EP3122968B1 - Serrure à loqueteau avec protection contre les manipulations par actionnement de loquet auxiliaire - Google Patents

Serrure à loqueteau avec protection contre les manipulations par actionnement de loquet auxiliaire Download PDF

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Publication number
EP3122968B1
EP3122968B1 EP15711803.5A EP15711803A EP3122968B1 EP 3122968 B1 EP3122968 B1 EP 3122968B1 EP 15711803 A EP15711803 A EP 15711803A EP 3122968 B1 EP3122968 B1 EP 3122968B1
Authority
EP
European Patent Office
Prior art keywords
latch
locking bar
locking
auxiliary
actuated
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP15711803.5A
Other languages
German (de)
English (en)
Other versions
EP3122968A1 (fr
Inventor
Peter Alexander Kruger
Matthijs Gerard VAN DAALEN
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Assa Abloy Sicherheitstechnik GmbH
Original Assignee
Assa Abloy Sicherheitstechnik GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from DE102014104124.0A external-priority patent/DE102014104124A1/de
Priority claimed from DE102014104101.1A external-priority patent/DE102014104101A1/de
Application filed by Assa Abloy Sicherheitstechnik GmbH filed Critical Assa Abloy Sicherheitstechnik GmbH
Priority to PL15711803T priority Critical patent/PL3122968T3/pl
Publication of EP3122968A1 publication Critical patent/EP3122968A1/fr
Application granted granted Critical
Publication of EP3122968B1 publication Critical patent/EP3122968B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/002Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing with arrangements allowing the wing to be slam-shut, e.g. by securing elements with latching action
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/10Bolts of locks or night latches
    • E05B15/102Bolts having movable elements
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/18Locks or fastenings with special structural characteristics with arrangements independent of the locking mechanism for retaining the bolt or latch in the retracted position
    • E05B63/20Locks or fastenings with special structural characteristics with arrangements independent of the locking mechanism for retaining the bolt or latch in the retracted position released automatically when the wing is closed
    • E05B63/202Locks or fastenings with special structural characteristics with arrangements independent of the locking mechanism for retaining the bolt or latch in the retracted position released automatically when the wing is closed a latch bolt being initially retained in an intermediate position and subsequently projected to its full extent when the wing is closed
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/18Details of fastening means or of fixed retaining means for the ends of bars
    • E05C9/1825Fastening means
    • E05C9/1833Fastening means performing sliding movements
    • E05C9/185Fastening means performing sliding movements parallel with actuating bar
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C7/00Fastening devices specially adapted for two wings
    • E05C7/04Fastening devices specially adapted for two wings for wings which abut when closed
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/04Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing with two sliding bars moved in opposite directions when fastening or unfastening

