US3810416A - Key-mode apparatus and system - Google Patents

Key-mode apparatus and system Download PDF

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US3810416A
US3810416A US28258972A US3810416A US 3810416 A US3810416 A US 3810416A US 28258972 A US28258972 A US 28258972A US 3810416 A US3810416 A US 3810416A
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key
bits
base
index
base bar
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D Nelms
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q35/00Control systems or devices for copying directly from a pattern or a master model; Devices for use in copying manually
    • B23Q35/04Control systems or devices for copying directly from a pattern or a master model; Devices for use in copying manually using a feeler or the like travelling along the outline of the pattern, model or drawing; Feelers, patterns, or models therefor
    • B23Q35/42Patterns; Masters models
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T409/00Gear cutting, milling, or planing
    • Y10T409/30Milling
    • Y10T409/30084Milling with regulation of operation by templet, card, or other replaceable information supply
    • Y10T409/300952Milling with regulation of operation by templet, card, or other replaceable information supply to cut lock key
    • Y10T409/301008Using templet other than a key
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T409/00Gear cutting, milling, or planing
    • Y10T409/30Milling
    • Y10T409/303416Templet, tracer, or cutter
    • Y10T409/303696Templet
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T70/00Locks
    • Y10T70/70Operating mechanism
    • Y10T70/7441Key
    • Y10T70/778Operating elements
    • Y10T70/7791Keys
    • Y10T70/7881Bitting
    • Y10T70/7893Permutation

Definitions

  • 90/62 R, 70/41 1, 90/13.05 paratus includes a key mode apparatus that has a hilt- Structural frame and a number of bits from which are [58] Field of Search 90/1305 62 1 selected those that form the specific key desired to be '70/41 76/] 10 formed.
  • the selected bits are mounted on the frame in l a particular relationship to a reference point with the [56] References cued apparatus then positionable in a key duplicating or UNITED STATES PATENTS cutting machine where a key blank may be cut in di- '3,01 1,411 12/1961 Raymond... 90/1305 rect correspondence.
  • lock keys such as the flat or paracentric type which may either be wafer or corrugated
  • a duplicating machine has been limited to only forming keys when a proper key is available to directly copy of duplicate the cuts in a similar key blank.
  • a code machine is not subject'to this limitation of requiring the actual key to be duplicated and produces keys in accordance with a coded identification system that is essentially based on spacing and depth of cuts and the relative arrangement of these cuts along the key blade.
  • the key-mode apparatus andsystem of this invention provides for forming or duplicating of keys utilizing the duplicating technique, but is not limited by the requirement of having the actual key that it is desired to duplicate. Furthermore, this key-mode apparatus and system utilizes a code system to provide the capability of a code machine to produce keys in accordance with a code identification system but which is not limited by the complexity of the mechanical structures required by the code machines that are currently available.
  • the key-mode apparatus enables an operator to simulate the key desired to be duplicated and it is the key-mode apparatus that is inserted in a duplicating machine in an operation providing a key of the desired configuration.
  • the keymode apparatus basically comprises a base frame and a plurality of selected bits that are fixedly positioned on the, base frame in a predetermined relative arrangement. Each of the bits is formed with a surface that is configured to define a particular portion of a specific key or keys and it is this portion of the bit surface that is effective in actuating the duplicating machine to reproduce that portion of the desired key.
  • the number of bits utilized in combination on the base frame to simulate a key is determined in accordance with this keymode system, as are the specific bits that are selected.
  • FIG. 1 of the drawings specifically, a key-mode apparatus is-shown in assembled relationship as may be utilized in a key duplicating machine of well known construction and not'shown in detail.
  • Basic components'of the apparatus include a base frame 11 and a plurality of bits 12 that are secured on the frame in a selected arrangement. When thus assembled with the base frame, the several bits form a composite surface 13 extending longitudinally of the frame and simulates the configuration of a specific key which it is desired to cut in an appropriately selected key blank.
  • the base frame 11 comprises a head 14 andan elongated base bar 15 that are formed as a rigid unitary structure.
