Title of Invention

A KEY BLANK

Abstract ABSTRACT A key blank including a generally elongate shaft portion defining a key combination surface adapted to have formed thereon key cuts which define a key combination, the ' key blank including a movable pin element retained within the elongate shaft portion, the movable pin elenent being displaceable in a single direction, outwardly from the key combination surface.
Full Text



A great variety of key blanks and associated locks are known. In the prior art key blanks include a generally elongate unitary key cut-bearing portion with which is associated a key head.
There is known and described in U.S. Patent 4,377, 082 a key blank available from Dom of Germany including a floating ball which is located at the center of the key cut-bearing portion and engages additional blocking pins off-axis with respect to the conventional pin tumblers.
There is also known and described in French Patents 82,01,905 and 84,03,944 and PCT published application 84.400.694.0 a key blank available from Vachette of France including a traverse sliding pin, which engages a cam in a corresponding lock.
The present invention relates to a key blank including a generally elongate shaft portion defining a key combination surface adapted to have formed thereon key cuts which define a key combination, the key blank including a movable pin element retained within the elongate shaft portion, the movable pin element being displaceable in a single direction, outwardly from the key combination surface.
There is also provided in accordance with a preferred embodiment of the present invention a key blank including a generally elongate shaft portion defining a key combination surface adapted to have formed thereon


at a subsequent time, a plurality of key cuts arranged in a row, which key cuts define a key combination, the key blank including a movable pin element retained within the elongate shaft portion, the movable pin element arranged to lie along the row of key cuts.
There is additionally provided in accordance with a preferred embodiment of the present invention a key blank including a generally elongate shaft portion defining a key combination surface adapted to have formed thereon key cuts which define a key combination, the key blank including a movable pin element retained within the elongate shaft portion, the movable pin element being selectably configurable to provide multiple combinations.
In accordance with one embodiment of the present invention, the movable pin element is configurable prior to its insertion in the key blank.
In accordance with another preferred embodiment of the present invention, the movable pin element may be configurable following its insertion in the key blank. Preferably the configuration of the movable pin element can be carried out using the same key cutting apparatus used for cutting the remaining key cuts on the key blank.


Further in accordance with a preferred embodiment of the present invention, the key blank also comprises a retractable cover member for covering part of the shaft including the movable pin element when it is not inserted in a lock keyway.
Preferably, the key blank is a reversible key blank arranged to have formed thereon a pair of opposite key combination surfaces and includes a pair of movable pin elements, each associated with one of the key combination surfaces.
In accordance with a preferred embodiment of the invention the pair of movable pin elements may have different configurations. In such a case, depending on the orientation of the key it is operative to operate two different and mutually exclusive master key systems.
There is additionally provided in accordance with a preferred embodiment of the present invention a key including a generally elongate shaft portion defining a key combination surface having formed thereon key cuts which define a key combination, the key including a movable pin element retained within the elongate shaft portion, the movable pin element being displaceable in a single direction, outwardly from the key combination surface.


Accordingly the present invention provides a key blank comprising a generally elongate shaft portion along a shaft axis and defining first and second generally flat oppositely directed side surfaces, joined by edge surfaces narrower than said side surfaces, said first side surface defining a first key combination surface and having formed thereon elongate keyway guides extending at least partly along a first keyway guide axis, parallel to said shaft axis; and at least one first movable pin element retained within the elongate shaft portion, characterized in that the at least one first movable pin element extends along a first movable pin axis, located along said first keyway guide axis, said movable pin being perpendicular to said first keyway guide axis, wherein said pin element extends from said first side surface to said second side surface and is displaced axially along said first movable pin axis from said first side surface, such that when said at least one first movable pin element is recessed with respect to said second side surface it protrudes outwardly from said first side surface.


