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公开(公告)号:US10884392B2
公开(公告)日:2021-01-05
申请号:US16111006
申请日:2018-08-23
Applicant: Autodesk, Inc.
Inventor: Lee Sanders , Daniel Mario Noviello
IPC: G05B19/404 , G05B19/4093 , B23Q15/22 , B23Q15/18 , G06F30/17 , G06F30/20
Abstract: Methods, systems, and apparatus, including medium-encoded computer program products, for computer aided design and manufacture of physical structures using subtractive manufacturing systems and techniques and a determined stock allowance include, in one aspect, a method including: obtaining a finishing toolpath specification for three dimensional (3D) geometry of a part; generating 3D geometry of a model of a semi-finished structure in accordance with a computer simulation of deflections experienced by a workpiece as stock material is cut from the workpiece using the finishing toolpath specification; creating a semi-finishing toolpath specification for the semi-finished structure; and providing the semi-finishing toolpath specification for use in machining the part by cutting away a first portion of the stock material using the semi-finishing toolpath specification to form the semi-finished structure, followed by performing a finishing operation of the semi-finished structure by cutting away a second portion of the stock material to form the part.
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公开(公告)号:US20200242204A1
公开(公告)日:2020-07-30
申请号:US16257729
申请日:2019-01-25
Applicant: Autodesk, Inc.
Inventor: Daniel Mario Noviello , Fikret Kalay , Akmal Ariff Bin Abu Bakar
Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for predictive machining for forging distortions. In one aspect, a method includes obtaining a mesh model of a machined part to be machined from a forged part and residual stress field data for the forged part, where the mesh model includes multiple nodes corresponding to at least one boundary of the machined part, updating the mesh model by applying the residual stress field data to the multiple nodes corresponding to the at least one boundary to change positions of the multiple nodes in the mesh model, repeating the updating until an amount of change to each of the positions of the multiple nodes in the mesh model satisfies a correction criteria, and providing the compensated mesh model for use in machining the machined part from the forged part.
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公开(公告)号:US11263373B2
公开(公告)日:2022-03-01
申请号:US16257729
申请日:2019-01-25
Applicant: Autodesk, Inc.
Inventor: Daniel Mario Noviello , Fikret Kalay , Akmal Ariff Bin Abu Bakar
Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for predictive machining for forging distortions. In one aspect, a method includes obtaining a mesh model of a machined part to be machined from a forged part and residual stress field data for the forged part, where the mesh model includes multiple nodes corresponding to at least one boundary of the machined part, updating the mesh model by applying the residual stress field data to the multiple nodes corresponding to the at least one boundary to change positions of the multiple nodes in the mesh model, repeating the updating until an amount of change to each of the positions of the multiple nodes in the mesh model satisfies a correction criteria, and providing the compensated mesh model for use in machining the machined part from the forged part.
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公开(公告)号:US20200064809A1
公开(公告)日:2020-02-27
申请号:US16111006
申请日:2018-08-23
Applicant: Autodesk, Inc.
Inventor: Lee Sanders , Daniel Mario Noviello
IPC: G05B19/404 , G05B19/4093 , B23Q15/18 , B23Q15/22 , G06F17/50
Abstract: Methods, systems, and apparatus, including medium-encoded computer program products, for computer aided design and manufacture of physical structures using subtractive manufacturing systems and techniques and a determined stock allowance include, in one aspect, a method including: obtaining a finishing toolpath specification for three dimensional (3D) geometry of a part; generating 3D geometry of a model of a semi-finished structure in accordance with a computer simulation of deflections experienced by a workpiece as stock material is cut from the workpiece using the finishing toolpath specification; creating a semi-finishing toolpath specification for the semi-finished structure; and providing the semi-finishing toolpath specification for use in machining the part by cutting away a first portion of the stock material using the semi-finishing toolpath specification to form the semi-finished structure, followed by performing a finishing operation of the semi-finished structure by cutting away a second portion of the stock material to form the part.
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