Acta Metallurgica Sinica (English Letters) ›› 2021, Vol. 34 ›› Issue (4): 523-533.DOI: 10.1007/s40195-020-01118-9
Previous Articles Next Articles
					
													Bin-Bin Wu1, Zhi-Quan Wang1, Cheng-Jia Shang1,2( ), Yi-Shuang Yu1, Devesh Misra3
), Yi-Shuang Yu1, Devesh Misra3
												  
						
						
						
					
				
Received:2020-03-16
															
							
																	Revised:2020-05-09
															
							
																	Accepted:2020-06-05
															
							
																	Online:2021-04-10
															
							
																	Published:2021-03-30
															
						Contact:
								Cheng-Jia Shang   
													About author:Cheng Jia Shang, cjshang@ustb.edu.cnBin-Bin Wu, Zhi-Quan Wang, Cheng-Jia Shang, Yi-Shuang Yu, Devesh Misra. Nucleation Analysis of Variant Transformed from Austenite with Σ3 Boundary in High-Strength Low-Alloy Steel[J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 523-533.
Add to citation manager EndNote|Ris|BibTeX
 
																													Fig. 2 SEM micrographs and band contrast (BC) maps depicting boundary distribution: a, e quenching, b, f 400 °C, c, g 450 °C, d, h 500 °C (white line: 15°>θ>5°, black line: 45°>θ>15°, yellow line: θ>45°)
| Sample | Quenching | Isothermal treatment at 400 °C | Isothermal treatment at 450 °C | Isothermal treatment at 500 °C | 
|---|---|---|---|---|
| Hardness (HV) | 325 (±16) | 305 (±7) | 285 (±3) | 273 (±11) | 
Table 1 Hardness of isothermal transformation
| Sample | Quenching | Isothermal treatment at 400 °C | Isothermal treatment at 450 °C | Isothermal treatment at 500 °C | 
|---|---|---|---|---|
| Hardness (HV) | 325 (±16) | 305 (±7) | 285 (±3) | 273 (±11) | 
| Sample | OR | 
|---|---|
| Quenching | 119.9°, 9.0°, 196.6° | 
| 400 °C | 120.6°, 9.2°, 196.0° | 
| 450 °C | 122.1°, 9.2°, 194.6° | 
| 500 °C | 117.4°, 8.6°, 198.7° | 
Table 2 Average orientation relationships (ORs)
| Sample | OR | 
|---|---|
| Quenching | 119.9°, 9.0°, 196.6° | 
| 400 °C | 120.6°, 9.2°, 196.0° | 
| 450 °C | 122.1°, 9.2°, 194.6° | 
| 500 °C | 117.4°, 8.6°, 198.7° | 
 
																													Fig. 5 Inverse pole figure (IPF) showing coinciding variants a, band contrast map b, corresponding experimental and theoretical pole figure c of Quenching sample (white line: 15°>θ>5°, black line: θ>15°)
 
																													Fig. 6 IPF figure showing coinciding variants a, band contrast map b and corresponding experimental and theoretical pole figure c of 450 °C isothermal transformation sample (white line: 15°>θ>5°, black line: θ>15°)
 
																													Fig. 7 IPF figure showing coinciding variants a, band contrast map b and corresponding experimental and theoretical pole figure c of 500 °C isothermal transformation sample (white line: 15°>θ>5°, black line: θ>15°)
 
																													Fig. 8 Band contrast map a showing coinciding variants and grain boundary distribution and corresponding experimental b and theoretical pole figure c of 400 °C isothermal process (white line: 15°>θ>5°, black line: θ>15°)
 
