Acta Metallurgica Sinica (English Letters) ›› 2018, Vol. 31 ›› Issue (11): 1215-1223.DOI: 10.1007/s40195-018-0768-7
• Orginal Article • Previous Articles Next Articles
Ji-Ying Xia1, Lin-Jiang Chai1(), Hao Wu1, Yan Zhi1(
), Yin-Ning Gou1, Wei-Jiu Huang1, Ning Guo2(
)
Received:
2018-03-21
Revised:
2018-04-28
Online:
2018-11-01
Published:
2018-11-08
Ji-Ying Xia, Lin-Jiang Chai, Hao Wu, Yan Zhi, Yin-Ning Gou, Wei-Jiu Huang, Ning Guo. EBSD Study of Microstructural and Textural Changes of Hot-Rolled Ti-6Al-4V Sheet After Annealing at 800 °C[J]. Acta Metallurgica Sinica (English Letters), 2018, 31(11): 1215-1223.
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Al | V | Fe | C | N | H | O | Ti |
---|---|---|---|---|---|---|---|
6.10 | 3.98 | 0.21 | 0.011 | 0.027 | 0.05 | 0.12 | Bal. |
Table 1 Chemical composition of the experimental material (wt%)
Al | V | Fe | C | N | H | O | Ti |
---|---|---|---|---|---|---|---|
6.10 | 3.98 | 0.21 | 0.011 | 0.027 | 0.05 | 0.12 | Bal. |
Fig. 2 ECC observations of the as-received a, the 800 °C-annealed c specimens; white boxes in a, c are magnified in b, d, respectively, with different phases labeled
Fig. 3 EDS analyses of the as-received specimen ECC images of microstructures of the annealed specimen are presented in Fig. 2c, d, from which remarkable changes can be noticed. After annealing at 800 °C for 5 h, the matrix grains are found to be evidently coarsened and the prior β phases distributed along α grain boundaries (Fig. 2a) seem to be completely replaced by a type of equiaxed structures. Figure 2d further reveals that a large number of fine plates exist inside the equiaxed structures, with an average value of plate widths measured to be ~?240 nm. Malinov et al. [24] demonstrated rapid cooling like quenching in cold water was able to trigger martensitic β?→?α transformation in TC4 alloy. Considering the suppressed diffraction peaks of the β phase (Fig. 1) in the annealed specimen, the fine plate structures in Fig. 2d are believed to correspond to martensites (α′) transformed from grown β phases.
Fig. 4 EBSD characterization: a band contrast (BC), b inverse pole figure (IPF) maps of the as-received specimen; c BC, d IPF maps of the 800 °C-annealed specimen. Black and gray lines in b, d indicate grain boundaries with θ?>?15° and 2°?<?θ?<?15°, respectively
Microstructural parameters | As-received | 800 °C-annealed | ||
---|---|---|---|---|
LABs | HABs | LABs | HABs | |
Fraction (%) | 65.8 | 34.2 | 49.4 | 50.6 |
Length per area (1/μm) | 1.01 | 0.52 | 0.47 | 0.47 |
Table 2 Fraction and specific lengths of LABs and HABs corresponding to the EBSD maps in Fig. 4
Microstructural parameters | As-received | 800 °C-annealed | ||
---|---|---|---|---|
LABs | HABs | LABs | HABs | |
Fraction (%) | 65.8 | 34.2 | 49.4 | 50.6 |
Length per area (1/μm) | 1.01 | 0.52 | 0.47 | 0.47 |
Fig. 6 Pole figures of a the as-received, d the 800 °C-annealed specimens; b, e recalculated pole figures for the circled orientations in a, d, respectively; c, f IPF maps corresponding to b, e, respectively
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