EP0143831A1 - Aufhängungssystem mit haltedornen - Google Patents

Aufhängungssystem mit haltedornen

Info

Publication number
EP0143831A1
EP0143831A1 EP19840902155 EP84902155A EP0143831A1 EP 0143831 A1 EP0143831 A1 EP 0143831A1 EP 19840902155 EP19840902155 EP 19840902155 EP 84902155 A EP84902155 A EP 84902155A EP 0143831 A1 EP0143831 A1 EP 0143831A1
Authority
EP
European Patent Office
Prior art keywords
mounting
pins
panel
panels
array
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.)
Withdrawn
Application number
EP19840902155
Other languages
English (en)
French (fr)
Inventor
Arthur T. Spees
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.)
VISU-FLEX Co
VISU FLEX Co
Original Assignee
VISU-FLEX Co
VISU FLEX Co
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
Application filed by VISU-FLEX Co, VISU FLEX Co filed Critical VISU-FLEX Co
Publication of EP0143831A1 publication Critical patent/EP0143831A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42FSHEETS TEMPORARILY ATTACHED TOGETHER; FILING APPLIANCES; FILE CARDS; INDEXING
    • B42F17/00Card-filing arrangements, e.g. card indexes or catalogues or filing cabinets
    • B42F17/28Card-filing arrangements, e.g. card indexes or catalogues or filing cabinets in the form of endless bands or revolving drums

