Several magnesium matrix composites were investigated by means of mechanical spectroscopy. A modulus anomaly has been observed in the composites reinforced with fibers while the phenomenon does not occur with particles. This effect is attributed to bonding and debonding of fibers to the matrix, which is due to thermal stress relaxation by motion of dislocations. The modulus anomaly depends strongly on the orientation of the glide plane of the dislocations with respect to the matrix fiber interface and on the aspect ratio of the fibers. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinhei
The objective of this thesis is to study the mechanical properties of magnesium-based composite (AX4...
The effect of debonding on various moduli of short fiber composites was studied by developing an ana...
Improved crystallite orientation in carbon fibers increases the axial stiffness while decreasing the...
Thermal stress relaxtion at the interfaces in magnesium matrix composite has been studied by mechani...
The goal of the present work is investigation of deformation mechanisms in magnesium-based metal mat...
Metal matrix composites are known for their excellent specific mechanical properties. Nevertheless, ...
The influence of the orientation of the fiber reinforcement on the deformation mechanisms of Mg–Al–C...
Composite materials based on magnesium–lithium (MgLi) and magnesium–yttrium (MgY) matrices reinforce...
We studied the effect of short fibers on the mechanical properties of a magnesium alloy. In particul...
Short C fibres–Mg matrix (AZ91D) composites have been produced by friction stir processing sandwiche...
Low modulus biomaterials are in focus as potential candidates for biomedical implants ensuring a fas...
Abstract--Silver chloride containing alumina fibers or glass microspheres is used as a model materia...
This article reviews recent progress in understanding the stress-relaxation mechanisms in metal-matr...
In recent years, much effort has been spent examining the residual stress-strain states of advanced ...
In the present work neutron diffraction has been applied for ex situ investigation of residual stres...
The objective of this thesis is to study the mechanical properties of magnesium-based composite (AX4...
The effect of debonding on various moduli of short fiber composites was studied by developing an ana...
Improved crystallite orientation in carbon fibers increases the axial stiffness while decreasing the...
Thermal stress relaxtion at the interfaces in magnesium matrix composite has been studied by mechani...
The goal of the present work is investigation of deformation mechanisms in magnesium-based metal mat...
Metal matrix composites are known for their excellent specific mechanical properties. Nevertheless, ...
The influence of the orientation of the fiber reinforcement on the deformation mechanisms of Mg–Al–C...
Composite materials based on magnesium–lithium (MgLi) and magnesium–yttrium (MgY) matrices reinforce...
We studied the effect of short fibers on the mechanical properties of a magnesium alloy. In particul...
Short C fibres–Mg matrix (AZ91D) composites have been produced by friction stir processing sandwiche...
Low modulus biomaterials are in focus as potential candidates for biomedical implants ensuring a fas...
Abstract--Silver chloride containing alumina fibers or glass microspheres is used as a model materia...
This article reviews recent progress in understanding the stress-relaxation mechanisms in metal-matr...
In recent years, much effort has been spent examining the residual stress-strain states of advanced ...
In the present work neutron diffraction has been applied for ex situ investigation of residual stres...
The objective of this thesis is to study the mechanical properties of magnesium-based composite (AX4...
The effect of debonding on various moduli of short fiber composites was studied by developing an ana...
Improved crystallite orientation in carbon fibers increases the axial stiffness while decreasing the...