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Al2O3对低温共烧介电材料性能和微观结构的影响 总被引:1,自引:0,他引:1
以氧化物组分为主,经过750℃煅烧,成功制备了Ba-Ti-B-Si-O玻璃陶瓷,烧结温度为900℃左右的低温共烧陶瓷组合材料,其性能为1MHz时相对介电常数εr在10左右,介质损耗系数tanδ在2.0×10-3左右,基本满足作为低温共烧陶瓷材料的性能指标.与高温熔融法比较,直接煅烧法获得的LTCC烧结体中存在较多气孔,影响了烧结体的介电稳定性和烧结特性,为了使该LTCC粉体更具有实用价值,研究发现,2%~5%(质量分数)Al2O3的搀杂可以明显改善烧结体的微观结构,气孔基本消除,材料的体电阻率增大,使其介电性能稳定;但随着氧化铝含量超过10%(质量分数),烧结体致密度下降,介电性能变差. 相似文献
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The cofiring compatibility between ferrite and relaxor ferroelectrics materials is the key issue in the production of multilayer chip LC filters. The cofiring behavior, interracial microstructure and diffusion of di-layer composites of NiCuZn ferrite/PMN relaxor ferroelectrics are studied. In order to analyze the matching condition of thermodynamic properties between ferrite and relaxor ferroelectric ceramics, TMA is performed on PMN ferroelectrics and NiCuZn ferrite with certain percentage of Bi2O3, respectively. EDS results demonstrate that serious element diffusions exist at the interface, which is in accordance with the phase analysis based on XRD patterns. 相似文献
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