Quantifying Residual Stresses Generated by Laser-Powder Bed Fusion of Metallic Samples
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-50474-7_1
Reference11 articles.
1. Patterson, E.A., Lambros, J., Magana-Carranza, R., Sutcliffe, C.J.: Residual stress effects during additive manufacturing of reinforced thin nickel–chromium plates. Int. J. Adv. Manuf. Technol. 123, 1845–1857 (2022)
2. Blakey-Milner, B., Gradl, P., Snedden, G., Brooks, M., Pitot, J., Lopez, E., Leary, M., Berto, F., du Plessis, A.: Metal additive manufacturing in aerospace: a review. Mater. Des. 209, 110008 (2021)
3. Li, C., Liu, Z.Y., Fang, X.Y., Guo, Y.B.: Residual stress in metal additive manufacturing. Procedia CIRP. 71, 348–353 (2018)
4. Kruth, J., Deckers, J., Yasa, E., Wauthlé, R.: Assessing and comparing influencing factors of residual stresses in selective laser melting using a novel analysis method. Proc. Inst. Mech. Eng. B J. Eng. Manuf. 226(6), 980–991 (2012)
5. Li, C., Guo, Y., Fang, X., Fang, F.: A scalable predictive model and validation for residual stress and distortion in selective laser melting. CIRP Ann. 67(1), 249–252 (2018)
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