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G E. Youngblood et al./ Composites Science and Technology 62(2002)1127-1139 [12 Bhatt H, Donaldson KY, Bhatt R. Hasselman DPH. Role of [25] Nan Ce-Wan, Birringer R, Clarke Donald R, Gleiter H. Effective terfacial carbon layer in the thermal diffusivity/conductivity of thermal conductivity of particulate composites with interfacial con carbide fiber-reinforced reaction bonded silicon nitride thermal resistance. J Appl Phys 1997: 81(10): 669. matrix composites. J Am Ceram Soc 1992: 75(2):3 26 Bourolga B. Bardon JP. Measurement of superficial and contact [13 Hasselman DPH, Johnson LF. Efective thermal conductivity of thermal resistances from fundamental time constant. Int J Heat posites with interfacial thermal barrier resistance. J Comp 992:35(2):361 Mater1987;21:508 27] Hasselman DPH, Donaldson KY. Thermal conductivity of [14 Fadale TD. Taya M. Effective thermal conductivity of composit d silicon carbide whisker- reinforced lithium alu. with fibre-matrix debonding. J Mater Sci Lett 1991; 10: 68 [5] Markworth AJ. The effective thermal conductivity of a unidirec 79():742. tional fibre composite with fibre-matrix debonding: a calculation [28] Handbook of chemistry and physics. 65th ed. Boca Raton(FL) based on effective-medium theory. J Mater Sci Let 1993: 12: 1487 CRC Press [16 Leung WP, Tam AC. Thermal conduction at a contact interface [29] Touloukian YS, Buyco EH, editors, Thermophysical properties of matter, Vol 5448. New York: IFI/Plenum, 19 30 Hi-Nicalon fiber specifications. Yokohama, Japan: Nippon Car- [7 Lu TJ, Hutchinson Jw. Effect of matrix cracking on the overall bon Co.. Ltd. thermal conductivity of fibre-reinforced composites. Phil Trans 31 Parker WJ, Jenkins R, Butler CP. Abbott GL. Flash method of Roy Soc Lond 1995: A 351: 595. etermining thermal diffusivity, heat capacity and thermal con- [18 Maxwell JC. A treatise on electricity and magnetism. 3rd ed ductivity. J Appl Phys 1961: 32: 1679 Oxford: Oxford University Press: 1904 32] Senor DJ, Youngblood GE, Moore CE, Trimble DJ, Newsome [19 Rayleigh w. On the influence of obstacles arranged in rectan- GA. Woods J. Effects of neutron irradiation on thermal con- gular order upon the properties of a medium. Philosophical ductivity of Sic-based composites and monolithic ceramics. Magazine 1892: 34: 481 on Technology 1996; 30(3): 943 [20] Ostoja-Starzewski M, Sheng P, Jasiuk 1. Influence of random [33] Properties of Tyranno SA and ZE, by Ube Industries, Ube City geometry on effective properties and damage formation in com lapan, July 1998 oSite materials. J Eng mater and Tech 1994: 116: 384. 34 Kingery WD, Bowen HK, Uhlman DR. Introduction to cera [21 Alzebdeh K, Jasiuk I, Ostoja-Starzewski M. Scale and boundar 2nd ed. New York: John Wiley and Sons: 1976 ndition effects in elasticity and damage mechanics. Studies applied mechanics. In: Ju Jw, Chaboche JL, Voyiadjis G. editors. mal conductivities of Sic and Si3 N4 ceramics through improved Damage mechanics. 1998. pp 65-80. processing Ceram Eng Sci Proc 1996: 17(5): 475. nductivities of multiscale materials by essential and natural effects on thermal conductivity of sIC-based composites and boundary conditions. Phys Rev 1996 B: 278 lithic ceramics. fusion materials nnual progres [23] Graham S. Random geometry influences on report for period ending 30 June, 1997. p. 75, DOE/ER-0313/22. nductivity. PhD thesis [Chapter 5]. Georgia of Tech- [37 Hollenberg Gw, Henager Jr. C.H. Youngblood G.E., Trimble nology, Atlanta, GA: 1999 D. Simonson S.A., Newsome GA. et al. The effect of [24 Hasselman DPH, Donaldson KY, Liu J, Gauckler LJ, Ownby irradiation on the stability and properties of monolithic silicon DP. Thermal conductivity of particulate-diamond-reinforce carbide and SiC/Sic composites up to 25 dpa. J Nucl Mater 1995, ordierite matrix composite. J Am Ceram Soc 1994: 77(7): 1757[12] Bhatt H,Donaldson KY,Bhatt R,Hasselman DPH. Role of interfacial carbon layer in the thermal diffusivity/conductivity of silicon carbide fiber-reinforced reaction bonded silicon nitride matrix composites. J