スピネル型フェライト粉体のメカノケミストリー
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概要
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Mechano-chemical reactions and.structural changes of some spinel-type ferrite powders by grinding have been investigated.<BR>It was observed that the mechano-chemical reaction occurred on the MgFe<SUB>2</SUB>O<SUB>4</SUB> particle surface during wet grinding and a thin layer containing combined water was formed on the surface. The thickness of the layer was almost constant independently of the grinding duration. The calculated values of OHs/100Å<SUP>2</SUP> (the number of OH radical per unit surface area) for wet ground samples were in the range of 62 to 66. The Mg<SUB>0.86</SUB>Mn<SUB>0.43</SUB>Fe<SUB>0.71</SUB>O<SUB>4</SUB> powder was subjected to various wet grinding treatments using the following three types of mill: 1) attritor, 2) ball mill, 3) vibratory mill. The thickness of the layer containing combined water was nearly constant independently of a variety of grinding treatments. The calculated values of OHs/100Å2 were in the range of 79 to 92.<BR>The powder of ordered Li<SUB>0.5</SUB>Fe<SUB>2.5</SUB>O<SUB>4</SUB>, in the spinel structure of which the Li and Fe ions make 1:3 ordering at the octahedral sites, were wet ground in a ball mill. As a result, the long-range order parameter decreased with increasing the grinding time.<BR>In the case of the CuFe<SUB>2</SUB>O<SUB>4</SUB> powder, the tetragonal structure was gradually transformed to the cubic one with grinding. The mechanism of this mechanochemical polymorphic transformation can be explained by the destruction of a cooperative Jahn-Teller effect by grinding.
- 社団法人 粉体粉末冶金協会の論文
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