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首页> 外文期刊>Journal of Applied Polymer Science >Aluminum silicate fibers impregnated acrylonitrile butadiene rubber composites: Ablation, thermal transport/stability, and mechanical inspection
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Aluminum silicate fibers impregnated acrylonitrile butadiene rubber composites: Ablation, thermal transport/stability, and mechanical inspection

机译:硅酸铝纤维浸渍的丙烯腈丁二烯橡胶复合材料:烧蚀,热传递/稳定性和机械检查

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摘要

Variant concentrations of ceramic fibers (CerFs) were incorporated into acrylonitrile butadiene rubber (NBR) to fabricate elastomeric ablative composites for ultrahigh temperature applications. The CerFs introduction into the polymer matrix has enhanced the ablation resistance up to 59% and successfully reduced the backface temperature of the polymer composite up to 110oC during the ultrahigh temperature ablation investigation. Thermal decomposition of the polymer composites was diminished up to 10% with increasing fiber concentration in the rubber matrix. Thermal conductivity was reduced equal to 63% while thermal impedance was enhanced up to 84% with the utmost fiber incorporation into the NBR matrix. The CerFs have adversely affected the mechanical properties of NBR matrix due to their brittle/inert nature and weak interface bonding with the host matrix. Scanning electron microscopy along with the energy dispersive x-ray spectroscopy was used to examine the ablated specimens and the fiber dispersion within the host matrix.
机译:将各种浓度的陶瓷纤维(CerFs)掺入丙烯腈丁二烯橡胶(NBR)中,以制造用于超高温应用的弹性烧蚀复合材料。将CerFs引入聚合物基体可以将耐烧蚀性提高到59%,并在超高温烧蚀研究过程中成功地将聚合物复合材料的背面温度降低到110oC。随着橡胶基质中纤维浓度的增加,聚合物复合材料的热分解降低了10%。通过最大程度地将纤维掺入NBR基体,热导率降低了63%,而热阻则提高了84%。 CerF由于其脆性/惰性性质以及与主体基质的弱界面键合而对NBR基质的机械性能产生不利影响。扫描电子显微镜与能量色散X射线光谱法一起用于检查烧蚀的样品以及基质中纤维的分散情况。

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