1995
DOI: 10.1007/bf02663914
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Temperature-dependence mechanism of tensile strength of Si-Ti-C-0 Fiber-Aluminum matrix composites

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Cited by 7 publications
(1 citation statement)
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“…The result is opposite to previous research, 11 which could be explained by the fact that thermal stress in the composite with low fibre volume fraction of 15% was so low that its changing could not have a significant influence on the mechanical properties of composites; therefore, the softening of matrix was 1 Micrographs (SEM) of as cast Gr f /Al composites predominant over thermal stress for the reduction in the composite strength with increasing temperature. 17,18 Influence of matrix softening on composite strength at high temperatures According to the rule of mixtures, s c is given by…”
Section: Influence Of Reduction In Residual Stress On Composite Stren...mentioning
confidence: 99%
“…The result is opposite to previous research, 11 which could be explained by the fact that thermal stress in the composite with low fibre volume fraction of 15% was so low that its changing could not have a significant influence on the mechanical properties of composites; therefore, the softening of matrix was 1 Micrographs (SEM) of as cast Gr f /Al composites predominant over thermal stress for the reduction in the composite strength with increasing temperature. 17,18 Influence of matrix softening on composite strength at high temperatures According to the rule of mixtures, s c is given by…”
Section: Influence Of Reduction In Residual Stress On Composite Stren...mentioning
confidence: 99%