Melting point phenomena of micron-sized indium particles embedded in an aluminum matrix were studied by means of acoustic emission and differential scanning calorimetry. The acoustic response measured during melting increased with indium content. Correlations with differential scanning calorimetry suggest that large indium particles or particles at grain boundaries generate the greatest acoustic emission. Acoustic emission during melting suggests a dislocation generation mechanism to accommodate the 2.5% volume strain required for melting of the embedded particles. © 2012 Elsevier B.V. All rights reserved
Internal friction studies were performed on two aluminum-based alloys: aluminum-indium and aluminum-...
The relationship between tensile elongation and acoustic emission (AE) detected during compressive d...
The acoustic emission from both powder and ingot source beryllium has been measured as a function of...
Plastic strain accommodation and acoustic emission during melting of embedded indium particles in al...
Acoustic emission (AE) is used in this article to study melting and solidification of embedded indiu...
Damping of aluminum-indium alloys with up to 16 wt. % indium was characterized. In the nominally str...
Identification of mechanisms generating acoustic emission during deformation of materials is often d...
Internal friction associated with the volume change during melting was studied in an aluminum-16 wt%...
Acoustic emission signals from polycrystalline Al 1100 samples during plastic deformation were analy...
Both nonuniform heating in a homogeneous material and uniform heating in an inhomogeneous material p...
Title: Study of cooperative dislocation phenomena in solids by the acoustic emis- sion technique Aut...
Acoustic emission experiments were performed on polycrystalline and single crystal 99.99% aluminium ...
Acoustic emission signals from polycrystalline Al 1100 samples during plastic deformation were analy...
Ductile fracture of metals through transgranular microvoid coalescence is recognized as a complex me...
The influence of the strain rate and heat treatment on the occurrence of plastic instabilities in a ...
Internal friction studies were performed on two aluminum-based alloys: aluminum-indium and aluminum-...
The relationship between tensile elongation and acoustic emission (AE) detected during compressive d...
The acoustic emission from both powder and ingot source beryllium has been measured as a function of...
Plastic strain accommodation and acoustic emission during melting of embedded indium particles in al...
Acoustic emission (AE) is used in this article to study melting and solidification of embedded indiu...
Damping of aluminum-indium alloys with up to 16 wt. % indium was characterized. In the nominally str...
Identification of mechanisms generating acoustic emission during deformation of materials is often d...
Internal friction associated with the volume change during melting was studied in an aluminum-16 wt%...
Acoustic emission signals from polycrystalline Al 1100 samples during plastic deformation were analy...
Both nonuniform heating in a homogeneous material and uniform heating in an inhomogeneous material p...
Title: Study of cooperative dislocation phenomena in solids by the acoustic emis- sion technique Aut...
Acoustic emission experiments were performed on polycrystalline and single crystal 99.99% aluminium ...
Acoustic emission signals from polycrystalline Al 1100 samples during plastic deformation were analy...
Ductile fracture of metals through transgranular microvoid coalescence is recognized as a complex me...
The influence of the strain rate and heat treatment on the occurrence of plastic instabilities in a ...
Internal friction studies were performed on two aluminum-based alloys: aluminum-indium and aluminum-...
The relationship between tensile elongation and acoustic emission (AE) detected during compressive d...
The acoustic emission from both powder and ingot source beryllium has been measured as a function of...