  • Formed with the head 14 is a finger 17 which also axially projects from the end surface 16 but in spaced relationship to the'base bar 115. This fingerterminates in a surface 18 forming a reference index at a distance from the end surface 16.
  • the clamp fastener 27 comprises a rectangular block having an aperture formed therein through which the base bar 15 may project and is'axially movable relative thereto. Positioning of the fastener 27 on the bar to hold all of the bits in contacting engagement with each other with the one endmost bit held against the stop 20 and the other against the clamp fastener maintains the bits in the desired relative arrangement. When in this position, a clamping screw 28 threaded into the fastener 27 is turned inwardly to bear against the base bar thereby securing the bits in the desired relationship.
  • the bits 12, as can be best seen in FIG. 2, are of block-form having a base surface 30 and a contour surface 31 which are at opposite sides of the base bar.
  • Parallel end surfaces 32 that contactingly engage the end surface of an adjacent bit or either the stop or clamp fastener 27, extend transversely to the base bar and an aperture 33 extends through the bit opening at each of the end surfaces 32.
  • the aperture 33 is of the same cross-sectional configuration as the base bar and is formed in each of the bits at the same position relative to the base surface 30.
  • Alignment of the several bits transversely of the base bar 15 is thus facilitated by positioning an alignment bar 34 (see FIG. 1) against the base surfaces thus eliminating any need for holding a close tolerance-in forming the apertures as it is the spacing between the base surface 30 and contour surface 31 that is critical for accuracy, a dimension that is much easier to control from a machining standpoint.
  • the alignment bar 34 has a fiat reference surface 35 which engages the base surfaces 30 and provides the necessary alignment of the bits relative to each other transversely to the longitudinal axis of the base bar. Making the bar 34 the same thickness as the front to back dimension of the bits 12 permits the bar to be concurrently clamped with the bits during utilization thereof as will be explained subsequently.
  • the bits 12 are each formed with a contour surface 31 that is unique to that specific bit in the code identification system.
  • This contour surface 31 generally defines a V-shaped notch that is to be reproduced at a particular point on a key blank.
  • the various dimensions of each surface element of the contour surface is controlled in predetermined dimensional increments so that a set of bits may be fabricated which includes all of the dimensional variants that may be encountered in the identification system. These dimensional variations occur in the heighth of the bit as between the base surface 30 and the crest flats 36, spacing of crest edge 37 relative to the end surfaces, depth and width of the notch root 38 and inclination of the notch side 39, and the width of each bit as determined by the end surfaces 32.
  • dimensional variants being made in accordance with a code identification system enables the operator to select those bits by consultation of the code tables in reference to a specific lock code identification and to assemble the bits the selected to form a composite surface 13 that simulates the desired key configuration.
  • the corners are rounded at 40 at the juncture of the end surfaces 32 and the crest flats 36 which facilitates movement of a contour following tool but do not affect the key thus produced since this portion of the crest is not critical to lock operation.
  • one or more of the bits 12 in any selected composite arrangement may have a flat contour surface, such as bit 12a in FIG. 1, as thus essentially form spacers with the surface at the desired height.
  • the key-mode apparatus 10 of this invention Utilization of the key-mode apparatus 10 of this invention is diagrammatically illustrated in H6. 3.
  • the key-mode apparatus 10 is first assembled as previously described by selecting the bits 12 and relatively arranging the bits on the base bar 15 by reference to the code identification system.
  • the base index stop 20 is also set with respect to the reference index 18 in accordance with the code identification system and, with all bits aligned by means of the alignment bar, the clamp fastener 27 is secured to the bar 15 to clamp the bits in fixed relationship.
  • the key-mode apparatus 10 When thus assembled, the key-mode apparatus 10 is secured at the master location in a key duplicating machine 45 by means of a clamp 46 which grips all of the bits.
  • a key blank 47 is also selected by reference to the code identification system.
  • Mechanically interconnected in relatively fixed relationship but relatively movable transversely to the key-mode apparatus 10 and key blank 47 are a contour following tool 49 and a cutting wheel 50.
  • the cutting wheel 50 may be driven by an electric motor 51 through a gear box 52.
