Clustering probability maps for metal matrix composites
Due to a typesetting error, the title of the above paper was incorrectly printed as "Clustering probability maps for private metal matrix composites". We apologize for any inconvenience that this has caused the Authors or the readers. [The original article appeared in Scripta Materialia, v...
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description | Due to a typesetting error, the title of the above paper was incorrectly printed as "Clustering probability maps for private metal matrix composites". We apologize for any inconvenience that this has caused the Authors or the readers. [The original article appeared in Scripta Materialia, vol. 43, no. 9, pp. 835-840, 16 Oct. 2000, and is abstracted in Metals Abstracts under the accession number 200102-62-0172 with the following abstract: The effect of Relative Particle Size (RPS) ratio on clustering is studied by varying the size of the matrix particles rather than varying that of the matrix and reinforcement particles simultaneously. Onset of clustering of small particles depends upon both RPS ratio and reinforcement volume fraction. Limits for clustering of the second phase particles and the critical volume fraction can be readily predicted from the Clustering Probability Maps.] |
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We apologize for any inconvenience that this has caused the Authors or the readers. [The original article appeared in Scripta Materialia, vol. 43, no. 9, pp. 835-840, 16 Oct. 2000, and is abstracted in Metals Abstracts under the accession number 200102-62-0172 with the following abstract: The effect of Relative Particle Size (RPS) ratio on clustering is studied by varying the size of the matrix particles rather than varying that of the matrix and reinforcement particles simultaneously. Onset of clustering of small particles depends upon both RPS ratio and reinforcement volume fraction. 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title | Clustering probability maps for metal matrix composites |
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