Patents by Inventor John R. Tumbleston
John R. Tumbleston 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).
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Patent number: 11993015Abstract: A build plate assembly for a three-dimensional printer includes: a lighting panel having individually addressable pixels configured to selectively emit light and/or transmit light from illumination below the pixels to a top surface top surface of the lighting panel; a rigid, optically transparent, gas-impermeable planar screen or base having an upper surface having an uneven surface topology and a lower surface that is affixed to the top surface of the lighting panel; and a flexible, optically transparent, gas-permeable sheet having upper and lower surfaces, the upper surface comprising a build surface for forming a three-dimensional object, the sheet lower surface positioned opposite the base, wherein the build plate is configured to permit gas flow to the build surface.Type: GrantFiled: October 1, 2021Date of Patent: May 28, 2024Assignee: CARBON, INC.Inventors: Bob E. Feller, Ariel M. Hermann, John R. Tumbleston, David Moore, Gregory W. Dachs, II
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Patent number: 11982991Abstract: An additive manufacturing system may include an additive manufacturing apparatus on which a process of producing a three-dimensional object from a material can be performed; an additive manufacturing process controller operatively associated with the additive manufacturing apparatus; and a first memory device operatively associated with the additive manufacturing process controller. The first memory device may include first and second stable release process programs each comprising a first subset of operations executable by said process controller. The system may include a second memory device comprising another stable release process program comprising a second subset of operations executable by said process controller. The system may include a selector configured to choose one of the stable release process programs to run on said process controller when producing a three-dimensional object on the additive manufacturing apparatus.Type: GrantFiled: December 13, 2019Date of Patent: May 14, 2024Assignee: Carbon, Inc.Inventors: John R. Tumbleston, Kyle Laaker, Ronald A. Truong, Roy Goldman, Abhishek Parmar
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Publication number: 20240009933Abstract: A method of enhancing a performance characteristic of an additive manufacturing apparatus, the method including: (a) dispensing a batch of a light polymerizable resin into the additive manufacturing apparatus, the batch characterized by at least one physical characteristic; (b) determining the unique identity of the batch; (c) sending the unique identity of the batch to a database; then (d) either: (i) receiving on the controller from the database modified operating instructions for the resin batch, which modified operating instructions have been modified based on the at least one physical characteristic, or (ii) receiving on the controller from the database the at least one physical characteristic for the specific resin batch and modifying the operating instructions based on the at least one physical characteristic; and then (e) producing the object from the batch of light polymerizable resin on the additive manufacturing apparatus with the modified operating instructions.Type: ApplicationFiled: September 25, 2023Publication date: January 11, 2024Inventors: John R. Tumbleston, Clarissa Gutierrez, Ronald Truong, Kyle Laaker, Craig B. Carlson, Roy Goldman, Abhishek Parmar
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Patent number: 11859027Abstract: A test cell useful for determining the photosensitivity of a photopolymerizable material, includes a support plate having a top surface portion, a bottom surface portion, and an opening extending therebetween, a light-transmissive base member removably or permanently connected to said bottom surface portion to form with said opening a well, into which well photopolymerizable material can be deposited, and a sensor comprising a thermal sensor, strain sensor, or combination thereof operatively associated with said light-transmissive base member.Type: GrantFiled: January 14, 2020Date of Patent: January 2, 2024Assignee: Carbon, Inc.Inventors: John R. Tumbleston, Ariel M. Herrmann, Matthew Panzer, Tabor Baranti
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Patent number: 11840023Abstract: A method of making a physical object having a desired geometry from a resin such as a dual cure resin by an additive manufacturing process such as a dual cure additive manufacturing process includes (a) entering into a processor a first input geometry for the physical object, the first input geometry corresponding to a desired geometry for the physical object; (b) modifying in the processor the first input geometry to a candidate inversely distorted input geometry for the physical object; (c) generating a simulated object from the candidate inversely distorted input geometry with a Multiphysics model simulation of the additive manufacturing process, the simulated object including distortions towards the desired geometry arising from the additive manufacturing process; (d) evaluating whether the simulated object sufficiently corresponds to the desired geometry for the physical object.Type: GrantFiled: August 21, 2020Date of Patent: December 12, 2023Assignee: Carbon, Inc.Inventors: Matthew Panzer, John R. Tumbleston
