Numerical Evaluation of Advanced Laser Control Strategies Influence on Residual Stresses for Laser Powder Bed Fusion Systems

被引:0
|
作者
Massimo Carraturo
Brandon Lane
Ho Yeung
Stefan Kollmannsberger
Alessandro Reali
Ferdinando Auricchio
机构
[1] University of Pavia,Department of Civil Engineering and Architecture
[2] Engineering Laboratory,Chair of Computational Modeling and Simulation
[3] National Institute of Standards and Technology,undefined
[4] Technische Universität München,undefined
关键词
Selective laser melting; Finite cell method; Residual stress; Thermo-mechanical analysis; Inconel 625;
D O I
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学科分类号
摘要
Process-dependent residual stresses are one of the main burdens to a widespread adoption of laser powder bed fusion technology in industry. Residual stresses are directly influenced by process parameters, such as laser path, laser power, and speed. In this work, the influence of various scan speed and laser power control strategies on residual stresses is investigated. A set of nine different laser scan patterns is printed by means of a selective laser melting process on a bare plate of nickel superalloy 625 (IN625). A finite element model is experimentally validated comparing the simulated melt pool areas with high-speed thermal camera in situ measurements. Finite element analysis is then used to evaluate residual stresses for the nine different laser scan control strategies, in order to identify the strategy which minimizes the residual stress magnitude. Numerical results show that a constant power density scan strategy appears the most effective to reduce residual stresses in the considered domain.
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页码:435 / 445
页数:10
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