Affiliation:
1. Institute of Precision Machining (KSF) Furtwangen University Katharinenstrasse 2 78532 Tuttlingen Germany
2. Institute for Manufacturing Technology Technische Universität Dresden George-Bähr-Str. 3c 01069 Dresden Germany
3. Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS TU Dresden and Fraunhofer IWS Winterbergstr. 28 01277 Dresden Germany
Abstract
Due to its high corrosion resistance and mechanical properties, stainless steel is commonly used in various industrial applications. Although different types of stainless steel are similar in their chemical composition, they can differ significantly in their thermal diffusivity. This property is relevant in the ability of a material to conduct heat and thus, in laser processing. In this frame, this study compares the ablation efficiency and characteristics of polished stainless steel samples of the alloys AISI 304, AISI 420, and AISI 316Ti. They are irradiated with single ultrashort pulses having pulse durations between 250 fs and 10 ps as well as using GHz burst modii. The goal is to investigate the differences in both the ablation threshold and the ablation rate to improve the ablation efficiency. The results show that shorter pulse durations lead to a more efficient ablation process. On the other hand, GHz bursts are found to be, in general, less efficient. In addition, there is a significant difference in the surface morphology depending on the process parameters. The differences in the thermal diffusivity do not significantly influence the ablation threshold fluence but surface morphology and the ablation rate.
Subject
Condensed Matter Physics,General Materials Science
Cited by
1 articles.
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