Patents Examined by Benjamin A Schiffman
  • Patent number: 11141891
    Abstract: The present invention relates to a device (10) for the generation of a negative pressure for stabilizing a melt strip (200) in the area of a transport device (120) of a film machine (100) particularly with a production process of a plastic film (230) comprising: at least one main chamber (20) for generating a first negative pressure in a first influence area (310) at least one auxiliary chamber (30) for generating a second negative pressure in a second influence area (320), wherein the first influence area (310) is assignable to at least one main area (210) of the melt strip (200) and the second influence area (320) is assignable to at least one edge area (220) of the melt strip (200) adjacent to the main area (210), and wherein the first negative pressure differs from the second negative pressure in order to effect a stabilization of the melt strip (200).
    Type: Grant
    Filed: May 10, 2016
    Date of Patent: October 12, 2021
    Assignee: Windmöller & Hölscher KG
    Inventor: Torsten Schmitz
  • Patent number: 11135796
    Abstract: Presented are manufacturing systems, methods, and devices for forming footwear using scrap or waste plastic materials. A method for manufacturing an article of footwear, such as an athletic shoe, begins with receiving a batch of recycled plastic, which may include thermoplastic elastomers or ethylene-vinyl acetate, and grinding the batch of recycled plastic material. The ground recycled material is processed, for example, by adding a foaming agent that activates at elevated temperatures. The processed recycled material is placed into the internal cavity of a final mold that is shaped like a segment of the footwear, such as a unitary sole structure. To form the footwear segment, the processed recycled material is heated past the threshold activation temperature of the foaming agent such that the foaming agent causes the recycled material to expand and fill the internal cavity of the final mold. The formed footwear segment is then extracted from the mold.
    Type: Grant
    Filed: May 29, 2019
    Date of Patent: October 5, 2021
    Assignee: NIKE, Inc.
    Inventors: Bryan N. Farris, Noah Murphy-Reinhertz
  • Patent number: 11135773
    Abstract: An additive manufacturing apparatus includes a platform, a dispenser to deliver a plurality of successive layers of feed material on the platform, a light source to generate one or more light beams, a first galvo mirror scanner positioned to direct a first light beam onto a topmost layer of the plurality of successive layers, a second galvo mirror scanner positioned to direct a second light beam onto the topmost layer of the plurality of successive layers, and a controller configured to cause the first galvo mirror scanner to direct the first light beam to pre-heat or heat-treat an area of the topmost layer and to cause the second galvo mirror scanner to direct the second light beam to fuse the area of the topmost layer.
    Type: Grant
    Filed: May 29, 2018
    Date of Patent: October 5, 2021
    Assignee: Applied Materials, Inc.
    Inventors: David Masayuki Ishikawa, Paul J. Steffas, Ajey M. Joshi
  • Patent number: 11130260
    Abstract: The present invention relates to a system for casting a component by an adjustable molding box. A generating unit serves for generating a component model of the component to be molded, a transmitting unit serves for transmitting the component model via a data network to a determining unit, and the determining unit serves for determining a casting mold model based on the component model. The determining unit is configured such that adjustment data for adjusting the adjustable molding box based on the casting mold model are generatable. A control unit is coupled to the determining unit such that the adjustment data are providable to the control unit, wherein the control unit is configured such that the control unit adjusts the molding box, based on the adjustment data, with a casting mold, which is indicative for a negative profile of the component, and the component is castable by the adjusted molding box.
    Type: Grant
    Filed: April 28, 2016
    Date of Patent: September 28, 2021
    Assignee: Cubes GmbH
    Inventors: Edwin Meindl, Christian Falch
  • Patent number: 11130296
    Abstract: A method of forming a polyolefin-perovskite nanomaterial composite which contains oriented electrically and thermally conductive pathways. The method involves milling a polyolefin with particles of a perovskite nanomaterial, molding to forma composite plate, and subjecting the composite plate to an AC voltage. The AC voltage forms oriented electrically and thermally conductive pathways by partial dielectric breakdown of the composite. The presence of the oriented electrically and thermally conductive pathways gives the polyolefin-perovskite nanomaterial electrical and thermal conductivity and dielectric permittivity higher than the polyolefin alone.
