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    The impurity distribution in iron and steel under the action of compression plasma flow

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    As shown by AES and RBS methods, the saturation of a processed material by an alloying element (nitrogen) occurs in ε-area, the analysis of the final surface evidencing that the impurity concentration at the crystal-melt interface is determined mainly by the solubility of both nitrogen and carbon in liquid iron and remains constant for various combinations of processing modes and target materials

    The impurity distribution in iron and steel under the action of compression plasma flow

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    As shown by AES and RBS methods, the saturation of a processed material by an alloying element (nitrogen) occurs in ε-area, the analysis of the final surface evidencing that the impurity concentration at the crystal-melt interface is determined mainly by the solubility of both nitrogen and carbon in liquid iron and remains constant for various combinations of processing modes and target materials
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