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Optimization Method for Developing Spectral Controlling Cosmetics: Application for Thermal Barrier Cosmetic

机译:开发光谱控制化妆品的优化方法:热障化妆品的应用

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In this paper, a method of optimizing a thermal barrier cosmetic and spectral selective cosmetic by controlling the particle size and material is proposed as a countermeasure to heatstroke. The radiative properties of single cosmetic particles of a wide range of particle sizes and wavelengths in non-absorbing air were calculated in this study based on the Mie theory. Al2O3, TiO2, Au, and Ag were used as the material of the cosmetic particle. The radiative property of a particle cloud in dependent scattering was calculated. The radiative transfer in the cosmetic layer was analyzed, and the spectral reflectance of the cosmetic layer on the human skin was calculated. A new parameter was defined to quantitatively evaluate the performance of the thermal barrier cosmetic and spectral selective cosmetic. For the thermal barrier cosmetic, the Al2O3 particle was determined to be suitable, and its size was optimized. For the spectral selective cosmetic, the Au particle was likewise determined to be suitable, and its size was optimized. Our cosmetics satisfied both aesthetic and thermal concerns.
机译:在本文中,提出了一种通过控制颗粒大小和材料来优化隔热化妆品和光谱选择性化妆品的方法,以作为中暑的对策。在这项研究中,根据米氏理论,计算了在不吸收空气中粒径和波长范围很宽的单个化妆品颗粒的辐射性能。 Al 2 O 3,TiO 2,Au和Ag用作化妆品颗粒的材料。计算了相依散射中粒子云的辐射特性。分析化妆品层中的辐射传递,并计算化妆品层在人皮肤上的光谱反射率。定义了一个新参数来定量评估隔热化妆品和光谱选择性化妆品的性能。对于隔热化妆品,确定Al2O3颗粒是合适的,并且对其尺寸进行了优化。对于光谱选择性化妆品,同样确定Au颗粒是合适的,并且优化了其尺寸。我们的化妆品满足了美学和散热方面的要求。

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