Patent classifications
B29C2045/0079
Method and device for manufacturing microneedle having coating part on tip thereof
The present disclosure relates to a method for manufacturing a microneedle containing a coating part on a needle tip and an apparatus used for the method. When a microneedle is manufactured using the coating method and apparatus according to the present disclosure, a coating part in which a target material is impregnated can be easily inserted into skin and effective dissolution is possible. Further, the target material is allowed to show excellent skin permeability with the dissolution of the coating part of the microneedle manufactured according to the present disclosure, thereby a quantitative amount of target material can be effectively delivered into the skin.
SYMBOL BUTTON FOR VEHICLE AND MANUFACTURING METHOD THEREOF
A manufacturing method of a symbol button for a vehicle includes: preparing a button body comprising a side portion, a top portion formed of a polymer material on which a metal is able to be plated; forming an electrically conductive layer on an outside of the button body using a conductive polymer material; forming a plating shielding layer in a form of a symbol using a material on which a metal is not able to be plated on the electrically conductive layer; and performing metal plating on the outside of the button body having the plating shielding layer.
Component with integrated sensor chip
A vehicle trim assembly includes a first trim component having an interior facing surface and an exterior facing surface, the first trim component including an extended portion, a second trim component including an edge defining a groove configured to engage with the extended portion of the first trim component, and a single chip sensor overmolded with the second trim component such that the single chip sensor is integrated into the second trim component. The single chip sensor is formed with the second trim component in a multi-shot injection molding process.
Two-component coating compositions for coating fiber-reinforced plastics materials
The present disclosure relates to two-component coating material compositions including a paint base component A and a curing component B. The paint base component A includes one or more polyols A1 selected from the group of polyols containing ester groups and which possess a hydroxyl number of 300 to 500 mg KOH/g and have a hydroxyl group functionality of greater than 2. The curing component B includes one or more polyisocyanates B1 having on average 2.4 to 5 NCO groups. The two-component coating material composition possesses a solids content of at least 96 wt %, and the molar ratio of the NCO groups in the curing component B to the acidic hydrogen atoms in the paint base component A is from 1:1.15 to 1:0.95. The disclosure further relates to a method for coating fiber-reinforced plastics and to a method for producing coated fiber-reinforced plastics, and to coating fiber-reinforced plastics.
COVERS FOR ELECTRONIC DEVICES
The present disclosure is drawn to covers for electronic devices, methods of making the covers, and electronic devices. In one example, described herein is a cover for an electronic device comprising: a substrate comprising a metal; insert molded plastic on at least one surface of the substrate; a passivation layer or a micro-arc oxidation layer applied on at least one surface of the substrate; a coating composition on the passivation layer or the micro-arc oxidation layer; an outmoid decoration layer on the mating composition; a chamfered edge on the substrate, wherein the chamfered edge cuts through the outmoid decoration layer, the coating composition, the passivation layer or the micro-arc oxidation layer, and partially through the substrate; and wherein the chamfered edge comprises; a transparent passivation layer, then an optional sealing layer, and then a transparent or color electrophoretic deposition coating layer.
COATINGS FROM POLYISOCYANURATE COATINGS (RIM) AND THEIR USE IN INJECTION MOLDING PROCESSES
The present invention relates to the use of polyisocyanate compositions and trimerization catalysts for production of coatings by reaction injection molding, to the coatings obtained by the use and to correspondingly coated workpieces.
TRANSPARENT BEVERAGE CONTAINER INSULATOR
The present disclosure relates to a durable beverage container insulator that may enhance the consumer's enjoyment of the beverage by a combination of visual and tactile enhancements to the beverage container. For example, the insulator may be composed of a transparent material that enables the consumer to see the label and type of beverage being consumed. The insulator may be sufficiently firm to ensure durability over multiple uses, and/or sufficiently pliable to enable users to deform the insulator and enjoy a “cushy” feeling while holding the insulator. In some embodiments, the insulator is configured to enhance ease and/or enjoyment of sliding a beverage container in and out of the insulator. For example, in some embodiments, an aperture disposed on a base of the beverage container may generate a whistling sound as the beverage container is inserted in and/or pulled out of the insulator.
INJECTION MOLDED CARBON FIBER WEAVE TEXTURE AND METHOD OF APPLYING SAME
A simulated carbon fiber weave texture for use on component parts for automobiles and other vehicles and a method of applying same are provided. The component part can be prepared using plastic injection molded methods for varying types of plastic resins and applying different surface finishing processes, and a combination of texture etching practices can be used on the injection mold tool steel to simulate conventional carbon fiber appearance.
Decorative film and method for producing decorative molded body using same
This decorative film is to be bonded to a resin molded body by means of thermoforming, and comprises a sealing layer (I) that contains a polypropylene resin (A) and a layer (II) that contains a polypropylene resin (B). The polypropylene resin (A) satisfies the requirement (a1), while the polypropylene resin (B) satisfies the requirement (b1). (a1) The melt flow rate (MFR (A)) (at 230° C. under a load of 2.16 kg) is more than 0.5 g/10 minutes. (b1) The melt flow rate (MFR (B)) (at 230° C. under a load of 2.16 kg) and the MFR (A) satisfy relational expression (b-1). MFR (B)<MFR (A) (b-1).
COVER ELEMENT FOR SENSORS AND METHOD FOR PRODUCING THE COVER ELEMENT
The invention relates to a cover element having a housing of a film that is formed and moulded between a front plate and a carrier plate and is used to represent multidimensional structures, the carrier plate being connected on the rear side to a heating plate, characterized in that the housing consists of an annular housing base and an annular housing front, and a circuit-board ring having LEDs and plugs is installed in the housing base.