Patent classifications
B29C41/42
RADIO-FREQUENCY MODULE WITH INTEGRATED CONFORMAL SHIELD ANTENNA
An antenna structure can include a printed circuit board module and a mold compound disposed on a side of the printed circuit board module. A planar antenna is defined by a conformal shield layer disposed on a first surface of the mold compound such that the mold compound is disposed between the printed circuit board module and the conformal shield layer. The thickness of the mold compound layer and the shape of the conformal shield layer can be varied to optimize a performance of the antenna.
LAMINATED FILMS AND METHODS OF MAKING AND USING SAME
An article comprises a laminate with a layer comprising a first latex composition containing a cross-linker component selected from sulfur, organic peroxide, vulcanizing activators, and vulcanizing accelerator; and a second layer comprising a second latex composition free of the cross-linker component. The laminate is formed by dipping a mold into the first latex composition then into the second latex composition forming a laminated film, then curing the laminated film by heating to a temperature between 90° C. to 140° C. Lastly, the laminated film is removed from the mold via inversion such that the second layer is inwards and the first layer is outwards.
LAMINATED FILMS AND METHODS OF MAKING AND USING SAME
An article comprises a laminate with a layer comprising a first latex composition containing a cross-linker component selected from sulfur, organic peroxide, vulcanizing activators, and vulcanizing accelerator; and a second layer comprising a second latex composition free of the cross-linker component. The laminate is formed by dipping a mold into the first latex composition then into the second latex composition forming a laminated film, then curing the laminated film by heating to a temperature between 90° C. to 140° C. Lastly, the laminated film is removed from the mold via inversion such that the second layer is inwards and the first layer is outwards.
GLOVE DEMOLDING MECHANISM, GLOVE COUNTING MACHINE AND GLOVE DEMOLDING METHOD
The application discloses a glove demolding mechanism, a glove counting machine and a glove demolding method. The glove demolding mechanism includes a glove demolding unit, a first induction device and a vertical power assembly, the glove demolding unit is fixed on the vertical power assembly, and the vertical power assembly is capable of driving the glove demolding unit to move vertically, the first induction device is arranged at a position away from rear ends of the glove demolding units for a set distance, and the glove demolding unit can move upwards to the appropriate position under the bottom of gloves to clamp the gloves driving by the vertical power assembly. When the glove demolding mechanism is used to separate the gloves from hand molds, the gloves can be more ordered.
GLOVE DEMOLDING MECHANISM, GLOVE COUNTING MACHINE AND GLOVE DEMOLDING METHOD
The application discloses a glove demolding mechanism, a glove counting machine and a glove demolding method. The glove demolding mechanism includes a glove demolding unit, a first induction device and a vertical power assembly, the glove demolding unit is fixed on the vertical power assembly, and the vertical power assembly is capable of driving the glove demolding unit to move vertically, the first induction device is arranged at a position away from rear ends of the glove demolding units for a set distance, and the glove demolding unit can move upwards to the appropriate position under the bottom of gloves to clamp the gloves driving by the vertical power assembly. When the glove demolding mechanism is used to separate the gloves from hand molds, the gloves can be more ordered.
HYALURONIC ACID-BASED DISSOLVING FILM, PRODUCTION METHOD THEREOF, AND RELEASE LINER USED FOR THE SAME (as amended)
The present invention relates to a hyaluronic acid-based dissolving film, a production method thereof, and a release liner used for the same, and more particularly to a method for producing a hyaluronic acid-based dissolving film that provides a hyaluronic acid-based dissolving film having high performance with high productivity through a continuous production process to allow mass production of the dissolving film, a hyaluronic acid-based dissolving film produced by the method, and a release liner suitable for the dissolving film.
Automated process for fabricating oral care implements
A system comprises a fully automated fabrication cell (20) for forming overmolded oral care implements. The cell (20) includes a cluster of process stations (21) including injection molding machines operable to first form oral care implement preforms and then overmold the preforms with an overlay to create fully formed oral care implement bodies. In one example, the overlay may be a flexible elastomeric or rubber material while the preform may comprise a more rigid plastic material. Transfer of the preforms and bodies between the process stations (21) is fully automated and performed by a computer-operated robot (40) having a jointed articulated arm. A grasping tool (60) disposed on an end of the arm (42) releasably engages and transports a plurality of preforms and/or bodies simultaneously. The tool provides two different methods for engaging and holding the toothbrush skeletons/bodies. A programmable controller (130) automatically controls the robotic arm (42)'s operation and movement.
TAPE-CASTING APPARATUSES FOR PREPARING CARBON NANOSTRUCTURE SHEETS AND CARBON NANOSTRUCTURE SHEETS PREPARED BY THE SAME
Apparatuses and methods for preparing carbon nanostructure sheets are provided. The apparatuses may include a casting body including a substrate configured to move along a first direction, a slurry reservoir configured to contain a slurry, a dispenser connected to the slurry reservoir and configured to dispense the slurry onto a surface of the substrate and a doctoring member that extends in a second direction traversing the first direction and that is positioned above the surface of the substrate. The slurry may include carbon nanostructures, and/or one or more functional materials. The doctoring member may be spaced apart from the surface of the substrate by a predetermined distance.
TAPE-CASTING APPARATUSES FOR PREPARING CARBON NANOSTRUCTURE SHEETS AND CARBON NANOSTRUCTURE SHEETS PREPARED BY THE SAME
Apparatuses and methods for preparing carbon nanostructure sheets are provided. The apparatuses may include a casting body including a substrate configured to move along a first direction, a slurry reservoir configured to contain a slurry, a dispenser connected to the slurry reservoir and configured to dispense the slurry onto a surface of the substrate and a doctoring member that extends in a second direction traversing the first direction and that is positioned above the surface of the substrate. The slurry may include carbon nanostructures, and/or one or more functional materials. The doctoring member may be spaced apart from the surface of the substrate by a predetermined distance.
Method and fixture for molding a tank with an embedded ring
A method of and fixture for molding a product with an embedded ring. A system for molding a ring into a product including a rotational molding mold with an opening formed in the rotational molding mold sized to fit a ring. A fixture is removably couplable to the ring, wherein the ring and the fixture when coupled are removably couplable in the opening. The fixture is removed from the ring after the ring is molded into a product. A method of manufacturing a product with an embedded ring includes: coupling a ring to a fixture; clamping the fixture and the ring in an opening in a mold top; clamping the mold top to a mold bottom; rotomolding a product; unclamping the fixture from the mold top; uncoupling the fixture from the ring; unclamping the mold top and the mold bottom; and removing the product from the mold.