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Electromagnetic Propagation Radiative Transport in Fiberous Composites: Dependent Scattering Effects

机译:纤维复合材料中的电磁传播和辐射运输:依赖散射效应

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Electromagnetic propagation and attenuation in a composite is significantly affected by its spectral and anisotropic characteristics in absorbing, emitting and scattering radiation. Due to their inherent inhomogeneity and directionality, reinforced composites can be very discriminating with respect to incoming radiation. The high volume fraction of fibers present in fiber-reinforced composites causes radiative dependent scattering and absorption effects to be important; that is, the scattering and absorption characteristics of one fiber may be affected by the presence of nearby fibers. Based on the configuration average of a random distribution of identical pair-correlated fibers embedded in a matrix, the dependent extinction efficiency for fibrous composites under normal incidence radiation is determined numerically. In addition, the dependent radiative transfer regime is established in terms of various combinations of fiber volume fraction, relative fiber size to incident wavelength and refractive index of fibers and matrix. It is found that the dependence of this dependent scattering regime on the refractive index of fibers and matrix is evident for small and medium size (α{sub}γ<2) fibers. For size parameter α{sub}γ>2, this dependence is insignificant and the limit of fiber volume fraction for independent scattering to apply is f less than 0.075±0.003.
机译:复合材料中的电磁繁殖和衰减受吸收,发射和散射辐射中的光谱和各向异性特性的显着影响。由于它们固有的不均匀性和方向性,增强复合材料可以非常辨别到进入辐射。纤维增强复合材料中存在的纤维的高容积分数导致辐射依赖性散射和吸收效应是重要的;也就是说,一种纤维的散射和吸收特性可能受附近纤维的存在影响。基于嵌入在矩阵中的相同对相关纤维的随机分布的配置平均值,在数值上确定纤维复合材料的依赖消光效率。另外,根据纤维体积分数的各种组合,相对纤维尺寸与入射波长和纤维折射率的各种组合来建立所依赖的辐射转移制度。结果发现,对于小和中等尺寸(α{Sub}γ2)纤维,该依赖性散射方案对纤维和基质折射率的依赖性是显而易见的。对于尺寸参数α{Sub}γ> 2,该依赖性是微不足道的,并且独立散射的纤维体积分数的极限为F小于0.075±0.003。

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