Time-resolved laser-induced incandescence characterization of metal nanoparticles

被引:0
|
作者
T. A. Sipkens
N. R. Singh
K. J. Daun
机构
[1] University of Waterloo,Department of Mechanical and Mechatronics Engineering
来源
Applied Physics B | 2017年 / 123卷
关键词
Silver Nanoparticles; Iron Nanoparticles; Heat Transfer Model; Molten Iron; Temperature Decay;
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摘要
This paper presents a comparative analysis of time-resolved laser-induced incandescence measurements of iron, silver, and molybdenum aerosols. Both the variation of peak temperature with fluence and the temperature decay curves strongly depend on the melting point and latent heat of vaporization of the nanoparticles. Recovered nanoparticle sizes are consistent with ex situ analysis, while thermal accommodation coefficients follow expected trends with gas molecular mass and structure. Nevertheless, there remain several unanswered questions and unexplained behaviors: the radiative properties of laser-energized iron nanoparticles do not match those of bulk molten iron; the absorption cross sections of molten iron and silver at the excitation laser wavelength exceed theoretical predictions; and there is an unexplained feature in the temperature decay of laser-energized molybdenum nanoparticles immediately following the laser pulse.
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