EP0066469A1 - File reinforcements - Google Patents

File reinforcements Download PDF

Info

Publication number
EP0066469A1
EP0066469A1 EP82302787A EP82302787A EP0066469A1 EP 0066469 A1 EP0066469 A1 EP 0066469A1 EP 82302787 A EP82302787 A EP 82302787A EP 82302787 A EP82302787 A EP 82302787A EP 0066469 A1 EP0066469 A1 EP 0066469A1
Authority
EP
European Patent Office
Prior art keywords
reinforcement
sheet
edges
file
increased thickness
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Withdrawn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
EP82302787A
Other languages
German (de)
French (fr)
Inventor
John Francis Leslie Floyd
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of EP0066469A1 publication Critical patent/EP0066469A1/en
Withdrawn legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42FSHEETS TEMPORARILY ATTACHED TOGETHER; FILING APPLIANCES; FILE CARDS; INDEXING
    • B42F3/00Sheets temporarily attached together involving perforations; Means therefor; Sheet details therefor

Definitions

  • This invention relates to reinforcements, which comprise reinforcements for holes in sheets, the reinforcement being stuck to the sheet around the hole to reinforce the sheet against tearing from the hole. Holes are often punched in sheets to be secured in a file provided with a ring binder, the rings passing through holes in the sheets.
  • file reinforcements include'gummed linen washers and self-adhesive vinyl washers. Such reinforcements are manufactured by cutting around the outer perimeter and punching out the central aperture.
  • the edge of the central aperture ⁇ should provide the maximum resistance to tearing.
  • the known forms of file reinforcement are uniform, so that there is no region which provides greater resistance to tearing than any other.
  • a file reinforcement manufactured from sheet plastics material on a high-frequency welding machine.
  • the use of a welding machine to cut out the central aperture and to define the outer perimeter of the reinforcement causes raised inner and outer edges to be formed in the reinforcement, and these edges provide increased resistance to tearing.
  • the reinforcement is preferably made from a sheet or sheets of vinyl plastics material.
  • file reinforcements are annular. According to another aspect of the invention, there is provided a file reinforcement which has an edge which is other than circular, for example, triangular, rectangular or polygonal. Such non-circular shapes may be useful to reinforce the sheet against tearing in a particular direction.
  • a split is required in the reinforcement to enable it to be fitted to a sheet already having a fastening member passing through its hole.
  • the split is an inherent source of weakness in the reinforcement, the manufacture by high-frequency welding according to the present invention causes the edges of the split to be raised and so strengthens the reinforcement.
  • Figure 1 shows a plan of a file reinforcement 10 of preferred shape. It has a square external edge 11 and a circular internal edge 12 defining a central aperture. The two edges are of increased thickness compared to the remainder of the sheet, typically of double thickness as is shown in the section of Figure 2. The remainder of the sheet 14 is typically 0.0075 to 0.0127 cm in thickness.
  • the central aperture is typically 6mm in diameter and the external edges about 15mm long.
  • the width of the raised edge is about 0.3mm.
  • the reinforcement is mass-produced from a matrix arrangement on a sheet of vinyl plastics material.
  • the apparatus of Figure 3 is arranged to form a laminated reinforcement, a white opaque vinyl plastics base sheet 13 being'added to the clear sheet 14 of the reinforcement already described.
  • the base sheet 13 is indicated in dashed lines in Figure 2 and has on its lower side a pressure sensitive adhesive coating protected by a backing sheet.
  • the sheet 14 is supplied on a reel 21 and the sheet 13 on a reel 22.
  • the two sheets are brought into contact over a roller 23 and passed into a welding device 24 which applies heat at about 90° to 110°C and high frequency radiation to the sheet in a square grid pattern to define the outer edges of the reinforcements and a pattern of central rings within each square of the grid to define the inner edges.
  • the head can be moved in synchronism with the sheets or the sheet can be held stationary under the head while the heat and radiation takes place.
  • the intermediate region between the edges 11 and 12 is uniform in thickness, so that the material migrates inwards from the boundary between adjacent reinforcements in the grid pattern to form the outer edge of increased thickness and it also migrates radially outwards from the material within the inner edges so that the individual reinforcements can be easily separated from each other and the waste material in the central aperture can be easily removed.
  • the high frequency radiation also causes lamination of the two sheets 13 and 14.
  • the matrix then passes to a longitudinal slitter 25 where the matrix is cut into a plurality of strips of reinforcements which are then coiled at 26 and packaged.
  • Figure 4 shows an alternative shape of reinforcement.
  • the polygonal shape of the reinforcement is triangular with 45° and 90° angles.
  • This shape leads to as efficient use of materials as the square shape of- Figures 1 and 2, since two such triangles can be placed with their hypotenates 35 together to form a square.
  • the additional dimension of thereinforcement between the central aperture 31 and each 45° corner 32 gives additional resistance to tearing in those directions.
  • the external edge 33 and the internal edge 34 are of double thickness, caused by the welding heat and radiation.

