Folding score and method and apparatus for forming the same
09895857 ยท 2018-02-20
Assignee
Inventors
Cpc classification
B31B50/14
PERFORMING OPERATIONS; TRANSPORTING
Y10T428/2457
GENERAL 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
B31B50/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A folding score having a pair of laterally spaced, parallel scoring grooves which are individually asymmetrical. This invention also relates to a method and apparatus for forming the folding score.
Claims
1. A folding score on a sheet material formed by a rotary press, wherein: the folding score comprises: a pair of individually asymmetrical, longitudinally extending, laterally spaced score lines on a first side of the sheet material, each score line comprising a flat outer surface extending at an angle relative to a top side of the first side of the sheet material; and a self-contained single longitudinally inwardly extending groove disposed on a second, opposite side of the sheet material along a line parallel to and positioned between the spaced score lines; and wherein the folding score is formed by the rotary press crushing the sheet material between a die roll and an anvil roll of the rotary press, the die roll comprising a pair of scoring members coupled to a die board of the die roll of the rotary press, the scoring members each comprising a scoring surface portion with an asymmetrical flat outer surface extending at an angle, the anvil roll comprising an anvil formed of a compressible rubber-type material, and wherein as the scoring surface portions rotationally press against the first side of the sheet material and form the laterally spaced score line, the second, opposite side of the sheet material is compressed against the anvil, the scoring members crush the sheet material between the die roll and the anvil roll, and the rubber-type material of the anvil bulges towards the sheet material and forces the sheet material into an area between the scoring surface portions forming the inwardly extending groove on the second, opposite side of the sheet material.
2. The folding score formed by the rotary press of claim 1, wherein the inwardly extending groove forms a bulge on the first side of the sheet material between the score lines.
3. The folding score formed by the rotary press of claim 2, wherein the bulge comprises an arcuate protrusion on the first side of the sheet material between the score lines.
4. The folding score formed by the rotary press of claim 3, wherein a center line of the arcuate protrusion forms a central axis of the folding score and an outer surface of the folding score sufficiently facilitates the folding of the sheet material by stretching the sheet material away from the inwardly extending groove on the second, opposite side of the sheet material, whereby the score lines on the first side of the sheet material and the inwardly extending groove on the second, opposite side of the sheet material facilitate the accurate and predictable forward fold towards the center line of the arcuate protrusion.
Description
DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENT
(12) The present invention relates generally to an improved folding score, and more specifically, to a reverse folding score for a sheet material such as corrugated paperboard or the like. Although the folding score of the present invention has particular applicability as a reverse score to facilitate folding of the sheet material in a direction away from the scoring surface, it also facilitates folding of the sheet material in a forward direction, in the direction toward the scoring surface, and thus can be used as a normal folding score. The invention also relates to an apparatus and method for forming such folding score.
(13) Although the present invention has particular applicability to sheet material commonly referred to as corrugated cardboard or paperboard, it also has applicability to paperboard which is not corrugated and to various other forms of sheet material which are foldable or made to be foldable. Thus, unless otherwise specified, the term sheet material as used herein shall mean any sheet material with which the present invention is usable including, but not limited to, corrugated paperboard, non-corrugated paperboard, sheet material with a honeycomb or other core material, and sheet material with no core, among others. Corrugated paperboard generally comprises a pair of outer layers of a paper or paper-like material and a plurality of substantially parallel flutes positioned therebetween. The preferred embodiment will be described with reference to corrugated paperboard as the sheet material.
(14) The apparatus for forming the folding score of the present invention, and in particular the scoring rule and the die board, can be used with what is commonly referred as a rotary die or a flat die or any other form of die. The description of the preferred embodiment, however, will be with reference to a rotary die.
(15) In describing the present invention, reference is first made to the
(16) The rolls 11 and 12 are adjacent to one another as shown, but are slightly spaced to define a nip 20 between them through which a panel of sheet material 21 passes during operation. This panel of sheet material 21 is preferably corrugated paperboard having parallel flutes or corrugations extending is a single direction. Normally, the panel 21 is fed through the nip 20 between the rollers 11 and 12 in a direction generally parallel to or perpendicular to the corrugation flutes, however, it can be fed through diagonally as well.
(17) The die roll 11 is a right cylindrical metal roller having a plurality of internally threaded mounting holes 22 extending axially across and circumferentially around the roll 11. The anvil roll 12 is also a generally right cylindrical member having a core portion constructed of metal. It is common for the anvil roll 12 to be provided with an external cutting blanket 23 constructed of urethane or a similarly compressible material. In some applications, however, an anvil roll with a steel exterior is utilized. The preferred embodiment will be described with respect to a soft anvil having a compressible cutting blanket 23.
(18) The die board 24 is securely mounted to the die roll 11 by a plurality of externally threaded members 25 such as bolts threadedly received in the mounting holes 22. The die board 24 is conventionally constructed of a material such as plywood and has a curvature substantially matching the curvature of the exterior surface of the roll 11. The die board 24 non tally has a thickness ranging from about to about of an inch, but other thickness can be used as well. A plurality of cutting, creasing, scoring, slitting or other rules may be mounted to the die board 24 to perform desired operations on the sheet material 21 as it passes through the nip 20.
