Acta Metallurgica Sinica (English Letters) ›› 2018, Vol. 31 ›› Issue (3): 281-289.DOI: 10.1007/s40195-017-0624-1
Special Issue: 2018年钢铁材料专辑
• Orginal Article • Previous Articles Next Articles
Zhi-Nan Wang1, Tian Liang1(
), Wei-Wei Xing1, Ai-Bing Du12, Ming Gao1, Ying-Che Ma1, Kui Liu1
Received:2017-02-09
Revised:2017-04-10
Online:2018-03-15
Published:2018-03-19
Zhi-Nan Wang, Tian Liang, Wei-Wei Xing, Ai-Bing Du1, Ming Gao, Ying-Che Ma, Kui Liu. σ-Phase Precipitation Mechanism of 15Cr-15Ni Titanium-Modified Austenitic Stainless Steel During Long-Term Thermal Exposure[J]. Acta Metallurgica Sinica (English Letters), 2018, 31(3): 281-289.
Fig. 1 a BSE micrographs of the cold-rolled sample BF STEM image of the cold-rolled sample; b BF STEM image; c the TEM-lining analysis of MC-type carbide
Fig. 2 BSE micrographs of the samples with different aging treatments: a-e samples aged at 700 °C for 72, 96, 120, 144 and 168 h; f SEM-EDS analysis of a new precipitate phase
| Element | Ti | Cr | Mn | Ni | Mo | Si | V | Fe |
|---|---|---|---|---|---|---|---|---|
| σ-matrix GB | 1.31 | 10.98 | 1.119 | 6.478 | 34.41 | 4.103 | 0.111 | Bal. |
| σ-around MC | 1.097 | 11.61 | 1.994 | 5.787 | 42.91 | 2.323 | 0.891 | Bal. |
Table 1 The chemical compositions (wt%) of the σ-phase from EDX measurements
| Element | Ti | Cr | Mn | Ni | Mo | Si | V | Fe |
|---|---|---|---|---|---|---|---|---|
| σ-matrix GB | 1.31 | 10.98 | 1.119 | 6.478 | 34.41 | 4.103 | 0.111 | Bal. |
| σ-around MC | 1.097 | 11.61 | 1.994 | 5.787 | 42.91 | 2.323 | 0.891 | Bal. |
| C | Si | Ti | V | Cr | Mn | Ni | Mo | Fe | |
|---|---|---|---|---|---|---|---|---|---|
| MC-in matrix | 18.3 | 0.12 | 16.4 | 0.06 | 3.86 | 1.53 | 8.81 | 5.75 | Bal. |
| MC-GB | 29.1 | - | 57.5 | 1.05 | 0.29 | - | - | 11.46 | Bal. |
Table 2 The chemical compositions (wt%) of the MC phase from EDX measurements
| C | Si | Ti | V | Cr | Mn | Ni | Mo | Fe | |
|---|---|---|---|---|---|---|---|---|---|
| MC-in matrix | 18.3 | 0.12 | 16.4 | 0.06 | 3.86 | 1.53 | 8.81 | 5.75 | Bal. |
| MC-GB | 29.1 | - | 57.5 | 1.05 | 0.29 | - | - | 11.46 | Bal. |
| Sample | 700 °C-72 h | 700 °C-96 h | 700 °C-120 h | 700 °C-144 h | 700 °C-168 h |
|---|---|---|---|---|---|
| Length of σ-phase (μm) | 0.45 | 0.44 | 0.47 | 0.45 | 0.47 |
Table 3 Average length of σ-phase
| Sample | 700 °C-72 h | 700 °C-96 h | 700 °C-120 h | 700 °C-144 h | 700 °C-168 h |
|---|---|---|---|---|---|
| Length of σ-phase (μm) | 0.45 | 0.44 | 0.47 | 0.45 | 0.47 |
| Sample | 600 °C-96 h | 700 °C-96 h | 750 °C-96 h |
|---|---|---|---|
| Average length of σ-phase (μm) | - | 0.44 | 1.53 |
Table 4 Average length of the σ-phase
| Sample | 600 °C-96 h | 700 °C-96 h | 750 °C-96 h |
|---|---|---|---|
| Average length of σ-phase (μm) | - | 0.44 | 1.53 |
Fig. 7 TEM micrographs, SAED of samples with different aging treatments: TEM micrographs: a 600 °C for 96 h; b, c 700 °C for 96 h and 144 h; d 750 °C for 96 h; e SAED pattern of the (Ti, Mo)C and σ-phase in Fig. 7d; f HRTEM image of the σ-phase and the (Ti, Mo)C with the arrow in Fig. 7d
Fig. 9 TEM micrographs of the samples aged 750 °C for 96 h; high fault density in σ-phase precipitated on a grain boundary and b at the interface of (Ti, Mo)C and matrix
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