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Magnetic and Structural Properties of Barium Hexaferrite BaFe12O19 from Various Growth Techniques

机译:多种生长技术制备钡铁氧体BaFe12O19的磁性和结构性质

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摘要

Barium hexaferrite powder samples with grains in the μm-range were obtained from solid-state sintering, and crystals with sizes up to 5 mm grown from PbO, Na2CO3, and BaB2O4 fluxes, respectively. Carbonate and borate fluxes provide the largest and structurally best crystals at significantly lower growth temperatures of 1533 K compared to flux-free synthesis (1623 K). The maximum synthesis temperature can be further reduced by the application of PbO-containing fluxes (down to 1223 K upon use of 80 at % PbO), however, Pb-substituted crystals Ba1–xPbxFe12O19 with Pb contents in the range of 0.23(2) ≤ x ≤ 0.80(2) form, depending on growth temperature and flux PbO content. The degree of Pb-substitution has only a minor influence on unit cell and magnetic parameters, although the values for Curie temperature, saturation magnetization, as well as the coercivity of these samples are significantly reduced in comparison with those from samples obtained from the other fluxes. Due to the lowest level of impurities, the samples from carbonate flux show superior quality compared to materials obtained using other methods.
机译:通过固态烧结获得晶粒在μm范围内的六铁酸钡粉末样品,并分别从PbO,Na2CO3和BaB2O4助熔剂中生长出尺寸最大为5 mm的晶体。与无助熔剂合成(1623 K)相比,碳酸盐和硼酸盐助熔剂在1533 K的生长温度低得多的情况下提供了最大和结构最佳的晶体。可以通过施加含PbO的助熔剂进一步降低最高合成温度(使用80 at%PbO时可降至1223 K),但是,Pb取代的Ba1-xPbxFe12O19晶体的Pb含量在0.23(2)范围内≤x≤0.80(2)的形式,取决于生长温度和焊剂PbO含量。尽管与从其他磁通获得的样品相比,这些样品的居里温度,饱和磁化强度和矫顽力值明显降低,但是Pb的取代程度对晶胞和磁参数的影响很小。 。由于杂质含量最低,与使用其他方法获得的材料相比,碳酸盐焊剂的样品显示出更高的质量。

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