MECHANICAL SYSTEM FOR BLOCKING AND OPENING IN A LOCK THAT CAN BE ACTUATED VIA A KEY WITH A LINEAR MOVEMENT, WITHOUT ROTATION
20190063111 ยท 2019-02-28
Inventors
Cpc classification
E05B2015/0448
FIXED CONSTRUCTIONS
E05B29/0006
FIXED CONSTRUCTIONS
E05B63/20
FIXED CONSTRUCTIONS
International classification
E05B29/00
FIXED CONSTRUCTIONS
E05B63/20
FIXED CONSTRUCTIONS
E05B13/00
FIXED CONSTRUCTIONS
Abstract
The invention relates to a mechanical system for blocking and opening in a lock that can be actuated via a key with a linear movement, without rotation, which does not therefore require a rotation of the key to actuate the opening mechanism, not including any kind of cylinder system. Same comprises two complete parts, as shown in FIG. 1, a special key (1) and the system comprising the set of parts forming the lock. Upon introducing the key with a simple linear movement, and without needing to rotate same, the different mechanical actions are triggered that permit the unblocking of the lock, such that the individual notches of the key press on readers (2), which are to be calibrated, and, only if the position is correct, the mechanisms permitting the opening are released. Same is particularly applicable in embedded locks for all door configurations.
Claims
1. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, wherein a flat key participates therein, at the end of which a profile having a series of notches is defined, said lock itself being provided with a shield, with the corresponding slot for the key to pass through, being defined, inside the lock, a body of the key mechanism wherein a plurality of readers-feelers can be displaced by the end of said key being pressed against them, readers-feelers that have at the upper part thereof a series of notches that are aligned upon displacing through the correct profile of the key, said displacement being regulated by means of a distance gauge which is arranged just before the body of the key mechanism, in such a way that the distance gauge abuts the pushing shaft of the gauge, which displaces a bridging piece of a retaining plate being vertically displaced inside said bridging piece, such that in the body of the key mechanisms two notches are defined which are aligned to the notches alignment when inserting the correct key, all this assembly defining an accommodation for the retaining plate to be vertically fitted in, which comprises at the end thereof a flange which during the axial displacement caused by the key insertion displaces a washer, with an orifice that, when being in a stand-by condition, tends to be biased by the action of a spring, with respect to an orifice drilled in the body of the key mechanisms, said orifice through which a bolt is vertically displaced, which during the lower displacement thereof, presses onto a pawl acting as a rocker which in turn lifts an opening flange as a retaining element of an opening leg that tends to retracting the tongue by pulling thereof through a lug by the action of a spring, this tongue being in turn associated to a spring by means of which it is urged towards its extracting position and to the blocking position for the lock.
2. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein in the opening leg there is defined a rear inclined end and a rotating shaft, said element being associated to a spring, in such a way that before releasing the bolt, the opening leg is retained by the end of the opening flange.
3. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein the tongue has two cylinders, the tongue guide keeping it always in the same path.
4. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein the tongue can be displaced over a pushing cone, being blocked by means of a flat safety catch, which is introduced in a channel incorporating said pushing cone, thus being engaged, allowing the tongue to pass over in the opposite direction and be retracted.
5. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein the bolt, comprises a perimetral groove, into which the washer couples when this is biased from the orifice of the body of the mechanism.
6. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein the system further comprises an automatic locking system when closing the door and it is made up of an arming unit, which in a locking condition of the door is resting on the door frame, and upon opening thereof the arming unit is pushed outwards by a spring, being provided with a grooving into which the opening leg is intended to run, in such a way that during its retracting displacement it is susceptible of acting onto a mechanism cancelling the spring retracting force, this piece being engaged to the piece referred to as opening flange, by means of its end until the opening is actuated or a limiter is displaced until abutting with the plate forming the lock front, and thus pushing a flat safety catch, making this to come out of the channel of the pushing cone thus releasing it so that, at the moment of locking the door, a projection or arm of this piece pushes onto a chamfer edge of the safety catch of the locking tunnel, and being transversely displaced and provided with ribs susceptible of blocking, based on the transverse position thereof, lower ribs which are arranged in an extension of the tongue.
7. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 6, wherein the piece referred to as arming unit, at the front part thereof has a bearing coupled thereto so as to provide for friction originated with the frame when locking the door.
8. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein in order to open the door from inside, the device comprises a knob button, pushing the head of the knob shaft, which finishes at an end having a U-shaped perimetral groove, resting on the end of the knob leg, which is articulated to a tilting shaft as a rocker, in such a way that the axial displacement of the head of the knob shaft, transmits the movement to the piece referred to as knob leg which causes the opening flange to open, releasing, in turn, the opening leg with the lock being released.
9. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein the system further comprises a disarming button which is at the front of the lock, over the cavity for the tongue, said disarming button being fitted into the opening blocking rocker from inside, transmitting the movement to the inner opening disarming unit and this blocks the movement of the head of the knob shaft.
10. Mechanical blocking and opening system in a lock actuated by means of a key with linear movement without rotation, according to claim 1, wherein the inlet and direction slot of the key is assisted by a protective shutter mechanism for protection thereof.
Description
DESCRIPTION OF THE DRAWINGS
[0014] To implement the present description being made and in order to provide a better understanding of the characteristics of the invention, according to a preferred practical embodiment thereof, a set of drawings is attached as part of this description, with an illustrative but not limitative purpose, which represents the following:
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PREFERRED EMBODIMENT OF THE INVENTION
[0068] As it has been indicated, and as it can be appreciated in
[0069] The key (1), is introduced horizontally through the slot, also horizontal, which is in the shield (28), until reaching the bottom, in such a way that the unique notches (101) of the key push the readers-feelers (2), as it can be observed in
[0070] Before that, the inclined sides (102) of the key (1) abut against the distance gauge (29) which is arranged just before the body of the key mechanism (19) (see
[0071] The channel being defined once the notches (201) are aligned with the notches (191) is dimensioned so as to vertically couple with the retaining plate (3) in said channel, as it is shown in
[0072] Said retaining plate (3) finishes at one of the ends thereof in a flange (301), such that in the body of the key mechanisms (19) a guiding groove (192) is defined wherein the piece referred to as washer (4) is displaced by means of a projection (401) that runs into said guiding groove (192), having an orifice (402) of a diameter corresponding to that of the bolt (5) and being biased with respect to an orifice (193) established in the body of the key mechanisms (19), of the same diameter, in such a way that the washer (4) tends to be biased by the action of a spring blocking the bolt (5) that is inserted between these two orifices.
[0073] For a safe blocking of said bolt (5), this comprises a perimetral groove (501), into which the washer (4) couples when this is biased from the orifice (193) of the body of the mechanism (19).
[0074] Thereby, and as it can be observed in
[0075] At this point, the bolt (5) will fall, this being provided with an axial and radial orifice (502) into which the shaft of the bolt (6) is inserted, pressing onto the pawl (7), as it is shown in
[0076] This piece, the pawl (7), acts as a rocker element by means of a rotating shaft (701), and lifts the opening flange (8) related to said pawl (7) through an end (702) thereof, said flange running vertically in a guide of the flange (9), said flange (8) releasing in turn the piece referred to as opening leg (17).
[0077] More particularly, in the opening leg (17) there is defined a rear inclined end (171) and a rotating shaft (173), said element being associated to a spring (174), such that before releasing the bolt (5), the opening leg (17) is retained by the end (801) of the opening flange (8).
[0078] Upon releasing the opening leg (17), this draws the tongue (16) backwards, by means of a lug (161) onto which the end (171) of the opening leg (17) pushes against the tension of a spring associated to said tongue (16).
