Acta Metallurgica Sinica (English Letters) ›› 2020, Vol. 33 ›› Issue (6): 774-788.DOI: 10.1007/s40195-020-01021-3
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Yue Su1, Shun-Cun Luo1, Liang Meng1, Piao Gao1, Ze-Min Wang1()
Received:
2019-11-21
Revised:
2020-01-06
Online:
2020-06-10
Published:
2020-06-17
Contact:
Ze-Min Wang
Yue Su, Shun-Cun Luo, Liang Meng, Piao Gao, Ze-Min Wang. Selective Laser Melting of In Situ TiB/Ti6Al4V Composites: Formability, Microstructure Evolution and Mechanical Performance[J]. Acta Metallurgica Sinica (English Letters), 2020, 33(6): 774-788.
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Fig.3 OM and SEM micrographs of cracks in the as-built samples with 3 wt% TiB2 on the longitudinal section at varied energy densities: a, e 156.25 J/mm3; b-d 104.17 J/mm3
Fig.5 Line graphs showing the variation of density with the content of TiB2 and optical micrographs showing the appearance of pores and cracks at different energy densities
Fig.10 SEM micrographs on the cross and longitudinal sections displaying the morphologies of matrix and TiB needles for the as-built samples at the energy density of 416.67 J/mm3: a, e 1 wt%, cross section; b, f 3 wt%, cross section; c, g 1 wt%, longitudinal section; d, h 3 wt%, longitudinal section
Fig.11 SEM micrographs on the cross section showing the microstructures of the as-built samples with 1 wt% TiB2 and the morphology of TiB phase at varied energy densities: a, e 416.67 J/mm3; b, f 250 J/mm3; c, g 156.25 J/mm3; d, h 104.17 J/mm3
Fig.12 SEM micrographs showing the microstructures of the as-built samples with 1 wt% TiB2 on the longitudinal section at varied energy densities: a 416.67 J/mm3; b 250 J/mm3; c 156.25 J/mm3; d 104.17 J/mm3
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