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EP 0 305 953 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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27.04.1994 Bulletin 1994/17 |
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Date of filing: 29.08.1988 |
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International Patent Classification (IPC)5: E05B 19/02 |
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Reinforced shank plastic key
Verstärkter Plastikschlüsselschaft
Tige de la clé en plastique renforcée
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Designated Contracting States: |
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AT BE CH DE ES FR GB GR IT LI LU NL SE |
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Priority: |
03.09.1987 US 91492 16.02.1988 US 155884 08.07.1988 US 216763
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Date of publication of application: |
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08.03.1989 Bulletin 1989/10 |
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Divisional application: |
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93106063.6 / 0553900 |
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Proprietor: AXXESS ENTRY TECHNOLOGIES |
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Tempe, Arizona 85281 (US) |
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Inventor: |
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- Almblad, Robert E.
Scottsdale
Arizona 85254 (US)
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Representative: Goddar, Heinz J., Dr. et al |
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FORRESTER & BOEHMERT
Franz-Joseph-Strasse 38 80801 München 80801 München (DE) |
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References cited: :
DE-A- 2 037 071 DE-C- 1 031 677 DE-U- 1 901 655 US-A- 4 637 236
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DE-A- 3 518 354 DE-U- 1 789 132 GB-A- 1 229 830 US-A- 4 677 835
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
BACKGROUND OF THE INVENTION
FIELD OF THE INVENTION
[0001] The present invention relates to flat plastic keys according to the preamble of the
independent claim and is more particularly concerned with reinforcing such keys against
breaking at their shanks due to extraordinary twisting stress applied through the
handles of the keys.
DESCRIPTION OF RELATED ART
[0002] Conventional metal keys for operating tumbler locks such as in automobiles, building
doors, apparatus controls, and the like, have heretofore been generally constructed
throughout the shank and bit portions, and generally the handles, or head portion
of a uniform thickness common with the bit thickness. Molded plastic keys have also
heretofore been constructed of substantially uniform thickness throughout their length
similar to comparable metal keys.
[0003] The key bit must be fairly snuggly fitted in the key slot in the cylinder plug. Looseness
of the bit in the key slot might defeat proper engagement of the lock tumblers in
the key notches. On the other hand, especially in the USA, to avoid difficulty in
quick insertion of the key bit into the slot, the general practice has been to provide
enlarged entrance dimensions. This results in the key shank often having little if
any torque support when subjected to the considerable twisting stress which may occur
if for any reason there is resistance to turning of the key in the lock. Such resistance
may be variously caused such as by faulty cutting of the key notches, binding due
to corrosion or icing, and the like. The general tendency of the user, where there
is any such resistance to turning of the key in the lock, is to apply additional torque
or twisting force to the key through its handle. Metal keys will generally withstand
such extraordinary twisting stress.
[0004] In a normal U.S. automobile ignition or trunk lock, only about 3.5 to 9.2 cm.Kg of
torque are necessary to open the lock; non U.S. automobiles typically require higher
torques. A normal uniform thickness molded plastic key will withstand up to 9.2 to
10.4 cm.Kg of torque. If greater torque is applied there is danger of breaking the
plastic key shank. An average women can apply up to 8 to 11.5 cm.Kg of torque and
an average man can apply up to 11.5 to 16 cm.Kg of torque. Therefore, there has been
some key shank breakage experienced in respect to molded plastic keys having a substantially
common thickness throughout their lengths.
[0005] German Patent Application No. 2,037,071 discloses a key having a reinforcing insert
extending through the entire lenght of the bit, the shank and into at least a part
of the key head. German Patent No. 1,031,677 discloses a key, parts of which eventually
coming under high stress, consisting of metal which is surrounded by plastic material.
[0006] German Patent Application No. 3,518,354 discloses another embodiment of a key having
a full length reinforcing insert of particularly metal. German Utility Model No. 1,901,655
discloses a key having a rigid cylindrical section extending between the key handle
and a lock actuating member of the key. The end of the cylindrical support element
of the key includes a partially hollowed-out interior.