    Type: Grant
    Filed: March 24, 2020
    Date of Patent: September 28, 2021
    Assignee: Prince Mohammad Bin Fahd University
    Inventor: Bouchaib Zazoum
  • Patent number: 11124899
    Abstract: The present disclosure discloses a method for preparing cellulose fiber. The method includes the following steps: 1) mixing cellulose pulp with NMMO aqueous solution of a mass concentration of 60%-85%, preferably 70% to 76%, to obtain a uniform mixture; 2) subjecting the obtained uniform mixture to dewatering for swelling, dissolution, and deaerating to obtain a cellulose spinning stock solution; 3) the cellulose spinning stock solution entering into a spinning machine after being filtered and heat exchange, and entering into a coagulation system after carrying out extruding by a spinneret-pack and cooling by air, and then coagulating in a NMMO coagulating bath of a mass concentration of 50% to 72% to obtain nascent fiber; and 4) subjecting the nascent fiber to rinsing to obtain a fiber filament bundle, and then, performing subsequent-section treatment to obtain cellulose fiber.
    Type: Grant
    Filed: December 27, 2016
    Date of Patent: September 21, 2021
    Inventors: Yushan Sun, Ting Li, Chunzu Cheng, Libing Ding, Jian Cai, Qiang Luo, Yunan Zhou, Dong Zhang, Jigang Xu
  • Patent number: 11117313
    Abstract: An additive manufacturing apparatus includes a first vertically-extending support leg, a second vertically-extending support leg, and a gantry supported on the first and second support legs. The additive manufacturing apparatus also includes a work table movably supported beneath the gantry, a print head supported on the gantry, and a trim head supported on the gantry with the print head.
    Type: Grant
    Filed: September 15, 2020
    Date of Patent: September 14, 2021
    Assignee: Thermwood Corporation
    Inventors: Kenneth J. Susnjara, Brian S. Smiddy, John Fuquay
  • Patent number: 11110644
    Abstract: Method of manufacturing containers by blow-molding in a mold starting from a plastic blank, involving, when manufacturing a container: —a step of introducing a blank into a mold; —at least a step of placing the inside of the blank in communication with at least one fluid circuit by an solenoid valve associated with the circuit; —at a predetermined moment, referred to as the solenoid valve opening pulse (TEV1; . . . ; TEV4), sending a command to open to the solenoid valve which has a theoretical opening delay (Dt1; . . . ; Dt4), the method including steps involving: —calculating the actual opening delay (De1; . . . ; De4) of the solenoid valve; —calculating a difference (?t1; . . . ; ?t4) between the actual opening delay (De1; . . . ; De4) and the theoretical opening delay (Dt1; . . . ; Dt4); and—if the calculated difference is greater than a maximum permissible difference, emitting notification that a maximum permissible difference has been exceed.
    Type: Grant
    Filed: January 23, 2015
    Date of Patent: September 7, 2021
    Assignee: SIDEL PARTICIPATIONS
    Inventor: Julien Gendre
  • Patent number: 11104043
    Abstract: A thermal extrusion method to fabricate large-dimension superhydrophobic cylinder pillar arrays with droplet pancake bouncing phenomenon. Preparing thermal extrusion mold: the through-hole arrays with 0.8˜1.25 mm diameter, 0.25 mm interval space and 0.6˜1.0 mm height are first obtained on metals, and are then polished, rinsed and dried. Thermal extrusion: polymer materials are first thermally extruded on the obtained mold and cooled to room temperature. Demold: excess polymer materials flowing from the through hole are cut off and then the polymer cylinder pillar arrays are lifted off from the mold. Superhydrophobic treatment: the whole polymer sample is treated using mixed liquid spray consisting of titanium oxide nanoparticles dispersed in fluoroalkylsilane ethanol solution, and the superhydrophobic cylinder pillar arrays are obtained.
