J. Mater. Sci. Technol. ›› 2019, Vol. 35 ›› Issue (9): 2027-2037.DOI: 10.1016/j.jmst.2019.05.008
• Orginal Article • Previous Articles Next Articles
Hua Tanab*(), Mengle Guoa, Adam T. Clarecd, Xin Linab*(
), Jing Chenab, Weidong Huanga
Received:
2019-01-13
Revised:
2019-03-07
Accepted:
2019-04-25
Online:
2019-09-20
Published:
2019-07-26
Contact:
Tan Hua,Lin Xin
About author:
1 These authors contributed equally to this work.
Hua Tan, Mengle Guo, Adam T. Clare, Xin Lin, Jing Chen, Weidong Huang. Microstructure and properties of Ti-6Al-4V fabricated by low-power pulsed laser directed energy deposition[J]. J. Mater. Sci. Technol., 2019, 35(9): 2027-2037.
Fig. 1. Illustration of pulsed laser deposition experiment, (a) schematic diagram of system, (b) schematic diagram of thin-wall laser deposition process, (c) Ti-6Al-4V thin-wall sample deposited.
Fig. 2. Preparation of the samples for metallographic observation and tensile test, (a) schematic illustration of specimen extractions, (b) dimensions of the test specimen, (c) tensile test samples arranged as built.
Fig. 3. Morphologies of prior β grains of Ti-6Al-4V thin wall, (a) the bottom, (b) the middle, (c) the top and (d) local enlargement of typical morphology.
Fig. 4. Solidification analysis of the melt pool, (a) schematic relationship among scanning velocity Vb, solidification velocity Vs and melt pool boundary, (b) the calculated CET curve (calculated from Lin’s model [28]) and schematic solidification condition at the melt pool tail.
Fig. 5. Mechanism of the wavy epitaxial growth of β grain, (a) temperature fields simulation by FEM with laser scanning back and forth, (b) schematic of the wavy growth.
Fig. 8. Analysis of the top of the sample, (a) schematic of deposited layer formation at the top of the sample, (b) microstructure observed at the top of the sample and diagram of deposition layer marking.
Fig. 9. Microstructures in the same β grain and final five layers of the sample, (a), (b) the microstructures of the last layer, (c), (d) the microstructures of the last second layer, (e), (f) the microstructures of the last third layer, (g), (h) the microstructures of the last fourth layer, and (i), (j) the microstructures of the last fifth layer.
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