EP1470307B1 - Lock cylinder - Google Patents

Lock cylinder Download PDF

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Publication number
EP1470307B1
EP1470307B1 EP03734711A EP03734711A EP1470307B1 EP 1470307 B1 EP1470307 B1 EP 1470307B1 EP 03734711 A EP03734711 A EP 03734711A EP 03734711 A EP03734711 A EP 03734711A EP 1470307 B1 EP1470307 B1 EP 1470307B1
Authority
EP
European Patent Office
Prior art keywords
key
lock cylinder
blocking part
cylinder according
transmission member
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.)
Expired - Lifetime
Application number
EP03734711A
Other languages
German (de)
French (fr)
Other versions
EP1470307A1 (en
Inventor
Peter Braun
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.)
Dom Sicherheitstechnik GmbH and Co KG
Original Assignee
Dom Sicherheitstechnik GmbH and Co KG
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 DE10220078A external-priority patent/DE10220078B3/en
Application filed by Dom Sicherheitstechnik GmbH and Co KG filed Critical Dom Sicherheitstechnik GmbH and Co KG
Priority to SI200331194T priority Critical patent/SI1470307T1/en
Publication of EP1470307A1 publication Critical patent/EP1470307A1/en
Application granted granted Critical
Publication of EP1470307B1 publication Critical patent/EP1470307B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B27/00Cylinder locks or other locks with tumbler pins or balls that are set by pushing the key in
    • E05B27/0042Cylinder locks or other locks with tumbler pins or balls that are set by pushing the key in with additional key identifying function, e.g. with use of additional key operated rotor-blocking elements, not of split pin tumbler type
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B27/00Cylinder locks or other locks with tumbler pins or balls that are set by pushing the key in
    • E05B27/0082Side bar locking
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B35/00Locks for use with special keys or a plurality of keys ; keys therefor
    • E05B35/003Locks for use with special keys or a plurality of keys ; keys therefor for keys with movable bits

Definitions

  • the invention relates to a lock cylinder with a rotatably mounted in a cylinder housing, a keyway for inserting a key having cylinder core whose rotation is normally locked by means of at least one of the fulcrum between cylinder core and cylinder housing intersecting tumbler, wherein the tumbler element in perennial alternation of a blocking in forms a release position displaceable locking part, which cooperates with a displaceable transversely to the saueinsteckraum motion transmission member in its displacement from the locking into the release position.
  • a lock cylinder of the specified type is known from EP 0 613 987 B1 wherein the cylinder core accommodates two diametrically located, slider-like locking parts, which constitute tumbler elements.
  • the outer edges of the locking parts are formed like a fireplace. With their comb teeth are the locking parts in form-fitting locking openings of the cylinder housing, which connect locking holes parallel to each other extending annular grooves of the cylinder housing together.
  • the inner edges of the locking parts form locking extensions, which cooperate with recesses key-controlled locking pins. The latter are guided on both sides of the keyway parallel to this and displaceable transversely to the longitudinal direction of the cylinder core. Then, the locking pins in the key channel projecting control extensions, which are controlled by likewiselbreit discourseen grooves.
  • the locking pins are displaced so that their recesses are aligned with the locking extensions of the tumblers or locking parts.
  • the locking pins are displaced so that their recesses are aligned with the locking extensions of the tumblers or locking parts.
  • the object of the invention is based on the object, a lock cylinder of the specified type in such a way that the locking part already passes through the insertion movement of the key in the release position by realizing a simple structure and while avoiding disruption.
  • a lock cylinder with a rotatably mounted in a cylinder housing, a keyway for inserting a key having cylinder core whose rotation is normally locked by means of at least one of the fulcrum between cylinder core and cylinder housing intersecting tumbler, wherein the tumbler element in perennial halogen, a rotatably mounted in a cylinder housing, a keyway for inserting a key having cylinder core whose rotation is normally locked by means of at least one of the fulcrum between cylinder core and cylinder housing intersecting tumbler, wherein the tumbler element inêteinsteckraum of a Blocking in a release position displaceable locking member forms, which cooperates with a transversely displaceable to saueinsteckraum motion transmission member in its displacement from the locking to the release position, and wherein the motion transmission member by insertion of the key radially outward displaced and, consequently, the locking part of its the blocking position corresponding non-action position in its displacement in the release position enabling operative position can be brought.
  • the lock cylinder according to the invention is characterized by high security by a consistently reliable closing.
  • a movement between the locking part and the cylinder housing is not required.
  • the corresponding displacement of the locking member is done in a simple manner already during insertion of the key on the motion transmission member. This is thereby displaced radially outward in the cylinder core and moves along the locking part of the blocking position corresponding to the non-operative position in the release position enabling operative position.
  • no slight rotary displacement of the cylinder core is required, which rotary displacement serves to impart the locking part a running in Moscoweinsteckraum movement. Since you can now do without a backlash, an unauthorized breaking up of the lock cylinder is counteracted.
  • the blocking part of the motion transmission member is inclined edge-controlled.
  • the pin-shaped motion transmission member can form a conical surface at its corresponding end.
  • the locking part is partially on a level of a receiving chamber of the cylinder core for the locking part, which stage of the fulcrum has a smaller distance than the thickness of the locking part amounts.
  • the locking member is spring-biased in the locked position and is pushed in particular by the force of the spring on the stage.
  • the safety value is further optimized by the fact that the blocking part lies in front of the head of complementary locking pins. These interact with the key broadside or recesses provided there. If these are missing, the complementary locking pins can not shift and lock the locking member against inward movement into the receiving chamber. Is brought by the insertion of the key, the locking member in its operative position, it is controlled radially inwardly upon rotation of the cylinder core of the wall of a locking groove formed by the cylinder housing.
  • the wall can be rounded or truncated cone-shaped.
  • this may have the shape of a sharpened cylinder pin.
  • At the pointed end preferably attacks the corresponding pointed head of the motion transmission member.
  • Another version of the locking member is characterized in that the motion transmission member attacks pin center and cooperates with a provided with oblique walls recess of the locking member. Variations in the position of recess and motion transmitting member are possible. It is always realized that when inserting the key in the Einschubendphase via the motion transmission member, the locking member enters the release position or operative position.
  • the locking member can be controlled by means of a key shank movably associated spacer.
  • the motion transmitting member acts like a pin, forming a conical tip of the motion transmitting member a sliding surface on which a particular oblique control edge of the locking member can slide when a radial force is exerted on the locking member during rotation.
  • the motion transmission member is characterized by a stop-limited entry into the keyway. It is possible to provide two identical locking parts in a lock cylinder. However, differently designed locking parts can be assigned to the lock cylinder. Here, in particular, a lying approximately in the diametrical position of the locking parts offers.
  • the motion transmitting member may engage remotely from the locking member end at a sheet recess.
  • the motion transmission member is controlled so that it has an endeavor to get to the lowest point of the sheet recess.
  • the blocking part moves concurrently into its release position. Because of this fact, one achieves the advantage that the position of the motion transmission member and also the arch recess is used for coding. It proves both manufacture and cost, if the motion transmission member is a ball. This idea can be continued by placing the locking part in front of the head of supplementary guard balls.
  • the supplementary tumbler balls can perform a corresponding, transverse to the direction of displacement of the key shank movement, the complementary Zuroisskugeln is opposite to a longitudinal recess of the locking part.
  • a particularly protected arrangement of the motion transmission member is obtained in this version in that the arcuate recess of the locking member beyond the longitudinal recess at the inside end forms a segment-shaped trough whose diameter is greater than the ball diameter of the motion transmission member. This means that this motion transmission member is in the shadow of the complementary tumbler balls and is not accessible by means of picking tools.
  • an advantageous embodiment according to the invention is that a substantially blunt end of the locking member rests on the step. This gives the locking part the necessary support. From its support position, the locking member is brought only by the motion transmission member at insertion of the regulatory key.
  • the designated as a whole with the numeral 1 lock cylinder has according to the first embodiment of the FIGS. 1 to 22 a cylinder housing 2.
  • the latter is composed of a circular cylindrical portion 3 and a radially projecting from this flange 4. 4
  • the section 3 has a central core hole 5 for receiving a diameter-matched cylinder core 6.
  • a row of tumbler pins 8 extends on each side of the key channel longitudinal center plane, the one tumbler pins of one row being offset from the tumbler pins of the opposite row.
  • the tumbler pins 8 are composed in a known manner from a respective core pin and a housing pin. When inserted into the key channel 7 key 9, the parting line between the housing pins and core pins of the tumblers 8 at the height of the fulcrum F of the cylinder core 6, so that the latter can be rotated.
  • the tumblers 8 sit non-rotatably in cross-section matched guide holes of the cylinder core and the cylinder housing 3 and are loaded by pin springs 10 in the direction of the cylinder core.
  • the one locking element 11 is designed needle-shaped and has the shape of a sharpened cylinder pin. With a part of its cross-section emerges with deducted Key 9, the locking member 11 in a locking groove 13 of the cylinder housing 2 a. The latter is equipped with roof-shaped flanks. With the other cross section, the blocking part 11 dips into a receiving chamber 14 of the cylinder core 6. A near the head 6 'of the cylinder core 6 arranged compression spring 15 loads the locking member 11 in the direction of the inner end of the cylinder core. As a result, the blocking part 11 is pushed over an end-side step 16 of the receiving chamber 14 via the sharpening 11 ', which step 16 prevents a radial inward displacement of the blocking part 11.
  • the latter is located on a larger diameter head 19 of the motion transmission member 17.
  • a Stepped offset transverse bore 20, which is open to the keyway 7, receives the pin-shaped motion transmission member 17 and allows a stop-limited entry thereof into the keyway 7, cf. Fig. 4 , This creates the stop limit for the spring-loaded locking part 11.
  • the locking member 11 supporting step 16 is disposed at a distance from the rotary joint F, which is smaller than the thickness of the locking member 11 is.
  • Fig. 3 and 5 let recognize that the locking member 11 is located in front of head of réelleszunnenslixen 21.
  • the latter are received by stepped guide bores 22 of the cylinder core 6.
  • the guide holes 22 are open to the respective broad side of the key channel 7.
  • the opposite end of the guide holes 22 penetrates the receiving chamber 14, so that the unspecified heads of Vietnameseszunnenswe 21 can slide to the outer surface of the locking member 11.
  • the inner ends of the convincedszuletsstatte 21 cooperate with recesses 23 on the key broad side surfaces of the key shank 9 'together.
  • the key shank 9 ' is designed so that the use of the key 9 is given as a reversible key.
  • the key shank 9 ' has a movably shaped spacer 24.
  • This is designed in the form of a role with movement play.
  • the with movement play the roller bore 24 'by cross roller axis 25 is inclined to the longitudinal center plane of the key shank 9.
  • the movable spacer 24, so the role is determined by the relevant wall of the Keyway 7 controlled so that the opposite roller circumference moves the motion transmission member 17 in the radial outward direction.
  • Fig. 11a shows the flanks a of the recesses 26 with the adjacent key broadside an angle ⁇ , which has a size of 105 ° - 110 °. These flanks a are adapted to the oblique course of the top surfaces of the tumbler pins 8, so that when inserting or removing the key 9 a reduction in wear is achieved.
  • this locking member 12 is under the load of a near the head 6 'of the cylinder core 6 arranged compression spring 32. This loaded the locking member 12 in the axial inward direction. An end tipping 12 'causes the locking member 12 spring-loaded on a step 31' of the receiving chamber 31 slides and is thus supported against displacement in the radial inward direction with the key removed, in particular Fig. 8 ,
  • This motion transmission member 33 is mushroom-shaped and cooperates with a conical tip 34 with a recess provided with oblique walls 35 of the locking member 12 together.
  • the recess 35 is cut from the corner between edge 28 and bottom portion 30 to form an oblique control edge 36th
  • the locking member 12 urges the motion transmission member 33 in the region of its recess 35, which movement transmission member 33 rests limited in stop in a stepped stepped bore 37 of the cylinder core 6.
  • the inner end of the motion transmission member 33 protrudes into the keyway 7, cf. Fig. 9 ,
  • the motion transmitting member 33 is basically a ceremoniesszutigsw. This lies with other réelleszuariaswen 38 in a row, which Vietnameseszuariasmite 38 cooperate with recesses 39 on the key broadside surfaces.
  • a closing rotation of the cylinder core 6 requires the insertion of the key 9 in the keyway 7.
  • the tumbler pins 8 are arranged so that the parting line between the core pins and housing pins is at the height of the rotary joint F.
  • the motion-transmitting member 17 is acted upon via the roller-like spacer 24, which in turn via the inclined edge control the locking member 11 in the position according to Fig. 13 to 16 shifts. This means that the pressure spring 15 opposite end of the locking member 11 leaves the step 16 and accordingly enters the operative position from the non-operative position.
  • the motion transmission member 33 which is controlled by the respective wide surface of the key shank 9 ', a displacement of the locking member 12 in the axial direction.
  • the conical tip 34 tends to reach the deepest point of the recess 35.
  • the locking member 12 leaves its support on the step 31 ', whereby the locking member 12 enters the operative position. It can now be rotated by means of the key 9 of the cylinder core 6, cf. Fig. 12 . 17 to 21 , Along the walls of the locking grooves 13, 27, the locking members 11, 12 are moved radially inwardly. The locking member 11 displaces the ceremoniesszuroissstatte 21 in the recesses 23 of the key shank 9 'into it, while the locking member 12 moves the associated réelleszuarias foreste 38, which in turn dive into the recesses 39 of the key shank 9'.
  • Motion transfer member 33 can not dodge, so that the locking member 12 remains fixed in the axial direction.
  • the conical tip 34 of the motion transmission member 33 forms a sliding surface on which the oblique control edge 36 of the locking member 12 can slide. It turns this position according to FIGS. 20 and 21 one.
  • FIGS. 23-27 illustrated second embodiment differs from the first substantially in that with the key removed 9, the keyway 7 of the cylinder core 6 extends transversely directed to the lock cylinder longitudinal center plane. That is, the recesses 26 are provided on the key shank 9 'in two rows on each key width surface. It is also a reversible key realized, so that in the turned positions of the key 9, the two rows of tumbler pins 8 of the lock cylinder 1 'can be arranged.
  • the receiving chamber 31 In the wide surface plane of the key channel 7 is the receiving chamber 31, in which a locking member 42 is housed. This corresponds in its construction and cross-section substantially the locking member 12.
  • the compression spring 32 loads the locking member 42 in the inward direction, with its blunt end 42 'is supported on a transverse shoulder of the receiving chamber 31, compare Fig. 23 ,
  • the blocking part 42 forms a sheet recess 43.
  • the latter is designed in the form of a segment-shaped trough.
  • the arcuate recess 43 acts together with a motion transmission member 44.
  • the latter is guided in a bore 45 open towards the narrow side of the key channel 7, which bore 45 connects the key channel 7 and the receiving chamber 31 with each other. How out Fig.
  • the diameter of the spherical motion transmission member 44 is greater than the respective wall thickness between the receiving chamber 31 and keyway 7.
  • the substantially blunt end of the locking member 42 is located on the stage 31 'of the support chamber.
  • a groove 46 which cooperates with the spherical motion transmission member 44. Due to the configuration of the key 9 as a reversible key, two such grooves 46 are diametrically opposed to the key shank 9 '.
  • spherical shaped complementary tumblers may be provided on the lock cylinder, which are arranged by corresponding recesses of the key shank 9 '.
  • the closing operation is to be performed by means of the key 9, then its key shank 9 'is first to be introduced into the key channel 7.
  • the spherical motion transmission member 44 passes through the groove 46 extending from the key face Fig. 25 reached.
  • the complementary tumblers 48 have been displaced out of the keyway 7 by the key edge. You can enter 42 in the longitudinal recess 49 of the locking member.
  • the position according to Fig. 26 achieved.
  • the supplementary tumbler balls 48 are aligned with their associated recesses 50 on the narrow side of the key shank 9 ', so that the supplementary tumbler balls 48 can leave the longitudinal recess 49 of the locking part.
  • the spherical motion transmitting member 44 is disengaged from the groove 46 and then rests on the key shank narrow edge, resulting in an outward radial displacement of the motion transmitting member 44.
  • an axial displacement of the locking member 42 against the force of the compression spring 32 is effected via a sloping edge control by partial entry of the motion transmitting member 44 into the trough 43.