Definitions

  • the present invention relates to a simplified mounting system for the storage and display of information element filing panels, and more particularly to such a mounting system that utilizes a previously existing extruded or other border construction formed on the filing panels to engage with a spaced apart longitudinal pair of cooperating mounting members, by providing either a series of opposing pins or a series of apertures formed in the cooperating members to receivably engage the upper and lower portions of the filing panel border construction.
  • the storage method utilizes a number of small, flat sheets of microfilm known as microfiche, each sheet approximately 4" X 6" in size and containing rows of microimages, consisting of pages of printed matter.
  • the sheets themselves are normally stored in constructions known as panel files.
  • Each file is provided with a plurality of panels or frames having multiple, individual pockets, with a separate microfiche received by each pocket.
  • the overlapping, individual pockets formed on both sides of the panel permit the storage of many pieces of microfiche within . the one panel.
  • the pockets are overlapped in such ' a manner as to permit the upper titled portion of each microfiche to be visible and easily accessible to the systems operator. Additional details concerning the structure of these panel files may be found in my .earlier United States Patent No. 4,232,463, the disclosures of which are specifically incorporated by reference herein.
  • the typical microfiche informational storage system consists of a great many panel files collected together and maintained in some specified order, utilizing an apparatus permitting the display and easy access to the individual panels.
  • Such display devices have previously included the familiar three-ring binders and various types of rotary stands or planar racks. Similar panels and methods of mounting are also provided for the various types of magnetic media, although the panel itself may assume various different forms, depending upon the design of the particular media. Regardless of the particular configuration, advantageous design feature for these "" storage and display devices is the ability to remove specific individual panels from the storage device.
  • the insertion and removal of individual panels is obtained in a conventional manner by providing three holes in the microfiche storage panel that are in turn received by the three rings of the binder.
  • These three-ring binders are somewhat satisfactory for the smaller collections of storage panels, however, as the number of storage panels increases, the three-ring binders rapidly become too_ cumbersome to be easily used.
  • Rotary stands and wall and desk mounted racks have been utilized in the past to overcome this deficiency of the binders.
  • the microfiche and magnetic media storage panels are traditionally received on the rotary stands and racks by utilizing metal rods and clips attached to the panel inner mounting binder. These rods or clips are received by apertures located in the rotary stands and racks. The clips and rods permit the pivoting of the storage panel within the retaining aperture, greatly assisting access to both sides of the panel.
  • use of the separate rods and clips is not without its problems.
  • the microfiche and magnetic media storage panels are typically provided with an extruded member attached to each lateral side.
  • the back or mounting edge has such a member with a vertical throughbore formed therein.
  • This bore permits the easy attachment of a metal clip to the top and/or bottom thereof. More commonly, however, the bore is used to receive a metal supporting rod, the rod being sufficiently long so as to project from both ends of the extruded bore when fully inserted therein. These protecting ends would be inserted into holes provided in upper and lower segments of the rotary stand or rack, permitting the easy pivoting of the panel about this metal axis.
  • the extruded plastic edge member may be formed of sheet material, the inserted metal or plastic rod remains the principal mounting method.
  • the pin is essentially the reinforced area surrounding the throughbore, and is generally cylindrical in shape.
  • the upper pin is made longer than its opposing lower counterpart, thereby permitting the filing panel to be received and mounted by inserting the upper pin a sufficient distance into the bore so as to clear the top of the lower pin.
  • the mounting operation is completed by then lowering the storage panel onto the shorter bottom pin while the upper pin remains within the upper portion of the bore. Thereafter, the subsequent removal of the filing panel requires only the initial lifting the panel a sufficient amount to again clear the top of the lower pin, enabling it to be removed therefrom.
  • One such mechanism provides a spring or magnetically biased locking ring located within the upper array of pins. During the insertion of the storage panel, the locking ring is raised to its open position. Upon the seating of the panel on the lower pin, the locking ring is permitted to assume its unbiased, lower position, the biasing force thereafter preventing the inadvertent raising and removal of the panel from the lower pins.
  • An alternative mounting system makes use of a metal lock-clip that is permanently affixed to the upper array of pins.
  • the ' clip is designed so as to permit the insertion of storage panels onto the upper pins when the clip is in its "up" position. After the mounting of the panel(s), the clip is then snapped into its lower position, preventing the inadvertent raising of the panels from the upper pins.
  • the lock-clip is designed to utilize the spring tension created by the bending of the clip to achieve a stable configuration in both the upper-unlocked and the lower-locked positions.
  • FIG. 1 is a side perspective view showing a rotary mounting stand having storage panels mounted thereon;
  • Figure 2 is a side elevational view, in section and with portions omitted, showing a rotary mounting stand with a storage panel shown mounted thereon in phantom;
  • Figure 3 is a top perspective view of a storage panel showing a data element within one of the pockets;
  • Figure 4 is a partial perspective view showing the raising of the locking ring on a rotary mounting stand prior to the insertion of a storage panel thereon;
  • Figure 5 is a partial side perspective view showing the insertion of a storage panel on the upper pins of a rotary mounting stand with the locking ring in a raised, unlocked position;
  • Figure 6 is a view similar to Figure 5 showing the locking ring of the rotary mounting stand in a lowered, locked position;
  • Figure 7 is a fragmentary perspective view showing the locking ring of the rotary mounting stand as received by and contributing lateral support to the upper mounting pins;
