2007
Fabrication of High Performance 2.5D SiO2f/Si3N4‐BN Composites for High‐temperature Application
Abstract: A radar window for a reentry vehicle should process critical properties, such as high mechanical properties which are resistant to stress failure induced by large thermal impact, high microwave transmission efficiency at room and high temperature, and very high ablation resistance. Fused silica, BN and Si 3 N 4 ceramics are the three popular materials for such applications, but they are limited in some fields for their intrinsic disadvantages. [1] When Si 3 N 4 , [2] AlN, [3] AlN-Si 3 N 4 , [4] AlN-BN, [5] BN …
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Cited by 23 publications
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Abstract
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“…As indicated in Table 1 that the linear ablation rate of the SFRN increases with the increasing density. In the work, the as-received composite is composed of Si 3 N 4 and BN [3] which have not the melting point. For example, Si 3 N 4 decomposes at 1900°C [5], and BN sublimates at 3000°C.…”
Section: Results
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confidence: 99%
Abstract
Smart CitationsHow this paper cites the one you are viewing
“…As indicated in Table 1 that the linear ablation rate of the SFRN increases with the increasing density. In the work, the as-received composite is composed of Si 3 N 4 and BN [3] which have not the melting point. For example, Si 3 N 4 decomposes at 1900°C [5], and BN sublimates at 3000°C.…”
Section: Results
mentioning
confidence: 99%
“…The SFRN was prepared according to the Ref. [3]. The fiber volume content of the 2.5D SiO 2f is 47% and the fabrics were infiltrated with hybrid precursor of PBSZ in vacuum.…”
Section: Methods
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confidence: 99%
Abstract
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“…The growth of branched Si 3 N 4 ceramics was attributed to a vapor-liquid-solid mechanism [122]. Jiang et al [124,125] fabricated quartz fiber reinforced nitride composites (Si 3 N 4 -BN) by polyborosilazane pyrolysis. The results showed that the composite processes a high flexural strength (101.8 MPa) and a good thermal-physical performance.…”
Section: Binary Silicon-based Ceramics
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confidence: 99%
Abstract
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“…[11,12] Quartz fibers are one of the most commonly used reinforcements in radome composites because of their excellent dielectric properties. [13][14][15][16] However, their low mechanical property at high temperature is the critical drawback, limiting their application to more hostile conditions. [1,16,17] In addition, quartz fibers are intrinsically prone to crystallization at high temperatures, leading to the low preparation temperature of the composites.…”
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confidence: 99%