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Patent number: 11801643Abstract: A method of enhancing a performance characteristic of an additive manufacturing apparatus, the method including: (a) dispensing a batch of a light polymerizable resin into the additive manufacturing apparatus, the batch characterized by at least one physical characteristic; (b) determining the unique identity of the batch; (c) sending the unique identity of the batch to a database; then (d) either: (i) receiving on the controller from the database modified operating instructions for the resin batch, which modified operating instructions have been modified based on the at least one physical characteristic, or (ii) receiving on the controller from the database the at least one physical characteristic for the specific resin batch and modifying the operating instructions based on the at least one physical characteristic; and then (e) producing the object from the batch of light polymerizable resin on the additive manufacturing apparatus with the modified operating instructions.Type: GrantFiled: October 5, 2018Date of Patent: October 31, 2023Assignee: Carbon, Inc.Inventors: John R. Tumbleston, Clarissa Gutierrez, Ronald Truong, Kyle Laaker, Craig B. Carlson, Roy Goldman, Abhishek Parmar
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Publication number: 20230330935Abstract: A method of reducing performance deviation in at least one additive manufacturing apparatus during production of parts is provided. Each apparatus has a light source configured for polymerizing a light polymerizable resin with sequential doses of patterned light to produce a 3D object. The light source has an assigned nominal emission data, such as an expected or preset standard emission data, and actual emission data. The method includes modifying at least some of said light doses in said at least one apparatus during production of parts therein to compensate for a deviation of said actual light source emission data from the assigned nominal emission data.Type: ApplicationFiled: April 18, 2023Publication date: October 19, 2023Inventors: Ariel M. Herrmann, John R. Tumbleston, Kyle R. Laaker, Sean P. Wheeler, Elliott Steele Baker, Alexander Portnoy, Nicholas M. DeNardo, Anant Chimmalgi
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Patent number: 11685117Abstract: A method of forming a three-dimensional object includes providing a carrier and an optically transparent member having a build surface. The carrier and the build surface define a build region therebetween. The method further includes filling said build region with a polymerizable liquid; continuously or intermittently irradiating said build region with light through said optically transparent member to form a solid polymer from said polymerizable liquid; applying a reduced pressure and/or polymer inhibitor-enriched gas to the polymerizable liquid through the optically transparent member to thereby reduce a gas content of the polymerizable liquid; and continuously or intermittently advancing (e.g., sequentially or concurrently with said irradiating step) said carrier away from said build surface to form said three-dimensional object from said solid polymer.Type: GrantFiled: September 30, 2020Date of Patent: June 27, 2023Assignee: Carbon, Inc.Inventors: Bob E. Feller, David Moore, John R. Tumbleston, Ronald Truong, Kyle Laaker
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Publication number: 20230150189Abstract: Methods of making a three-dimensional object from a light polymerizable resin are described. A method may include: (a) providing a window, a light polymerizable resin, a laterally translatable substrate between said window and said resin to which said resin is adhered, and a carrier platform above said window; (b) irradiating said resin with light through said window and said translatable substrate, and vertically advancing said carrier away from said window, to produce a growing object on said carrier platform and consume resin beneath said growing object; and (c) laterally advancing said translatable substrate with said resin adhered thereto across said window to drag fresh resin beneath said growing object, continue producing said growing object and continue consuming fresh resin, until said three-dimensional object is produced.Type: ApplicationFiled: October 28, 2020Publication date: May 18, 2023Inventors: Matthew Panzer, Kyle Laaker, John R. Tumbleston, Bob E. Feller, Soren Rademacher, Stephen Paul Land, Henry Quarles Bibb, III, David Shirvanyants, Alexander Ermoshkin
