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Microstructure, mechanical and dielectric properties of highly porous silicon nitride ceramics produced by a new water-based freeze casting

机译:通过新型水基冷冻铸造生产的高孔隙度氮化硅陶瓷的微观结构,机械性能和介电性能

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摘要

Novel graded porous Si_3N_4 ceramics with different solid content have been fabricated by a new water-based freeze-casting method. A 25 μm-thick surface dense layer on the porous layer was successfully formed without any noticeable defects. A great number of fibrous grains protruding from the internal walls of the macroscopic aligned channels were observed in the porous Si_3N_4 samples with 20-25 vol.% solid content, but little fibrous grains were formed in the sample with 15 vol.% solid content at the similar processing route. As the solid content increasing from 15 to 25 vol.%, the porosity decreased from 76.8% to 66.4%, while the flexural strength and dielectric constants at 10 GHz increased from 14.3 MPa to 33.5 MPa and 1.78 to 2.64, respectively. The dense/porous Si_3N_4 ceramic is feasible in broadband radomcs application at high temperature due to ultra-low dielectric constants and moderate strength.
机译:通过一种新型的水基冷冻铸造方法,制备了具有不同固含量的新型梯度多孔Si_3N_4陶瓷。成功地在多孔层上形成了厚度为25μm的表面致密层,而没有任何明显的缺陷。在固含量为20-25%(体积)的多孔Si_3N_4样品中观察到大量从宏观对准通道内壁伸出的纤维晶粒,但在固含量为15%(体积)的样品中形成的纤维晶粒很少。类似的加工路线。随着固含量从15%(体积)增加到25%(体积),孔隙率从76.8%降低到66.4%,而10 GHz时的弯曲强度和介电常数分别从14.3 MPa增加到33.5 MPa和1.78到2.64。由于超低介电常数和中等强度,致密/多孔的Si_3N_4陶瓷在高温宽带随机应变应用中是可行的。

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