Abstract:
To provide a method for manufacturing a double-sided adhesive material suitable for the size and shape of various articles using a simple process without reducing the yield of the adhesive material that is used, and to provide an article with a double-sided adhesive material that uses the double-sided adhesive material obtained by this manufacturing method. [Resolution means] Liquid photo curing adhesive 12 is applied by direct drawing onto a specific region corresponding to the size and shape of an article to be used, on the surface of a first plate 10, using a robot. A sheet shaped second plate 20 is placed on the first plate 10 where the adhesive 12 was applied, such that the adhesive 12 is interposed between both plates. Light for curing the adhesive is then irradiated from both sides of the adhesive 12 so that the light will pass through both the first plate 10 and the second plate 20 and reach the adhesive 12.
Abstract:
An assembling system for assembling a backlight light module includes a receiving device, a pressing unit, a driving unit, an image module and a platform. The platform defines a bearing area to accommodate the receiving device. The receiving device includes a receiving room configured for receiving components of a backlight module. The pressing unit is configured for pressing the components to form the backlight module. The driving unit includes a driving device and a control unit. The driving device is used for driving the pressing unit to press the backlight module. The image module includes a camera and an image processor, the camera is configured for capturing images of the pressing unit during the pressing process, the image processor is configured for receiving and processing the images and generating a corresponding control signal, the control unit receives the control signal and control the driving device according to the control signal.
Abstract:
A heat-debonding adhesive member is provided. The heat-debonding adhesive member attaches electronic device components such as a battery and a housing together. The heat-debonding adhesive includes a heat-generating layer that generates heat for debonding structures that are attached together using the adhesive member. The heat-generating layer includes a conductive layer that generates heat when a current flows through the conductive layer. The heat-debonding adhesive includes additional adhesive layers such as a voided polymer film having air-filled voids and one or more pressure-sensitive adhesive layers. A debonding tool provides current to conductive contacts on the conductive layer for generating heat in the heat-generating layer when it is desired to debond the structures that are attached together using the adhesive member.
Abstract:
A mounting element is provided. The mounting element includes a layer, a first portion of adhesive, a second portion of adhesive, a first removable layer, and a second removable layer.
Abstract:
A double-sided reusable adhesive sheet which includes a substrate, a first film layer attached to one surface of the substrate, and a second film layer attached to an opposed surface of the substrate, wherein a glass transition temperature of a high temperature curing process of the first and second film layers is 120˜240° C., wherein surfaces of said first and second film layers are respectively provided with a plurality of micro-bubble structures, so that the first and second film layers can be repeatedly engaged and disgengaged and the adhering force is also enhanced, so that a reusable adhesive double-sided sheet structure is provided.
Abstract:
An adhesive double-sided tape includes a base board, a first adhesive layer formed on one surface of the base board, and a second adhesive layer formed on another surface of the base board. The base board comprises a number of through holes. At least one of the first adhesive layer and the second adhesive layer is filled in the number of through holes to combine the first adhesive layer and the second adhesive layer together. A method for manufacturing the adhesive double-sided tape is also provided.
Abstract:
An athletic tape or protective athletic sleeve is formed from an impregnated fabric substrate that is sealed on both sides. The impregnated fabric includes a shear thickening fluid that is made up of a suspension solution and solid particles. The shear thickening fluid is sealed within the fabric through use of sealing layers on both sides of the fabric.
Abstract:
A tape for securing an ultrasound probe to the skin may include a sonolucent silicone gel for transmitting ultrasound from an ultrasound transducer to the body. A method of manufacturing an adhesive silicone product may include a step of treating the adhesive composition or components of the composition to remove air or prevent the formation of air bubbles, in order to provide a sonolucent adhesive product.
Abstract:
The process for producing an organic EL panel according to the present invention is a process for producing an organic electroluminescent panel by forming an organic electroluminescent element on an ultrathin glass plate by vacuum deposition method, including forming electrodes on the ultrathin glass plate, by temporarily fixing the ultrathin glass plate to a supporting plate via a double-sided adhesive tape having a thermal release adhesive layer formed at least on one face of the base material layer, containing heat-expandable microspheres that start expansion and/or foaming at temperature higher than the vacuum deposition temperature.
Abstract:
Processes are provided for forming film adhesives (10). The processes include applying an adhesive (18), such as a Bisphenol A epoxy resin, to a membrane (14), and partially curing the adhesive (18). The resulting film adhesives (10) can be shipped and stored at room temperature. The film adhesives (10) can be used to bond components such as, but not limited to printed wireboards (11, 12) and other substrates. A structural bond between the components can be formed by fully curing the resin (18) while the resin (18) is in contact with at least one of the components.