Publications

J. Wayne Jones

Professor Emeritus

jonesjwa@umich.edu

2022 Gerstacker
T: (734) 764-7503

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  1. Saddock, N, Suzuki, A, Wu, K, Wildy, S, Change, Y, Pollock, T, and Jones, J (2005). Solidification and Microstructure of Mg - Al - (Ca, Sr, Ce, La) Ternary Alloys,  Magnesium Technology 2005:121-126.

  2. Shyam, A, Allison, J, and Jones, J (2005). A Small Fatigue Crack Growth Relationship And Its Application To Cast Aluminum,  Acta Materialia, 53(5):1499.

  3. Shyam, A, Allison, J, and Jones, J (2005). Modeling Small Fatigue Crack Growth in Cast Aluminum AlloysProceedings of 11th International Conference on Fracture (ICF 11).

  4. Shyam, A, Torbet, C, Jha, S, Larsen, J, Caton, M, Szczepanski, C, Pollock, T, and Jones, J (2005). Development of ultrasonic fatigue for rapid high temperature fatigue studies in turbine engine materials,  Materials Damage Prognosis:247-252.

  5. Suzuki, A, Saddock, N, Jones, J, and Pollock, T (2005). Phase Transformation and Creep of Mg-AI-Ca Based Die-Cast Alloys,  Magnesium Technology 2005:111-116.

  6. Suzuki, A, Saddock, N, Jones, J, and Pollock, T (2005). Solidification Paths And Eutectic Intermetallic Phases In Mg-Al-Ca Ternary Alloys,  Acta Materialia, 53(9):2823.

  7. Szczepanski, C, Shyam, A, Jha, S, Larsen, J, Torbet, C, Johnson, S, and Jones, J (2005). Characterization of the role of microstructure on the fatigue life of Ti-6Al-2Sn-4Zr-6Mo using ultrasonic fatigue,  Materials Damage Prognosis:315-320.

  8. Chadha, G, Allison, J, and Jones, J (2004). The role of microstructure and porosity in ductility of die cast AM50 and AM60 magnesium alloys,  Magnesium Technology 2004:181-186.

  9. Moore, AR, Torbet, CJ, Shyam, A, Jones, JW, Walukas, DM, and Decker, RF (2004). Fatigue behavior of thixomolded magnesium AZ91D using ultrasonic techniques,  Magnesium Technology 2004:263-268.

  10. Shyam, A, Picard, Y, Jones, J, Allison, J, and Yalisove, S (2004). Small Fatigue Crack Propagation From Micronotches In The Cast Aluminum Alloy W319,  Scripta Materialia, 50(8):1109.

  11. Shyam, A, Torbet, C, Jha, S, Larsen, J, Caton, M, Szczepanski, C, Pollock, T, and Jones, J (2004). Development of Ultrasonic Fatigue for Rapid, High Temperature Fatigue Studies in Turbine Engine MaterialsSuperalloys 2004:259-268.

  12. Suzuki, A, Saddock, N, Jones, J, and Pollock, T (2004). Structure And Transition Of Eutectic (Mg,Al)(2)Ca Laves Phase In A Die-Cast Mg-Al-Ca Base Alloy,  Scripta Materialia, 51(10):1005.

  13. Weakley-Bollin, S, Donlon, W, Wolverton, C, Jones, J, and Allison, J (2004). Modeling The Age-Hardening Behavior Of Al-Si-Cu Alloys,  Metallurgical And Materials Transactions A-Physical Metallurgy And Materials Science, 35a(8):2407.

  14. Zhu, X, Shyam, A, Jones, J, Mayer, H, Lasecki, J, and JE, A (2004). Elevated temperature fatigue behavior of a 319 cast aluminum alloy in the gigacycle regime,  Proceedings, Third International Conference on Very High Cycle Fatigue (VHCF-3):553-560.

  15. Caton, M, Jones, J, Mayer, H, Stanzl-Tschegg, S, and Allison, J (2003). Demonstration Of An Endurance Limit In Cast 319 Aluminum,  Metallurgical And Materials Transactions A-Physical Metallurgy And Materials Science, 34(1):33.

  16. Chadha, G, Wu, A, Chen, Q, Jones, J, Pollock, T, and De Graef, M (2003). In-situ and Ex-situ Surface Displacement Measurements,  Proc. Soc. Experimental Mechanics.

  17. Moreno, I, Nandy, T, Jones, J, Allison, J, and Pollock, T (2003). Microstructural Stability And Creep Of Rare-Earth Containing Magnesium Alloys,  Scripta Materialia, 48(8):1029.

  18. Nandy, T, Jones, J, Pollock, T, Walukas, D, and Decker, R (2003). Blended Magnesium Alloys Produced by the Thixomolding Process,  Metallurgical and Materials Transactions A, 34A(1):33-41.

  19. Moreno, I, Nandy, T, Jones, J, Allison, J, and Pollock, T (2002). Microstructure and creep behavior of a die cast magnesium-rare earth alloy,  Magnesium Technology 2002:111-116.

  20. Caton, M, Jones, J, and Allison, J (2001). The Influence Of Heat Treatment And Solidification Time On The Behavior Of Small-Fatigue-Cracks In A Cast Aluminum Alloy,  Materials Science And Engineering A-Structural Materials Properties Microstructure And Processing, 314(1-2):81.

  21. Harding, T and Jones, J (2001). Evaluation Of A Threshold-Based Model Of The Elevated-Temperature Fatigue Of Impact-Damaged Gamma-Tial,  Metallurgical And Materials Transactions A-Physical Metallurgy And Materials Science, 32(12):2975.

  22. Moreno, I, Nandy, T, Jones, J, Allison, J, and Pollock, T (2001). Microstructural Characterization Of A Die-Cast Magnesium-Rare Earth Alloy,  Scripta Materialia, 45(12):1423.

