Patents by Inventor Ismael Chanclón Fernández
Ismael Chanclón Fernández 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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Publication number: 20230166447Abstract: A 3D printer is disclosed herein. The 3D printer comprises an energy source comprising solid-state emitters to selectively emit energy to a build material layer in a narrow-band of wavelengths; an agent delivery device to selectively deposit a fusing agent, a detailing agent and a reflective agent on the build material layer in respective independent patterns; and a controller. The reflective agent is to reflect substantially all of the energy at the wavelengths within the narrow-band of wavelengths. The controller is to control the agent delivery device to selectively deposit the fusing agent to a build material layer in a first pattern corresponding to a 3D object to be generated. The controller is further to control the agent delivery device to selectively deposit the detailing agent and the reflective gent to the build material layer in a second pattern and third pattern respectively.Type: ApplicationFiled: March 31, 2020Publication date: June 1, 2023Inventors: Ferran Esquius Berengueras, Ismael Chanclon Fernandez, Esteve Comas Cespedes
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Patent number: 11524461Abstract: In an example, a data unit includes a mounting to removably mount the data unit on a receiving portion of an additive manufacturing build material container, a data source to provide data comprising a plurality of additive manufacturing parameters and a communications interface to communicate with a reader of an additive manufacturing build material processing apparatus. The communications interface is to transmit data from the data source to the additive manufacturing build material processing apparatus.Type: GrantFiled: March 1, 2021Date of Patent: December 13, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Vicente Granados Asensio, Emilio Lopez Matos, Ismael Chanclon Fernandez, Jorge Castano Aspas, Salvador Sanchez Ribes, Luis Garcia Garcia, Carmen Blasco
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Patent number: 11465204Abstract: A build material management system for a 3D printing system is described in which one or more input ports of a housing of the build material management system is to connect to one or more respective transportable containers. The transportable containers contain a volume of build material comprising 3D printed parts and a portion of non-fused build material. A pump also comprised within the housing is operable to provide a pressure differential across a conduit network of the build material management system. The pump is connected to the input port(s) by the conduit network. An air-flow caused through at least one of the one or more input ports is controlled by processing circuitry also comprised within the housing. The air-flow causes cooling within the respective transportable container. In one alternative, the housing comprises at least two input ports.Type: GrantFiled: July 26, 2016Date of Patent: October 11, 2022Assignee: Hewlett-Packard Development Company, L.P.Inventors: Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez
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Publication number: 20220227059Abstract: Examples described herein relate to a method of 3D printing. In an example, at least part of a layer of build material is fused. The temperatures of the fused part of the layer are measured at different locations using respective temperature sensors. The temperature sensors are calibrated using the measured temperatures. Heating of additional layers of build material is controlled using the calibrated temperature sensors.Type: ApplicationFiled: October 25, 2019Publication date: July 21, 2022Applicant: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.Inventors: Marc Borras Camarasa, Davinia Font Calafell, Ismael Chanclon Fernandez, Emilio Sapena Masip, Hector Vega Ponce
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Patent number: 11155029Abstract: A method of three-dimensional (3D) printing is provided. Print data is received, which defines patterns of at least one agent to be applied to a layer of build material. The print data is modified to add a further pattern of a detailing agent to be selectively applied to the layer of build material to generate fracture regions in a processed volume of build material.Type: GrantFiled: May 12, 2016Date of Patent: October 26, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Scott A. White, Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez, Samuel A. Stodder, Glenn Thomas Haddick
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Patent number: 11123929Abstract: In an example, a data unit includes a data unit mounting having a circuitry region, a registration portion, and a retaining feature. Circuitry comprising a data source to provide at least one additive manufacturing parameter is arranged on the circuitry region of the mounting. The data unit mounting is to be removably mounted on a receiving portion of an additive manufacturing build material component, such that the registration portion is to be received in a corresponding guide portion of the receiving portion of the additive manufacturing build material component, and the retaining feature is prevent removal of the data unit from the receiving portion unless deformed. Deformation of the retaining feature to effect removal of the data unit from the receiving portion may be a permanent deformation.Type: GrantFiled: May 12, 2016Date of Patent: September 21, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Ismael Chanclon Fernandez, Xavier Alonso Becerro, Ernesto Alejandro Jones Poppescou, Jorge Castano Aspas, Salvador Sanchez Ribes, Luis Garcia Garcia, Carmen Blasco
