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扫描速度对双光束耦合纳秒激光加工模具钢抛光表面质量的影响

Effects of Scanning Speed on the Polished Surface Quality of Mold Steel by Dual-Beam Coupling Nanosecond Laser.

作者信息

Zhang Huihui, Chen Xiaoxiao, Zhang Wenwu, Ruan Dianbo

机构信息

School of Mechanical Engineering and Mechanics, Ningbo University, Ningbo 315211, China.

Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Zhejiang Provincial Key Laboratory of Aero Engine Extreme Manufacturing Technology, Ningbo 315201, China.

出版信息

Materials (Basel). 2023 Feb 9;16(4):1477. doi: 10.3390/ma16041477.

Abstract

In this paper, a novel dual-beam coupled nanosecond laser was used to polish S136D mold steel. The effects of scanning speed, total fluence, spot overlap ratio, and on surface quality were analyzed. The polished surface roughness Ra without ultrasonic cleaning is too large due to slag, splash, and dust produced by laser polishing. When scanning speed is 1250 mm/min, surface roughness Ra with ultrasonic cleaning is reduced from the original surface 1.92 μm to 0.72 μm, and the surface roughness Ra is reduced by 62.50%. When the is 35.38 J/cm, the minimum value of surface roughness Ra is 0.72 μm. If the total fluence is higher or lower, it is not conducive to reducing the surface roughness, the total fluence is higher, and there is a polished surface with SOM phenomenon. The polished surface with spot overlap ratio of 98.55% has a smooth morphology, and a minimum value of surface roughness Ra of 0.41 μm. When the specimen is inclined at a certain angle, the high-magnification camera captures color on the polished surface. It is found that the microscopic texture of molten material flow trace and polishing scanning track is obvious. Polished surface is mainly distributed with Fe, Cr, C, and O elements. The surface material processing speed per unit time is low, and the polishing surface quality is improved less. The maximum surface roughness Ra is 1.98 μm. The minimum Ra of polished surface with smoother morphology is 0.41 μm, and surface profile height is basically the same. The research results show that the new dual-beam coupled nanosecond laser polishing technology can improve surface quality of materials. This research work provides process guidance for laser polishing effect analysis and mechanism innovation.

摘要

本文采用一种新型双光束耦合纳秒激光对S136D模具钢进行抛光。分析了扫描速度、总能量密度、光斑重叠率等对表面质量的影响。由于激光抛光产生的熔渣、飞溅物和灰尘,未经超声清洗的抛光表面粗糙度Ra过大。当扫描速度为1250mm/min时,经超声清洗后的表面粗糙度Ra从原始表面的1.92μm降至0.72μm,表面粗糙度Ra降低了62.50%。当总能量密度为35.38J/cm时,表面粗糙度Ra的最小值为0.72μm。如果总能量密度过高或过低,均不利于降低表面粗糙度,总能量密度过高时,会出现表面有SOM现象。光斑重叠率为98.55%的抛光表面形貌光滑,表面粗糙度Ra的最小值为0.41μm。当试样倾斜一定角度时,高倍相机拍摄到抛光表面有颜色。发现熔料流动痕迹和抛光扫描轨迹的微观纹理明显。抛光表面主要分布有Fe、Cr、C和O元素。单位时间内表面材料加工速度较低,抛光表面质量改善较小。最大表面粗糙度Ra为1.98μm。形貌较光滑的抛光表面最小Ra为0.41μm,表面轮廓高度基本相同。研究结果表明,新型双光束耦合纳秒激光抛光技术能够提高材料的表面质量。本研究工作为激光抛光效果分析及机理创新提供了工艺指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2001/9962744/3742e39e8f71/materials-16-01477-g001.jpg

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