Definitions

  • the invention relates to a lock for a movable, preferably pivotally mounted wing of a door or a window with a wing-mounted lock mechanism with a locking device and an actuating device.
  • the latch means comprises an upper latch bar and / or a lower latch bar, i. at least one locking bar, on.
  • the locking device further comprises a preferably spring-mounted latch, which has an inlet slope and / or an outlet slope and is formed so that the case can be brought to form a locking position in a frame-mounted strike plate into engagement and to form an unlocked position out of engagement of the strike plate can be brought.
  • a lock a latch bar device.
  • This lock has no pivotally mounted trap.
  • the locking bar is spring-loaded and engages in the closed position of the door in the strike plate.
  • a clamping plate cooperates with the locking bar to hold the locking bar counter to its acting in the locking position spring loading in the unlocked position and to release the procedure in its locked position.
  • the control of the clamping plate via a cooperating with the strike plate auxiliary trapping device which is controllable via the strike plate and which cooperates with the clamping plate for blocking and releasing the locking bar.
  • a disadvantage of this construction is that with the door open, when the auxiliary latch is accidentally or manipulated intentionally, the locking bar extends into its locking position. The door can then no longer be closed by pulling. In addition, at Attempting to close the door by pulling while pulling the Rieglstange on the door frame Damage occurs.
  • the invention has for its object to provide a lock with a locking device with a locking bar, a pivotally mounted latch and an auxiliary latch device, the security against manipulation over the known from the prior art locks is improved.
  • the solution of claim 1 provides a lock for a movable, preferably pivotally movably mounted wing of a door or a window.
  • the lock has a wing-side mountable lock mechanism with a locking device and an actuating device.
  • the locking device has an upper locking bar and / or a lower locking bar, ie at least one locking bar, which can be actuated by the actuating device.
  • the locking device has a preferably spring-mounted latch, which has an inlet slope and / or an outlet slope and is formed so that the case to form a locking position in a frame-mounted strike plate can be brought into engagement and to form an unlocking except Engagement of the striker plate can be brought.
  • the at least one locking bar and the case are designed to be movable relative to each other and that the at least one locking bar for controlling the case cooperates directly or indirectly with the case. It is essential that the
  • Locking device in the case of an auxiliary trapping device having an auxiliary latch, which is controllable via the strike plate or a Sch spablech devises part and cooperates with the locking bar for blocking or release of the locking bar.
  • a switching element is interposed between the auxiliary latch and the locking bar.
  • the switching element cooperates with at least one blocking element, which is connected between the auxiliary latch and the switching element.
  • the at least one locking element may serve in preferred embodiments to hold the switching element in a retracted, retracted position.
  • the blocking element can in this case be controlled by the auxiliary trap.
  • the locking bar cooperates with at least one latching element, which is controllable by the switching element such that the latching element blocks the latching rod in a latching position and releases the latching rod in an off-latching position.
  • the functions a), b) and c) define the anti-tampering of the inventive solution according to claim 1.
  • the functions a), b), c) according to claim 1 are directed to the control of the blocking of the locking bar.
  • the locking bar is blocked with the wing open and lifted with the wing closed in the locking position, so that the locking bar can be extended in this position and / or extendable.
  • the tamper resistance of the solution according to claim 1 is high, because the functions a) and b) do not lead to a release of the locking bar, that is, in a) and b) the locking bar is blocked with the wing open, preferably blocked in its retracted position.
  • An actuated auxiliary trap is understood to mean a position and / or actuation of the auxiliary trap, as can be effected by the striking plate during closing and / or opening of the wing in the region of the closed position. It is a retraction of the auxiliary trap to the wing in the most general sense. The retraction can be done by axial movement and / or by pivoting movement.
  • the interaction of auxiliary latch and latch and with other components of the lock mechanism can be designed so that it depends primarily on the axial retraction when operating. However, embodiments are also possible in which it depends primarily or exclusively on the pivoting movement of the auxiliary latch.
  • actuated case Under actuated case is understood a position and / or admission of the trap, as it can be effected during closing and / or opening of the wing in the closed position by the strike plate. It is a retraction of the trap towards the wing in the most general sense. The retraction can be done by axial movement and / or by pivoting movement.
  • the interaction of auxiliary latch and latch and with other components of the lock mechanism can be designed so that it depends primarily on the axial retraction when operating. However, embodiments are also possible in which it depends primarily or exclusively on the pivoting movement of the case.
  • a switching element is interposed between the auxiliary latch and the locking bar.
  • the switching element cooperates with at least one blocking element, which is connected between the auxiliary latch and the switching element.
  • the switching element interacts with the latch via at least one blocking element such that in a first position of the switching element the at least one blocking element blocks the pivotability of the latch and in a second position of the switching element the at least one blocking element releases the pivotability of the latch.
  • the functions a), b) and c) define the tamper-proofing of the solution according to the invention according to claim 2. These functions can be realized both alone and in combination with the functions a), b), c) of the above-discussed solution according to patent claim 1.
  • the functions according to claim 2 are directed to the control of blocking the pivoting of the trap.
  • the functions a), b), c) according to claim 1 are directed to the control of the blocking of the locking bar. In these embodiments, the pivoting of the case is released with the sash open and blocked with the sash closed in the locked position.
  • the tamper resistance of the solution according to claim 2 is high, because the functions a) and b) do not lead to a blocking of the pivoting of the case, that is, in a) and b) the case remains pivotable with the wing open, so that the door in the open position can be moved freely and no collision of the pivotal latch on the strike plate or other stationary components can be done and thus damage or malfunction during closing can be avoided.
  • Only the function c) allows blocking of the pivoting of the trap.
  • the complex Function c) with subsequent steps as successively connected steps allows blocking the pivoting of the trap, which is required in the closed position of the door for locking, which is provided in this solution according to claim 2. This increases the security against manipulation of the lock with the sash open, since a plurality of successively arranged steps of the feature c) is required for blocking the pivoting of the latch.
  • An actuated auxiliary trap is understood to mean a position and / or actuation of the auxiliary trap, as can be effected by the striking plate during closing and / or opening of the wing in the region of the closed position. It is a retraction of the auxiliary trap to the wing in the most general sense. The retraction can be done by axial movement and / or by pivoting movement.
  • the interaction of auxiliary latch and latch and with other components of the lock mechanism can be designed so that it depends primarily on the axial retraction when operating. However, embodiments are also possible in which it depends primarily or exclusively on the pivoting movement of the auxiliary latch.
  • actuated case Under actuated case is understood a position and / or admission of the trap, as it can be effected during closing and / or opening of the wing in the closed position by the strike plate. It is a retraction of the trap towards the wing in the most general sense. The retraction can be done by axial movement and / or by pivoting movement.
  • the interaction of auxiliary latch and latch and with other components of the lock mechanism can be designed so that it depends primarily on the axial retraction when operating. However, embodiments are also possible where it depends primarily or exclusively on the pivotal movement of the trap.
  • the catch is movably supported in the extension direction of the locking bar and / or that the catch is pivotally mounted about a pivot axis which is arranged perpendicular to the direction of extrusion of the locking bar.
