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Study on Hollow Particles Based Low Infrared Emissivity Material

Lv Xiaomeng

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Abstract

Low infrared emissivity materials based on hollow particles are prepared by chemical Ni-coated processing,and surface morphology,absorbance,emissivity and infrared radiant energy are characterized.Hollow particles is fully packaged by Ni-P films and shown as few needle things on surface by SEM.IR,DSC demonstrates that the materials absorbance can be decreased from 34.2% to 13.9%,and infrared emissivity can be decreased from 0.85 to 0.65 at waveband of 8~14 μm,and infrared radiant energy is lower than ones of other metal fillers greatly.Then it is hopeful to be applied in research field of low emissivity infrared hidden coat.

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What this paper is about

Low infrared emissivity materials based on hollow particles are prepared by chemical Ni-coated processing,and surface morphology,absorbance,emissivity and infrared radiant energy are characterized.Hollow particles is fully packaged by Ni-P films and shown as few needle things on surface by SEM.IR,DSC demonstrates that the materials absorbance can be decreased from 34.2% to 13.9%,and infrared emissivity can be decreased from 0.85 to 0.65 at waveband of 8~14 μm,and infrared radiant energy is lower than ones of other metal fillers greatly.Then it is hopeful to be applied in research field of low emissivity infrared hidden coat.

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Available abstract

Low infrared emissivity materials based on hollow particles are prepared by chemical Ni-coated processing,and surface morphology,absorbance,emissivity and infrared radiant energy are characterized.Hollow particles is fully packaged by Ni-P films and shown as few needle things on surface by SEM.IR,DSC demonstrates that the materials absorbance can be decreased from 34.2% to 13.9%,and infrared emissivity can be decreased from 0.85 to 0.65 at waveband of 8~14 μm,and infrared radiant energy is lower than ones of other metal fillers greatly.Then it is hopeful to be applied in research field of low emissivity infrared hidden coat.

Key concepts: Emissivity, Infrared, Materials science, Low emissivity, Absorbance, Radiant energy, Optics, Radiation

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