The present. invention will be understood and appreciated more fully from the following detailed description, taken in conjunction with the drawings in which:
Figs. 1A and in are pictorial illustrations showing two types of locks and keys constructed and operative in accordance with a preferred embodiment of the present invention;'
Figs. 2A and 2B are pictorial illustrations of a key blank and a key constructed and operative in accordance with a preferred embodiment of the present invention;
Figs. 3A, 3B, 3C and 3D are sectional illustrations taken along lines III - III of Fig. 2B, and illustrating four different examples of tha construction and mounting of movable pin elements in a key;
Fig. 4 is a sectional illustration of a lock cylinder having a key inserted therein, constructed and operative in accordance with a preferred embodiment of the present invention;
Fig. 5 is a partially cu :-way pictorial illustration of part of the plug of the Lock of FLg. 4, taken along lines V - V of Fig. 4;
Fig. 6 is a planar' illustration of the keyway of the plug of Fig. 5, taken along the line VI in Fig. 5;
Figs. 7A and 7B are partially cut away sectional illustrations of the operation of two differently configured movable pins in engagement with telescoping plug pins in accordance with a preferred ombodinent of the present invention;
Figs. 8A and OB are pictorial illustrations of a key blank and a key constructed and operative in accordance with a preferred embodiment of the presenc invention;
Fig. 9 is an illustration of a disassembled non-rota table movable pin assembly, constructed and operative in accordance with a preferred embodiment of the present invention, and particularly useful for pin configuration with conventional key cutting devices;
Fig. 10 is a sectional illustration of the assembly of

Fig. 9 taken along the lines X - X in Fig. 9;
Fig. 11 is an illustration of a disassembled •non-rotatable movable pin assembly, constructed and operative in accordance with another preferred embodiment of the present invention, and particularly useful f.or pin configuration with key cutting apparatus;
Fig. 12 is a sectional illustration of the assembly of Fig. 11 taken along the linoo XII - XII in Fig. 11;
Figs. 13A, 13B and 13C are illustrations of three different non-rotatable pin configurations useful in accordance with a preferred embodiment of the present invention;
Figs. 14A and 14B are illustrations of a key blank and key respectively, having non-rotateble movable pins; and
Figs. 15A and 15B are illustrations of a key having a retractable sleeve in accordance with a preferred embodiment of the invention in respective extended and retracted orientations.

Illustrate a key and cylinder lock constructed and. operative in accordance with a preferred embodiment of the present invention. Fig. 1A illustrates a door lock 10 employing a cylinder 12 and key 14 according to the present invention and Fig. IB illustrates a padlock 16 employing a cylinder 18 and key 20 according to the present invention.
Broadly speaking, the key and the key blank used to produce the key are characterized in that they include at least one and preferably two movable pin elements having at least one of the following characteristics:
The pin element is arranged for movement in only a single direction perpendicular to the plane of the key and the lock keyway.
The pin element is non-rotatable with respect to the remainder of the key.
The pin element is selectably configurable so as to define a plurality of different permutations. The pin element includes a recess.
The pin element is arranged to lie along a row of key cuts conventionally formed in the key and thus operates a conventional plug pin of the lock.
A pair of pin elements having different configurations are associated with opposite key combination surfaces, thus providing a double function key and key blank.
These and other features of the key blank, key and lock of the present invention will be described hereinbelow with reference to the remainder of the drawings in order to provide a comprehensive picture of the novel features of the invention which is applicable to any suitable cylinder lock context.
Reference is now made to Figs. 2A and 2B which illustrate a key blank 22 and key 24 constructed and operative in accordance with a preferred embodiment of the present invention. The common features of the key blank 22 and the key 24
1 2 JUL 2000
DUPLICATE