  • the case is spring-loaded in the extension direction of the locking bar, wherein the spring acts on the latch in the extension direction and / or that the spring-loaded case is pivotally mounted about the pivot axis, wherein the spring acts on the latch in its blocked or lockable pivot position.
  • the switching element may be designed as a shift fork.
  • the switching element has at least one stop surface which, when the auxiliary trap is not actuated, has at least one stop surface Locking element is in abutment and actuated auxiliary latch and operated latch with the at least one locking element is out of attack.
  • the auxiliary latch has at least one control cam for displacing the at least one blocking element (16).
  • the switching element interacts with the latch such that the switching element can be displaced by actuating the latch.
  • the displacement of the switching element may be designed such that the switching element comes out of contact with the at least one blocking element. This means that the at least one stop surface of the switching element is not applied to the at least one blocking element. In preferred embodiments, this corresponds to a release of the blocking element when the auxiliary latch is actuated.
  • the blocking element can now be moved spring-loaded into a position in which the blocking element no longer protrudes blocking into the movement path of the switching element.
  • the locking bar has a latching groove into which the at least one latching element engages in the latching position for blocking the latching rod.
  • the switching element has at least one control cam for displacing the at least one latching element.
  • a constructive particularly preferred embodiment provides that the switching element is designed as a shift fork, which has two prongs, which cooperate with a respective blocking element.
  • Fig. 1 shows a two-leaf door 1, which includes a passive wing 2 and an active wing 3, which are arranged in a door frame 4 on hinges 5.
  • the passive wing 2 can be fixed in the door frame 4 by means of upper and lower switch lock 6, which is arranged on the upper or on the lower front side.
  • the switching locks 6 are arranged on parallel to the vertical longitudinal sides of the passive wing 2 locking bars 7 with a central lock 8, i. with an actuating device of the lock 8, operatively connected.
  • the lock 8 has a pusher 8d, which cooperates with a coupling mechanism, wherein the coupling mechanism converts a rotary movement of the pusher 8d into simultaneous pushing movements of the locking rods 7.
  • the locking bars 7 are an upper locking bar and a lower locking bar. By depressing the pusher 8d, the locking bars 7 are moved in the direction of the lock, i. moved in the direction of the actuating device of the lock 8, and it will, as described below, the switching locks 6 unlocked. In this case, therefore, the upper locking bar 7 is moved down and the lower locking bar 7 upwards.
  • the active wing 3 has a lock 9 with a pusher 9d, wherein the lock 9 further comprises a latch and a latch.
  • the lock latch and the bolt are formed and arranged so that they engage in a arranged on the passive wing 2 strike plate.
  • the Fig. 2 to 8 show the structure of the upper switching mechanism 6 in detail.
  • the FIGS. 9 to 14 show the functions and the operation of the upper switching mechanism 6 in detail.
  • the position assignments "top” and “bottom” selected in the following description with respect to these figures correspond to the installation position of the upper switch lock 6. For the lower switch lock 6, these position assignments are to be interchanged.
  • Fig. 2 shows the upper portion of the switching mechanism 6, wherein in the illustrated switching position, the latch 11 engages in a receptacle in the strike plate 4s. As a result, the passive wing 2 is fixed to the door frame 4.
  • the switching mechanism 6 has a latch 11, and a bearing block 13, on which the latch 11 is pivotally mounted on.
  • the switching mechanism 6 further comprises an auxiliary latch 12 and a switching element 15 and a shift fork 15, respectively.
  • the bearing block 13, the auxiliary latch 12 and the shift fork 15 are movably mounted in the housing of the switching mechanism 6 in the axial direction.
  • the shift rod 17 can be seen.
  • the shift rod 17 is connected to the locking bar 7 and operatively connected to the actuator 8.
  • the switching mechanism 6 has the latch 11.
  • the case 11 engages in the closed position of the door in a on the door frame. 4 arranged strike plate 4s,
  • the latch 11 is pivotally mounted on the bearing block 13.
  • the latch 11 has a through hole 11d for receiving a journal 11z (FIG. Fig. 4d ) passing through a through hole 13d formed in a bearing block 13 ( Fig. 4b ) or is mounted in a differently designed pivot bearing bearing block side.
  • the bearing block 13 engages with its upper end portion in a slot formed in the lower end portion of the slot 11 a recess ( Fig. 4d ).
  • the bearing block 13 is by means of a return spring, not shown in the extension yet up, so acted upon by the actuator 8, applied.
  • the latch 11 has in its lower end portion further mutually opposite latching recesses 11r, engage in the sprung blocking elements 14 and locking pins 14 which cooperate with a shift fork 15 ( Fig. 5a ).
  • the shift fork 15 is used to lock and unlock the case eleventh
  • Fig. 5b shows the latch 11 in the locked state in which the locking pins 14 engage in the recesses 11r and thus prevent rotation of the latch 11.
  • the prongs of the shift fork 15 push the locking pins 14 into the latching recess 11r of the latch 11.
  • the locking pins 14 are mounted radially displaceably in the bearing block 13.
  • the locking pins 14 cooperate with a device which moves the locking pins 14 outwardly when the locking pins 14 are disengaged from the tines of the shift fork 15. This device may be controlled by the pivoting movement of the latch 11. It can be provided that corresponding to the case 11 and the locking pins 14
  • the locking pins are moved in this way outward when the tines of the shift fork 15 do not act on the Sperrstife 14. Additionally or alternatively, the locking pins can also be acted upon by associated springs radially outward.
  • Fig. 5c shows the latch 11 in the unlocked state by the case is in a rotated about its journal 11z position and the locking pins 14 are not engaged with the locking recesses 11r.
  • the trap 11 is now rotatable. In this rotatable position, the shift fork 15 is moved with respect to the case 11 down. The locking pins 14 no longer engage in the locking receptacles 11r of the latch 11 when the shift fork 15 is shifted downwards. This means that the latch 11 can now be pivoted about the axis of the journal 11z.
  • the shift fork 15 is formed of a tube having at its upper end portion two opposing forks 15z with bevelled switching edges 15f, which cooperate with the aforementioned locking pins 14.
  • the forks 15z are guided in guide slots 13f of the bearing block 13.
  • shift fork 15 At the lower end portion of the shift fork 15, two opposing arms 15a are arranged, which are directed towards the forks 15z end faces stop surfaces 15a for locking pins 16 form, as described below becomes.
  • the shift fork 15 is connected by means of a return spring 15r (FIG. Fig. 3 ) in a starting position recoverable, in which the case 11 is locked.
  • the auxiliary latch 12 has a tubular body in which the shift fork 15 and the bearing block 13 is received with the case 11.
  • the tubular body of the auxiliary latch 12 has a plurality of slot-shaped axially extending recesses. In the upper end section, the tubular body has a latch body with a slot-shaped recess for the passage of the latch 11.
  • the tubular body of the auxiliary latch 12 is formed in several parts. It is composed of an upper portion 12o and a lower portion 12u.
  • the lower portion 12u of the auxiliary latch 12 is formed of two half-shells.
  • the composite tubular body of the auxiliary latch 12 is acted upon by means of a return spring, not shown in the figures in the extension direction upwards, ie away from the actuator 8.
  • auxiliary latch 11 detects whether the door leaf is in the closed or open position.
  • auxiliary latch 12 In the in Fig. 2 illustrated position is the auxiliary latch 12 on the strike plate. In this position, the auxiliary latch 12 is partially retracted into the switching mechanism 6 and is prevented by the striking plate 4s to extend to its fully extended position.
  • the auxiliary latch 12 also serves to block and release the shift fork 15.
  • the auxiliary latch 12 in its lower portion on a control cam 12s, which serves to displace locking elements 16 and locking pins 16.
  • the locking pins 16 are controlled by the 12 formed in the lower portion of the auxiliary latch 12 in slit-shaped recesses cam.
  • the control cams 12s have two aligned with the longitudinal axis of the auxiliary latch 12 linear portions of different height, which are connected by an inclined switching portion.
  • the locking pins are so displaced by the control cams 12s of the auxiliary latch that the locking pins 16 protrude into the path of movement of the shift fork 15 and a movement of the shift fork 15 upwardly opposed.
  • the release position is shown in which the locking pins 16 do not protrude into the path of movement of the shift fork 15.