[0007] U.S. Patent No. 4,677,835 discloses a plastic key inter-connected by a plastic hinge
to a plastic card structure. The plastic key disclosed in this patent fails to include
any reinforcing materials. U.S. Patent No. 4,637,236 discloses a related type of plastic
key detachably connected within a plastic card. The plastic key includes no reinforcing
materials.
[0008] British Patent No. 1,229,830 discloses a key molded from a thermosetting plastics
material which includes a longitudinally extending reinforcing material fabricated
from a plurality of flexible glass filaments. The flexible glass filaments extend
from a location disposed well within the key head, entirely through the key shank
and through the full length of the key bit. The plurality of glass filament reinforcing
members because of the inherent flexibility are apparently intended to aid in withdrawing
the broken bit of a plastic key rather than to reinforcing the torque transfer capabilities
between the key head, key shank and the entrance slot of a cylindrical lock.
[0009] German Utility Model No. 1,789,132 discloses a plastics material key with a non-specified
steel insert.
[0010] By way of a typical disclosure of a metal key and tumbler lock, U.S. Patent No. 4,656,851
is referred to.
SUMMARY OF THE INVENTION
[0011] The present invention provides an improved plastics material key. The plastics material
key of the present invention can be used alone, or it can be used in combination with
means for holding the key, such as a card-like holder. The improved plastics material
key of the present invention includes means for substantially lessening the likelihood
that the plastics material key will break or fail when unusual resistance or torque
is encountered then the plastics material key is utilized in a lock or the like.
[0012] To this end, the plastics material key includes means for reinforcing the key. The
means for reinforcing the key increases the strength of the key over that of a key
which is essentially only a plastic duplicate of a standard metal key.
[0013] The means for reinforcing the plastics material key is so constructed and arranged
that it does not interfere or hinder the cutting of notches or slots in the key that
are necessary along at least one side of the bit to actuate the tumblers of a lock.
Accordingly, the present invention provides a means for reinforcing the key that does
not hinder or hamper some of the advantages of a plastic material key. For example,
a plastics material key imay be easier for a key cutter to cut than a corresponding
metal key. However, if a rigid insert were placed within the plastics material key
and extended along the entire length of the key any advantages inherent in the ability
to cut a plastics material key would be lost. Furthermore, the plastics material key
provides a lightweight key when compared to some typical metal keys. An extending
rigid member throughout the entire length of the key would increase the weight of
the key and limit some of the advantages of a plastics material key.
[0014] The present invention also provides a plastics material key having a reinforcement
member that can be used with a variety of different keys. There are a variety of different
key blanks having different shank and bit constructions with varying groove configurations.
The present invention provides means for reinforcing plastics material key that can
utilized with a majority of the known typical key structures.
[0015] An important object of the present invention is to provide a new and improved molded
key constructed from a plastics material which is strengthened against torque induced
breakage of the shank portion of the key.
[0016] A further object of the present invention is to provide a new and improved molded
plastic key provided with a shank reinforcing insert.
[0017] A still further object of the present invention is to provide a new and improved
molded plastics material key in which the shank is strengthened through the addition
to the plastic material of a strengthening material.
[0018] In accordance with the principles of the present invention, there is provided a flat
plastic key according to the attached claim 1.
[0019] Fig. 1 is a plan view of another embodiment of a molded plastics material key having
a rigid insert of the present invention.
[0020] Fig. 2 is a perspective view of the rigid insert embodied in the molded plastics
material key and insert of Fig. 1.
[0021] Fig. 3 is a cross-sectional view of the molded plastics material key of Fig. 1 taken
along lines XXXVIII-XXXVIII of Fig. 1.
[0022] Referring now to Figs. 1-3, a further embodiment of a molded plastics material key
and reinforcing means of the present invention is illustrated. As illustrated, again,
the plastics material key 301 includes a head portion 315, shank portion 311, and
bit portion 303. A rigid insert 313 for reinforcing the shank is embedded within a
portion of the head 315 and the shank 311 of the plastics material key 301. As further
illustrated, as in the previous embodiment, the head 315 includes a slot 371 or hole
that provides means for supporting the insert 313 during molding. The slot 371 further
functions to provide means for stress relieving portions of the key adjacent the insert
313 so that the key 301 does not substantially deform as the plastics material of
the key cools after molding.
