共 18 条
[1]
Kinzoku sekisou zoukei purosesu bunya no gijutsu senryaku sakutei ni mukete, Technology Strategy Center Foresight (TSC Foresight), 32, pp. 2-12, (2019)
[2]
Kitayama S., Miyakawa H., Takano M., Aiba S., Multi-objective optimization of injection molding process parameters for short cycle time and warpage reduction using conformal cooling channel, The International Journal of Advanced Manufacturing Technology, 88, pp. 1735-1744, (2017)
[3]
Saeidi K., Zapata D. L., Lofaj F., Kvetkova L., Olsen J., Shen Z., Akhtar F., Ultra-high strength martensitic 420 stainless steel with high ductility, Additive Manufacturing, 29, (2019)
[4]
Shi Y., Xiong X., Liu Z., Yang Y., Hou J., Wu S., Rao J. H., Zhang K., Huang A., Mechanical property evaluation of a slmed martensitic stainless steel, Acta Metallurgica Sinica (English Letters), 33, pp. 1466-1476, (2020)
[5]
Morita T., Oka Y., Tsutsumi S., Takesue S., Higuchi N., Sakai H., Short-time heat treatment for Ti-6Al-4V alloy produced by selective laser melting, Materials Transactions, 63, 6, pp. 854-863, (2022)
[6]
Kruth J. P., Deckers J., Yasa E., Wauthle R., Assessing and comparing influencing factors of residual stresses in selective laser melting using a novel analysis method, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 226, 6, pp. 980-991, (2012)
[7]
Mercelis P., Kruth J.P., Residual stresses in selective laser sintering and selective melting, Rapid Prototyping Journal, 12, 5, pp. 254-265, (2006)
[8]
Furumoto T., Fabrication of advanced molding by additive manufacturing, Journal of the Society of Instrument and Control Engineers, 54, 6, pp. 405-411, (2015)
[9]
Inoue Y., Sasaki S., Effect of laser scanning pattern on residual stress in Al-10%Si-0.5%Mg objects fabricated by laser powder bed fusion, Journal of The Japan Institute of Light Metals, 72, 5, pp. 172-177, (2022)
[10]
Robinson J., Ashton I., Fox P., Jones E., Sutcliffe C., Determination of the effect of scan strategy on residual stress in laser powder bed fusion additive manufacturing, Additive Manufacturing, 23, pp. 13-24, (2018)