  • the blocking position is shown: Here, the locking pin 14 can be seen, on which an arm 15a of the shift fork 15 abuts. Characterized that the arm 15a of the shift fork 15 bears against the locking pin 16, the movement of the shift fork 15 is prevented here upwards. This means that in this position the latch 11 is pivotable.
  • the shift rod 17 is in FIG. 7b shown alone.
  • the switching rod is in operative connection with the actuating device of the lock 8 (FIG. Fig. 1 ).
  • FIG. 7a shows, the shift rod 17 passes through the shift fork 15.
  • the upper end portion of the shift rod 17 has a recess 17a, in which a transverse pin is inserted ( Fig. 7b ).
  • This cross pin cooperates with the shift fork 15.
  • the shift rod has a circumferential latching groove 17r.
  • locking elements 19 can retract (see Fig.7a and 7b ), which is a movement prevent the shift rod 17 upwards.
  • the locking elements are described in more detail below.
  • the Fig. 6a and 6b show a bearing element 18.
  • the constructed of two half-shells bearing element 18 has first guide recesses 18 e, in each of which a spring-loaded with a spring not shown in the figures detent element 19 is guided.
  • the latching element 19 cooperates with the circumferential latching groove 17r, which is formed on a shift rod 17 (see Fig. 7a and 7b ).
  • the locking element 19 is formed by a formed in the lower portion of the shift fork 15 control cams 15s (see Fig. 4c ) controlled.
  • the cams 15s have two aligned with the longitudinal axis of the shift fork 12 linear portions of different heights, which are connected by an inclined switching portion.
  • the bearing element 18 further has second guide recesses 18 fz, in each of which a further above in Fig. 3 described, spring-loaded locking pin 16 is guided.
  • the Fig. 9 to 14 show different operating states of the switching mechanism. 6
  • Fig. 9 shows the switching mechanism 6 with locked latch 11.
  • the switching rod 17 connected to the upper locking bar 7 assumes its upper position.
  • Fig. 10 shows the switch latch 6 with unlocked latch 11. The connected to the upper latch rod 7 shift rod 17 assumes its lower position.
  • Fig. 11 shows the switching mechanism 6 with unlocked and tilted trap 11th
  • Fig. 12 shows the switching mechanism 6 with tilted and in the housing of the switching mechanism 6 retracting trap 11th
  • Fig. 13 shows the switching mechanism 6 with retracted latch 11 and extended auxiliary latch 12 and the
  • Fig. 14 shows the switching mechanism 6 with the latch 11 extended and the auxiliary latch 12 extended.
  • FIG. 9 the switch lock 6 shown with locked passive wing.
  • FIG. 14 shows the switch lock 6 with the passive wing completely open.
  • the switching mechanism 6 is shown at various stages during the opening of the passive wing 2.
  • FIG. 9 shows the switching mechanism 6 with the passive wing 2 locked.
  • the switching rod 17 connected to the upper locking bar assumes its upper position.
  • the latch 11 is fully extended and does not engage in its associated one illustrated latch receptacle of the striking plate on the door frame a.
  • the auxiliary latch 12 is only partially extended. A complete extension of the auxiliary latch 12 is prevented by an arranged on the door frame, not shown strike plate.
  • the shift fork 15 is in its upper position, the forks 15z urge the locking pins 14 in the recesses 11z and thus prevent rotation of the case 11.
  • This position of the latch 11 on the shift fork 15 is in FIG. 5b shown.
  • the latch 11 is rigid in this position, that is torsionally rigid and / or not pivotable, since the shift fork 15 holds the latch 11 via the locking pins 146 in its illustrated rotational position.
  • FIG. 10 shows the switching mechanism 6 after pressing the actuator of the lock 8.
  • the operation can be done manually via a pusher 8d. But it is also possible that the actuating device is actuated by a motor.
  • the locking bar 7 is displaced in the direction of the lock 8.
  • the switching rod 17 connected to the upper locking bar 7 is likewise retracted in the direction of the lap 8.
  • the shift rod 17 is formed as the upper portion of the locking bar 7.
  • the shift fork 15 is moved by the shift rod 17.
  • the latch 11 remains in its fully extended position. The fact that the shift fork 15 is retracted, the forks 15z are out of engagement with the locking pins 14.
  • the locking pins 14 no longer engage in the locking recess 11r of the case 11 a. As a result, the blocking of the latch 11 is canceled.
  • the latch 11 is not rigid in this position, ie it is pivotable because the shift fork 15 at a distance, that is out of engagement of the locking pins 14 is.
  • FIG. 11 shows the switching mechanism 6 during the opening of the passive wing 2.
  • the positions of the auxiliary latch 12, the shift fork 15, the locking element 19 and the shift rod 17 are compared to the in FIG. 10 position shown unchanged.
  • Only the case 11 is pivoted, which is caused by striking the case 11 to the edge of the bolt receptacle of the door frame-side striker when pressing the passive wing 2.
  • the latch 11 is then no longer rigid in this switching position, since the latch 11 assumes a pivoting position, in which the locking pins 14 do not engage in the latching recesses of the latch 11r. In this pivotal position, the latch 11 remains pivotable, regardless of the position of the shift fork 15th
  • FIG. 12 shows the switching mechanism 6 in a further position during the opening of the passive wing 2.
  • the positions of the auxiliary latch 12, the locking element 19 and the shift rod 17 are compared to those in the Figures 10 and 11 represented positions unchanged.
  • FIG. 12 is the case 11 on the door frame side lock plate and now no longer engages in the bolt receptacle of the strike plate.
  • the shift fork 15 is opposite to in the Figures 10 and 11 Position shifted even further down.
  • the shift of the shift fork 15 is effected in that the locking pins 14 mounted on the bearing block 13 rest on the upper sides of the switching prongs 15 of the shift fork 15 and causes a displacement of the bearing block 13 down and thus a shift of the shift fork 15 down.
  • the shift fork 15 in the in FIG. 12 shown position the locking pins 14 can not push into the locking receptacles of the case 11, as in pivoted case 11, the locking receptacles 11 are not aligned with the bearing 13 a of the locking pins 14.
  • the trap 11 in the in FIG. 12 shown position is pivotable and not fixable. The trap 11 is still in the position as in FIG. 11 in which the trap 11 is not detected by the switching tines 15z.
  • auxiliary trap 12 in FIG. 13 no longer on the strike plate and is fully driven up under the effect of spring acting on it.
  • the displacement of the auxiliary latch 12 upwards in its fully extended position causes the locking pins 16 mounted in the wing-fixed bearing element 18 by the control edge 12s of the Auxiliary latch 12 are moved so that the locking pins 16 protrude into the range of movement of the shift fork 15, because the locking pins 16 are still applied by the slope of the control edges 12s.
  • FIG. 13 shows the switching mechanism 6 thus in a further position during the opening of the passive wing 2.
  • the positions of the locking element 19 and the shift rod 17 are compared to those in the Figures 10 , and 12 represented positions unchanged.
  • the case 11 is also still in contact with the door frame-side strike plate, so that the position of the case 11, the bearing block 13 and the shift fork 15 with respect to the in FIG. 12 position shown are unchanged. Only the auxiliary latch 12 is no longer on the strike plate.
  • FIG. 14 shows the switching mechanism 6 in its position with the passive wing 2.
  • the case 11 is no longer on the door frame side lock plate and is fully extended and the case 11 is its non-rotating rigid pivotal position.
  • the shift fork 15 is associated with a spring 15r, which is supported on the wing-fixed bearing member 18 and the shift fork 15 is acted upon in the direction of the extended position of the associated latch 11.
  • the bearing block 13 is associated with a spring 13r, which is also supported on the wing-fixed bearing block 18 and the bearing block 13 in the direction of the extended position of the associated latch 11 is applied. Under the action of the spring 13r, not shown, the bearing block 13 is urged together with the latched thereon in its fully extended position.
  • the shift fork 15 is urged upward by the action of the spring 15r.
  • the fact that the locking pins 16 in the Extend range of movement of the shift fork 15, the extension of the shift fork 15 is still limited above.
  • the locking pins 16 are in this case on the stop surfaces 15a of the shift fork 15, so that when the auxiliary latch 12 is extended further movement of the shift fork is prevented upwards and the shift fork 15 is held by the locking pins in a middle position.
  • open position of the passive wing remains the position of the locking element 19 and the control rod 17 relative to the in the FIGS. 10 to 13 position shown unchanged.
  • the locking element 19 is still applied to the locking groove 17 r of the control rod, whereby the control rod is held in its retracted position.
  • FIG. 14 shown position, which shows the switching mechanism 6 with the passive wing open.
  • both the auxiliary latch 12 and the bearing block 13 with the latch 11 mounted thereon are in their fully extended position.
  • the shift fork 15 is held by the locking pins 16 at a distance from the latch 11.
