T. Ito, H. Fujiwara
In this study, we characterize the high-temperature deformation of typical “Class I” solid solution Al-Mg alloys as a superplastic elongation attributable to the solute drag creep of dislocations. The second-phase particles formed by adding Fe or Si as impurity atoms to the Al-Mg alloys impeded the gliding motion of dislocations, thereby decreasing their hot ductility and resulting in cavity formation. High-temperature tensile tests were performed with initial strain rates in the range of 1×10–3 to 1×10–1 s–1 at air temperatures 673–723 K. The dominant high-temperature deformation mechanism in these alloys was the solute drag creep controlled by the interdiffusion of Mg in Al. In this study, the calculation of critical length, defined by the diffusion-based relaxation of the stress concentration region around second-phase particles, is reported using the Needleman–Rice parameter. An analysis of the impact of cavity formation based on a comparison of the Needleman–Rice parameter and second-phase particle size is also reported.
@article{c7f7be5b-3a43-42c7-97eb-8c5c920998b5,
title={EFFECTS OF SECOND-PHASE PARTICLE SIZE ON THE HIGH-TEMPERATURE DUCTILITY OF Al-Mg SOLID SOLUTION ALLOYS CONTAINING SMALL AMOUNTS OF IMPURITY ATOMS},
author={T. Ito and H. Fujiwara},
year={2026},
language={en}
}TY - JOUR TI - EFFECTS OF SECOND-PHASE PARTICLE SIZE ON THE HIGH-TEMPERATURE DUCTILITY OF Al-Mg SOLID SOLUTION ALLOYS CONTAINING SMALL AMOUNTS OF IMPURITY ATOMS AU - T. Ito AU - H. Fujiwara PY - 2026 LA - en ER -
This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data
Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle
Increasing volumes of waste printed circuit boards from obsolete electronic equipment posed escalating environmental risks and resource losses due to
The leachability tests for manufacturing scrap TV boards (STVB) have indicated the release of metals beyond the limit levels with potential problems f