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Patent number: 11548219Abstract: A method of improving production performance of an additive manufacturing system includes obtaining a first production plan and a second production plan, different from the first production plan, for the manufacture of a plurality of objects using a fleet of additive manufacturing apparatus, automatically generating a first allocation of a first quantity of the plurality of objects to the fleet of additive manufacturing apparatus using the first production plan, automatically generating a second allocation of a second quantity of the plurality of objects to the fleet of additive manufacturing apparatus using the second production plan, comparing a production performance of the first and second quantity of the plurality of objects after being manufactured by the fleet of additive manufacturing apparatus, and based on the comparison of the production performance, automatically regenerating the first and second allocations to change the first and second quantities.Type: GrantFiled: May 10, 2021Date of Patent: January 10, 2023Assignee: Carbon, Inc.Inventors: Ronald A. Truong, John R. Tumbleston, Kyle Laaker, Bob E. Feller, Joshua D. Deetz
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Patent number: 11518096Abstract: A build plate for a three-dimensional printer includes: a rigid, optically transparent, gas-impermeable planar base having an upper surface and a lower surface; and a flexible, optically transparent, gas-permeable sheet having an upper and lower surface, the sheet upper surface comprising a build surface for forming a three-dimensional object, the sheet lower surface positioned on the base upper surface. The build plate includes a gas flow enhancing feature configured to increase gas flow to the build surface.Type: GrantFiled: January 15, 2021Date of Patent: December 6, 2022Assignee: Carbon, Inc.Inventors: David Moore, John R. Tumbleston, Edward T. Samulski, Alexander Ermoshkin, Jason P. Rolland, Ariel M. Herrmann, Bob E. Feller
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Patent number: 11440223Abstract: An apparatus useful for rapidly producing at least one object having a contoured surface portion from a light-polymerizable resin is provided.Type: GrantFiled: July 30, 2019Date of Patent: September 13, 2022Assignee: Carbon, Inc.Inventors: Matthew Panzer, John R. Tumbleston
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Publication number: 20220057776Abstract: An additive manufacturing system may include an additive manufacturing apparatus on which a process of producing a three-dimensional object from a material can be performed; an additive manufacturing process controller operatively associated with the additive manufacturing apparatus; and a first memory device operatively associated with the additive manufacturing process controller. The first memory device may include first and second stable release process programs each comprising a first subset of operations executable by said process controller. The system may include a second memory device comprising another stable release process program comprising a second subset of operations executable by said process controller. The system may include a selector configured to choose one of the stable release process programs to run on said process controller when producing a three-dimensional object on the additive manufacturing apparatus.Type: ApplicationFiled: December 13, 2019Publication date: February 24, 2022Inventors: John R. Tumbleston, Kyle Laaker, Ronald A. Truong, Roy Goldman, Abhishek Parmar
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Publication number: 20220016838Abstract: A build plate assembly for a three-dimensional printer includes: a lighting panel having individually addressable pixels configured to selectively emit light and/or transmit light from illumination below the pixels to a top surface top surface of the lighting panel; a rigid, optically transparent, gas-impermeable planar screen or base having an upper surface having an uneven surface topology and a lower surface that is affixed to the top surface of the lighting panel; and a flexible, optically transparent, gas-permeable sheet having upper and lower surfaces, the upper surface comprising a build surface for forming a three-dimensional object, the sheet lower surface positioned opposite the base, wherein the build plate is configured to permit gas flow to the build surface.Type: ApplicationFiled: October 1, 2021Publication date: January 20, 2022Inventors: Bob E. Feller, Ariel M. Hermann, John R. Tumbleston, David Moore, Gregory W. Dachs, II
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Patent number: 11220051Abstract: A build plate assembly for a three-dimensional printer includes: a lighting panel having individually addressable pixels configured to selectively emit light and/or transmit light from illumination below the pixels to a top surface top surface of the lighting panel; a rigid, optically transparent, gas-impermeable planar screen or base having an upper surface having an uneven surface topology and a lower surface that is affixed to the top surface of the lighting panel; and a flexible, optically transparent, gas-permeable sheet having upper and lower surfaces, the upper surface comprising a build surface for forming a three-dimensional object, the sheet lower surface positioned opposite the base, wherein the build plate is configured to permit gas flow to the build surface.Type: GrantFiled: September 23, 2016Date of Patent: January 11, 2022Assignee: Carbon, Inc.Inventors: Bob E. Feller, Ariel M. Herrmann, John R. Tumbleston, David Moore, Gregory W. Dachs, II
