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Effects of BN/SiC dual-layer interphase on mechanical and dielectric properties of SiC_f/SiC composites

机译:BN / SiC双层中间相对SiC_f / SiC复合材料力学性能和介电性能的影响

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摘要

BN/SiC dual-layer interphase in SiC_f/SiC composites was successfully prepared using urea-boric acid solution as precursor for dip-coating process and PCS/xylene solution for PIP process. XRD and Raman spectrum results show that both BN and SiC sub-layers have relatively low crystalline degree. The surface of as-prepared BN/SiC dual-layer interphase is smooth and homogeneous, and its thickness is about 0.42 μm. The flexural strength and failure displacement of composites with BN/SiC dual-layer interphase are improved conspicuously to 272 MPa and 0.26 mm, which are both much higher than those of composites without interphase, whose ultimate values are only 126 MPa and 0.14 mm, respectively. The composites with dual-layer interphase show better anti-oxidation capability than do the composites with BN interphase below 1000 °C. e' and e" of the composites increase from 30-i22 to 45- 32 after incorporation of dual-layer interphase, which are caused by relaxation polarization and conductance losses established in the components, including fibers, matrix and interphase.
机译:以尿素硼酸溶液为前驱体,浸涂工艺为PCS /二甲苯溶液,成功制备了SiC_f / SiC复合材料的BN / SiC双层中间相。 XRD和拉曼光谱结果表明,BN和SiC亚层均具有相对较低的结晶度。所制备的BN / SiC双层中间相的表面光滑且均匀,其厚度为约0.42μm。具有BN / SiC双层界面的复合材料的抗弯强度和破坏位移显着提高到272 MPa和0.26 mm,两者都比没有界面相的复合材料高,其极限值分别仅为126 MPa和0.14 mm。 。具有双层界面的复合材料显示出比具有低于1000°C的BN界面的复合材料更好的抗氧化能力。掺入双层中间相后,复合材料的e'和e“从30-i22增加到45-32,这是由包括纤维,基质和中间相在内的组分中建立的弛豫极化和电导损耗引起的。

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