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·720· 工程科学学报,第39卷,第5期 support.J Mater Manuf,1997,106:5 [14]Li B,Liu C L,Wu S X,et al.Carbide precipitation and effects [2]Inoue Y,Kikuchi M,Tendo M,et al.Development of heat resist- of Yttrium in aged FeCrAl alloys.J Chin Electron Microse Soc, ant stainless steel NSSCB21M for catalysis substrate of motorcy- 1999,18(4):423 cle muffler.Nippon Steel Tech Rep.2010(99):45 (李碚,刘翠兰,吴双霞,等.FeCrAl合金中碳化物的时效 [3]Emmerich K.The use of rapidly solidified ribbons in automotive 析出和钇的彩响.电子显微学报,1999,18(4):423) exhaust gas catalyst substrates.Mater Sci Eng A,1991,134: [15]Spear W S,Polonis D H.Interstitial precipitation in Fe-Cr-Al 1016 alloys.Metall Mater Trans A,1994,25(6):1135 [4]Rivlin V G,Raynor G V.Phase equilibria in iron temary alloys [16]Li W,Lu S,Hu Q M,et al.The effect of Al on the 475 C em- 3:critical evaluation of constitution of aluminium-chromium-iron brittlement of Fe-Cr alloys.Comput Mater Sci,2013,74:101 system.Int Met Rev,1980,25(1):139 [17]Chandra D,Schwartz L H.Massbauer effect study of the 475 C [5]Hall EO.Algie S H.The sigma phase.Int Mater Rer,1966,11 decomposition of Fe-Cr.Metall Trans,1971,2(2):511 (1):61 [18]Blackburn M J,Nutting J.Metallography of an iron -21%chro- [6]Premachandra K,Cartie M B,Eric R H.Effect of stabilising ele- mium alloy subjected to 475 C embrittlement.J fron Steel Inst, ments on formation of o phase in experimental ferritic stainless 1964,202(7):610 steels containing 39%Cr.Mater Sci Technol,1992,8(5):437 [19]Grobner PJ.The 885 F (475 C)embrittlement of ferritic stain- [7]Zubchenko A S.a-phase formation in chromium ferritic steels. less steels.Metall Trans,1973,4(1):251 Met Sci Heat Treat,1982,24(4):274 [20]Sahu J K.Krupp U,Ghosh R N,et al.Effect of 475 C embrit- [8]Schaeffler A L.Constitution diagram for stainless-steel weld met- tlement on the mechanical properties of duplex stainless steel. al.2:Schaeffler diagram.Met Prog Databook,1974,106(1): Mater Sci Eng A,2009,508(1-2):1 227 [21]Han Z B,Liu J H,He Y,et al.Calculation and study of liqui- [9]Konosu S,Mashiba H,Takeshima M,et al.Effects of pretest ag- dus and solidus for FeCrAl stainless steel.J fron Steel Res, ing on creep crack growth properties of type 308 austenitic stain- 2016,28(3):40 less steel weld metals.Eng Failure Anal,2001,8(1):75 (韩志彪,刘建华,何杨,等.FeCrAl不锈钢液固相线的计 [10]Reis G S,Jorge Jr A M,Balancin 0.Influence of the micro- 算与研究.钢铁研究学报,2016,28(3):40) structure of duplex stainless steels on their failure characteristics [22]Kobayashi S,Takasugi T.Mapping of 475 C embrittlement in during hot deformation.Mater Res,2000,3(2):31 ferritie Fe-Cr-Al alloys.Ser Mater,2010,63(11):1104 [11 Lopez N,Cid M,Puiggali M.Influence of o-phase on mechani- [23]Kim YJ,Chumbley LS,Gleeson B.Determination of isothermal cal properties and comosion resistance of duplex stainless steels. transformation diagrams for sigma-phase formation in cast duplex Corros Sci,1999,41(8):1615 stainless steels CD3MN and CD3MWCuN.Metall Mater Trans A, [12]Ravindranath K,Malhotra S N.Influence of aging on intergranu- 2004,35(11):3377 lar corrosion of a 25%chromium -5%nickel duplex stainless [24]Ejenstam J,Thuvander M,Olsson P,et al.Microstructural sta- steel..Corros,1994,50(4):318 bility of Fe-Cr-Al alloys at 450-550 C.J Nucl Mater,2015, [13]Du G W,Cai HQ,Cai J M,et al.Interstitial precipitation in a 457:291 Fe25Cr5Al alloy.J Mater Sci Lett,1996,15(3)258工程科学学报,第 39 卷,第 5 期 support. J Mater Manuf, 1997, 106: 5 [2] Inoue Y, Kikuchi M, Tendo M, et al. Development of