Acta Metallurgica Sinica (English Letters) ›› 2018, Vol. 31 ›› Issue (11): 1224-1232.DOI: 10.1007/s40195-018-0790-9
Special Issue: 2017-2018高温合金专辑; 2018-2019高温合金专辑
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													Da-Wei Han1, Lian-Xu Yu2, Fang Liu3, Bin Zhang1, Wen-Ru Sun3(
)
												  
						
						
						
					
				
Received:2018-03-09
															
							
																	Revised:2018-05-11
															
							
															
							
																	Online:2018-11-01
															
							
																	Published:2018-11-08
															
						Da-Wei Han, Lian-Xu Yu, Fang Liu, Bin Zhang, Wen-Ru Sun. Effect of Heat Treatment on the Microstructure and Mechanical Properties of the Modified 718 Alloy[J]. Acta Metallurgica Sinica (English Letters), 2018, 31(11): 1224-1232.
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| Alloy | C | Ni | Cr | Al | Ti | Nb | Mo | P | B | Fe | 
|---|---|---|---|---|---|---|---|---|---|---|
| M718 | 0.04 | 53.0 | 19.0 | 0.70 | 1.10 | 4.80 | 7.50 | 0.002 | 0.004 | Bal. | 
| 718 | 0.04 | 53.0 | 19.0 | 0.50 | 1.00 | 5.30 | 3.10 | 0.002 | 0.004 | Bal. | 
Table 1 Chemical composition of the tested alloys (wt%)
| Alloy | C | Ni | Cr | Al | Ti | Nb | Mo | P | B | Fe | 
|---|---|---|---|---|---|---|---|---|---|---|
| M718 | 0.04 | 53.0 | 19.0 | 0.70 | 1.10 | 4.80 | 7.50 | 0.002 | 0.004 | Bal. | 
| 718 | 0.04 | 53.0 | 19.0 | 0.50 | 1.00 | 5.30 | 3.10 | 0.002 | 0.004 | Bal. | 
| HT No. | Solution | Aging | 
|---|---|---|
| 1 | 960 °C?×?1 h, AC | 720 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
| 2 | 960 °C?×?1 h, AC | 750 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
| 3 | 1020 °C?×?1 h, AC | 750 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
| 4 | 1050 °C?×?1 h, AC | 750 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
Table 2 Heat treatment preformed on the tested alloys
| HT No. | Solution | Aging | 
|---|---|---|
| 1 | 960 °C?×?1 h, AC | 720 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
| 2 | 960 °C?×?1 h, AC | 750 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
| 3 | 1020 °C?×?1 h, AC | 750 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
| 4 | 1050 °C?×?1 h, AC | 750 °C?×?8 h, cooled at 55 °C/h to 620 °C, 620 °C?×?8 h, AC | 
																													Fig. 5 TEM images of γ″ phase and γ′ phase of M718 alloy treated by HT1 a, HT3 b, 718 alloy treated by HT1 c, d SAED pattern taken from the [001] matrix zone axis of M718 alloy
| Alloy | Heat No. | Room temperature | 680 °C | ||||||
|---|---|---|---|---|---|---|---|---|---|
| UTS (MPa) | YS (MPa) | EL (%) | RA (%) | UTS (MPa) | YS (MPa) | EL (%) | RA (%) | ||
| M718 alloy | HT1 | 1342 | 1005 | 17.0 | 15.9 | 1102 | 836 | 28.0 | 24.0 | 
| HT2 | 1378 | 1081 | 19.3 | 19.1 | 1149 | 890 | 18.3 | 21.2 | |
| HT3 | 1413 | 1121 | 20.7 | 30.1 | 1178 | 922 | 25.3 | 16.6 | |
| HT4 | 1414 | 1120 | 26.0 | 35.0 | 1130 | 895 | 14.0 | 23.0 | |
| 718 alloy | HT1 | 1479 | 1201 | 25.3 | 43.4 | 1121 | 975 | 19.4 | 16.1 | 
Table 3 Tensile properties of the tested alloys at room temperature and 680 °C
| Alloy | Heat No. | Room temperature | 680 °C | ||||||
|---|---|---|---|---|---|---|---|---|---|
| UTS (MPa) | YS (MPa) | EL (%) | RA (%) | UTS (MPa) | YS (MPa) | EL (%) | RA (%) | ||
| M718 alloy | HT1 | 1342 | 1005 | 17.0 | 15.9 | 1102 | 836 | 28.0 | 24.0 | 
| HT2 | 1378 | 1081 | 19.3 | 19.1 | 1149 | 890 | 18.3 | 21.2 | |
| HT3 | 1413 | 1121 | 20.7 | 30.1 | 1178 | 922 | 25.3 | 16.6 | |
| HT4 | 1414 | 1120 | 26.0 | 35.0 | 1130 | 895 | 14.0 | 23.0 | |
| 718 alloy | HT1 | 1479 | 1201 | 25.3 | 43.4 | 1121 | 975 | 19.4 | 16.1 | 
| Alloy | HT No. | Life (h) | Elongation (%) | 
|---|---|---|---|
| M718 alloy | HT1 | 22.6 | 16.8 | 
| HT2 | 22.8 | 22.3 | |
| HT3 | 22.6 | 21.0 | |
| HT4 | 23.1 | 11.4 | |
| 718 alloy | HT1 | 4.6 | 21.6 | 
Table 4 Stress rupture properties of the tested alloys at 680 °C and 725 MPa
| Alloy | HT No. | Life (h) | Elongation (%) | 
|---|---|---|---|
| M718 alloy | HT1 | 22.6 | 16.8 | 
| HT2 | 22.8 | 22.3 | |
| HT3 | 22.6 | 21.0 | |
| HT4 | 23.1 | 11.4 | |
| 718 alloy | HT1 | 4.6 | 21.6 | 
																													Fig. 9 Microstructures of cross section of the tested alloys ruptured at 680 °C and 725 MPa: a, c M718 alloy treated by HT1, b, d 718 alloy treated by HT1
 
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