The use of metal foam projectiles to simulate shock loading on a structure
Tóm tắt
Từ khóa
Tài liệu tham khảo
Ashby, 2000, Vol. 1
Fleck, 2004, The resistance of clamped sandwich beams to shock loading, J Appl Mech ASME, 71, 386, 10.1115/1.1629109
Tan, 2002, Inertia effects in the uniaxial dynamic compression of a closed-cell aluminium alloy foam, J Mater Sci Technol, 18, 480, 10.1179/026708302225002092
Reddy, 1991, Experimental investigation of inertia effects in one-dimensional metal ring systems subjected to end impact—II free ended systems, Int J Impact Eng, 11, 463, 10.1016/0734-743X(91)90014-7
Reid, 1983, Structural plastic shock model for one-dimensional ring system, Int J Impact Eng, 1, 175, 10.1016/0734-743X(83)90005-2
Reid, 1993, Dynamic compression of cellular structures and materials, 295
Zaretsky, 1995, Compressive stress-strain relations and shock Hugoniot curves of flexible foams, J Eng Mater Technol (Trans. ASME), 117, 278, 10.1115/1.2804540
Lopatnikov, 2003, Dynamics of metal foam deformation during Taylor cylinder–Hopkinson bar impact experiment, Composite Struct, 61, 61, 10.1016/S0263-8223(03)00039-4
Lopatnikov, 2004, High-velocity plate impact of metal foams, Int J Impact Eng, 30, 421, 10.1016/S0734-743X(03)00066-6
Reid, 1997, Dynamic uniaxial crushing of wood, Int J Impact Eng, 19, 531, 10.1016/S0734-743X(97)00016-X
Deshpande, 2000, Isotropic constitutive models for metallic foams, J Mech Phys Solids, 8, 1253, 10.1016/S0022-5096(99)00082-4
Dharan, 1970, Testing techniques based on the split Hopkinson bar, Exp. Mech., 10, 370, 10.1007/BF02320419
Morgan, 1986, Dynamic compression of metal disks in the freight train experiment, 553
Radford DD. An experimental technique to study the response of structures to shock loading. Exp Mech 2004, submitted for publication.
Radford DD, Deshpande VS, Fleck NA. The response of clamped sandwich beams subjected to shock loading. Int J Impact Eng, in press.
Frost, 1992