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Preparation and Properties of Si_3N_4-BaTiO_3 Composite Ceramics

机译:Si_3N_4-BATIO_3复合陶瓷的制备及性能

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Si_3N_4-BaTiO_3 composite ceramics, a type of high dielectric materials applied in the multifunction radome, were prepared by gas pressure-sintering method. The influences of BaTiO_3 power content on the mechanical performances, dielectric properties and microstructure of Si_3N_4-BaTiO_3 composite ceramics were investigated. The results showed that the sintering density, the elastic modulus and the flexural strength of Si_3N_4-BaTiO_3 composite ceramics all firstly increased and then decreased along with the increase of BaTiO_3 power in sample. Meanwhile, Relationship between BaTiO_3 power content and dielectric properties of Si_3N_4-BaTiO_3 composite ceramics within the frequency range of 8.2-12.4 GHz (X-band) was studied. The average of dielectric constant ε of Si_3N_4-BaTiO_3 composite ceramics increased from 7.33 to 9.98 and the average of dielectric loss tanδ increased from 2.8 × 10~(-3) to 0.0168 when the content of BaTiO_3 power increased from 0 to 25 wt.%. The increase of the dielectric properties of Si_3N_4-BaTiO_3 composite ceramics were attributed to the electronic and molecular polarization at interface between Si_3N_4 and BaTiO_3, compared with the pure matrix Si_3N_4.
机译:Si_3N_4-BaTiO_3复合陶瓷,类型在多功能天线罩施加的高电介质材料的,由气体压力烧结方法制备。在机械性能BaTiO_3功率含量的影响,介电性能和Si_3N_4-BaTiO_3复合陶瓷的微观结构进行了研究。该结果表明,烧结密度,弹性模量和Si_3N_4-BaTiO_3复合陶瓷的弯曲强度都先升高,然后用BaTiO_3功率的样本的增加而降低沿。同时,BaTiO_3功率内容和8.2-12.4千兆赫(X波段)的频率范围内Si_3N_4-BaTiO_3复合陶瓷的介电性能之间的关系进行了研究。平均Si_3N_4-BaTiO_3复合陶瓷的介电常数ε的从7.33增加至9.98,平均介电损耗tanδ的从2.8×10〜(-3)增加至0.0168时BaTiO_3功率的含量从0提高到25%(重量) 。 Si_3N_4-BaTiO_3复合陶瓷的介电性能的增加是由于在Si_3N_4和BaTiO_3之间界面处的电子和分子极化,与纯基质Si_3N_4比较。

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