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  • Lock And Its Accessories (AREA)
  • Fluid-Damping Devices (AREA)
  • Pens And Brushes (AREA)
  • Actuator (AREA)
  • Materials For Medical Uses (AREA)

Abstract

The invention relates to a lock cylinder comprising a cylinder housing (2) and a cylinder core (6), rotatably mounted in the latter, said core having a key channel (7) for inserting a key (9). Conventionally, the rotational motion of the cylinder core is locked by means of a tumbler element that traverses the rotating joint (F) between the cylinder core (6) and cylinder housing (2). According to the invention, the tumbler element is configured as a locking part that can be shifted from a lock position into a release position in the direction of insertion of the key, said locking part co-operating with a motion transfer member (17) that can be displaced transversally in relation to the direction of insertion of the key, during the shift from the lock position into the release position. The motion transfer member is a pin, which can be brought out of an inactive position that corresponds with the lock position of the locking part into an active position that permits the displacement of the locking part (33) into the release position by the insertion of the key (9).

Description

Die Erfindung betrifft einen Schließzylinder mit einem in einem Zylindergehäuse drehbar gelagerten, einen Schlüsselkanal zum Einschub eines Schlüssels aufweisenden Zylinderkern, dessen Drehbarkeit normalerweise mittels mindestens eines die Drehfuge zwischen Zylinderkern und Zylindergehäuse kreuzenden Zuhaltungselementes gesperrt ist, wobei das Zuhaltungselement ein in Schlüsseleinsteckrichtung von einer Sperr- in eine Freigabestellung verlagerbares Sperrteil ausbildet, welches mit einem quer zur Schlüsseleinsteckrichtung verschiebbaren Bewegungsübertragungsglied bei seiner Verlagerung von der Sperr- in die Freigabestellung zusammenwirkt.The invention relates to a lock cylinder with a rotatably mounted in a cylinder housing, a keyway for inserting a key having cylinder core whose rotation is normally locked by means of at least one of the fulcrum between cylinder core and cylinder housing intersecting tumbler, wherein the tumbler element in Schlüsseleinsteckrichtung of a blocking in forms a release position displaceable locking part, which cooperates with a displaceable transversely to the Schlüsseleinsteckrichtung motion transmission member in its displacement from the locking into the release position.

Ein Schließzylinder der angegebenen Art ist bekannt aus EP 0 613 987 B1 , wobei der Zylinderkern zwei in der Diametralen liegende, schieberartige Sperrteile aufnimmt, welche Zuhaltungselemente darstellen. Die äußeren Flanken der Sperrteile sind kaminartig ausgebildet. Mit ihren Kammzähnen liegen die Sperrteile in formangepaßten Sperröffnungen des Zylindergehäuses ein, welche Sperröffnungen parallel zueinander verlaufende Ringnuten des Zylindergehäuses miteinander verbinden. Die inneren Flanken der Sperrteile bilden Sperrfortsätze, welche mit Ausnehmungen schlüsselgesteuerter Sperrstifte zusammenwirken. Letztere sind beidseitig des Schlüsselkanals parallel zu diesem geführt und quer zur Längsrichtung des Zylinderkerns verschiebbar. Sodann weisen die Sperrstifte in den Schlüsselkanal ragende Steuerfortsätze auf, welche von schlüsselbreitseitigen Nuten gesteuert werden. Nach Einschub des Schlüssels sind die Sperrstifte so verlagert, daß deren Ausnehmungen mit den Sperrfortsätzen der Zuhaltungselemente bzw. Sperrteile fluchten. Bei der dann beginnenden Schließdrehung des Zylinderkerns mittels des Schlüssels werden in der Diametralen liegende Bewegungsübertragungsglieder radial einwärts gesteuert, welche über eine Schrägflankenanlage zu den Sperrelementen diese von der Sperr- in die Freigabestellung überführen. Die kammartigen Fortsätze der Sperrelemente treten in die Innenringnuten und erlauben anschließend die vollständige Schließdrehung des Zylinderkerns. Um dieses ermöglichen zu können, ist ein Bewegungsspiel für die kammartigen Fortsätze der Sperrteile notwendig. Ist dieses Bewegungsspiel nicht vorhanden, kann es zu Schließstörungen kommen.A lock cylinder of the specified type is known from EP 0 613 987 B1 wherein the cylinder core accommodates two diametrically located, slider-like locking parts, which constitute tumbler elements. The outer edges of the locking parts are formed like a fireplace. With their comb teeth are the locking parts in form-fitting locking openings of the cylinder housing, which connect locking holes parallel to each other extending annular grooves of the cylinder housing together. The inner edges of the locking parts form locking extensions, which cooperate with recesses key-controlled locking pins. The latter are guided on both sides of the keyway parallel to this and displaceable transversely to the longitudinal direction of the cylinder core. Then, the locking pins in the key channel projecting control extensions, which are controlled by schlüsselbreitseitigen grooves. After insertion of the key, the locking pins are displaced so that their recesses are aligned with the locking extensions of the tumblers or locking parts. In the then beginning closing rotation of the cylinder core by means of the key lying in the diametrical motion transmission members are radially inwardly controlled, which convert over a slanted edge system to the blocking elements from the blocking to the release position. The comb-like extensions of the locking elements enter the inner ring grooves and then allow the complete closing rotation of the cylinder core. To make this possible, a movement play for the comb-like extensions of the locking parts is necessary. If this movement does not exist, it can lead to closure problems.

