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Electronic and magnetic techniques to determine microstructure and phase stability

机译:用于确定微观结构和相位稳定性的电子和磁技术

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Basic to phae stability in alloys is the electronic structure and interactions in the metallic lattice. Occupation degree of the Brillouin zone with electrons, hence the Femi energy level position with respect to the band edges can be altered by solute additions thus with proper alloying promote specific phase transitions. Combined measurements of electrical conductivity, Hall and Seebeck (thermopower) effects can provide a vast amount of information at the Fermi level, carrier mobility, dominant scattering mechanism, etc. magnetic measurements can be used to determine the susceptibility to phase formation, i.e. signma phase formation in high alloy ferrous metals, and to follow the hydroogen content in structural and hydrogen storage alloys.
机译:合金中Phae稳定性的基本是金属晶格中的电子结构和相互作用。具有电子的布里渊区的占用度,因此可以通过溶质添加可以通过适当的合金化促进特定相转变来改变相对于带状边缘的FEMI能级位置。电导率,大厅和塞贝克(热电机)效果的组合测量可以在费米水平,载流子迁移率,显性散射机制等提供大量信息。磁测量可用于确定对相形成的易感性,即Signma阶段在高合金黑色金属中形成,并遵循结构和储氢合金中的氢原含量。

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