102
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Advances in the fundamental understanding for designing engineering gamma TiAl alloys

Pages 13-25 | Received 15 Oct 1998, Accepted 12 Nov 1998, Published online: 03 Mar 2011

References

  • Austin , C.M. and Kelly , T.J. 1995 . “Progress in Implementation of Cast Gamma Titanium Aluminide,” . In Gamma Titanium Aluminides , Edited by: Kim , Y‐W. , Wagner , R. and Yamaguchi , M. 21 – 32 . Warrendale, PA : TMS .
  • Austin , C.M. , Kelly , T.J. , McAllister , K.G. and Chestnut , J.C. 1997 . “Aircraft Engine Applications for Gamma Titanium Aluminide,” . In Structural Intermetallics 1997 , Edited by: Nathal , M.V. Darolia , R. 413 – 425 . Warrendale, PA : TMS .
  • Beddoes , J. , Wallace , W. and Zhao , L. 1995 . “Current Understanding of Creep Behaviour of Near γ‐Ti‐tanium Aluminides,” . International Materials Review , 40 : 197 – 217 .
  • Blackburn , M.J. and Smith , M.P. “Titanium Alloys of the TiAl Type,” . US Patent 4 294, 615 . 1981 .
  • Campbell , J.P. , Rao , K.T.V. and Ritchie , R.O. 1998 . “The Effect of Microstructure on Fracture Toughness and Fatigue‐Crack Growth Behavior in γ‐Titanium Aluminide Based Intermetallics,” . Metallurgical and Materials Transactions A , In press
  • Chan , K.S. and Kim , Y‐W. 1995 . “Effects of Lamellae Spacing and Colony Size on the Fracture Resistance of a Fully‐Lamellar TiAl Alloy,” . Acta Metall. Mater. , 43 (2) : 439 – 451 .
  • Chan , K.S. and Kim , Y‐W. 1992 . “Influence of Microstructure on Crack‐Tip Micromechanics and Fracture Behaviors of a Two‐Phase TiAl Alloy,” . Metall. Trans. A , 23A : 1663 – 77 .
  • Clemens , H. and Kim , Y‐W. 1998 . “High Temperature Tensile Deformation Behavior of K5 Gamma Alloys,” . In Work in progress
  • Clemens , H. , Eberhardt , N. , Glatz , W. , Martinz , H.P. , Knabl , W. and Reheis , N. “Processing and Properties of Gamma Titanium Aluminides,” . Ref. , 4 277 – 286 .
  • Dimiduk , D.M. , Hazzledine , P.M. , Parthasarathy , T.A. , Seshagari , S. and Mendiratta , M. 1997 . “The Role of Grain‐Size and Selected Microstructural Parameters in Strengthening Fully‐Lamellar TiAl Alloys,” . Metall. & Mater. Trans. A , 29A : 37 – 47 .
  • Dimiduk , D. M. , Martin , P.L. and Kim , Y‐W. 1998 . “Microstructure Development in Gamma Alloy Mill Products by Thermomechanic al Processing,” . Mater. Sci. & Eng. A , 243 : 66 – 76 .
  • Dolley , Evans . 1995 . “Isothermal High‐Frequency High‐Cycle Fatigue of the Ti‐47Al‐3Nb‐2Cr‐0.2W (at%) Gamma Titanium Aluminide Alloy,” . Ohio : Univ. of Dayton . MS Thesis,
  • Gouma , P.I. , Kim , Y‐W. and Mills , M. J. 1998 . “ Characterization of the Precipitation Process in a TiAl‐Based Alloy with Carbon and Silicon Additions,” . Phil Mag. Lett. , 78 (1) : 59 – 66 .
  • Gouma , P.I. , Subramanian , K.S. , Kim , Y‐W. and Mills , M. J. 1998 . “Annealing Studies of γ‐Titanium Aluminides Alloyed with Light Elements for Creep Strengthening,” . Intermetallics , In press,
  • Hazzledine , P.M. and Kad , B. 1995 . “Yield and Fracture of Lamellar γ/α2 TiAl Alloys,” . Mater Sci. & Eng. , A192 : 340 – 346 .
  • Hsiung , L.M. and Nieh , T.G. 1997 . “Substructure in a Creep Deformed Lamellar TiAl Alloy,” . Scripta Materialia , 36 (3) : 323 – 330 .
  • Huang , S‐C. “Method of Processing Titanium Aluminum Alloys Modified by Chromium and Niobium . "US Patent 5,076,858 . 31 Dec. 1991 .
