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Influences of Powder Specifications and Powder Delivery on Laser and Powder Particles Interaction during the LRF Process

机译:粉末规格和粉末输送对LRF过程中激光和粉末颗粒相互作用的影响

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With deep studying on the process of laser rapid forming (LRF) the researchers gradually meet the knowledge that it is very important to understand the mechanism of interaction between the laser and the powder particles since it is the key point to realize the effective control of the LRF process. The high-speed photography has been employed to realize in situ observation on the delivery process of powdered materials for the first time. A group of parameters -- delivery parameters of powder is put forward to characterize the delivery process in quantitative by dealing with the digital images obtained. On the basis of quantitative description of the powder delivery, an analytical model is presented to study the attenuation of the laser power caused by the cloud of the power particles. Another analytical model is also presented to study the temperature rise of the particle irradiated by the laser. It can be found that the attenuation ratio is determined together by the powder specifications, the powder feeding parameters and the powder delivery parameters. With the off axial powder nozzle being employed in the paper, the diameter of the powder steam was always bigger than the diameter of laser spot, thus the laser processing parameters have no effect on the laser attenuation. The temperature rise of the particle is determined by the powder specifications and the powder delivery parameters too. Meanwhile the laser processing parameters also affects the temperature rise of the particle. With the decreasing of the particle radius, the irradiation heating effect increases remarkably.
机译:通过对激光快速成型(LRF)过程的深入研究,研究人员逐渐认识到,了解激光与粉末颗粒之间相互作用的机制非常重要,因为这是实现对粉末的有效控制的关键。 LRF过程。高速摄影已被首次用于对粉末材料的输送过程进行原位观察。提出了一组参数-粉末的输送参数,以通过处理获得的数字图像来定量表征输送过程。在对粉末输送进行定量描述的基础上,提出了一个分析模型来研究由功率颗粒的云雾引起的激光功率的衰减。还提出了另一个分析模型来研究激光照射的粒子的温度升高。可以发现,衰减率是由粉末规格,送粉参数和送粉参数共同决定的。在本文中使用偏轴粉末喷嘴时,粉末蒸汽的直径总是大于激光点的直径,因此激光加工参数对激光衰减没有影响。颗粒的温升也由粉末规格和粉末输送参数决定。同时,激光加工参数也会影响颗粒的温升。随着粒子半径的减小,辐照加热效果显着提高。

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