Dem Gegenstand der Erfindung liegt die Aufgabe zugrunde, einen Schließzylinder der angegebenen Art so auszugestalten, daß unter Realisierung eines einfachen Aufbaues und unter Vermeidung von Schließstörungen das Sperrteil bereits durch die Einsteckbewegung des Schlüssels in die Freigabestellung gelangt.The object of the invention is based on the object, a lock cylinder of the specified type in such a way that the locking part already passes through the insertion movement of the key in the release position by realizing a simple structure and while avoiding disruption.

Erfindungsgemäß wird diese Aufgabe gelöst durch einen Schließzylinder mit einem in einem Zylindergehäuse drehbar gelagerten, einen Schlüsselkanal zum Einschub eines Schlüssels aufweisenden Zylinderkern, dessen Drehbarkeit normalerweise mittels mindestens eines die Drehfuge zwischen Zylinderkern und Zylindergehäuse kreuzenden Zuhaltungselementes gesperrt ist, wobei das Zuhaltungselement ein in Schlüsseleinsteckrichtung von einer Sperr- in eine Freigabestellung verlagerbares Sperrteil ausbildet, welches mit einem quer zur Schlüsseleinsteckrichtung verschiebbaren Bewegungsübertragungsglied bei seiner Verlagerung von der Sperr- in die Freigabestellung zusammenwirkt, und wobei das Bewegungsübertragungsglied durch Einschub des Schlüssels radial auswärts verlagerbar ist und damit einhergehend das Sperrteil von seiner der Sperrstellung entsprechenden Außerwirkstellung in eine seine Verlagerung in die Freigabestellung ermöglichende Wirkstellung bringbar ist.According to the invention this object is achieved by a lock cylinder with a rotatably mounted in a cylinder housing, a keyway for inserting a key having cylinder core whose rotation is normally locked by means of at least one of the fulcrum between cylinder core and cylinder housing intersecting tumbler, wherein the tumbler element in Schlüsseleinsteckrichtung of a Blocking in a release position displaceable locking member forms, which cooperates with a transversely displaceable to Schlüsseleinsteckrichtung motion transmission member in its displacement from the locking to the release position, and wherein the motion transmission member by insertion of the key radially outward displaced and, consequently, the locking part of its the blocking position corresponding non-action position in its displacement in the release position enabling operative position can be brought.

Weitere Ausgestaltungen der Erfindung sind in den Ansprüchen 2 bis 10 angegeben und werden nachstehend in Bezug zu dem Gegenstand des Anspruches 1 erläutert, können aber auch unabhängig von Bedeutung sein.Further embodiments of the invention are set forth in claims 2 to 10 and are explained below in relation to the subject matter of claim 1, but may also be independent of importance.

Der Schließzylinder nach der Erfindung zeichnet sich bei hoher Sicherheit durch eine stets zuverlässig wirkende Schließweise aus. Ein Bewegungsspiel zwischen dem Sperrteil und dem Zylindergehäuse ist nicht erforderlich. Die entsprechende Verlagerung des Sperrteiles geschieht in einfacher Weise bereits beim Einschub des Schlüssels über das Bewegungsübertragungsglied. Dieses wird dabei im Zylinderkern radial auswärts verlagert und verschiebt einhergehend das Sperrteil von der der Sperrstellung entsprechenden Außerwirkstellung in die die Freigabestellung ermöglichende Wirkstellung. Somit ist also keine geringfügige Drehverlagerung des Zylinderkerns erforderlich, welche Drehverlagerung dazu dient, dem Sperrteil eine in Schlüsseleinsteckrichtung verlaufende Bewegung zu vermitteln. Da man nun ohne Drehspiel auskommt, ist auch einem unbefugten Aufbrechen des Schließzylinders entgegengewirkt. Schließstörungen, die sich beispielsweise bei einem geringen Bewegungsspiel ergeben, können erst gar nicht auftreten. Auch läßt sich der Aufbau des Schließzylinders kostensparend und einfach gestalten. Hierzu trägt auch die Tatsache bei, daß das Bewegungsübertragungsglied ein Stift ist. Dieser läßt sich kostensparend als Drehteil fertigen.The lock cylinder according to the invention is characterized by high security by a consistently reliable closing. A movement between the locking part and the cylinder housing is not required. The corresponding displacement of the locking member is done in a simple manner already during insertion of the key on the motion transmission member. This is thereby displaced radially outward in the cylinder core and moves along the locking part of the blocking position corresponding to the non-operative position in the release position enabling operative position. Thus, therefore, no slight rotary displacement of the cylinder core is required, which rotary displacement serves to impart the locking part a running in Schlüsseleinsteckrichtung movement. Since you can now do without a backlash, an unauthorized breaking up of the lock cylinder is counteracted. Closing disturbances, which result, for example, in a small movement play, can not even occur. Also, the structure of the lock cylinder can be cost-saving and easy. This is also helped by the fact that the motion transmitting member is a pin. This can be cost-effectively finished as a turned part.

Weiterhin ist von Vorteil, daß das Sperrteil vom Bewegungsübertragungsglied schrägflankengesteuert ist. Zu diesem Zweck kann das stiftförmige Bewegungsübertragungsglied an seinem entsprechenden Ende eine Kegelfläche ausbilden. Um die Drehverlagerung des Zylinderkernes bei abgezogenem Schlüssel zu verhindern, liegt das Sperrteil bereichsweise auf einer Stufe einer Aufnahmekammer des Zylinderkernes für das Sperrteil auf, welche Stufe von der Drehfuge einen kleineren Abstand hat als die Dicke des Sperrteils beträgt. Bei eingestecktem, passendem Schlüssel hat dagegen dieser über das Bewegungsübertragungsglied das Sperrteil aus dem Stützbereich der Stufe verlagert, damit dieses beim Drehen des Zylinderkernes radial ausweichen kann, und zwar in den Zylinderkern hinein bzw. in dessen Aufnahmekammer. Wird der Schlüssel aus dem Schlüsselkanal abgezogen, ist dafür Sorge getroffen, daß das Sperrteil stets in seine Sperrstellung bzw. seine Außerwirkstellung zurückkehrt. Zu diesem Zweck ist das Sperrteil in Sperr-Position federvorgespannt und wird insbesondere durch die Kraft der Feder auf die Stufe geschoben.Furthermore, it is advantageous that the blocking part of the motion transmission member is inclined edge-controlled. For this purpose, the pin-shaped motion transmission member can form a conical surface at its corresponding end. To the rotary displacement prevent the cylinder core with the key removed, the locking part is partially on a level of a receiving chamber of the cylinder core for the locking part, which stage of the fulcrum has a smaller distance than the thickness of the locking part amounts. When plugged in, matching key, however, this has shifted over the motion transmission member, the locking member from the support portion of the stage, so that it can dodge radially when turning the cylinder core, in the cylinder core or in its receiving chamber. If the key is removed from the keyway, care is taken that the locking member always returns to its blocking position or its non-operative position. For this purpose, the locking member is spring-biased in the locked position and is pushed in particular by the force of the spring on the stage.

Optimiert wird der Sicherheitswert weiterhin dadurch, daß das Sperrteil vor Kopf von Ergänzungszuhaltungsstiften liegt. Diese wirken mit der Schlüsselbreitseite bzw. dort vorgesehenen Vertiefungen zusammen. Fehlen diese, können die Ergänzungszuhaltungsstifte sich nicht verlagern und sperren das Sperrteil gegen Einwärtsbewegung in die Aufnahmekammer hinein. Ist durch den Einschub des Schlüssels das Sperrteil in seine Wirkstellung gebracht, so wird es beim Drehen des Zylinderkerns von der Wandung einer vom Zylindergehäuse gebildeten Sperrnut radial einwärts gesteuert. Die Wandung kann gerundet oder kegelstumpfartig gestaltet sein.The safety value is further optimized by the fact that the blocking part lies in front of the head of complementary locking pins. These interact with the key broadside or recesses provided there. If these are missing, the complementary locking pins can not shift and lock the locking member against inward movement into the receiving chamber. Is brought by the insertion of the key, the locking member in its operative position, it is controlled radially inwardly upon rotation of the cylinder core of the wall of a locking groove formed by the cylinder housing. The wall can be rounded or truncated cone-shaped.

Hinsichtlich einer einfachen Fertigung des Sperrteiles kann dieses die Form eines angespitzten Zylinderstiftes haben. An dem zugespitzten Ende greift vorzugsweise der entsprechend zugespitzte Kopf des Bewegungsübertragungsgliedes an.With regard to a simple production of the locking part, this may have the shape of a sharpened cylinder pin. At the pointed end preferably attacks the corresponding pointed head of the motion transmission member.

Eine weitere Version des Sperrteils zeichnet sich dadurch aus, daß das Bewegungsübertragungsglied stiftmittig angreift und mit einer mit schrägen Wandungen versehenen Aussparung des Sperrteiles zusammenwirkt. Variationen hinsichtlich der Position von Aussparung und Bewegungsübertragungsglied sind möglich. Stets ist realisiert, daß beim Einschub des Schlüssels in der Einschubendphase über das Bewegungsübertragungsglied das Sperrteil in die Freigabestellung bzw. Wirkstellung gelangt.Another version of the locking member is characterized in that the motion transmission member attacks pin center and cooperates with a provided with oblique walls recess of the locking member. Variations in the position of recess and motion transmitting member are possible. It is always realized that when inserting the key in the Einschubendphase via the motion transmission member, the locking member enters the release position or operative position.