  • Huang , S‐C. and Shih , D.S. 1990 . “Microstructure‐Property Correlation in TiAl‐Base Alloys,” . In Microstructure/Property Relationships in Titanium Aluminides and Alloys , Edited by: Kim , Y‐W. and Boyer , R. R. 105 – 122 . PA : TMS .
  • Jin , Z. , Gray , G.T. III and Kim , Y‐W. 1998 . “Mechanical Behavior of a Fine‐Grained Duplex TiAl Alloy,” . Metall. and Mater. Trans. A , (Submitted for publication
  • Kim , Y‐W. and Dimiduk , D.M. “Method to Produce Gamma Titanium Aluminide Articles Having Improved Properties,” . US Patent 5,226,985 . 13 July 1993 .
  • Kim , Y‐W. and Dimiduk , D.M. 1997 . “Designing Gamma TiAl Alloys: Fundamentals, Strategy and Production,” . Ref. , 2 : 531 – 543 .
  • Kim , Y‐W. and Dimiduk , D.M. “Methods to Produce Gamma Titanium Aluminide Articles Having Improved Properties,” . U.S. Patent, No. 5,558,729 . 24 Sept. 1996 . and U.S. Patent, No. 5,746,846, (5 May 1998)
  • Kim , Y‐W. and Dimiduk , D.M. 1997 . “Deformation and Fracture Behavior in TiAl Alloys under Mono‐tonic and Cyclic Loading Conditions,” . In Cleavage Fracture: Theory, Experimental and Modeling , Edited by: Chan , K.S. and Mahidhara , R.K. 305 – 317 . Warrendale, PA : TMS .
  • Kim , Y‐W. and Dimiduk , D.M. 1991 . “Progress in the Understanding of Gamma Titanium Aluminides,” . JOM , 43 (8) : 40 – 47 .
  • Kim , Y‐W. and Dimiduk , D.M. "Methods to Produce Gamma Titanium Aluminide Articles Having Improved Properties,” . In Invention Disclosure Submitted (17 April 1996) and filed (Ser. No. 09/ 111.258, 30 June 1998) for US Patent
  • Kim , Y‐W. 1998 . “Design Fundamentals for Gamma TiAl Alloys,” . In Interstitial and Substitutional Solute Effects in Intermetallics II , Edited by: Baker , I. and Noebe , R. Warrendale, PA : TMS . In press,
  • Kim , Y‐W. 1995 . “Effects of Microstructure on the Deformation and Fracture of γ‐TiAl Alloys,” . Materials Sci. & Eng. , A192/193 : 519 – 533 .
  • Kim , Y‐W . 1992 . “Microstructural Evolution and Mechanical Properties of a Forged Gamma Titanium Aluminide Alloy,” . Acta Metall. Mater. , 40 : 1121 – 1134 .
  • Kim , Y‐W. 1994 . “Ordered Intermetallic Alloys, Part III: Gamma Titanium Aluminides,” . JOM , 46 (7) : 30 – 39 . 7
  • Kim , Y‐W. 1998 . “Phase Transformations and Transitions in Ti‐(30–55)Al,” . Acta Metall. Mater , To be submitted to for publication,
  • Kim , Y‐W . 1991 . “Recent Advances in Gamma Titanium Aluminide Alloys,” . MRS Symp. Proc. , 213 : 777 – 793 .
  • Kim , Y‐W. 1998 . “Strength and Ductility in TiAl Alloys,” . Intermetallics , In print,
  • Kim , Y‐W. “Trends in the Development of Gamma TiAl Alloys,” . Ref. , 1 509 – 524 .
  • Kim , Y‐W. 1996 . Research in Progress ‐Present)
  • Kim , Y‐W. 1989 . “Intermetallic Alloys Based on Gamma Titanium Aluminide,” . JOM , 41 (7) : 24 – 30 .
  • Koeppe , C. , Bartels , A. , Seeger , J. and Mecking , H. 1993 . “General Aspects of Thermal Mechanical Treatments of Two‐phase Intermetallic TiAl Compounds,” . Metall. Trans. A , 24A : 1795 – 1806 .
  • Kumpfert , J. , Kim , Y‐W. and Dimiduk , D.M. 1995 . “Effect of Microstructure on Fatigue and Tensile Properties of the Gamma TiAl Alloy Ti‐46.5Al‐3.0Nb‐2.1Cr‐0.2W,” . Mater. Sci. & Eng. , A192/193 : 465 – 473 .
