Adrian Bejan(Editor), Allan D. Kraus (Editor). Heat transfer Handbok (776115), страница 57
Текст из файла (страница 57)
S. (1986). Contact Heat Transfer: The Last Decade, AIAAJ., 24(3), 510–523.Madhusudana, C. V., Peterson, G. P., and Fletcher, L. S. (1988). Effect of Non-uniform Pressures on the Thermal Conductance in Bolted and Riveted Joints, Mech. Eng., 104, 57–67.Magnus, W., Oberhettinger, F., and Soni, R. P. (1966).
Formulas and Theorems for SpecialFunctions of Mathematical Physics, Springer-Verlag, New York.Mantelli, M. B. H., and Yovanovich, M. M. (1996). Experimental Determination of the OverallThermal Resistance of Satellite Bolted Joints, J. Thermophys. Heat Transfer, 10(1), 177–179.Mantelli, M. B. H., and Yovanovich, M. M. (1998a). Parametric Heat Transfer Study of BoltedJoints, J.
Thermophys. Heat Transfer, 12(3), 382–390.Mantelli, M. B. H., and Yovanovich, M. M. (1998b). Compact Analytical Model for OverallThermal Resistance of Bolted Joints, Int. J. Heat Mass Transfer, 41(10), 1255–1266.Marotta, E. E., and Fletcher, L. S. (1996). Thermal Contact Resistance of Selected PolymericMaterials, J. Thermophys. Heat Transfer, 10(2), 334–342.Marotta, E. E., and Fletcher, L. S. (2001). Thermal Contact Resistance Modeling of Non-flat,Roughened Surfaces with Non-metallic Coatings, J. Heat Transfer, 123, 11–23.Martin, K. A., Yovanovich, M. M., and Chow, Y.
L. (1984). Method of Moments Formulation of Thermal Constriction Resistance of Arbitrary Contacts, AIAA-84-1745, AIAA 19thThermophysics Conference, Snowmass, CO, June 25–28.BOOKCOMP, Inc. — John Wiley & Sons / Page 388 / 2nd Proofs / Heat Transfer Handbook / Bejan[388], (128)Lines: 4874 to 4914———6.0pt PgVar———Normal PagePgEnds: TEX[388], (128)REFERENCES123456789101112131415161718192021222324252627282930313233343536373839404142434445389McGee, G.
R., Schankula, M. H., and Yovanovich, M. M. (1985). Thermal Resistance ofCylinder-Flat Contacts: Theoretical Analysis and Experimental Verification of a LineContact Model, Nucl. Eng. Des., 86, 369–381.McWaid, T. H., and Marschall, E. (1992a). Applications of the Modified Greenwood andWilliamson Contact Model for Prediction of Thermal Contact Resistance, Wear, 152, 263–277.McWaid, T.
H., and Marschall, E. (1992b). Thermal Contact Resistance across Pressed MetalContacts in a Vacuum Environment, Int. J. Heat Mass Transfer, 35, 2911–2920.Mikic, B. B. (1970). Thermal Constriction Resistance Due to Nonuniform Surface Conditions:Contact Resistance at Nonuniform Interface Pressure, Int. J. Heat Mass Transfer, 13, 1497–1500.Mikic, B. B. (1974). Thermal Contact Conductance: Theoretical Considerations, Int. J. HeatMass Transfer, 17, 205–214.Mikic, B. B., and Rohsenow, W.
M. (1966). Thermal Contact Resistance, Mech. Eng. Rep. DSR74542-41, MIT, Cambridge, MA.Muzychka, Y. S., Sridhar, M. R., Yovanovich, M. M., and Antonetti, V. W. (1999). ThermalSpreading Resistance in Multilayered Contacts: Applications in Thermal Contact Resistance, J. Thermophys.