Am Ceram Soc 1992;75(2):334. [13] Hasselman DPH,Johnson LF. Effective thermal conductivity of composites with interfacial thermal barrier resistance. J Comp Mater 1987;21:508. [14] Fadale TD,Taya M. Effective thermal conductivity of composites with fibre-matrix debonding. J Mater Sci Lett 1991;10:682. [15] Markworth AJ. The effective thermal conductivity of a unidirec￾tional fibre composite with fibre-matrix debonding: a calculation based on effective-medium theory. J Mater Sci Let 1993;12:1487. [16] Leung WP,Tam AC. Thermal conduction at a contact interface measured by pulsed photothermal radiometry. J Appl Phys 1988; 63(9):4505. [17] Lu TJ,Hutchinson JW. Effect of matrix cracking on the overall thermal conductivity of fibre-reinforced composites. Phil Trans Roy Soc Lond 1995;A 351:595. [18] Maxwell JC. A treatise on electricity and magnetism. 3rd ed. Oxford: Oxford University Press; 1904. [19] Rayleigh W. On the influence of obstacles arranged in rectan￾gular order upon the properties of a medium. Philosophical Magazine 1892;34:481. [20] Ostoja-Starzewski M,Sheng P,Jasiuk I. Influence of random geometry on effective properties and damage formation in com￾posite materials. J Eng Mater and Tech 1994;116:384. [21] Alzebdeh K,Jasiuk I,Ostoja-Starzewski M. Scale and boundary condition effects in elasticity and damage mechanics. Studies in applied mechanics. In: Ju JW,Chaboche JL,Voyiadjis G. editors. Damage mechanics. 1998. pp 65–80. [22] Ostoja-Starzewski M,Schulte J. Bounding of effective thermal conductivities of multiscale materials by essential and natural boundary conditions. Phys Rev 1996;B:278. [23] Graham S. Random geometry influences on effective thermal conductivity. PhD thesis [Chapter 5],Georgia Institute of Tech￾nology,Atlanta,GA; 1999. [24] Hasselman DPH,Donaldson KY,Liu J,Gauckler LJ,Ownby DP. Thermal conductivity of particulate-diamond-reinforced cordierite matrix composite. J Am Ceram Soc 1994;77(7):1757. [25] Nan Ce-Wan,Birringer R,Clarke Donald R,Gleiter H. Effective thermal conductivity of particulate composites with interfacial thermal resistance. J Appl Phys 1997;81(10):6692. [26] Bourolga B,Bardon JP. Measurement of superficial and contact thermal resistances from fundamental time constant. Int J Heat Mass Transfer 1992;35(2):361. [27] Hasselman DPH,Donaldson KY. Thermal conductivity of vapor-liquid-solid silicon carbide whisker-reinforced lithium alu￾minosilicate glass-ceramic composites. J Am Ceram Soc 1996; 79(3):742. [28] Handbook of chemistry and physics. 65th ed. Boca Raton (FL): CRC Press. [29] Touloukian YS,Buyco EH,editors,Thermophysical properties of matter,Vol. 5448. New York: IFI/Plenum,1970. [30] Hi-Nicalon fiber specifications. Yokohama,Japan: Nippon Car￾bon Co.,Ltd. [31] Parker WJ,Jenkins RJ,Butler CP,Abbott GL. Flash method of determining thermal diffusivity,heat capacity and thermal con￾ductivity. J Appl Phys 1961;32:1679. [32] Senor DJ,Youngblood GE,Moore CE,Trimble DJ,Newsome GA,Woods JJ. Effects of neutron irradiation on thermal con￾ductivity of SiC-based composites and monolithic ceramics. Fusion Technology 1996;30(3):943. [33] Properties of Tyranno SA and ZE,by Ube Industries,Ube City, Japan,July 1998. [34] Kingery WD,Bowen HK,Uhlman DR. Introduction to cera￾mics. 2nd ed. New York: John Wiley and Sons; 1976. [35] Haggerty JS,Lightfoot A. Opportunities for enhancing the ther￾mal conductivities of SiC and Si3N4 ceramics through improved processing. Ceram Eng Sci Proc 1996;17(5):475. [36] Senor DJ,Youngblood GE. Analysis of neutron irradiation effects on thermal conductivity of SIC-based composites and monolithic ceramics,fusion Materials semi annual progress report for period ending 30 June,1997. p. 75,DOE/ER-0313/22. [37] Hollenberg GW,Henager Jr. C.H,Youngblood G.E.,Trimble D.J.,Simonson S.A.,Newsome GA,et al. The effect of irradiation on the stability and properties of monolithic silicon carbide and SiC/SiC composites up to 25 dpa. J Nucl Mater 1995; 219:70. G.E. Youngbloodet al. / Composites Science andTechnology 62 (2002) 1127–1139 1139
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