Patents by Inventor Hemant Bheda

Hemant Bheda has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 9895845
    Abstract: The present invention relates to a system and a method for optimizing printing parameters, such as slicing parameters and tool path instructions, for additive manufacturing. The present invention comprises a property analysis module that predicts and analyses properties of a filament object model, representing a constructed 3D object. The filament object model is generated based on the tool path instructions and user specified object properties. Analysis includes comparing the predicted filament object model properties with the user specified property requirements; and further modifying the printing parameters in order to meet the user specified property requirements.
    Type: Grant
    Filed: February 16, 2015
    Date of Patent: February 20, 2018
    Assignee: AREVO INC.
    Inventors: Hemant Bheda, Wiener Mondesir, Riley Reese, Shekar Mantha
  • Publication number: 20180043635
    Abstract: Methods and systems are disclosed for structurally analyzing and/or three-dimensional printing a part. The method may comprise receiving a model of the part for three-dimensional printing from a material comprising a matrix, receiving one or more properties for the material, and using the model, determining a print head tool path for use during the three-dimensional printing of the part. The method may also comprise determining a trajectory of at least one stiffness-contributing portion of the material based at least in part on the print head tool path, determining a performance of the part based at least in part on the one or more properties and the trajectory, and electronically outputting the performance of the part.
    Type: Application
    Filed: April 4, 2017
    Publication date: February 15, 2018
    Inventors: Chandrashekar Mantha, Peter Woytowitz, Wiener Mondesir, Hemant Bheda
  • Publication number: 20170274585
    Abstract: A method and apparatus for additive manufacturing wherein a fiber composite filament having an arbitrarily shaped cross section is softened and then flattened to tape-like form factor for incorporation into a part that is being additively manufactured.
    Type: Application
    Filed: March 28, 2017
    Publication date: September 28, 2017
    Applicant: Arevo, Inc.
    Inventors: Armando Armijo, Hemant Bheda, Chanrashekar Mantha, Wiener Mondesir, Sohil Nandu, Riley Reese
  • Publication number: 20170217106
    Abstract: An apparatus performing as a base for printing 3D objects using high temperature thermoplastics employing additive manufacturing methods is provided. The apparatus comprises a heated build platform, a thin removable plate secured on top of the build platform, a high temperature polymer coating applied over the removable plate, and surface treatment of high temperature polymer coating to maintain adhesion between 3D object and printing surface. Also, the removable plate has low coefficient of thermal expansion compared to build platform below it, for avoiding bowing of the plate as it is heated due to heated build platform, hence providing flat printing surface. The thin removable plate allows 3D objects to pop off the plate upon cooling, without damaging the polymer coating, the plate, or the object. It also allows for continuous operation of printing, while the plate is released for cooling, a new plate is installed for printing.
    Type: Application
    Filed: February 1, 2017
    Publication date: August 3, 2017
    Inventors: Riley Reese, Hemant Bheda
  • Publication number: 20170198104
    Abstract: A method for forming a blended material for use as a deposition material in a fused filament fabrication (FFF) printer is provided. A semi-crystalline material and an amorphous material are physically mixed at an appropriate ratio. The mixed material is then heated to a temperature that is above the melting point of the semi-crystalline material and above the glass transition temperature of the amorphous material to form a blended material. The blended material is then extruded through an extruder die for use in the FFF printer.
    Type: Application
    Filed: June 5, 2014
    Publication date: July 13, 2017
    Inventors: Hemant Bheda, Kunal Patel
  • Patent number: 9656429
    Abstract: Methods and systems are disclosed for structurally analyzing and/or three-dimensional printing a part. The method may comprise receiving a model of the part for three-dimensional printing from a material comprising a matrix, receiving one or more properties for the material, and using the model, determining a print head tool path for use during the three-dimensional printing of the part. The method may also comprise determining a trajectory of at least one stiffness-contributing portion of the material based at least in part on the print head tool path, determining a performance of the part based at least in part on the one or more properties and the trajectory, and electronically outputting the performance of the part.
    Type: Grant
    Filed: August 9, 2016
    Date of Patent: May 23, 2017
    Assignee: AREVO, INC.
    Inventors: Chandrashekar Mantha, Peter Woytowitz, Wiener Mondesir, Hemant Bheda
  • Publication number: 20170096576
    Abstract: A material for use in a fused filament fabrication (FFF) printer comprises a polyaryletherketone (PAEK) having an amorphous morphology. In some embodiments, the material also includes a PAEK having a semi-crystalline morphology.
    Type: Application
    Filed: October 5, 2015
    Publication date: April 6, 2017
    Inventors: Hemant Bheda, Riley Reese
  • Publication number: 20170087768
    Abstract: An apparatus for manufacturing an object includes an extrusion head having an extrusion needle for extruding thermoplastic material associated with one or more fiber strands. The apparatus may further include a turn-table, a more robotic arm for moving the extrusion head and needle, thermoplastic filament and fiber strand spools and thermoplastic filament and fiber strands. A controller is provided for directing the robotic arm, extrusion head and the turn-table. Further, a method for manufacturing an object includes generating a design for the object that substantially satisfies desired structural properties of the object and generating a sequence for extruding one or more beads of thermoplastic material to manufacture the object according to the design, in which the one or more beads of thermoplastic material are associated with one or more fiber strands. The one or more beads of thermoplastic material and the associated one or more fiber strands are then extruded according to the sequence.