  • Larsen , J. , Worth , B. , Balsone , S.J. and Jones , J.W. “An Overview of the Structural Capability of Available Gamma Titanium Aluminide Alloys,” . Ref. , 1 821 – 834 .
  • Liu , C.T. Maziasz , P.J. 1995 . “Room and Elevated Temperature Mechanical Properties of a PM TiAl Alloy Ti‐47Al‐2Cr‐2Nb,” . Ref. , 1 : 679 – 688 .
  • Liu , C.T. , Schneibel , J.H. Maziasz , P.J. 1996 . “Tensile Properties and Fracture Toughness of TiAl alloys with Controlled Microstructures,” . Intermetallics , 4 (6) : 429 – 440 .
  • London , B. , Larsen , D.E. Jr. , Wheeler , D.A. and Aimone , P.R. 1993 . “Investment Cast Gamma Titanium Aluminide Alloys: Processing, Properties and Promise,” . In Structural Intermetallics , Edited by: Darolia , R. 151 – 157 . Warrendale, PA : TMS .
  • Maziasz , P.J. and Liu , C.T. 1998 . “Development of Ultrafine Lamellar Structures in Two‐Phase y‐TiAl Alloys,” . Metallurgical and Materials Transactions A , 29A : 105 – 117 .
  • Maziasz , P.J. , Liu , C.T. and Wright , J.L. 1997 . “Stability of Ultrafine Lamellar Microstructures During Aging in Two‐Phase y‐TiAl Alloys,” . In Strctural Intermetallics 1997 , Edited by: Nathal , M.V. Darolia , R. 245 – 252 . Warrendale, PA : TMS .
  • Maziasz , P.J. , Ramanujan , R.V. , Liu , C.T. and Wright , J.L. 1997 . “Effects of B and W m Alloying Additions on the Formation and Stability of Lamellar Structures in Two‐Phase γ‐TiAl,” . Intermetallics , 5 (2) : 83 – 95 .
  • McQuay P., M.S. Thesis, Wright State Univ. (1992).
  • McQuay , P.C. , Kim , Y.‐W. and Dimiduk , D.M. “Methods to Produce Gamma Titanium Aluminide Articles Having Improved Properties,” . U.S. Patent 5,417,781 . 23 May 1995 .
  • Mendiratta , M.G. , Kim , Y‐W. and Dimiduk , D.M. 1995 . “Loading Rate Effects and Fracture of a TiAl Alloy,” . MRS Symp. Proc. , 288 : 543 – 548 .
  • Rao , K.T.V. , Kim , Y‐W. , Muhlstein , C.L. and Ritchie , R.O. 1995 . “Fatigue‐Crack Growth and Resistance of a Two‐Phase (γ+α2) TiAl Alloy in Duplex and Lamellar Microstructures,” . Mater. Sci. & Eng. , A192/193 : 474 – 482 .
  • Schwenker , S. and Kim , Y‐W. 1995 . “The Creep Behavior of Gamma Alloy Ti‐46.5Al‐3Nb‐2Cr‐0.2W Alloys,” . Ref. , 2 : 985 – 992 .
  • Tsuyama , S. , Mitao , S. and Minakawa , K. 1992 . “Alloy Modification of y‐Base Titanium Aluminide for Improved Oxidation Resistance, Creep Strength and Fracture Toughness,” . Mater. Sci. & Eng. , A 153 : 451 – 456 .
  • Wang , Y. and Lin , D.L. 1998 . “Brittle‐to‐Ductile Transition Temperature and Its Strain Rate Sensitivity in a Two‐Phase Titanium Aluminide with Near Lamellar Microstructure,” . Proc. of International Symp. on Ordered Intermetallic Alloys and Composites (IWOIAC‐III) . 1998 , Hangzhou, China. Edited by: Lin , D.L. and Liu , C.T. In print,
  • Worth , B. , Worth , J.W. and Allison , J.E. 1995 . “Creep Deformation in Near‐γTiAl: Part 2. The Influence of Microstructure on Creep Deformation in Ti‐49Al‐1V,” . Metall. & Mater. Trans. A , 26A : 2961 – 2972 .
  • Yamabe , Y. , Takeyama , M. and Kikuchi , M. 1995 . “Microstructure Evolution Through Solid‐Solid Phase Transformations in Gamma Titanium Aluminides,” . Ref. , 1 : 111 – 129 .
  • Yoshihara , M. and Kim , Y‐W. 1995 . “Oxidation Behavior of Structure Controlled TiAl,” . Ref. , 2 : 93 – 100 .
  • Invited paper

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.