中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Surface forming mechanism and process in laser milling of 7075 aluminum alloy with inclination

文献类型:会议论文

作者Li, Yuan; Chen, Xiaoxiao; Wang, Yunfeng; Zhang, Wenwu
出版日期2020
会议日期OCT 17-20, 2020
关键词OPTIMIZATION
卷号11717
DOI10.1117/12.2587590
英文摘要Aluminum alloy has the advantages of high strength, corrosion resistance and good toughness, so it is widely used in aerospace, automotive manufacturing, and other fields. Laser processing has the advantages of controllable energy, high energy density, wide range of material adaptation, no contact, almost no cutting force, clean and environmentally friendly, etc. Moreover, the complex features and micro structure functionalization of components can be solved by laser processing. The oblique incidence of the laser will reduce the processing depth of beam waist from the geometric level. And the resulting space vector effect can introduce new processing mechanisms. The processing result could be improved by adjusting the vector effect with important value and novelty. In this paper, the mechanism and forming surface of 7075 be processed by nanosecond laser with different positive inclination angles under the same basic process parameters. It is shown that laser milling can effectively reduce the surface roughness of 7075. The result shows that the when the laser inclination angle (theta) is in the range of 0 degrees similar to 40 degrees, the surface roughness of the machined surface decreases with the increase of theta, and the roughness can be as small as 0.15 mu m. When 40 degrees < theta <= 60 degrees, the machined surface roughness increases with the increase of theta, but it is still significantly lower than the original surface roughness. The main reason for this phenomenon is that the projected area, shape, and energy distribution of the laser beam waist in the processing area are affected by the laser beam lead angle. The energy distribution affects the material removal mechanism: cladding, vaporization, or sublimation. And under the positive inclination angle, the processed surface is first irradiated and then processed for the second time by the laser beam. The relative posture of laser beam and workpiece is conducive to the discharge of slag, thus improving the processing quality. And pointed out that within the range of experimental conditions, theta = 40 degrees is the optimal inclination angle, because the processed surface has the least undulation and the highest flatness. Moreover, this research has guiding significance for improving the surface quality of laser processing.
会议录出版者Proceedings of SPIE
学科主题Optics ; Physics
ISSN号0277-786X
ISBN号978-1-5106-4270-6
源URL[http://ir.nimte.ac.cn/handle/174433/23267]  
专题会议专题
会议专题_会议论文
推荐引用方式
GB/T 7714
Li, Yuan,Chen, Xiaoxiao,Wang, Yunfeng,et al. Surface forming mechanism and process in laser milling of 7075 aluminum alloy with inclination[C]. 见:. OCT 17-20, 2020.

入库方式: OAI收割

来源:宁波材料技术与工程研究所

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