首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hardness and micro structural analysis of Bi_(1.6)Pb_(0.4)Sr_2Ca_(2-x)Sm_xCu_3O_y polycrystalline superconductors
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Hardness and micro structural analysis of Bi_(1.6)Pb_(0.4)Sr_2Ca_(2-x)Sm_xCu_3O_y polycrystalline superconductors

机译:Bi_(1.6)Pb_(0.4)Sr_2Ca_(2-x)Sm_xCu_3O_y多晶超导体的硬度和微观结构分析

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摘要

Bi_(1.6)Pb_(0.4)Sr_2Ca_(2-x)Sm_xCu_3O_y superconductors with nominal substitution parameters x = 0.0, 0.001, 0.005, and 0.1 were prepared by the conventional solid-state reaction powder compacting method. The effects of Sm substitution on the phase formation, microhardness and surface microstructure of the samples were investigated. Phase examination by X-ray diffraction indicated that Sm substitution enhanced the formation of the Bi-2212 phase. Morphological investigations by scanning electron microscope revealed that both the number and size of the voids on the sample surfaces decreased with Sm enrichment. This result was also supported by density measurements of the samples. Additionally, indentation-induced Vickers microhardness testing results in the applied load range 0.245-2.940 N were presented. It was shown that microhardness values decreased non-linearly with increasing applied load in all cases. The experimental results were analyzed using the Kick's law, the Hays-Kendall approach and the modified proportional specimen resistance (PSR) model. The analyses revealed that Kick's law failed to explain the observed variations. Besides, the modified PSR model was more suitable than the Hays-Kendall approach to estimate load independent hardness of BSCCO superconductor.
机译:通过常规的固态反应粉末压制方法制备了标称取代参数x = 0.0、0.001、0.005和0.1的Bi_(1.6)Pb_(0.4)Sr_2Ca_(2-x)Sm_xCu_3O_y超导体。研究了Sm替代对样品的相形成,显微硬度和表面微观结构的影响。通过X射线衍射进行的相检查表明,Sm取代增强了Bi-2212相的形成。通过扫描电子显微镜的形态学研究表明,随着Sm的富集,样品表面上的空隙的数量和大小均减小。样品的密度测量也支持该结果。此外,还介绍了在施加的载荷范围0.245-2.940 N下的压痕诱导的维氏显微硬度测试结果。结果表明,在所有情况下,显微硬度值均随着施加的载荷的增加而非线性降低。实验结果采用Kick定律,Hays-Kendall方法和修正的比例标本电阻(PSR)模型进行了分析。分析表明,踢定律无法解释观察到的变化。此外,改进的PSR模型比Hays-Kendall方法更适合估计BSCCO超导体的独立于负荷的硬度。

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