Auch Variationen hinsichtlich der Steuerung des Sperrteiles durch den Schlüssel sind möglich. So kann das Sperrteil mittels eines dem Schlüsselschaft beweglich zugeordneten Distanzstückes gesteuert werden. Bei der Version, bei welcher das Bewegungsübertragungsglied stiftmittig angreift, bildet eine kegelförmige Spitze des Bewegungsübertragungsgliedes eine Gleitflache, an welcher eine insbesondere schräge Steuerflanke des Sperrteiles abgleiten kann, wenn beim Drehen eine Radialkraft auf das Sperrteil ausgeübt wird. Damit stets eine vorschriftsmäßige Steuerung des Bewegungsübertragungsgliedes durch die Schlüsselbreitseite gewährleistet ist, zeichnet sich das Bewegungsübertragungsglied durch einen anschlagbegrenzten Eintritt in den Schlüsselkanal aus. Es ist möglich, zwei gleichgeartete Sperrteile in einem Schließzylinder vorzusehen. Jedoch können auch unterschiedlich gestaltete Sperrteile dem Schließzylinder zugeordnet werden. Hier bietet sich insbesondere eine etwa in der Diametralen liegende Lage der Sperrteile an.Also, variations in the control of the locking member by the key are possible. Thus, the locking member can be controlled by means of a key shank movably associated spacer. In the version in which the motion transmitting member acts like a pin, forming a conical tip of the motion transmitting member a sliding surface on which a particular oblique control edge of the locking member can slide when a radial force is exerted on the locking member during rotation. So that a proper control of the motion transmission member is always ensured by the key broadside, the motion transmission member is characterized by a stop-limited entry into the keyway. It is possible to provide two identical locking parts in a lock cylinder. However, differently designed locking parts can be assigned to the lock cylinder. Here, in particular, a lying approximately in the diametrical position of the locking parts offers.

Alternativ kann das Bewegungsübertragungsglied entfernt vom Sperrteilende an einer Bogenaussparung angreifen. Bei Einschub des zum Schließzylinder zugehörigen Schlüssels wird von diesem das Bewegungsübertragungsglied so gesteuert, dass es das Bestreben hat, zum tiefsten Punkt der Bogenaussparung zu gelangen. Einhergehend verlagert sich das Sperrteil in seine Freigabestellung. Aufgrund dieses Sachverhalts erzielt man den Vorteil, dass die Lage des Bewegungsübertragungsgliedes und auch die der Bogenaussparung zur Codierung genutzt wird. Es erweist sich sowohl herstellungs- als auch kostengünstig, wenn das Bewegungsübertragungsglied eine Kugel ist. Fortsetzen lässt sich dieser Gedanke dadurch, dass das Sperrteil vor Kopf von Ergänzungs-Zuhaltungskugeln liegt. Damit während der Einschub- bzw. Abzugbewegung des Schlüssels die Ergänzungs-Zuhaltungskugeln eine entsprechende, quer zur Verlagerungsrichtung des Schlüsselschaftes verlaufende Bewegung ausführen können, liegt den Ergänzungs-Zuhaltungskugeln eine Längsausnehmung des Sperrteils gegenüber. Eine besonders geschützte Anordnung des Bewegungsübertragungsgliedes erhält man bei dieser Version dadurch, dass die Bogenaussparung des Sperrteils jenseits der Längsausnehmung am innenseitigen Ende eine segmentförmige Mulde ausbildet, deren Durchmesser größer ist als der Kugeldurchmesser des Bewegungsübertragungsgliedes. Das bedeutet, dass dieses Bewegungsübertragungsglied im Schatten der Ergänzungs-Zuhaltungskugeln liegt und mittels Pickingwerkzeuge nicht erreichbar ist. Schließlich besteht eine vorteilhafte Ausgestaltung erfindungsgemäß noch darin, dass ein im Wesentlichen stumpfes Ende des Sperrteils auf der Stufe aufliegt. Hierdurch erhält das Sperrteil die nötige Abstützung. Aus seiner Abstützlage wird das Sperrteil nur durch das Bewegungsübertragungsglied gebracht bei Einschub des vorschriftsmäßigen Schlüssels.Alternatively, the motion transmitting member may engage remotely from the locking member end at a sheet recess. When inserting the locking cylinder associated key from this, the motion transmission member is controlled so that it has an endeavor to get to the lowest point of the sheet recess. The blocking part moves concurrently into its release position. Because of this fact, one achieves the advantage that the position of the motion transmission member and also the arch recess is used for coding. It proves both manufacture and cost, if the motion transmission member is a ball. This idea can be continued by placing the locking part in front of the head of supplementary guard balls. Thus, during the insertion or withdrawal movement of the key, the supplementary tumbler balls can perform a corresponding, transverse to the direction of displacement of the key shank movement, the complementary Zuhaltungskugeln is opposite to a longitudinal recess of the locking part. A particularly protected arrangement of the motion transmission member is obtained in this version in that the arcuate recess of the locking member beyond the longitudinal recess at the inside end forms a segment-shaped trough whose diameter is greater than the ball diameter of the motion transmission member. This means that this motion transmission member is in the shadow of the complementary tumbler balls and is not accessible by means of picking tools. Finally, an advantageous embodiment according to the invention is that a substantially blunt end of the locking member rests on the step. This gives the locking part the necessary support. From its support position, the locking member is brought only by the motion transmission member at insertion of the regulatory key.

Nachstehend wird ein Ausführungsbeispiel der Erfindung anhand der Zeichnungen erläutert. Es zeigen:

Figur 1
eine Ansicht eines Schließzylinders,
Figur 2
den Schnitt nach der Linie II-II in Figur 1,
Figur 3
den Schnitt nach der Linie III-III in Figur 2,
Figur 4
einen vergrößerten Ausschnitt IV-IV in Figur 3,
Figur 5
einen Querschnitt durch den Zylinderkern auf Höhe einer mit dem nadelförmigen Sperrteil zusammenwirkenden Ergänzungszuhaltung,
Figur 6
eine perspektivische Darstellung des Zylinderkerns mit Blick auf das nadelförmige Sperrteil,
Figur 7
den Schnitt nach der Linie VII-VII in Figur 2 unter Veranschaulichung des leistenförmigen Sperrteils,
Figur 8
einen vergrößerten Ausschnitt VIII-VIII in Figur 7,
Figur 9
einen vergrößerten Ausschnitt IX-IX in Figur 2,
Figur 10
in perspektivischer Darstellung den Schließzylinder, im Bereich des leistenförmigen Sperrteils, aufgebrochen dargestellt,
Figur 11
den entständigen Bereich des Schlüsselschaftes eines den Schließzylinder schließenden Schlüssels,
Figur 11a
einen Ausschnitt des Schlüsselschaftes im Querschnitt,
Figur 12
den Schließzylinder bei in den Schlüsselkanal eingestecktem Schlüssel und teilweise gedrehtem Zylinderkern,
Figur 13
eine Ansicht des Zylinderkerns mit eingestecktem Schlüssel, und zwar mit Blick auf das nadelförmige Sperrteil,
Figur 14
den Schnitt nach der Linie XIV-XIV in Figur 13,
Figur 15
einen vergrößerten Ausschnitt XV-XV in Figur 14,
Figur 16
einen Querschnitt durch den Zylinderkern auf Höhe des Bewegungsübertragungsgliedes bei eingestecktern Schlüssel,
Figur 17
einen der Figur 2 vergleichbaren Querschnitt, und zwar bei eingeschobenem Schlüssel,
Figur 18
einen Schnitt wie Figur 14, jedoch in der Anfangsphase der Schließdrehung bei radial einwärts verlagertem, nadelartigen Sperrteil,
Figur 19
einen vergrößerten Ausschnitt XIX-XIX in Figur 18,
Figur 20
eine der Figur 17 vergleichbare Darstellung, jedoch bei geringfügig gedrehtern Zylinderkern,
Figur 21
einen vergrößerten Ausschnitt XXI-XXI in Figur 20 und
Figur 22
eine perspektivische Darstellung des Schließzylinders gemäß einer Drehstellung des Zylinderkerns mittels eines Schlüssels, welcher eine Ausweichbohrung für das zugehörige Bewegungsübertragungsglied ausbildet und somit keine Verlagerung des leistenartigen Sperrteils in die seine Freigabestellung ermöglichende Wirkstellung erlaubt.
Figur 23
teils in Draufsicht, teils im Halbschnitt den Schließzylinder gemäß dem zweiten Ausführungsbeispiel mit in einsteckbereitem Zustand des Schlüssels,
Figur 24
eine perspektivische Darstellung der Figur 23,
Figur 25
eine der Figur 23 vergleichbare Darstellung, und zwar während der Einschubverlagerung des Schlüssels in der Endphase,
Figur 26
die Folgedarstellung der Figur 25, wobei der Schlüssel vollends eingeschoben ist und
Figur 27
die Folgedarstellung der Figur 26, wobei mittels des eingesteckten Schlüssels der Zylinderkern geringfügig gedreht ist unter Veranschaulichung des radial einwärts verlagerten Sperrteils.
Hereinafter, an embodiment of the invention will be explained with reference to the drawings. Show it:
FIG. 1
a view of a lock cylinder,
FIG. 2
the section along the line II-II in FIG. 1 .
FIG. 3
the section along the line III-III in FIG. 2 .
FIG. 4
an enlarged section IV-IV in FIG. 3 .
FIG. 5
a cross section through the cylinder core at the level of a cooperating with the needle-shaped locking member complementary tumbler,
FIG. 6
a perspective view of the cylinder core with a view of the needle-shaped locking part,
FIG. 7
the section along the line VII-VII in FIG. 2 illustrating the strip-shaped blocking part,
FIG. 8
an enlarged section VIII-VIII in FIG. 7 .
FIG. 9
an enlarged section IX-IX in FIG. 2 .
FIG. 10
in a perspective view of the lock cylinder, in the region of the strip-shaped locking part, broken away,
FIG. 11
the terminal area of the key shank of a key closing the lock cylinder,
FIG. 11a
a section of the key shank in cross section,
FIG. 12
the lock cylinder with key inserted into the keyway and partially turned cylinder core,
FIG. 13
a view of the cylinder core with inserted key, with a view of the needle-shaped locking part,
FIG. 14
the section along the line XIV-XIV in FIG. 13 .
FIG. 15
an enlarged section XV-XV in FIG. 14 .
FIG. 16
a cross section through the cylinder core at the height of the motion transmission member with inserted key,
FIG. 17
one of the FIG. 2 comparable cross-section, with the key inserted,
FIG. 18
a cut like FIG. 14 but in the initial phase of the closing rotation with a radially inwardly displaced, needle-like blocking part,
FIG. 19
an enlarged section XIX-XIX in FIG. 18 .
FIG. 20
one of the FIG. 17 comparable representation, but with slightly rotated cylinder core,
FIG. 21
an enlarged section XXI-XXI in FIG. 20 and
FIG. 22
a perspective view of the lock cylinder according to a rotational position of the cylinder core by means of a key which forms an alternative bore for the associated motion transmission member and thus no displacement of the strip-like locking member in its release position enabling operative position allowed.
FIG. 23
partly in plan view, partly in half section, the lock cylinder according to the second embodiment with in einsteckbereitem state of the key,
FIG. 24
a perspective view of FIG. 23 .
FIG. 25
one of the FIG. 23 comparable representation, during insertion of the key in the final phase,
FIG. 26
the following presentation of the FIG. 25 , with the key is fully inserted and
FIG. 27
the following presentation of the FIG. 26 , wherein by means of the inserted key, the cylinder core is rotated slightly, illustrating the radially inwardly displaced locking part.

