Invention Grant
- Patent Title: Rotogravure printing processes for producing optically variable security features
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Application No.: US15029660Application Date: 2014-10-09
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Publication No.: US10654307B2Publication Date: 2020-05-19
- Inventor: Christophe Garnier , Lucien Vuilleumier , Cecile Pasquier
- Applicant: SICPA HOLDING SA
- Applicant Address: CH Prilly
- Assignee: SICPA HOLDING SA
- Current Assignee: SICPA HOLDING SA
- Current Assignee Address: CH Prilly
- Agency: Muncy, Geissler, Olds & Lowe, P.C.
- Priority: com.zzzhc.datahub.patent.etl.us.BibliographicData$PriorityClaim@706b26ca
- International Application: PCT/EP2014/071665 WO 20141009
- International Announcement: WO2015/055504 WO 20150423
- Main IPC: B42D25/364
- IPC: B42D25/364 ; C09K19/38 ; B41M3/14 ; C09K19/58 ; C09D11/03 ; B42D25/23 ; B42D25/29 ; B42D25/355 ; B42D25/44 ; B41F11/02 ; C09K19/34 ; B41M1/10 ; C09K19/04

Abstract:
The present invention is related to the filed of optically variable security elements comprising a region based on a single cured ink comprising a cholesteric liquid crystal polymer, said region having at least two, preferably at least three, patterns exhibiting, at at least one viewing angle, a different CIE (1976) color index parameter and/or a different position of the selective reflection band for protecting security documents against counterfeiting and/or illegal reproduction. In particular, the present invention relates to processes for manufacturing said features, when the processes comprises the steps of a) applying on a substrate by a rotogravure process with the use of a gravure cylinder having at least two, preferably at least three, different engravings a single cholesteric liquid crystal precursor composition, b) heating the applied composition to bring said composition to a cholesteric liquid crystal state, and c) curing the composition so as to form the region based on a single cured ink comprising a cholesteric liquid crystal polymer.
Public/Granted literature
- US20160263931A1 ROTOGRAVURE PRINTING PROCESSES FOR PRODUCING OPTICALLY VARIABLE SECURITY FEATURES Public/Granted day:2016-09-15
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