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基于Ti-X二元相图提出了一种精确计算钛合金α+β/β相变点的方法,并根据该方法给出了一个计算公式.用该公式对几十个合金的相变点进行了计算,并与实测值进行了对比,除个别合金偏差较大外,其余合金的相变点计算值与测试值相差一般不超过±5℃.这表明该方法和公式涵盖面广、精确度高,适用于绝大多数钛合金的相变点计算.

参考文献

[1] 孙宇,曾卫东,赵永庆,韩远飞,邵一涛,周义刚.应用人工神经网络研究化学元素对钛合金相变点的影响[J].稀有金属材料与工程,2010(06):1031-1036.
[2] 杨义,徐锋,黄爱军,李阁平.全片层BT18Y钛合金在α+β相区固溶时的显微组织演化[J].金属学报,2005(07):713-720.
[3] Lee D H;Nam S W .Effect of a lamellae width on creep -fatigue behavior in near-α Ti-1100 with lamellar structure[J].Scripta Materialia,1999,40(03):265-270.
[4] M. Es-Souni .Creep behaviour and creep microstructures of a high-temperature titanium alloy Ti-5.8Al-4.0Sn-3.5Zr-0.7Nb-0.35Si-0.06C (Timetal 834) Part I. Primary and steady-state creep[J].Materials Characterization,2001(5):365-379.
[5] G. J. BAXTER;W. M. RAINFORTH;L. GRABOWSKI .TEM OBSERVATIONS OF FATIGUE DAMAGE ACCUMULATION AT THE SURFACE OF THE NEAR-α ITANIUM ALLOY IMI 834[J].Acta materialia,1996(9):3453-3463.
[6] 陈志勇 .Ti-60钛合金电子束焊接接头的显微组织、力学性能与变形行为[D].中国科学院金属研究所,2008.
[7] Niu Y;Hou HL;Li MQ;Li ZQ .High temperature deformation behavior of a near alpha Ti600 titanium alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2008(1/2):24-28.
[8] M. Es-Souni .Primary, secondary and anelastic creep of a high temperature near #alpha#-Ti alloy Ti6242Si[J].Materials Characterization,2000(2):153-164.
[9] Sansoz F;Ghonem H .Effects of loading frequency on fatigue crack growth mechanisms in α +β Ti microstrueture with large colony size[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2003,356(1/2):81-92.
[10] Suruki A;Noda T;Okabe M .Effect of microstrueture on mechanical properties of heat resistant titanium alloys at elevatedtemperatures[J].MaterialsScienceForum,2003,426-432:667-672.
[11] Bhattacharyya D;Viswanathan G B;Denkenberger R et al.The role of crystallographic and geometrical relationships between α and β phases in an α +β titanium alloy[J].Acta Materialia,200,3(16):4679-4691.
[12] L. Krueger;L.W. Meyer;S.V. Razorenov;G.I. Kanel .Investigation of dynamic flow and strength properties of Ti-6-22-22S at normal and elevated temperatures[J].International journal of impact engineering,2003(8):877-890.
[13] W. D. Zeng;Y. G. Zhou .The influence of microstructure on dwell sensitive fatigue in Ti-6.5Al-3.5Mo-1.5Zr-0.3Si alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(1/2):33-38.
[14] T. Seshacharyulu;B. Dutta .Influence of prior deformation rate on the mechanism of beta -> alpha + beta transformation in Ti-6Al-4V[J].Scripta materialia,2002(9):673-678.
[15] 马英杰 .显微组织对TC4ELI合金损伤容限行为的影响[D].中国科学院金属研究所,2009.
[16] 官杰 .热处理及合金化对Ti-5Al-5Mo-5V基合金组织、性能的影响[D].中国科学院金属研究所,2008.
[17] O. A. Kaibyshev .Grain refinement in commercial alloys due to high plastic deformations and phase transformations[J].Journal of Materials Processing Technology,2001(3):300-306.
[18] Peters M;Williams J C.The effects of composition and heat treatment on the mechanical properties of four alpha +beta Ti-alloys[A].Munich:DeutscheGesellschaftfürMetallkunde,Oberursel,1984:1843-1850.
[19] J.Koike;Y.Shimoyama .Stress-induced Phase Transformation During Superplastic Deformation in Two-Phase Ti-Al-Fe Alloy[J].Acta materialia,2000(9):2059-2069.
[20] A. Bhattacharjee;P. Ghosal;A.K. Gogia;S. Bhargava;S.V. Kamat .Room temperature plastic flow behaviour of Ti-6.8Mo-4.5Fe-1.5Al and Ti-10V-4.5Fe-1.5Al: Effect of grain size and strain rate[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2007(1/2):219-227.
[21] X.W. Li;M.X. Lu;Ai X. Sha .The tensile deformation behavior of Ti-3Al-4.5V-5Mo titanium alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2008(1/2):193-197.
[22] Jones N;Jackson M;Dye D.Comparing the hot working behavior of high strength beta alloys Ti-5Al-5Mo-5V-3Cr with that of Ti-10V-2Fe-3Al[A].Sendai:The Japan Institute of Metals,2007:1005-1008.
[23] B. Cherukuri;R. Srinivasan;S. Tamirisakandala .The influence of trace boron addition on grain growth kinetics of the beta phase in the beta titanium alloy Ti-15Mo-2.6Nb-3Al-0.2Si[J].Scripta materialia,2009(7):496-499.
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