首页> 外国专利> METHOD AND EMBOSSING STRUCTURE USING HIGH DENSITY PRESSURE FOR CREATING SHADOWED OR CURVED HIGHLY REFLECTIVE AREAS ON ROTATIONALLY EMBOSSED FOILS

METHOD AND EMBOSSING STRUCTURE USING HIGH DENSITY PRESSURE FOR CREATING SHADOWED OR CURVED HIGHLY REFLECTIVE AREAS ON ROTATIONALLY EMBOSSED FOILS

机译:使用高密度压力的方法和压花结构,用于在旋转压纹箔上产生阴影或弯曲的高反射区域

摘要

A method of embossing individually light reflecting areas on a foil material, the method comprising feeding a foil material into a roller nip between a pair of rollers, wherein the pair of rollers comprises a motor roller and a counter roller, providing each of the motor roller and counter roller at least in a determined perimeter with a plurality of positive and negative projections on a checkered layout whereby positive and negative projections alternate in axial and radial directions. The method further comprises that the plurality of positive and negative projections of the counter roller seamlessly and gaplessly join with those corresponding negative and positive projections of the motor roller at the intended embossing of the foil material, hence enabling a homogeneously jointed embossed polyhedron shape in the foil, and shaping each positive and negative projection on the motor roller as an n-cornered polyhedron with a specific surface intended to produce on the embossed foil surface a corresponding individually light reflecting area, for each positive projection its specific surface corresponding to its top side, and for each negative projection its specific surface corresponding to its bottom side.
机译:一种压花在箔材料上的单独光反射区域的方法,该方法包括将箔材料供给到一对辊之间的辊子辊辊中,其中一对辊子包括电动辊和逆辊,提供每个电动辊并且至少在确定的周边中的计数器辊,在方格的布局上具有多个正负突起,由此正凸起在轴向和径向方向上交替。该方法还包括:计数器辊的多个正凸起无缝且无光凸起在箔材料的预期压花中无缝地和高度连接,以便在箔材料的预期压花处实现电动辊的相应的负凸起,因此使均匀地关联压花的多面体形状能够箔,并将电动辊上的每个正和负突出成形为n个转角多面体,其具有旨在在压花箔表面上产生的特定表面,每个正投影的每个正投影对应于其顶侧,以及每个负投影,其特定表面对应于其底侧。

著录项

  • 公开/公告号EP3638500B1

    专利类型

  • 公开/公告日2021-12-08

    原文格式PDF

  • 申请/专利权人 BOEGLI-GRAVURES SA;

    申请/专利号EP20180708201

  • 发明设计人 BOEGLI CHARLES;DROZ ALAIN;STEFFEN WERNER;

    申请日2018-01-31

  • 分类号B31F1/07;

  • 国家 EP

  • 入库时间 2022-08-24 22:42:00

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