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The transmission of elastic waves through the crust and interior of the Earth is strongly influenced by the behaviour of materials under the extreme conditions at depth; consequently, there is strong reason to attempt to simulate those conditions of elevated temperatures and pressures in the laboratory.
This paper proposes an experimental methodology to study the mechanical behaviour of materials under single and multi-impact loadings.
Engineering concepts of stress, strain, shear, yielding and failure are introduced and through consideration of microstructural mechanisms, the behaviour of materials under loading is discussed.
It is important to know the behaviour of materials under the influence of radiation for the effective design of novel sensor systems.
A special test device has been designed to investigate the friction and wear behaviour of materials under very low temperature conditions.
The results advance our understanding of the shear banding behaviour in heterogeneous deformation conditions and also the overall mechanical behaviour of materials under dynamic compression.
Similar(51)
A necessary "nano-reliability" approach as a scientific discipline has to encompass research on the properties and failure behaviour of materials and material interfaces under explicit consideration of their nano-structure and the effects hereby induced.
It is important that the behaviour of such materials under large deformation conditions can be modelled.
This study focuses on the deformation behaviour of organic materials under a drop case.
This study proposes an experimental method of determining the spherical and deviatoric behaviour of these materials under high pressure.
The rheological behaviour of the materials under shear was analysed using linear viscoelastic shear oscillations and creep experiments in order to probe the microstructure at different time scales.
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