  • relative position ing may be accomplished by setting the contour following tool 49 against the reference index 18 of the keymode apparatus with the cutting wheel 50 also positioned against a respective reference surface 47a of the key blank 47 and aligning the highest projection of the contour surface with the edge of the uncut blank 47. With the electric motor 51 energized and rotating the cutting wheel 50, it is then merely necessary to cause the contour following tool 49 to traverse the composite surface 13 formed by the bits 12 in conformity with the contour to cause this surface to be duplicated in the key blank 47.
  • the key-mode apparatus comprises a base frame and a plurality of bits selected by reference to the code identification system which together form a composite surface defining the desired key configuration thus enabling the operator to produce a key by means of a relatively inexpensive duplicating machine.
  • the key-mode apparatus provides greater versatility than that which can be obtained by the complex and expensive code machines.
  • Key-mode apparatus comprising a base frame provided with a reference index and including an elongated base bar,
  • a base index stop adjustably positionable longitudinally of said base bar in predetermined relationship to said reference index
  • clamp means fixedly positionable on said base bar in relatively spaced relationship to said index stop
  • each of said bits having a contoured surface of predetermined configuration formed therein at a side extending axially relative to said base bar, the contoured surfaces of said bits thus assembled combining to define a lock key configuration.
  • said reference index is a surface disposed transversely to the longitudinal axis of said base bar and is mounted in fixed relationship thereto.
  • said base index stop includes a stop surface extending transversely to the longitudinal axis of said base bar and engageable with one of said bits, reference indicia cooperatively related to said reference index to locate the stop surface at selected predetermined position relative to said reference index, and adjustment means for securing said index stop in a selected position.
  • said base frame includes a head portion and said adjustment means of said index stop includes an elongated bar mechanically connected with the head portion.
  • each of said bits is formed with an aperture for cooperatively receiving said base bar and has end surfaces at which said aperture opens that extend transversely of the longitudinal axis of said base bar and are contactingly engageable with said base index stop and said clamp means.
  • each of said bits is formed with rounded corners at the juncture of the contoured surface and respective end surfaces to facilitate traversal of a contour following tool.
  • Key-mode apparatus having a plurality of said bits with a predetermined number of said bits selected for positioning on said base bar in accordance with a code identification system, each of said bits having a contoured surface unique to a single specific element of said code identification system.

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  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Mechanical Engineering (AREA)
  • Lock And Its Accessories (AREA)

Abstract

Apparatus and system is provided for enabling forming of lock keys on key duplicating machines. The apparatus includes a keymode apparatus that has a structural frame and a number of bits from which are selected those that form the specific key desired to be formed. The selected bits are mounted on the frame in a particular relationship to a reference point with the apparatus then positionable in a key duplicating or cutting machine where a key blank may be cut in direct correspondence. Selection of the bits is based on a system of code identification that is related to the bit configuration.

Description

*W 11 1 I1 11 3,8111, 16 Nefims, Jr. May 14, 11974 [54] KEYMODE APPARATUS AND SYSTEM FOREIGN PATENTS OR APPLICATIONS [761 lnvemo David E Nelms 6454 Lexleigh 1,209,847 1/1966 Germany 90 1305 Rd., Reynoldsburg, Ohio 43068 [22] Filed; Aug, 21, 1972 Primary ExaminerAndrew R. Juhasz Assistant Examiner-Z. R. Bilinsky 1211 Appl 282589 Attorney, Agent, or Firm-Mahoney, Miller & Stebens Related US. Application Data [63] Continuation-impart of Ser. N01 126,177, March 19, 1 1 R T abandoned" Apparatus and system is provided for enabling forming of lock keys on key duplicating machines. The ap- [52] 11.5. C1. 90/62 R, 70/41 1, 90/13.05 paratus includes a key mode apparatus that has a hilt- Structural frame and a number of bits from which are [58] Field of Search 90/1305 62 1 selected those that form the specific key desired to be '70/41 76/] 10 formed. The selected bits are mounted on the frame in l a particular relationship to a reference point with the [56] References cued apparatus then positionable in a key duplicating or UNITED STATES PATENTS cutting machine where a key blank may be cut in di- '3,01 1,411 12/1961 Raymond... 90/1305 rect correspondence. Selection of the bits is based on 1,948.260 2/1934 Fowler 90/13.05 a system of code identification that is related to the bit 2,731,087 1/1956 C016 90/1305 configuration v 3,440,906 4/1969 Allen 76/110 3,243,979 4/1966 Silvern 70/411 7 Clams, 3 Drawmg Flgul'es PATENTEUMAY 14 m4 sum: or z WW2 I5 KEY-MODE APPARATUS AND SYSTEM This application 'is a continuation-in-part of copend-.