[0023] The embodiment of the rigid insert 313 illustrated has a substantially Z-shaped cross-section.
To this end, the rigid insert 313 includes a body portion 314 having extending side
portions 341 and 343 having a reduced cross-sectional thickness. These side portions
341 and 343 are located in planes offset from each other with respect to a thickness
of the shank 311. Accordingly, the side portions 341 and 343 can be received within
reduced thickness offset side portions 319 and 321 of the molded plastics material
key 301. This construction allows the rigid insert 313 to be utilized with keys that
have longitudinal side areas that do not lie within the same horizontal plane. As
illustrated, the offset side portions 341 and 343 extend all the way from one end
of the rigid insert 313 to approximately a second end allowing the insert relatively
easy movement into a portion of the slot 371 during the shrinking of the plastics
material of the key 301 after molding.
[0024] Referring to Fig. 2, as illustrated, preferably, the rigid insert 313 includes an
extending flange portion 373. As in the previously discussed embodiment, the flange
373 provides an interlock with the plastics material of the key 301. Again, because
in certain embodiments of the key 301 and rigid insert 313, the extended side portions
341 and 343, or body portion 314 of the rigid insert, may be coplanar, or approximately
coplanar, with a portion of the bit 303 of the key 301, the flange 373 ensures that
the rigid insert 313 is secured within the key.
[0025] In the embodiment illustrated, the flange 373 includes a semi-circular cut-out portion
374. The semi-circular cut-out portion 374 is utilized to at least partially receive
a locater pin that allows the rigid insert 313 to be securely positioned within the
mold cavity during the molding process of the key 301.
[0026] Due to its construction, the rigid insert 313 illustrated in Fig. 2 has been found
to function satisfactorily in at least certain types of automobile keys.
[0027] From the foregoing it will be apparent that the present invention provides means
that afford substantial reinforcement protection against torque damage to the critical
areas of the molded plastic keys.
1. A flat plastic key (301) for actuating a rotary cylinder lock (17) including a head
(315) for receiving a lock actuating input torque within a force input area and having
an end surface, a head thickness, a head width and a head length; a shank (311) having
a substantially rectangular cross section with substantially parallel sides defining
a shank thickness, the shank further including a width, a length, a first end surface
joined to the end surface of the head (315) and a spaced apart second end surface;
a solid plastic bit (305) having an edge surface and including a thickness, a width
and a first end surface joined to the second end surface of the shank (311); a rigid
metal insert (313) imbedded in the head (315) and the shank (311) of the key (301);
whereby application of the lock actuating input torque to the force input area of
the key head (315) transfers the input torque through the plastic key head (315) and
key shank (311) and through the head section and shank section of the rigid metal
insert (313) to the sidewalls of the lock entrance slot (22) to enable the lock actuating
input torque to rotate the lock face and thereby actuate the lock (17) while limiting
torsional bending of the key head (315) relative to the key shank (311), the plastic
key (301) being characterized by the rigid metal insert having a thickness and rigidity
adequate to resist torsional bending and a length less than the combined length of
the head (315) and the shank (311), the insert (313) including an insert head section
with an end displaced into the force input area of the key head (315) and an insert
shank section with an end terminating before the second end of the key shank (311).
2. The plastic key of Claim 1 characterized in that the thickness of the rigid metal
insert (313) is uniform within the head (315) and shank (311) sections of the key
(301).
3. The plastic key of Claim 2 characterized in that the thickness of the rigid metal
insert (313) is equal to the thickness of the key bit (305).
4. The plastic key of Claim 3 characterized in that the rigid metal insert (313) includes
parallel oriented first and second side surfaces defining the thickness of the insert.
5. The plastic key of Claim 4 characterized in that the rigid metal insert (313) includes
a width defined by first and second spaced apart insert edges.
