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- W2144231502 abstract "Micrometer and sub-micrometer sized non-magnetic particles were manipulated by an external strong magnetic fleld (e.g., 10 Tesla) with a high gradient. During the strong magnetic fleld efiects, segregation of the non-magnetic particles was observed which could not be realised only with gravitational fleld. Numerical calculations were subsequently carried out to understand the efiects on the insulating particles in a conductive liquid matrix. The migration of micrometer sized particles is obviously enhanced by the magnetic fleld gradient. Combining the experimental results and theoretical analysis, particle-particle magnetic interaction was found to in∞uence the overall segregation of the particles as well. Magnetised by the strong magnetic fleld, magnetic interaction between non-magnetic particles becomes dominant and a self-assembly behavior can be demonstrated. Various factors such as the magnetic dipole-dipole interaction and chain- chain interaction, are governing the particles assembly. According to calculations, magnetic fleld should be strong enough, at least 7T in order to obtain the assembly morphologies in the present case." @default.
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- W2144231502 date "2010-01-01" @default.
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- W2144231502 title "STRONG MAGNETIC FIELD INDUCED SEGREGATION AND SELF-ASSEMBLY OF MICROMETER SIZED NON-MAGNETIC PARTICLES" @default.
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- W2144231502 doi "https://doi.org/10.2528/pierb10062104" @default.
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