The Effect of Deposition Conditions on Adhesion Strength of Ti and Ti6Al4V Cold Spray Splats
Tóm tắt
Từ khóa
Tài liệu tham khảo
A. Papyrin, V. Kosarev, K.V. Klinkov, A. Alkimov, and V.M. Fomin, Cold Spray Technology, Chs. 1-3, Elsevier, 2007
T. Schmidt, F. Gaertner, and H. Kreye, New Developments in Cold Spray Based on Higher Gas and Particle Temperatures, J. Therm. Spray Technol., 2006, 15(4), p 488-494
T. Schmidt, F. Gärtner, H. Assadi, and H. Kreye, Development of a Generalized Parameter Window for Cold Spray Deposition, Acta Mater., 2006, 54(3), p 729-742
M. Grujicic, C.L. Zhao, W.S. DeRosset, and D. Helfritch, Adiabatic Shear Instability Based Mechanism for Particles/Substrate Bonding in the Cold-Gas Dynamic-Spray Process, Mater. Des., 2004, 25(8), p 681-688
G. Bae, S. Kumar, S. Yoon, K. Kang, H. Na, H.J. Kim, and C. Lee, Bonding Features and Associated Mechanisms in Kinetic Sprayed Titanium Coatings, Acta Mater., 2009, 57(19), p 5654-5666
G. Bae, Y. Xiong, S. Kumar, K. Kang, and C. Lee, General Aspects of Interface Bonding in Kinetic Sprayed Coatings, Acta Mater., 2008, 56(17), p 4858-4868
J. Vlcek, L. Gimeno, H. Huber, and E. Lugscheider, A Systematic Approach to Material Eligibility for the Cold-Spray Process, J. Therm. Spray Technol., 2005, 14(1), p 125-133
H. Assadi, F. Gärtner, T. Stoltenhoff, and H. Kreye, Bonding Mechanism in Cold Gas Spraying, Acta Mater., 2003, 51(15), p 4379-4394
S. Guetta, M. Berger, F. Borit, V. Guipont, M. Jeandin, M. Boustie, Y. Ichikawa, K. Sakaguchi, and K. Ogawa, Influence of Particle Velocity on Adhesion of Cold-Sprayed Splats, J. Therm. Spray Technol., 2009, 18(3), p 331-342
D. Goldbaum, R.R. Chromik, S. Yue, E. Irissou, and J.-G. Legoux, Mechanical Property Mapping of Cold Spray Ti Splats, J. Therm. Spray Technol., 2011, 20(3), p 486-496
R.R. Chromik, D. Goldbaum, J.M. Shockley, S. Yue, E. Irissou, J.-G. Legoux, and N.X. Randall, Modified Ball Bond Shear Test for Determination of Adhesion Strength of Cold Spray Splats, Surf. Coat. Technol., 2010, 205(5), p 1409-1414
J. Vlcek, H. Huber, H. Voggenreiter, and E. Lugscheider, “Melting Upon Particle Impact in the Cold Spray Process,” presented at Materials Week 2002, International Congress on Advanced Materials, Their Processes and Applications (Munich, Germany), Deutsche Gesellschaff fur Materialkunde (DGM), Sept 2002
S. Guetta, M.H. Berger, F. Borit, V. Guipont, M. Jeandin, F. Evry, M. Boustie, F. Poitiers, Y. Ichikawa, K. Ogawa, and J. Sendai, Influence of Particle Velocity on Adhesion of Cold-Sprayed Splats, Thermal Spray Conference & Exposition: Thermal Spray Crossing Borders, ASM International, 2008, p 726-731.
