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The present paper investigates glass fibre flaw size distributions.
This paper proposes a critical flaw size approach for bolted connections.
The tensile performance of ECC is dependent on the fiber and flaw size distributions.
However, depending on the flaw size distribution, measured strength values show considerable scatter.
Further, during cooling, the presence of quartz particles also increases natural flaw size.
The maximum flaw size distribution along the specimens was also analyzed by cross-sectional image analysis.
The simulated cracking strength vs flaw size relation is in good agreement with test results.
This study did not attempt to determine a "flaw size vs. effect" relation.
Equivalent initial flaw size distributions (EIFSD) were calculated from the life data.
The correlation between the strength and the flaw size distribution is discussed in some simple examples.
The Equivalent Initial Flaw Size methodology was adopted to correlate the two sets of results.
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