Will now be'described using identical reference indications.
Both the key blank 22 and the key 24 comprise a generally elongate shaft portion 26, preferably, but not necessarily including first and second opposite planar surfaces 28 and 30, at least one of which constitutes a key combination surface 30 which is arranged to have formed thereon a plurality of key cuts 32, which define a lock combination in a conventional manner. When the key blank 22 and the key 24 define reversible keys, both of planar surfaces 28 and 30 constitute key combination surfaces.
Preferably, each key combination surface 30 also defines elongate keyway guides 34, which fit in configuration to protrusions defined in the interior of the keyway in the corresponding lock, which will described hereinbelow. Some or all of key cuts 32 may be formed over guides 34.
In accordance with a preferred embodiment of the present invention a movable pin element 40 is retained in shaft portion 26 for motion, preferably in a single direction only, perpendicular to, i.e. in and out of the key combination surface 30. In reversible key blanks, as shown in Figs. 2A and 2B, a pair of oppositely directed movable pin elements 40 are retained in shaft portion 26, each for operative association with a key combination surface.
In accordance with a preferred embodiment of the invention the pair of oppositely-directed movable pin elements may have different configurations. In such a case, depending on the orientation of the key it is operative to operate two different and mutually exclusive master key systems, each of which is operated by a different pin element configuration.
Reference is now made to Figs. 3A - 3D which are taken along the lines III - III in Fig. 2B and illustrate four different examples of movable pin mountings and configurations.
In the embodiment of Fig. 3A, the shaft 26 is formed with a two step bore 42 for each pin element 41 and the pin element 41 is preferably integrally formed with a plug pin engaging portion 44 having a facing end 46 which can be


selectably configured to provide various combinations, preferably a socket 48 of a desired depth; a broadened intermediate portion 50 and a narrowed pusher pin engagement portion 52. A retaining ring 54 preferably retains the pin element 40 against disengagement from the shaft portion 26 in one direction and engagement of intermediate portion 50 with a shoulder 56 retains the pin element 41 against disengagement from shaft portion 26 in the other direction.
In the embodiment of Fig. 3B the same pin element 41 as in the embodiment of Pig. 3A may be employed. Here, however, a single shoulder bore 60 is provided, having a peripheral recess 62, which accommodates a narrow peripheral protrusion 64 of a sealing ring 66.
In the embodiment of Fig. 3C, a different type of pin element 70 is shown and is preferably integrally formed with a plug pin engaging portion 74 having a facing end 76 which can be selectably configured to provide various combinations, preferably a socket 78 of a desired depth and a broadened portion 80 defining a pusher pin engagement surface 82. A retaining ring 84 is partially seated in a peripheral key cut 86 formed in portion 74 adjacent end 76 and preferably retains the pin element 70 against disengagement from the shaft portion 87 in one direction and engagement of a shoulder between portions 74 and 80 of pin element 70 with a corresponding shoulder 88 in a bore retains the pin element 70 against disengagement from' shaft portion 87 in the other direction. Boro 9 0 also defines a broadened portion which accommodates retaining ring 84.
In the embodiment, of Fig. 3D, yet another type of pin element 100 is shown and is preferably integrally formed with a plug pin engaging portion '101 having a facing end 102 which can be selectably configured to provide various combinations, preferably a socket 104 of a desired depth, and a broadened portion 106 defining a pusher pin engagement surface 108. No retaining ring is required inasmuch as the top of a bore 110 is swaged as indicated at reference numeral 112 to retain the pin element 100 against disengagement from the shaft portion 114 in


one direction. Engagement of a shoulder between portions 101 and 106 of pin element 100 with a corresponding shoulder 116 in bore 110 retains the pin element 100 against disengagement from shaft portion 114 in the other direction.
Reference is now made to Figs. 4, 5 and 6, which illustrate a lock cylinder in operative engagement with a key constructed in accordance with a preferred embodiment of the present invention. It is to be appreciated that although the key illustrated at reference numeral 120 in Fig. 4 is the- embodiment shown in Fig. 3A, any suitable embodiment of key may be employed. The lock cylinder of Figs. 4, 5 and 6 comprises a housing 122 and a plug 124 which is arranged for rotation relative thereto and defining a keyway 126.
A first plurality of chambers 128 are formed in the housing 122 and a- second plurality of chambers 130 are formed in the plug on one side of the keyway and are arranged such that each one of the first plurality of chambers 128 extends coaxially with a corresponding one of the second plurality of chambers 130, when the plug is in a first rotational orientation relative to the housing, as shown in Fig. 4.
A plurality of first pin assemblies 132, which are preferably telescopic pin assemblies having a plurality of concentric pin portions as shown including a spring, are preferably disposed in the first plurality of chambers 128 and are retained therein by plugs 134. A plurality of second pin assemblies 136, which are preferably telescopic pin assemblies having a plurality of concentric pin portions as shown, are disposed in the second plurality of chambers 130. A shear line 138 is defined between the facing surfaces of the respective pluralities of first and second pin assemblies 132 and 136, when the proper key is located in its proper location in the keyway 126 in engagement with the second pin assemblies.
In accordance with a preferred embodiment of the present invention a third pin assembly 140 is disposed in a suitable single shoulder bore 142 in the plug 124 on a side of the keyway 126 opposite to that of the second pin assemblies 130


