Patent classifications
B29C65/4855
Thermally conductive adhesive compositions comprising carbon-based particles and methods for their use and preparation
Adhesive compositions that contain thermally conductive carbon-based materials that are also electrically insulated; methods for using such adhesive compositions and methods for their preparation.
Hybrid Reinforcement Structure
A structural reinforcement for insertion into a cavity of a vehicle structure including a base reinforcing portion, an expandable material and a localized reinforcement is disclosed. The localized reinforcement is placed within the structural reinforcement at a location of anticipated increased deformation during vehicle impact in an effort to reduce deformation and control the load distribution post-impact.
Method for producing functional-substance thin film material, functional-substance thin film material, and laminate thereof
In an embodiment, a process for producing a functional-substance thin film material for which a required heating temperature for finishing is 100-130 C. is characterized in that a PP film 2 is releasably laminated to a surface of a PET film 1 with a non-silicone adhesive layer 3 so that the strength of adhesion of the PP film 2 by the non-silicone adhesive layer 3 is regulated so as to prevent the PP film 2 from suffering thermal deformation when a functional substance superposed in a thin film form on the other surface of the PP film 2 is heated to 100-130 C. in order to finally convert the functional substance into a functional-substance thin film material 4.
Compliant joint drive assembly
A method of forming a dielectric barrier and torque transfer member between a drive shaft and a driven shaft of a torque transfer assembly. The method includes assembling the drive shaft and the driven shaft in axially adjacent relationship to one another, the drive shaft and the driven shaft each having a recess formed therein such that when the shafts are assembled, the recesses cooperate to define a chamber extending across the interface between the drive and driven shaft and into the interior of both the drive and the driven shaft. The method further includes injecting a dielectric adhesive or resin material into the chamber to fill the chamber and to extend across the interface between the drive and the driven shaft, and curing the dielectric material to form a dielectric barrier between and to provide torque transfer between the drive and the driven shaft.
Dedicated seam tape and dedicated accessory fabric for inflatable devices
Air- or gas-holding fabrics and improvements to welded seam tapes used to join multiple fabric panels and/or to join accessories to one or more fabric panels. Specifically disclosed is a joining system and method for securing air- or gas-holding panels to one another and/or to joining accessories to one or more panels without causing damage due to overheating the seam area. This disclosure has been found particularly useful with improved lightweight fabrics that would otherwise be more susceptible to damage during welding processes. The disclosed seam tapes and accessory fabrics find particular use in connection with inflatable devices, but may be used in other applications. This disclosure relates to a dedicated seam tape or dedicated accessory fabric that (a) utilizes specialized coatings with a lower melt temperature compared to coatings that are used on inflatable fabric material and/or (b) is manufactured from material that has not been treated to have substantial reflective properties.
Electronic device having enclosed window and method for manufacturing the same
A method for manufacturing an electronic device and the electronic device therefor are provided. The electronic device includes a substantially enclosed window including a front surface, a rear surface and a side surface surrounding at least a portion of a space between the front surface and the rear surface, a display disposed inside the window, and a display bracket, to which the display is coupled and disposed inside the window. The display is coupled to the window by curing a bonding member inserted between the window and the display.
Polylactic acid adhesive compositions and methods for their preparation and use
New adhesives and methods for preparing them are disclosed that include polylactic acid irradiated with gamma radiation, such as by a Co.sup.60 source. Irradiation times are used that improve the characteristics of the adhesive materials. Generally, the dose of radiation is from about 5 kGy to about 200 kGy of gamma irradiation. The adhesives generally have melting temperatures in the range of at least about 140 to about 148 C. such that they can be conveniently used in conventional glue guns and other glue equipment. The disclosed adhesives can provide bond strengths in the range of about 1,600 psi or more to about 2,500 psi or more. The disclosed adhesives can include a crosslinking agents. They can be used to join a wide range of substrates including wood, metal, plastic, ceramic, glass or combinations of substrates. They can be conveniently prepared by heating a polylactic acid (polylactic acid) preparation and mixing the molten polylactic acid with one or more crosslinkers when present. The molten mixture can then be and the polylactic acid can be irradiated with the desired dose of gamma radiation. Irradiation can occur before during or after mixing with the crosslinking agent and before or after shaping into the desired shape or even after use to join substrates. The adhesives can be used to join substrates by any known method once heated to a molten state.
Hybrid reinforcement structure
A structural reinforcement for insertion into a cavity of a vehicle structure including a base reinforcing portion, an expandable material and a localized reinforcement is disclosed. The localized reinforcement is placed within the structural reinforcement at a location of anticipated increased deformation during vehicle impact in an effort to reduce deformation and control the load distribution post-impact.
LAYERED BODY AND METHOD FOR MANUFACTURING ELECTRONIC COMPONENT
Provided is a laminate having a gel layer on a substrate able to protect the substrate during various types of processing used in industrial production steps prior to curing. The gel layer has excellent heat resistance, softness and flexibility, a low modulus of elasticity, low stress, excellent stress buffering properties, and electronic component retention properties. The gel layer has higher shape retention before curing but changing after curing into a hard layer having excellent release properties. The laminate is easily and readily releasable from the substrate even when the cured layer is localized. Applications thereof are also provided (such as an electronic component manufacturing method). The laminate comprises a laminated reaction-curable silicone gel and a sheet-like member laminated via an adhesive layer on top of the reaction-curable silicone gel.
Laser weld coaxial connector and interconnection method
A coaxial connector, the coaxial connector interconnectable with a coaxial cable by a process including providing a connector body with a bore; inserting a leading end of the coaxial cable into the bore from a cable end of the connector body, and laser welding between the outer conductor and the connector body from a connector end of the connector body.