																													Fig. 9 Schematic diagram a, experimental observation b of grain boundary nucleation for bainite transformation and schematic diagram of nucleation at the austenite Σ3 boundary for 450 c and 500 °C d isothermal transformation
| [1] | N.J. Petch, J. Iron Steel Inst. 174 25 (1953) | 
| [2] | J.W. Morris Jr., C.S. Lee, Z. Guo, ISIJ Int. 43 410 (2003) | 
| [3] | X.J. Wang, X.J. Sun, C. Song, H. Chen, S. Tong, W. Han, F. Pan, Acta Metall. Sin. Engl. Lett. 32 746 (2019) | 
| [4] | H. Kitahara, R. Ueji, N. Tsuji, Y. Minamino, Acta Mater. 54 1279 (2006) | 
| [5] | F.G. Caballero, H.K.D.H. Bhadeshia, Curr. Opin. Solid State Mater. Sci. 8 251 (2004) | 
| [6] | A. Leiro, A. Roshan, K.G. Sundin, E. Vuorinen, B. Prakash, Acta Metall. Sin. Engl. Lett. 27 55 (2014) | 
| [7] | H.F. Lan, L.X. Du, N. Zhou, X.H. Liu, Acta Metall. Sin. Engl. Lett. 27 19 (2014) | 
| [8] | S. Morito, H. Yoshida, T. Maki, X. Huang, Mater. Sci. Eng. A 438 237 (2005) | 
| [9] | X.L. Wang, Z.Q. Wang, L.L. Dong, C.J. Shang, X.P. Ma, S.V. Subramanian, Mater. Sci. Eng. A 704 448 (2017) | 
| [10] | A. Stormvinter, G. Miyamoto, T. Furuhara, P. Hedstrom, A. Borgenstam, Acta Mater. 60 7265 (2012) DOI URL PMID | 
| [11] | X.L. Wang, X.P. Ma, Z.Q. Wang, S.V. Subramanian, Z.J. Xie, C.J. Shang, X.C. Li, Mater. Charact. 149 26 (2019) | 
| [12] | J.P. Naylor, Metall. Trans. A 10 861 (1979) | 
| [13] | L. Rancel, M. Gómez, S.F. Medina, I. Gutierrez, Mater. Sci. Eng. A. 530 21 (2011) | 
| [14] | M.J. Roberts, Metall. Trans. 1 3287 (1970) | 
| [15] | S. Morito, H. Tanaka, R. Konishi, T. Furuhara, T. Maki, Acta Mater. 51 1789 (2003) | 
| [16] | N. Takayama, G. Miyamoto, T. Furuhara, Acta Mater. 60 2387 (2012) URL PMID | 
| [17] | B.B. Wu, Z.Q. Wang, Y.S. Yu, X.L. Wang, C.J. Shang, R.D.K. Misra, Scr. Mater. 170 43 (2019) | 
| [18] | C. Celada-casero, J. Sietsma, M.J. Santofimia, Mater. Des. 167 107625 (2019) | 
| [19] | H.S. Yang, H.K.D.H. Bhadeshia, Scr. Mater. 60 493 (2008) | 
| [20] | B. Hwang, D.W. Suh, S.J. Kim, Scr. Mater. 64 1118 (2011) URL PMID | 
| [21] | D.J. Mun, E.J. Shin, Y.W. Choi, J.S. Lee, Y.M. Koo, Mater. Sci. Eng. A. 545 214 (2012) | 
| [22] | C. Celada-casero, C. Kwakernaak, J. Sietsma, M.J. Santofimia, Mater. Des. 178 107847 (2019) | 
| [23] | T. Kaneshita, G. Miyamoto, T. Furuhara, Acta Marer. 127 368 (2017) | 
| [24] | T. Furuhara, H. Kawata, S. Morito, T. Maki, Acta Mater. 431 228 (2006) | 
| [25] | M. Abbasi, T.W. Nelson, C.D. Sorensen, J. Appl. Crystallogr. 46 716 (2013) | 
| [26] | M. Ueda, H.Y. Yasuda, Y. Umakoshi, Acta Mater. 51 1007 (2003) | 
| [27] | X.L. Wang, Z.Q. Wang, Z.J. Xie, J.L. Wang, X.C. Li, C.J. Shang, Mater. Lett. 257 126727 (2019) | 
| [28] | J. Zhang, C.S. Li, B.Z. Li, Z.X. Li, X.D. Pang, Acta Metall. Sin. Engl. Lett. 29 353 (2016) | 
| [29] | S.M.C. van Bohemen, M.J. Santofimia, J. Sietsma, Scr. Mater. 58 488 (2008) | 