Der als Ganzes mit der Ziffer 1 bezeichnete Schließzylinder besitzt gemäß der ersten Ausführungsform nach den Figuren 1 bis 22 ein Zylindergehäuse 2. Letzteres setzt sich zusammen aus einem kreiszylinderförmigen Abschnitt 3 und einem radial von diesem abragenden Flanschabschnitt 4.The designated as a whole with the numeral 1 lock cylinder has according to the first embodiment of the FIGS. 1 to 22 a cylinder housing 2. The latter is composed of a circular cylindrical portion 3 and a radially projecting from this flange 4. 4

Der Abschnitt 3 besitzt eine zentrale Kernbohrung 5 zur Aufnahme eines durchmesserangepaßten Zylinderkernes 6. Mittig ist dieser mit einem querschnittsprofilierten Schlüsselkanal 7 ausgestattet, dessen eine Schmalkante bis zur Drehfuge F des Zylinderkerns 6 reicht. Beidseitig der Schlüsselkanallängsmittelebene erstreckt sich je eine Reihe von Zuhaltungsstiften 8, wobei die einen Zuhaltungsstifte der einen Reihe versetzt liegen zu den Zuhaltungsstiften der gegenüberliegenden Reihe. Die Zuhaltungsstifte 8 setzen sich in bekannter Weise aus je einem Kernstift und einem Gehäusestift zusammen. Bei in den Schlüsselkanal 7 eingeführtem Schlüssel 9 liegt die Trennfuge zwischen den Gehäusestiften und Kernstiften der Zuhaltungen 8 auf Höhe der Drehfuge F des Zylinderkerns 6, so daß letzterer gedreht werden kann. Die Zuhaltungen 8 sitzen undrehbar in querschnittsangepaßten Führungsbohrungen des Zylinderkerns und des Zylindergehäuses 3 und werden von Stiftfedern 10 in Richtung des Zylinderkerns belastet.The section 3 has a central core hole 5 for receiving a diameter-matched cylinder core 6. In the middle of this is equipped with a cross-sectional profiled keyway 7, whose narrow edge extends to the fulcrum F of the cylinder core 6. A row of tumbler pins 8 extends on each side of the key channel longitudinal center plane, the one tumbler pins of one row being offset from the tumbler pins of the opposite row. The tumbler pins 8 are composed in a known manner from a respective core pin and a housing pin. When inserted into the key channel 7 key 9, the parting line between the housing pins and core pins of the tumblers 8 at the height of the fulcrum F of the cylinder core 6, so that the latter can be rotated. The tumblers 8 sit non-rotatably in cross-section matched guide holes of the cylinder core and the cylinder housing 3 and are loaded by pin springs 10 in the direction of the cylinder core.

Zur Drehsicherung des Zylinderkerns 6 bei abgezogenem Schlüssel 9 dienen ferner in Schlüsseleinsteckrichtung von einer Sperr- in eine Freigabestellung verlagerbare Sperrteile 11, 12, welche ebenfalls Zuhaltungselemente darstellen. Diese konnten auch eingesetzt werden, wenn nur eine Reihe oder gar keine Reihe von Zuhaltungen 8 vorgesehen wäre.To prevent rotation of the cylinder core 6 with removed key 9 are also used in Schlüsseleinsteckrichtung from a blocking in a release position movable locking parts 11, 12, which also constitute tumblers. These could also be used if only one row or no row of tumblers 8 were provided.

Das eine Sperrelement 11 ist nadelförmig gestaltet und besitzt die Form eines angespitzten Zylinderstiftes. Mit einem Teil seines Querschnittes taucht bei abgezogenem Schlüssel 9 das Sperrteil 11 in eine Sperrnut 13 des Zylindergehäuses 2 ein. Letztere ist mit dachförmig zueinanderstehenden Flanken ausgestattet. Mit dem anderen Querschnitt taucht das Sperrteil 11 in eine Aufnahmekammer 14 des Zylinderkerns 6 hinein. Eine nahe des Kopfes 6' des Zylinderkernes 6 angeordnete Druckfeder 15 belastet das Sperrteil 11 in Richtung des inneren Endes des Zylinderkernes. Hierdurch wird über die Anspitzung 11' das Sperrteil 11 über eine endseitige Stufe 16 der Aufnahmekammer 14 geschoben, welche Stufe 16 eine radiale Einwärtsverlagerung des Sperrteils 11 verhindert. Begrenzt ist die axiale Verlagerung des Sperrteils 11 durch ein quer zur Schlüsseleinsteckrichtung verschiebbares Bewegungsübertragungsglied 17. Dieses greift stiftendseitig an der Anspitzung 11' des Sperrteiles 11 an und formt hierzu eine kegelförmige Spitze 18. Letztere befindet sich an einem durchmessergrößeren Kopf 19 des Bewegungsübertragungsgliedes 17. Eine stufenförmig abgesetzte Querbohrung 20, welche zum Schlüsselkanal 7 hin offen ist, nimmt das stiftförmige Bewegungsübertragungsglied 17 auf und erlaubt einen anschlagbegrenzten Eintritt desselben in den Schlüsselkanal 7, vergleiche Fig. 4. Hierdurch entsteht die Anschlagbegrenzung für das federbelastete Sperrteil 11. Wie insbesondere Fig. 4 veranschaulicht, ist die das Sperrteil 11 stützende Stufe 16 in einem Abstand von der Drehfuge F angeordnet, der kleiner ist als die Dicke des Sperrteils 11 beträgt.The one locking element 11 is designed needle-shaped and has the shape of a sharpened cylinder pin. With a part of its cross-section emerges with deducted Key 9, the locking member 11 in a locking groove 13 of the cylinder housing 2 a. The latter is equipped with roof-shaped flanks. With the other cross section, the blocking part 11 dips into a receiving chamber 14 of the cylinder core 6. A near the head 6 'of the cylinder core 6 arranged compression spring 15 loads the locking member 11 in the direction of the inner end of the cylinder core. As a result, the blocking part 11 is pushed over an end-side step 16 of the receiving chamber 14 via the sharpening 11 ', which step 16 prevents a radial inward displacement of the blocking part 11. This attacks penendendseitig at the Anspitzung 11 'of the locking member 11 and this forms a conical tip 18. The latter is located on a larger diameter head 19 of the motion transmission member 17. A Stepped offset transverse bore 20, which is open to the keyway 7, receives the pin-shaped motion transmission member 17 and allows a stop-limited entry thereof into the keyway 7, cf. Fig. 4 , This creates the stop limit for the spring-loaded locking part 11. As in particular Fig. 4 illustrated, the locking member 11 supporting step 16 is disposed at a distance from the rotary joint F, which is smaller than the thickness of the locking member 11 is.

Fig. 3 und 5 lassen erkennen, daß das Sperrteil 11 vor Kopf von Ergänzungszuhaltungsstiften 21 liegt. Letztere werden von stufenförmig abgesetzten Führungsbohrungen 22 des Zylinderkerns 6 aufgenommen. Die Führungsbohrungen 22 sind zur betreffenden Breitseite des Schlüsselkanals 7 hin offen. Das gegenüberliegende Ende der Führungsbohrungen 22 durchdringt die Aufnahmekammer 14, so daß die nicht näher bezeichneten Köpfe der Ergänzungszuhaltungsstifte 21 bis zur Mantelfläche des Sperrteils 11 gleiten können. Die inneren Enden der Ergänzungszuhaltungsstifte 21 wirken mit Vertiefungen 23 auf den Schlüsselbreitseitenflächen des Schlüsselschaftes 9' zusammen. Der Schlüsselschaft 9' ist so gestaltet, daß der Einsatz des Schlüssels 9 als Wendeschlüssel gegeben ist. Fig. 3 and 5 let recognize that the locking member 11 is located in front of head of Ergänzungszuhaltungsstiften 21. The latter are received by stepped guide bores 22 of the cylinder core 6. The guide holes 22 are open to the respective broad side of the key channel 7. The opposite end of the guide holes 22 penetrates the receiving chamber 14, so that the unspecified heads of Ergänzungszuhaltungsstifte 21 can slide to the outer surface of the locking member 11. The inner ends of the Ergänzungszuhaltungsstifte 21 cooperate with recesses 23 on the key broad side surfaces of the key shank 9 'together. The key shank 9 'is designed so that the use of the key 9 is given as a reversible key.

Zur Steuerung des Bewegungsübertragungsgliedes 17 weist der Schlüsselschaft 9' ein beweglich gestaltetes Distanzstück 24 auf. Dieses ist in Form einer Rolle mit Bewegungsspiel gestaltet. Die mit Bewegungsspiel die Rollenbohrung 24' durchgreifende Rollenachse 25 steht geneigt zur Längsmittelebene des Schlüsselschaftes 9. Das bewegliche Distanzstück 24, also die Rolle, wird durch die betreffende Wandung des Schlüsselkanals 7 so gesteuert, daß der gegenüberliegende Rollenumfang das Bewegungsübertragungsglied 17 in radialer Auswärtsrichtung bewegt.For controlling the motion transmitting member 17, the key shank 9 'has a movably shaped spacer 24. This is designed in the form of a role with movement play. The with movement play the roller bore 24 'by cross roller axis 25 is inclined to the longitudinal center plane of the key shank 9. The movable spacer 24, so the role is determined by the relevant wall of the Keyway 7 controlled so that the opposite roller circumference moves the motion transmission member 17 in the radial outward direction.