S. Yoon, H.J. Kim, and C. Lee, Deposition Behaviour of Bulk Amorphous NiTiZrSiSn According to the Kinetic and Thermal Energy Levels in the Kinetic Spraying Process, Surf. Coat. Technol., 2006, 200(20-21), p 6022-6029
X. Zhou, X. Wu, J. Wang, and J. Zhang, Numerical Investigation of the Rebounding and The Deposition Behavior of Particles During Cold Spraying, Acta Merall. Sin. (English Lett.), 2011, 24(1), p 45-53
K. Kim, M. Watanabe, K. Mitsuishi, K. Iakoubovskii, and S. Kuroda, Impact Bonding and Rebounding Between Kinetically Sprayed Titanium Particle and Steel Substrate Revealed by High-Resolution Electron Microscopy, J. Phys. D Appl. Phys., 2009, 42(6), p 65304-65308
K. Kim, M. Watanabe, J. Kawakita, and S. Kuroda, Effects of Temperature of In-Flight Particles on Bonding and Microstructure in Warm-Sprayed Titanium Deposits, J. Therm. Spray Technol., 2009, 18(3), p 392-400
C. Borchers, F. Gartner, T. Stoltenhoff, and H. Kreye, Microstructural Bonding Features of Cold Sprayed Face Centered Cubic Metals, J. Appl. Phys., 2004, 96(8), p 4288-4292
T. Hussain, D. McCartney, P. Shipway, and D. Zhang, Bonding Mechanisms in Cold Spraying: The Contributions of Metallurgical and Mechanical Components, J. Therm. Spray Technol., 2009, 18(3), p 364-379
W. Wong, E. Irissou, A. Ryabinin, J.-G. Legoux, and S. Yue, Influence of Helium and Nitrogen Gases on the Properties of Cold Gas Dynamic Sprayed Pure Titanium Coatings, J. Therm. Spray Technol., 2011, 20(1), p 213-226
K. Binder, J. Gottschalk, M. Kollenda, F. Gärtner, and T. Klassen, Influence of Impact Angle and Gas Temperature on Mechanical Properties of Titanium Cold Spray Deposits, J. Therm. Spray Technol., 2011, 20(1-2), p 234-242
E. Irissou, J.G. Legoux, C. Moreau, and A.N. Ryabinin, How Cold is Cold Spray? An Experimental Study of the Heat Transfer to the Substrate in Cold Gas Dynamic Spraying, International Thermal Spray Conference & Exposition: Thermal Spray Crossing Borders, Jun 2-4, 2008 (Maastricht, Netherlands), 2008
P.C. King and M. Jahedi, Relationship Between Particle Size and Deformation in the Cold Spray Process, Appl. Surf. Sci., 2010, 256(6), p 1735-1738
S. Zahiri, W. Yang, and M. Jahedi, Characterization of Cold Spray Titanium Supersonic Jet, J. Therm. Spray Technol., 2009, 18(1), p 110-117
D. Goldbaum, J. Ajaja, R.R. Chromik, W. Wong, S. Yue, E. Irissou, and J.-G. Legoux, Mechanical Behavior of Ti Cold Spray Coatings Determined by a Multi-Scale Indentation Method, Mater. Sci. Eng. A, 2011, 530, p 253-265
G. Clatterbaugh, J. Weiner, and H. Charles, Jr., Gold-Aluminum Intermetallics: Ball Bond Shear Testing and Thin Film Reaction Couples, IEEE Trans. Compon. Hybrids Manuf. Technol., 1984, 7(4), p 349-356
M.E. Dickinson and M. Yamada, A New Method for Measuring Shear Adhesion Strength of Ceramic Cold Spray Splats, Nanosci. Nanotechnol. Lett., 2010, 2, p 348-351
W. Wong, A. Rezaeian, E. Irissou, J.G. Legoux, and S. Yue, Cold Spray Characteristics of Commercially Pure Ti and Ti-6Al-4V, Adv. Mater. Res., 2010, 89-91, p 639-644
G.F. Vander Voort, Metallography, Principles and Practice, ASM International, Materials Park, OH, 1999
R. Kapoor and S. Nemat-Nasser, Determination of Temperature Rise During High Strain Rate Deformation, Mech. Mater., 1998, 27(1), p 1-12