Heat Transfer, 13(4), 489–494.Muzychka, Y. S., Culham, J. R., and Yovanovich, M. M. (2000). Thermal Spreading Resistanceof Eccentric Heat Sources on Rectangular Flux Channels, ASME-HTD-366-4, ASME, NewYork, pp. 347–355.Negus, K. J., and Yovanovich, M. M. (1984a). Constriction Resistance of Circular Flux Tubeswith Mixed Boundary Conditions by Linear Superposition of Neumann Solutions, ASME84-HT-84, ASME, New York.Negus, K. J., and Yovanovich, M. M. (1984b). Application of the Method of Optimized Imagesto Steady Three-Dimensional Conduction Problems, ASME-84-WA/HT-110, ASME, NewYork.Negus, K. J., and Yovanovich, M. M. (1988).
Correlation of Gap Conductance Integral forConforming Rough Surfaces, J. Thermophys. Heat Transfer, 12, 279–281.Negus, K. J., and Yovanovich, M. M. (1989). Transient Temperature Rise at Surfaces Due toArbitrary Contacts on Half-Spaces, CSME Trans., 13(1/2), 1–9.Negus, K. J., Yovanovich, M. M., and Thompson, J. C. (1985). Thermal Constriction Resistance of Circular Contacts on Coated Surfaces: Effect of Contact Boundary Condition,AIAA-85-1014, AIAA 20th Thermophysics Conference, Williamsburg, VA, June 19–21.Negus, K.
J., Yovanovich, M. M., and Beck, J. V. (1989). On the Nondimensionalization ofConstriction Resistance for Semi-infinite Heat Flux Tubes, J. Heat Transfer, 111, Aug.,804–807.Nelson, G. J., and Sayers, W. A. (1992). A Comparison of Two-Dimensional Planar, Axisymmetric and Three-Dimensional Spreading Resistance, Proc. 8th Annual IEEE Semiconductor Thermal Measurement and Management Symposium, 62–68.Nho, K. M. (1989). Experimental Investigation of Heat Flow Rate and Directional Effect onContact Resistance of Anisotropic Gound/Lapped Interfaces, Ph.D. dissertation Department of Mechanical Engineering, University of Waterloo, Waterloo, Ontario, Canada.Normington, E. J., and Blackwell, J.
H. (1964). Transient Heat Flow from Constant Temperature Spheroids and the Thin Circular Disk, Q. J. Mech. Appl. Math., 17, 65–72.BOOKCOMP, Inc. — John Wiley & Sons / Page 389 / 2nd Proofs / Heat Transfer Handbook / Bejan[389], (129)Lines: 4914 to 4948———12.0pt PgVar———Normal PagePgEnds: TEX[389], (129)390123456789101112131415161718192021222324252627282930313233343536373839404142434445THERMAL SPREADING AND CONTACT RESISTANCESNormington, E.
J., and Blackwell, J. H. (1972). Transient Heat Flow from a Thin Circular Disk:Small Time Solution, J. Aust. Math. Soc., 14, 433–442.Onions, R. A., and Archard, J. F. (1973). The Contact of Surfaces Having a Random Structure,J. Phys. D. Appl. Phys., 6, 289–304.Prasher, R. S. (2001). Surface Chemistry and Characteristics Based Model for the ThermalContact Resistance of Fluidic Interstitial Thermal Interface Materials, J. Heat Transfer,123, 969–975.Rapier, A. C., Jones, T.
M., and McIntosh, J. E. (1963). The Thermal Conductance of UraniumDioxide/Stainless Steel Interfaces, Int. J. Heat Mass Transfer, 6, 397–416.Roess, L. C. (1950). Theory of Spreading Conductance, Beacon Laboratories of Texas Company, Beacon, NY, App. A (unpublished report).Savija, I., Culham, J. R., Yovanovich, M. M., and Marotta, E. E. (2002a).
Review of ThermalConductance Models for Joints Incorporating Enhancement Materials, AIAA-2002-0494,40th AIAA Aerospace Sciences Meeting and Exhibit, Jan. 14–17, Reno, NV.Savija, I., Yovanovich, M. M., Culham, J. R., and Marotta, E. E. (2002b). Thermal JointResistance Models for Conforming Rough Surfaces with Grease Filled Gaps, AIAA-20020495, 40th AIAA Aerospace Sciences Meeting and Exhibit, Jan. 14–17, Reno, NV.Sayles, R. S., and Thomas, T. R. (1976).