Zur Einordnung der Zuhaltungsstifte 8 gehen von den Schmalseiten des Schlüsselschaftes 9' entsprechend tief geschnittene Vertiefungen 26 aus, welche beidseitig von am Schlüsselschaft vorgesehenen Vertiefungen schlüsselschmalseitig einen Steg zwischen sich belassen. Dadurch ist eine sägezahnartige Struktur des Schlüsselschaftes vermieden. Wie insbesondere Fig. 11a zeigt, schließen die Flanken a der Vertiefungen 26 mit der benachbarten Schlüsselbreitseite einen Winkel α ein, der eine Größe von 105° - 110° besitzt. Diese Flanken a sind dem Schrägverlauf der Kopfflächen der Zuhaltungsstifte 8 angepaßt, so daß beim Einstecken bzw. Abziehen des Schlüssels 9 eine Verschleißminderung erzielt ist.To classify the tumbler pins 8 go from the narrow sides of the key shank 9 'correspondingly deep cut recesses 26, which left on both sides of the key shank recesses provided on the key narrow side a bridge between them. As a result, a sawtooth-like structure of the key shank is avoided. In particular Fig. 11a shows the flanks a of the recesses 26 with the adjacent key broadside an angle α, which has a size of 105 ° - 110 °. These flanks a are adapted to the oblique course of the top surfaces of the tumbler pins 8, so that when inserting or removing the key 9 a reduction in wear is achieved.

In etwa diametraler Gegenüberlage zum Sperrteil 11 nimmt der Zylinderkern 6 das in Schlüsseleinsteckrichtung verschiebbare Sperrteil 12 auf. Mit einem Teilbereich ragt dieses bei abgezogenem Schlüssel 9 in eine Sperrnut 27 des Zylindergehäuses 2 hinein. Auch diese Sperrnut 27 besitzt im Querschnitt eine Trapezform. Das Sperrteil 12 ist im Gegensatz zum Sperrteil 11 in unrundem Querschnitt erstellt. Ausschließlich der äußere, in die Sperrnut 27 hineinragende Bereich ist halbrundförmig gestaltet. Der Halbrundbogen geht in zwei parallele Flanken 28 und 29 über, welche durch einen in Schlüsseleinsteckrichtung verlaufenden Bodenabschnitt 30 miteinander verbunden sind. Zur Aufnahme des derart gestalteten Sperrteils 12 dient eine zylinderkernseitige Aufnahmekammer 31, welche eine Verdrehung des Sperrteils 12 ausschließt. Auch dieses Sperrteil 12 steht unter der Belastung einer nahe des Kopfes 6' des Zylinderkerns 6 angeordneten Druckfeder 32. Diese belastet das Sperrteil 12 in axialer Einwärtsrichtung. Eine endseitige Anspitzung 12' führt dazu, daß das Sperrteil 12 federbeaufschlagt auf eine Stufe 31' der Aufnahmekammer 31 aufgleitet und somit gegen Verlagerung in radialer Einwärtsrichtung bei abgezogenem Schlüssel gestützt ist, vergleiche insbesondere Fig. 8.In approximately diametrically opposite to the locking part 11 of the cylinder core 6 takes the sliding in Schlüsseleinsteckrichtung locking member 12. With a partial area protrudes this key removed 9 in a locking groove 27 of the cylinder housing 2 into it. This locking groove 27 has a trapezoidal shape in cross section. The locking member 12 is created in contrast to the locking member 11 in non-circular cross-section. Only the outer, projecting into the locking groove 27 area is designed semicircular. The semicircular arc merges into two parallel flanks 28 and 29, which are interconnected by a bottom section 30 extending in the key insertion direction. For receiving the thus configured locking member 12 is a cylinder core side receiving chamber 31, which excludes a rotation of the locking member 12. Also this locking member 12 is under the load of a near the head 6 'of the cylinder core 6 arranged compression spring 32. This loaded the locking member 12 in the axial inward direction. An end tipping 12 'causes the locking member 12 spring-loaded on a step 31' of the receiving chamber 31 slides and is thus supported against displacement in the radial inward direction with the key removed, in particular Fig. 8 ,

Im Gegensatz zum Sperrteil 11 greift nun das Bewegungsübertragungsglied 33 mittig am Sperrteil 12 an. Dieses Bewegungsübertragungsglied 33 ist pilzkopfförmig gestaltet und wirkt mit einer kegelförmigen Spitze 34 mit einer mit schrägen Wandungen versehenen Aussparung 35 des Sperrteiles 12 zusammen. Wie insbesondere Fig. 9 veranschaulicht, ist die Aussparung 35 von der Ecke zwischen Flanke 28 und Bodenabschnitt 30 eingeschnitten unter Bildung einer schrägen Steuerflanke 36.In contrast to the locking member 11 now engages the motion transmission member 33 centrally on the locking member 12 at. This motion transmission member 33 is mushroom-shaped and cooperates with a conical tip 34 with a recess provided with oblique walls 35 of the locking member 12 together. In particular Fig. 9 illustrated, the recess 35 is cut from the corner between edge 28 and bottom portion 30 to form an oblique control edge 36th

Bei abgezogenem Schlüssel 9 beaufschlagt das Sperrteil 12 das Bewegungsübertragungsglied 33 im Bereich seiner Aussparung 35, welches Bewegungsübertragungsglied 33 anschlagbegrenzt in einer stufenförmig abgesetzten Bohrung 37 des Zylinderkerns 6 einliegt. Das innere Ende des Bewegungsübertragungsgliedes 33 ragt dabei in den Schlüsselkanal 7 hinein, vergleiche Fig. 9.When the key 9 is removed, the locking member 12 urges the motion transmission member 33 in the region of its recess 35, which movement transmission member 33 rests limited in stop in a stepped stepped bore 37 of the cylinder core 6. The inner end of the motion transmission member 33 protrudes into the keyway 7, cf. Fig. 9 ,

Bezüglich des Bewegungsübertragungsgliedes 33 handelt es sich im Grunde genommen um einen Ergänzungszuhaltungsstift. Dieser liegt mit weiteren Ergänzungszuhaltungsstiften 38 in einer Reihe, welche Ergänzungszuhaltungsstifte 38 mit Vertiefungen 39 an den Schlüsselbreitseitenflächen zusammenwirken.With regard to the motion transmitting member 33 is basically a Ergänzungszuhaltungsstift. This lies with other Ergänzungszuhaltungsstiften 38 in a row, which Ergänzungszuhaltungsstifte 38 cooperate with recesses 39 on the key broadside surfaces.

Es stellt sich folgende Wirkungsweise ein:The following mode of action occurs:

Ist der zum Schließzylinder 1 zugehörige Schlüssel 9 nicht in den Schlüsselkanal 7 eingesteckt, wird der Zylinderkern 6 durch die Zuhaltungselemente 8, 11 und 12 gegen Drehen innerhalb des Zylindergehäuses 2 gesperrt.If the key 9 belonging to the lock cylinder 1 is not inserted into the keyway 7, the cylinder core 6 is locked by the tumbler elements 8, 11 and 12 against rotation within the cylinder housing 2.

Eine Schließdrehung des Zylinderkerns 6 verlangt den Einschub des Schlüssels 9 in den Schlüsselkanal 7. Durch die Vertiefungen 26 des Schlüssels 9 werden die Zuhaltungsstifte 8 so eingeordnet, daß die Trennfuge zwischen den Kernstiften und Gehäusestiften auf Höhe der Drehfuge F liegt. Des weiteren wird über das rollenartige Distanzstück 24 das Bewegungsübertragungsglied 17 beaufschlagt, das seinerseits über die Schrägflankensteuerung das Sperrteil 11 in die Lage gemäß Fig. 13 bis 16 verschiebt. Das bedeutet, daß das der Druckfeder 15 gegenüberliegende Ende des Sperrteils 11 die Stufe 16 verläßt und demgemäß von der Außerwirkstellung in die Wirkstellung tritt. Ebenfalls erfolgt über das Bewegungsübertragungsglied 33, welches von der betreffenden Breitfläche des Schlüsselschaftes 9' gesteuert wird, eine Verschiebung des Sperrteils 12 in Achsrichtung. Die kegelförmige Spitze 34 hat nämlich das Bestreben, zum tiefsten Punkt der Aussparung 35 zu gelangen. Bei dieser Verschiebung verlässt das Sperrteil 12 seine Auflage an der Stufe 31', wodurch das Sperrteil 12 in die Wirkstellung gelangt. Es kann nun mittels des Schlüssels 9 der Zylinderkern 6 gedreht werden, vergleiche Fig. 12, 17 bis 21. Einhergehend werden über die Wandungen der Sperrnuten 13, 27 die Sperrteile 11, 12 radial einwärts bewegt. Das Sperrteil 11 verlagert die Ergänzungszuhaltungsstifte 21 in die Vertiefungen 23 des Schlüsselschaftes 9' hinein, während das Sperrteil 12 die zugehörigen Ergänzungszuhaltungsstifte 38 verschiebt, die ihrerseits in die Vertiefungen 39 des Schlüsselschaftes 9' eintauchen. Ausschließlich das Bewegungsübertragungsglied 33 vermag dabei nicht auszuweichen, so daß das Sperrteil 12 in axialer Richtung fixiert bleibt. Wahrend der Drehverlagerung des Zylinderkerns 6 bildet die kegelförmige Spitze 34 des Bewegungsübertragungsgliedes 33 eine Gleitflache, an welcher die schräge Steuerflanke 36 des Sperrteiles 12 abgleiten kann. Es stellt sich hierbei die Stellung gemäß Fig. 20 und 21 ein.A closing rotation of the cylinder core 6 requires the insertion of the key 9 in the keyway 7. By the recesses 26 of the key 9, the tumbler pins 8 are arranged so that the parting line between the core pins and housing pins is at the height of the rotary joint F. Furthermore, the motion-transmitting member 17 is acted upon via the roller-like spacer 24, which in turn via the inclined edge control the locking member 11 in the position according to Fig. 13 to 16 shifts. This means that the pressure spring 15 opposite end of the locking member 11 leaves the step 16 and accordingly enters the operative position from the non-operative position. Also, via the motion transmission member 33, which is controlled by the respective wide surface of the key shank 9 ', a displacement of the locking member 12 in the axial direction. Namely, the conical tip 34 tends to reach the deepest point of the recess 35. In this shift, the locking member 12 leaves its support on the step 31 ', whereby the locking member 12 enters the operative position. It can now be rotated by means of the key 9 of the cylinder core 6, cf. Fig. 12 . 17 to 21 , Along the walls of the locking grooves 13, 27, the locking members 11, 12 are moved radially inwardly. The locking member 11 displaces the Ergänzungszuhaltungsstifte 21 in the recesses 23 of the key shank 9 'into it, while the locking member 12 moves the associated Ergänzungszuhaltungsstifte 38, which in turn dive into the recesses 39 of the key shank 9'. Exclusively that Motion transfer member 33 can not dodge, so that the locking member 12 remains fixed in the axial direction. During the rotational displacement of the cylinder core 6, the conical tip 34 of the motion transmission member 33 forms a sliding surface on which the oblique control edge 36 of the locking member 12 can slide. It turns this position according to FIGS. 20 and 21 one.