W.C. Oliver and G.M. Pharr, An Improved Technique for Determining Hardness and Elastic Modulus Using Load and Displacement Sensing Indentation Experiments, J. Mater. Res., 1992, 7(6), p 1564-1583
R. Boyer, G. Welsch, and E.W. Collings, Ed., Materials Property Handbook: Titanium Alloys, ASM International, 1994
W.Y. Li, C. Zhang, X. Guo, J. Xu, C.J. Li, H. Liao, C. Coddet, and K.A. Khor, Ti and Ti-6Al-4V Coatings by Cold Spraying and Microstructure Modification by Heat Treatment, Adv. Eng. Mater., 2007, 9(5), p 418-423
W.-Y. Li, C. Zhang, X. Guo, C.-J. Li, H. Liao, and C. Coddet, Study on Impact Fusion at Particle Interfaces and Its Effect on Coating Microstructure in Cold Spraying, Appl. Surf. Sci., 2007, 254(2), p 517-526
V.A. Joshi, Titanium Alloys: An Atlas of Structures and Fracture Features, CRC Taylor & Francis Group, Boca Raton, 2006, p 1-2
B. Samareh and A. Dolatabadi, A Three-Dimensional Analysis of the Cold Spray Process: The Effects of Substrate Location and Shape, J. Therm. Spray Technol., 2007, 16(5), p 634-642
J. Legoux, E. Irissou, and C. Moreau, Effect of Substrate Temperature on the Formation Mechanism of Cold-Sprayed Aluminum, Zinc and Tin Coatings, J. Therm. Spray Technol., 2007, 16(5), p 619-626
C. Leyens and M. Peters, Ed., Titanium and Titanium Alloys: Fundamentals and Applications, Wiley-VCH Verlag GmbH & Co., 2003, p 3
M. Grujicic, Particle/Substrate Interaction in the Cold-Spray Bonding Process, Ch. 9, The Cold Spray Materials Deposition Process: Fundamentals and Applications, V.K. Champagne, Ed., Woodhead Publishing Limited, 2007
C.-J. Li, W.-Y. Li, and H. Liao, Examination of the Critical Velocity for Deposition of Particles in Cold Spraying, J. Therm. Spray Technol., 2006, 15(2), p 212-222
A. Alkhimov, V. Kosarev, and S. Klinkov, The Features of Cold Spray Nozzle Design, J. Therm. Spray Technol., 2001, 10(2), p 375-381
V. Kosarev, S. Klinkov, A. Alkhimov, and A. Papyrin, On Some Aspects of Gas Dynamics of the Cold Spray Process, J. Therm. Spray Technol., 2003, 12(2), p 265-281
B. Samareh, O. Stier, V. Lüthen, and A. Dolatabadi, Assessment of CFD Modeling via Flow Visualization in Cold Spray Process, J. Therm. Spray Technol., 2009, 18(5), p 934-943
P. Follansbee and G. Gray, An Analysis of the Low Temperature, Low and High Strain-Rate Deformation of Ti-6Al-4V, Metall. Mater. Trans. A, 1989, 20(5), p 863-874
M. Vanderhasten, L. Rabet, and B. Verlinden, AME High Temperature Deformation of Ti6Al4V at Low Strain Rate, Metalurgija, 2005, 11, p 195-200
V. Guipont, M. Jeandin, S. Bansard, K.A. Khor, M. Nivard, L. Berthe, J.-P. Cuq-Lelandais, and M. Boustie, Bond Strength Determination of Hydroxyapatite Coatings on Ti-6Al-4V Substrates Using the LAser Shock Adhesion Test (LASAT), J. Biomed. Mater. Res. A, 2010, 95A(4), p 1096-1104
T. Price, P. Shipway, and D. McCartney, Effect of Cold Spray Deposition of a Titanium Coating on Fatigue Behavior of a Titanium Alloy, J. Therm. Spray Technol., 2006, 15(4), p 507-512
T. Marrocco, D. McCartney, P. Shipway, and A. Sturgeon, Production of Titanium Deposits by Cold-Gas Dynamic Spray: Numerical Modeling and Experimental Characterization, J. Therm. Spray Technol., 2006, 15(2), p 263-272