Patents Examined by Benjamin Schiffman
  • Patent number: 11306422
    Abstract: A system for making a nonwoven nonwoven spun-bond or melt-blown fabric has a spinneret for spinning fibers or filaments, a cooler downstream of the spinneret for cooling the spun fibers or filaments, a stretcher downstream of the cooler for stretching the cooled fibers or filaments, and a conveyor downstream of the stretcher. The stretched and cooled fibers or filaments are deposited as a nonwoven web on the conveyor. Sensors measure input parameters at the spinneret, at the cooler, at the stretcher, and/or at at least one diffuser or at the conveyor. An evaluating unit for determining an output parameter from the measured input parameter with respect to a predetermined reference parameter.
    Type: Grant
    Filed: October 16, 2017
    Date of Patent: April 19, 2022
    Assignee: REIFENHAEUSER GMBH & CO KG MASCHINENFABRIK
    Inventors: Jens Mager, Andreas Roesner, Christian Stelter, Asmir Vodencarevic, Thomas Fett, Mark Hilgers, Christoph Lettowsky
  • Patent number: 11298873
    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: August 16, 2021
    Date of Patent: April 12, 2022
    Assignee: Thermwood Corporation
    Inventors: Kenneth J. Susnjara, Brian S. Smiddy, John Fuquay
  • Patent number: 11298862
    Abstract: An example mold assembly includes a first core, a second core, and a retaining cap. The first core defines an insert seat configured to receive a mold insert. The first core and the second core are configured to define a mold volume adjacent the mold insert. The retaining cap is disposed about a curved end portion defined by the second core, and defines a curved cap surface in contact with the curved end portion. The retaining cap is configured to secure the second core at a predetermined orientation relative to the first core within predetermined tolerances. An example technique includes positioning a mold insert in the mold assembly, disposing the retaining cap about the second core, securing the second core at a predetermined orientation relative to the first core within predetermined tolerances, and depositing mold material within the mold volume.
    Type: Grant
    Filed: March 21, 2018
    Date of Patent: April 12, 2022
    Assignee: MEDTRONIC, INC.
    Inventors: Curtis L. Jones, David A. Bates
  • Patent number: 11292218
    Abstract: The invention relates to a method for producing a tread (20), comprising the steps: extruding the tread (20), which has an outer side (22) and an inner side (24), opposite the outer side (22), and a carrying region (26) made of a carrying region rubber material and a guide strip (28) made of a guide strip rubber material, wherein the guide strip (28) extends from the outside (22) to the inside (24) and a specific electrical guide strip resistance (W28) of the guide strip rubber material is smaller than a specific electrical carrying region resistance of the carrying region rubber material. The steps according to the invention are: determining an electrical guide strip resistance (W28) of the guide strip (28) between the outer side (22) and the inner side (24) and outputting a warning signal when the electrical resistance (W) exceeds a specified maximum resistance (W28,max).
    Type: Grant
    Filed: November 8, 2017
    Date of Patent: April 5, 2022
    Assignee: KRAUSSMAFFEI BERSTORFF GMBH
    Inventors: Marko Rupprecht, Jörg Reinefahl
  • Patent number: 11279103
    Abstract: The invention provides a method producing contact lenses, including the step of: holding the molded silicone hydrogel contact lens attached to the one of the female mold half or the male mold half with a vacuum supplied with a suction cup; deforming a surface of the one of the female mold half or the male mold half having the molded silicone hydrogel contact lens attached to with a pin so as to separate the molded silicone hydrogel contact lens from the mold half attached to and to transfer the molded silicone hydrogel contact lens to the suction cup; moving the suction cup away from the pin while the suction cup continues to hold the molded silicone hydrogel contact lens remains; applying a compressed gas to blow the molded silicone hydrogel contact lens away from the suction cup into a container.
    Type: Grant
    Filed: October 12, 2017
    Date of Patent: March 22, 2022
    Assignee: Alcon Inc.
    Inventors: Daryl Reece, Uwe Haken, Delores Davis
  • Patent number: 11279069
    Abstract: The manufacturing method of a motor core includes attaching an ID code to a stack of blanked members in which a magnet insertion hole to fill with a resin material is formed, the ID code containing information in accordance with a type of the stack, reading the information from the ID code which is attached to the stack, and setting a mold condition based on the information read from the ID code. The mold condition includes at least one type of condition including: the resin material to be injected to the magnet insertion hole, an injection amount of the resin material, and a discharge position of the resin material. A mold device is controlled to inject the resin material to the magnet insertion hole in accordance with the mold condition.
