Abstract:
Processes for producing a sheet of holographic material wherein the holographic image is formed on a polished, substantially smooth surface of a printing element and then transferred the holographic image to a substrate. A coating is applied to the smooth surface of the printing element to provide a coated surface, the coated surface is embossed or engraved to provide the holographic image, and the holographic image is then transferred to a substrate via a bonding material, thereby producing the sheet of holographic material. The sheet of holographic material may be used to provide a decorative cover for an object or item, such as a floral grouping or a potted plant.
Abstract:
Processes for producing a sheet of holographic material wherein the holographic image is formed on a polished, substantially smooth surface of a printing element and then transferred the holographic image to a substrate. A coating is applied to the smooth surface of the printing element to provide a coated surface, the coated surface is embossed or engraved to provide the holographic image, and the holographic image is then transferred to a substrate via a bonding material, thereby producing the sheet of holographic material. The sheet of holographic material may be used to provide a decorative cover for an object or item, such as a floral grouping or a potted plant.
Abstract:
Processes for producing a holographic material wherein the holographic image is formed on a polished surface of a printing element and the holographic image is then transferred to a substrate are disclosed. A coating is applied to the polished surface of the printing element to provide a coated surface, the coated surface is engraved to provide the holographic image, and the holographic image is then transferred to a substrate via a bonding material, thereby producing the holographic material. The holographic material may be used to provide a decorative cover for an object or item, such as a floral grouping or a potted plant.
Abstract:
A method of fabricating plastic products with an integrated Lenticular lens material that thermally protects the ink layer and outer lens surfaces of the Lenticular insert. A Lenticular lens material is provided with a Lenticular lens layer with an outer surface of optical ridges and an ink layer bonded to a transparent lens layer. A thermal protective substrate comprising opaque flexographic ink is applied to the ink layer. The application of the thermal protective substrate is completed using a coating unit of a lithographic press. A Lenticular insert is formed from the coated Lenticular lens material and the insert is positioned within a mold cavity. The object is formed by inserting a liquid plastic charge into the mold cavity. The thermal protective substrate insulates the ink layer. Concurrently, the portion of the mold adjacent the insert is cooled to a temperature below the deformation temperature of the optical ridges.
Abstract:
Processes for producing a holographic material wherein the holographic image is formed on a polished surface of a printing element and then transferred the holographic image to a substrate. A coating is applied to the smooth surface of the printing element to provide a coated surface, the coated surface is embossed or engraved to provide the holographic image, and the holographic image is then transferred to a substrate via a bonding material, thereby producing the holographic material. The holographic material may be used to provide a decorative cover for an object or item, such as a floral grouping or a potted plant.
Abstract:
Processes for producing a holographic material wherein the holographic image is formed on a polished surface of a printing element and then transferred the holographic image to a substrate. A coating is applied to the polished surface of the printing element to provide a coated surface, the coated surface is embossed or engraved to provide the holographic image, and the holographic image is then transferred to a substrate via a bonding material, thereby producing the holographic material. The holographic material may be cut to provide decorative elements.
Abstract:
Processes for producing a holographic material wherein the holographic image is formed on a polished surface of a printing element and then transferred the holographic image to a substrate. A coating is applied to the polished surface of the printing element to provide a coated surface, the coated surface is embossed or engraved to provide the holographic image, and the holographic image is then transferred to a substrate via a bonding material, thereby producing the holographic material. The holographic material may be cut to provide decorative elements.
Abstract:
A message display is described having a message display surface with a first area. At least one hook fastening element with a second area is affixed to the message display surface. The message display also includes at least one message display panel with a third area. The display panel has a printable surface and an entangled fiber sheet backing. The at least one hook fastening element engages the entangled fiber sheet backing to maintain the at least one message display panel in a fixed relationship to the message display surface. A message display construction system and a method of creating a message display are also described.
Abstract:
Disclosed is a method of manufacturing a mechanically and chemically embossed surface covering having selectively textured surfaces. The method includes forming a web coated with a wear layer. The coated web is heated to a temperature at which the wear layer is cured, the foam layer expands, and the pattern is chemically embossed to form a surface covering having foamed regions and nonfoamed regions. The temperature gradient of the surface covering is adjusted such that there is a temperature gradient difference between the foamed and nonfoamed regions. A surface texture is then mechanically embossed into the wear layer and selectively set onto the wear layer substantially overlying the non-foamed regions.
Abstract:
A method for forming a three dimensional polymeric structure includes providing at least one paint layer and providing a bonding layer coupled to the at least one paint layer to form an insert having a bonding surface provided by the bonding layer. A mold having a hollow interior bounded by an interior surface is further provided. The insert is positioned within the interior along a portion of the interior surface. At least one charge of thermoplastic material is deposited into the interior. The interior is heated while the mold is rotated and rocked. As a result, the thermoplastic material melts and is deposited against the interior surface of the mold and against the bonding surface of the insert to form a three dimensional structure within the interior. The three dimensional structure is then removed from the interior of the mold.