  • the shift fork 15 is disengaged from the latch 11. This means that the latch 11 is tiltable.
  • the locking element 19 is located on the locking groove 17r of the control rod 17, whereby the control rod 17 is held in its retracted position.
  • This position of the switching mechanism. 6 corresponds to the in Fig. 14 shown position with the difference that the case 11 is pivoted to the auxiliary case out.
  • the bearing block 13 with the latch 11 mounted thereon is pushed into the switch lock 6.
  • the passive wing and the auxiliary latch 12 comes into abutment against the strike plate ( Fig. 12 ) and is inserted together with the bearing block 13 and the case in the switch lock 6.
  • This position of the switching mechanism 6 corresponds to that in the Figures 12 and 12a shown position with the difference that the case 11 is pivoted to the auxiliary case out.
  • control cam 15s comes into contact with the latching element 19.
  • the latching element 19 is thereby pushed in the radial direction outwardly from the locking groove 17r of the control rod 17 out.
  • the control rod 17 and coupled to the control rod 17 locking bar 7 are then no longer fixed by the locking element 19.
  • the locking bar 7 can then also go up.
  • Essential in the switching mechanism 6 of the present invention is that the shift rod 17, and thus the locking bar 7 coupled thereto, only then is not fixed by the locking element 19 when the shift fork is moved upwards.
  • the shift fork can only go up when the auxiliary case 11 is partially retracted by the strike plate in the switch lock 6 and is prevented by the strike plate on the extension.
  • the upper and lower locking bars 7 and 6 are connected via a coupling mechanism of the lock 8, i. coupled via a coupling mechanism of the actuating device of the lock 8 with each other.
  • the locking element 19 is displaced by the control cam 15s of the shift fork 15, so that the shift fork can fully extend when the case 11 is extended in the door frame side recording.
  • a gravity compensation of the components is provided by spring action vertically upward, so that the case 11 without being acted upon by the locking bar downwards powered solely by gravity.
  • the extension path of the auxiliary latch 12 is basically already limited by stop.
  • the upper locking bar is acted upon by a spring in the locking direction and that the auxiliary latch with the upper locking bar cooperates such that the upper locking bar is held in its unlocked position as long as the closed position of the wing is not reached and that the upper latch bar is connected to the lower rack bar via a dome gear connecting the two latch bars for forced mutual movement.
  • the case 11 of the lower locking bar By controlling the case 11 of the lower locking bar by the upper switching mechanism 6 is achieved that the case 11, the lower locking bar with open passive wing 2 causes no damage to the bottom of a walk-through door 1 space. Rather, the lower locking bar is retracted despite pressed handle 8d of the passive wing 2, as in Fig. 13 shown and only leaves again when the case 11 is fully extended when closing the passive wing 2 in the strike plate 4s in the door frame side recording.
  • the actuator 8 acts via a handle 8b or via a not shown motor actuator to the case 11 only in the sense of unlocking the castle, ie only to the case 11 to move into the unlocking or at least free to turn the case 11 that they can drive in the unlocked position.
  • the locking of the Lock automatically takes place automatically, ie the latch 11 is self-locking, without a manual or motorized operation of the actuator 8 is required.
  • the locking takes place automatically as soon as the wing is brought into the closed position and thereby an actuation of the auxiliary latch 12 and an actuation of the latch 11 by abutment on the frame and / or on the strike plate.
  • said two conditions for the operation of the lock are required.
  • the operation of the auxiliary latch can be provided as the sole condition for the expiration of the lock.
  • FIG. 15 another embodiment of a lock is shown.
  • This lock has, in accordance with the lock described above, a latch 11 mounted on a bearing body 13, a switching element 15 and an auxiliary latch device 12.
  • the main difference to the castle FIGS. 1 to 12 is that the lock according to Fig. 15 a locking ring 20 for locking the bolt control member 17 and further comprises an actuator 29.
  • the clamping ring 20 and the actuator 29 will be described below.
  • the clamping ring 20 is displaceably mounted in the lower region of the sleeve-shaped housing body 6g facing away from the catch 11.
  • the clamping ring 20 has substantially the shape of a hollow cylinder.
  • the clamping ring 20 has a projection with which the clamping ring 20 is mounted against rotation in a slot 6gs in the housing body 6g.
  • the auxiliary latch device 12 is slidably disposed in the housing body 6g.
  • the auxiliary latch device 12 is supported at least in sections on the clamping ring 20.
  • the clamping ring 20 and the auxiliary latch device 12 are acted upon by a helical compression spring 20r in the direction of the latch 11 out.
  • the helical compression spring 20r is supported on a support ring 20rs.
  • the support ring 20rs has three projections, with which the support ring 20rs fixed to the housing can be inserted into the housing body 6g.
  • the housing body 6g has three corresponding insert receivers 6ge for the support ring 20rs.
  • the bolt control member 17 passes through the clamping ring 20 from below coaxially through the coil spring 20r and the support ring 20rs cross-reaching.
  • the auxiliary trapping device 12 is supported on the upper side of the clamping ring 20.
  • the auxiliary trapping device 12 is actuated by the frame, preferably by a frame side mounted striking plate and thus the clamping ring 20 is displaced by the auxiliary trapping device 12 against the action of the helical compression spring 20r to the lower end of the housing body 6g out.
  • the axis of the hollow cylindrical clamping ring 20 is aligned with the axis of the bolt control member 17.
  • the bolt control member 17 is only encompassed by the clamping ring 20, with a certain clearance between the outer diameter of the bolt control member 17 and the inner diameter of the clamping ring 20 is present.
  • the bolt control member 17 is freely movable in this position by the clamping ring 20 without clamping.
  • the auxiliary latch device 12 When the auxiliary latch device 12 no external forces act, the auxiliary latch device 12 and the clamping ring 20 by the force of Pressed helical compression spring towards the case out.
  • the clamping ring 20 On its one side, the clamping ring 20 is held by its projection in the upper end of the slot 6gs of the housing body 6g.
  • the clamping ring 20 On its side opposite the projection, the clamping ring 20 is displaced upward due to the force of the helical compression spring 20r. In this position, the clamping ring 20 is tilted to the bolt control member, ie that the axis of the hollow cylindrical clamping ring 20 is no longer aligned with the axis of the bolt control member 17.
  • the bolt control member 17 is fixed by the clamping ring in clamping engagement, so that the bolt control member 17 is clamped immovable when the auxiliary trapping device 12 is extended.
  • the actuator 29 is inserted at the falling end of the bolt control member 17.
  • the actuator 29 has an end facing away from the bolt control member 17 has a widened head, which serves to cooperate with the switching element 15. It is essential that the actuator 29 is variable with respect to its depth in the bolt control member 17 can be used. By this is meant that the head of the actuator 29, the fall-side end of the bolt control member 17 is preferably more or less far beyond the adjustable variable.
  • the actuator 29 has an external thread and the bolt control member 17 at its fall-side end with a Internal thread is provided.
  • the height at which the head of the actuator 29 projects beyond the bolt control member 17, can be variably adjusted by appropriate screwing.
  • the bolt control member 17 has a plurality of locking receptacles, so that the actuator 29 can be inserted at different heights in the bolt control member 17.
  • the operation of the bolt control member 17 and the actuator 29 is the following.
  • the bolt control member 17 Upon actuation of the actuator 8 by a handle or a motor drive device, the bolt control member 17 is moved together with the attached actuator 29 away from the case 11 and on the switching member 15.
  • the head of the actuator 29 reaches a driving edge of the switching member 15, so that in this case the switching member 15 is taken from the actuator.
  • the latch 11 is transferred to its pivotal position, since the forks of the switching member 15 are disengaged from the blocking pins.
  • the actuator 29 can be used in variable depth in the bolt control member 17, it can be adjusted whether the operating member 8, the switching member 15 is taken immediately or only after a certain actuation travel of the bolt control member 14. Whether the switching member 15 is taken immediately upon actuation of the actuator 8 from the bolt control member 17 or only in the course of the actuation path of the bolt control member 17 depends on how the lock is to be used.
