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Influence of focal length on the Laser Metal Deposition process with coaxial wire feeding

机译:同轴送丝激光金属沉积过程对焦距对焦距的影响

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In some applications of Laser Metal Deposition (LMD) the advantages of the utilization of wire instead of powder additivescan be used. The use of a wire as a solid additive material eliminates major disadvantages of powder-based LMD processes,namely contamination of the process cell with metal powder, significant material losses during the process, health andsafety issues as well as the impact of insufficient powder quality. A closed annularly shaped laser beam surrounding thewire is one of the distinguishing features of the discussed LMD processing head. The laser beam and wire are arrangedcoaxially to each other, with the wire being fed through the inside of an annularly shaped laser beam without anyshadowing. The annularly shaped intensity profile leads to a significant improvement in wire-based LMD. Furthermore,in contrast to lateral wire feeding, two substantial technological advantages, namely the independence of the feed directionand the processing of complex 3D geometries can be identified. Since the angle of incidence on the wire and base materialdepends on the caustic of the annularly shaped laser beam, the focal length has a significant influence on the LMD process.The results of experiments with different focal lengths are discussed. Material samples from Inconel 718 are built andevaluated metallographically. With the help of a high-speed camera the varying process behavior in dependence of thefocal length and laser beam quality is analyzed. Finally, an outlook towards future research will be given.
机译:在激光金属沉积(LMD)的一些应用中,利用线而不是粉末添加剂的优点可以使用。用电线作为固体添加剂材料消除了基于粉末的LMD工艺的主要缺点,即用金属粉末污染过程细胞,过程中的重大物质损失,健康和安全问题以及粉末质量不足的影响。围绕的封闭环形激光束电线是所讨论的LMD处理头的区别特征之一。激光束和线布置彼此同轴,线通过环形形激光束的内部馈送而没有任何阴影。环形强度曲线导致线基LMD的显着改善。此外,与横向送线相比,两个实质性的技术优势,即饲料方向的独立性并且可以识别复杂的3D几何形状的处理。由于线材和基材的入射角和基材取决于环形重形激光束的腐蚀性,焦距对LMD工艺产生了显着的影响。讨论了不同焦距的实验结果。来自Inconel 718的材料样本构建和在金属化上评估。在高速相机的帮助下,不同的过程行为依赖分析了焦距和激光束质量。最后,将给出对未来研究的前景。

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