    Type: Grant
    Filed: August 28, 2017
    Date of Patent: August 31, 2021
    Assignee: DALIAN UNIVERSITY OF TECHNOLOGY
    Inventors: Jinlong Song, Liu Huang, Changlin Zhao, Mingqian Gao, Xin Liu
  • Patent number: 11098490
    Abstract: A forming system includes a frame and two forming walls. The two forming walls are positioned at a distance from each other to define a first vertical wall course. One forming wall is supported by the frame such that the one forming wall can be translated toward or away from the respective other forming wall. The frame can be raised to raise the two forming walls to be positioned to pour a second vertical course on top of the first vertical course. The translation of the one forming wall allows for the pouring of the first vertical course with horizontally extending rebar that extends through the one forming wall outside of the first vertical wall course, to tie in to a subsequently poured floor slab. The translation permits the vertical raising of the one forming wall, without striking the extending rebar, to pour the second vertical course on the first vertical course. A worker's platform is provided that is supported by the frame and vertically movable by raising the frame.
    Type: Grant
    Filed: May 17, 2017
    Date of Patent: August 24, 2021
    Assignee: Forming Concepts, Inc.
    Inventor: Norton Baum
  • Patent number: 11094894
    Abstract: The present disclosure provides a display motherboard and a method for manufacturing the same, a display substrate and a method for manufacturing the same, and a display device, and belongs to the field of display technology. In the method for manufacturing the display motherboard of the present disclosure, the display motherboard includes a plurality of display substrate areas each including a sub display area and a sub bending area; and the method for manufacturing the display motherboard includes: forming an adhesive force variable back film material having a first adhesive force on a flexible underlying substrate; removing the back film material in positions above the sub bending areas; and treating the remaining back film material to form a back film having a second adhesive force, wherein the second adhesive force is greater than the first adhesive force.
    Type: Grant
    Filed: December 7, 2018
    Date of Patent: August 17, 2021
    Assignee: BOE TECHNOLOGY GROUP CO., LTD.
    Inventors: Chunyan Xie, Paoming Tsai, Song Zhang
  • Patent number: 11092589
    Abstract: A method of forming a nanopore in a lipid bilayer is disclosed. A nanopore forming solution is deposited over a lipid bilayer. The nanopore forming solution has a concentration level and a corresponding activity level of pore molecules such that nanopores are substantially not formed un-stimulated in the lipid bilayer. Formation of a nanopore in the lipid bilayer is initiated by applying an agitation stimulus level to the lipid bilayer. In some embodiments, the concentration level and the corresponding activity level of pore molecules are at levels such that less than 30 percent of a plurality of available lipid bilayers have nanopores formed un-stimulated therein.
    Type: Grant
    Filed: July 18, 2019
    Date of Patent: August 17, 2021
    Assignee: Roche Sequencing Solutions, Inc.
    Inventors: Roger J. A. Chen, Randall Davis
  • Patent number: 11090859
    Abstract: A method of forming a three-dimensional object is carried out by: (a) providing a cyanate ester dual cure resin; (b) forming a three-dimensional intermediate from said resin, where said intermediate has the shape of, or a shape to be imparted to, said three-dimensional object, and where said resin is solidified by exposure to light; (c) optionally washing the three-dimensional intermediate, and then (d) heating and/or microwave irradiating said three-dimensional intermediate sufficiently to further cure said resin and form said three-dimensional object. Compositions useful for carrying out the method, and products made from the method, are also described.
    Type: Grant
    Filed: September 20, 2019
    Date of Patent: August 17, 2021
    Assignee: Carbon, Inc.
    Inventors: Matthew S. Menyo, Jason P. Rolland
  • Patent number: 11084197
    Abstract: A device for producing components using an injection molding method includes at least one cavity (1a) for forming a respective product, at least one injection nozzle (3a) through which material is injected into the cavity (1a), a mold release (4), a distribution channel (10), a media supply (11), an exhaust air channel or return channel (12), at least one shut-off needle (6a). The shut-off needle is connected to a piston in a force-fitting or form-fitting manner and is inserted into the injection nozzle (3a). At least one valve (7a) for opening the needle (6a) and at least one valve (8a) for closing the needle (6a) are provided, such that the valve (7a) and the valve (8a) are arranged directly adjacent to the shut-off needle (6a). A control unit for the valve (7a) and the valve (8a) is also provided.
