Zener-Smith proposed the original relation R=4r/3f(v) in 1948, where R and r are the mean radii of the matrix grains and dispersed particles, and f(v) is the volume fraction of dispersed particles. They derived the relation under the assumption that the configuration of the grain boundary was independent of particle distribution. In the present work a modified relation R=4r/3f(v)(2/3) has been obtained by assuming that (1) the grain boundary is roughened by particle pinning, and (2) the amplitude of the roughness is lambda/2, where lambda is the inter-particle distance. Experimental data on the radii of austenite grains and the dispersed cementite particles in high C high Mn steels are shown to agree well with the modified relation.
机构:
College of Information and Electrical Engineering, China Agriculture University, Beijing
College of Science, China Agriculture University, BeijingCollege of Information and Electrical Engineering, China Agriculture University, Beijing
Mi J.
Zhang L.
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College of Science, China Agriculture University, BeijingCollege of Information and Electrical Engineering, China Agriculture University, Beijing
Zhang L.
Zhao L.
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机构:
College of Information and Electrical Engineering, China Agriculture University, BeijingCollege of Information and Electrical Engineering, China Agriculture University, Beijing
Zhao L.
Li J.
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College of Information and Electrical Engineering, China Agriculture University, BeijingCollege of Information and Electrical Engineering, China Agriculture University, Beijing
机构:
College of Information and Electrical Engineering, China Agriculture University
College of Science, China AgricultureCollege of Information and Electrical Engineering, China Agriculture University
Jinrui MI
Luda ZHANG
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College of Science, China AgricultureCollege of Information and Electrical Engineering, China Agriculture University
Luda ZHANG
Longlian ZHAO
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College of Information and Electrical Engineering, China Agriculture UniversityCollege of Information and Electrical Engineering, China Agriculture University
Longlian ZHAO
Junhui LI
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College of Information and Electrical Engineering, China Agriculture UniversityCollege of Information and Electrical Engineering, China Agriculture University