Patents by Inventor Jake WRIGHT
Jake WRIGHT 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: 11826961Abstract: In an example, a method include receiving a data model of an object to be generated in additive manufacturing at a processor, the data model comprising object property data. A segmentation of a virtual build volume comprising at least a portion of the object into a plurality of nested segments may be derived. A first segment may be associated with first object generation parameters and a second segment may be associated with second, different, object generation parameters. A number of nested segments to be derived may be determined based on at least one of a geometry of the object and an intended object property.Type: GrantFiled: July 10, 2017Date of Patent: November 28, 2023Assignee: Hewlett-Packard Development Company, L.P.Inventors: Hector Jose Lebron, Jake Wright, Stephen G. Rudisill, Matthew A. Shepherd, Vanessa Verzwyvelt, Morgan T. Schramm
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Patent number: 11701836Abstract: A control system for a three-dimensional printer includes an energy component interface, an agent depositing component interface, and control logic. The control logic controls the operation of an energy component through the energy component interface and an agent depositing component through the agent depositing component, in forming an output object that is specified in a print job. Additionally, in some examples, the control logic can implement a plurality of modes. Each mode, when selected modulate one or more operational parameters of a least one of the energy component or agent depositing component.Type: GrantFiled: January 20, 2022Date of Patent: July 18, 2023Assignee: Hewlett-Packard Development Company, L.P.Inventors: Vanessa Verzwyvelt, Matthew A. Shepherd, Arthur H. Barnes, Wesley R. Schalk, Hector Jose Lebron, Jake Wright
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Patent number: 11504914Abstract: A system determines an object part density relative to a build region in a layer of build material used in an additive manufacturing machine, the object part density based on a relative portion of the build region where an energy absorbing agent is applied. The system controls a thermal characteristic of the build region in the layer of build material based on the determined object part density.Type: GrantFiled: June 4, 2018Date of Patent: November 22, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Xin Cheng, Vanessa Verzwyvelt, Arthur H. Barnes, Michael Crockett, Jake Wright, Morgan T. Schramm
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Patent number: 11465360Abstract: Some examples include an additive manufacturing build object including an electrical component and a build object body. The electrical component having a varying electrical resistivity within a resistivity range of 109 ohms per square to 105 ohms per square, the resistivity range obtained by an application and fusing of a fusing component of a printing agent and build material, the printing agent applied to the build material at a predetermined saturation dosage range corresponding to the resistivity range. The build object body having a second electrical resistivity obtained by an application and fusing of the fusing component of the printing agent and the build material, the printing agent applied at a dosage below the predetermined saturation dosage range, the build object body being electrically non-conductive.Type: GrantFiled: April 30, 2018Date of Patent: October 11, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Greg Scott Long, Jake Wright, Phil D Matlock, David L Erickson
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Patent number: 11440247Abstract: Some examples include an additive manufacturing method for controlling electrostatic discharge of a build object. The method includes receiving data related to a build object, the data including conductivity data, selectively depositing a first portion of a printing agent onto a build material layer in a pattern of an object layer of a build object, the printing agent being electrically conductive at a predetermined dosage, the first portion deposited at less than the predetermined dosage, selectively depositing a second portion of the printing agent onto the build material layer at an area of the pattern, the printing agent at the area deposited at or above the predetermined dosage, and applying fusing energy to form the object layer, the object layer of the build object including a shell formed at the area and a core, the shell being electrically conductive and the core being electrically non-conductive.Type: GrantFiled: January 31, 2018Date of Patent: September 13, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Greg Scott Long, Phil D Matlock, Jake Wright, David L Erickson
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Patent number: 11367245Abstract: In an example a method includes identifying, by a processor, in a data model of at least a portion of a three-dimensional object, an object property associated with a location in the three-dimensional object. A data model of a virtual build volume comprising at least a portion of the three-dimensional object may be generated in which an association with an object property is dispersed beyond the location.Type: GrantFiled: July 10, 2017Date of Patent: June 21, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Matthew A Shepherd, Jake Wright, Hector Jose Lebron, Vanessa Verzwyvelt, Morgan T Schramm
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Patent number: 11345091Abstract: In an example, a method includes receiving, at a processor, a data model of an object to be generated in additive manufacturing. A virtual build volume comprising a representation of at least a portion of the object may be segmented into a plurality of nested segments comprising a core segment and a peripheral segment. Segmenting the virtual build volume may comprise determining a dimension of the peripheral segment based on at least one of a geometry of the object and an intended object property.Type: GrantFiled: July 10, 2017Date of Patent: May 31, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Morgan T Schramm, Matthew A Shepherd, Jake Wright, Vanessa Verzwyvelt, Xin Cheng, Hector Lebron