ing US. application Ser. No. 126,177, filed Mar. 19, 1971, now abandoned.
BACKGROUND OF THE INVENTION Producing of lock keys, such as the flat or paracentric type which may either be wafer or corrugated, heretofore has utilized either a duplicating machine or a code machine, other than those few keys that are laboriously formed by hand filing, to form the required cuts in a key blank. Aduplicating machine has been limited to only forming keys when a proper key is available to directly copy of duplicate the cuts in a similar key blank. A code machine is not subject'to this limitation of requiring the actual key to be duplicated and produces keys in accordance with a coded identification system that is essentially based on spacing and depth of cuts and the relative arrangement of these cuts along the key blade. While the code machines are capable of producing keys merely on the basis of the identification code, these machines are very complex, incorporating variable adjustment mechanisms of intricate and unique configurations, and inherently results in an extremely expensive machine. Such machines also are inherently limited in capability as a consequence of practical limitations in .variables and adjustments that may be accommodated by the mechanisms.
SUMMARY OF THE INVENTION The key-mode apparatus andsystem of this invention provides for forming or duplicating of keys utilizing the duplicating technique, but is not limited by the requirement of having the actual key that it is desired to duplicate. Furthermore, this key-mode apparatus and system utilizes a code system to provide the capability of a code machine to produce keys in accordance with a code identification system but which is not limited by the complexity of the mechanical structures required by the code machines that are currently available.
In accordance with this invention, the key-mode apparatus enables an operator to simulate the key desired to be duplicated and it is the key-mode apparatus that is inserted in a duplicating machine in an operation providing a key of the desired configuration. The keymode apparatus basically comprises a base frame and a plurality of selected bits that are fixedly positioned on the, base frame in a predetermined relative arrangement. Each of the bits is formed with a surface that is configured to define a particular portion of a specific key or keys and it is this portion of the bit surface that is effective in actuating the duplicating machine to reproduce that portion of the desired key. The number of bits utilized in combination on the base frame to simulate a key is determined in accordance with this keymode system, as are the specific bits that are selected. This key-mode apparatus and system thus enables an operator to produce a selected key from an extremely large array of diverse key configurationsin accordance with a code identification with the system essentially unlimited in capability.
These and other objects and advantages of this keymode apparatus and system will be readily apparent from the following detailed description of an embodiment thereof and the accompanying drawings.
DESCRIPTION OF THE INVENTION EMBODIMENT Referring to FIG. 1 of the drawings specifically, a key-mode apparatus is-shown in assembled relationship as may be utilized in a key duplicating machine of well known construction and not'shown in detail. Basic components'of the apparatus include a base frame 11 and a plurality of bits 12 that are secured on the frame in a selected arrangement. When thus assembled with the base frame, the several bits form a composite surface 13 extending longitudinally of the frame and simulates the configuration of a specific key which it is desired to cut in an appropriately selected key blank.