  • Figure 8 is a side perspective view showing the relationship (slightly exaggerated) between the upper and lower mounting pins of a rotary mounting stand, as demonstrated by two adjacently mounted storage panels;
  • Figure 9 is a side perspective view, from above, showing the planar mounting rack attached to a vertical structure, with storage panels mounted thereon;
  • Figure 10 is a side perspective view, with portions omitted,* showing a planar mounting rack according to the present invention
  • Figure 11 is a partial elevational view, in section, taken along the line 11-11 of Figure 10, showing the interaction of a spring clip with the upper bracket portion of the mounting rack and a filing panel received by an upper pin thereof;
  • Figure 12 is a perspective view, from above, showing a flexible mounting array according to the present invention, with an alternate configuration for the array shown in phantom;
  • Figure 13 is a side elevational view, with portions omitted, showing a pair of flexible mounting arrays according to the present invention, with an initial, inserted position and a final mounted position for a mounted filing panel shown in phantom;
  • Figure 14 is an enlarged partial perspective view of a flexible mounting array according to the present invention.
  • a filing panel 5 is shown, provided with a central data element storage portion 7.
  • a plurality of overlapping flaps 9 are formed in the storage portion 7, each of which are able to receive a separate data element 10.
  • the data element 10 is shown here as a microfiche, it will be understood that a variety of data elements of widely differing forms, both micrographic and magnetic, may be . used in connection with the present invention.
  • An extruded side channel 12 is attached to one side or edge of the data storage portion 7, with an extruded mounting channel 13 attached to the other lateral side or opposite edge .of storage portion 7.
  • the bindings or channels 12, 13 are extruded, they may be molded or otherwise formed or pressed from virtually any material that will bind the edges of the panel 5.
  • the mounting channel 13 is of a conventional design having three apertures 16 formed in a channel portion 17 of the mounting channel 13.
  • a longitudinal bore 15 is formed along the outer, lateral edge of the mounting channel 13.
  • FIG 1 a number of filing panels 5 having multiple data elements 10 received therein are shown mounted on a rotary mounting stand 20.
  • the rotary stand 20 consists of a base 21 supporting a central column 22.
  • a top mounting portion 24 is attached to an upper end of the central column 22, and contains an upper array of pins 26 formed in an upper pin platform 27. Additional lateral support is provided to the upper pins 26 by a locking ring 28 received thereon.
  • the supportive function of the locking ring 28 is more clearly shown in Figure 7, with a « plurality of pin receiving apertures formed in the locking ring 28.
  • the apertures 25 receive and surround each individual upper pin 26 at an intermediate location between the pin platform 27 and the distal tips of the upper pins 26.
  • the top mounting portion 24 and the central column 22 are both received and supported by a rotating table 33 attached to the base 21.
  • a rotating table 33 Surrounding the central column 22, and also formed on the rotating table 33 is a lower array of pins 35.
  • the rotating table 33 permits the central column 22 and the top mounting portion 24, along with any filing panel 5 mounted thereon, to freely rotate about a central vertical axis, greatly simplifying access to the individual filing panels 5.
  • any conventional rotational means 39 may be provided between the rotating table 33 and the base 21.
  • heavy duty needle bearing mounting is utilized as the rotational means.
  • the central column 22 is shown as consisting of an outer cylinder 42 surrounding an inner supporting core 44.
  • the inner core 44 includes reduced-diameter threaded ends that receive an upper nut 55 and a lower nut 56, securing both the top mounting portion 24 and the base 21 to the central column 22. Additional structural details of the mounting portion
  • the locking ring 28 is attached to an upper hand grip 29, utilizing at least two but preferably four locking retention members 51.
  • the retention member 51 preferably a screw, is enclosed within an outer core 52, which is in turn slidably received by apertures 54 formed in the upper pin platform 27.
  • the retention member 51 and outer core 52 connect the locking ring 28 with a lower surface.57 of the upper hand grip 29.
  • Surrounding the outer core 52 between the locking ring 28 and the upper pin platform 27 is a coiled- spring 53 of sufficient diameter so that it is unable pass through the -platform apertures 54, thus biasing the locking ring 28 in its lower position.
  • FIGs 5 and 6 illustrate ' the locking mechanism provided by the locking ring 28.
  • the longitudinal bore 15 of the filing panel 5 has been received by one of the upper array of pins 26.
  • the locking ring 28 and the hand grip 29 are both in the upper, biased position.
  • the upper hand grip 29 has been released, permitting the return of the locking ring 28 to its lower, unbiased position. In this lower position, the locking ring 28 permits. access by the filing panel 5 to only a limited vertical extent of the upper pins 26.
  • the longitudinal- bore 15 of the filing panel 5 is shown as engaged with only a small, lower portion of one of the upper pins 26. The usefulness of this construction may be readily understood by once again referring to Figure 2.
  • the length of the upper and lower arrays of pins 26, 25 are not equal, with the upper pins 26 being substantially longer. This enables the lower portion of the filing panel 5 to clear the upper portion of the lower pins 35 when the upper pins 26 are fully inserted into the longitudinal bore 15. To complete -li ⁇ the mounting, the filing panel 5 is then lowered onto the lower pin 35, which is thereby inserted into the lower end of the longitudinal bore 15. The upper pins 26 are sufficiently long to maintain engagement with the upper portion of the longitudinal bore 15 upon the final seating of the filing panel 5 on the lower pins 35. The two extreme positions for the filing panel 5 are shown in Figure 2.
  • Position 5A illustrates the relationship between the filing panel 5 and the upper and lower pins 26, 35 upon the filing panel 5 being fully inserted onto the upper pin 26. Such a configuration would occur either during insertion of the filing panel 5 onto the rotary stand 20 or just prior to its removal therefrom.
  • Position 5B illustrates the fully-seated position for the filing panel 5, with the locking ring 28 in its fully lowered position. To now place the filing panel 5 in Position 5A, the locking ring 28 must first be raised into its upper, biased position. The locking ring 28 virtually eliminates the possibility of inadvertent removal of the inserted finling panels 5 from the rotary mounting stand 20.
