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EXPERIMENTAL ANALYSIS OF PROCESS AND LASER PARAMETERS IN LASER MARKING

机译:激光打标过程和激光参数的实验分析

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摘要

Laser marking is a relatively new process to produce a mark on a product by the energy of a laser beam, mostly for the purpose of product identification and traceability. Compared to other techniques such as ink-marking, mechanical engraving and electro-chemical methods, laser marking has many advantages. In this study, laser marking is done with the laser of a standard RP/RM machine, i.e. a selective laser melting machine. This makes laser marking especially suited for marking parts produced by laser RP/RM techniques. On the other hand, the major difficulty in the process is the number of parameters and their complex relations which have not yet been investigated thoroughly. In the current study, the influences of scan speed, laser pump current (laser power) and pulse frequency of a Q-switched Nd:YAG laser on the mark qualities were investigated by single-factor experiments on stainless steel parts. It was found that these parameters substantially affect mark width, depth and rim formation which is caused by the expelled molten material due to the recoil pressure during the marking process. In order to investigate the influence of cross interactions, a design of experiment methodology was used to evaluate the effects of the same parameters on the success of the laser marking process in terms of removed material and clarity of the mark (visibility, sharpness, etc.).
机译:激光打标是一种相对较新的过程,可以通过激光束的能量在产品上产生标记,主要用于产品识别和可追溯性。与其他技术(例如墨水标记,机械雕刻和电化学方法)相比,激光标记具有许多优势。在这项研究中,激光打标是通过标准RP / RM机器(即选择性激光熔化机)的激光完成的。这使得激光打标特别适合于标记通过激光RP / RM技术生产的零件。另一方面,该过程中的主要困难是参数的数量及其复杂的关系,尚未对其进行彻底的研究。在当前的研究中,通过单因素实验在不锈钢零件上研究了调Q开关Nd:YAG激光器的扫描速度,激光泵浦电流(激光功率)和脉冲频率对标记质量的影响。已经发现,这些参数基本上影响标记宽度,深度和边缘形成,这是由于在标记过程中由于反冲压力而由排出的熔融材料引起的。为了研究交叉相互作用的影响,设计了一种实验方法来评估相同参数对激光打标过程是否成功的影响,包括去除的材料和标记的清晰度(可见度,清晰度等)。 )。

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