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Roughness-Induced Shear-and Squeeze-Film Effects in Magnetic Recording-Part I: Analysis
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Bhushan, B., and Tonder, K., 1989a, “Roughness-Induced Shear-and Squeeze-Film Effects in Magnetic Recording-Part I: Analysis,” ASME Journal of Tribology, Vol. III, pp. 220-227.
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Bhushan, B.1
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Bhushan, B.1
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4
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Bhushan, B.E.1
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Asymptotic Methods for an Infinitely Long Slider Squeeze-Film Bearing
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Diprima, R.C.1
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6
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0023998891
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Analysis of Ultra-Thin Gas Film Lubrication Based on Linearized Boltzmann Equation: First Report-Derivation of a Generalized Lubrication Equation Including Thermal Creep Flow
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Fukui, S., and Kaneko, R., 1988, “Analysis of Ultra-Thin Gas Film Lubrication Based on Linearized Boltzmann Equation: First Report-Derivation of a Generalized Lubrication Equation Including Thermal Creep Flow,” ASME Journal of Tribology, Vol. 110, pp. 253-262.
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ASME Journal of Tribology
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Fukui, S.1
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7
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A Database for Interpolation of Poiseuille Flow Rates for High Knudsen Number Lubrication Problems
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Fukui, S.1
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9
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0029105560
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Asymptotic Analysis of Ultra-Thin Gas Squeeze Film Lubrication for Infinite Squeeze Number (Extension of Pans Theory to the Molecular Gas Film Lubrication Equation)
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Matsuda, R., and Fukui, S., 1995a, “Asymptotic Analysis of Ultra-Thin Gas Squeeze Film Lubrication for Infinite Squeeze Number (Extension of Pan’s Theory to the Molecular Gas Film Lubrication Equation),” ASME Journal of Tribology, Vol. 117, pp. 9-15.
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ASME Journal of Tribology
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Matsuda, R.1
Fukui, S.2
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10
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0029485735
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Ultra-Thin Gas Squeeze Film Characteristics for Finite Squeeze Numbers
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to be published in, (ASME Paper No. 95-Trib-16)
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Matsuda, R., and Fukui, S., 1995b, “Ultra-Thin Gas Squeeze Film Characteristics for Finite Squeeze Numbers,” to be published in ASME Journal of Tribology (ASME Paper No. 95-Trib-16).
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