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Patent number: 11110659Abstract: An additive-manufacturing build-material container comprises a reservoir to hold build material, a build-material outlet structure to allow build material to exit the reservoir through an outlet opening in a top portion of the reservoir, a longitudinal collection unit (313a) to collect build material from the bottom and guide the build material to the outlet opening at the top, and bottom-venting structure to admit vent gas into a bottom portion of the reservoir. The bottom-venting structure may include a vent tube to admit venting gas into the bottom portion of the reservoir. A concentric collection tube structure may be employed including the longitudinal collection tube nested within a vent tube (333A, 354A). The concentric collection tube structure may be mounted along the central axis of the reservoir.Type: GrantFiled: May 12, 2016Date of Patent: September 7, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Ismael Chanclon Fernandez, Xavier Alonso Becerro, Ernesto Alejandro Jones Poppescou
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Patent number: 11097468Abstract: A build material management apparatus for a three dimensional printing system is provided having a plurality of conduits to connect to a respective plurality of ports of at least one build material container. Processing circuitry is provided to control coupling of a 5 pump interface to the plurality of conduits to independently set, for at least two of the plurality of conduits, a given air flow parameter for cooling build material in the at least one build material container. A build material container and machine executable instructions are also provided.Type: GrantFiled: September 6, 2016Date of Patent: August 24, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez
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Patent number: 11097480Abstract: There are disclosed methods and apparatuses for 3D printing post-processing. The methods and apparatuses provide a container for an additive manufacturing system, the container for receiving a build volume of fused and unfused build material. The container comprises a connector for connecting the container to a pressure source, and at least one air hole to allow passage of air into or out of the container. When the connector is connected to the pressure source, air flows through the container between the connector and the at least one air hole so as to remove unfused build material from the container and to help cool the volume of build material.Type: GrantFiled: May 12, 2016Date of Patent: August 24, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez
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Publication number: 20210178694Abstract: In an example, a data unit includes a mounting to removably mount the data unit on a receiving portion of an additive manufacturing build material container, a data source to provide data comprising a plurality of additive manufacturing parameters and a communications interface to communicate with a reader of an additive manufacturing build material processing apparatus. The communications interface is to transmit data from the data source to the additive manufacturing build material processing apparatus.Type: ApplicationFiled: March 1, 2021Publication date: June 17, 2021Applicant: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.Inventors: Vicente Granados Asensio, Emilio Lopez Matos, Ismael Chanclon Fernandez, Jorge Castano Aspas, Salvador Sanchez Ribes, Luis Garcia Garcia, Carmen Blasco
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Patent number: 10967579Abstract: In an example, a data unit includes a mounting to removably mount the data unit on a receiving portion of an additive manufacturing build material container, a data source to provide data comprising a plurality of additive manufacturing parameters and a communications interface to communicate with a reader of an additive manufacturing build material processing apparatus. The communications interface is to transmit data from the data source to the additive manufacturing build material processing apparatus.Type: GrantFiled: May 12, 2016Date of Patent: April 6, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Vicente Granados Asensio, Emilio Lopez Matos, Ismael Chanclon Fernandez, Jorge Castano Aspas, Salvador Sanchez Ribes, Luis Garcia Garcia, Carmen Blasco
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Patent number: 10919225Abstract: Examples of an inlet to enable a forced air flow to enter a build material container in a 3D additive manufacturing system are described. In one case, the inlet has a structure having an inner face and an outer face forming at least one aperture through the structure through which forced air flows in use. The inlet has a longitudinal axis and the inner face and outer face are non-aligned along at least one axis which passes through each of inner face and the outer face and is substantially parallel to the longitudinal axis.Type: GrantFiled: October 27, 2016Date of Patent: February 16, 2021Assignee: Hewlett-Packard Development Company, L.P.Inventors: Ismael Chanclon Fernandez, Jaime Cabanes, Ernesto Alejandro Jones Poppescou
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Patent number: 10751941Abstract: An additive-manufacturing build-material container (201) comprises a reservoir to hold build material, an outlet opening in a top portion of the reservoir, an outlet tube structure including a longitudinal collection unit to collect build material from the bottom and guide the build material to the outlet opening at the top, upon application of a suction force at the other end thereof, and to guide the collected build material to the outlet opening at the top; and a vent opening in a top portion of the reservoir to admit gas from outside the reservoir into the reservoir to follow a gas flow path through the vent opening, through the reservoir and into the one end of the longitudinal collection tube; wherein on the gas flow path there is at least one turbulent gas-flow-generation feature (237) to generate turbulent gas flow in a region that is within the reservoir and outside the longitudinal collection tube.Type: GrantFiled: May 12, 2016Date of Patent: August 25, 2020Assignee: Hewlett-Packard Development Company, L.P.Inventors: Ismael Chanclon Fernandez, Xavier Alonso Becerro, Ernesto Alejandro Jones Poppescou
