Invention Grant
- Patent Title: Refractory metal and alloy refining by laser forming and melting
- Patent Title (中): 耐火金属和合金精炼通过激光成形和熔化
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Application No.: US10501837Application Date: 2003-01-22
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Publication No.: US07651658B2Publication Date: 2010-01-26
- Inventor: Paul R. Aimone , Prabhat Kumar , Peter R. Jepson
- Applicant: Paul R. Aimone , Prabhat Kumar , Peter R. Jepson
- Applicant Address: US MA Newton
- Assignee: H.C. Starck Inc.
- Current Assignee: H.C. Starck Inc.
- Current Assignee Address: US MA Newton
- Agency: Connolly Bove Lodge & Hutz LLP
- International Application: PCT/US03/01825 WO 20030122
- International Announcement: WO03/062491 WO 20030731
- Main IPC: B22F5/00
- IPC: B22F5/00 ; B23K26/32

Abstract:
A process to chemically refine and consolidate tantalum, niobium and their alloys to a fabricated product of net shape or near-net shape with higher throughput, more consistency, and lower manufacturing costs compared to prior art routes or rejuvenate damaged and deteriorated refractory metal parts. Powder metal is loaded into hoppers to be fed into laser forming/melting equipment. A suitable substrate is loaded into a laser forming/melting chamber onto which the powder will be deposited and consolidated in a point-scan process. As the powder is fed onto successive points of the surface of the substrate in linear traces, the laser is used to heat and partially melt the substrate and completely melt the powder. A combined deposition and melt beam traces the substrate surface repeatedly over a selected area to build up a dense coating of controlled microstructure in multiple layers. A fully dense deposit is built up that becomes the desired shape.
Public/Granted literature
- US20050142021A1 Refractory metal and alloy refining by laser forming and melting Public/Granted day:2005-06-30
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