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首页> 外文期刊>Journal of Thermal Spray Technology >An Investigation on Temperature Distribution Within the Substrate and Nozzle Wall in Cold Spraying by Numerical and Experimental Methods
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An Investigation on Temperature Distribution Within the Substrate and Nozzle Wall in Cold Spraying by Numerical and Experimental Methods

机译:用数值和实验方法研究冷喷涂中基体和喷嘴壁内的温度分布

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During cold spraying (CS), heat exchange between the hot driving gas and the solid bodies, e.g., spray nozzle and substrate, results in the temperature redistribution within the solid bodies. In this study, numerical and experimental investigations on the heating behavior of the substrate and nozzle wall were conducted to clarify the temperature distribution within the solid bodies in CS. The results show that after heating by the hot gas, the highest temperature presents at the center point of the substrate and decreases toward the substrate back surface and edge. With increasing standoff distance or decreasing inlet temperature, the substrate temperature decreases gradually, but the temperature gradient within the substrate changes little. The numerical results are consistent with the experimental measurements. Besides, it is also found that increasing the substrate size (diameter) can lead to the gradual increment in the substrate temperature. Moreover, the numerical study on the temperature distribution within the nozzle wall reveals that the highest temperature presents at the throat section of the nozzle and that the nozzle material significantly affects the temperature distribution within the nozzle wall.
机译:在冷喷涂(CS)期间,热驱动气体与固体(例如喷嘴和基材)之间的热交换导致固体内的温度重新分布。在这项研究中,对基板和喷嘴壁的加热行为进行了数值和实验研究,以弄清CS中固体中的温度分布。结果表明,在用热气体加热后,最高温度出现在基板的中心点,并朝基板背面和边缘降低。随着隔离距离的增加或入口温度的降低,基板温度逐渐降低,但基板内的温度梯度变化不大。数值结果与实验测量结果一致。此外,还发现增大基板尺寸(直径)会导致基板温度逐渐升高。此外,对喷嘴壁内温度分布的数值研究表明,最高温度出现在喷嘴的喉部,并且喷嘴材料显着影响喷嘴壁内的温度分布。

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