Abstract:
A lenticular display has: a lenticular lens in which a plurality of convex lenses are arranged in parallel, each of the convex lenses having a convex front surface; a lenticular image provided on a back surface side of each of the convex lenses; and an anti-reflection layer provided on a back surface side of the lenticular image. The lenticular image includes a plurality of display image strips that are extracted each in a stripe shape from a plurality of display images and that are arranged at corresponding positions on the back surface side of each of the convex lenses, and a transparent-slit image strip that is provided between each pair of the plurality of display image strips that are adjacent to each other and that are extracted from the display images that differ from each other.
Abstract:
A lenticular display has: a lenticular lens in which a plurality of convex lenses are arranged side by side, the plurality of convex lenses each having a convex surface; and a lenticular image provided on a back-face side facing away from the surface of the convex lenses. Provided are the lenticular display in which the lenticular image is a plurality of display image strips that are extracted from each of a plurality of display images in a stripe form and are arranged at corresponding positions under the convex lenses, and in the plurality of display images, a color density of a portion where main-image parts overlap with each other is corrected, a method for forming a lenticular image, a method for manufacturing the lenticular display, and a program for forming a lenticular image.
Abstract:
A lenticular display includes a lenticular image including an image strip group in which display image strips that are respectively extracted in the form of a stripe from a plurality of display images are arrayed adjacently to each other in their respective corresponding positions, and in which an interpolation image strip is disposed between display image strips that are adjacent to each other, that are extracted from different display images, and that have different colors in at least a portion thereof, the interpolation image strip having a color that is in between the color of one of the adjacent display image strips and the color of the other of the adjacent display image strips.
Abstract:
The present invention provides a lenticular sheet including a transparent resin substrate stretched in at least one direction, an ink receiving layer provided on one surface side of the transparent resin substrate, and a lenticular lens layer provided on the other surface side of the transparent resin substrate, in which the ink receiving layer is formed on the one surface side of the transparent resin substrate by stretching a transparent resin substrate which is not stretched or stretched in a first direction and on which a coating layer is formed by coating one surface side of the substrate with a coating solution for forming an ink receiving layer; a method for manufacturing a lenticular sheet; and a lenticular display body.
Abstract:
Provided is a lenticular display including a lenticular lens including a plurality of columnar convex lenses that each have a semicylindrical surface and are arrayed in parallel and a lenticular image disposed on an opposite side of the convex lenses from the semicylindrical surface. The lenticular image includes an image strip group in which a plurality of image strips for displaying a plurality of display images respectively are arranged in positions for causing the image strips to be displayed through the plurality of convex lenses respectively in a state where a longitudinal direction of the image strips is parallel to a longitudinal direction of the plurality of convex lenses, and in the image strip groups, and a total width of image strips for displaying at least one display image among the plurality of display images is larger than a total width of image strips for displaying another display image.
Abstract:
Provided is a lenticular printed material including: a lenticular lens in which a plurality of convex lenses respectively having a semicylindrical surface are arranged in parallel; and a lenticular image which is disposed on a side opposite to the semicylindrical surface of each convex lens and includes character information to be displayed in a plurality of languages independently from each other, in which the languages for displaying the character information are switched between one another according to an observation angle in a case where the lenticular image is observed through the lenticular lens.
Abstract:
A lens sheet manufacturing method according to one aspect of the presently disclosed subject matter includes: conveying an original lens sheet having a plurality of linear lens elements arranged and formed in parallel with each other on a front sheet surface; detecting an edge line of one of the lens elements; determining whether the detected edge line and a trimming direction blade included in a punching blade are parallel with each other; when it is determined that they are not parallel with each other, controlling a conveying direction of the original lens sheet so that the trimming direction blade and the detected edge line are parallel with each other; and temporarily stopping conveying with the edge line of the lens element and the trimming direction blade being parallel with each other and punching the original lens sheet with the punching blade to manufacture a separated lens sheet.