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多孔结构材料有效吸收系数的计算模型和实验分析
引用本文:卢言利,张拴勤,谢卫,吕绪良.多孔结构材料有效吸收系数的计算模型和实验分析[J].兵工学报,2009,30(1):19-23.
作者姓名:卢言利  张拴勤  谢卫  吕绪良
作者单位:总装工程兵科研一所,江苏,无锡,214035;总装工程兵科研一所,江苏,无锡,214035;解放军理工大学,工程兵工程学院,江苏,南京,210007;解放军理工大学,工程兵工程学院,江苏,南京,210007
摘    要:基于波动光学理论建立了激光在多孔结构材料中传输的物理数学模型,计算了多孔结构材料有效吸收系数εo(A)和材料本身吸收系数ε(λ)及多孔结构特性参数A/St的变化关系。利用吸收系数ε(1.06 μm)约为0.56的材料通过浸渍和高温烧结法制备不同孔径的多孔结构材料,采用Lambda 900型紫外/可见光/近红外分光光度计测试多孔结构材料样品在1.06 μm附近的吸收系数,实验结果分析表明,多孔结构材料的有效吸收系数εo(1. 06 μm)随着A/St的增加而降低,其变化趋势和理论计算结果一致。为此,在材料本身的吸收系数一定的情况下,可通进调整多孔结构特性参数A/St:,制备出吸收性能更好的多孔结构材料。

关 键 词:光学  多孔结构材料  有效吸收系数  多孔结构特性参数

Computation Model and Experimental Analysis for Effective Absorption Coefficient of the Multi-pore Materials
LU Yan-li,ZHANG Shuan-qin,XIE Wei,LV Xu-liang.Computation Model and Experimental Analysis for Effective Absorption Coefficient of the Multi-pore Materials[J].Acta Armamentarii,2009,30(1):19-23.
Authors:LU Yan-li  ZHANG Shuan-qin  XIE Wei  LV Xu-liang
Affiliation:1. The lnrst Engineers Scientific Research Institute of the general Armaments Department, Wuxi 214035, Jiangsu, China; 2. Engineering Institute of Engineer Corps, PLA University of Science and Technology, Nanjing 210007, Jiangsu, China
Abstract:The physical mathematical model for the transmitting properties of laser in multi-pore sam?ples was established based on the wave optics theory. The varied relations of the effective absorption coefiicient εo( λ ) with the built-in absorption coefficient ε( λ ) of materials and the multi-pore con?struction parameters A/St were optimized. The maceration and high temperature sintering methods were used to fabricate the multi-pore construction with the material ε (1.06 μm) equaling to 0.56. The absorption coefficient around 1.06 μm was measured by Lambda 900 UV/VIS/NIR spectrome?ter. Experimental results show that the effective absorption coefficient eo(1.06 fxm) declines with in-creasing the multi-pore construction parameter A/ St,which is consistent with the theoretical compu?tation. Therefore, the multi-pore structure materials with better absorption performance can be pre?pared by adjusting the characteristic parameter A/St at a certain material absorption coefficient.
Keywords:optics  multi-pore material  effective absorption coefficient  multi-pore construction characteristic parameter  
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