6. The plastic key of one of the preceding claims characterized in that the key shank
(311) includes first and second spaced apart edges defining the shank (311) width
and that the rigid metal insert (313) is centrally located between the first and second
edges of the key shank (311).
7. The plastic key of Claim 6 characterized in that the insert shank section includes
first and second spaced apart edges defining the width of the insert shank section.
1. Flacher Kunststoffschlüssel (301) zum Betätigen eines drehbaren Zylinderschlosses
(17), welcher umfaßt:
einen Kopf (315) zum Aufnehmen eines Schloßbetätigungs-Eingangsdrehmoments in einem
Kraftaufgabebereich und mit einer Endoberfläche, einer Kopfdicke, einer Kopfbreite
und einer Kopflänge,
einen Schaft (311), der einen im wesentlichen rechteckigen Querschnitt mit im wesentlichen
parallelen Seiten aufweist, welche eine Schaftdicke festlegen, wobei der Schaft weiterhin
eine Breite, eine Länge, eine erste Endoberfläche, die mit der Endoberfläche des Kopfes
(315) zusammengefügt ist, und eine abgesetzte zweite Endoberfläche umfaßt,
einen festen Kunststoffbart (305), der eine Randfläche besitzt und eine Dicke, eine
Breite und eine erste Endoberfläche umfaßt, welche mit der zweiten Endoberfläche des
Schafts (311) zusammengefügt ist,
einen starren Metalleinsatz (313), welcher in den Kopf (315) und den Schaft (311)
des Schlüssels (301) eingebettet ist, wodurch das Anlegen des Schloßbetätigungs-Eingangsdrehmoments
an den Kraftaufgabebereich des Schlüsselkopfs (315) das Eingangsdrehmoment über den
Kunststoff-Schlüsselkopf (315) und den Schlüsselschaft (311) und über den Kopfabschnitt
und den Schaftabschnitt des starren Metalleinsatzes (313) auf die Seitenwände des
Schloßeingangsschlitzes (22) überträgt, um zu ermöglichen, daß das Schloßbetätigungs-Eingangsdrehmoment
die Schloßfläche dreht und dadurch das Schloß (17) betätigt, während die Torsionsverbiegung
des Schlüsselkopfes (315) relativ zu dem Schlüsselschaft (311) begrenzt wird, wobei
der Kunststoffschlüssel (301) dadurch gekennzeichnet ist, daß der starre Metalleinsatz
eine Dicke und Steifigkeit, die ausreichend sind, um einer Torsionsverbiegung zu widerstehen,
und eine geringere Länge als die Länge des Kopfes (315) und des Schaftes (311), zusammengenommen,
aufweist, wobei der Einsatz (313) einen Einsatz-Kopfabschnitt mit einem Ende, welches
in den Kraftaufgabebereich des Schlüsselkopfs (315) versetzt ist und einen Einsatz-Schaftabschnitt
mit einem Ende enthält, das vor dem zweiten Ende des Schlüsselschafts (311) endet.
2. Kunststoffschlüssel nach Anspruch 1, dadurch gekennzeichnet, daß die Dicke des starren
Metalleinsatzes (313) innerhalb des Kopf- (315) und des Schaftabschnitts (311) des
Schlüssels (301) gleichförmig ist.
3. Kunststoffschlüssel nach Anspruch 2, dadurch gekennzeichnet, daß die Dicke des starren
Metalleinsatzes (313) gleich der Dicke des Schlüsselbarts (305) ist.
4. Kunststoffschlüssel nach Anspruch 3, dadurch gekennzeichnet, daß der starre Metalleinsatz
(313) parallel ausgerichtete erste und zweite Seitenflächen umfaßt, welche die Dicke
des Einsatzes festlegen.
5. Kunststoffschlüssel nach Anspruch 4, dadurch gekennzeichnet, daß der starre Metalleinsatz
(313) eine Breite umfaßt, welche durch erste und zweite, voneinander abgesetzte Kanten
des Einsatzes festgelegt wird.