  • Figure 2 also illustrates another, aspect of the relationship between the upper pins 26 and lower pins 35.
  • the lower pins 35 are not vertically superimposed over the upper pins 26, but rather the lower pins 35 are located at a slightly greater distance from a central axis.
  • This ingenious pin placement creates what is known- as pyramidal mounting, illustrated by Figure 8. Although somewhat exaggerated.
  • Figure 8 illustrates the pyramidal mounting of the filing panels 5, causing the adjacent filing panels 5 to remain in an open position, regardless of their location on the stand. This feature greatly assists the operator in quickly and accurately searching for, retrieving, and refiling data elements from the filing panels 5.
  • Figure 9 generally illustrates an alternate method for mounting file panels utilizing the present invention.
  • a panel-mounting rack 70 is shown attached to a vertical planar surface 71, such as a wall.
  • the mounting rack consists of a rear support stand 76 attached to the vertical surface 71, with a base 72 and an upper retention assembly 77 formed thereon.
  • a plurality of filing panels 5 are shown attached to the panel-mounting rack 70, with a number of individual pockets 10 formed in each filing panel 5.
  • Figure 10 shows further details of the panel-mounting rack 70.
  • the base 72 formed on a lower portion of the
  • 10 panel-mounting rack 70 is provided with a lower array of pins 74.
  • An upper array of pins is formed on the upper pin
  • One or more mounting apertures 83 may be provided in the rear support stand 76 to assist in attaching the panel mounting rack 70 to a suitable structure. Additional details concerning the construction and operation of the upper pin retention assembly 77 are
  • the spring-retention clip 81 essentially formed out of a sheet of metal, functions much like a spring.
  • a first end portion 82 of the spring-retention clip 81 is
  • a second end portion 83 is formed into an angle ⁇ of approximately 45°, and rests against the upper array of pins 79 when in a closed
  • a spring-receiving recess 85 is provided in the front portion of the upper pin mounting bracket 78 immediately above the upper array of pins 79.
  • the second end portion 83 is received by the spring-receiving recess 85 when in its open position.
  • a final angle ⁇ is -formed
  • the retaining clip is stable whether in its open or closed position, the open position referenced by the letter "B" in Figure 11. Furthermore, because the angle ⁇ is greater than 90°, a vertical force applied to the end portion 83 will not move the clip 81 from Position A to Position B, and thus an upward force on the panel 5 will not release the clip 81. However, an operator can easily lift the end 83 upwardly and outwardly, permitting movement of the spring clip 81 to Position B.
  • the underlying principle behind the retention system of the panel-mounting rack 70 is substantially analogous to that principle underlying the retention system utilized by the rotary mounting stand 20.
  • the filing panel 5 is first fully caused to be inserted onto the upper pin 79.
  • the filing panel 5 is now in the position denoted as 5A' in Figure 11, and the spring clip 81 is in its open positon noted by position "B".
  • the filing panel 5 has been lowered onto the corresponding lower pins 74 (not shown in Figure 11), and assumes position 5B'.
  • the spring clip 81 is then lowered into its lower or closed position, preventing the subsequent lifting of the filing panel 5. Removal of the filing panel 5 requires the reversal of these steps - ⁇ beginning with the lifting of the spring-retention clip 81 to its open position.
  • a flexible mounting array 101 is provided and consists of a plurality of individual mounting units 105.
  • the mounting units 105 are each partially separated from one another by a linear, vertical recess 107 formed along each lateral side of the mounting unit 105, which recess 107 forms a "living hinge" in the plastic material.
  • the recesses 107 permit the horizontal articulation of the flexible mounting array 101, to assume mounted positions such as position "C" shown in Figure 12.
  • FIG 14 shows additional structural details for each mounting unit 105.
  • a mounting base 119 having one or more apertures 121 formed therein, permits the placement of the flexible array 101 against a selected planar surface.
  • a shelf 115 projects outwardly from the mounting base 119 and is provided with a mounting pin 111 formed on a lower surface 113 of the shelf 115.
  • mounting units are formed for the lower mounting array, however, as before, the mounting pins for the lower array are shorter than mounting pins 111 (See Figure 13).
  • the flexible mounting array 101 is shown as installed on the vertical supporting structure 129.
  • the flexible mounting system consists of an upper array 101A and a lower array 101B.
  • An upper mounting pin 131 is formed on the upper array 101A and a corresponding lower mounting pin 133 is formed on the lower array 10IB.
  • the upper mounting pin 131 is longer than the lower mounting pin 1,33.
  • the method of inserting the filing panel 5 is analogous to the previously-discussed methods. For either the insertion or the removal of the filing panel.5, the panel 5 is raised to its highest position on the upper__ mounting pin 131, denoted as position "D" in Figure 13, which permits the lower edge of the filing panel 5 to clear the top of the lower mounting pin 133.
  • the upper mounting pin .131 and the lower mounting pin 133 in effect cooperate to form hinges for mounting the filing panel 5.
  • the insertion of the filing panel 5 is completed by lowering the panel 5 onto the lower mounting pin 133.
  • the filing panel 5 is maintained in this position, with the force of gravity resisting the upward movement of the filing panel 5.
  • _. OMPI may be installed in the spine of a binder, replacing the typically found rings. If, in this arrangement, the binder spine is flexible, when the binder is opened, the spine and arrays 101 will curve, providing, in effect, a cylindrical support for the arrays 101 and their associated panels 5. The employment of a quick-release locking mechanism, such as those previously described, in conjunction with this flexible system, provides a preferable method for locking the panels 5 onto the arrays 101.
  • the inventive provision of the upper and lower pin interrelationship provides a sufficiently secure mounting for the filing panels whether in the flexible mounting array, or in the previously-discussed rotary stands or mounting racks.
  • the first and second pin arrays cooperate to form hinges for mounting the filing panels.
  • the additional locking features provided in those previously described embodiments represent supplemental security devices, and are not necessary to practice the present invention.