    Type: Grant
    Filed: September 14, 2018
    Date of Patent: March 22, 2022
    Inventors: Hisatomo Ishimatsu, Shuhei Kotani, Hirotoshi Mabu, Tomoyoshi Ichimaru
  • Patent number: 11273608
    Abstract: A multi-material three-dimensional printing apparatus is provided. The provided apparatus includes two or more print stations. Each of the print stations includes a substrate, a transportation device, a dispersion device, a compaction device, a printing device, a fixing device, and a fluidized materials removal device. The apparatus also includes an assembly apparatus in communication with the two or more print stations via the transportation device. The apparatus also includes one or more transfer devices in communication with the assembly apparatus. The apparatus also includes a computing and controlling device configured to control the operations of the two or more print stations, the assembly apparatus and the one or more transfer devices.
    Type: Grant
    Filed: October 22, 2018
    Date of Patent: March 15, 2022
    Assignee: Sakuu Corporation
    Inventors: Philip Eugene Rogren, Morteza Vatani
  • Patent number: 11267190
    Abstract: The method for producing a skin material includes heat-pressing a raw material using an embossing die to obtain a skin material having a concave part formed on a front surface side and a flat back surface. The raw material is heat-pressed between the embossing die and an elastic mat to form, as the concave part, at least one of a plurality of concave parts for intensity display having different depths of a bottom and a concave part for gradation display in which the depth of the bottom gradually changes.
    Type: Grant
    Filed: July 24, 2019
    Date of Patent: March 8, 2022
    Assignee: TOYOTA BOSHOKU KABUSHIKI KAISHA
    Inventors: Ryo Yamane, Yoshiaki Toumasu
  • Patent number: 11254566
    Abstract: A preparation method of a bionic adhesive material with a tip-expanded microstructural array includes the following steps: machining through-holes on a metal sheet; modifying morphology of a through-hole by electroplating, using the metal sheet in step 1 as an electroplating cathode, and arranging the electroplating cathode and an electroplating anode in parallel to prepare a hyperboloid-like through-hole array assembly, fitting a lower surface of the hyperboloid-like through-hole array assembly tightly to an upper surface of a substrate assembly to prepare a through-hole assembly of a mold; and filling the mold assembly with a polymer, curing, and demolding to obtain the adhesive material with the tip-expanded microstructural array.
    Type: Grant
    Filed: June 11, 2020
    Date of Patent: February 22, 2022
    Assignees: NANJING UNIVERSITY OF AERONAUTICS AND ASTRONAUTICS, NANJING LI-HANG INDUSTRY INSTITUTE OF BIONIC TECHNOLOGY LIMITED COMPANY
    Inventors: Zhendong Dai, Keju Ji, Enhua Cui, Jian Chen, Cong Yuan, Yiqiang Tang
  • Patent number: 11254074
    Abstract: A die assembly for forming a composite gap filler, including a first die having a first portion which extends along a first central axis of the first die and has a first curved surface which has a radius which changes as the first curved surface extends about the first central axis. A second die a second portion which extends along a second central axis of the second die and has a second curved surface which has a radius which changes as the second curved surface extends about the second central axis. A third die defines a third wall member which extends about the third die and which changes in width dimension wherein with the first die abutting the second die and with the third wall member abutting the first and second dies, a closed gap is formed.
    Type: Grant
    Filed: June 19, 2019
    Date of Patent: February 22, 2022
    Assignee: THE BOEING COMPANY
    Inventors: Paul Reed Stone, Cody S. Conant
  • Patent number: 11230043
    Abstract: A system for setting injection-molding conditions and a method for setting actual molding conditions of an injection-molding machine are disclosed. The system includes a computer and an injection-molding equipment. The computer is configured to simulate, via computer-aided simulation software, a virtual molding using a plurality of design parameters to generate a plurality of provisional molding conditions. The injection-molding equipment is associated with the computer and configured to perform at least one trial molding using the provisional molding conditions to obtain a plurality of intermediate molding conditions. The computer optimizes the provisional molding conditions to obtain actual molding conditions in accordance with the intermediate molding conditions.
