METHOD FOR ADDITIVE MANUFACTURING
申请公布号:US2015086409(A1)
申请号:US201414452294
申请日期:2014.08.05
申请公布日期:2015.03.26
发明人:Hellestam Calle
分类号:B22F3/105;B28B1/00;B29C67/00
主分类号:B22F3/105
地址:Moelndal SE
摘要:A method for forming a three-dimensional article comprising applying a first powder layer on a work table; directing a first energy causing said first powder layer to fuse in first selected locations to form a first cross section where said first energy beam is fusing a first region with parallel scan lines in a first direction and a second region with parallel scan lines in a second direction; fusing at least one of the scan lines in said first region in said first direction immediately before fusing at least one of said scan lines in said second region in said second direction; applying a second powder layer and directing the energy beam causing said second powder layer to fuse in second selected locations where the energy beam is fusing said first region with parallel scan lines in a third direction and said second region in a fourth direction.
主权项:1. A method for forming at least two separate three-dimensional regions through successive fusion of parts of a powder bed, which parts correspond to successive cross sections of the three-dimensional regions, said method comprising the steps of: providing at least one model of said three-dimensional regions; applying a first powder layer on a work table; directing a first energy beam from a first energy beam source over said work table causing said first powder layer to fuse in first selected locations according to the corresponding at least one model to form a first cross section of said three-dimensional regions, where said first energy beam is fusing a first region with parallel scan lines in a first direction and a second region with parallel scan lines in a second direction; fusing at least one of said scan lines in said first region in said first direction immediately before fusing at least one of said scan lines in said second region in said second direction; applying a second powder layer on the at least partially fused first powder layer; directing the energy beam over said work table causing said second powder layer to fuse in second selected locations according to the corresponding at least one model to form a second cross section of said three-dimensional regions, where the energy beam is fusing said first region with parallel scan lines in a third direction and said second region with parallel scan lines in a fourth direction; and fusing at least one of said scan lines in said first region in said third direction immediately before fusing at least one of said scan lines in another region in said fourth direction.
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