    Type: Application
    Filed: December 12, 2016
    Publication date: March 30, 2017
    Inventor: Hemant Bheda
  • Patent number: 9592660
    Abstract: An apparatus performing as a base for printing 3D objects using high temperature thermoplastics employing additive manufacturing methods is provided. The apparatus comprises a heated build platform, a thin removable plate secured on top of the build platform, a high temperature polymer coating applied over the removable plate, and surface treatment of high temperature polymer coating to maintain adhesion between 3D object and printing surface. Also, the removable plate has low coefficient of thermal expansion compared to build platform below it, for avoiding bowing of the plate as it is heated due to heated build platform, hence providing flat printing surface. The thin removable plate allows 3D objects to pop off the plate upon cooling, without damaging the polymer coating, the plate, or the object. It also allows for continuous operation of printing, while the plate is released for cooling, a new plate is installed for printing.
    Type: Grant
    Filed: December 17, 2014
    Date of Patent: March 14, 2017
    Assignee: AREVO INC.
    Inventors: Riley Reese, Hemant Bheda
  • Publication number: 20160297935
    Abstract: Methods for producing 3D printing composite polymer materials for use in additive manufacturing processes are provided. The methods result in enhancing the material properties of the printing material by providing a uniform and smooth surface finish of the printing material and the nozzle extrudate for additive manufacturing processes, such as Fused Filament Fabrication. The method includes implementing impregnation techniques for combining carbon nanotubes or other nano-fillers, a polymer resin and a fiber material to produce a polymer material that can be processed into a printing material. Further, the method may include combining the carbon nanotubes or other nano-fillers and the polymer resin to form a masterbatch that may be further combined with the fiber material through an extrusion process. The method results in a printing material with enhanced material properties and smooth surface finish for the printing material and resulting nozzle extrudate for Fused Filament Fabrication.
    Type: Application
    Filed: April 8, 2015
    Publication date: October 13, 2016
    Inventors: Riley Reese, Hemant Bheda
  • Publication number: 20160297142
    Abstract: An apparatus and method for printing an object via additive manufacturing is disclosed. In accordance with an illustrative embodiment, one or more inks are prepared, including a thermo-polymer ink, a nano-filler ink, and a thermo-polymer/nano-filler ink. In some embodiments, an object is printed by depositing alternating layers of thermo-polymer ink and nano-filler ink and exposing the layers to microwave radiation. In some other embodiments, an object is printed by depositing alternating layers of thermo-polymer/nano-filler ink and nano-filler ink and exposing the layers to microwave radiation. In some additional embodiments, an object is printed by depositing successive layers of thermo-polymer/nano-filler ink and exposing them to microwave radiation.
    Type: Application
    Filed: April 8, 2016
    Publication date: October 13, 2016
    Inventors: Hemant Bheda, Riley Reese
  • Publication number: 20160271880
    Abstract: A FFF-based 3D printer includes a thermal management system that incorporates liquid cooling for the cooling block. In the illustrative embodiment, the thermal management system includes a coolant block that couples to the surface of the existing cooling block, a liquid-coolant reservoir, a fan for cooling the reservoir, a pump for pumping the coolant, and conduits for conducting the coolant to and from the coolant block. Embodiments of the invention provide a way to prevent or substantially reduce the incidence of clogging as otherwise occurs when attempting to print high-temperature, high-viscosity materials using FFF-based 3d printers.
    Type: Application
    Filed: March 16, 2016
    Publication date: September 22, 2016
    Inventors: Hemant Bheda, Riley Reese
  • Publication number: 20160266573
    Abstract: A system and method for additive manufacturing of otherwise thermosetting polymers, such as PAI, is disclosed. The system includes fast-curing hardware that facilitates curing each deposited layer before a successive layer is deposited. This reduces the time to provide a finished part from weeks to hours.
    Type: Application
    Filed: March 14, 2016
    Publication date: September 15, 2016
    Inventors: Hemant Bheda, Riley Reese
  • Publication number: 20160236414
    Abstract: The present invention provides a system and a method for real time monitoring and identifying defects occurring in a three dimensional object build via an additive manufacturing process. Further, the present invention provides in-situ correction of such defects by a plurality of functional tool heads possessing freedom of motion in arbitrary planes and approach, where the functional tool heads are automatically and independently controlled based on a feedback analysis from the printing process, implementing analyzing techniques. Furthermore, the present invention provides a mechanism for analyzing defected data collected from detection devices and correcting tool path instructions and object model in-situ during construction of a 3D object. A build report is also generated that displays, in 3D space, the structural geometry and inherent properties of a final build object along with the features of corrected and uncorrected defects.
