Microstructural observations on the composite Al-SiG-15p obtained by the compocasting process

Authors

  • A. Manzano-Ramírez CINVESTAV-IPN. Lab. de Inv. en Materiales
  • F. Ruiz Instituto de Física. Univeersidad Autónoma de San Luis Potosí
  • A. Magallanes-Castañeda Grupo Uniko

DOI:

https://doi.org/10.3989/revmetalm.1996.v32.i6.882

Keywords:

Compocasting, Mechanical entrapment, Atomic force microscope, Solid fraction, Shear rate

Abstract


In order to study how the processing variables of the compocasting process, such as shear rate and solid fraction, influence the mechanical entrapment of SiCp in the aluminium matrix of the Al-SiC-xxp composite. In the present work, shear rate and solid fraction were varied (γ = 27, 120 and 219 s-1 and fs = 0.3, 0.4 and 0.5, respectively). In addition, the atomic force microscope (AFM) was used to investigate the surface topography of the composite, with the purpose of determine, qualitatively, the degree of interfacial bonding between aluminium matrix and reinforcement elements. By using the Chemical facilities of SEM it was attempted to determine the composition of the second phase responsible of bonding between matrix and particulate. The results obtained in the AFM confirmed that the mechanical entrapment of the particles by the solid is more efficient at high solid fractions (fs > 0.4) and high shear rates (γ > 120 s-1). In contrast, at low fs (< 0.3) and low γ (< 27 s-1) such effect is poor. In addition, qualitative evidence, recorded by optical micrographs, illustrate the mechanism of dendritic fragmentation and change (from dendritic to globular) of the primary-solid phase in the compocasting process. SEM results suggested that bonding could be established through the silicon phase nevertheless it is considered that more accurate analysis is needed.

Downloads

Download data is not yet available.

Downloads

Published

1996-12-30

How to Cite

Manzano-Ramírez, A., Ruiz, F., & Magallanes-Castañeda, A. (1996). Microstructural observations on the composite Al-SiG-15p obtained by the compocasting process. Revista De Metalurgia, 32(6), 359–368. https://doi.org/10.3989/revmetalm.1996.v32.i6.882

Issue

Section

Articles

Most read articles by the same author(s)