Baker Hughes had 13 patents in 3D printing during Q2 2024. Baker Hughes Co filed patents in Q2 2024 for an additive manufacturing system with a contaminant remover, anomaly detection methods for additive manufacturing using meltpool monitoring, an electrical submersible pumping system with a lubricant pump, and a solid oxide fuel cell with a current collector of specific composition. GlobalData’s report on Baker Hughes gives a 360-degree view of the company including its patenting strategy. Buy the report here.
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Baker Hughes had no grants in 3D printing as a theme in Q2 2024.
Recent Patents
Application: Additive manufacturing systems with a contaminant removal system and methodologies for removing contaminants during additive manufacturing processes (Patent ID: US20240189909A1)
The patent filed by Baker Hughes Co. describes an additive manufacturing system that includes an apparatus with a build chamber, platform, material delivery system, laser system, and contaminant remover. The system is controlled by circuitry to manufacture objects by melting feedstock material and removing contaminants from the top layer of the objects during the manufacturing process. The contaminant remover can include components like a contaminant abrader or nozzles connected to a gas displacement mechanism for removing contaminants effectively.
Additionally, the patent details a material delivery system for the additive manufacturing system, which includes a powder outlet, powder leveler, and contaminant remover to ensure the quality of the manufactured objects. The contaminant remover in the material delivery system can consist of a contaminant abrader with contact components like blades or brushes for mechanical abrasion. The method outlined in the patent involves controlling the additive manufacturing apparatus, contaminant remover, and material delivery system to form layers of objects, remove contaminants, and deposit subsequent layers of feedstock material accurately. The control circuitry plays a crucial role in managing the operation of the additive manufacturing system for efficient and contaminant-free object production.
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