The base frame 11 comprises a head 14 andan elongated base bar 15 that are formed as a rigid unitary structure. The head 14, which is of a general rectanguv lar configuration, has an end surface 16 from which the base bar axially extends and these two elements may either be integrally formed or separately formed and mechanically secured together. Formed with the head 14 is a finger 17 which also axially projects from the end surface 16 but in spaced relationship to the'base bar 115. This fingerterminates in a surface 18 forming a reference index at a distance from the end surface 16.
that extends axially parallel to the base bar, but interfits in an elongated recess 22 formed in the head 14. An elongated slot 23 formed in and extending axially of the guide bar 21 received a clamping screw 24 threaded into the head 14. This slot arrangement permits longitudinal adjustment of the index stop 20 relative to the base bar l5 in accordance with the code identification of this key-mode system. For purposes of adjustment, a series of reference marks 25 are inscribed on the front surface of the stop 20 with the appropriate mark aligned with the reference index 18 as required by the code identification'for a particular key and thus positions the end stop surface 26 at a desired point relative to the reference index 18. i
All of the bits 12 are positioned on the base bar 15 and are held in fixed relationship on the bar bya clamp fastener 27. The clamp fastener 27 comprises a rectangular block having an aperture formed therein through which the base bar 15 may project and is'axially movable relative thereto. Positioning of the fastener 27 on the bar to hold all of the bits in contacting engagement with each other with the one endmost bit held against the stop 20 and the other against the clamp fastener maintains the bits in the desired relative arrangement. When in this position, a clamping screw 28 threaded into the fastener 27 is turned inwardly to bear against the base bar thereby securing the bits in the desired relationship.
The bits 12, as can be best seen in FIG. 2, are of block-form having a base surface 30 and a contour surface 31 which are at opposite sides of the base bar. Parallel end surfaces 32 that contactingly engage the end surface of an adjacent bit or either the stop or clamp fastener 27, extend transversely to the base bar and an aperture 33 extends through the bit opening at each of the end surfaces 32. The aperture 33 is of the same cross-sectional configuration as the base bar and is formed in each of the bits at the same position relative to the base surface 30.
Alignment of the several bits transversely of the base bar 15 is thus facilitated by positioning an alignment bar 34 (see FIG. 1) against the base surfaces thus eliminating any need for holding a close tolerance-in forming the apertures as it is the spacing between the base surface 30 and contour surface 31 that is critical for accuracy, a dimension that is much easier to control from a machining standpoint. The alignment bar 34 has a fiat reference surface 35 which engages the base surfaces 30 and provides the necessary alignment of the bits relative to each other transversely to the longitudinal axis of the base bar. Making the bar 34 the same thickness as the front to back dimension of the bits 12 permits the bar to be concurrently clamped with the bits during utilization thereof as will be explained subsequently.
The bits 12 are each formed with a contour surface 31 that is unique to that specific bit in the code identification system. This contour surface 31 generally defines a V-shaped notch that is to be reproduced at a particular point on a key blank. In accordance with the key-mode system of this invention, the various dimensions of each surface element of the contour surface is controlled in predetermined dimensional increments so that a set of bits may be fabricated which includes all of the dimensional variants that may be encountered in the identification system. These dimensional variations occur in the heighth of the bit as between the base surface 30 and the crest flats 36, spacing of crest edge 37 relative to the end surfaces, depth and width of the notch root 38 and inclination of the notch side 39, and the width of each bit as determined by the end surfaces 32. These dimensional variants being made in accordance with a code identification system enables the operator to select those bits by consultation of the code tables in reference to a specific lock code identification and to assemble the bits the selected to form a composite surface 13 that simulates the desired key configuration. it will be noted that the corners are rounded at 40 at the juncture of the end surfaces 32 and the crest flats 36 which facilitates movement of a contour following tool but do not affect the key thus produced since this portion of the crest is not critical to lock operation. Also, as may be determined by the code identification system, one or more of the bits 12 in any selected composite arrangement may have a flat contour surface, such as bit 12a in FIG. 1, as thus essentially form spacers with the surface at the desired height.
Utilization of the key-mode apparatus 10 of this invention is diagrammatically illustrated in H6. 3. The key-mode apparatus 10 is first assembled as previously described by selecting the bits 12 and relatively arranging the bits on the base bar 15 by reference to the code identification system. The base index stop 20 is also set with respect to the reference index 18 in accordance with the code identification system and, with all bits aligned by means of the alignment bar, the clamp fastener 27 is secured to the bar 15 to clamp the bits in fixed relationship.