[0079] On the other hand, the tongue (16) has three orifices in its rear side, two orifices being cylindrical, where the tongue guides (18) slide with a linear movement, keeping it always in the same path, whereas the third orifice has a spring coupled thereto which is in charge of pushing said tongue at the locking moment.
[0080] Said tongue (16) comprises an extension (1601) having ribs susceptible of facing ribs (221) which are defined in the safety catch of the locking tunnel (20), displacing transversely with respect to the tongue (16) displacement through a locking tunnel (21) by means of a tongue and groove (20-21) system, said locking tunnel (21) being integral to the lock frame or casing.
[0081] Thus, based on the biased condition or not of the safety catch of the locking tunnel (20) with respect to the ribs being defined in the extension (1601) of the tongue, this could block or slide between the channels being defined between said ribs.
[0082] In order to control this biasing of the safety catch of the locking tunnel (24), and according to
[0083] According to
[0084] This last movement is not possible if the pushing cone (23) is not engaged at the bottom, since at the top, in its usual place, at the moment of closing the door, it is the one releasing the tongue (16) upon pushing the safety catch of the locking tunnel (24). Consequently, the pushing cone (23), defines the element that allows unblocking the opening.
[0085] The opening cycle from outside with the key is thus finished.
[0086] In this situation being described, the tongue (16) is in the stand-by position thereof, with the door being unblocked, it has passed between the channels of the safety catch of the locking tunnel (20), since the channels having inclined sides (221) if this piece and those of the tongue extension will have pushed the springs of the safety catch of the locking tunnel (20), but after said piece passing through these channels, the safety catch of the locking tunnel (20) returns to its position and prevents the tongue (16) to come out again. The transversal flat sides of both pieces remain opposite facing each other, thus preventing the tongue (16) to leave the stand-by position.
[0087] In said situation, two forces converge on the tongue (16), one spring (174) causes it to retract and another (162) pushes it outwards.
[0088] Upon opening the door, the piece referred to as arming unit (26) is released, wherein said piece had been up to that moment (with the door closed), resting onto the door frame forcing it to remain hidden. This arming unit (26) is provided with a grooving (263) into which the opening leg (17) is intended to run, relating the mechanism associated thereto to the position in which the arming unit is arranged.
[0089] Thus, when opening the door, the arming unit (26) is pushed outwards by a well-regulated spring (261), and the following operations are realized: [0090] 1. Taking the knob leg (10) up to the stand-by position thereof, by displacing the opening leg (17), thus cancelling the spring (174) retracting force, with this piece remaining engaged to the piece referred to as opening flange (8), by means of an end (801) thereof until the opening is actuated. [0091] 2. Taking the piece referred to as limiter (25), (see
[0092] The arming unit (26), at the front side thereof, has a bearing (262) being coupled for providing for the friction originated with the frame when locking the door. This bearing helps returning the arming unit (26) up to the locking position thereof.
[0093] In order to open the door from inside, it is only necessary to press the knob button (36), with the following pieces being involved: knob button (36), by pressing it the head of the knob is (11) is pushed, this finishing in an end having a perimetral U-shaped groove (1101), resting onto the end (1001) of the knob leg (10), which is articulated over a tilting shaft (1002), as a rocker, such that axial displacement of the head of the knob shaft (11), particularly its U-shaped groove, causes a slight angular displacement for the knob leg (10), which due to the proximity of the tilting shaft (1002), that small displacement is magnified at the opposite end (1003) thereof, said end causing the opening flange (8) to be lifted, releasing, in turn, the opening leg (17) and the opening movement is thus finished.
[0094] Likewise, it can be prevented from being open from inside by actuating the piece referred to as disarming button (15), which is at the front side of the lock (
[0095] These mechanisms are inside a box formed by plates, a front one, another rear, upper and lower one and the side, outer and rear cover, which close the system making up the lock.
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[0097] As it can be observed from the description and detail of the preferred embodiment of the invention, it is easily liable to industrial application, said industrial application being clearly guessed from the nature of the invention and explanation thereof.