Acta Metallurgica Sinica (English Letters) ›› 2024, Vol. 37 ›› Issue (10): 1667-1679.DOI: 10.1007/s40195-024-01748-3
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Le Xia1, Haijun Su1,2(), Quandong Hu1,3, Yinuo Guo1,2, Peixin Yang1, Hongliang Gao1, Minghui Yu1, Min Guo1, Zhuo Zhang1, Lin Liu1, Hengzhi Fu1
Received:
2024-02-16
Revised:
2024-03-30
Accepted:
2024-04-09
Online:
2024-10-10
Published:
2024-07-22
Contact:
Haijun Su, shjnpu@nwpu.edu.cn.Le Xia, Haijun Su, Quandong Hu, Yinuo Guo, Peixin Yang, Hongliang Gao, Minghui Yu, Min Guo, Zhuo Zhang, Lin Liu, Hengzhi Fu. Effects of Post-Heat Treatment and Carbide Precipitates on Strength-Ductility Balance of GH3536 Superalloy Prepared by Selective Laser Melting[J]. Acta Metallurgica Sinica (English Letters), 2024, 37(10): 1667-1679.
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Ni | Cr | Fe | Mo | Co | W | C | Al | Ti | B | Si | O |
---|---|---|---|---|---|---|---|---|---|---|---|
Bal. | 22.60 | 19.10 | 9.66 | 1.98 | 0.60 | 0.10 | 0.26 | 0.059 | 0.0098 | 0.13 | 0.025 |
Table 1 Chemical composition in GH3536 used in the present study (wt%)
Ni | Cr | Fe | Mo | Co | W | C | Al | Ti | B | Si | O |
---|---|---|---|---|---|---|---|---|---|---|---|
Bal. | 22.60 | 19.10 | 9.66 | 1.98 | 0.60 | 0.10 | 0.26 | 0.059 | 0.0098 | 0.13 | 0.025 |
Fig. 1 a Parts of the SLM equipment; b build strategy of samples; c SEM image showing the morphology of GH3536 powders; d corresponding size distribution of the powders
Sample | Condition |
---|---|
AB | As-built |
HT1 | 1177 °C/1 h, AC + 650 °C/6 h, AC |
HT2 | 1177 °C/1 h, AC + 745 °C/6 h, AC |
HT3 | 1177 °C/1 h, AC + 900 °C/6 h, AC |
Table 2 Heat treatment system used in this study to prepare GH3536 by SLM
Sample | Condition |
---|---|
AB | As-built |
HT1 | 1177 °C/1 h, AC + 650 °C/6 h, AC |
HT2 | 1177 °C/1 h, AC + 745 °C/6 h, AC |
HT3 | 1177 °C/1 h, AC + 900 °C/6 h, AC |
Fig. 4 Microstructure of a as-deposited, b HT1, c HT2 and d HT3 samples. Top images are cross section, middle images are longitudinal section and the bottom ones are partial magnification of the longitudinal section
Fig. 7 EBSD analysis showing the grain orientation, grain morphology, and recrystallization of the as-deposited and HT-ed samples prepared by SLM. a-d IPF images and e-h recrystallization images and i-l grain boundaries maps of the as-deposited, HT1, HT2 and HT3 samples, respectively. Blue area: sample recrystallization; yellow area: sample substructure; red area: sample deformation
Fig. 10 Room temperature mechanical properties of GH3536 prepared by SLM: a engineering stress-strain curves of samples, b the elongation of the as-deposited GH3536 under different heat treatments
Fig. 11 SEM images of fracture surfaces for GH3536 by SLM: a as-deposited sample, b HT1 sample, c HT2 sample and d HT3 sample. The locally magnified image of AB, HT1, HT2, HT3 samples are a1, b1, c1, d1, respectively
Fig. 12 a Tensile properties of HT-ed GH3536 in comparison with the previously reported GH3536 fabricated using SLM followed by other heat treatment processes produced by SLM; b a complex turbofan of GH3536 manufactured via SLM
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