    Type: Grant
    Filed: June 4, 2020
    Date of Patent: January 25, 2022
    Assignee: CORETECH SYSTEM CO., LTD.
    Inventors: Rong-Yeu Chang, Chia-Hsiang Hsu, Chuan-Wei Chang
  • Patent number: 11225005
    Abstract: A system for setting injection-molding conditions and a method for setting actual molding conditions of an injection-molding machine are disclosed. The system includes a computer and an injection-molding equipment. The computer is configured to simulate, via computer-aided simulation software, a virtual molding using a plurality of design parameters to generate a plurality of provisional molding conditions. The injection-molding equipment is associated with the computer and configured to perform at least one trial molding using the provisional molding conditions to obtain a plurality of intermediate molding conditions. The computer optimizes the provisional molding conditions to obtain actual molding conditions in accordance with the intermediate molding conditions.
    Type: Grant
    Filed: June 24, 2020
    Date of Patent: January 18, 2022
    Assignee: CORETECH SYSTEM CO., LTD.
    Inventors: Rong-Yeu Chang, Chia-Hsiang Hsu, Chuan-Wei Chang
  • Patent number: 11220047
    Abstract: To efficiently and appropriately shape a 3D object. There is provided a shaping device that shapes a three-dimensional (3D) object through a layering shaping method, the shaping device including an inkjet head, which is a discharging head, that discharges a material liquid droplet, a liquid droplet of a material for the 3D object; and a circling driving section that relatively circles at least a region to be discharged, which is a region to which the material liquid droplet is discharged in the 3D object being shaped, along a circling path set in advance with respect to the inkjet head; where the circling driving section causes the region to be discharged to circle the circling path plural times; and inkjet head discharges the material liquid droplet onto the region to be discharged circling on the circling path.
    Type: Grant
    Filed: June 2, 2017
    Date of Patent: January 11, 2022
    Assignee: MIMAKI ENGINEERING CO., LTD.
    Inventors: Eiichi Ohara, Akira Takeuchi
  • Patent number: 11203141
    Abstract: A single-cavity multi-runner applied to oriented arrangement extrusion molding equipment of graphene fibers includes a first extrusion cavity, the first extrusion cavity includes a first inlet and a first outlet arranged opposite to each other; a first molding cavity, the first molding cavity is arranged in an inclined manner, a second inlet is arranged at the high position end, a second outlet is arranged at the low position end of the first molding cavity, and the second inlet is connected to the first outlet; flow channels, the flow channels are formed by dividing the first molding cavity using baffle plates arranged horizontally and along the flowing direction of a heat-conducting mixture; a second molding cavity, the second molding cavity includes a third inlet and a third outlet arranged opposite to each other, the third inlet is connected to the outflow end of the flow channels.
    Type: Grant
    Filed: March 10, 2020
    Date of Patent: December 21, 2021
    Assignees: Suzhou Kanronics Electronic Technology CO., LTD., Shenzhen HanHua TM Technology Co., LTD.
    Inventors: Mars Guo, Daniel Huang, Wenbin Chen, William Yang
  • Patent number: 11192293
    Abstract: A process is described for producing a three dimensional structure, the process including the following steps a) applying of at least a first material M1 onto a substrate to build a first layer L1 on the substrate; b) layering of at least one further layer Ly of the first material M1 or of a further material Mx onto the first layer L1, wherein the at least one further layer Ly covers the first layer L1 and/or previous layer Ly-1 at least partially to build a precursor of the three dimensional structure; c) curing the precursor to achieve the three dimensional structure; wherein at least one of the materials M1 or Mx provides a Mooney viscosity of >10 ME at 60° C. and of <200 ME at 100° C. before curing. Also, a three dimensional structure is described which is available according to the process according to the invention.
    Type: Grant
    Filed: July 7, 2017
    Date of Patent: December 7, 2021
    Assignee: Covestro Deutschland AG
    Inventors: Dirk Achten, Thomas Büsgen, Dirk Dijkstra, Roland Wagner
  • Patent number: 11186023
    Abstract: Disclosed is a method of adjusting a motion profile of a shooting pot plunger for use in a molding system, the shooting pot plunger slidably movable within a shooting pot cavity, the method comprising: sensing a characteristic at a predetermined location in an injection circuit of the molding system; determining that the sensed characteristic is outside of a threshold range; adjusting the motion profile of the shooting pot plunger to account for determining that the sensed characteristic is outside of the threshold range; and storing the adjusted motion profile in a memory.