  • the lock When using the lock as an upper lock on a passive leaf of a double-leaf door can be provided that the lock with a Fallen / Riegelauswerfersch the passive leaf acts together.
  • the passive leaf acts together.
  • it is important that the locking position of the latch 11 of the lock is only canceled after the ejector of the trap / Riegelauswerferments were operated.
  • the actuator 29 is inserted into the bolt control member 17, that in the locking position of the lock between the head of the actuator 29 and the switching member 15 is a relatively large distance.
  • the locking position of the latch 11, i. the non-pivoting of the latch 11 is canceled immediately upon actuation of the actuator 8.
  • the actuator 29 is inserted into the bolt control member 17 during assembly of the lock, that in the locking position of the lock between the head of the actuator 29 and the switching member 15 is as small a distance as possible. This means that the actuator 29 is inserted relatively far immersed in the bolt control member 17.
  • the case 11 cooperates with the auxiliary trapping device 12 and / or the bolt control member 17 such that the case 11 can be brought by a closing plate side actuation of the auxiliary trapping device 12 in its Verrieglungs ein and / or freely switchable, without requiring a closing plate side actuation of the Trap 11 is required.
  • the release device is designed as a cooperating with the latch control element 17 and / or the case 11 clamping device 20, and that the auxiliary latch device 12 directly with a release device of the latch control element 12 and / or the latch 11 cooperates in the previous FIGS. 2 to 14 illustrated embodiments is provided in contrast to the fact that the case 11 cooperates with the auxiliary trapping device 12 and / or the bolt control member 17 such that the latch 11 can be brought and / or released only in their locking position when a closing plate side actuation of the auxiliary trapping device 12 by retracting the Help trap device 12 and a closing plate side actuation of the latch 11 by pivoting the case 11 is done.
  • FIG. 16 relates to a modified embodiment in which the pivotal latch 11 via a spring 11f in the in Fig. 16 shown pivoting position is acted upon.
  • This pivot position is referred to below as the first pivot position.
  • Fig. 16 shows only the modified in this embodiment assembly of the case 11 with the spring 11f. It concerns the assembly, which for the preceding embodiment in Fig. 4d is shown.
  • the remaining structure and functions of the modified embodiment correspond to the embodiment of FIGS. 1 to 15 ,
  • the spring 11f is designed as a leg spring. It is supported on the bearing body 13, in which a bearing pin 13z, which is inserted in the bearing body 13, engages in a receiving hole in the one leg of the spring 11f, the other leg of the spring engages in a receiving hole 11o in the case 11 a.
  • the second pivot position against the action of the spring 11f is obtained only temporarily, when the through the handle 8d (see Fig. 1 ) actuated locking bar 7, the pivoting of the latch 11 releases and during this operation of the handle 8 d, the case 11 is pivoted when opening the door by stop on the frame in the second pivot position and the case is retracted by moving in locking bar extension direction in the door. Immediately after reaching the closed position of the door, the pivotal latch extends and is returned by the spring 11f in the first pivot position.
  • the spring action of the case 11 with the door open has the consequence that in the open position of the door, the case 11 is always in the first pivot position.
  • the case 11 is in a position in which the pivotability of the case 11 can not be blocked by the shift fork 15.
  • the case 11 can not be blocked by the shift fork here, because the shift fork 15 is held with the door open as in the previous embodiment by the locking pins 16 in their non-blocking case 11, in which they have been brought by the unlocking operation when opening the door is and the shift fork 15 is out of engagement with the latch 11. Only in the closed position of the door is the shift fork 15 by the action of the auxiliary latch 12 out of engagement of the locking pins 16. In this switching position, the shift fork 15 blocks the case 11.
  • the spring 11f acts as already explained on the case 11, in that the spring 11f acts on the latch in the first pivot position both in the closed position and in the open position of the door. This means that in the closed position of the door, in which the shift fork 15 is in its position blocking the pivoting of the latch, the pivotability of the latch 11 is blocked by the shift fork 15.
  • the second pivot position of the latch 11 adjusts itself by striking the latch on the frame when the door is acted upon in the closed position in the opening direction.
  • a particular advantage of the lock is that when the door is open, the lock against tampering by manually pressing the auxiliary latch 12 and / or the latch 11 is secured. This means that by depressing the auxiliary latch 12 and / or the latch 11 with the door open no extension of the lower locking bar is triggered. The movement rod 17 coupled with the lower locking bar is held by the locking elements 19 in each case. In the illustrated embodiment, the pivoting of the latch 11 is released at the same time in these cases, and thus does not block the pivoting.
  • the bearing block 13 with the case 11 mounted thereon and the auxiliary latch 12 are in their positions extended from the lock.
  • the shift fork 15 is through the locking pins 16 held in a retracted position, wherein the locking pins 16 abut the stop surfaces 15 a of the shift fork 15.
  • the latch 11 is freely pivotable because the shift fork 15 is in its retracted position and thus out of engagement with the latch 11, that is, the blocking elements 14 do not block the pivotability of the latch 11.
  • the control rod 17 is also blocked by the locking elements 19.
  • auxiliary latch 12 If the auxiliary latch 12 is manually pressed into the lock interior with the door open, the control cams 12s of the auxiliary latch 12 come out of contact with the locking pins 16.
  • the locking pins 16 Due to the friction occurring between the abutment surfaces 15a of the shift fork 15 and the locking pins 16, the locking pins 16 can not move.
  • the force of the springs, not shown, which seek to lock the locking pins 16 in their position releasing the shift fork 15 is not sufficient to overcome the static friction occurring between the abutment surfaces 15a of the shift fork 15 and the locking pins 16 due to the spring 15r. Thereby, the shift fork 15 is secured in its retracted position, even if the auxiliary latch 12 is pressed with the door open.
  • auxiliary latch 12 and also the latch 11 are manually pressed into the lock interior with the door open, then the control cams 12s of the auxiliary latch 12 are out of contact with the locking pins 16.
  • the shift fork 15 together with the pressed-in latch 11 is also displaced into the lock interior , so that the stop surfaces 15a of the shift fork 15 no longer abut the locking pins 16.
  • the locking pins 16 are displaced by locking pin springs, not shown, in their shift fork 15 releasing position.
  • shift fork 15 and bearing block 13 come first the cams 12s of the auxiliary latch 12 with the locking pins 16 into abutment, whereby the locking pins 16 are displaced in their the shift fork 15 blocking position.
  • the shift fork 15 and the bearing block 13 the abutment surfaces 15 a of the shift fork 15 hit the locking pins 16, whereby the further extension movement of the shift fork 15 is stopped and whereby the shift fork 15 is held in a retracted position. Only the auxiliary latch 12 and the bearing block 13 with the latch 11 mounted thereon can reach their fully extended positions.
  • the shift fork 15 is held in a retracted position and does not come into contact with the locking elements 19, which in the case of contact would lead to a release of the control rod 17 and to an extension of the lower locking bar. Furthermore, in this position, the tines of the shift fork 15 are not engaged with the blocking elements 14. This has the consequence that the pivotability of the latch 11 is maintained.
  • the control cams 12s of the auxiliary latch 12 come out of contact with the locking pins 16 when the auxiliary latch 12 and also the latch 11 are pressed into the lock interior. Since the shift fork 15 are displaced together with the indented case 11 in the lock interior, the abutment surfaces 15a of the shift fork 15 are no longer at the locking pins 16 at. The locking pins 16 are displaced by locking pin springs, not shown, in their shift fork 15 releasing position.
  • a latch 11 can be used which is not pivotable about an axis perpendicular to the extension direction of the locking bar, but is designed to be relatively movable relative to the locking bar only in the direction of extension of the locking bar.
  • the above-described functions a), b) and c) are modified insofar exist that only the locking bar as in a), b) and c) is blocked or released.
  • actuating the trap means retracting or retracting the trap. Constructively arise in the embodiment with non-pivoting latch 11 simplifications.
  • the components relating to the pivotal mounting and the control of the pivoting can be eliminated or simplified accordingly.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Structural Engineering (AREA)
  • Lock And Its Accessories (AREA)

