Polymeric rule die, and formulations therefor

    公开(公告)号:US10562258B2

    公开(公告)日:2020-02-18

    申请号:US15129421

    申请日:2015-04-07

    Abstract: Die and counter-die systems, polymeric rule dies for such systems, and polymeric formulations suitable for producing such rule dies using digital rule writing. There is provided a rule die for pressure-contacting of a cardboard workpiece surface, including: (a) a die body; and (b) at least one elongate polymeric rule, each rule having: (i) a first elongate base surface adhesively attached to a surface of the die body; and (ii) an elongate protrusion, distally protruding from the die body, the elongate protrusion having an elongate die surface, the elongate die surface including a polymeric material, the elongate die surface having a contact surface adapted to contact the workpiece surface; the contact surface having a length of at least 5 mm and a first width (W) within a range of 0.4 to 1.0 mm, the rule having a height (H) within a range of 1.0 to 4.5 mm; wherein, over a total length of the contact surface, the contact surface having at most 5 surface pocks/meter, the pocks having a diameter above 0.1 mm.

    Method and apparatus for laser cutting
    3.
    发明授权
    Method and apparatus for laser cutting 有权
    激光切割的方法和装置

    公开(公告)号:US09436012B2

    公开(公告)日:2016-09-06

    申请号:US13865758

    申请日:2013-04-18

    Inventor: Lev Dvorkin

    CPC classification number: G02B27/14 B23K26/067 B23K26/0676 B23K26/38 G02B26/10

    Abstract: Method and system for laser cutting is disclosed. Using a novel dual-focus optical conversion unit. The dual-focus optical conversion unit may comprise a beam splitter and a convex mirror. The beam splitter may be insensitive to the polarization of an incident beam. The convex mirror may be placed beyond and parallel to the beam splitter, wherein the surface of the convex mirror may be coated with a reflective phase-retarder coating.

    Abstract translation: 公开了激光切割的方法和系统。 使用新颖的双焦光学转换单元。 双焦点光学转换单元可以包括分束器和凸面镜。 分束器可能对入射光束的偏振不敏感。 凸面镜可以放置在分束器之外并平行,其中凸面镜的表面可以涂覆有反射相位延迟器涂层。

    Method and system for surface adhesive rule technology
    5.
    发明授权
    Method and system for surface adhesive rule technology 有权
    表面粘合剂规则技术的方法和系统

    公开(公告)号:US09102818B2

    公开(公告)日:2015-08-11

    申请号:US13108389

    申请日:2011-05-16

    Abstract: A surface-adhesive-rule technology (SART) method and system for creating a surface-adhesive-rule die and counter die for pre-treating cardboard. Wherein the pre-treating comprises: creasing and/or cutting and/or embossing the cardboard. The SART system may comprise: a rule-drawer having one or more cartridges, one or more nozzles, and one or more pressure actuator; a leading mechanism that carries the rule-drawer; and a controller that controls the rule-drawer and the leading mechanism according to a layout of a surface-adhesive-rule die. Each cartridge may comprise flexible materiel and may be associated with one of the nozzles having an orifice with a profile. Further the leading mechanism moves the rule-drawer and the rule-drawer draws a plurality of surface-adhesive rules from the flexible material having an attribute to reserve the shape of the orifice profile through which it is deposited on the surface of a die's body according to commands obtained from the controller.

    Abstract translation: 一种表面粘合规则技术(SART)方法和系统,用于创建用于预处理纸板的表面粘合规则模具和反模具。 其中预处理包括:纸板的折痕和/或切割和/或压花。 SART系统可以包括:规则抽屉,其具有一个或多个盒,一个或多个喷嘴和一个或多个压力致动器; 带有规则抽屉的领先机制; 以及根据表面粘合规则模具的布局来控制规则抽屉和引导机构的控制器。 每个墨盒可以包括柔性材料,并且可以与具有具有轮廓的孔口的喷嘴中的一个相关联。 此外,引导机构移动规则抽屉,规则抽屉从具有属性的柔性材料中抽出多个表面粘合规则,以保留其被沉积在模具本体表面上的孔口形状的形状,根据 从控制器获得的命令。

    Sheet conveying apparatus
    8.
    发明授权

    公开(公告)号:US11858776B2

    公开(公告)日:2024-01-02

    申请号:US17785559

    申请日:2021-10-21

    Abstract: A conveying apparatus for feeding sheets into a processing apparatus is discloses which comprises a plurality of nips within which sheets are gripped and driven along a conveying direction towards the processing apparatus, each nip being defined between a respective drive wheel and an opposing reaction surface. The drive wheels are omni-wheels configured to apply a frictional force to advance the sheets in the conveying direction while permitting free movement of the sheets in a direction transverse to the conveying direction, the reaction surfaces permitting free movement of the sheets in the transverse direction, and an elongate guide is arranged on one side of the conveying apparatus, to extend generally parallel to the conveying direction, the conveying apparatus being configured to urge conveyed sheets in the transverse direction into contact with the guide. A control system is provided to move the guide generally in the transverse direction in dependence upon sensed fiducials on the conveyed sheets, to ensure correct alignment of the sheets in the transverse direction with respect to the processing apparatus.

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