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Home Nonmetallic Processes Production-of-a-photosensitive-recording-element

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 Production of a photosensitive recording element

Details
Inventors: Bleckmann, Gerhard; Loerzer, Thomas; Telser, Thomas;
Assignee: BASF Aktiengesellschaft (Ludwigshafen, DE)
Primary Examiner: McCamish; Marion E.
Assistant Examiner: Chapman; Mark A.
Attorney, Agent or Firm: Keil & Weinkauf

For the production of a recording element having a photopolymerizable recording layer comprising at least two individual layers having the same composition or different compositions, located one on top of the other and firmly bonded to one another, the components used for the production of the individual layers are melted together, homogeneously mixed and freed from gaseous constituents in a self-purging, twin-screw extruder. Thereafter, the component mixture is divided into two or more material streams in a manner such that at least one material stream is removed from the extruder, transported by means of a delivery pump to an adapter or to a multilayer die and bonded there with a material stream from the screw extruder after shaping in each case to give sheet-like structures. During transport of the separate material streams, further components may be metered into or mixed with said streams, so that individual layers having the same or different properties are obtained. The individual layers or the recording layer are or is subsequently calendered.

DETAILED DESCRIPTION We claim: 1.
A process for the production of a photosensitive recording element having a photopolymerizable recording layer comprising at least two individual layers having the same composition or different compositions, located one on top of the other and firmly bonded to one another, in which components used for the production of the individual layers are melted, homogeneously mixed and freed from gaseous constituents in a self-purging, twin-screw extruder, the component mixture is transported as separate material streams and the latter are combined in an adapter or a multilayer die with formation of the individual layers and said layers are then calendered, wherein the components which are obligatory for all individual layers are melted and mixed together in a screw extruder and, after removal of gaseous constituents, the component mixture is divided into two or more material streams, at least one of which is removed from the screw extruder and is transported by means of a delivery pump to the adapter or to the multilayer die, further components being mixed with this material stream during this transport.
2.
A process as claimed in claim 1, wherein further components are mixed with the material stream transported by means of the screw extruder.
3.
A process as claimed in claim 1, wherein the further components are metered, at the suction side of the delivery pump, into the material stream removed from the screw extruder.
4.
A process as claimed in claim 1, wherein the material stream removed from the screw extruder and the additional components are mixed in a static mixer.




Description:
The production of the genus of the invention starts from a known process according to EP-A-0 362 641, by means of which photosensitive recording elements having a photopolymerizable recording layer comprising at least two individual layers having the same composition or different compositions, located one on top of the other and firmly bonded to one another have been produced to date by a continuous method



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