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Polyethylene/boron nitride composites for space radiation shielding

机译:用于空间辐射屏蔽的聚乙烯/氮化硼复合材料

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Composites made with boron might be absorbers of low energy neutrons, and could be used for structural materials for spacecraft. Polyethylene/boron nitride composites were fabricated using conventional polymer processing techniques, and were evaluated for mechanical and radiation shielding properties. The boron nitride powder surfaces were also functionalized to improve interfacial adhesion. Addition of neat boron nitride to an injection molding grade HDPE increased the tensile modulus from 588 to 735 MPa with 15 vol % filler. The bonding of a trifunctional alkoxysilane to the powder surface prior to processing increases the composite modulus to 856 MPa at the same loading. Scanning electron microscopy of fracture surfaces verified that the silane-treated powders had improved adhesion at the filler/polymer interface. Radiation shielding measurements of a 2 wt % boron nitride composite were improved over those of the neat polyethylene. (C) 2008 Wiley Periodicals, Inc.
机译:用硼制成的复合材料可能是低能中子的吸收剂,并且可以用于航天器的结构材料。聚乙烯/氮化硼复合材料是使用常规聚合物加工技术制造的,并进行了机械和辐射屏蔽性能评估。氮化硼粉末表面也被官能化以改善界面粘附。在注塑级HDPE中添加纯净的氮化硼可以使15体积%填料的拉伸模量从588 MPa升高到735 MPa。在加工前,三官能烷氧基硅烷与粉末表面的键合将复合模量提高到856 MPa。断裂表面的扫描电子显微镜证实,硅烷处理的粉末在填料/聚合物界面处具有改善的粘合性。相对于纯聚乙烯,改进了2 wt%氮化硼复合材料的辐射屏蔽性能。 (C)2008 Wiley期刊公司

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