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Study on the role of deposition path in electron beam freeform fabrication process

Wuzhu Yan (Department of Engineering Mechanics, School of Mechanics, Civil Engineering and Architecture, Northwestern Polytechnical University, Xi’an, China)
Zhufeng Yue (Department of Engineering Mechanics, School of Mechanics, Civil Engineering and Architecture, Northwestern Polytechnical University, Xi’an, China)
Jianwen Feng (Beijing Aeronautical Science and Technology Research Institute of COMAC, Beijing, China)

Rapid Prototyping Journal

ISSN: 1355-2546

Article publication date: 17 October 2017

273

Abstract

Purpose

The present work aims to reveal the effect of deposition paths on transient temperature, transient stress, residual stress and residual warping in the electron beam freeform fabrication (EBF) process.

Design/methodology/approach

Six typical deposition paths were involved in the finite element (FE) simulations of EBF process by implementing a specially written program.

Findings

The results showed that the deposition path had a remarkable influence on heat transfer and transient temperature distribution in the scanning process, resulting in different residual stress and residual warping after cooling to room temperature. The largest and smallest temperature gradients were obtained from the zigzag and alternate-line paths, respectively. Meanwhile, the temperature gradient decreased with the increase of deposited layers. The optimum deposition path, namely, the alternate-line pattern, was determined with respect to the residual stress and residual warping.

Originality/value

Although some researcher revealed the importance of deposition path through FE analysis and experimental observation, their studies were usually confined within one type of deposition pattern. A complete investigation of typical deposition paths and comparison among them are still lacking in literature. To address the aforementioned gap, the present work started by extensive FE simulations of EBF process involving six representative deposition paths, namely, the alternate-line, zigzag, raster, inside-out spiral, outside-in spiral and Hilbert. For each deposition path, the transient temperature field, residual stress and residual deformation were obtained to optimize the deposition path.

Keywords

Acknowledgements

The authors appreciate the financial supports from Aeronautical Science Foundation of China (2016ZD53036) and the Fundamental Research Funds of the Central Universities (3102017jghk02006 and 3102015qd0035).

Citation

Yan, W., Yue, Z. and Feng, J. (2017), "Study on the role of deposition path in electron beam freeform fabrication process", Rapid Prototyping Journal, Vol. 23 No. 6, pp. 1057-1068. https://doi.org/10.1108/RPJ-03-2016-0043

Publisher

:

Emerald Publishing Limited

Copyright © 2017, Emerald Publishing Limited

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