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Publication number: 20210354378Abstract: A method of improving production performance of an additive manufacturing system includes obtaining a first production plan and a second production plan, different from the first production plan, for the manufacture of a plurality of objects using a fleet of additive manufacturing apparatus, automatically generating a first allocation of a first quantity of the plurality of objects to the fleet of additive manufacturing apparatus using the first production plan, automatically generating a second allocation of a second quantity of the plurality of objects to the fleet of additive manufacturing apparatus using the second production plan, comparing a production performance of the first and second quantity of the plurality of objects after being manufactured by the fleet of additive manufacturing apparatus, and based on the comparison of the production performance, automatically regenerating the first and second allocations to change the first and second quantities.Type: ApplicationFiled: May 10, 2021Publication date: November 18, 2021Inventors: Ronald A. Truong, John R. Tumbleston, Kyle Laaker, Bob E. Feller, Joshua D. Deetz
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Publication number: 20210323224Abstract: A build plate for a three-dimensional printer includes a rigid, optically transparent, gas-permeable planar base having an upper surface and an opposing lower surface; a gas permeable adhesive layer on the base upper surface; and a flexible, optically transparent, gas-permeable sheet having upper and lower surfaces, the upper surface comprising a build surface for forming a three-dimensional object, the sheet lower surface positioned on the adhesive layer opposite the base.Type: ApplicationFiled: April 30, 2021Publication date: October 21, 2021Inventors: David Moore, John R. Tumbleston, Edward T. Samulski, Alexander Ermoshkin, Jason P. Rolland, Ariel M. Herrmann
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Patent number: 11117316Abstract: A method of forming a three-dimensional object can be carried out by: (a) providing a carrier and an optically transparent member having a build surface, the carrier and the build surface defining a build region therebetween; (b) filling the build region with a polymerizable liquid, the polymerizable liquid comprising: (i) a polymerizable component; (ii) upconverting particles that are excited by light at a first wavelength and upon excitation emit light at a second wavelength that is shorter than the first wavelength; and (iii) a photoiniator that catalyzes polymerization of the polymerizable component upon excitation by light at the second wavelength; (c) irradiating the build region through the optically transparent member with an excitation light at the first wavelength, and optionally but in some embodiments preferably also advancing the carrier away from the build surface, wherein the excitation light is temporally and/or spatially modulated, to thereby form the three-dimensional object from the polymerType: GrantFiled: November 2, 2017Date of Patent: September 14, 2021Assignee: Carbon, Inc.Inventors: Matthew Panzer, John R. Tumbleston
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Publication number: 20210162665Abstract: A build plate for a three-dimensional printer includes: a rigid, optically transparent, gas-impermeable planar base having an upper surface and a lower surface; and a flexible, optically transparent, gas-permeable sheet having an upper and lower surface, the sheet upper surface comprising a build surface for forming a three-dimensional object, the sheet lower surface positioned on the base upper surface. The build plate includes a gas flow enhancing feature configured to increase gas flow to the build surface.Type: ApplicationFiled: January 15, 2021Publication date: June 3, 2021Inventors: David Moore, John R. Tumbleston, Edward T. Samulski, Alexander Ermoshkin, Jason P. Rolland, Ariel M. Herrmann, Bob E. Feller
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Patent number: 11020898Abstract: A build plate for a three-dimensional printer includes a rigid, optically transparent, gas-permeable planar base having an upper surface and an opposing lower surface; a gas permeable adhesive layer on the base upper surface; and a flexible, optically transparent, gas-permeable sheet having upper and lower surfaces, the upper surface comprising a build surface for forming a three-dimensional object, the sheet lower surface positioned on the adhesive layer opposite the base.Type: GrantFiled: January 29, 2016Date of Patent: June 1, 2021Assignee: Carbon, Inc.Inventors: David Moore, John R. Tumbleston, Edward T. Samulski, Alexander Ermoshkin, Jason P. Rolland, Ariel M. Herrmann