked state in case of correct key coding, they are in the functional position allowing for the movement of the sidebar in the direction into the groove in the plug and thus turning the plug inside the lock housing, while the validating levers at least protrude into the key's cavity, which allows for achieving contact between the validating levers and the code carriers, which are the coding tracks or channels in the key.
Every validating lever is formed by a two-arm lever where the shaped blocking end of this lever is adapted for inserting the sidebar, while the shaped end of the other arm of this lever, possibly its stump, is shaped for contact with the code carriers in the key.
The first, blocking, arm of the two-arm lever of the turning validating lever may be fitted with a protrusion for putting on a pushing spring situated inside the plug. The end of the other, coding arm of the two-arm lever of the validating lever may be shaped into a stump or a bill for contact with the open coding track or coding channel in a part of the inner wall of the partially enclosed key shank.
The blocking system contains the bar that is movable in the unblocked state between the bottom of the groove created in the lock housing and the slot in the blocking arm of the validating lever.
The lock contains at least a blocking pin adapted for ejecting into contact with the coding dimple of the key using a spring that is possible to insert into the sidebar, while the blocking pin is in case of incorrect key coding in the blocked functional state in a position preventing complete insertion of the sidebar into the groove in the plug and thus the turning of the plug inside the lock housing, while in the unblocked state in case of correct key coding, it is in the functional position allowing for moving the sidebar into a position in which the sidebar nose is inside the contour of the lock plug, and thus the turning of the plug inside the lock housing.
An advantage of the presented invention is especially such coding that is located in the inner cavity of the key shank and that prevents scanning the key using known means (a 2D or 3D scanner) and significantly limits the possibility of visual code reading. An advantage of the described invention is also the high resistance of the key against bending and twisting, given by the shape of the hollow beam with a round surface, and the high number of combinations of the lock, with which the key cooperates.
Examples of the lock assembly and the key for its control can be seen in the attached drawings.
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In the following description, the lock assembly and the key for its control are described. The lock contains one or two cylindrical plugs 1, where each of them is placed in its housing 2. In the plug body 1, a sprung sidebar 3 (see
With the sidebar 3, the turning blocking levers 5 cooperate, arranged in a row next to each other on a common pivot in the plug 1 and they are situated in lateral slots 6 along the length of the body of the plug 1 (
Every blocking lever 5 is formed by a two-arm lever, where, in the release functional position of the dividing surface between the plug 1. and the housing 2 of the lock, the sidebar 3 fits into the shaped end of the first arm 7 of this lever for allowing the turning of the plug 1 inside the housing 2 of the lock (
The basic shapes of the blocking levers 5 are shown in
The position or turning of the blocking lever 5, shown in
The key n for controlling the lock according to this invention has a shank 10, the body of which is at least in a part of its length formed by a hollow semi-enclosed profile with an open cleft 19 for inserting one arm (the first arm 7) of the two-arm lever of every turning blocking lever 5. The key 11 may be made of metal, glass, ceramics, plastic, stone and/or wood (composite with wood contents). The body of the shaft 10 is symmetrical against its longitudinal axis, with an advantage. The head of the key 11 has a thickness of approximately 3 mm, its steel shank 10 has a length of 25-35 mm, width of 10-13 mm, and wall thickness approximately 0.5-2 mm.
In one of the possible designs, the shank 10 of the key n has an external rounded surface 16 (
In another design of the key n (
In the outer surface of the shank 10 of the key n, additional coding elements in the shape of dimples or holes 20 and/or grooves 21 may be shaped (see
The sidebar 3 is furthermore adapted for cooperation with the vertically placed blocking pins 25, which are located in the vertical openings in the plug 1 and are pushed by the springs 26 into contact with the coding dimples 20 located on the external surface of the shank 10 of the key n (
The blocking system of the lock may also contain at least one blocking pin 25 (see
The key n may also contain additional coding based on the principle of at least one electronic, magnetic, or biometric sensor or their combinations. It may also include an electronic device serving for generating energy based on the key movements during its use.
1 . . . plug
2 . . . housing
3 . . . sidebar
4 . . . longitudinal groove in the inner surface of the housing
5 . . . validating levers
6 . . . plug body slots
7 . . . first (blocking) arm of the two-arm lever of the validating lever
8 . . . second (coding) arm of the two-arm lever of the validating lever
9 . . . open coding track
10 . . . key shank
11 . . . key
12 . . . key shank end
13 . . . blocking lever two-arm lever arm stump
14 . . . spring
15 . . . protrusion or bill
16 . . . outer key shank round surface
17 . . . U-shaped key shank part
18 . . . coding channel
19 . . . cleft
20 . . . coding dimples (in the key shank outer round surface 16)
21 . . . coding groove (in the key shank outer round surface 16)
22 . . . coil spring
23 . . . groove in the lock plug 1 for inserting the sidebar 3
24 . . . sidebar 3 nose
25 . . . blocking pin
26 . . . blocking pin spring
Number | Date | Country | Kind |
---|---|---|---|
PV 2016-529 | Sep 2016 | CZ | national |
PUV 2016-32953 | Oct 2016 | CZ | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CZ2017/000053 | 8/21/2017 | WO | 00 |