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Laser Plasmatron for Diamond Coating Deposition

机译:用于金刚石涂层沉积的激光纤维素

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An experimental installation with a laser plasmatron based on a continuous wave CO2 laser with a radiation power of up to 3.5 kW has been created. The plasmatron design makes it possible to bring out the plasma jet into atmospheric air both along and across the laser beam direction. The spatial temperature distributions on the metal substrate surface heated by the plasma jet are measured. The threshold power for optical discharge maintenance as a function of the gas flow rate and the focal length of the focusing lens are obtained for an Ar and Ar/ CH4/H-2 gas mixture under atmospheric pressure; the radiation spectrum of the discharge plasma is measured. A one-dimensional model of the discharge for estimation of its geometrical parameters in a convergent laser beam with consideration of radiation refraction on the discharge is given.
机译:已经创建了基于连续波CO2激光器的具有激光等离子体的实验装置,并创建了高达3.5kW的辐射功率。 纤维剂设计使得可以在激光束方向上和跨越激光束方向将等离子体射流渗入大气中。 测量由等离子体射流加热的金属基板表面上的空间温度分布。 作为气流速率的函数的光学放电维护的阈值功率和聚焦透镜的焦距是在大气压下的Ar和Ar / Ch 4 / H-2气体混合物的函数; 测量放电等离子体的辐射谱。 给出了考虑到放电辐射折射的收敛激光束中其几何参数的放电的一维模型。

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