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1)  infrared emissivity
红外发射率
1.
Study on infrared emissivity of thermal camouflage coating in 8~14 μm for fabrics;
织物用热红外伪装涂料在8~14μm波段红外发射率的研究
2.
Study on infrared emissivity of ZnO∶Al(ZAO) thin films prepared by sol-gel process;
溶胶-凝胶法制备ZnO∶Al(ZAO)薄膜的红外发射率研究
3.
Theoretical study of infrared emissivity of indium tin oxide films;
ITO导电膜红外发射率理论研究
2)  IR emissivity
红外发射率
1.
Research on Waterborne Polyurethane with Low IR Emissivity
红外发射率水性聚氨酯的研究
2.
Further,the collagen/ITO composites were used as the pigments to prepare collagen/ITO composite paints and coatings with low IR emissivity,using epoxy resin as a binder in the presence of various auxiliary agents.
5%,涂层的红外发射率(1~22μm,8~14μm,3~5μm)为0。
3.
DSC-TGA and IR emissivity(1~22 μm,8~14 μm,3~5 μm)were studied.
473,涂层的红外发射率(1~22μm,8~14μm,3~5μm)为0。
3)  infrared emittance
红外发射率
1.
Study on infrared emittance of carbon nanotube coating
碳纳米管涂层红外发射率的研究
2.
By the method of adding fillers to polyurethane coatings and changing coatings techniques,low infrared emittance can be gained.
文中主要通过对聚氨酯作为成膜物质时其红外性能和物理化学性能研究,通过加入纳米改性填料和改变涂装工艺的方法来降低其红外发射率,同时涂膜具有优良的物理化学性能。
3.
Study on the Mechanism of Composite Coating with Low Infrared Emittance and Low Radar Reflectance;
首先,为了选择低红外发射率材料,研究了金属、半导体和电介质的光学性质。
4)  infrared emissivity spectra
红外发射率
1.
Based on the previous paper of Tian Guicai,The optical cross sections and infrared emissivity spectra of composite micro-particles of collssol in aerosphere have been calculated by using Aden's and Kerker's theory of Mie's scattering.
Kerker的复合微粒子光散射理论计算了汽溶胶大气中复合微粒子模型的光学特性 ,得到了汽溶胶的散射截面、吸收截面和消光截面以及红外发射率光谱 ,为研究大气红外传输提供了计算方法 。
5)  low infrared emissivity
低红外发射率
1.
Study on low infrared emissivity of coating in 8~14μm;
8~14μm波长低红外发射率涂料的研究
2.
Two low infrared emissivity of coating adhesives are obtained: silicone varnish and EPDM-g-AA polymer.
本论文主要研究了红外隐身涂料粘合剂的物理和化学性能,以及红外隐身涂料粘合剂、填料、颜料颗粒的红外发射率,发现铝粉和氧化铅具有较低的发射率,得到了以有机硅清漆和EPDM接枝聚合物为基体的低红外发射率涂料。
6)  integral infrared radiance
全红外发射率
1.
The integral infrared radiance of ferridravite, granite as a control sample, was studied by x-ray diffraction(XRD), chemical analysis, infrared spectra (FTIR) and radiance measurement.
实验发现:分别经过550、750、850、950、1010和1100℃2h处理的陕西汉中地区电气石,80℃时波长在2-18μm间的全红外发射率在0。
补充资料:单色发射率
分子式:
CAS号:

性质:物体的辐射能力与同温度下黑体的辐射能力之比称为该物体的发射率或黑度。对所有波长的辐射的发射率称为全发射率或简称为发射率;对某一特定波长的辐射的发射率则称为单色发射率。理想灰体的单色发射率与全发射率相同,但实际物体的单色发射率与全发射率往往有很大差别。例如氧化铝波长为8μm的单色发射率为0.97,而其全发射率为0.2~0.3。

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