heat resist鄄 ant stainless steel NSSC 襆 21M for catalysis substrate of motorcy鄄 cle muffler. Nippon Steel Tech Rep, 2010(99): 45 [3] Emmerich K. The use of rapidly solidified ribbons in automotive exhaust gas catalyst substrates. Mater Sci Eng A, 1991, 134: 1016 [4] Rivlin V G, Raynor G V. Phase equilibria in iron ternary alloys 3: critical evaluation of constitution of aluminium鄄chromium鄄iron system. Int Met Rev, 1980, 25(1): 139 [5] Hall E O, Algie S H. The sigma phase. Int Mater Rev, 1966, 11 (1): 61 [6] Premachandra K, Cartie M B, Eric R H. Effect of stabilising ele鄄 ments on formation of 滓 phase in experimental ferritic stainless steels containing 39% Cr. Mater Sci Technol, 1992, 8(5): 437 [7] Zubchenko A S. 滓鄄phase formation in chromium ferritic steels. Met Sci Heat Treat, 1982, 24(4): 274 [8] Schaeffler A L. Constitution diagram for stainless鄄steel weld met鄄 al. 2: Schaeffler diagram. Met Prog Databook, 1974, 106 (1): 227 [9] Konosu S, Mashiba H, Takeshima M, et al. Effects of pretest ag鄄 ing on creep crack growth properties of type 308 austenitic stain鄄 less steel weld metals. Eng Failure Anal, 2001, 8(1): 75 [10] Reis G S, Jorge Jr A M, Balancin O. Influence of the micro鄄 structure of duplex stainless steels on their failure characteristics during hot deformation. Mater Res, 2000, 3(2): 31 [11] Lopez N, Cid M, Puiggali M. Influence of 滓鄄phase on mechani鄄 cal properties and corrosion resistance of duplex stainless steels. Corros Sci, 1999, 41(8): 1615 [12] Ravindranath K, Malhotra S N. Influence of aging on intergranu鄄 lar corrosion of a 25% chromium - 5% nickel duplex stainless steel. Corros, 1994, 50(4): 318 [13] Du G W, Cai H Q, Cai J M, et al. Interstitial precipitation in a Fe25Cr5Al alloy. J Mater Sci Lett, 1996, 15(3): 258 [14] Li B, Liu C L, Wu S X, et al. Carbide precipitation and effects of Yttrium in aged FeCrAl alloys. J Chin Electron Microsc Soc, 1999, 18(4): 423 (李碚, 刘翠兰, 吴双霞, 等. FeCrAl 合金中碳化物的时效 析出和钇的影响. 电子显微学报, 1999, 18(4): 423) [15] Spear W S, Polonis D H. Interstitial precipitation in Fe鄄鄄 Cr鄄鄄 Al alloys. Metall Mater Trans A, 1994, 25(6): 1135 [16] Li W, Lu S, Hu Q M, et al. The effect of Al on the 475 益 em鄄 brittlement of Fe鄄鄄Cr alloys. Comput Mater Sci, 2013, 74: 101 [17] Chandra D, Schwartz L H. M觟ssbauer effect study of the 475 益 decomposition of Fe鄄鄄Cr. Metall Trans, 1971, 2(2): 511 [18] Blackburn M J, Nutting J. Metallography of an iron - 21% chro鄄 mium alloy subjected to 475 益 embrittlement. J Iron Steel Inst, 1964, 202(7): 610 [19] Grobner P J. The 885 埘 (475 益 ) embrittlement of ferritic stain鄄 less steels. Metall Trans, 1973, 4(1): 251 [20] Sahu J K, Krupp U, Ghosh R N, et al. Effect of 475 益 embrit鄄 tlement on the mechanical properties of duplex stainless steel. Mater Sci Eng A, 2009, 508(1鄄2): 1 [21] Han Z B, Liu J H, He Y, et al. Calculation and study of liqui鄄 dus and solidus for FeCrAl stainless steel. J Iron Steel Res, 2016, 28(3): 40 (韩志彪, 刘建华, 何杨, 等. FeCrAl 不锈钢液固相线的计 算与研究. 钢铁研究学报, 2016, 28(3): 40) [22] Kobayashi S, Takasugi T. Mapping of 475 益 embrittlement in ferritic Fe鄄鄄Cr鄄鄄Al alloys. Scr Mater, 2010, 63(11): 1104 [23] Kim Y J, Chumbley L S, Gleeson B. Determination of isothermal transformation diagrams for sigma鄄phase formation in cast duplex stainless steels CD3MN and CD3MWCuN. Metall Mater Trans A, 2004, 35(11): 3377 [24] Ejenstam J, Thuvander M, Olsson P, et al. Microstructural sta鄄 bility of Fe鄄鄄Cr鄄鄄Al alloys at 450鄄鄄550 益 . J Nucl Mater, 2015, 457: 291 ·720·
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