Invention Grant
US09272369B2 Method for automated superalloy laser cladding with 3D imaging weld path control
有权
用于3D成像焊接路径控制的自动超级合金激光熔覆方法
- Patent Title: Method for automated superalloy laser cladding with 3D imaging weld path control
- Patent Title (中): 用于3D成像焊接路径控制的自动超级合金激光熔覆方法
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Application No.: US13936395Application Date: 2013-07-08
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Publication No.: US09272369B2Publication Date: 2016-03-01
- Inventor: Gerald J. Bruck , Ahmed Kamel
- Applicant: Gerald J. Bruck , Ahmed Kamel
- Applicant Address: US FL Orlando
- Assignee: Siemens Energy, Inc.
- Current Assignee: Siemens Energy, Inc.
- Current Assignee Address: US FL Orlando
- Main IPC: B23K26/34
- IPC: B23K26/34 ; B23K26/03 ; B23K26/00 ; B23K26/06 ; B23K26/08 ; B23K31/12 ; F01D5/00 ; B23K26/32

Abstract:
Superalloy components, such as service-degraded turbine blades and vanes, are clad by laser beam welding. The welding/cladding path, including cladding application profile, is determined by prior, preferably real time, non-contact 3D dimensional scanning of the component and comparison of the acquired dimensional scan data with specification dimensional data for the component. A welding path for cladding the scanned component to conform its dimensions to the specification dimensional data is determined. The laser welding apparatus, preferably in cooperation with a cladding filler material distribution apparatus, executes the welding path to apply the desired cladding profile. In some embodiments a post-weld non-contact 3D dimensional scan of the welded component is performed and the post-weld scan dimensional data are compared with the specification dimensional data. Preferably the welding path and/or cladding profile application are modified in a feedback loop with the pre- and/or post-welding 3D dimensional scanning.
Public/Granted literature
- US20150048058A1 METHOD FOR AUTOMATED SUPERALLOY LASER CLADDING WITH 3D IMAGING WELD PATH CONTROL Public/Granted day:2015-02-19
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