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Intrinsic toughness of interfaces between SiC coatings and substrates of Si or C fiber
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A. S. Argon, V. Gupta, H. S. Landis, and J. A. Cornie, "Intrinsic Toughness of Interfaces Between SiC Coatings and Substrates of Si or C Fiber," J. Mater. Sci., 24, 1207-18 (1989).
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Measurement of interface strength by laser spallation experiment
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V. Gupta, A. S. Argon, D. M. Parks, and J. A. Cornie, "Measurement of Interface Strength by Laser Spallation Experiment," J. Mech. Phys. Solids, 40 [1] 141-80 (1992).
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Effect of substrate orientation, roughness, and film deposition mode on the tensile strength and toughness of niobium-sapphire interfaces
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V. Gupta, J. Wu, and A. Pronin, "Effect of Substrate Orientation, Roughness, and Film Deposition Mode on the Tensile Strength and Toughness of Niobium-Sapphire Interfaces," J. Am. Ceram. Soc., 80 [12] 3172-80 (1997).
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Structure and chemistry of Nb/sapphire interfaces, with and without interlayers of Sb and Cr
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J. Yuan, V. Gupta, and M. Kim, "Structure and Chemistry of Nb/Sapphire Interfaces, With and Without Interlayers of Sb and Cr," Acta Metall. Mater., 43 [2] 769-99 (1995).
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The effect of microstructure and chemistry on the tensile strength of Nb/sapphire interfaces with and without interlayers of Sb and Cr
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J. Yuan and V. Gupta, "The Effect of Microstructure and Chemistry on the Tensile Strength of Nb/Sapphire Interfaces With and Without Interlayers of Sb and Cr," Acta Metall. Mater., 43 [2] 781-94 (1995).
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Double cantilever beam measurement and finite element analysis of cryogenic mode I interlaminar fracture toughness of glass-cloth/epoxy laminates
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Y. Shindo, K. Horiguchi, R. Wang, and H. Kudo, "Double Cantilever Beam Measurement and Finite Element Analysis of Cryogenic Mode I Interlaminar Fracture Toughness of Glass-Cloth/Epoxy Laminates," J. Eng. Mater. Technol., 123, 191-7 (2001).
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A new technique to measure the toughness of thin film interfaces
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V. Gupta and A. Pronin. "A New Technique to Measure the Toughness of Thin Film Interfaces," J. Am. Ceram. Soc., 78 [5] 1397-400 (1995).
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Measurement of thin film interface toughness by using laser-generated stress pulses
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A. N. Pronin and V. Gupta, "Measurement of Thin Film Interface Toughness by Using Laser-generated Stress Pulses," J. Mech. Phys. Solids, 46 [3] 389-410 (1998).
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Measurement of interface strength by the modified laser spallation technique. Part II: Applications to metal-ceramic interfaces
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V. Gupta, J. Yuan, and A. Pronin, "Measurement of Interface Strength by the Modified Laser Spallation Technique. Part II: Applications to Metal-Ceramic Interfaces," J. Appl. Phys., 74 [4] 2397-404 (1993).
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The effect of structure and chemistry on the strength of FeCrAl(Y)/sapphire interfaces: I, structure of interfaces
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H. Wu, S. N. Basu, V. Kireev, and V. Gupta, "The Effect of Structure and Chemistry on the Strength of FeCrAl(Y)/Sapphire Interfaces: I, Structure of Interfaces," Mater. Sci. Eng., A349, 248-55 (2003).
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The effect of structure and chemistry on the strength of FeCrAl(Y)/sapphire interfaces: II, strength of interfaces
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H. Wu, S. N. Basu, V. Kireev, and V. Gupta, "The Effect of Structure and Chemistry on the Strength of FeCrAl(Y)/Sapphire Interfaces: II, Strength of Interfaces," Mater. Sci. Eng., A394, 265-71 (2003).
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Study on the interface strength of zirconia coatings by a laser spallation technique
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0032531284
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Measurement and control of interface strength of rf magnetron sputtered CA-PO-coatings on Ti-6A1-4V substrates by using the laser spallation technique
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K. van Dijk, V. Gupta, A. K. Yu, and J. A. Jansen, "Measurement and Control of Interface Strength of rf Magnetron Sputtered CA-PO-Coatings on Ti-6A1-4V Substrates by Using the Laser Spallation Technique," J. Blamed. Mater. Res., 41, 624-32 (1998).
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Interferometry on diffuse surfaces in high-velocity measurements
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A. Pronin and V. Gupta, "Interferometry on Diffuse Surfaces in High-Velocity Measurements," Rev. Sci. Instrum., 64 [8] 2233-6 (1993).
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