材料科学
微观结构
复合材料
水射流
激光烧蚀
烧蚀
机制(生物学)
喷射(流体)
激光器
光学
机械工程
航空航天工程
哲学
工程类
物理
认识论
喷嘴
作者
Wendian Yin,Ze Yu,G.H. Xing,Feng Yang,Zhigang Dong
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2025-06-11
卷期号:18 (12): 2749-2749
摘要
In this study, the influence of different process parameters on the macroscopic and microscopic morphology of the microgroove in the water-jet guided laser was studied. In addition, the microstructure evolution and material ablation mechanism of the microgroove were studied. The results show that with the increase in laser power, the depth of the microgroove increases from 154 μm to 492 μm, the width from 63 μm to 74 μm, and the depth-to-width ratio from 2.45 to 6.62; with the increase in scanning speed, the depth of the microgroove decreases from 525.33 μm to 227.16 μm, and the width from 67.61 μm to 71.02 μm, and the depth-to-width ratio from 7.77 to 3.20. With the increase in water jet pressure, the depth increases from 312.29 μm to 3.20. With the increase in water jet pressure, the depth increased from 312.29 μm to 362.39 μm, the width decreased from 71.59 μm to 62.78 μm, and the depth-to-width ratio increased from 4.38 to 5.77. In addition, the water guided laser processing of SiCp/Al composites produces thermal-mechanical coupling and chemical reaction synergies: the material melts and vaporizes under the action of a high-energy laser beam, and the SiC particles are oxidized and thermally decomposed at local high temperatures due to their high thermal stability.
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