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Effect of SiC interphase on the mechanical, high-temperature dielectric and high-temperature microwave absorption properties of the SiCf/SiC/Mu composites

机译:SiC界面对SiCf/SiC/Mu复合材料力学、高温介电和高温微波吸收性能的影响

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? 2022 Elsevier Ltd and Techna Group S.r.l.In this study, SiC interphase was prepared via a precursor infiltration-pyrolysis process, and effects of dipping concentrations on the mechanical, high-temperature dielectric and microwave absorption properties of the SiCf/SiC/Mu composites had been investigated. Results indicated that different dipping concentrations influenced ultimate interfacial morphology. The SiC interphase prepared with 5 wt PCS/xylene solution was smooth and homogeneous, and no bridging between the fiber monofilament could be observed. At the same time, SiC interphase prepared with 5 wt PCS/xylene solution had significantly improved mechanical properties of the composite. In particular, the flexural strength of the composite prepared with 5 wt PCS/xylene solution reached 281 MPa. Both ε′ and ε′′ of the SiCf/SiC/Mu composites were enhanced after preparing SiC interphase at room temperature. The SiCf/SiC/Mu composite prepared with 5 wt PCS/xylene solution showed the maximum dielectric loss value of 0.38 at 10 GHz. Under the dual action of polarization mechanism and conductance loss, both ε′ and ε′′ of the SiCf/SiC/Mu composites enhanced as the temperature increased. At 700 °C, the corresponding bandwidth (RL ≤ ?5 dB) of SiCf/SiC/Mu composites prepared with 5 wt PCS/xylene solution can reach 3.3 GHz at 2.6 mm. The SiCf/SiC/Mu composite with SiC interphase prepared with 5 wt PCS/xylene solution is expected to be an excellent structural-functional material.
机译:?2022 爱思唯尔有限公司和Techna集团 S.r.l.In 本研究,通过前驱体渗透-热解工艺制备了SiC界面相,研究了浸渍浓度对SiCf/SiC/Mu复合材料的力学、高温介电和微波吸收性能的影响。结果表明,不同浸渍浓度会影响最终界面形貌。用5 wt% PCS/二甲苯溶液制备的SiC界面相光滑均匀,纤维单丝之间未观察到桥接。同时,用5 wt% PCS/二甲苯溶液制备的SiC界面显著提高了复合材料的力学性能。其中,用5 wt% PCS/二甲苯溶液制备的复合材料的抗弯强度达到281 MPa。在室温下制备SiC界面后,SiCf/SiC/Mu复合材料的ε'和ε''均得到增强。用5 wt% PCS/二甲苯溶液制备的SiCf/SiC/Mu复合材料在10 GHz时的最大介电损耗值为0.38。在极化机理和电导损耗的双重作用下,SiCf/SiC/Mu复合材料的ε′和ε′′均随温度升高而增强。在700 °C时,5 wt% PCS/二甲苯溶液制备的SiCf/SiC/Mu复合材料在2.6 mm处的相应带宽(RL ≤ ?5 dB)可达3.3 GHz。用5 wt% PCS/二甲苯溶液制备的SiC界面SiCf/SiC/Mu复合材料有望成为一种优异的结构功能材料。

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