When thus assembled, the key-mode apparatus 10 is secured at the master location in a key duplicating machine 45 by means of a clamp 46 which grips all of the bits. A key blank 47 is also selected by reference to the code identification system. Mechanically interconnected in relatively fixed relationship but relatively movable transversely to the key-mode apparatus 10 and key blank 47 are a contour following tool 49 and a cutting wheel 50. The cutting wheel 50 may be driven by an electric motor 51 through a gear box 52. In initially clamping the key-mode apparatus 10 and key blank 47 in the duplicating machine, relative position ing may be accomplished by setting the contour following tool 49 against the reference index 18 of the keymode apparatus with the cutting wheel 50 also positioned against a respective reference surface 47a of the key blank 47 and aligning the highest projection of the contour surface with the edge of the uncut blank 47. With the electric motor 51 energized and rotating the cutting wheel 50, it is then merely necessary to cause the contour following tool 49 to traverse the composite surface 13 formed by the bits 12 in conformity with the contour to cause this surface to be duplicated in the key blank 47.
It will be readily apparent that a novel key-mode apparatus is provided which enables an operator to readily produce lock keys by reference to a code identification system. The key-mode apparatus comprise a base frame and a plurality of bits selected by reference to the code identification system which together form a composite surface defining the desired key configuration thus enabling the operator to produce a key by means of a relatively inexpensive duplicating machine. The key-mode apparatus provides greater versatility than that which can be obtained by the complex and expensive code machines.
Having thus described this invention, what is claimed l. Key-mode apparatus comprising a base frame provided with a reference index and including an elongated base bar,
a base index stop adjustably positionable longitudinally of said base bar in predetermined relationship to said reference index, and
clamp means fixedly positionable on said base bar in relatively spaced relationship to said index stop, and
a plurality of bits positionable in predetermined linear arrangement on said base bar in clamped relationship between said base index stop and said clamp means, each of said bits having a contoured surface of predetermined configuration formed therein at a side extending axially relative to said base bar, the contoured surfaces of said bits thus assembled combining to define a lock key configuration.
2. Key-mode apparatus according to claim 1 wherein said reference index is a surface disposed transversely to the longitudinal axis of said base bar and is mounted in fixed relationship thereto.
3. Key-mode apparatus according to claim 1 wherein said base index stop includes a stop surface extending transversely to the longitudinal axis of said base bar and engageable with one of said bits, reference indicia cooperatively related to said reference index to locate the stop surface at selected predetermined position relative to said reference index, and adjustment means for securing said index stop in a selected position.
4. Key-mode apparatus according to claim 3 wherein said base frame includes a head portion and said adjustment means of said index stop includes an elongated bar mechanically connected with the head portion.
5. Key-mode apparatus according to claim 1 wherein each of said bits is formed with an aperture for cooperatively receiving said base bar and has end surfaces at which said aperture opens that extend transversely of the longitudinal axis of said base bar and are contactingly engageable with said base index stop and said clamp means.
6. Key-mode apparatus according to claim 5 wherein each of said bits is formed with rounded corners at the juncture of the contoured surface and respective end surfaces to facilitate traversal of a contour following tool.
7. Key-mode apparatus according to claim 1 having a plurality of said bits with a predetermined number of said bits selected for positioning on said base bar in accordance with a code identification system, each of said bits having a contoured surface unique to a single specific element of said code identification system.

Claims (7)

1. Key-mode apparatus comprising a base frame provided with a reference index and including an elongated base bar, a base index stop adjustably positionable longitudinally of said base bar in predetermined relationship to said reference index, and clamp means fixedly positionable on said base bar in relatively spaced relationship to said index stop, and a plurality of bits positionable in predetermined linear arrangement on said base bar in clamped relationship between said base index stop and said clamp means, each of said bits having a contoured surface of predetermined configuration formed therein at a side extending axially relative to said base bar, the contoured surfaces of said bits thus assembled combining to define a lock key configuration.
2. Key-mode apparatus according to claim 1 wherein said reference index is a surface disposed transversely to the longitudinal axis of said base bar and is mounted in fixed relationship thereto.