Claims (11)

  1. Serrure pour un battant logé de manière mobile, de préférence de manière pivotante, d'une porte ou d'une fenêtre
    avec un mécanisme de serrure pouvant être monté côté battant avec un dispositif de verrouillage (6, 7) et un dispositif d'actionnement (8, 8d), dans laquelle il est prévu que
    - le dispositif de verrouillage (6, 7) comprenne une tige de verrou supérieure (7, 17) et/ou une tige de verrou inférieure (7), c'est-à-dire au moins une tige de verrou qui peut être actionnée par le dispositif d'actionnement (8, 8d),
    - le dispositif de verrouillage (6, 7) comprend un pêne demi-tour (11) logé de préférence de manière élastique, qui comprend un chanfrein d'entrée et/ou un chanfrein de sortie et qui est conçu de façon à ce que le pêne demi-tour (11) puisse être emboîté dans une gâche (4s) montée côté châssis en formant une position de verrouillage et puisse être déboîté de la gâche (4s) en formant une position de déverrouillage,
    - l'au moins une tige de verrou (7, 17) et le pêne demi-tour (11) sont conçus de manière mobile l'un par rapport à l'autre et l'au moins une tige de verrou (7, 17) interagit directement ou indirectement avec le pêne demi-tour (11) pour le contrôle du pêne (11),
    - le dispositif de verrouillage (7) comprend, au niveau du pêne demi-tour (11), un dispositif de pêne auxiliaire avec un pêne auxiliaire (12), qui peut être contrôlé par l'intermédiaire de la gâche (4s) ou d'une partie côté gâche et qui interagit avec la tige de verrou (7, 17) pour le blocage ou la libération de la tige de verrou (7, 17),
    dans laquelle l'au moins une tige de verrou (7, 17) interagissant avec le pêne demi-tour (11) et le pêne auxiliaire (12) de façon à ce que
    a) lorsque le pêne auxiliaire (12) est actionné et le pêne demi-tour (11) n'est pas actionné, la tige de verrou (7, 17) soit bloquée et ne soit pas libérée et
    b) lorsque le pêne auxiliaire (12) est actionné et le pêne demi-tour (11) est actionné simultanément, la tige de verrou (7, 17) soit bloquée et ne soit pas libérée et
    c) lorsque le pêne auxiliaire (12) est actionné et le pêne demi-tour (11) est actionné simultanément, un arrêt suivant de l'actionnement du pêne demi-tour (11), alors que le pêne auxiliaire (12) est toujours actionné, provoque l'arrêt du blocage de la tige de verrou (7, 17) et donc la libération de la tige de verrou,
    dans laquelle, entre le pêne auxiliaire (12) et la tige de verrou (7, 17), un élément de commutation (15) est intercalé et dans laquelle l'élément de commutation (15) interagit avec au moins un élément de blocage (16) qui est disposé entre le pêne auxiliaire (12) et l'élément de commutation (15) et la tige de verrou (7, 17) interagissant avec au moins un élément d'encliquetage (19) qui peut être contrôlé de façon à ce que l'élément d'encliquetage (19), dans une position d'encliquetage, bloque la tige de verrou (7, 17) et, dans une position de désencliquetage, libère la tige de verrou.
  2. Serrure pour un battant logé de manière mobile, de préférence de manière pivotante, d'une porte ou d'une fenêtre, de préférence conçue selon la revendication 1, avec un mécanisme de serrure pouvant être monté côté battant avec un dispositif de verrouillage (6, 7) et un dispositif d'actionnement (8, 8d), dans laquelle il est prévu que
    - le dispositif de verrouillage (6, 7) comprenne une tige de verrou supérieure (7, 17) et/ou une tige de verrou inférieure (7), c'est-à-dire au moins une tige de verrou qui peut être actionnée par le dispositif d'actionnement (8, 8d),
    - le dispositif de verrouillage (6, 7) comprend un pêne demi-tour (11) logé de préférence de manière élastique, qui comprend un chanfrein d'entrée et/ou un chanfrein de sortie et qui est conçu de façon à ce que le pêne demi-tour (11) puisse être emboîté dans une gâche (4s) montée côté châssis en formant une position de verrouillage et puisse être déboîté de la gâche (4s) en formant une position de déverrouillage,
    - l'au moins une tige de verrou (7, 17) et le pêne demi-tour (11) sont conçus de manière mobile l'un par rapport à l'autre et l'au moins une tige de verrou (7, 17) interagit directement ou indirectement avec le pêne demi-tour (11) pour le contrôle du pêne demi-tour (11),
    - le dispositif de verrouillage (6, 7) comprend, au niveau du pêne demi-tour (11), un dispositif de pêne auxiliaire avec un pêne auxiliaire (12), qui peut être contrôlé par l'intermédiaire de la gâche (4s) ou d'une partie côté gâche et qui interagit avec la tige de verrou (7, 17) pour le blocage ou la libération de la tige de verrou (7, 17),
    dans laquelle le pêne demi-tour (11) est conçu de façon pivotante autour d'un axe perpendiculaire à la direction d'extension de la tige de verrou (7, 17) et la capacité de pivotement du pêne demi-tour (11) pouvant être bloquée ou libérée, la tige de verrou (7, 17) interagissant avec le pêne demi-tour (11) et avec le pêne auxiliaire (12) de façon à ce que
    a) lorsque le pêne auxiliaire (12) est actionné et le pêne demi-tour (11) n'est pas actionné, la capacité de pivotement du pêne demi-tour (11) soit libérée et ne soit pas bloquée et
    b) lorsque le pêne auxiliaire (12) est actionné et le pêne demi-tour (11) est actionné simultanément, la capacité de pivotement du pêne demi-tour (11) soit libérée et ne soit pas bloquée et
    c) lorsque le pêne auxiliaire (12) est actionné et le pêne demi-tour (11) est actionné simultanément, un arrêt suivant de l'actionnement du pêne demi-tour (11), alors que le pêne auxiliaire (12) est toujours actionné, provoque l'activation du blocage de la capacité de pivotement du pêne demi-tour (11),
    dans laquelle, entre le pêne auxiliaire (12) et la tige de verrou (7, 17), un élément de commutation (15) est intercalé et dans laquelle l'élément de commutation (15) interagissant avec au moins un élément de blocage (16) qui est disposé entre le pêne auxiliaire (12) et l'élément de commutation (15) et l'élément de commutation (15) interagissant avec le pêne demi-tour (11) par l'intermédiaire d'au moins un élément de blocage (14) de façon à ce que, dans une première position de l'élément de commutation (15), l'au moins un élément de blocage (14) bloque la capacité de pivotement du pêne demi-tour (11) et, dans une deuxième position de l'élément de commutation (15), l'au moins un élément de blocage (14) libère la capacité de pivotement du pêne demi-tour (11).
  3. Serrure selon la revendication 1 ou 2,
    caractérisée en ce que
    le pêne demi-tour (11) est logé de manière mobile dans la direction d'extension de la tige de verrou (7, 17) et/ou le pêne demi-tour (11) est logé de manière pivotante autour d'un axe de pivotement qui est perpendiculaire à la direction d'extension de la tige de verrou (7, 17).
  4. Serrure selon la revendication 3,
    caractérisée en ce que
    le pêne demi-tour (11) est logé avec une sollicitation par un ressort dans la direction d'extension de la tige de verrou (7, 17), le ressort sollicitant le pêne demi-tour (11) dans la direction de sortie et/ou le pêne demi-tour (11) est logé de manière pivotante avec sollicitation d'un ressort autour de l'axe de pivotement, le ressort sollicitant le pêne demi-tour (11) vers sa position de pivotement bloqué ou bloquable.
  5. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    l'élément de commutation (15) comprend au moins une surface de butée (15a) qui, lorsque le pêne auxiliaire (12) n'est pas actionné, est en butée avec l'au moins un élément de blocage (16) et, lorsque le pêne auxiliaire (12) est actionné et le pêne demi-tour (11) est actionné, n'est pas en butée avec l'au moins un élément de blocage (16).
  6. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    le pêne auxiliaire (12) comprend au moins une came de commande (12s) pour le déplacement de l'au moins un élément de blocage (16).
  7. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    l'élément de commutation (15) interagit avec le pêne demi-tour (11) de façon à ce que l'élément de commutation (15) puisse être déplacé par l'actionnement du pêne demi-tour (11).
  8. Serrure selon l'une des revendications 2 à 6,
    caractérisée en ce que
    la tige de verrou (7, 17) interagit avec l'au moins un élément d'encliquetage (19), qui peut être contrôlé par l'élément de commutation (15) de façon à ce que l'élément d'encliquetage (19), dans une position d'encliquetage, bloque la tige de verrou (7, 17) et, dans une position de désencliquetage, libère la tige de verrou.
  9. Serrure selon la revendication 8,
    caractérisée en ce que
    la tige de verrou (7, 17) comprend une rainure d'encliquetage (17r) dans laquelle l'au moins un élément d'encliquetage (19) s'emboîte, dans la position d'encliquetage, pour le blocage de la tige de verrou (7, 17).
  10. Serrure selon la revendication 8,
    caractérisée en ce que
    l'élément de commutation (15) comprend au moins une came de commande (15f) pour le déplacement de l'au moins un élément d'encliquetage (19).
  11. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    l'élément de commutation (15) est conçue comme une fourche de commutation (15) qui comprend deux dents (15z) qui interagissent chacune avec un élément de blocage (14).
EP15711803.5A 2014-03-25 2015-03-25 Serrure à loqueteau avec protection contre les manipulations par actionnement de loquet auxiliaire Active EP3122968B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL15711803T PL3122968T3 (pl) 2014-03-25 2015-03-25 Zamek przełącznikowy z zabezpieczeniem przed manipulacją przeciw uruchomieniu zapadki pomocniczej