6. Kunststoffschlüssel nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet,
daß der Schlüsselschaft (311) erste und zweite Kanten umfaßt, die voneinander abgesetzt
sind und die Breite des Schafts (311) festlegen, und daß der starre Metalleinsatz
(313) in der Mitte zwischen den ersten und zweiten Kanten des Schlüsselschafts (311)
angeordnet ist.
7. Kunststoffschlüssel nach Anspruch 6, dadurch gekennzeichnet, daß der Schaftabschnitt
des Einsatzes erste und zweite Kanten umfaßt, die voneinander abgesetzt sind und die
Breite des Schaftabschnitts des Einsatzes festlegen.
1. Clé plate (301) en matière plastique pour actionner une serrure à cylindre rotatif
(17) comprenant une tête (315) pour recevoir un couple d'entrée d'actionnement de
serrure dans une zone d'entrée de force et présentant une surface d'extrémité, une
épaisseur de tête, une largeur de tête et une longueur de tête, comprenant un fût
(311) présentant une section transversale sensiblement rectangulaire dotée de côtés
sensiblement parallèles, définissant une épaisseur de fût, le fût comprenant en outre
une largeur, une longueur, une première surface d'extrémité reliée à la surface d'extrémité
de la tête (315) et une seconde surface d'extrémité espacée de cette dernière, comprenant
une mèche (305) en matière plastique rigide présentant une surface de bord et comportant
une épaisseur, une largeur et une première surface d'extrémité reliée à la seconde
surface d'extrémité du fût (311), et comportant une plaquette métallique rigide (313)
noyée dans la tête (315) et le fût (311) de la clé (301), de manière qu'une application
du couple d'entrée d'actionnement de serrure sur la zone d'entrée de force de la tête
de clé (315) transfère le couple d'entrée, par l'intermédiaire de la tête de clé en
matière plastique (315) et du fût de clé (311) et par l'intermédiaire de la partie
de tête et la partie de fût de la plaquette métallique rigide (313), aux parois latérales
de la rente d'entrée de serrure (22), pour permettre au couple d'entrée d'actionnement
de serrure de faire tourner la face de serrure et d'actionner de ce fait la serrure
(17), tout en limitant une flexion en torsion de la tête de clé (315) par rapport
au fût de clé (311), la clé en matière plastique (301) étant caractérisée par le fait
que la plaquette métallique rigide présente une épaisseur et une rigidité appropriées
pour résister à la flexion en torsion et une longueur inférieure à la longueur combinée
de la tête (315) et du fût (311), la plaquette (313) comprenant une partie de tête
de plaquette dont une extrémité est déplacée vers la zone d'entrée de force de la
tête de clé (315) et une partie de fût de plaquette dont une extrémité se termine
avant la seconde extrémité du fût de clé (311).
2. Clé en matière plastique selon la revendication 1, caractérisée en ce que l'épaisseur
de la plaquette métallique rigide (313) est uniforme dans les parties de tête (315)
et de fût (311) de la clé (301).
3. Clé en matière plastique selon la revendication 2, caractérisée en ce que l'épaisseur
de la plaquette métallique rigide (313) est égale à l'épaisseur de la mèche de clé
(305).
4. Clé en matière plastique selon la revendication 3, caractérisée en ce que la plaquette
métallique rigide (313) comprend des première et seconde surfaces latérales orientées
parallèlement, définissant l'épaisseur de la plaquette.
5. Clé en matière plastique selon la revendication 4, caractérisée en ce que la plaquette
métallique rigide (313) comprend une largeur définie par des premier et second bords
de plaquette espacés entre eux.
6. Clé en matière plastique selon l'une quelconque des revendications précédentes, caractérisée
en ce que le fût de clé (311) comprend des premier et second bords espacés entre eux,
définissant la largeur du fût (311), et en ce que la plaquette métallique rigide (313)
est située centralement entre les premier et second bords du fût de clé (311).
7. Clé en matière plastique selon la revendication 6, caractérisée en ce que la partie
de fût de plaquette comprend des premier et second bords espacés entre eux, définissant
la largeur de la partie de fût de plaquette.