| [30] | A.M. Ravi, A. Navarro-Lopez, J. Sietsma, M.J. Santofimia, Acta Mater. 188 394 (2020) | 
| [31] | L.J. Zhao, L.H. Qian, J.Y. Meng, Q. Zhou, F.C. Zhang, Scr. Mater. 112 96 (2016) | 
| [32] | H. Kawata, K. Hayashi, N. Sugiura, N. Yoshinaga, M. Takahashi, Mater. Sci. Forum. 638-642 3307 (2010) | 
| [33] | A. Shibata, S. Morito, T. Furuhara, T. Maki, Scr. Mater. 53 597 (2005) | 
| [34] | W. Gong, S. Tomota, S. Harjo, Y.H. Su, K. Aizawa, Acta Mater. 85 243 (2015) DOI URL | 
| [35] | C.S. Pande, M.A. Imam, B.B. Rath, Metall. Trans. A 21 2891 (1990) | 
| [36] | H. Gleiter, Acta Metall. 17 1421 (1969) | 
| [37] | C. Cayron, A. Baur, R. Logé, Mater. Des. 154 81 (2018) | 
| [38] | S. Morito, A.H. Pham, T. Ohba, T. Furuhara, G. Miyamoto, Micrscropy 66, 380 (2017) | 
| [39] | S. Morito, X. Huang, T. Furuhara, T. Maki, N. Hansen, Acta Mater. 54 5323 (2006) | 
| [40] | D.P. Koistinen, R.E. Marburger, Acta Metall. 7 59 (1959) DOI URL | 
| [41] | S.J. Lee, J.V.T. Chester, Metall. Mater. Trans. A. 43 422 (2012) DOI URL | 
| [42] | M. Cohen, Metall. Trans. 3 1095 (1972) | 
| [43] | V. Raghavan, M. Cohen, Acta Metall. 20 333 (1972) DOI URL | 
| [44] | L. Kaufman, M. Cohen, Acta Metall. 7 165 (1958) | 
| [45] | D.L. Olmsted, S.M. Foiles, E.A. Holm, Acta Mater. 57 3694 (2009) URL PMID | 
| [46] | S. Ratanaphan, D.L. Olmsted, V.V. Bulatov, E.A. Holm, A.D. Rollett, G.S. Rohrer, Acta Mater. 88 346 (2015) DOI URL | 
| [47] | A. Cherepanov, V. Cherepanova, V. Manolov, J. Cryst. Growth 527 125251 (2019) | 
| [48] | M. Lazaridis, Ø. Hov, K. Eleftheriadis, Atmos. Res. 55 103 (2000) | 
| [1] | Y. R. Ma, H. J. Yang, D. D. Ben, X. H. Shao, Y. Z. Tian, Q. Wang, Z. F. Zhang. Anisotropic Electroplastic Effects on the Mechanical Properties of a Nano-Lamellar Austenitic Stainless Steel [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 534-542. | 
| [2] | Mingxiao Guo, Junrong Tang, Tianzhen Gu, Can Peng, Qiaoxia Li, Chen Pan, Zhenyao Wang. Corrosion Behavior of 316L Stainless Steels Exposed to Salt Lake Atmosphere of Western China for 8 years [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 555-564. | 
| [3] | Hongchi Ma, Baijie Zhao, Yi Fan, Kui Xiao, Jinbin Zhao, Xuequn Cheng, Xiaogang Li. Simultaneously Improving Mechanical Properties and Stress Corrosion Cracking Resistance of High-Strength Low-Alloy Steel via Finish Rolling within Non-recrystallization Temperature [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 565-578. | 
| [4] | Ji-Jin Xu, Shuai Wang, Ze Chai, Chun Yu, Jun-Mei Chen, Hao Lu. Comparison of the Stress Corrosion Cracking Behaviour of AISI 304 Pipes Welded by TIG and LBW [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 579-589. | 
