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Ceramic Particle Dispersion Analysis in LASER Surface Alloying

机译:激光表面合金化陶瓷颗粒分散分析

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The present work aims to analyze the dispersion process (path) of the solid particles by moving a spherical particle from the feeding-nozzle outlet till the penetration of the melted surface (by the laser beam) and then its path in the metal bath. In laser surface treatment technologies with injection of hard particles in the melting bath it is necessary for the particles to work against the surface stress to penetrate through the surface of the bath into the melt. The theory shown was used in precalculations for the experiments carried out dispersing carbide particles (WC, TaC, NbC). Powder of particles of all three types were dispersed by means of the Ar carrying gas into an C15 steel melt by CO{sub}2 laser. Evaluating the results of this process taking into consideration different specific technological parameters (speed of the beam, powder feeding speed) one can conclude that all three carbide types can penetrate into the melt.
机译:本作者旨在通过从进给喷嘴出口移动球面颗粒直到穿透熔化的表面(通过激光束),然后在金属浴中的路径中分析固体颗粒的分散过程(路径)。在激光表面处理技术中,在熔化浴中注射硬颗粒,颗粒需要抵抗表面应力,以穿过浴的表面进入熔体。所示的理论用于分散碳化物颗粒(WC,TAC,NBC)的实验的预期。通过将Ar的Ar载入C15钢制熔酶,通过CO {} 2激光粉末分散所有三种颗粒的粉末。评估该过程的结果考虑到不同的特定技术参数(梁的速度,粉末喂料速度)可以得出结论,所有三种碳化物类型都可以渗透到熔体中。

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