Acta Metallurgica Sinica (English Letters) ›› 2020, Vol. 33 ›› Issue (2): 183-203.DOI: 10.1007/s40195-020-00998-1
• Orginal Article • Next Articles
Guercio Giuseppe Del1, Manuela Galati1,3, Abdollah Saboori2,3(), Paolo Fino2,3, Luca Iuliano1,3
Received:
2019-08-04
Revised:
2019-10-24
Online:
2020-02-10
Published:
2020-03-23
Contact:
Saboori Abdollah
Guercio Giuseppe Del, Manuela Galati, Abdollah Saboori, Paolo Fino, Luca Iuliano. Microstructure and Mechanical Performance of Ti-6Al-4V Lattice Structures Manufactured via Electron Beam Melting (EBM): A Review[J]. Acta Metallurgica Sinica (English Letters), 2020, 33(2): 183-203.
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Fig. 2 Range of properties available to the engineer through foaming: a density; b thermal conductivity; c Young’s modulus; d compressive strength [55]
Fig. 4 Charts summarizing the relationship between relative density and relative modulus of elasticity a and relative compressive strength b derived from Ti-6Al-4V cellular structures [79]
Fig. 10 TEM micrographs of the mesh sample with density of 1.68 g/cm3, in which a is bright-field image, and b and c are dark-field images taken from the diffraction spots of the β phase and the α’ martensite noted by arrows in diffraction pattern d [66]
Fig. 12 FESEM surface images of as-fabricated a, surface-etched b and machined c specimens; surface conditions of as-fabricated a’, surface-etched b’ and machined c’ specimens observed under Alicona IFM [89]
Fig. 14 a Comparison between the CAD design (in blue) and the build struts (in green) at different construction angles; b aspect ratio with respect to construction angle [57]
Fig. 15 Relative elastic modulus with respect to relative density for different strut sizes: green curve for DCAD, the red dashed curve for DEQNUM, the orange curve for DEQGEOM. Experimental results are depicted in black [57]
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