System and method for in-line processing of water washable flexo photopolymer printing plates
11052653 ยท 2021-07-06
Assignee
Inventors
Cpc classification
B41F35/001
PERFORMING OPERATIONS; TRANSPORTING
G03F7/3064
PHYSICS
G03F7/3057
PHYSICS
International classification
Abstract
A system for processing water washable flexo photopolymer printing plates, the system comprises a washing line including one or more brushes and a surface essentially facing said brushes, and a guiding means adapted to guide a water washable photopolymer printing plate through the washing line by pulling it from a vicinity of a downstream edge thereof and automatically dragging such water washable photopolymer printing plate on said surface. Said brushes are adapted to contact onto a side of such water washable photopolymer printing plate in a washing direction from the downstream edge towards an upstream edge thereof. The system further comprises one or more attachments adapted to be annexed to the vicinity of the upstream edge of a water washable photopolymer printing plate, the attachments being further adapted to exert friction onto the surface, said friction being greater than that between such water washable photopolymer printing plate and said surface.
Claims
1. A system for processing water washable flexo photopolymer printing plates, the system comprising a washing line including one or more brushes and a surface adjacent the one or more brushes, and a guiding means adapted to guide a water washable flexo photopolymer printing plate through the washing line by pulling the water washable flexo photopolymer printing plate from a vicinity of a downstream edge of the water washable flexo photopolymer printing plate and dragging the water washable flexo photopolymer printing plate on the surface whereby the one or more brushes are adapted to contact onto a side of the water washable flexo photopolymer printing plate in a washing direction (WD) from the downstream edge towards an upstream edge of the water washable flexo photopolymer printing plate, wherein the system further comprises one or more attachments, and wherein the one or more attachments are configured to be magnetically attracted to the surface by one of a first and second techniques: the first technique being that the surface comprises ferromagnetic material while the one or more attachments comprise one or more magnets, the second technique being that the one or more attachments comprise ferromagnetic material while the surface comprises one or more magnets; the one or more attachments are arranged to be annexed to a vicinity of the upstream edge of the water washable flexo photopolymer printing plate, thereby providing a friction between the one or more attachments and the surface from magnetic attraction between ferromagnetic material and one or more magnets, the friction being greater than the friction between the water washable flexo photopolymer printing plate and the surface as the water washable flexo photopolymer printing plate is dragged on the surface by the guiding means.
2. The system according to claim 1, wherein the one or more attachments comprise a plurality of pins and/or holes so that the one or more attachments are adapted to be affixed to the water washable flexo photopolymer printing plate through a plurality of pin-and-hole connections.
3. The system according to claim 2, further comprising a holding means adapted to cooperate with the one or more attachments in sandwiching of the water washable flexo photopolymer printing plate.
4. The system according to claim 1, wherein the one or more attachments are adapted to be affixed to the water washable flexo photopolymer printing plate through adhesion or through one or more clamps.
5. A method for processing a water washable flexo photopolymer printing plate in a washing line comprising one or more brushes and a surface adjacent the one or more brushes, and a guiding means adapted to guide the water washable flexo photopolymer printing plate through the washing line by pulling the water washable flexo photopolymer from a vicinity of a downstream edge of the water washable flexo photopolymer printing plate and dragging the water washable flexo photopolymer printing plate on the surface whereby a side of the water washable flexo photopolymer printing plate is brought into contact with the one or more brushes in a washing direction (WD) from the downstream edge toward an upstream edge of the water washable flexo photopolymer printing plate, wherein the method comprises selecting one or more attachments such that the one or more attachments provide a friction between the one or more attachments and the surface, the friction being greater than the friction between the water washable flexo photopolymer printing plate and the surface as the water washable flexo photopolymer printing plate is dragged on the surface by the guiding means; and annexing the one or more attachment to a vicinity of the upstream edge of the water washable flexo photopolymer printing plate, prior to bringing the water washable flexo photopolymer printing plate in contact with the one or more brushes, and by the guiding means, dragging the water washable flexo photopolymer printing plate from the vicinity of the downstream edge, along with the one or more attachments; and thereby stretching the water washable flexo photopolymer printing plate between the guiding means and the one or more attachments, wherein the selection of the one or more attachments is made such that one of the following first and second configurations results: the first configuration being that the one or more attachments comprise one or more magnets while the surface comprises ferromagnetic material, the second configuration being that the one or more attachments comprise ferromagnetic material while the surface comprises one or more magnets.
6. The method according to claim 5, wherein the method comprises affixing the one or more attachments to the water washable flexo photopolymer printing plate with a plurality of pin-and-hole connections.
7. The method according to claim 5, wherein the method comprises an affixing of the one or more attachments to the water washable flexo photopolymer printing plate through adhesion or through one or more clamps.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings are given solely for the purpose of exemplifying the invention whose advantages over prior art were outlined above and will be explained in detail hereinafter:
(2)
(3)
(4)
LIST OF REFERENCE SIGNS
(5) 10 washing line 10 prior art washing line 11 brush 12 surface 13 guiding means 20 attachment 21 magnet 22 further holding means 23 pin 24 hole 30 photopolymer printing plate 91 downstream edge 92 upstream edge 100 system 100 prior art system GD guiding direction WD washing direction A pin-and-hole axis
DETAILED DESCRIPTION OF THE EMBODIMENTS
(6) Referring to the figures summarized above, the present invention proposes a system for processing water washable flexo photopolymer printing plates. The system (100) comprises a washing line (10) including one or more brushes (11) and a surface (12) essentially facing said brushes (11) when in use. The system further comprises a guiding means (13) adapted to guide a water washable photopolymer printing plate (90) (e.g. a water washable photopolymer printing plate, which can also be named or abbreviated as: flexo plate, plate or WFP) through said washing line (10) by pulling such plate (90) from a vicinity of a downstream edge (91) thereof. The guiding means (13) is further adapted to drag such plate (90) on said surface (12). The system is adapted to provide contact between said brushes (11) with a side of such plate (90) essentially in a washing direction (WD) from the downstream edge (91) towards an upstream edge (92) of the plate. Thus the guiding means is adapted to guide a water washable flexo photopolymer printing plate (90) relative to the brushes (11) in a guiding direction (GD) as schematically shown in the
(7) The system according to the present invention further comprises one or more attachment(s) (20) adapted to be annexed to the vicinity of the upstream edge (92) of a water washable photopolymer printing plate (90). The attachments (20) are further adapted to exert friction (e.g. an extended friction) onto the surface (12), so that said friction is greater than that between the plate (90) and said surface under processing conditions.
