Prediction and understanding of non-linear distortion on large curved wall manufactured by wire-arc direct energy deposition

被引:2
|
作者
Lee, Yousub [1 ]
Nycz, Andrzej [2 ]
Simunovic, Srdjan [1 ]
Meyer, Luke [2 ]
Vaughan, Derek [2 ]
Carter, William [2 ]
Babu, Sudarsanam S. [3 ]
Vaughan, Joshua [2 ]
Love, Lonnie [2 ]
机构
[1] Oak Ridge Natl Lab, Computat Sci & Engn Div, Oak Ridge, TN 37830 USA
[2] Oak Ridge Natl Lab, Mfg Sci Div, Oak Ridge, TN USA
[3] Univ Tennessee, Dept Mech Aerosp & Biomed Engn, Knoxville, TN USA
来源
关键词
Wire-arc direct energy deposition; Finite element method; Distortion mechanism; Additive manufacturing; Maintenance pauses; RESIDUAL-STRESS;
D O I
10.1016/j.addlet.2023.100173
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Wire-arc direct energy deposition (wire-arc DED) has been developed to manufacture large-scale metal products with high deposition rates, low material cost, and high material efficiency. However, dynamically varying printing conditions and complex geometries frequently lead to unfavorable part distortions during and after printing which are magnified as part sizes increase. In this study, an effective computational simulation method was developed for large-scale 316 L stainless steel parts using finite element method. The model was validated with the measured distortion using a 3D laser scanner. The distribution of deviation is within 16 % (=1.6 mm) against a measured value for a 483.6 mm tall part with 248 layers, with excellent agreement with the spatial pattern of distortion. The dynamic part deformation during printing and cooling was tracked using vision camera to investigate the thermo-mechanical deformation mechanism. The result showed that long pauses during machine maintenance pauses have strong influence on part distortion.
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页数:8
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