The Fractal Dimension of a Particle's Projected Shape by the Area-perimeter Method

Rencently, fractal analysis has been applied to the characterization of particle shape, but there are some problems in obtaining a fractal dimension of a particles projected shape when using an image analyzer. This is because an image analyzer usually does not have a software for fractal analysis, a...

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Published inFuntai Kogakkaishi Vol. 34; no. 1; pp. 4 - 9
Main Authors KADA, Hiroyuki, SUZUKI, Michitaka, HIROTA, Mitsuaki, YAMADA, Shinsuke, OSHIMA, Toshio
Format Journal Article
LanguageEnglish
Published The Society of Powder Technology, Japan 1997
Subjects
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ISSN0386-6157
1883-7239
DOI10.4164/sptj.34.4

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Abstract Rencently, fractal analysis has been applied to the characterization of particle shape, but there are some problems in obtaining a fractal dimension of a particles projected shape when using an image analyzer. This is because an image analyzer usually does not have a software for fractal analysis, and it is not easy to make a computer code for fractal analysis. Thus, the perimeter-area method for the quantitative fractal analysis of particle projected shape was proposed. The method requires only the perimeter and the projected area data of each particle in a sample powder. Using the method, the average fractal dimension of a powder can be obtained by an image analyzer with no add-on software. The relationship between the fractal dimension using the perimeter-area method, and that using the divider method essentially gives a straight line. The result shows that the perimeter-area method can be used instead of the divider method to obtain the fractal dimension of a particle's projected shape.
AbstractList Rencently, fractal analysis has been applied to the characterization of particle shape, but there are some problems in obtaining a fractal dimension of a particles projected shape when using an image analyzer. This is because an image analyzer usually does not have a software for fractal analysis, and it is not easy to make a computer code for fractal analysis. Thus, the perimeter-area method for the quantitative fractal analysis of particle projected shape was proposed. The method requires only the perimeter and the projected area data of each particle in a sample powder. Using the method, the average fractal dimension of a powder can be obtained by an image analyzer with no add-on software. The relationship between the fractal dimension using the perimeter-area method, and that using the divider method essentially gives a straight line. The result shows that the perimeter-area method can be used instead of the divider method to obtain the fractal dimension of a particle's projected shape.
Author KADA, Hiroyuki
HIROTA, Mitsuaki
SUZUKI, Michitaka
YAMADA, Shinsuke
OSHIMA, Toshio
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References 6) Oshima, T., Y. L. Zhang, M. Hirota, M. Suzuki and T. Nakagawa: “The Effect of the Types of Mill on the Flowability of Ground Powder”, J. Soc. Powder Technol. Japan, 30, 496-501 (1993
1) Suzuki, M.: “Fractal Dimension and its Application for Powder Technology”, J. Soc. Powder Technol. Japan, 27, 639-699 (1990
4) Mandelbrot, B. B.: “Fractal Geometry”, pp. 108-115, Nikkei-Science Co. (1984
3) Suzuki, M., Y. Muguruma, M. Hirota and T. Oshima: “Fractal Dimensions of Particle Projected Shapes” J. Soc. Powder Technol. Japan, 25, 287-291 (1988
2) Suzuki, M. and T. Oshima: “The Fractal Dimension in a Randomly Packed System of Uniform-sized Spheres, Simulated by Four Different Algorithms” J. Soc. Powder Technol. Japan, 26, 250-254 (1988
5) Lovejoy, S.: “Area-Perimeter Relation for Rain and Cloud Areas”, Science, 216, 185-187 (1982
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– reference: 1) Suzuki, M.: “Fractal Dimension and its Application for Powder Technology”, J. Soc. Powder Technol. Japan, 27, 639-699 (1990)
– reference: 6) Oshima, T., Y. L. Zhang, M. Hirota, M. Suzuki and T. Nakagawa: “The Effect of the Types of Mill on the Flowability of Ground Powder”, J. Soc. Powder Technol. Japan, 30, 496-501 (1993)
– reference: 3) Suzuki, M., Y. Muguruma, M. Hirota and T. Oshima: “Fractal Dimensions of Particle Projected Shapes” J. Soc. Powder Technol. Japan, 25, 287-291 (1988)
– reference: 5) Lovejoy, S.: “Area-Perimeter Relation for Rain and Cloud Areas”, Science, 216, 185-187 (1982)
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Snippet Rencently, fractal analysis has been applied to the characterization of particle shape, but there are some problems in obtaining a fractal dimension of a...
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SubjectTerms Area-perimeter Method
Divider Method
Fractal Dimension
Image Analyzer
Particle Shape Analysis
Title The Fractal Dimension of a Particle's Projected Shape by the Area-perimeter Method
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