نتایج جستجو برای: amorphous materials

تعداد نتایج: 457412  

2001
R. Schennach T. Grady D. G. Naugle H. McWhinney W. L. Johnson D. L. Cocke

Bulk amorphous alloys are a new class of materials with a variety of characteristics that make them useful for applications in aqueous environments. While some bulk amorphous metals show increased corrosion resistance, there is still a lack of fundamental electrochemical studies of these materials. Two different compositions of BeCuNiTiZr bulk amorphous alloys have been studied at pH 5, 7, and ...

Journal: :Journal of the Magnetics Society of Japan 1999

Journal: :Physical review letters 2005
Nicolas Giovambattista H Eugene Stanley Francesco Sciortino

It has been suggested that high-density amorphous (HDA) ice is a structurally arrested form of high-density liquid (HDL) water, while low-density amorphous ice is a structurally arrested form of low-density liquid (LDL) water. Recent experiments and simulations have been interpreted to support the possibility of a second distinct high-density structural state, named very high-density amorphous ...

2004
Ricardo Simões António M. Cunha Witold Brostow

Virtual polymeric materials were created and used in computer simulations to study their behavior under uniaxial loads. Both single-phase materials of amorphous chains and two-phase polymer liquid crystals (PLCs) have been simulated using the molecular dynamics method. This analysis enables a better understanding of the molecular deformation mechanisms in these materials. It was confirmed that ...

1991
David Awschalom Matthias Seyboth

Session F. Silicon Carbide: Processing Session L. Nitrides: Transport and Devices Session R. Epitaxy: Metamorphic/Strain Session Y. Epitaxy: Arsenide Nitrides Session D. Antimonide-Based Materials and Devices I Session J. Antimonide-Based Materials and Devices II Session P. Quantum Wells and Superlattices Session E. Materials Integration: Wafer Bonding and Alternative Substrates I Session K. Ma...

Journal: :Physical review letters 2006
M G Fyta I N Remediakis P C Kelires D A Papaconstantopoulos

Tight-binding molecular dynamics simulations shed light into the fracture mechanisms and the ideal strength of tetrahedral amorphous carbon and of nanocomposite carbon containing diamond crystallites, two of the hardest materials. It is found that fracture in the nanocomposites, under tensile or shear load, occurs intergrain and so their ideal strength is similar to the pure amorphous phase. Th...

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