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Patent number: 11340582Abstract: In an example implementation, a method of processing a 3D object model includes receiving render data of a 2D slice of a 3D object model and generating distance values indicating how far away voxels in the 2D slice are from a nearest edge of the 3D object model. The method also includes detecting a feature of the 3D object model from the distance values, and generating modified render data to be subsequently used in a 3D printing system to produce the feature in a 3D part.Type: GrantFiled: October 14, 2017Date of Patent: May 24, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Jake Wright, Matthew A Shepherd
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Publication number: 20220143927Abstract: A control system for a three-dimensional printer includes an energy component interface, an agent depositing component interface, and control logic. The control logic controls the operation of an energy component through the energy component interface and an agent depositing component through the agent depositing component, in forming an output object that is specified in a print job. Additionally, in some examples, the control logic can implement a plurality of modes. Each mode, when selected modulate one or more operational parameters of a least one of the energy component or agent depositing component.Type: ApplicationFiled: January 20, 2022Publication date: May 12, 2022Applicant: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.Inventors: Vanessa Verzwyvelt, Matthew A. Shepherd, Arthur H. Barnes, Wesley R. Schalk, Hector Jose Lebron, Jake Wright
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Publication number: 20220118712Abstract: In an example, a virtual build volume comprising a representation of at least a part of an object to be generated in additive manufacturing is segmented into a plurality of nested segments comprising a core segment, an inner peripheral segment and an outer peripheral segment. Additive manufacturing control instructions may be generated for the nested segments. The control instructions for the core segment may provide a first region of the object corresponding to the core segment and having a first color. The control instructions for the outer peripheral segment may provide a second color for a second region of the object corresponding to the outer peripheral segment. The control instructions for the inner peripheral segment may provide a third color for a third region of the object corresponding to the inner peripheral segment, wherein a color of the third region is determined so as to at least partially visually mask the first region.Type: ApplicationFiled: January 3, 2022Publication date: April 21, 2022Applicant: Hewlett-Packard Development Company, L.P.Inventors: Hector LEBRON, Jake WRIGHT, Stephen G. RUDISILL, Matthew A. SHEPHERD, Vanessa VERZWYVELT, Morgan T. SCHRAMM
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Patent number: 11279091Abstract: In an example, a method includes forming a layer of build material, processing a first portion of the build material by distributing a print agent using a first distribution pattern, the first distribution pattern having a first print agent dispersion characteristic and processing a second portion of the build material by distributing a print agent using a second distribution pattern, the second distribution pattern having a second print agent dispersion characteristic. The method may further include heating the build material by exposing the layer of build material to radiation so as to cause fusing of the first and second portion.Type: GrantFiled: July 10, 2017Date of Patent: March 22, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Hector Lebron, Jake Wright, Morgan T. Schramm, Matthew A. Shepherd
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Patent number: 11260599Abstract: A control system for a three-dimensional printer includes an energy component interface, an agent depositing component interface, and control logic. The control logic controls the operation of an energy component through the energy component interface and an agent depositing component through the agent depositing component, in forming an output object that is specified in a print job. Additionally, in some examples, the control logic can implement a plurality of modes. Each mode, when selected modulate one or more operational parameters of a least one of the energy component or agent depositing component.Type: GrantFiled: July 28, 2017Date of Patent: March 1, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Vanessa Verzwyvelt, Matthew A. Shepherd, Arthur H. Barnes, Wesley R. Schalk, Hector Jose Lebron, Jake Wright
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Patent number: 11241837Abstract: In an example, a virtual build volume comprising a representation of at least a part of an object to be generated in additive manufacturing is segmented into a plurality of nested segments comprising a core segment, an inner peripheral segment and an outer peripheral segment. Additive manufacturing control instructions may be generated for the nested segments. The control instructions for the core segment may provide a first region of the object corresponding to the core segment and having a first color. The control instructions for the outer peripheral segment may provide a second color for a second region of the object corresponding to the outer peripheral segment. The control instructions for the inner peripheral segment may provide a third color for a third region of the object corresponding to the inner peripheral segment, wherein a color of the third region is determined so as to at least partially visually mask the first region.Type: GrantFiled: July 10, 2017Date of Patent: February 8, 2022Assignee: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.Inventors: Hector Lebron, Jake Wright, Stephen G. Rudisill, Matthew A. Shepherd, Vanessa Verzwyvelt, Morgan T. Schramm
