Patents by Inventor CHRISTOPHER PAUL EONTA
CHRISTOPHER PAUL EONTA 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: 11872634Abstract: An expeditionary additive manufacturing (ExAM) system [10] for manufacturing metal parts [20] includes a mobile foundry system [12] configured to produce an alloy powder [14] from a feedstock [16], and an additive manufacturing system [18] configured to fabricate a part using the alloy powder [14]. The additive manufacturing system [18] includes a computer system [50] having parts data and machine learning programs in signal communication with a cloud service. The parts data [56] can include material specifications, drawings, process specifications, assembly instructions, and product verification requirements for the part [20]. An expeditionary additive manufacturing (ExAM) method for making metal parts [20] includes the steps of transporting the mobile foundry system [12] and the additive manufacturing system [18] to a desired location; making the alloy powder [14] at the location using the mobile foundry system; and building a part [20] at the location using the additive manufacturing system [18].Type: GrantFiled: February 24, 2023Date of Patent: January 16, 2024Assignee: MolyWorks Material CorporationInventors: Christopher Paul Eonta, Andrew VanOs LaTOUR, Matthew Charles, Tom Reed, Kai Prager
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Publication number: 20230420183Abstract: A system for producing rare earth magnets from metal powder includes a melting cold hearth atomization system for producing the metal powder from a scrap material and an additive manufacturing system for building the rare earth magnets using the metal powder and an additive manufacturing process. The melting cold hearth atomization system includes a reactor for melting the scrap material into a molten metal, and one or more atomizers for spheroidizing the molten metal into powder particles that form the metal powder. The additive manufacturing system includes magnetized build plates for aligning the grain structures of the rare earth magnets during a building step of the additive manufacturing process. The scrap material can include recycled rare earth magnets, recycled metal powder containing rare earth metal, and recycled rare earth metal parts.Type: ApplicationFiled: June 15, 2023Publication date: December 28, 2023Applicant: MolyWorks Materials CorporationInventors: Christopher Paul Eonta, Matthew Charles
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Publication number: 20230235959Abstract: A load lock system for manufacturing a metal alloy using a feed material includes a process chamber having a controlled atmosphere, a feed chamber in flow communication with the process chamber having controlled atmosphere capabilities configured to contain a quantity of the feed material, and a collection chamber in flow communication with the process chamber having controlled atmosphere capabilities configured to collect the metal alloy manufactured in the process chamber. The system also includes a gate valve between the process chamber and the feed chamber configured to either allow passage of the feed material between the chambers, or to seal the process chamber from the feed chamber. The system also includes a discharge valve between the process chamber and the collection chamber configured to either allow passage of the metal alloy between the chambers, or to seal the process chamber from the collection chamber.Type: ApplicationFiled: March 30, 2023Publication date: July 27, 2023Applicant: MolyWorks Materials CorporationInventors: Matthew Charles, Christopher Paul Eonta, Paul Meese, Jonathan Nuttall
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Publication number: 20230211416Abstract: An expeditionary additive manufacturing (ExAM) system [10] for manufacturing metal parts [20] includes a mobile foundry system [12] configured to produce an alloy powder [14] from a feedstock [16], and an additive manufacturing system [18] configured to fabricate a part using the alloy powder [14]. The additive manufacturing system [18] includes a computer system [50] having parts data and machine learning programs in signal communication with a cloud service. The parts data [56] can include material specifications, drawings, process specifications, assembly instructions, and product verification requirements for the part [20]. An expeditionary additive manufacturing (ExAM) method for making metal parts [20] includes the steps of transporting the mobile foundry system [12] and the additive manufacturing system [18] to a desired location; making the alloy powder [14] at the location using the mobile foundry system; and building a part [20] at the location using the additive manufacturing system [18].Type: ApplicationFiled: February 24, 2023Publication date: July 6, 2023Applicant: MolyWorks Materiais CorporationInventors: Christopher Paul Eonta, ANDREW VanOs LaTOUR, MATTHEW CHARLES, TOM REED, KAI PRAGER
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Patent number: 11679438Abstract: A deployable manufacturing center (DMC) system includes a foundry module containing a metallurgical system configured to convert a raw material into an alloy powder, and an additive manufacturing (AM) module containing an additive manufacturing system configured to form the alloy powder into metal parts. The deployable manufacturing center (DMC) system can also include a machining module containing a machining system configured to machine the metal parts into machined metal parts, and a quality conformance (QC) module containing an inspection and evaluation system configured to inspect and evaluate the metal parts. A process for manufacturing metal parts includes the steps of providing the deployable manufacturing center (DMC) system; deploying the (DMC) system to a desired location; forming an alloy powder from a raw material using the deployable foundry module; and then forming the metal parts from the alloy powder using the additive manufacturing (AM) module.Type: GrantFiled: January 24, 2022Date of Patent: June 20, 2023Assignee: MolyWorks Materials CorporationInventors: Andrew VanOs LaTour, Christopher Paul Eonta, Matthew Charles, Scott Steiner, Joel Cheng