Wird ein falscher Schlüssel 40 verwendet, wie in Fig. 22 veranschaulicht ist, der zwar sämtliche Zuhaltungselemente 8 und 11 einordnet, jedoch für das Bewegungsübertragungsglied 33 an seiner Breitfläche eine Bohrung 41 ausbildet, so wird das Sperrteil 12 nicht verschoben. Es behält seine Auflage an der Stufe 31' bei, so daß eine radiale Ausweichverlagerung des Sperrteils 12 nicht möglich ist. Es verbleibt demgemäß in seiner die Drehfuge zwischen Zylinderkern 6 und Zylindergehäuse 2 kreuzenden Position. Der Schließzylinder ist daher nicht schließbar.If an incorrect key 40 is used, as in Fig. 22 Although it illustrates all the tumblers 8 and 11, but forms a bore 41 for the motion transmitting member 33 on its broad surface, the locking member 12 is not displaced. It retains its support at the stage 31 ', so that a radial deflection displacement of the locking member 12 is not possible. It remains accordingly in his the fulcrum between the cylinder core 6 and cylinder housing 2 crossing position. The lock cylinder is therefore not closable.

Das in den Figuren 23 - 27 veranschaulichte zweite Ausführungsbeispiel unterscheidet sich von dem ersten im Wesentlichen darin, dass bei abgezogenem Schlüssel 9 der Schlüsselkanal 7 des Zylinderkerns 6 quer gerichtet zur Schließzylinderlängsmittelebene verläuft. Das bedeutet, dass die Vertiefungen 26 am Schlüsselschaft 9' in zwei Reihen auf jeder Schlüsselbreitfläche vorgesehen sind. Es ist ebenfalls ein Wendeschlüssel realisiert, so dass in den gewendeten Stellungen des Schlüssels 9 die zwei Reihen von Zuhaltungsstiften 8 des Schließzylinders 1' einordbar sind.That in the FIGS. 23-27 illustrated second embodiment differs from the first substantially in that with the key removed 9, the keyway 7 of the cylinder core 6 extends transversely directed to the lock cylinder longitudinal center plane. That is, the recesses 26 are provided on the key shank 9 'in two rows on each key width surface. It is also a reversible key realized, so that in the turned positions of the key 9, the two rows of tumbler pins 8 of the lock cylinder 1 'can be arranged.

In der Breitflächenebene des Schlüsselkanals 7 befindet sich die Aufnahmekammer 31, in welcher ein Sperrteil 42 untergebracht ist. Dieses entspricht in seinem Aufbau und Querschnitt im Wesentlichen dem Sperrteil 12. Die Druckfeder 32 belastet das Sperrteil 42 in Einwärtsrichtung, wobei sich dessen stumpfes Ende 42' an einer Querschulter der Aufnahmekammer 31 abstützt, vergleiche Fig. 23. In geringer Entfernung von diesem stumpfen Ende 42' bildet das Sperrteil 42 eine Bogenaussparung 43 aus. Letztere ist in Form einer segmentförmigen Mulde gestaltet. Die Bogenaussparung 43 wirkt zusammen mit einem Bewegungsübertragungsglied 44. Letzteres ist in einer zur Schmalseite des Schlüsselkanals 7 hin offenen Bohrung 45 geführt, welche Bohrung 45 den Schlüsselkanal 7 und die Aufnahmekammer 31 miteinander verbindet. Wie aus Fig. 23 ersichtlich, ist der Durchmesser des kugelförmigen Bewegungsübertragungsgliedes 44 größer als die betreffende Wandstärke zwischen Aufnahmekammer 31 und Schlüsselkanal 7. Bei nicht eingestecktem Schlüssel 9 liegt ein geringer Versatz des Bewegungsübertragungsgliedes 44 in Bezug auf die Bogenaussparung 43 vor, wobei der Versatz zum einsteckseitigen Ende des Schlüsselkanals 7 besteht. Bei nicht eingeführtem Schlüssel 9 liegt das im Wesentlichen stumpfe Ende des Sperrteils 42 auf der Stufe 31' der Auflagekammer auf. Ferner ragt in dieser Stellung der der Stufe 31' gegenüberliegende Teil des Sperrteils 42 in die Sperrnut 27 des Zylindergehäuses 2 hinein. Auf diese Weise wirkt das Sperrteil 42 einer Drehverlagerung des Zylinderkerns 6 entgegen.In the wide surface plane of the key channel 7 is the receiving chamber 31, in which a locking member 42 is housed. This corresponds in its construction and cross-section substantially the locking member 12. The compression spring 32 loads the locking member 42 in the inward direction, with its blunt end 42 'is supported on a transverse shoulder of the receiving chamber 31, compare Fig. 23 , At a short distance from this blunt end 42 ', the blocking part 42 forms a sheet recess 43. The latter is designed in the form of a segment-shaped trough. The arcuate recess 43 acts together with a motion transmission member 44. The latter is guided in a bore 45 open towards the narrow side of the key channel 7, which bore 45 connects the key channel 7 and the receiving chamber 31 with each other. How out Fig. 23 it can be seen, the diameter of the spherical motion transmission member 44 is greater than the respective wall thickness between the receiving chamber 31 and keyway 7. When not key 9 is inserted, there is a slight displacement of the motion transmitting member 44 with respect to the arcuate recess 43, wherein the offset to the plug-in end of the keyway 7 consists. When not inserted key 9, the substantially blunt end of the locking member 42 is located on the stage 31 'of the support chamber. In addition, in this position, the portion of the blocking part 42 lying opposite the step 31 'protrudes into the locking groove 27 of the cylinder housing 2. In this way, the locking member 42 counteracts a rotational displacement of the cylinder core 6.

An seinem stirnseitigen Ende geht auf Höhe der Schmalseite des Schlüsselschaftes 9' eine Nut 46 aus, welche mit dem kugelförmigen Bewegungsübertragungsglied 44 zusammenwirkt. Aufgrund der Ausgestaltung des Schlüssels 9 als Wendeschlüssel sind zwei solcher Nuten 46 in diametraler Gegenüberlage am Schlüsselschaft 9' vorhanden.At its front end is at the height of the narrow side of the key shank 9 'from a groove 46, which cooperates with the spherical motion transmission member 44. Due to the configuration of the key 9 as a reversible key, two such grooves 46 are diametrically opposed to the key shank 9 '.

In fluchtender Gegenüberlage zum Sperrteil 42 sind in der Wand zwischen Aufnahmekammer 31 und Schlüsselkanal 7, dem Bewegungsübertragungsglied 44 vorgeordnet, drei weitere Bohrungen 47 vorgesehen. In diesen liegen Ergänzungs-Zuhaltungskugeln 48 ein, welche in ihrem Durchmesser demjenigen des Bewegungsübertragungsgliedes 44 entsprechen. Das bedeutet, dass auch diese Ergängzungs-Zuhaltungskugeln 48 teilweise schmalseitig in den Schlüsselkanal 7 und in die Aufnahmekammer 31 hineinragen, wie dies Fig. 23 veranschaulicht. Den Ergänzungs-Zuhaltungskugeln 48 gegenüber liegt eine Längsausnehmung 49 des undrehbar in der Aufnahmekammer 31 angeordneten Sperrteils 42. Jenseits dieser Längsausnehmung 49 befindet sich die Bogenaussparung 43, welche als segmentförmige Mulde gestaltet ist. Der Durchmesser dieser segmentförmigen Mulde 43 ist größer als der Kugeldurchmesser des Bewegungsübertragungsgliedes 43. Aufgrund des Sachverhalts, dass der Kugeldurchmesser sämtlicher Kugeln größer ist als die Dicke des Schlüsselkanals 7, können die Kugeln nicht aus ihrer positionsgerechten Lage in den Schlüsselkanal 7 hineinfallen.In alignment facing the locking member 42 are arranged in the wall between receiving chamber 31 and key channel 7, the motion transfer member 44, three further holes 47. In these supplemental tumble balls 48 are present, which correspond in diameter to that of the motion transmitting member 44. This means that these Ergängzungs-Zuhaltungskugeln 48 extend partially narrow side in the keyway 7 and in the receiving chamber 31, as Fig. 23 illustrated. Opposite Zuhaltungskugeln 48 opposite a longitudinal recess 49 of the non-rotatably arranged in the receiving chamber 31 locking member 42. Beyond this longitudinal recess 49 is the arcuate recess 43, which is designed as a segmental trough. Due to the fact that the ball diameter of all balls is greater than the thickness of the keyway 7, the balls can not fall from their positionally correct position in the keyway 7.

Weiterhin können an dem Schließzylinder nicht veranschaulichte, ebenfalls kugelförmig gestaltete Ergänzungs-Zuhaltungen vorgesehen sein, die von entsprechenden Vertiefungen des Schlüsselschaftes 9' eingeordnet werden.Furthermore, not shown, also spherical shaped complementary tumblers may be provided on the lock cylinder, which are arranged by corresponding recesses of the key shank 9 '.

Soll der Schließvorgang mittels des Schlüssels 9 vorgenommen werden, so ist dessen Schlüsselschaft 9' zunächst in den Schlüsselkanal 7 einzuführen. Bei diesem Vorgang durchläuft das kugelförmige Bewegungsübertragungsglied 44 die von der Schlüsselstirnseite ausgehende Nut 46. Es wird dann die Stellung gemäß Fig. 25 erreicht. Die Ergänzungszuhaltungskugeln 48 sind durch die Schlüsselschmalkante aus dem Schlüsselkanal 7 hinaus verdrängt worden. Sie können dabei in die Längsausnehmung 49 des Sperrteils 42 eintreten.If the closing operation is to be performed by means of the key 9, then its key shank 9 'is first to be introduced into the key channel 7. In this process, the spherical motion transmission member 44 passes through the groove 46 extending from the key face Fig. 25 reached. The complementary tumblers 48 have been displaced out of the keyway 7 by the key edge. You can enter 42 in the longitudinal recess 49 of the locking member.