    Type: Grant
    Filed: November 4, 2016
    Date of Patent: November 30, 2021
    Assignee: HUSKY INJECTION MOLDING SYSTEMS LTD.
    Inventors: Manon Danielle Belzile, Patrice Fabien Dezon-Gaillard, James Osborne Plumpton
  • Patent number: 11179908
    Abstract: Provided is a method of producing a glove, the method including: (1) the step of immersing a glove forming mold in a liquid coagulant containing calcium ions so as to allow the coagulant to adhere to the glove forming mold; (2) the step of adjusting the pH to be 9 or higher using an ammonium compound or an amine compound and leaving a glove emulsion composition to stand with stirring; (3) the dipping step of immersing the glove forming mold, to which the coagulant has thus adhered in the step (1), in the glove emulsion composition; (4) the gelling step of leaving the glove forming mold, to which the glove emulsion composition has thus adhered, to stand at a temperature for a period that satisfy specific conditions; (5) the leaching step of removing impurities from a cured film precursor thus formed on the glove forming mold; (6) the beading step of, after the leaching step, winding the cuff portion of the resulting glove; (7) the precuring step of heating and drying the cured film precursor that has been subj
    Type: Grant
    Filed: June 16, 2017
    Date of Patent: November 23, 2021
    Assignee: Midori Anzen Co., Ltd.
    Inventors: Norihide Enomoto, Taichi Ogawa, Kenichi Yanagisawa, Nobuyuki Matsumoto
  • Patent number: 11173550
    Abstract: According to one aspect, embodiments herein provide a method of reducing distortion in an additively manufactured part comprising forming a shrinking platform from a composite including metal particles embedded in a first matrix, forming shrinking supports from the composite, forming a part from the composite upon the shrinking platform and shrinking supports, forming an interior structure in at least one of the shrinking platform, the shrinking supports, and the part having a plurality of chambers with interconnections therebetween, forming from the shrinking platform, the sintering supports, and the part a portable assembly, and debinding the first matrix in the portable assembly to form a portable assembly in a brown state, wherein debinding the first matrix includes penetrating a fluid debinder into the interior structure of the at least one of the shrinking platform, the shrinking supports, and the part to debind the first matrix from within the interior structure.
    Type: Grant
    Filed: August 26, 2019
    Date of Patent: November 16, 2021
    Assignee: MARKFORGED, INC.
    Inventor: Gregory Thomas Mark
  • Patent number: 11173635
    Abstract: Fluid transfer assemblies for transferring fluid into or out of a single vessel and distributing the fluid to multiple other vessels are provided. The fluid transfer assemblies are customizable, substantially aseptic, and single-use. The fluid transfer assemblies may be manufactured by solidifying polymeric materials to form a body around a mandrel with protrusions engaged to fluid conduits and leaving recesses in the solidified polymeric material to stretch the resultant body and remove the mandrel with protrusions. The resultant fluid transfer assembly may be surrounded by a rigid housing and valves may be engaged with the conduits and/or body to control the fluid flow within the fluid transfer assembly.
    Type: Grant
    Filed: December 20, 2017
    Date of Patent: November 16, 2021
    Assignee: Sartorius Stedim North America Inc.
    Inventors: Michael A. Zumbrum, Charles Meadows, Kevin Perdue
  • Patent number: 11167518
    Abstract: A container that includes a microwave interactive web at least partially overlying and joined to a three-dimensional support, wherein the three-dimensional support may be formed prior to having the microwave interactive web mounted thereto. The three-dimensional support may be a preformed container that is sufficiently rigid and dimensionally stable for use in containing food.
    Type: Grant
    Filed: February 21, 2018
    Date of Patent: November 9, 2021
    Assignee: Graphic Packaging International, LLC
    Inventors: Brian R. O'Hagan, Laurence M. C. Lai, Joseph Walsh, William Cox, George Hackel, Neilson Zeng, Michael Shaw, Timothy Henry Bohrer