Thermal Conductance of a Rough Elastic Contact, J.Appl. Energy, 2, 249–267.Schneider, G. E. (1978). Thermal Resistance Due to Arbitrary Dirichlet Contacts on a HalfSpace, Prog. Astronaut. Aeronaut. Thermophys. Therm. Control, 65, 103–119.Schneider, G. E., Strong, A. B., and Yovanovich, M. M. (1976). Transient Heat Flow froma Thin Circular Disk, AIAA Progress in Astronautics, Radiative Transfer and ThermalControl, (Ed. A. M.
Smith), MIT Press, 49, 419–432.Semyonov, Yu. G., Borisov, S. E., and Suetin, P. E. (1984). Investigation of Heat Transfer inRarefied Gases over a Wide Range of Knudsen Numbers, Int. J. Heat Mass Transfer, 27,1789–1799.Sexl, R. U., and Burkhard, D. G. (1969). An Exact Solution for Thermal Conduction througha Two-Dimensional Eccentric Constriction, Prog. Astronaut. Aeronaut., 21, 617–620.Shlykov, Yu. P. (1965). Calculation of Thermal Contact Resistance of Machined Metal Surfaces, Teploenergetika, 12(10), 79–83.Smythe, W. R. (1951). The Capacitance of a Circular Annulus, Am. J. Phys., 22(8), 1499–1501.Smythe, W.
R. (1968). Static and Dynamic Electricity, 3rd ed., McGraw-Hll, New York.Sneddon, I. N. (1966). Mixed Boundary Value Problems in Potential Theory, North-Holland,Amsterdam.Song, S. (1988). Analytical and Experimental Study of Heat Transfer through Gas Layers ofContact Interfaces, Ph.D. dissertation, University of Waterloo, Waterloo, Ontario, Canada.Song, S., and Yovanovich, M.
M. (1987). Correlation of Thermal Accommodation Coefficientsfor Engineering Surfaces, ASME-HTD-69, ASME, New York, 107–116.Song, S., and Yovanovich, M. M. (1988). Relative Contact Pressure: Dependence on SurfaceRoughness and Vickers Microhardness, J. Thermophys. Heat Transfer, 2(1), 43–47.Song, S., Yovanovich, M.
M., and Nho, K. (1992a). Thermal Gap Conductance: Effects of GasPressure and Mechanical Load, J. Thermophys. Heat Transfer, 6(1), 62–68.Song, S., Park, C., Moran, K. P., and Lee, S. (1992b). Contact Area of Bolted Joint Interface:Analytical, Finite Element Modeling, and Experimental Study, Comput. Aid. Des.
Electron.Packag., 3, 73–81.BOOKCOMP, Inc. — John Wiley & Sons / Page 390 / 2nd Proofs / Heat Transfer Handbook / Bejan[390], (130)Lines: 4948 to 4994———0.0pt PgVar———Custom Page (7.0pt)PgEnds: TEX[390], (130)REFERENCES123456789101112131415161718192021222324252627282930313233343536373839404142434445391Song, S., Moran, K. P., Augi, R., and Lee, S. (1993a). Experimental Study and Modeling ofThermal Contact Resistance across Bolted Joints, AIAA-93-0844, 31st Aerospace SciencesMeeting and Exhibit, Reno, NV, Jan. 11–14.Song, S., Yovanovich, M. M., and Goodman, F. O.
(1993b). Thermal Gap Conductance ofConforming Rough Surfaces in Contact, J. Heat Transfer, 115, 533–540.Song, S., Lee, S., and Au, V. (1994). Closed-Form Equation for Thermal Constriction/Spreading Resistances with Variable Resistance Boundary Condition, Proc. 1994 IEPS Conference, Atlanta, GA, pp. 111–121.Sridhar, M. R. (1994). Elastoplastic Contact Models for Sphere-Flat and Conforming RoughSurface Applications, Ph.D. dissertation, University of Waterloo, Waterloo, Ontario, Canada.Sridhar, M. R., and Yovanovich, M. M.