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首页> 外文期刊>Optical and quantum electronics >Gradient core-shell HTS/polymer covered magnetoactive composites with ultrafine particles fabricated by 3D printing
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Gradient core-shell HTS/polymer covered magnetoactive composites with ultrafine particles fabricated by 3D printing

机译:通过3D打印制造的具有超细颗粒的梯度核壳HTS /聚合物包覆的磁活性复合材料

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摘要

In this study, we report the laser synthesis and characterization of the core-shell high-temperature superconductor oxides of SrFe_(12)O_(19) and CoFe_2O_4 phases covered with biocompatible polyetheretherketone shells of ultrafine particles and layerwise selective laser sintering of the 3D samples. The optimal regimes of such synthesis are being discussed. Optical and scan electron microscopy with EDX, X-ray diffraction studies show that both core-shell systems have a complex structure with interesting electro-physical properties. Expanding computer aid design of the HTS core distribution in polymer matrix opens door to manipulating the electromagnetic field distribution in such 3D complex core-shell samples.
机译:在这项研究中,我们报告了SrFe_(12)O_(19)和CoFe_2O_4相的核壳高温超导体氧化物的激光合成和表征,该氧化物包覆有生物相容性的超细颗粒聚醚醚酮壳和3D样品的分层选择性激光烧结。这种合成的最佳方案正在讨论中。带有EDX的光学和扫描电子显微镜,X射线衍射研究表明,两个核-壳系统都具有复杂的结构,具有有趣的电物理性质。聚合物基质中HTS核分布的扩展计算机辅助设计为处理此类3D复杂核-壳样品中的电磁场分布打开了大门。

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