Landscapes

  • Mirrors, Picture Frames, Photograph Stands, And Related Fastening Devices (AREA)
  • Sheet Holders (AREA)
  • Connection Of Plates (AREA)
EP19840902155 1983-05-04 1984-05-04 Aufhängungssystem mit haltedornen Withdrawn EP0143831A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US49157683A 1983-05-04 1983-05-04
US491576 1983-05-04

Publications (1)

Publication Number Publication Date
EP0143831A1 true EP0143831A1 (de) 1985-06-12

Family

ID=23952804

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19840902155 Withdrawn EP0143831A1 (de) 1983-05-04 1984-05-04 Aufhängungssystem mit haltedornen

Country Status (3)

Country Link
EP (1) EP0143831A1 (de)
JP (1) JPS61502389A (de)
WO (1) WO1984004279A1 (de)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4802575A (en) * 1987-05-26 1989-02-07 Martin Dorothy B Food store coupon organizer
FR2693091B1 (fr) * 1992-07-01 1996-03-08 Daigre Jean Claude Meuble de classement a rotor a montage rapide.
US5307926A (en) * 1993-07-21 1994-05-03 Greg Mee Apparatus for storing media
DE19623895C2 (de) * 1996-06-07 1999-05-06 Hunke & Jochheim Halter für Wendetafeln od. dgl.
EP1981720A4 (de) * 2006-01-25 2010-11-03 Dansk Virksomheds Service As Schreibtisch-organizer
DE102017110374A1 (de) * 2017-05-12 2018-11-15 Diy Nord Gmbh Vorrichtung zum Präsentieren von Farbmustern

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA835127A (en) * 1970-02-24 Thomas E. Hudgeons, Jr. Pilfer-proof article display rack and stand
US1388080A (en) * 1918-07-10 1921-08-16 Welbon John Card-index
US3302318A (en) * 1965-02-03 1967-02-07 Sperry Rand Corp Visible reference equipment
US4270290A (en) * 1976-07-09 1981-06-02 Dlm, Inc. Revolving self-service display stand
US4270289A (en) * 1978-12-18 1981-06-02 Kabushiki Kaisha Fuji Seisakusho Card holder
DE3016178A1 (de) * 1980-04-26 1981-10-29 Eichner Organisation Kg, 8630 Coburg Staender zur aufnahme von datentraegern

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO8404279A1 *

Also Published As

Publication number Publication date
JPS61502389A (ja) 1986-10-23
WO1984004279A1 (en) 1984-11-08

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PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

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Inventor name: SPEES, ARTHUR, T.