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Patent number: 11623278Abstract: An expeditionary additive manufacturing (ExAM) system for manufacturing metal parts includes a mobile foundry system configured to produce an alloy powder from a feedstock, and an additive manufacturing system configured to fabricate a part using the alloy powder. The additive manufacturing system includes a computer system having parts data and machine learning programs in signal communication with a cloud service. The parts data can include material specifications, drawings, process specifications, assembly instructions, and product verification requirements for the part. An expeditionary additive manufacturing (ExAM) method for making metal parts includes the steps of transporting the mobile foundry system and the additive manufacturing system to a desired location; making the alloy powder at the location using the mobile foundry system; and building a part at the location using the additive manufacturing system.Type: GrantFiled: July 7, 2020Date of Patent: April 11, 2023Assignee: MolyWorks Materials CorporationInventors: Christopher Paul Eonta, Andrew VanOs LaTour, Matthew Charles, Tom Reed, Kai Prager
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Patent number: 11590574Abstract: A method for manufacturing metal components includes the steps of providing a waste feedstock having a selected chemical composition; producing an additive manufacturing (AM) grade alloy powder from the waste feedstock using a cold hearth mixing process; providing an additive manufacturing system; controlling the producing of the alloy powder such that the properties of the alloy powder optimize building of the components using the additive manufacturing system; and building the components using the alloy powder and the additive manufacturing system.Type: GrantFiled: October 11, 2019Date of Patent: February 28, 2023Assignee: MolyWorks Materials Corp.Inventors: Andrew VanOs LaTour, Christopher Paul Eonta, Matthew Charles, Andrew R. Clark, Valentine C. Sackmann
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Patent number: 11541458Abstract: A method for manufacturing small adaptive engines uses a battlefield repository having cloud services that is configured to enable additive manufacturing (AM) of engine parts and assemblies. The method also uses a compilation of recipes/signatures for building the engine parts and the assemblies using additive manufacturing (AM) processes and machine learning programs. An additive manufacturing system and an alloy powder suitable for performing the additive manufacturing (AM) processes can be provided. In addition, the engine parts can be built using the additive manufacturing (AM) system, the alloy powder, the battlefield repository and the compilation of recipes/signatures. A system for manufacturing small adaptive engines includes the battlefield repository, the compilation of recipes/signatures, a foundry system for providing the alloy powder and an additive manufacturing (AM) system configured to perform the additive manufacturing (AM) processes.Type: GrantFiled: June 5, 2020Date of Patent: January 3, 2023Assignee: MolyWorks Materials CorporationInventors: Stephen Ziegenfuss, Christopher Paul Eonta, Andrew VanOs LaTour
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Publication number: 20220168805Abstract: A deployable manufacturing center (DMC) system includes a foundry module containing a metallurgical system configured to convert a raw material into an alloy powder, and an additive manufacturing (AM) module containing an additive manufacturing system configured to form the alloy powder into metal parts. The deployable manufacturing center (DMC) system can also include a machining module containing a machining system configured to machine the metal parts into machined metal parts, and a quality conformance (QC) module containing an inspection and evaluation system configured to inspect and evaluate the metal parts. A process for manufacturing metal parts includes the steps of providing the deployable manufacturing center (DMC) system; deploying the (DMC) system to a desired location; forming an alloy powder from a raw material using the deployable foundry module; and then forming the metal parts from the alloy powder using the additive manufacturing (AM) module.Type: ApplicationFiled: January 24, 2022Publication date: June 2, 2022Applicant: MolyWorks Materials CorporationInventors: Andrew VanOs LaTour, Christopher Paul Eonta, Matthew Charles, Scott Steiner, Joel Cheng
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Publication number: 20210008620Abstract: A method for manufacturing small adaptive engines uses a battlefield repository having cloud services that is configured to enable additive manufacturing (AM) of engine parts and assemblies. The method also uses a compilation of recipes/signatures for building the engine parts and the assemblies using additive manufacturing (AM) processes and machine learning programs. An additive manufacturing system and an alloy powder suitable for performing the additive manufacturing (AM) processes can be provided. In addition, the engine parts can be built using the additive manufacturing (AM) system, the alloy powder, the battlefield repository and the compilation of recipes/signatures. A system for manufacturing small adaptive engines includes the battlefield repository, the compilation of recipes/signatures, a foundry system for providing the alloy powder and an additive manufacturing (AM) system configured to perform the additive manufacturing (AM) processes.Type: ApplicationFiled: June 5, 2020Publication date: January 14, 2021Applicant: MOLYWORKS MATERIALS CORPORATIONInventors: Stephen Ziegenfuss, CHRISTOPHER PAUL EONTA, ANDREW Vanos LaTOUR
