Arslan A. Mixed-mode fracture performance of fiber reinforced concrete under impact loading [J]. Materials and Structures, 1995,28: 473—478.
[2]
Nataraja MC, Dhang N, Gupta AP. Statistical variations in impact resistance of steel fiber-reinforced concrete subjected to drop weight test [J]. Cement and Concrete Research, 1999,29(7): 989—995.
[3]
Banthia N, Trottier JF. Deformed steel fiber-cementitious matrix bond under impact [J]. Cement and Concrete Research, 1991,21(2-3): 158—168.
[4]
Bhargava J, Rehnstrom A. Dynamic strength of polymer modified and fiber-reinforced concretes [J]. Cement and Concrete Research, 1977,7(2): 199—208.
[5]
Boteler JM. Compression-shear study of glass reinforced polyester . In: Schmidt, Dandekar,Forbes, eds. CP429, Shock Compression of Condensed Matter . MA,Amherst: The American Institute of Physics,1997. 537—540.
[6]
Dancygier AN. Effect of reinforced ratio on the resistance of reinforced concrete to hard projectile impact [J]. Nuclear Engineering and Design, 1997,172: 233—245.
[7]
Dancygier A N. Rear face damage of normal and high-strength concrete elements caused by hard projectile impact [J]. ACI Materials Journal, 1998,95(3): 291—304.
[8]
Li VC, Maalej M. Toughening in cement based composites, part I, cement, mortar and concrete [J]. Cement & Concrete Composites, 1996,18(4): 223—237.
[9]
Li VC, Maalej M. Toughening in cement based composites, part Ⅱ,fiber reinforced cementitious composites [J]. Cement & Concrete Composites, 1996,18(4): 239—249.
[10]
Chanvillard G. Modeling the pullout of wiredrawn steel fibers [J]. Cement and Concrete Research, 1999,29(7): 1027—1037.