and is operative to urge a movable pin element 150 outwardly from the key combination surface 152 of the key 120 into operative engagement with one of the second pin assemblies 130. Alternatively, the movable pin element 150 may operate against an additional pin assembly which is not normally found in conventional cylinders.
In the illustrated embodiment, the movable pin element 150 may be identical to pin element 41 in the embodiment of Pig. 3A. The third pin assembly 140 preferably includes a pusher pin 154 having a rounded forward surface 156 and a broadened end portion 158, which is retained against disengagement from plug 124 by a retaining ring 160. A spring 162, which is stronger than the spring of pin assembly 132, urges pusher pin 154 forwardly into displacing engagement with portion 52 of pin element 150, thus urging pin element 41 into operative engagement with one of the second pin assemblies 130, as shown.
Key guide protrusions 164 are illustrated in Figs. 5 and 6.
Fig. 4 illustrates pin 41 having a socket 48 formed at surface 46 thereof. Figs. 7A and 7B illustrate other possible configurations of the forward surface 46 of pin 41, which enable various lock combinations to be realized thereby. In Fig. 7A, the forward surface is flat, as indicated by reference numeral 170. In Fig. 7B, the forward surface is a combination recess and central protrusion. It is appreciated that any other suitable surface configuration may be provided.
Reference is now made to Figs. 8A and 8B which illus¬trate an alternative embodiment of the key blank and key of Figs. 2A and 2B wherein the movable pins 180 are located beyond the normal key cuts 182 and keyway engaging guides 184. In such a case, an additional plug pin and housing pin (not shown) must be provided for being operated by the movable pin.
It is a particular feature of the present invention that the configuration of the plug pin engagement surface of the movable pin may be selectably configured either as part of the manufacture of the key blank, or thereafter, when the key cuts


are being made. In the latter case, the same machinery used for cutting the remaining key cuts can be employed for configuring the plug pin engagement surface of the movable pin element. This is made possible by impeding rotation of the movable pin, as is illustrated in Figs. 9 - 13C.
Reference is now made to Figs. 9 - 13C which illustrate the construction and mounting of a non-rotatable movable pin element in a key blank. As seen in Figs. 9 and 10, a movable pin element 200 may be generally identical to pin element'41 of Fig. 3A with the additional provision of a radially extending protrusion 202 which seats in a corresponding recess 204 in a bore 206 formed in the key blank shaft 208. The movable plug may be retained, similarly to the embodiment of Fig. 3A, by a retaining ring 210 in press-fit engagement with a portion of 'bore 206.
According to an alternative embodiment of the present invention, as seen in Figs. 11 and 12, a movable pin element 220 may be generally identical to pin element 41 of Fig. 3A with the additional provision of one or more radially extending recesses 222. The movable plug is retained against rotation by a retaining ring 230, which is formed with protrusions 224 which corresponding to and seat in recesses 222, which is held in non-rotatable press-fit engagement with a portion of a bore 232 in a key blank shaft 234.
Figs. 13A, 13B and 13C illustrate three additional illustrative examples of non-rotating movable pin elements, indicated by reference numerals 240, 242 and 244 which may be retained in a corresponding (suitably shaped bore 250, 252 and 254 in corresponding key blank, (shaft portions 260, 262 and 264. The pin elements of Figs. 13A - 13C are typically retained against disengagement by swaging of the respective bores.
It is to be appreciated that any suitable type of non-rotating movable pin elements may be employed. Their configuration and mounting is not limited by the examples provided herein.
Reference is now made to Figs. 14A and 14B, which