(19) In the embodiment of
(20) The general structure of the rotary die of the rotary press illustrated in
(21) Reference is next made to
(22) In the embodiment of
(23) The outermost lateral portions of the base 34 include longitudinally extending holdown or connection flanges 36 and 38. These flanges 36 and 38 provide a means by which the scoring rule 28 can be connected with the die board 24. Such connection may be either in an axial direction substantially parallel to the rotational axis of the die rule 11, circumferentially in a direction along the circumference of the die rule 11 or diagonally in a diagonal direction along the surface of the die rule 11. The scoring rule 28 may be connected to the die board 24 by connecting members 39 such as staples, rivets, or the like, which extend through the flanges 36 and 38 and into the die board 24.
(24) The scoring members of 31 and 32 are individually asymmetrical and include scoring surfaces 40 and 41, respectively, defined by scoring surface portions 40a and 40b and 41a and 41b. Each of the scoring surface portions 40a and 41a are outer surface portions in that they face away from each other, while each of the scoring surface portions 40b and 41b are inner surface portions which face toward one another. In the embodiment of
(25) During operation, the scoring surfaces 40 and 41 engage and press against the scoring surface of a sheet material and form an indentation into such sheet material to form the score in accordance with the present invention. Because each of the scoring members 31 and 32, and thus the scoring surfaces 40 and 41 is individually asymmetrical, each of the score lines created in the sheet material by such scoring surfaces 40 and 41 is also asymmetrical.
(26) As shown in the embodiment of
(27) In the preferred embodiment of
(28) Preferably, the angle A should range from about 20 to 50, more preferably, from about 20 to 40 and most preferably, from about 20 to 30. The angle B should preferably range from about 0 to 30, more preferably, from about 5 to 25 and most preferably, from about 10 to 20. The included angle C should preferably range from about 60 to 90, more preferably, from about 70 to 90 and most preferably, from about 80 to 90. As shown by the above ranges, it is preferable for the complement of the angle A (the angle which the surface portions 40a and 41a form with the plane 51) to be greater than the angle B. In general, this results in the surface portions 40a and 41a being flatter than their respective surface portions 40b and 41b relative to the die board on which the rule 28 is mounted, and the surface portions 40b and 41b being steeper than their respective surface portions 40a and 41a.
(29) The length of the surface portions 40a, 41a and 40b, 41b should preferably be sufficiently long so that they contact the scoring surface of the sheet material to form the folding score of the invention.
(30) The depth of the channel 43 (measured from the points 46 and 48 to the base 42) is dictated primarily by the thickness of the sheet material to be scored and can range from about inch or shorter to inch or more, depending upon the thickness of the material to be scored.
(31) The distance between the pair of scoring members 31 and 32 as defined by the distance 47 between the junction points 46 and 48 will vary with the particular characteristics of the sheet material to be scored and the desired distance between the pair of scores on such sheet material. In general, this distance will vary from about of an inch or smaller to as much as inch or larger. Thus, the spacing of the two scoring members 31 and 32, whether comprised of a unitary construction as shown in the preferred embodiment or as two separate pieces, as shown in the alternate embodiment of
(32) Accordingly, in accordance with the preferred embodiment shown in
(33) Preferably, the material from which the scoring rule 28 of the present invention is made is a relatively hard and dense material such as an ultra-high molecular weight (UHMW) material. In the preferred embodiment, the scoring rule 28 is constructed of a UHMW material such as polyethylene. Preferably, the material also exhibits a low coefficient of friction which enables the scoring rule 28 to be readily released from the sheet material during the scoring operation. The scoring rule in accordance with the present invention is preferably constructed via an extrusion of process, although it can be machined or formed via other processes as well.
(34) Reference is next made to
(35) In the preferred embodiment of
(36) In the preferred embodiment of
(37) In the preferred embodiment of
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(39) As the pair of scoring members 31 and 32 move against the surface 62 and toward the blanket 23, the scoring members 31 and 32 depress portions of the sheet material 21 against the blanket 23 and cause the depressed blanket 23 to bulge outwardly and thus form a small inwardly extending groove or channel 69 in the opposite surface 64 of the corrugated board 21 between the grooves 65,65. This results in a corresponding outwardly extending bulge or rib 70 in the surface 62 of the corrugated board 21. Thus, the score in accordance with the present invention includes a pair of parallel score channels or grooves 65,65 formed in a first side of a sheet material in which such channels or grooves are asymmetrical and which also includes a further groove or channel 69 formed in the opposite, second side of the sheet material between the pair of channels or grooves 65,65. Such further channel or groove 65 results in a corresponding bulge or rib 70 on the first side of the sheet material.
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(41) Although the description of the preferred embodiment and alternate embodiments has been quite specific, it is contemplated that various modifications could be made without deviating from the spirit of the present invention. Accordingly, it is intended that the scope of the present invention be dictated by the appended claims rather than by the description of the preferred and alternate embodiments.