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首页> 外文期刊>Frontiers in Heat and Mass Transfer >MULTICOMPONENT GAS-PARTICLE FLOW AND HEAT/MASS TRANSFER INDUCED BY A LOCALIZED LASER IRRADIATION ON A URETHANE-COATED STAINLESS STEEL SUBSTRATE
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MULTICOMPONENT GAS-PARTICLE FLOW AND HEAT/MASS TRANSFER INDUCED BY A LOCALIZED LASER IRRADIATION ON A URETHANE-COATED STAINLESS STEEL SUBSTRATE

机译:氨基甲酸乙酯涂覆的不锈钢基体上局部激光辐照引起的多组分气体颗粒流动和热/质传递

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A three-dimensional numerical simulation is conducted for a complex process in a laser-material system, which involves heat and mass transfer in a compressible gaseous phase and chemical reaction during laser irradiation on a urethane paint coated on a stainless steel substrate. A finite volume method (FVM) with a co-located grid mesh that discretizes the entire computational domain is employed to simulate the heating process. The results show that when the top surface of the paint reaches a threshold temperature of 560 K, the polyurethane starts to decompose through chemical reaction. As a result, combustion products CO2, H2O and NO2 are produced and chromium (III) oxide, which serves as pigment in the paint, is ejected as solid parcels from the paint into the gaseous domain. Variations of temperature, density and velocity at the center of the laser irradiation spot, and the concentrations of reaction reactant/products in the gaseous phase are presented and discussed, by comparing six scenarios with different laser powers ranging from 2.5 kW to 15 kW with an increment of 2.5 kW.
机译:对激光材料系统中的复杂过程进行了三维数值模拟,涉及在可压缩气相中的传热和传质以及在不锈钢基板上涂覆的聚氨酯涂料进行激光辐照期间的化学反应。有限体积法(FVM)与位于同一位置的网格划分了整个计算域,用于模拟加热过程。结果表明,当涂料的顶表面达到560 K的阈值温度时,聚氨酯开始通过化学反应分解。结果,产生燃烧产物CO 2,H 2 O和NO 2,并且作为油漆中的颜料的氧化铬(III)作为固体小包从油漆中喷出到气态区域。通过比较在2.5 kW至15 kW范围内不同激光功率的6种情况,比较并介绍了激光辐照斑中心温度,密度和速度的变化以及气相中反应物/产物的浓度,并进行了讨论。增量为2.5 kW。

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