首页> 外文会议>2015 Joint IEEE International Symposium on the Applications of Ferroelectric, International Symposium on Integrated Functionalities and Piezoelectric Force Microscopy Workshop >A comparative study of BaTiO3-BaFe12O19 multiferroic composites prepared by conventional and microwave sintering techniques
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A comparative study of BaTiO3-BaFe12O19 multiferroic composites prepared by conventional and microwave sintering techniques

机译:常规和微波烧结技术制备BaTiO 3 -BaFe 12 O 19 复合材料的比较研究

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摘要

As one of the most important multiferroic composite systems, the 0.9BaTiO-0.1BaFeO (0.9BT-0.1BFO) composite was prepared by conventional sintering (CS) and microwave sintering (MS) techniques. High density ceramics were obtained by MS method in 70 min of cycle time, whereas it took 748 min by CS method. The phase composition and diphase microstructure of the composite samples were examined by X-ray diffraction (XRD) and scanning electron microscopy (SEM). It was observed that ferroelectric phase BaTiO can well coexisted with the magnetic phase BaFeO, and the MS 0.9BT-0.1BFO composite showed more uniform and smaller grain size than those of CS samples. Improvement of the electric properties, including decrease in conductivity and dielectric loss was observed due to high densification, good microstructure and grain refinement in case of microwave sintering. Besides, both samples exhibited a high value of dielectric constant at low frequencies and high temperatures because of the effect of space charges that played an important role in the composites. The value of magnetization and coercive for the MS sample were significantly higher and more saturated than that of CS samples. The area for the future optimization of the sintering schedule in order to produce the dense fine-grained 0.9BT-0.1BFO multiferroic composite is also proposed.
机译:0.9BaTiO-0.1BaFeO(0.9BT-0.1BFO)复合材料是最重要的多铁复合系统之一,它是通过常规烧结(CS)和微波烧结(MS)技术制备的。 MS方法在70分钟的循环时间内即可获得高密度陶瓷,而CS方法则需要748分钟。通过X射线衍射(XRD)和扫描电子显微镜(SEM)检查复合材料样品的相组成和双相微结构。观察到铁电相BaTiO与磁相BaFeO可以很好地共存,并且MS 0.9BT-0.1BFO复合材料比CS样品具有更均匀,更小的晶粒尺寸。在微波烧结的情况下,由于高致密化,良好的微观结构和晶粒细化,观察到电性能的改善,包括电导率和介电损耗的降低。此外,由于空间电荷的影响,两个样品在低频和高温下均显示出高介电常数值,这在复合物中起着重要作用。 MS样品的磁化和矫顽力值显着高于CS样品,并且更饱和。还提出了用于未来烧结计划优化的区域,以生产致密的细晶粒0.9BT-0.1BFO多铁性复合材料。

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