Patent classifications
Y10T156/1956
DEVICE FOR SEPARATING GUMMED PAPER AND LINING PAPER OF DOUBLE-SIDED TAPE
A device for separating a gummed paper and a lining paper of a double-sided tape is provided. In an example, the device includes a housing, a first rotating structure and a second rotating structure which are provided within the housing and a control part. A chamber for accommodating a double-sided tape coil is provided in the housing. The control part fits the chamber, and the double-sided tape coil is rotatable around the control part. The housing is provided with a sliding groove for accommodating the first rotating structure. When the first rotating structure abuts against the second rotating structure, the first rotating structure is positioned in a first limiting part of the sliding groove.
EQUIPMENT SYSTEM USING ORGANIC SILICONE RESIN PHOTOCONVERTER TO BOND-PACKAGE LED BY TANDEM ROLLING
An equipment system for bond-packaging an LED using an organic silicone resin photoconverter by tandem rolling includes a protective film removing apparatus used for removing a protective film on one side of a photoconversion sheet with protective films on both sides and a roll-bonding apparatus for packaging a flip chip LED array by using the photoconversion sheet containing a protective film on a single side, to form LED package elements. The protective film removing apparatus includes a photoconversion sheet freezing part (2-1, 2-2), a traction part for pulling and removing a protective film on a single side of the frozen photoconversion sheet, and a photoconversion sheet rewarming part (4-1, 4-2) that are sequentially connected and disposed. The roll-bonding apparatus includes two single-wheeled rollers (5-1, 5-2) whose rolling surfaces are both smooth surfaces. The present invention has a significant advantage of bond-packaging an LED by using a continuous rolling process, and can satisfy a requirement of a process for bond-package an LED using an organic silicone resin photoconverter, thereby improving the production efficiency and yield of LED packages in industrialized batch production.
Solar panel cutting unit
A solar panel cutting unit may include a frame, a transport roller unit provided at the frame to transport, in a first direction, a solar panel having a glass plate, an adhesive layer, a solar cell layer, and a backsheet layer stacked sequentially, a heating unit to heat the solar panel, a pair of pressurization roller units to pressurize and transport the solar panel, a trimmer unit that moves in a second direction perpendicular to the first direction and removes the backsheet layer, the solar cell layer, and the adhesive layer, a peeling unit that inserts a blade into the adhesive layer of the solar panel passing by the trimmer unit and removes a flexible film to which the solar cell layer and the backsheet layer is adhered, and a collection roller that collects the flexible film peeled by the peeling unit.
Film peeling device
A film peeling device preventing deformation or other defect of substrates occurring in the process of conveying films adhered up to the substrate leading ends while peeling from the substrate, protecting the substrate from damage, and avoiding deterioration of the substrate quality. The constitution is composed of a substrate holding mechanism for holding the leading end of a substrate by linear contact, an adhering and peeling mechanism for peeling films by an adhesive force from the substrate held by the substrate holding mechanism, a film holding tool for gripping individually the leading ends of the films adhered to the substrate both sides being wound and lifted by the adhering and peeling mechanism, a film conveying unit drive mechanism for conveying the film holding tool gripping the films in the substrate opposite direction conveying direction, and a recovery container accommodating the films being gripped and conveyed by the film holding tool.
Method for transferring a large-area graphene sheet
A method of transferring a graphene sheet comprising one or more layers of graphene formed on a metal film, such as a copper film, coating a surface of a metal or alloy substrate onto a target substrate. The method includes fixedly contacting the graphene sheet with a contacting surface of the target substrate by applying substantially uniform pressure and heat on a layered assembly. The layered assembly comprises the metal or alloy substrate, the graphene sheet, and the target substrate. At least one layer of graphene of the graphene sheet formed on the copper film coating the surface of the metal or alloy substrate is transferred onto the contacting surface of the target substrate by the substantially uniform pressure and heat, and the at least one layer of graphene forms a graphene film on the contacting surface of the target substrate.
Method and apparatus for processing display laminate
An apparatus for processing display laminate, wherein the display laminate includes a front electrode layer, a display material layer and a protective film layer. The display laminate is continuous. A section of protective film layer is continuously removed from the edge of the display laminate by a cutting unit while the display laminate is running through the cutting unit. After removing the section of the protective film layer, a section of the display material layer located at the same edge as the removed section of the protecting film layer is continuously removed by spraying medium in a spraying unit while the display laminate is running through the spraying unit.
Removing unit and removing method
Provided is a removing unit that includes: a first conveying roller, a second conveying roller, a third conveying roller, and a take-up roller. The first conveying roller conveys a stack including first and second base members which are removably stacked with respect to each other. The second conveying roller conveys the second base member from which the first base member has been removed. The third conveying roller conveys the first base member which has been removed from the second base member, along a surface of the first conveying roller. The take-up roller takes up the first base member which has been conveyed by the third conveying roller. The second conveying roller is provided upstream from a first tangent in a conveying direction of the first base member. The third conveying roller is provided to overlap the first tangent or provided downstream from the first tangent, in the conveying direction.
Device and method for removing a peelable seal
A container or array of containers that is are sealed with a peelable seal is transported via a conveyor along a processing path toward a desealing station at which an adhesive surface having a width substantially the same as or greater than the width of the seal is pressed against the upper surface of the peelable seal. A collection rod applies a downward pressure on the adhesive surface, pressing it against the seal and keeping the container or container array in position on the conveyor as the plate moves with the conveyor. As the leading edge of the seal passes the collection rod, the adhesive surface is rolled upward, away from the plane of the seal, pulling up on the leading edge of the seal to separate it from the container or container array while the container or container array is held down by the roller. The removed seal is then discarded.
PEELING APPARATUS
A peeling apparatus according to an embodiment includes: a conveyance roller configured to convey a laminate made by peelably laminating a first substrate and a second substrate including an opening; a peel roller arranged facing the conveyance roller with the laminate interposed in between, and configured to peel the second substrate from the first substrate; a winding roller arranged away from the peel roller, and configured to wind the second substrate peeled from the first substrate; and an auxiliary winding roller arranged between the peel roller and the winding roller, and including a stepped portion configured to maintain a width of the opening.
System and method for the automated opening of a sterile tubing weld
A system and method for automatically opening a heat bonded connection site between two conjoined tubing segments of a medical fluid path is provided. A pair of rollers is utilized to draw the connection site of the conjoined tubing segments between the rollers to compress the connection site with sufficient force to open the connection site. A guide in the form of an elongated groove is provided in a support surface of the system that properly aligns the seal line axis of the conjoined tubing segments relative to the rollers.