Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7129212 | Optics & Laser Technology | 2018 | 10 Pages |
Abstract
Due to excellent properties, Cr12MoV mold steel, 9Cr18 stainless steel and H13A cemented carbide are widely used in industry. In this paper, the effect of absorption of laser light on ablation efficiency and roughness have been studied using a picosecond pulse Nd:YVO4 laser. The experimental results reveal that laser wavelength, original surface roughness and chemical composition play an important role in controlling ablation efficiency and roughness. Firstly, higher ablation efficiency with lower surface roughness is achieved on the ablation of 9Cr18 at 532, comparing with 1064â¯nm. Secondly, the ablation efficiency increases while the Ra of the ablated region decreases with the decrease of original surface roughness on ablation of Cr12MoV mold steel at 532â¯nm. Thirdly, the ablation efficiency of H13A cemented carbide is much higher than 9Cr18 stainless steel and Cr12MoV mold steel at 1064â¯nm. Scanning electron microscopy images reveals the formation of pores on the surface of 9Cr18 stainless steel and Cr12MoV mold steel at 532â¯nm while no pores are formed at 1064â¯nm. As to H13A cemented carbide, worm-like structure is formed at 1064â¯nm. The synergetic effects of the heat accumulation, plasma shielding and ablation threshold on laser ablation efficiency and machining quality were analyzed and discussed systematically in this paper.
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Engineering
Electrical and Electronic Engineering
Authors
Baoye Wu, Peng Liu, Xizhao Wang, Fei Zhang, Leimin Deng, Jun Duan, Xiaoyan Zeng,