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Patent number: 10723076Abstract: There is provided a build material source container for use in a material management station of a three dimensional, 3D, printer. The source container defines a substantially enclosed space for holding build material and has an aperture for build material ingress and egress. At least part of the build material source container is formed from an electrically conductive material. The conductive material portion of the build material source container is connectable to Earth to discharge static electricity generated within the build material source container.Type: GrantFiled: May 12, 2016Date of Patent: July 28, 2020Assignee: Hewlett-Packard Development Company, L.P.Inventors: Ismael Chanclon Fernandez, Ernesto Alejandro Jones Poppescou, Xavier Alonso Becerro
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Patent number: 10689220Abstract: A media-sheet stacking system for stacking media sheets on a device output tray comprises a kicker to advance a media sheet along the output tray by pushing a trailing edge of the media sheet as it exits the device, and a movable element arranged to face the output tray across a space that receives media sheets exiting the device. A drive mechanism is provided to drive the movable element in the direction of advance of the media sheet along the output tray.Type: GrantFiled: October 30, 2018Date of Patent: June 23, 2020Assignee: Hewlett-Packard Development Company, L.P.Inventors: Daniel Gonzalez Perello, Andreu Oliver, Ismael Chanclon Fernandez, Joseba Ormaechea Saracibar, Xavier Miguel Royo, Ruben Prats Gonzalez
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Publication number: 20190176395Abstract: There are disclosed methods and apparatuses for 3D printing post-processing. The methods and apparatuses provide a container for an additive manufacturing system, the container for receiving a build volume of fused and unfused build material. The container comprises a connector for connecting the container to a pressure source, and at least one air hole to allow passage of air into or out of the container. When the connector is connected to the pressure source, there is generated a flow of air through the container between the connector and the at least one air hole so as to remove unfused build material from the container and to help cool the volume of build material.Type: ApplicationFiled: May 12, 2016Publication date: June 13, 2019Applicant: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.Inventors: Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez
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Publication number: 20190176390Abstract: A method of three-dimensional (3D) printing is provided. Print data is received, which defines patterns of at least one agent to be applied to a layer of build material. These patterns are at least partially based on a 3D model of at least one object to be generated. The print data print data is processed to determine regions which are distant from said patterns. The print data is modified to add a further pattern of a detailing agent to be selectively applied to the layer of build material to generate fracture regions in a processed volume of build material.Type: ApplicationFiled: May 12, 2016Publication date: June 13, 2019Applicant: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.Inventors: Scott A. White, Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez, Samuel A. Stodder, Glenn Thomas Haddick
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Publication number: 20190134889Abstract: A build material management apparatus for a three dimensional printing system is provided having a plurality of conduits to connect to a respective plurality of ports of at least one build material container. Processing circuitry is provided to control coupling of a 5 pump interface to the plurality of conduits to independently set, for at least two of the plurality of conduits, a given air flow parameter for cooling build material in the at least one build material container. A build material container and machine executable instructions are also provide.Type: ApplicationFiled: September 6, 2016Publication date: May 9, 2019Inventors: Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez
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Publication number: 20190126546Abstract: An additive-manufacturing build-material container (201) comprises a reservoir to hold build material, an outlet opening in a top portion of the reservoir, an outlet tube structure including a longitudinal collection unit to collect build material from the bottom and guide the build material to the outlet opening at the top, upon application of a suction force at the other end thereof, and to guide the collected build material to the outlet opening at the top; and a vent opening in a top portion of the reservoir to admit gas from outside the reservoir into the reservoir to follow a gas flow path through the vent opening, through the reservoir and into said one end of the longitudinal collection tube; wherein on said gas flow path there is at least one turbulent-gas-flow-generation feature (237) to generate turbulent gas flow in a region that is within the reservoir and outside the longitudinal collection tube.Type: ApplicationFiled: May 12, 2016Publication date: May 2, 2019Inventors: Ismael Chanclon Fernandez, Xavier Alonso Becerro, Ernesto Alejandro Jones Poppescou
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Publication number: 20190126347Abstract: A build material management system for a 3D printing system is described in which one or more input ports of a housing of the build material management system is to connect to one or more respective transportable containers. The transportable containers contain a volume of build material comprising 3D printed parts and a portion of non-fused build material. A pump also comprised within the housing is operable to provide a pressure differential across a conduit network of the build material management system. The pump is connected to the input port(s) by the conduit network. An air-flow caused through at least one of the one or more input ports is controlled by processing circuitry also comprised within the housing. The air-flow causes cooling within the respective transportable container. In one alternative, the housing comprises at least two input ports.Type: ApplicationFiled: July 26, 2016Publication date: May 2, 2019Inventors: Justin M. Roman, Xavier Alonso Becerro, Ismael Chanclon Fernandez