Landscapes

  • Laminated Bodies (AREA)

Abstract

A file reinforcement used to reinforce the edges of a hole in a document is formed of sheet plastics material. The inner edge 12, which is aligned with the hole in the document, and the outer edge 11, which defines the periphery of the reinforcement, are both formed with an increased thickness compared to the remainder of the reinforcement. The increased thickness edges of the reinforcement are formed by the application of heat and high frequency welding radiation. This increased thickness provides added resistance to tearing where it is needed most. There is also disclosed a file reinforcement which is polygonal rather than the conventional circular shape, and the preferred shape is square.

Description

  • This invention relates to reinforcements, which comprise reinforcements for holes in sheets, the reinforcement being stuck to the sheet around the hole to reinforce the sheet against tearing from the hole. Holes are often punched in sheets to be secured in a file provided with a ring binder, the rings passing through holes in the sheets.
  • Known forms of file reinforcements include'gummed linen washers and self-adhesive vinyl washers. Such reinforcements are manufactured by cutting around the outer perimeter and punching out the central aperture.
  • Since tearing of the sheet, and of the reinforcement if it is not strong enough, occurs from the edge of the central aperture, the edge of the central aperture \ should provide the maximum resistance to tearing. The known forms of file reinforcement are uniform, so that there is no region which provides greater resistance to tearing than any other.
  • According to the present invention, there is provided a file reinforcement manufactured from sheet plastics material on a high-frequency welding machine. The use of a welding machine to cut out the central aperture and to define the outer perimeter of the reinforcement causes raised inner and outer edges to be formed in the reinforcement, and these edges provide increased resistance to tearing.
  • A preferred reinforcement is formed from a pair of plastic sheets, the high frequency welding machine laminating the two sheets together as well as defining the inner and outer edges of the reinforcement. In this arrangement, one of the sheets may be provided with a self-adhesive material for sticking the reinforcement to the sheet to be reinforced.
  • The reinforcement is preferably made from a sheet or sheets of vinyl plastics material.
  • The conventional shape of file reinforcements is annular. According to another aspect of the invention, there is provided a file reinforcement which has an edge which is other than circular, for example, triangular, rectangular or polygonal. Such non-circular shapes may be useful to reinforce the sheet against tearing in a particular direction.
  • In some instances, a split is required in the reinforcement to enable it to be fitted to a sheet already having a fastening member passing through its hole. Although the split is an inherent source of weakness in the reinforcement, the manufacture by high-frequency welding according to the present invention causes the edges of the split to be raised and so strengthens the reinforcement.
  • Examples of the invention will now be described with reference to the accompanying drawings in which:
    • Figure 1 is a plan and Figure 2 a section of a square file reinforcement,
    • Figure 3 is a diagram of apparatus for mass producing the file reinforcement of Figure 1, and
    • Figure 4 is a plan of a triangular reinforcement.
  • Figure 1 shows a plan of a file reinforcement 10 of preferred shape. It has a square external edge 11 and a circular internal edge 12 defining a central aperture. The two edges are of increased thickness compared to the remainder of the sheet, typically of double thickness as is shown in the section of Figure 2. The remainder of the sheet 14 is typically 0.0075 to 0.0127 cm in thickness.
  • The central aperture is typically 6mm in diameter and the external edges about 15mm long. The width of the raised edge is about 0.3mm. The drawings are not to scale.
  • The reinforcement is mass-produced from a matrix arrangement on a sheet of vinyl plastics material. The apparatus of Figure 3 is arranged to form a laminated reinforcement, a white opaque vinyl plastics base sheet 13 being'added to the clear sheet 14 of the reinforcement already described. The base sheet 13 is indicated in dashed lines in Figure 2 and has on its lower side a pressure sensitive adhesive coating protected by a backing sheet. The sheet 14 is supplied on a reel 21 and the sheet 13 on a reel 22. The two sheets are brought into contact over a roller 23 and passed into a welding device 24 which applies heat at about 90° to 110°C and high frequency radiation to the sheet in a square grid pattern to define the outer edges of the reinforcements and a pattern of central rings within each square of the grid to define the inner edges. The head can be moved in synchronism with the sheets or the sheet can be held stationary under the head while the heat and radiation takes place.
  • As can be seen in Figure 2 the intermediate region between the edges 11 and 12 is uniform in thickness, so that the material migrates inwards from the boundary between adjacent reinforcements in the grid pattern to form the outer edge of increased thickness and it also migrates radially outwards from the material within the inner edges so that the individual reinforcements can be easily separated from each other and the waste material in the central aperture can be easily removed. The high frequency radiation also causes lamination of the two sheets 13 and 14.
  • The matrix then passes to a longitudinal slitter 25 where the matrix is cut into a plurality of strips of reinforcements which are then coiled at 26 and packaged.
  • Figure 4 shows an alternative shape of reinforcement. This time the polygonal shape of the reinforcement is triangular with 45° and 90° angles. This shape leads to as efficient use of materials as the square shape of-Figures 1 and 2, since two such triangles can be placed with their hypoteneuses 35 together to form a square. The additional dimension of thereinforcement between the central aperture 31 and each 45° corner 32 gives additional resistance to tearing in those directions. As described above the external edge 33 and the internal edge 34 are of double thickness, caused by the welding heat and radiation.
  • It is possible to form a slit in the reinforcement leading from the central aperture to the external edge by adjusting the pattern on the welding head to form two closely spaced raised edges defining the slit. The migration of the sheet away from the line of the slit to form the two raised edges causes the slit to be formed in the sheet. The reinforcement can then be slipped into position around a fastener and although the slit weakens the reinforcement, it is arranged in the direction of least likely stress so that the document is still adequately reinforced.
  • In one aspect the present reinforcement gives improved performance due to the inner and outer edges being of increased thickness. In another aspect, the reinforcement gives improved performance due to its polygonal shape. The two aspects combined give even better performance.