  23. Moreno, IP, Allison, JE, and Jones, JW (2001). Creep and bolt-load retention behavior of a die cast Mg-rare earth alloy,  Magnesium Technology 2001:145.

  24. Smith, R, Harding, T, Jones, J, Steif, P, and Pollock, T (2001). The role of impact damage and fatigue strength reduction in gamma titanium aluminide alloys,  Structural Intermetallics 2001:259-268.

  25. Steif, P, McKenna, V, Jones, J, Smith, R, Harding, T, and Gilchrist, A (2001). Accounting for small particle impact in the design of gamma -TiAl turbine blades,  Structural Intermetallics 2001:363-370.

  26. Caton, M, Jones, J, and Allison, J (2000). Use of a Small-Crack Fracture Mechanics-Based Model for Predicting the S-N Response of Cast Aluminum Alloys,  Fatigue Crack Growth Thresholds, Endurance Limits, and Design:285-303.

  27. Chawla, N, Andes, C, Davis, L, Allison, J, and Jones, J (2000). The interactive role of inclusions and SiC reinforcement on the high-cycle fatigue resistance of particle reinforced metal matrix compositesMetallurgical and Materials Transactions A, 31A(3A):951.

  28. Chawla, N, Habel, U, Shen, Y, Andres, C, Jones, JW, and Allison, JE (2000). The effect of matrix microstructure on the tensile and fatigue behavior of SiC particle-reinforced 2080 Al matrix composites,  Metallurgical and Materials Transactions A, 31A(2):531.

  29. Cloutier, C, Jones, J, and Allison, J (2000). The Effect of Copper Level and Solidification Rate on the Aging Behavior of a 319-Type Cast Aluminum Alloy,  SAE International.

  30. Harding, T and Jones, J (2000). Effect Of Foreign Object Damage On The Fatigue Strength Of An Xd (Tm) Gamma-Tial Alloy,  Scripta Materialia, 43(7):631.

  31. Harding, T and Jones, J (2000). Fatigue Thresholds Of Cracks Resulting From Impact Damage To Gamma-Tial,  Scripta Materialia, 43(7):623.

  32. Harding, T and Jones, J (2000). The Effect Of Impact Damage On The Room-Temperature Fatigue Behavior Of Gamma-Tial,  Metallurgical And Materials Transactions A-Physical Metallurgy And Materials Science, 31(7):1741.

  33. Caton, M, J, J, and Allison, J (1999). A Study of Small Fatigue Crack Growth in Cast Aluminum and Prediction of Fatigue Properties,  Small Fatigue Cracks: Mechanics, Mechanisms and Applications:155-166.

  34. Caton, M, Jones, J, Boileau, J, and Allison, J (1999). The Effect Of Solidification Rate On The Growth Of Small Fatigue Cracks In A Cast 319-Type Aluminum Alloy,  Metallurgical And Materials Transactions A-Physical Metallurgy And Materials Science, 30(12):3055.

  35. Chawla, N, Jones, J, and Allison, J (1999). Elevated temperature tensile and fatigue behavior of particle reinforced metal matrix composites,  Fatigue '99: Seventh International Fatigue Congress:1465-1470.

  36. Cloutier, C, Reeber-Schmansky, P, JW, J, and Allison, J (1999). A Process Model for the Age Hardening of a 319-Type Aluminum Alloy,  Automotive Alloys III.

  37. Harding, T and Jones, J (1999). Behavior Of Gamma Tial Subjected To Impact Damage And Elevated Temperature Fatigue,  Scripta Materialia, 42(2):129.

  38. Harding, T, Jones, J, Larsen, J, and Steif, P (1999). Influence of impact damage on the elevated temperature fatigue behavior of gamma titanium aluminide alloys,  Second International Symposium on Gamma Titanium Aluminides (ISGTA) 1999:527-534.

  39. Harding, T, Jones, J, Steif, P, and Pollock, T (1999). Room Temperature Fatigue Response Of Gamma-Tial To Impact Damage,  Scripta Materialia, 40(4):445.

  40. Chawla, N, Andres, C, Jones, J, and Allison, J (1998). Cyclic Stress-Strain Behavior Of Particle Reinforced Metal Matrix Composites,  Scripta Materialia, 38(10):1595.

  41. Chawla, N, Andres, C, Jones, J, and Allison, J (1998). Effect Of SiC Volume Fraction And Particle Size On The Fatigue Resistance Of A 2080 Al/Sicp Composite,  Metallurgical And Materials Transactions A-Physical Metallurgy And Materials Science, 29(11):2843.

  42. Harding, T, Jones, J, Pollock, T, and Steif, P (1998). The Effects of Impact Damage on the Fatigue Properties of Gamma TiAl,  Proc. of the Paris Symp. on Fatigue of Structural Materials:499.

  43. Sohn, K, Yurko, J, Chen, F, Jones, J, and Allison, J (1998). Creep and bolt-load retention behavior of die-cast magnesium alloys,  Automotive Alloys II:81-90.

  44. Sohn, K, Yurko, J, Jones, J, Kearns, F, and Allison, J (1998). Bolt Load Retention Behavior of Die-Cast AZ91D and AE42 Magnesium,  SAE Paper 80090.

  45. Harding, T, Jones, J, Pollock, T, Steif, P, and Rubal, M (1997). Impact damage and fatigue behavior of gamma TiAl,  High Cycle Fatigue of Structural Materials:499-511.

  46. Steif, P, Jones, J, Harding, T, Rubal, M, Gandelsman, V, Biery, N, and Pollock, T (1997). Surface damage due to impact and fatigue strength reduction in gamma titanium aluminides,  Structural Intermetallics 1997:435.