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Patent number: 11214001Abstract: In an example, a method includes providing a build material. Print agent comprising colorant may be applied to a first portion of the build material to be fused in additive manufacturing, wherein the print agent is applied according to a target color for the first portion. A combination of a fusion inhibiting agent and colorant may be applied to a second portion of the build material, wherein the print agent is applied according to the target color of the first portion and the second portion is adjacent to the first portion. The method may further include heating the build material by exposing the build material to radiation so as to cause fusing of the first portion.Type: GrantFiled: July 10, 2017Date of Patent: January 4, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Vanessa Verzwyvelt, Matthew A. Shepherd, Jake Wright, Hector Lebron, Morgan T. Schramm
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Publication number: 20210362410Abstract: In a three-dimensional printing method example, a polymeric or polymeric composite build material is applied. A fusing agent is applied on at least a portion of the build material. The fusing agent includes an aqueous or non-aqueous vehicle and an inorganic pigment dispersed in the aqueous or non-aqueous vehicle, wherein the inorganic pigment is selected from the group consisting of lanthanum hexaboride, tungsten bronzes, indium tin oxide, aluminum zinc oxide, ruthenium oxide, silver, gold, platinum, iron pyroxenes, modified iron phosphates (AxFeyPO4), modified copper pyrophosphates (AxCuyP2O7), and combinations thereof. The build material is exposed to electromagnetic radiation, thereby fusing the portion of the build material in contact with the fusing agent to form a layer.Type: ApplicationFiled: August 5, 2021Publication date: November 25, 2021Inventors: Stephen G. Rudisill, Alexey S. Kabalnov, Keshava A. Prasad, Sivapackia Ganapathiappan, Jake Wright, Vladek Kasperchik
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Patent number: 11167479Abstract: According to examples, a three-dimensional printed part including a core including a build material; an inner shell including the build material and an antistatic agent, wherein the antistatic agent includes a water soluble compound; and an external shell including the build material is disclosed.Type: GrantFiled: January 26, 2018Date of Patent: November 9, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Graciela Negri, Alexey S. Kabalnov, Jake Wright
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Publication number: 20210331408Abstract: Some examples include an additive manufacturing build object including an electrical component and a build object body. The electrical component having a varying electrical resistivity within a resistivity range of 109 ohms per square to 105 ohms per square, the resistivity range obtained by an application and fusing of a fusing component of a printing agent and build material, the printing agent applied to the build material at a predetermined saturation dosage range corresponding to the resistivity range. The build object body having a second electrical resistivity obtained by an application and fusing of the fusing component of the printing agent and the build material, the printing agent applied at a dosage below the predetermined saturation dosage range, the build object body being electrically non-conductive.Type: ApplicationFiled: April 30, 2018Publication date: October 28, 2021Inventors: Greg Scott Long, Jake Wright, Phil D Matlock, David L Erickson
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Publication number: 20210331412Abstract: A system determines an object part density relative to a build region in a layer of build material used in an additive manufacturing machine, the object part density based on a relative portion of the build region where an energy absorbing agent is applied. The system controls a thermal characteristic of the build region in the layer of build material based on the determined object part density.Type: ApplicationFiled: June 4, 2018Publication date: October 28, 2021Inventors: Xin Cheng, Vanessa Verzwyvelt, Arthur H. Barnes, Michael Crockett, Jake Wright, Morgan T. Schramm
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Patent number: 11110653Abstract: In a three-dimensional printing method example, a polymeric or polymeric composite build material is applied. A fusing agent is applied on at least a portion of the build material. The fusing agent includes an aqueous or non-aqueous vehicle and a plasmonic resonance absorber having absorption at wavelengths ranging from 800 nm to 4000 nm and having transparency at wavelengths ranging from 400 nm to 780 nm dispersed in the aqueous or non-aqueous vehicle. The build material is exposed to electromagnetic radiation, thereby fusing the portion of the build material in contact with the fusing agent to form a layer.Type: GrantFiled: October 23, 2015Date of Patent: September 7, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Stephen G. Rudisill, Alexey S. Kabalnov, Keshava A. Prasad, Sivapackia Ganapathiappan, Jake Wright, Vladek Kasperchik
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Patent number: 11077612Abstract: In an example implementation, a method of printing a three-dimensional (3D) object includes, applying a layer of build powder onto a printing platform and depositing a deliberate micropattern of liquid agent onto the powder within a macropattern that defines a cross-section of a 3D object to be printed. The method includes forming a microstructure from the deliberate micropattern by applying fusing energy to the powder, the microstructure comprising fused areas and sintered areas between the fused areas.Type: GrantFiled: July 20, 2016Date of Patent: August 3, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Hector Lebron, Jake Wright, Alexey S. Kabalnov