| [5] | Hua-Zhen Jiang, Zheng-Yang Li, Tao Feng, Peng-Yue Wu, Qi-Sheng Chen, Yun-Long Feng, Long-Fei Chen, Jing-Yu Hou, He-Jian Xu. Effect of Process Parameters on Defects, Melt Pool Shape, Microstructure, and Tensile Behavior of 316L Stainless Steel Produced by Selective Laser Melting [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 495-510. | 
| [6] | Ping Deng, En-Hou Han, Qunjia Peng, Chen Sun. Corrosion Behavior and Mechanism of Irradiated 304 Nuclear Grade Stainless Steel in High-Temperature Water [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(2): 174-186. | 
| [7] | Xiaosheng Zhou, Hao Chen, Chenxi Liu, Yongchang Liu. Residual Ferrite Control of 9Cr ODS Steels by Tailoring Reverse Austenite Transformation [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(2): 187-195. | 
| [8] | Meichen Liang, Hao Zhang, Lifeng Zhang, Peng Xue, Dingrui Ni, Weizhen Wang, Zongyi Ma, Hengqiang Ye, Zhiqing Yang. Evolution of Quasicrystals and Long-Period Stacking Ordered Structures During Severe Plastic Deformation and Mixing of Dissimilar Mg Alloys Upon Friction Stir Welding [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(1): 12-24. | 
| [9] | Yu-Wei Liu, Jian Zhang, Xiao Lu, Miao-Ran Liu, Zhen-Yao Wang. Effect of Metal Cations on Corrosion Behavior and Surface Structure of Carbon Steel in Chloride Ion Atmosphere [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(9): 1302-1310. | 
| [10] | Tong Zhang, Ying Han, Wen Wang, Yang Gao, Ying Song, Xu Ran. Influence of Aging Time on Microstructure and Corrosion Behavior of a Cu-Bearing 17Cr-1Si-0.5Nb Ferritic Heat-Resistant Stainless Steel [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(9): 1289-1301. | 
| [11] | Lu An, Yan-Tao Sun, Shan-Ping Lu, Zhen-Bo Wang. Enhanced Fatigue Property of Welded S355J2W Steel by Forming a Gradient Nanostructured Surface Layer [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(9): 1252-1258. | 
| [12] | Jia-Qi Zhao, Hua Tian, Zhong Wang, Xue-Jiao Wang, Jun-Wei Qiao. FCC-to-HCP Phase Transformation in CoCrNix Medium-Entropy Alloys [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1151-1158. | 
| [13] | Ibrahim Ondicho, Bernard Alunda, Dicken Owino, Luke Otieno, Melody Chepkoech. Revealing a Transformation-Induced Plasticity (TRIP) Phenomenon in a Medium-Entropy Alloy [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1159-1165. | 
| [14] | Bang Dou, Hui Zhang, Jia-Hao Zhu, Ben-Qi Xu, Zi-Yi Zhou, Ji-Li Wu. Uniformly Dispersed Carbide Reinforcements in the Medium-Entropy High-Speed Steel Coatings by Wide-Band Laser Cladding [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1145-1150. | 
| [15] | Chengbo Yang, Jing Zhang, Meng Li, Xuejian Liu. Soft-Magnetic High-Entropy AlCoFeMnNi Alloys with Dual-Phase Microstructures Induced by Annealing [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1124-1134. | 
| Viewed | ||||||
| Full text |  | |||||
| Abstract |  | |||||
 WeChat
			   WeChat
			