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JOURNAL PAPERS

ECC Design - Micromechanics Theory & Modeling (1992-1997)
 

Li, V.C., and Obla, K., "Effect of Fiber Diameter Variation on Properties of Cement Based Matrix Fiber Reinforced Composites", Composites Engineering International Journal Part B 27B, pp. 275-284, 1996.

Wu, H.C., and Li, V.C., "Stochastic Process of Multiple Cracking in Discontinuous Random Fiber Reinforced Brittle Matrix Composites", Int'l of J. of Damage Mechanics, Vol. 4, No. 1, pp 83-102, 1995.

Maalej, M., Li, V.C., and Hashida, T., "Effect of Fiber Rupture on Tensile Properties of Short Fiber Composites", ASCE J. of Engineering Mechanics, Vol. 121, No. 8, pp. 903-913, 1995.

Stang, H., Li, V.C., and Krenchel, H., "Design and Structural Applications of Stress-Crack Width Relations in Fiber Reinforced Concrete", J. of Materials and Structures, 28, pp. 210-219, 1995.

Katz, A., and Li, V.C., "Inclination Angle Effect of Carbon Fibers in Cementitious Composites", ASCE J. of Engineering Mechanics, Vol. 121, No. 12, pp. 1340-1348, 1995.

Maalej, M., Hashida, T., and Li, V.C., "Effect of Fiber Volume Fraction on the Off-Crack Plane Energy in Strain-Hardening Engineered Cementitious Composites", J. American Ceramics Society, Vol. 78, No. 12, pp. 3369-3375, 1995.

Wu, H.C., and Li, V.C., "Trade-off between Strength and Ductility of Random Discontinuous Fiber Reinforced Cementitious Composites", J. of Cement and Concrete Composites, 16, pp. 23-29, 1994.

Li, V.C., and Chan, Y.W., "Determination of Interfacial Debond Mode for Fiber Reinforced Cementitious Composites", ASCE J. Engineering Mechanics, Vol. 120, No.4, pp. 707-719, 1994.

Maalej, M., and Li, V.C., "Flexural Strength of Fiber Cementitious Composites", ASCE J. of Materials in Civil Engineering, Vol. 6, No. 3, pp. 390-406, Aug., 1994.

Maalej, M., and Li, V.C., "Flexural/Tensile Strength Ratio in Engineered Cementitious Composites", ASCE J. of Materials in Civil Engineering, Vol. 6, No. 4, pp. 513-528, Nov., 1994.

Li, V.C., and Obla, K.H., "Effect of Fiber Length Variation on Tensile Properties of Carbon Fiber Cement Composites", Int'l J. of Composites Engineering, Vol. 4, No. 9, pp. 947-964, 1994.

Li, V.C., Stang, H., and Krenchel, H., "Micromechanics of Crack Bridging in Fiber Reinforced Concrete", J. of Materials and Structures, 26, pp. 486-494, 1993.

Li, V.C., "From Micromechanics to Structural Engineering - the Design of Cementitous Composites for Civil Engineering Applications", JSCE J. of Struc. mechanics and Earthquake Engineering, Vol. 10, No.2, pp. 37-48, 1993.

Leung, C.K.Y., and Li, V.C., "Effects of Fiber Inclination on Crack Bridging Stresses in Fiber Reinforced Brittle Matrix Composites", J. Mechanics and Physics of Solids, Vol. 40, pp. 1333-1362, 1992.

Li, V.C., "A Simplified Micromechanical Model of Compressive Strength of Fiber Reinforced Cementitious Composites", J. of Cement and Concrete Composites, Vol. 14, No. 2, pp. 131-141, 1992.

Li, V.C. "Post-Crack Scaling Relations for Fiber-Reinforced Cementitious Composties", ASCE J. of Materials in Civil Engineering, Vol. 4, No. 1, pp. 41-57, 1992.

Li, V.C., and Leung, C.K.Y., "Steady State and Multiple Cracking of Short Random Fiber Composites", ASCE J. of Engineering Mechanics, Vol. 188, No. 11, pp. 2246-2264, 1992.

Li, V.C., and Wu, H.C., "Conditions for Pseudo Strain-Hardening in Fiber Reinforced Brittle Matrix Composites", J. Applied Mechanics Review, V. 45, No. 8, August, pp. 390-398, 1992.

More Journal Papers on Micromechanics Theory and Modeling can be found here: 1998-2010 and 1979-1991

 

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