Bei weiterem Einschieben des Schlüssels 9 wird die Stellung gemäß Fig. 26 erzielt. Dann fluchten die Ergänzungs-Zuhaltungskugeln 48 mit ihnen zugeordneten Vertiefungen 50 an der Schmalseite des Schlüsselschaftes 9', so dass die Ergänzungs-Zuhaltungskugeln 48 die Längsausnehmung 49 des Sperrteils verlassen können. Gleichzeitig wird das kugelförmige Bewegungsübertragungsglied 44 aus der Nut 46 ausgesteuert und liegt dann auf der Schlüsselschaft-Schmalkante auf, was zu einer Auswärts-Radialverlagerung des Bewegungsübertragungsgliedes 44 führt. Dabei wird über eine Schrägflankensteuerung durch teilweisen Eintritt des Bewegungsübertragungsgliedes 44 in die Mulde 43 eine Axialverlagerung des Sperrteils 42 entgegen der Kraft der Druckfeder 32 bewirkt. Hierdurch wird die Auflage des Sperrteils 42 an der Stufe 31' aufgegeben. Bei der dann beginnenden Schlüsseldrehung wird in der Anfangsphase die Stellung nach Fig. 27 erreicht. Das Sperrteil wird aus der Sperrnut 27 in radialer Einwärtsrichtung gesteuert. Überlagernd erfährt dass Sperrteil 42 durch das Bewegungsübertragungsglied 44 eine weitere Axialverlagerung entgegen der Federbeaufschlagung. Die radiale Einwärtsverlagerung des Sperrteils 42 ist ermöglicht durch die Längsausnehmung 49, in welche die Ergänzungs-Zuhaltungskugeln 48 mit ihrem in die Aufnahmekammer 31 hineinragenden Bereich eintreten. Die weitere Schließdrehung mittels des Schlüssels kann dann störungsfrei fortgesetzt werden.Upon further insertion of the key 9, the position according to Fig. 26 achieved. Then the supplementary tumbler balls 48 are aligned with their associated recesses 50 on the narrow side of the key shank 9 ', so that the supplementary tumbler balls 48 can leave the longitudinal recess 49 of the locking part. At the same time, the spherical motion transmitting member 44 is disengaged from the groove 46 and then rests on the key shank narrow edge, resulting in an outward radial displacement of the motion transmitting member 44. In this case, an axial displacement of the locking member 42 against the force of the compression spring 32 is effected via a sloping edge control by partial entry of the motion transmitting member 44 into the trough 43. As a result, the support of the blocking part 42 is placed on the stage 31 '. At the beginning then turning the key is in the initial phase, the position after Fig. 27 reached. The locking member is controlled from the locking groove 27 in the radially inward direction. Overlay experiences that blocking part 42 by the motion transmission member 44 a further axial displacement against the spring action. The radial inward displacement of the blocking part 42 is made possible by the longitudinal recess 49, in which the supplementary tumbler balls 48 enter with their projecting into the receiving chamber 31 area. The further closing rotation by means of the key can then be continued trouble-free.

Claims (21)

  1. Lock cylinder with a cylinder core (6), held rotatably in a cylinder housing (2) and comprising a key channel (7) for insertion of a key (9), the rotatability of which is normally blocked by means of at least one tumbler element crossing the rotary joint (F) between cylinder core (6) and cylinder housing (2), the tumbler element forming a blocking part (11, 12, 42) which is displaceable in the key insertion direction from a blocking into a release position and cooperates with a movement transmission member (17, 33, 44) which is movable transversely to the key insertion direction when it is displaced from the blocking into the release position, characterised in that the movement transmission member (17, 33, 44) is displaceable radially outwards by inserting the key (9) and that accompanied thereby the blocking part (11, 12, 42) can be brought from its non-operational position corresponding to the blocking position into an operational position allowing its displacement into the release position.
  2. Lock cylinder according to claim 1, characterised in that the movement transmission member (17, 33) is a pin.
  3. Lock cylinder according to either one of the preceding claims, characterised in that the blocking part (11, 12) is steered on an oblique flank by the movement transmission member (17, 33).
  4. Lock cylinder according to any one of the preceding claims, characterised in that when the key is removed the blocking part (11, 12, 42) partially rests on a step (16, 31, 31') of a receiving chamber (14, 31) of the cylinder core (6) for the blocking part (11, 12, 42), which is at a smaller distance from the rotary joint (F) than the thickness of the blocking part (11, 12, 42) amounts to and when the appropriate key (9) is inserted is displaced out of the support region of the step (16, 31, 31') in order to yield radially when the cylinder core (6) rotates.
  5. Lock cylinder according to claim 4, characterised in that the blocking part (11, 12, 42) is spring-biased in the blocking position and is pushed onto the step (16, 31, 31') in particular by the force of the spring (15, 32).
  6. Lock cylinder according to any one of the preceding claims, characterised in that the blocking part (11, 12) is located at the head of supplementary tumbler pins (21, 38).
  7. Lock cylinder according to any one of the preceding claims, characterised in that the blocking part (11, 12, 42) is steered radially inwards by the wall of a blocking groove (13, 27) formed by the cylinder housing (2) when the cylinder core (6) rotates.
  8. Lock cylinder according to any one of the preceding claims, characterised in that the blocking part (11) has the form of a sharpened cylinder pin.
  9. Lock cylinder according to any one of the preceding claims, characterised in that the movement transmission member (17) engages on the end of the pin.
  10. Lock cylinder according to any one of the preceding claims, characterised in that the movement transmission member (33) acts on the centre of the pin and cooperates with a recess (35) in the blocking part (12) provided with oblique walls.
  11. Lock cylinder according to any one of the preceding claims, characterised in that the blocking part (11) can be steered by means of a spacer piece (24) movably allocated to the key shank (9).
  12. Lock cylinder according to any one of the preceding claims, characterised in that a conical tip (34) of the movement transmission member (33) forms a sliding face on which an, in particular, oblique steering flank (36) of the blocking part (12) can slide down when a radial force is exerted onto the blocking part (12) during rotation.
  13. Lock cylinder according to any one of the preceding claims, characterised by an entrance of the movement transmission member (17, 33) into the key channel (7) limited by a stop.
  14. Lock cylinder according to any one of the preceding claims, characterised by two blocking parts (11, 12) located approximately diametrically opposite one another.
  15. Lock cylinder according to any one of the preceding claims, characterised in that the key shank (9) forms indentations (26) issuing from its narrow edges, the flanks (a) of which enclose an angle α of 105° - 110° with the broad side of the key, which indentations (26) cooperate with chamfered head faces of the pin-shaped tumbler elements (8).
  16. Lock cylinder according to any one of the preceding claims, characterised in that the movement transmission member (44) acts on an arched recess (43) at a minimal distance from the end of the blocking part.
  17. Lock cylinder according to any one of the preceding claims, characterised in that the movement transmission member (44) is a ball.
  18. Lock cylinder according to any one of the preceding claims, characterised in that the blocking part (42) is located at the head of supplementary tumbler balls (48).
  19. Lock cylinder according to claim 18, characterised in that a longitudinal recess (49) of the blocking part (42) is located opposite the supplementary tumbler balls (48).
  20. Lock cylinder according to any one of claims 16 to 19, characterised in that the arched recess (43) of the blocking part (42) forms a segment-shaped trough on the far side of the longitudinal recess (49) on the inside end, the diameter of which is larger than the ball diameter.
  21. Lock cylinder according to any one of claims 4 to 20, characterised in that a blunt end (42') of the blocking part (42) rests on the step (31').
EP03734711A 2002-01-31 2003-01-29 Lock cylinder Expired - Lifetime EP1470307B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SI200331194T SI1470307T1 (en) 2002-01-31 2003-01-29 Lock cylinder

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
DE10203684 2002-01-31
DE10203684 2002-01-31
DE10220078A DE10220078B3 (en) 2002-01-31 2002-05-04 lock cylinder
DE10220078 2002-05-04
PCT/EP2003/000890 WO2003064795A1 (en) 2002-01-31 2003-01-29 Lock cylinder

Publications (2)

Publication Number Publication Date
EP1470307A1 EP1470307A1 (en) 2004-10-27
EP1470307B1 true EP1470307B1 (en) 2008-02-20

Family

ID=27664548

Family Applications (1)

Application Number Title Priority Date Filing Date
EP03734711A Expired - Lifetime EP1470307B1 (en) 2002-01-31 2003-01-29 Lock cylinder

Country Status (6)

Country Link
EP (1) EP1470307B1 (en)
AT (1) ATE386860T1 (en)
DE (1) DE50309199D1 (en)
DK (1) DK1470307T3 (en)
ES (1) ES2300584T3 (en)
WO (1) WO2003064795A1 (en)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ATE533907T1 (en) * 2004-11-30 2011-12-15 Titan Tovarna Kovinskih Izdelkov In Livarna D D Kamnik FLAT KEY WITH ADDITIONAL SECURITY ELEMENT
DE102009050129A1 (en) 2009-10-21 2011-04-28 Abus Pfaffenhain Gmbh locking system
ITBO20120662A1 (en) 2012-12-10 2014-06-11 Filippo Bastianini LOCK WITH MECHANICALLY REPROGRAMMABLE DISK LOCK AND KEY FOR THE SAME
ITBO20130122A1 (en) 2013-03-22 2014-09-23 Filippo Bastianini SECURITY LOCK AND KEY FOR THE SAME
DE102013010199B4 (en) * 2013-06-13 2016-02-04 Assa Abloy Sicherheitstechnik Gmbh Lock and key system
EP2993284A1 (en) * 2014-08-26 2016-03-09 DORMA Deutschland GmbH Cylinder body for a cylinder for locks
DE102016106404A1 (en) 2016-04-07 2017-10-12 Dom Sicherheitstechnik Gmbh & Co. Kg Improved lock cylinder

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4035934C2 (en) * 1989-11-30 1995-07-20 Wilka Schliestechnik Gmbh Locking device consisting of key and locking cylinder
AT400968B (en) * 1993-03-03 1996-05-28 Evva Werke CYLINDER LOCK AND FLAT KEY WITH TAXES
FR2762345B1 (en) * 1997-04-22 1999-07-02 Thirard Ets FLAT KEY
DE19741118A1 (en) * 1997-09-12 1999-03-18 Goetz Dr Kamm Modified lock cylinder with housing and core

Also Published As

Publication number Publication date
DE50309199D1 (en) 2008-04-03
ES2300584T3 (en) 2008-06-16
WO2003064795A1 (en) 2003-08-07
DK1470307T3 (en) 2008-06-23
ATE386860T1 (en) 2008-03-15
EP1470307A1 (en) 2004-10-27

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