EP0997408A2

A method of manufacturing a stack of spaced lites and corresponding stack

Abstract

This disclosure relates to the manufacture of lites (glass sheets) which have at least a pair of thin spacers applied thereto which maintain the lites in spaced relationship when stacked upon pallets, wrapped and shipped. The spacers are preferably only partially adhered to the lites, either by weak bonding adhesive or electrostatically, and can be readily removed during end-use applications. The spacers are applied automatically during production runs of the lites, and the spacers are applied from above or from below relative to the path of travel of the lites.

EP0997408A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 10 August 2019, 7.1 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

29 claims: 29 independent, 0 dependent

  1. 1
    A method of manufacturing a stack of plates in spaced relationship to each other to thereby prevent damage therebetween comprising the steps of feeding a plurality of plates successively along a first path of travel, feeding relatively thin spacers along a second path of travel, applying a plurality of the thin spacers to each of the plates at an area of merger between the paths of travel as the thin spacers and plates are fed along their respective second and first paths of travel, and thereafter stacking the plates with thin spacers sandwiched between adjacent pairs of the plates.
  2. 2
    The method as defined in claim 1 wherein the plurality of plates are glass sheets.
  3. 3
    The method as defined in claim 1 wherein the spacers are made of static cling vinyl.
  4. 4
    The method as defined in claim 1 wherein the spacers are made of paper.
  5. 5
    The method as defined in claim 1 wherein the spacers are made of adhesive backed paper.
  6. 6
    The method as defined in claim 1 wherein the spacers are applied to upper surfaces of the plates.
  7. 7
    The method as defined in claim 1 wherein the spacers are applied to lower surfaces of the plates.
  8. 8
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area.
  9. 9
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, and each first surface area includes adhesive characteristics.
  10. 10
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, and each first surface area includes static cling characteristics.
  11. 11
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, each first surface area includes adhesive characteristics, and each second surface area excludes adhesive characteristics.
  12. 12
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, each first and second surface areas include adhesive characteristics, and the adhesive characteristics of the second surface area are each covered.
  13. 13
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, each first and second surface areas include adhesive characteristics, and the adhesive characteristics of the second surface area are each covered by a thin covering.
  14. 14
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, each first and second surface areas include adhesive characteristics, and the adhesive characteristics of the second surface area are each covered by a thin covering of paper.
  15. 15
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, each first and second surface areas include static cling characteristics, and the static cling characteristics of the second surface areas are each covered.
  16. 16
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, each first and second surface areas include static cling characteristics, and the static cling characteristics of the second surface areas are each covered by a thin covering.
  17. 17
    The method as defined in claim 1 wherein the plurality of thin spacers each include a first surface area in substantially adhering relationship with an associated plate and a second surface area in substantially nonadhering relationship with an associated plate whereby the thin spacers can be subsequently readily removed from the plates by gripping the substantially nonadhering second surface area, each first and second surface areas include static cling characteristics, and the static cling characteristics of the second surface areas are each covered by a thin covering of paper.
  18. 18
    The method as defined in claim 1 wherein prior to the performance of the applying step the spacers are carried by a carrier tape, and during the performance of the applying step the spacers are transferred from the carrier tape to the plates.
  19. 19
    The method as defined in claim 1 wherein prior to the performance of the applying step a first surface of each spacer is adhered to a carrier tape, and during the performance of the applying step the spacers are stripped from the carrier tape and are applied first surface partially adhered to the plates.
  20. 20
    The method as defined in claim 1 wherein prior to the performance of the applying step a first surface of each spacer is adhesively partially adhered to a carrier tape, and during the performance of the applying step the spacers are stripped from the carrier tape and are applied first surface partially adhesively adhered to the plates.
  21. 21
    The method as defined in claim 1 wherein prior to the performance of the applying step a first surface of each spacer is statically partially adhered to a carrier tape, and during the performance of the applying step the spacers are stripped from the carrier tape and are applied first surface partially statically adhered to the
  22. 22
    A stack of sheets comprising a plurality of sheets each having opposite first and second surfaces and a peripheral edge, a plurality of substantially thin flat spacers each having first and second opposite surfaces, at least the first surface of at least one of said spacers being only partially adhered to the first surface of each sheet, the second surface of said at least one spacer being in abutment with the second surface of an adjacent sheet whereby said sheets are maintained in adjacent slightly spaced protective relationship with each other, and means binding the plurality of sheets together in a stack.
  23. 23
    A ribbon particularly adapted to have portions removed therefrom during end use applications comprising first and second relatively narrow strips of material, said strips of material each having a first surface with said first surafces being in substantially abutting relationship, said strips of material each having a second surface opposite the respective first surface, a plurality of cut lines substantially through said first strip of material setting-off successive first strip portions which are adapted to be subsequently entirely removed from said second strip, and a plurality of means spaced from each other along at least one of said first and second strips for activating a sensor to effect timed removal of the first strip portions from second strip during end use applications.
  24. 24
    A ribbon particularly adapted to have portions removed therefrom during end use applications comprising first and second relatively narrow strips of material, said strips of material each having a first surface with said first surfaces being in substantially abutting relationship, said strips of material each having a second surface opposite the respective first surface, a plurality of cut lines substantially through said first strip of material setting-off successive first strip portions which are adapted to be subsequently entirely removed from said second strip, and a plurality of cut lines substantially through said second strip of material setting-off successive second strip portions which are each associated with one of said first strip portions and are adapted to be removed therewith upon the removal of each first strip portion from said second strip upon end use applications.
  25. 25
    A method of manufacturing a transparent plate which is adapted to be stacked in spaced relationship for shipment and subsequently unpacked for end use applications comprising the steps of providing a transparent plate having upper and lower surfaces and indicia on the upper surface which appears in reverse when viewed from above the upper surface, conveying the transparent plate lower surface down, and applying a plurality of substantially thin spacers to the lower surface whereby a plurality of such plates when stacked are maintained in spaced relationship by said spacers.
  26. 26
    The method as defined in claim 25 including the step of subsequently utilizing the transparent plate in a substantially horizontal position with the transparent plate lower surface up whereby the indicia appears correctly when viewed from above.
  27. 27
    A method of manufacturing a transparent plate which is adapted to be stacked in spaced relationship for shipment and subsequently unpacked for end use applications comprising the steps of providing a transparent plate having upper and lower surfaces and indicia on the upper surface which appears in reverse when viewed from above the upper surface, conveying the transparent plate lower surface down, applying a plurality of substantially thin spacers to the lower surface whereby a plurality of such plates when stacked are maintained in spaced relationship by said spacers, and removing the spacers after utilization.
  28. 28
    A method of manufacturing a transparent plate which is dapted to be stacked in spaced relationship for shipment and subsequently unpacked for end use applications comprising the steps of providing a transparent plate having upper and lower surfaces and indicia on the upper surface which appears in reverse when viewed from above the upper surface, conveying the transparent plate lower surface down, applying a plurality of substantially thin spacers to the lower surface whereby a plurality of such plates when stacked are maintained in spaced relationship by said spacers, and removing the spacers before utilization.
  29. 29
    A spacer particularly adapted to be sandwiched between adjacent pairs of plates to effect separation therebetween comprising a first sheet of relatively thin static cling material having first and second surfaces, first means for substantially preventing said first surface from electrostatically adhering to an associated plate, and second means for effecting electrostatic adherence of a first portion of said second surface to an associated plate.
Independent claims29