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Publication number: 20210008621Abstract: An expeditionary additive manufacturing (ExAM) system for manufacturing metal parts includes a mobile foundry system configured to produce an alloy powder from a feedstock, and an additive manufacturing system configured to fabricate a part using the alloy powder. The additive manufacturing system includes a computer system having parts data and machine learning programs in signal communication with a cloud service. The parts data can include material specifications, drawings, process specifications, assembly instructions, and product verification requirements for the part. An expeditionary additive manufacturing (ExAM) method for making metal parts includes the steps of transporting the mobile foundry system and the additive manufacturing system to a desired location; making the alloy powder at the location using the mobile foundry system; and building a part at the location using the additive manufacturing system.Type: ApplicationFiled: July 7, 2020Publication date: January 14, 2021Applicant: MolyWorks Materials CorporationInventors: CHRISTOPHER PAUL EONTA, ANDREW Vanos LaTOUR, MATTHEW CHARLES, TOM REED, KAI PRAGER
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Publication number: 20200189000Abstract: A method for manufacturing metal components includes the steps of providing a waste feedstock having a selected chemical composition; producing an additive manufacturing (AM) grade alloy powder from the waste feedstock using a cold hearth mixing process; providing an additive manufacturing system; controlling the producing of the alloy powder such that the properties of the alloy powder optimize building of the components using the additive manufacturing system; and building the components using the alloy powder and the additive manufacturing system.Type: ApplicationFiled: October 11, 2019Publication date: June 18, 2020Applicant: MolyWorks Materials Corp.Inventors: Andrew VanOs LaTour, Christopher Paul Eonta, Mathew Charles, Andrew R. Clark, Valentine C. Sackmann
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Patent number: 10654106Abstract: A metallurgical system for producing metals and metal alloys includes a fluid cooled mixing cold hearth having a melting cavity configured to hold a raw material for melting into a molten metal, and a mechanical drive configured to mount and move the mixing cold hearth for mixing the raw material. The system also includes a heat source configured to heat the raw material in the melting cavity, and a heat removal system configured to provide adjustable insulation for the molten metal. The mixing cold hearth can be configured as a removal element of an assembly of interchangeable mixing cold hearths, with each mixing cold hearth of the assembly configured for melting a specific category of raw materials. A process includes the steps of providing the mixing cold hearth, feeding the raw material into the melting cavity, heating the raw material, and moving the mixing cold hearth during the heating step.Type: GrantFiled: February 17, 2018Date of Patent: May 19, 2020Assignee: MolyWorks Materials Corp.Inventors: Christopher Paul Eonta, Andrew Van Os LaTour, Scott Weston Steiner
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Publication number: 20180169761Abstract: A metallurgical system for producing metals and metal alloys includes a fluid cooled mixing cold hearth having a melting cavity configured to hold a raw material for melting into a molten metal, and a mechanical drive configured to mount and move the mixing cold hearth for mixing the raw material. The system also includes a heat source configured to heat the raw material in the melting cavity, and a heat removal system configured to provide adjustable insulation for the molten metal. The mixing cold hearth can be configured as a removal element of an assembly of interchangeable mixing cold hearths, with each mixing cold hearth of the assembly configured for melting a specific category of raw materials. A process includes the steps of providing the mixing cold hearth, feeding the raw material into the melting cavity, heating the raw material, and moving the mixing cold hearth during the heating step.Type: ApplicationFiled: February 17, 2018Publication date: June 21, 2018Applicant: MolyWorks Materials Corp.Inventors: CHRISTOPHER PAUL EONTA, ANDREW VAN OS LaTOUR, SCOTT WESTON STEINER
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Patent number: 9925591Abstract: A metallurgical system for producing metals and metal alloys includes a fluid cooled mixing cold hearth having a melting cavity configured to hold a raw material for melting into a molten metal, and a mechanical drive configured to mount and move the mixing cold hearth for mixing the raw material. The system also includes a heat source configured to heat the raw material in the melting cavity, and a heat removal system configured to provide adjustable insulation for the molten metal. The mixing cold hearth can be configured as a removal element of an assembly of interchangeable mixing cold hearths, with each mixing cold hearth of the assembly configured for melting a specific category of raw materials. A process includes the steps of providing the mixing cold hearth, feeding the raw material into the melting cavity, heating the raw material, and moving the mixing cold hearth during the heating step.Type: GrantFiled: August 21, 2015Date of Patent: March 27, 2018Assignee: MOLYWORKS MATERIALS CORP.Inventors: Christopher Paul Eonta, Andrew Van Os LaTour, Scott Weston Steiner
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Publication number: 20160052060Abstract: A metallurgical system for producing metals and metal alloys includes a fluid cooled mixing cold hearth having a melting cavity configured to hold a raw material for melting into a molten metal, and a mechanical drive configured to mount and move the mixing cold hearth for mixing the raw material. The system also includes a heat source configured to heat the raw material in the melting cavity, and a heat removal system configured to provide adjustable insulation for the molten metal. The mixing cold hearth can be configured as a removal element of an assembly of interchangeable mixing cold hearths, with each mixing cold hearth of the assembly configured for melting a specific category of raw materials. A process includes the steps of providing the mixing cold hearth, feeding the raw material into the melting cavity, heating the raw material, and moving the mixing cold hearth during the heating step.Type: ApplicationFiled: August 21, 2015Publication date: February 25, 2016Applicant: MOLYWORKS MATERIALS CORP.Inventors: CHRISTOPHER PAUL EONTA, ANDREW VAN OS LaTOUR, SCOTT WESTON STEINER