Claims (10)

1. A file reinforcement comprising a sheet of self adhesive vinyl plastics material formed with an increased thickness around all its edges 11, 12.
2. A reinforcement as claimed in claim 1 wherein the increased thickness is boubled the normal thickness.
3. A reinforcement as claimed in claim 1 or claim 2 wherein the outer edge 11 is polygonal.
4. A reinforcement as claimed in claim 3 wherein the outer edge 11 is rectangular.
5. A reinforcement as claimed in claim 4 wherein the outer edge 11 is square.
6. A reinforcement as claimed in any one of claims 1 to 5 wherein the inner edge 12 defines a closed curve.
7. A reinforcement as claimed in any one of claims 1 to 6 wherein the sheet plastics material is a laminate including a sheet material 13 which is self adhesive on an exterior side of the laminate.
8. A reinforcement as claimed in claim 7 wherein one sheet 13 of the laminate is opaque.
9. A method of forming a file reinforcement comprising applying heat and high frequency welding radiation to selected parts of a sheet of plastics material to cause material to migrate to the inner and outer edges 11, 12 of the reinforcement so that the edges have increased thickness compared to the remainder of the reinforcement.
10. A method as claimed in claim 9 comprising placing together two sheets of plastics material and laminating them by said high frequency welding.
EP82302787A 1981-05-29 1982-05-28 File reinforcements Withdrawn EP0066469A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB8116420 1981-05-29
GB8116420 1981-05-29

Publications (1)

Publication Number Publication Date
EP0066469A1 true EP0066469A1 (en) 1982-12-08

Family

ID=10522122

Family Applications (1)

Application Number Title Priority Date Filing Date
EP82302787A Withdrawn EP0066469A1 (en) 1981-05-29 1982-05-28 File reinforcements