    Type: Grant
    Filed: July 11, 2017
    Date of Patent: August 10, 2021
    Assignee: NEXUS ELASTOMER SYSTEMS GMBH
    Inventors: Dietmar Waizenauer, Bernhard Waizenauer
  • Patent number: 11084191
    Abstract: A method of manufacturing a wood-based board. The method includes applying at least one first fibre mat including a first mix comprising lignocellulosic particles and a binder on a carrier, applying a second fibre mat including a second mix including cellulosic particles and a binder on said at least one first fibre mat, and pressing said at least one first fibre mat into a base layer and the second fibre mat into a surface layer simultaneously, thereby forming a wood-based board. Also, to such a wood-based board.
    Type: Grant
    Filed: January 15, 2020
    Date of Patent: August 10, 2021
    Assignee: VALINGE INNOVATION AB
    Inventors: Georg Vetter, Niclas Håkansson, Marcus Bergelin, Hans Persson
  • Patent number: 11077654
    Abstract: A system is provided. The system includes a 3D printer, which includes a first dispenser and a second dispenser. The first dispenser is configured to apply conductive material to a surface, and the second dispenser is configured to apply conductive diamonds to a surface. The conductive material includes a mixture of an elastomer and at least one of nickel and silver, and the conductive diamonds are between 1 and 10 microns in size.
    Type: Grant
    Filed: April 9, 2020
    Date of Patent: August 3, 2021
    Assignee: Global Circuit Innovations Incorporated
    Inventor: Erick Merle Spory
  • Patent number: 11077603
    Abstract: A process for manufacturing a container with a closure-release mechanism relates to thermoforming a plastic sheet to form a container with a clam shell locking system in order to facilitate a secure closure and easy opening packaging container. The clam shell locking arrangement comprises a post which is secured in an aperture when the container is in closed state. The post is a projection or protrusion in a vertical or nearly vertical sidewall of the cover of the thermoformed package and fits securely into the aperture, which is a cut-out made in the outer, and optionally also the inner, wall segments of the vertical or nearly vertical surfaces of the base section of the thermoplastic containers.
    Type: Grant
    Filed: March 23, 2020
    Date of Patent: August 3, 2021
    Inventors: Jay Baker, Jessup Baker
  • Patent number: 11072106
    Abstract: An apparatus for shaping plastic preforms into plastic containers is disclosed. Said apparatus comprises a conveying device on which a plurality of blowing stations are arranged. Each of said blowing stations encompasses a blow mold, within which a plastic preform can be shaped into a plastic container. The apparatus further comprises a clean chamber, within which the plastic preforms can be conveyed. According to the invention, the zone of the conveying device in which the blowing stations are arranged is located in the clean chamber, and at least one additional zone of the conveying device is located outside the clean chamber.
    Type: Grant
    Filed: September 13, 2018
    Date of Patent: July 27, 2021
    Assignee: KRONES AG
    Inventors: Oliver Martini, Michael Dahmen, Patrick Engelhard
  • Patent number: 11072159
    Abstract: Systems and methods for manufacturing eyelash prostheses are described.
    Type: Grant
    Filed: March 13, 2020
    Date of Patent: July 27, 2021
    Assignee: L'Oreal
    Inventors: Zane Bowman Allen Miller, Mikhail Motornov, Christopher Pang, Kelly Marie George, Nadin Ahmed Gomez
  • Patent number: 11052647
    Abstract: In an embodiment, a system includes a three-dimensional (3D) printer, a neutral feedstock, a p-doped feedstock, an n-doped feedstock, and a laser. The 3D printer includes a platen and an enclosure. The platen includes an inert metal. The enclosure includes an inert atmosphere. The neutral feedstock is configured to be deposited onto the platen. The neutral feedstock includes a halogenated solution and a nanoparticle having a negative electron affinity. The p-doped feedstock is configured to be deposited onto the platen. The p-doped feedstock includes a boronated compound introduced to the neutral feedstock. The n-doped feedstock is configured to be deposited onto the platen. The n-doped feedstock includes a phosphorous compound introduced to the neutral feedstock. The laser is configured to induce the nanoparticle to emit solvated electrons into the halogenated solution to form, by reduction, layers of a ceramic comprising a neutral layer, a p-doped layer, and an n-doped layer.
    Type: Grant
    Filed: May 10, 2018
    Date of Patent: July 6, 2021
    Assignee: Lockheed Martin Corporation
    Inventor: David Glen Findley