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Laser Processing Technology using Metal Powders

机译:使用金属粉末的激光加工技术

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The purpose of this paper is to review the state of laser processing technology using metal powders. In recent years, a series of research and development efforts have been undertaken worldwide to develop laser processing technologies to fabricate metal-based parts. Layered manufacturing by the laser melting process is gaining ground for use in manufacturing rapid prototypes (RP), tools (RT) and functional end products. Selective laser sintering / melting (SLS/SLM) is one of the most rapidly growing rapid prototyping techniques. This is mainly due to the processes's suitability for almost any materials, including polymers, metals, ceramics and many types of composites. The interaction between the laser beam and the powder material used in the laser melting process is one of the dominant phenomena defining feasibility and quality. In the case of SLS, the powder is not fully melted during laser scanning, therefore the SLS-processed parts are not fully dense and have relatively low strength. To overcome this disadvantage, SLM and laser cladding (LC) processes have been used to enable full melting of the powder. Further studies on the laser processing technology will be continued due to the many potential applications that the technology offers.
机译:本文的目的是回顾使用金属粉末的激光加工技术的现状。近年来,全球范围内进行了一系列研究和开发工作,以开发激光加工技术来制造金属基零件。通过激光熔化工艺进行的分层制造正在用于快速原型(RP),工具(RT)和功能性最终产品的制造中。选择性激光烧结/熔化(SLS / SLM)是发展最快的快速原型技术之一。这主要是由于该工艺适用于几乎所有材料,包括聚合物,金属,陶瓷和许多类型的复合材料。激光束熔化过程中使用的粉末材料与激光束之间的相互作用是定义可行性和质量的主要现象之一。在SLS的情况下,粉末在激光扫描过程中不会完全熔化,因此,经过SLS处理的零件并不完全致密,并且强度相对较低。为了克服这个缺点,已经使用SLM和激光熔覆(LC)工艺使粉末完全熔化。由于该技术提供的许多潜在应用,将继续对激光处理技术进行进一步的研究。

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