(8) The term processing conditions here corresponds to washing conditions where a water washable photopolymer printing plate (90) is washed in an aqueous medium.
(9) With the present invention, stretching of such plate (90) can be achieved over said friction between the attachment (20) and the surface (12) upon dragging such water washable flexo photopolymer printing plates (90) by the guiding means (13).
(10) In an embodiment according to the present invention, the attachments (20) comprise one or more magnets (21) (as exemplified in the
(11) In another embodiment according to the present invention, the attachments (20) comprise one or more sucking disc(s) (not shown) adapted to provide decreased pressure when applied on said surface (12), e.g. upon being pushed thereonto. This feature enables that the friction between the attachment and the surface is, in use, extended or essentially achieved over decreased gas pressure between the sucking discs and said surface.
(12) In another embodiment according to the present invention, the attachments (20) comprise an adhesive (not shown) so that the attachments (20) reversibly adhere to the surface (12) when brought into contact therewith. With this embodiment the attachments are enabled to provide a reversible adhesion onto the surface, thus in use, the friction between the attachments and the surface is extended or essentially achieved over said reversible adhesion.
(13) In another embodiment according to the present invention, the attachments (20) comprise one or more weights (not shown). Said weights have a density which is greater than that of a water washable photopolymer printing plate (90). Selecting materials according to their densities is within the capabilities of any person skilled in the art of materials science, e.g. by looking up to any table listing densities of materials which do not dissolve or swell in water. This feature enables that, in use, the friction between the attachment and said surface is extended or essentially achieved over gravity force applied onto said weights dragging on said surface.
(14) Two or more of the above explained features including magnet and ferromagnetic material pair(s), sucking disc(s), adhesive and/or weight can also be combined for potentiating the extension of the friction between the surface and the attachment.
(15) In the system according to the present invention, the attachment (20) can be adapted to be affixed to such water washable photopolymer printing plate through various ways available for a person skilled in machines design; e.g. through a plurality of pin-and-hole connection. Alternatively, the attachment can be adapted to be affixed to such water washable photopolymer printing plate through adhesion or through one or more clamps.
(16) A further holding means (22) can be also included, which is adapted to cooperate with the attachment (20) by sandwiching the water washable photopolymer printing plate. This provides a still releasable but stronger fixing of the attachment (12) to the plate (90). An example of a holding means (22) is depicted in the
(17) The present invention further proposes a method for processing water washable flexo photopolymer printing plates (90) in a washing line (10) comprising one or more brushes (11) and a surface (12) essentially facing said brushes (11), and a guiding means (13) adapted to guide the water washable photopolymer printing plate (90) through the washing line (10) by pulling it from a vicinity of a downstream edge (91) thereof and dragging it on said surface (12), whereby a side of the water washable photopolymer printing plate (90) is brought into contact with said brushes (11) in a washing direction (WD) from the downstream edge (91) towards an upstream edge (92) of the water washable photopolymer printing plate (90).
(18) In the method according to the present invention, the vicinity of the downstream edge (91) of the water washable photopolymer printing plate (90) is annexed with one or more attachments (20) providing friction between said attachments (20) and said surface (12). Said friction is greater than that between the water washable photopolymer printing plate (90) and said surface (12) on which the plate (90) is dragged/guided under process conditions (i.e. aqueous washing conditions). This set of features provides stretching to the water washable photopolymer printing plate between guiding means (13) and attachments (20) upon being dragged from the vicinity of its downstream edge (91), because of the extended friction between said attachment and said surface; thus the plate (90) can be kept straight without getting deformed or wrinkled throughout the process.
(19) The attachments (20) used in the method according to the present invention can comprise one or more magnets (21) as exemplified in the
(20) The attachments used in the method according to the present invention can comprise one or more sucking discs adapted to provide decreased pressure when applied on said surface. This feature enables that the friction between the attachment and the surface is achieved or increased via decreased gas pressure between the sucking discs and said surface.
(21) The attachments used in the method according to the present invention can comprise an adhesive adapted to provide a reversible adhesion onto said surface, so that friction between the attachment and the surface is thereby further extended.
(22) The attachments used in the method according to the present invention can comprise one or more weights having a density which is greater than that of such water washable photopolymer printing plate; so that the friction between the attachment and said surface is achieved over gravity force applied onto said weights dragging on said surface.
(23) The attachments used in the method according to the present invention can be affixed to such water washable photopolymer printing plate through a plurality of pin-and-hole connection.
(24) Alternatively, the attachments used in the method according to the present invention can be affixed to such water washable photopolymer printing plate through adhesion or through one or more clamps.
(25) Thus, the above-mentioned problems are solved with the system and method according to the present invention.