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Keyword [Shear bands]
Result: 61 - 80 | Page: 4 of 5
61. Plastic deformation and annealing of zirconium- and copper-based bulk metallic glasses
62. Adiabatic shear bands associated with plug formation and penetration in impacted titanium-aluminum-vanadium targets: Formation, structure, and performance
63. Deformation of metallic glass thin films and multilayers
64. The effect of heat treatment on the adiabatic shear bands in AISI 4340 steel at high strain rate
65. Modelling and Simulation of Shear Bands and Tool-tip Vibration in Ultra-precision Diamond Turning
66. Preparation, glass forming ability, crystallization and deformation of (zirconium, hafnium)-copper-nickel-aluminum-titanium-based bulk metallic glasses
67. Ductile phase reinforced bulk metallic glass composites formed by chemical partitioning
68. Fracture and deformation of a zirconium based bulk metallic glass
69. Kinetics of recrystallization in adiabatic shear bands
70. Evolution of adiabatic shear bands in high strength steels at high shear-strain rates
71. Measurement of local strain and temperature during the formation of adiabatic shear bands in steels
72. A study of high strain rate generation of adiabatic shear bands in a titanium alloy
73. ORIENTATION DETERMINATIONS IN THE TRANSMISSION ELECTRON MICROSCOPE AND THE SUPERPLASTIC BEHAVIOR OF A DUPLEX STAINLESS STEEL (SHEAR BANDS)
74. Numerical Modeling of Shear Bands and Dynamic Fracture in Metals
75. Electron Microscopy Investigation Of Dynamic Deformation Mechanism Of A TiAl Alloy In Full Lamellar Structure
76. Preparation And Properties Of Tungsten Fibers/Particles Reinforced Zr-based Amorphous Composite Materials
77. Study On The Effect Of Grain Size On The Shear Band Behavior Of Fe-Fe And Fe-Ni Multilayered Composite Material
78. The Research Of The Formation Process Of The Intracrystalline Shear Bands In Fe/Fe And Fe/Ni Laminated Composite
79. Effect Of Surface Roughness On The Self-organization Behavior Of Multiple Shear Bands In Titanium Alloy Cylindrical Shell
80. Microstructure And Texture Control Of Cr-Ti-B System Microalloyed Low Carbon Double Phase Steel
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