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Intercalated Nanocomposites Based on High-Temperature Superconducting Ceramics and Their Properties

机译:基于高温超导陶瓷的插层纳米复合材料及其性能

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摘要

High temperature superconducting (SC) nanocomposites based on SC ceramics and various polymeric binders were prepared. Regardless of the size of the ceramics’ grains, the increase of their amount leads to an increase of resistance to rupture and modulus and a decrease in limiting deformation, whereas an increase in the average ceramic grain size worsens resistance properties. The SC, thermo-chemical, mechanical and dynamic-mechanical properties of the samples were investigated. Superconducting properties of the polymer ceramic nanocomposites are explained by intercalation of macromolecule fragments into the interstitial layer of the ceramics’ grains. This phenomenon leads to a change in the morphological structure of the superconducting nanocomposites.
机译:制备了基于SC陶瓷和各种聚合物粘合剂的高温超导(SC)纳米复合材料。不管陶瓷晶粒的大小如何,其含量的增加都会导致抗断裂和模量的增加,极限变形的减少,而平均陶瓷晶粒尺寸的增加会使电阻性能变差。研究了样品的SC,热化学,机械和动态机械性能。高分子陶瓷纳米复合材料的超导性能可以通过将大分子碎片插入陶瓷晶粒的间隙层中来解释。这种现象导致超导纳米复合材料的形态结构发生变化。

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