3. Key-mode apparatus according to claim 1 wherein said base index stop includes a stop surface extending transversely to the longitudinal axis of said base bar and engageable with one of said bits, reference indicia cooperatively related to said reference index to locate the stop surface at selected predetermined position relative to said reference index, and adjustment means for securing said index stop in a selected position.
4. Key-mode apparatus according to claim 3 wherein said base frame includes a head portion and said adjustment means of said index stop includes an elongated bar mechanically connected with the head portion.
5. Key-mode apparatus according to claim 1 wherein each of said bits is formed with an aperture for cooperatively receiving said base bar and has end surfaces at which said aperture opens that extend transversely of the longitudinal axis of said base bar and are contactingly engageable with said base index stop and said clamp means.
6. Key-mode apparatus according to claim 5 wherein each of said bits is formed with rounded corners at the juncture of the contoured surface and respective end surfaces to facilitate traversal of a contour following tool.
7. Key-mode apparatus according to claim 1 having a plurality of said bits with a predetermined number of said bits selected for positioning on said base bar in accordance with a code identification system, each of said bits having a contoured surface unique to a single specific element of said code idenTification system.
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Cited By (19)

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US4102247A (en) * 1976-10-04 1978-07-25 Victor Vincent Fanberg Depth key set
US4646590A (en) * 1985-11-21 1987-03-03 Jones Brian W Temporary key template
DE3625217A1 (en) * 1986-07-25 1988-02-04 Huelsbeck & Fuerst Apparatus for producing the step-shaped indentation tracks on flat keys
EP0513320A1 (en) * 1990-10-25 1992-11-19 BUSH, Robert, C. Code duplicator partial silhouette method
WO1993006960A1 (en) * 1991-09-30 1993-04-15 Axxess Entry Technologies Key cutting machine with a code selectable key duplicating system
WO2008066857A2 (en) * 2006-11-28 2008-06-05 Key Tech, Inc. Fully automatic key duplicating machine with automatic key model identification system
US20110271722A1 (en) * 2009-01-19 2011-11-10 Bernt Adolfsson Lock and binary key therefor
US8532809B2 (en) 2010-06-03 2013-09-10 Minute Key Inc. Network of fully automatic self-service key duplicating kiosks
US8979446B2 (en) 2010-06-03 2015-03-17 Minute Key Inc. Fully automatic self-service key duplicating kiosk
US20150114056A1 (en) * 2013-05-23 2015-04-30 Bloftown Co., Ltd. Lock and key for the same
US9359792B1 (en) * 2015-08-25 2016-06-07 Bloftown Co., Ltd. Combination of lock with adjustable key and core
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US4102247A (en) * 1976-10-04 1978-07-25 Victor Vincent Fanberg Depth key set
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DE3625217A1 (en) * 1986-07-25 1988-02-04 Huelsbeck & Fuerst Apparatus for producing the step-shaped indentation tracks on flat keys
US5271698A (en) * 1988-10-21 1993-12-21 Axxess Entry Technologies Key cutting machine with a code selectable key duplicating system
EP0513320A1 (en) * 1990-10-25 1992-11-19 BUSH, Robert, C. Code duplicator partial silhouette method
EP0513320A4 (en) * 1990-10-25 1993-06-30 Robert C. Bush Code duplicator partial silhouette method
WO1993006960A1 (en) * 1991-09-30 1993-04-15 Axxess Entry Technologies Key cutting machine with a code selectable key duplicating system
AU673809B2 (en) * 1991-09-30 1996-11-28 Axxess Technologies, Inc. Key cutting machine with a code selectable key duplicating system
US10421133B2 (en) 2006-01-23 2019-09-24 Hy-Ko Products Company Key duplication machine