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
DE102014104124.0A DE102014104124A1 (de) 2014-03-25 2014-03-25 Riegelstangen/Klemmschloß
DE102014104101.1A DE102014104101A1 (de) 2014-03-25 2014-03-25 Schaltschloss für Riegelstange
DE102015000609 2015-01-16
DE102015000608 2015-01-16
PCT/EP2015/056476 WO2015144792A1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau avec protection contre les manipulations par actionnement de loquet auxiliaire

Publications (2)

Publication Number Publication Date
EP3122968A1 EP3122968A1 (fr) 2017-02-01
EP3122968B1 true EP3122968B1 (fr) 2019-04-24

Family

ID=52727158

Family Applications (5)

Application Number Title Priority Date Filing Date
EP15711803.5A Active EP3122968B1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau avec protection contre les manipulations par actionnement de loquet auxiliaire
EP15713680.5A Active EP3122970B1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau pour barre de verrouillage avec ressort
EP15713681.3A Active EP3122971B1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau pour barre de verrouillage
EP15718454.0A Active EP3122966B1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau pour barre de verrouillage avec temporisation
EP15712882.8A Active EP3122969B1 (fr) 2014-03-25 2015-03-25 Barre de verrouillage/serrure de blocage

Family Applications After (4)

Application Number Title Priority Date Filing Date
EP15713680.5A Active EP3122970B1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau pour barre de verrouillage avec ressort
EP15713681.3A Active EP3122971B1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau pour barre de verrouillage
EP15718454.0A Active EP3122966B1 (fr) 2014-03-25 2015-03-25 Serrure à loqueteau pour barre de verrouillage avec temporisation
EP15712882.8A Active EP3122969B1 (fr) 2014-03-25 2015-03-25 Barre de verrouillage/serrure de blocage

Country Status (5)

Country Link
EP (5) EP3122968B1 (fr)
ES (4) ES2698423T3 (fr)
PL (5) PL3122970T3 (fr)
TR (1) TR201815951T4 (fr)
WO (5) WO2015144785A1 (fr)

Families Citing this family (2)

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Publication number Priority date Publication date Assignee Title
IL281744B2 (en) * 2018-09-23 2024-04-01 Dan Raz Ltd panel lock assembly
TWI792956B (zh) * 2022-03-23 2023-02-11 富世達股份有限公司 按壓式伸縮推抵裝置與收納設備

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Publication number Priority date Publication date Assignee Title
US1368141A (en) * 1919-06-14 1921-02-08 Hagstrom Carl John Concealed french-casement lock
IT1259256B (it) * 1992-03-24 1996-03-11 Italiana Serrature Affini Controserratura per porte di sicurezza a due ante
US6820905B1 (en) * 2000-07-26 2004-11-23 Detex Corporation Vertical panic exit device
FR2829520B1 (fr) * 2001-09-11 2004-11-12 Jpm Sa Serrure a montage universel
FR2885155B1 (fr) 2005-04-29 2007-07-27 Jpm Sas Soc Par Actions Simpli Serrure a deux positions de blocage longitudinalement decalees.
EP1887170B1 (fr) * 2006-08-09 2009-10-07 SAVIO S.p.A. Module de sécurité auxiliaire pour portes avec un dispositif d'ouverture anti-panique
US7641244B2 (en) * 2007-10-24 2010-01-05 Thase Enterprise Co., Ltd. Fire door lock
DE202012010248U1 (de) * 2012-10-26 2014-01-29 Wilh. Schlechtendahl & Söhne GmbH & Co. KG Schnäpperschloss, insbesondere als Zusatzverriegelung einer Tür, eines Tors oder eines Fensters
DE202012012085U1 (de) * 2012-12-18 2014-03-19 Wilh. Schlechtendahl & Söhne GmbH & Co. KG Schaltschloss
DE102013001821A1 (de) 2013-01-11 2014-07-17 Wilh. Schlechtendahl & Söhne GmbH & Co. KG Gegenkasten oder Einsteckschloss

Non-Patent Citations (1)

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Title
None *

Also Published As

Publication number Publication date
WO2015144788A1 (fr) 2015-10-01
EP3122970B1 (fr) 2018-05-09
WO2015144785A1 (fr) 2015-10-01
PL3122968T3 (pl) 2019-10-31
ES2698423T3 (es) 2019-02-04
ES2682397T3 (es) 2018-09-20
WO2015144790A1 (fr) 2015-10-01
PL3122966T3 (pl) 2019-03-29
EP3122970A1 (fr) 2017-02-01
EP3122968A1 (fr) 2017-02-01
PL3122971T3 (pl) 2019-02-28
WO2015144786A1 (fr) 2015-10-01
TR201815951T4 (tr) 2018-11-21
EP3122971A1 (fr) 2017-02-01
EP3122966B1 (fr) 2018-08-22
EP3122969A1 (fr) 2017-02-01
WO2015144792A1 (fr) 2015-10-01
PL3122970T3 (pl) 2018-10-31
ES2691945T3 (es) 2018-11-29
EP3122966A1 (fr) 2017-02-01
EP3122969B1 (fr) 2018-08-29
EP3122971B1 (fr) 2018-08-22
PL3122969T3 (pl) 2019-02-28
ES2699378T3 (es) 2019-02-11

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