    Type: Application
    Filed: February 12, 2015
    Publication date: August 18, 2016
    Inventors: Riley Reese, Hemant Bheda, Wiener Mondesir
  • Publication number: 20160236416
    Abstract: The present invention relates to a system and a method for optimizing printing parameters, such as slicing parameters and tool path instructions, for additive manufacturing. The present invention comprises a property analysis module that predicts and analyses properties of a filament object model, representing a constructed 3D object. The filament object model is generated based on the tool path instructions and user specified object properties. Analysis includes comparing the predicted filament object model properties with the user specified property requirements; and further modifying the printing parameters in order to meet the user specified property requirements.
    Type: Application
    Filed: February 16, 2015
    Publication date: August 18, 2016
    Inventors: Hemant Bheda, Wiener Mondesir, Riley Reese, Shekhar Mantha
  • Publication number: 20160176118
    Abstract: An apparatus performing as a base for printing 3D objects using high temperature thermoplastics employing additive manufacturing methods is provided. The apparatus comprises a heated build platform, a thin removable plate secured on top of the build platform, a high temperature polymer coating applied over the removable plate, and surface treatment of high temperature polymer coating to maintain adhesion between 3D object and printing surface. Also, the removable plate has low coefficient of thermal expansion compared to build platform below it, for avoiding bowing of the plate as it is heated due to heated build platform, hence providing flat printing surface. The thin removable plate allows 3D objects to pop off the plate upon cooling, without damaging the polymer coating, the plate, or the object. It also allows for continuous operation of printing, while the plate is released for cooling, a new plate is installed for printing.
    Type: Application
    Filed: December 17, 2014
    Publication date: June 23, 2016
    Inventors: Riley Reese, Hemant Bheda
  • Publication number: 20140232035
    Abstract: An apparatus for manufacturing an object includes an extrusion head having an extrusion needle for extruding thermoplastic material associated with one or more fiber strands. The apparatus may further include a turn-table, a more robotic arm for moving the extrusion head and needle, thermoplastic filament and fiber strand spools and thermoplastic filament and fiber strands. A controller is provided for directing the robotic arm, extrusion head and the turn-table. Further, a method for manufacturing an object includes generating a design for the object that substantially satisfies desired structural properties of the object and generating a sequence for extruding one or more beads of thermoplastic material to manufacture the object according to the design, in which the one or more beads of thermoplastic material are associated with one or more fiber strands. The one or more beads of thermoplastic material and the associated one or more fiber strands are then extruded according to the sequence.
    Type: Application
    Filed: February 19, 2014
    Publication date: August 21, 2014
    Inventor: Hemant Bheda
  • Patent number: 6002441
    Abstract: A novel method and apparatus for decoding a compressed audio/video signal to produce decoded audio and decoded video signals. The decoding tasks are partitioned into "pre-processing tasks" and "post-processing tasks." Pre-processing tasks involve one or more non-signal processing oriented operations which do not require extensive computing resources. Pre-processing tasks are assigned to be executed by the host processor, which can perform these tasks without straining it computational resources. Pre-processing tasks include demultiplexing the compressed audio/video stream into compressed audio and compressed video streams, performing audio pre-processing on the compressed audio stream and performing video pre-processing on the compressed video stream. Post-processing tasks involve one or more signal processing oriented operations which require extensive computing resources. Pre-processing tasks are assigned to be executed by a dedicated subprocessor.
    Type: Grant
    Filed: October 28, 1996
    Date of Patent: December 14, 1999
    Assignee: National Semiconductor Corporation
    Inventors: Hemant Bheda, Ygal Arbel, Partha Srinivasan
  • Patent number: 5990958
    Abstract: A novel apparatus and method is disclosed to decode an encoded MPEG video stream in an efficient manner making optimal use of available system memory and computational resources. The present invention partitions the MPEG video decode task into software tasks which are executed by a CPU and hardware tasks which are implemented in dedicated video hardware. Software tasks represent those tasks which do not require extensive memory or computational resources. On the other hand, tasks implemented in dedicated video hardware represent those tasks which involve computational and memory mintensive operations. Synchronization between software tasks executed by the CPU and hardware tasks implemented in dedicated video hardware is achieved by means of various data structures, control structures and device drivers.
    Type: Grant
    Filed: June 17, 1997
    Date of Patent: November 23, 1999
    Assignee: National Semiconductor Corporation
    Inventors: Hemant Bheda, Sanjay Gongalore, Partha Srinivasan
  • Patent number: 5781664
    Abstract: A novel method and structure for the implementation of Half Pixel Filtering and Block Averaging that are efficient for implementation on a general purpose CPU. The number of required operations are reduced by operating on multiple pixels simultaneously using sliced arithmetic, while maintaining full accuracy. In certain embodiments, the number of operations are further reduced by compromising full accuracy. This approximation is applicable to decoding of bi-directional frames.
    Type: Grant
    Filed: October 10, 1997
    Date of Patent: July 14, 1998
    Assignee: National Semiconductor Corporation
    Inventors: Hemant Bheda, Partha Srinivasan