illustrate 'a Key blank constructed and operative in"' accordance with an embodiment of the present invention and employing non-rotating movable pins 270 before and after grooving by using a conventional key cutting machine. It is seen that key cuts 272 are formed in the plug pin engaging surfaces of the movable pins 270.
Reference is now made to Figs. 15A and 15B which illus¬trate a key of the type described above and also having formed therein a retractable cover sleeve 280 for providing- protection of the key cuts and particularly the movable pin elements 282 against ingress of spurious materials or damage which could impede their proper operation.
In the embodiment of Figs. 15A and 15B a compression spring 284 is operative to urge sleeve 280 forward away from a molded key head 286 and over shaft portion 288. The sleeve 280 is retracted into a recess 290 formed into the key head 286 when the key is inserted into a keyway by engagement with the front surface of the plug. It is to be appreciated that normally key blanks are to be manufactured with the sleeve 280 and spring 284 prior In of Mm Jcny and n the by blnnkn in this way arc also within tho scopo of tho present invention.
It will be appreciated by persons skilled in the art
that the present invention is not limited by what has been
t.
particularly shown and described hereinabove. Rather tho scope of the present invention is defined only by the claims which follow:


We claim
1. A key blank comprising: a generally elongate shaft portion
along a shaft axis and defining first and second generally flat
oppositely directed side surfaces, joined by edge surfaces
narrower than said side surfaces, said first side surface
defining a first key combination surface and having formed
thereon elongate keyway guides extending at least partly along a
first keyway guide axis, parallel to said shaft axis; and at
least one first movable pin element retained within the elongate shaft portion, characterized in that the at least one first movable pin element extends along a first movable pin axis, located along said first keyway guide axis, said movable pin tyeing perendieular to said first keyway guide axis, wherein said pin element extends from said first side surface to said second
side surface and is displaced axially along said first movable
pin axis from said first side surface, such that when said at
least one first movable pin element is recessed with respect to
said second side surface it protrudes outwardly from said first
side surface. !
2. A key blank according to claim 1, wherein said second side
surface also defines a second key combination surface, and has
formed thereon elongate keyway guides extending at least partly
along a second keyway guide axis, parallel to said shaft axis and
to said first keyway guide axis, and at least one second movable
pin element is retained within the elongate shaft portion at a
location along said second keyway guide axis, the at least one
second movable pin element extending along a second movable pin

axis, perpendicular to said second keyway guide axis ana parament
to said first movable pin axis, from said first side surface to
said second side surface and being displaceable axially along
said second movable pin axis from said first side: surface
inwardly towards said second side surface, such that when said at
least one second movable pin element is recessed with respect to
said first side surface it protrudes outwardly from said second
side surface.
i
3. A key blank according to claim 2, wherein said at least
first and second movable pin elements are laterally offset one from the other.
4. A key blank according to claim 1, wherein at least one first
movable pin element is retained within the elongate shaft portion
at a location along said first keyway axis so that it cannot
protrude from said second side surface. 5. A key blank according to claim 2, wherein at least one
second movable pin element is retained within the elongate shaft
portion at a location along said second keyway axis so that it
cannot protrude from said first side surface.
6. A key blank substantially as herein described with reference
to the accompanying drawings.


Documents:

2089-mas-1997 abstract.pdf

2089-mas-1997 claims.pdf

2089-mas-1997 correspondnece-others.pdf

2089-mas-1997 correspondnece-po.pdf

2089-mas-1997 description(complete).pdf

2089-mas-1997 drawings.pdf

2089-mas-1997 form-1.pdf

2089-mas-1997 form-26.pdf

2089-mas-1997 form-4.pdf

2089-mas-1997 petition.pdf


Patent Number 187641
Indian Patent Application Number 2089/MAS/1997
PG Journal Number 30/2009
Publication Date 24-Jul-2009
Grant Date 13-Dec-2002
Date of Filing 23-Sep-1997
Name of Patentee M/S. MUL-T-LOCK LTD
Applicant Address SOUTHERN INDUSTRIAL ZONE, YAVENE 70 653
Inventors:
# Inventor's Name Inventor's Address
1 NOACH EIZEN 5 HANITA STREET, RISHON LEZION
2 DANI MARKBREIT 27 MOSHE SHARAET STREET, AZOR 58003
PCT International Classification Number E 05B19/00
PCT International Application Number N/A
PCT International Filing date
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 NA