Simon N. Lekakh, Laura N. Bartlett
Knowledge of multi-scale particle macro-shape and micro-surface topology is critical in many technical disciplines. Specifically, quality assessment of the shape of the graphite phase in cast irons is essential for day-to-day metal casting operations. Common methods for evaluating particle macro-shape have several drawbacks, often resulting in underestimation of sharp corners and surface texture. In this article, a method based on plotting n-radii from the center of mass to the perimeter and computing multi-scale topological characteristics is described and tested. Parametric tests, involving variations in the number of n-radii and image resolution, were performed to optimize the test parameters. The method was used to quantify different shapes of the graphite phase observed in industrial cast irons. A unified parameter of particle shape quality was proposed for the multi-scale characterization of particle shape, angularity and texture. The n-radii approach could be used in standards for the comprehensive evaluation of graphite shape nodularity, as well as for the characterization of various particulates.
@article{5b64969f-49e3-48b1-becc-c351a606dd62,
title={2026 Lekakh n Radii Graphite Shape Cast Iron},
author={Simon N. Lekakh and Laura N. Bartlett},
year={2026},
language={en}
}TY - JOUR TI - 2026 Lekakh n Radii Graphite Shape Cast Iron AU - Simon N. Lekakh AU - Laura N. Bartlett PY - 2026 LA - en ER -
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