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张超等:等温淬火温度对超细贝氏体钢组织及耐磨性的影响 ·1509· [13]Leiro A,Kankanala A,Vuorinen E,et al.Tribological behav- namic model.Mater Sci Eng A,2010,527(13-14):3200 iour of carbide-free bainitic steel under dry rolling/sliding condi- [19]Guo H,Zhou P,Zhao A M,et al.Effects of Mn and Cr contents tions..Wear,2011.273(1):2 on microstructures and mechanical properties of low temperature [14]Solano-Alvarez W,Pickering E J,Bhadeshia H K D H.Degra- bainitic steel.J fron Steel Res Int,2017,24(3):290 dation of nanostructured bainitic steel under rolling contact fa- [20]Zhao J,Wang T S,Lii B,et al.Microstructures and mechanical tigue.Mater Sci Eng A,2014,617:156 properties of a modified high-C-Cr bearing steel with nano-scaled [15]Bakshi S D.Shipway P H,Bhadeshia H K D H.Three-body ab- bainite.Mater Sci Eng A.2015,628:327 rasive wear of fine pearlite,nanostructured bainite and martens- [21]Babu SS,Specht E D,David S A,et al.In-situ observations of ite.Wem,2013,308(1-2):46 lattice parameter fluctuations in austenite and transformation to [16]Beladi H,Timokhina I B,Hodgson P D,et al.Characterization bainite.Metall Mater Trans A,2005,36(12):3281 of nano-structured bainitic steel.Int Mod Phys,2012,5:1 [22]Chang L C,Bhadeshia H K D H.Austenite films in bainitic mi- [17]De A K,Murdock D C,Mataya M C,et al.Quantitative meas- crostructures.Mater Sci Technol,1995,11(9):874 urement of deformation-induced martensite in 304 stainless steel [23]Morales-Rivas L,Gonzalez-Orive A,Garcia-Mateo C,et al. by X-ray diffraction.Scripta Mater,2004,50(12):1445 Nanomechanical characterization of nanostructured bainitic steel: [18]Yoozbashi M N,Yazdani S.Mechanical properties of nanostruc- peak force microscopy and nanoindentation with AFM.Sci Rep, tured,low temperature bainitic steel designed using a thermody- 2015,5:17164张 超等: 等温淬火温度对超细贝氏体钢组织及耐磨性的影响 [13] Leiro A, Kankanala A, Vuorinen E, et al. Tribological behav鄄 iour of carbide鄄free bainitic steel under dry rolling / sliding condi鄄 tions. Wear, 2011, 273(1): 2 [14] Solano鄄Alvarez W, Pickering E J, Bhadeshia H K D H. Degra鄄 dation of nanostructured bainitic steel under rolling contact fa鄄 tigue. Mater Sci Eng A, 2014, 617: 156 [15] Bakshi S D, Shipway P H, Bhadeshia H K D H. Three鄄body ab鄄 rasive wear of fine pearlite, nanostructured bainite and martens鄄 ite. Wear, 2013, 308(1鄄2): 46 [16] Beladi H, Timokhina I B, Hodgson P D, et al. Characterization of nano鄄structured bainitic steel. Int J Mod Phys, 2012, 5: 1 [17] De A K, Murdock D C, Mataya M C, et al. Quantitative meas鄄 urement of deformation鄄induced martensite in 304 stainless steel by X鄄ray diffraction. Scripta Mater, 2004, 50(12): 1445 [18] Yoozbashi M N, Yazdani S. Mechanical properties of nanostruc鄄 tured, low temperature bainitic steel designed using a thermody鄄 namic model. Mater Sci Eng A, 2010, 527(13鄄14): 3200 [19] Guo H, Zhou P, Zhao A M, et al. Effects of Mn and Cr contents on microstructures and mechanical properties of low temperature bainitic steel. J Iron Steel Res Int, 2017, 24(3): 290 [20] Zhao J, Wang T S, L俟 B, et al. Microstructures and mechanical properties of a modified high鄄C鄄Cr bearing steel with nano鄄scaled bainite. Mater Sci Eng A, 2015, 628: 327 [21] Babu S S, Specht E D, David S A, et al. In鄄situ observations of lattice parameter fluctuations in austenite and transformation to bainite. Metall Mater Trans A, 2005, 36(12): 3281 [22] Chang L C, Bhadeshia H K D H. Austenite films in bainitic mi鄄 crostructures. Mater Sci Technol, 1995, 11(9): 874 [23] Morales鄄Rivas L, Gonz佗lez鄄Orive A, Garcia鄄Mateo C, et al. Nanomechanical characterization of nanostructured bainitic steel: peak force microscopy and nanoindentation with AFM. Sci Rep, 2015, 5: 17164 ·1509·
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