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Al~(3+)-modified elastic properties of copper ferrite

机译:Al〜(3+)改性铜铁氧体的弹性

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Ultrasonic pulse echo-overlap technique at 300 K (9 MHz) has been employed to study the elastic properties of Al~(3+)-substituted CuFe_2O_4 spinel ferrite system. The longitudinal and transverse wave velocities are used to compute elastic moduli and these are corrected to the zero porosity by employing different models. Contrary to expectation, the magnitude of elastic moduli is found to decrease by 75% with only 30% of Al~(3+)-substitution for Fe~(3+) in the system. The lowering of elastic stiffness is mainly due to residual stress-induced spontaneous cracking and presence of oxygen vacant sites in the material. The lower value of lattice energy for polycrystalline specimens as compared to their single crystalline counterparts have been explained in the light of an increase degree of disorientation at the grain boundary with Al~(3+)-substitution.
机译:超声脉冲回波重叠技术在300 K(9 MHz)已被用来研究Al〜(3+)取代的CuFe_2O_4尖晶石铁素体体系的弹性性能。纵向和横向波速用于计算弹性模量,并通过采用不同的模型将其校正为零孔隙率。与预期相反,系统中的Fe〜(3+)的Al〜(3+)取代率仅为30%,弹性模量下降了75%。弹性刚度的降低主要是由于残余应力引起的自发破裂以及材料中存在氧空位。与多晶试样相比,单晶试样的晶格能量较低,这是由于Al〜(3 +)-取代引起的晶界处的取向差增加。

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