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J. Bonacuse, A. Prescenzi, in: Superalloys 2004, TMS, Pennsylvania, 2004, pp. 215–224.\nM. H. Zhao, J. Zhang, D. Feng, Fractographies of High Temperature Alloys, Metallurgical Industry Press, Beijing, 2006.\nC. M. F. Rae, R. C. Reed, Acta Mater. 49 (2001) 4113–4125.\nB. Sciser, R. Drautz, D. G. Pettifor, Acta Mater. 59 (2011) 749–763.\nM. Simonetti, P. Caron, Mater. Sci. Eng. A 254 (1998) 1–12.\nH. M. Tawancy, J. Mater. Sci. 31 (1996) 3929–3936.\nK. Y. Cheng, G. Y. Jo, T. Jin, Z. Q. Hu, J. Alloys Comp. 536 (2012) 7–19.\nT. Li, S. G. Tian, D. Xia, M. G. Wang, X. F. Yu, Rare Metal Mater. Eng. 37 (2008) 1924–1929.\nT. Cui, Y. S. Zhang, S. W. Guo, L. Wang, H. C. Yang, Acta Metall. Sin. (Engl. Lett.) 17 (2004) 645–650.\nY. W. Zhang, Effect of Micro-element Hafnium on Mcrostructures and Mechanical Properties in FGH97 PM Superalloy, University of Science and Technology Beijing, Beijing, 2012.\nX. Z. Qin, J. T. Guo, C. Yuan, G. X. Yang, L. Z. Zhou, H. Q. Ye, J. Mater. Sci. 44 (2009) 4840–4847.\nY. Q. Li, J. Y. Liu, Precipitate Phase of Superalloys in Grain Boundary, Metallurgy Publishing Company of Technology, Beijing, 1990.\nK. Zhao, L. H. Lou, Y. Wen, H. Li, Z. Q. Hu, J. Mater. Sci. 39 (2004) 369–371.\nH. ur Rehman, K. Durst, S. Neumeier, A. B. Parsac, A. Kostkac, G. Eggelerc, M. Gökena, Mater. Sci. Eng. A 634 (2015) 202–208.\nK. Matuszewski, A. Müller, N. Ritter, R. Rettig, K. J. Kurzydlowski, R. F. Singer, Adv. Eng. Mater. 17 (2015) 1127–1133.\nS. G. Tian, B. J. Qian, T. Li, L. L. Yu, J. Xie, M. G. Wang, Rare Metals 30 (2011) 452–456.\nY. W. Zhang, F. M. Wang, B. F. Hu, Rare Metal Mater. Eng. 41 (2012) 989–993.\nG. S. Chen, Z. Y. Zhong, J. Iron Steel Res. 2 (1990) No. 1, 55–61.\nL. Pauling, Phys. 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Microstructure, Mechanical Properties and High Stress Abrasive Wear Behavior of Air Cooled MnCrB Cast Steels [J]. Materials and Design, 2010, 31(5): 2510\nJIANG Zhi-qiang, DU Jian-ming, FENG Xi-lan. Study and Application ofHeat Treatment of Multi-Element Wear-Resistant Low-Aloy Steel [J]. Journal of Iron and Steel Research, International, 2006, 13(1): 57.\nWEI Min-xian, WANG Shu-qi, WANG Lan, et al. Efect of Microstructures on Elevated-Temperature Wear Resistance of a Hot Working Die Steel [J]. Journal of Iron and Steel Research, International, 2011, 18(10): 47.\nMorito S, Tanaka H, Konishi R, et al. The Morphology and Crystalography of Lath Martensite in Fe-C Aloys [J]. Acta Materialia, 2003, 51: 1789.\nSONG Yu-jiu, LU Jin-tang, LIU Jing-hua, et al. On the Strength and Toughness of the Complex Constituents of Martensite and Bainite [J]. Transactions of Metal Heat Treatment, 1982, 3(1): 11 (in Chinese).\nGuo Z, Lee C S, Morris J W. On Coherent Transformations in Steel [J]. Acta Material, 2004, 52(19): 5511.\nLiebowitz H. Fracture. Volume VI [M]. New York and London: Academic Press, 1969.\nMeysami A H, Ghasemzadeh R, Seyedein S H, et al. An Investigation on the Microstructure and Mechanical Properties of Direct-Quenched and Tempered AISI 4140 Steel [J]. Materials and Design, 2010, 31(3): 1570.\nTronskar J P, Mannan M A, Lai M O. Measurement of Fracture Initiation Toughness and Crack Resistance in Instrumented Charpy Impact Testing [J]. Engineering Fracture Mechanics, 2002, 69(3): 321.\nLAN Liang-yun, QIU Chun-lin, ZHAO De-wen, et al. Microstructural Characteristics and Toughness of the Simulated Coarse Grained Heat Afected Zone of High Strength Low Carbon Bainitic Steel [J]. Materials Science and Engineering, 2011, 529A: 192.\nDENG Wei, GAO Xiu-hua, QIN Xiao-mei, et al. Impact Fracture Behavior of X80 Pipeline Steel [J]. Acta Metalurgica Sinica, 2010, 46(5): 533 (in Chinese).\nMatsuda S, Inoue T, Mimura H, et al. Toward Improved Ductility and Toughness [M]. Tokyo: Climax Molybdenum Development Co?, 1971.\nZHAO Ying-li, SHI Jie, CAO Wen-quan, et al. Efect of Direct Quenching on Microstructure and Mechanical Properties of Medium-Carbon Nb-Bearing Steel [J]. 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