Country Status (1)

Country Link
EP (1) EP0066469A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2192587A (en) * 1986-04-23 1988-01-20 Freeway Marketing Limited Self-adhesive laminar elements
US10059141B2 (en) 2014-02-04 2018-08-28 Philip J. Berlinsky Method and device for providing attachment points for a folder

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3315683A (en) * 1965-12-10 1967-04-25 Jose M Rodriguez Slit-rim liners
US3473195A (en) * 1968-02-26 1969-10-21 Cupples Container Co Thermoforming apparatus
FR2091479A5 (en) * 1970-05-08 1972-01-14 Stevens A W J T Tools
US3925584A (en) * 1972-08-24 1975-12-09 Daiichi Seiyaku Co Adhesive seal and tape for sealing
DE2512573A1 (en) * 1975-03-21 1976-09-30 Siemens Ag High frequency welding thermoplastics - using tuning slide between twin electrodes with pushpull resonance
GB1601593A (en) * 1978-05-31 1981-11-04 Marcus A Reinforcements for punched paper sheets

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3315683A (en) * 1965-12-10 1967-04-25 Jose M Rodriguez Slit-rim liners
US3473195A (en) * 1968-02-26 1969-10-21 Cupples Container Co Thermoforming apparatus
FR2091479A5 (en) * 1970-05-08 1972-01-14 Stevens A W J T Tools
US3925584A (en) * 1972-08-24 1975-12-09 Daiichi Seiyaku Co Adhesive seal and tape for sealing
DE2512573A1 (en) * 1975-03-21 1976-09-30 Siemens Ag High frequency welding thermoplastics - using tuning slide between twin electrodes with pushpull resonance
GB1601593A (en) * 1978-05-31 1981-11-04 Marcus A Reinforcements for punched paper sheets

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2192587A (en) * 1986-04-23 1988-01-20 Freeway Marketing Limited Self-adhesive laminar elements
US10059141B2 (en) 2014-02-04 2018-08-28 Philip J. Berlinsky Method and device for providing attachment points for a folder
US11130362B2 (en) 2014-02-04 2021-09-28 Philip J. Berlinsky Method and device for providing attachment points for a folder

Similar Documents

Publication Publication Date Title
US3835754A (en) Method for creating lines of weakness in thread-reinforced structures
US3032463A (en) Method for making punched label stock
US4447481A (en) Paper sheets having recessed pressure-sensitive glued edge with a removable strip
US3964770A (en) Case for book with pressure sensitive resilient spine pad
US5135789A (en) Label business form and method of making it
US4842919A (en) Pad forming method
US4696843A (en) Differential pressure sensitive adhesive joined business form
DE69829117T2 (en) USE OF A IDENTIFICATION LABEL AND KIT FOR ALIGNMENT AND METHOD FOR USE THEREOF
US4540612A (en) Foldable sheet plastic products
US4244762A (en) Heat sealed photo album page and method of making same
US3221427A (en) Self-destroying label
KR970706948A (en) METHOD OF APERTURING THIN SHEET MATERIALS
US4865669A (en) Method of making business forms with removable labels
US5364200A (en) Reinforcement tape for loose leaf sheet
US4520055A (en) Split label index tab
US6517038B1 (en) Adhesive hang tab
US4551374A (en) Continuous sheet with perforated tear-off driving edge and recessed reinforced inner edge
US5915733A (en) Business form incorporating a removable identification card
US4183891A (en) Method for folding sheet-shaped plastic material and folded sheet-shaped plastic material obtained by carrying out this method
EP0066469A1 (en) File reinforcements
US4360355A (en) Adhesive envelope for a shipping label or the like
KR970071422A (en) Adhesive label, method and apparatus for manufacturing same
GB2099361A (en) File reinforcements
US4853268A (en) Binding hole reinforcement, method and apparatus
US10357892B2 (en) Rotary cutting die for cutting corrugated board including a die board and an attached substrate for supporting product ejectors

Legal Events

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

Free format text: ORIGINAL CODE: 0009012

AK Designated contracting states

Designated state(s): AT BE CH DE FR GB IT LU NL SE

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE APPLICATION IS DEEMED TO BE WITHDRAWN

18D Application deemed to be withdrawn

Effective date: 19831114