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首页> 外文期刊>Journal of Materials Engineering and Performance >Impact of Laser Fluence in Modifying the Surface Characteristics of Laser-Treated Monocrystalline Zinc
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Impact of Laser Fluence in Modifying the Surface Characteristics of Laser-Treated Monocrystalline Zinc

机译:激光物质对改变激光处理的单晶锌的表面特性的影响

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摘要

Zinc single crystal specimens were irradiated with pulsed Nd:YAG laser in vacuum. Keeping the number of laser shots constant (10 shots), laser energy was varied from 50 to 150 mJ, whereas the corresponding laser fluence was 97 to 292 J cm(-2), respectively. Using optical microscope, the dimensions (area and perimeter) of laser ablated region on the surface of each specimen were measured. Both parameters increased, in general, on increasing laser pulse energy. Examination of surface morphology by scanning electron microscope revealed formation of pores, grooves, cracks, bubbles, micron-size rods, ripples, ridges, cavities, microcones, and solid flakes, etc. Surface roughness had no systematic dependence on the laser pulse energy. Structural parameters, i.e., texture coefficient, lattice strain, and crystallite size, were determined by means of Harris analysis as well as Williamson-Hall analysis of the XRD patterns of specimens. The variation of lattice strain and crystallite size with laser fluence or laser pulse energy was alike. Surface hardness decreased on increasing laser fluence, and followed classical Hall-Petch relation.
机译:用脉冲Nd:YAG激光在真空中辐照锌单晶样品。在保持激光发射次数不变(10次)的情况下,激光能量在50到150 mJ之间变化,而相应的激光注量分别为97到292 J cm(-2)。利用光学显微镜测量了每个试样表面激光烧蚀区的尺寸(面积和周长)。总的来说,随着激光脉冲能量的增加,这两个参数都增加了。通过扫描电子显微镜检查表面形态,发现孔隙、凹槽、裂纹、气泡、微米大小的杆、波纹、脊、腔、微骨和固体薄片等的形成。表面粗糙度与激光脉冲能量没有系统的相关性。结构参数,即织构系数、晶格应变和晶粒尺寸,通过哈里斯分析以及试样XRD图谱的威廉姆森-霍尔分析确定。晶格应变和晶粒尺寸随激光注量或激光脉冲能量的变化相似。表面硬度随激光注量的增加而降低,并遵循经典的霍尔-佩奇关系。

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