US9656332B2 (en) 2006-01-23 2017-05-23 Hy-Ko Products Company Key duplication machine
US9682432B2 (en) 2006-01-23 2017-06-20 Hy-Ko Products Company Key duplication machine
US9687920B2 (en) 2006-01-23 2017-06-27 Hy-Ko Products Company Key duplication machine
US9815126B2 (en) 2006-01-23 2017-11-14 Hy-Ko Products Company Key duplication machine
US9925601B2 (en) 2006-01-23 2018-03-27 Hy-Ko Products Company Key duplication machine
US8287215B2 (en) 2006-11-28 2012-10-16 Minute Key Inc. Fully automatic key duplicating machine with automatic key model identification system
US10646935B2 (en) 2006-11-28 2020-05-12 The Hillman Group, Inc. Self service key duplicating machine with automatic key model identification system
US10737336B2 (en) 2006-11-28 2020-08-11 The Hillman Group, Inc. Self service key duplicating machine with automatic key model identification system
US9199318B2 (en) 2006-11-28 2015-12-01 Minute Key Inc. Fully automatic key duplicating machine with automatic key model identification system
US9914179B2 (en) 2006-11-28 2018-03-13 Minute Key Inc. Self service key duplicating machine with automatic key model identification system
US20080145163A1 (en) * 2006-11-28 2008-06-19 Daniel Freeman Fully automatic key duplicating machine with automatic key model identification system
WO2008066857A2 (en) * 2006-11-28 2008-06-05 Key Tech, Inc. Fully automatic key duplicating machine with automatic key model identification system
WO2008066857A3 (en) * 2006-11-28 2008-10-16 Daniel Freeman Fully automatic key duplicating machine with automatic key model identification system
US20110271722A1 (en) * 2009-01-19 2011-11-10 Bernt Adolfsson Lock and binary key therefor
US10100555B2 (en) * 2009-01-19 2018-10-16 Bernt Adolfsson Lock and binary key therefor
US9934448B2 (en) 2009-05-01 2018-04-03 Hy-Ko Products Company Key blank identification system with groove scanning
US9514385B2 (en) 2009-05-01 2016-12-06 Hy-Ko Products Company Key blank identification system with groove scanning
US11227181B2 (en) 2009-05-01 2022-01-18 Hy-Ko Products Company Llc Key blank identification system with groove scanning
US9582734B2 (en) 2009-05-01 2017-02-28 Hy-Ko Products Company Key blank identification system with bitting analysis
US8979446B2 (en) 2010-06-03 2015-03-17 Minute Key Inc. Fully automatic self-service key duplicating kiosk
US9323237B2 (en) 2010-06-03 2016-04-26 Minute Key Inc. Network of fully automatic self-service key duplicating kiosks
US11810090B2 (en) 2010-06-03 2023-11-07 The Hillman Group, Inc. Key duplication system
US11170356B2 (en) 2010-06-03 2021-11-09 The Hillman Group, Inc. Key duplication system
US10482439B2 (en) 2010-06-03 2019-11-19 The Hillman Group, Inc. Key duplication system
US10628813B2 (en) 2010-06-03 2020-04-21 The Hillman Group, Inc. Key duplication system
US8634951B2 (en) 2010-06-03 2014-01-21 Minute Key Inc. Fully automatic self-service key duplicating kiosk
US8532809B2 (en) 2010-06-03 2013-09-10 Minute Key Inc. Network of fully automatic self-service key duplicating kiosks
US20150114056A1 (en) * 2013-05-23 2015-04-30 Bloftown Co., Ltd. Lock and key for the same
US9470016B2 (en) * 2013-05-23 2016-10-18 Bloftown Co., Ltd. Lock and key for the same
US10956772B2 (en) 2015-08-03 2021-03-23 Hy-Ko Products Company High security key scanning system
US9818041B2 (en) 2015-08-03 2017-11-14 Hy-Ko Products Company High security key scanning system
US11842554B2 (en) 2015-08-03 2023-12-12 Hy-Ko Products Company Llc High security key scanning system
US9359792B1 (en) * 2015-08-25 2016-06-07 Bloftown Co., Ltd. Combination of lock with adjustable key and core
CN110026592A (en) * 2019-05-31 2019-07-19 衢州净土自动化设备有限公司 Automatic milling arc equipment
WO2023070176A1 (en) 2021-10-29 2023-05-04 Atanasov Daniel Georgiev Locksmith tool and method for cutting a key therewith

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