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首页> 外文期刊>Optics & Laser Technology >Experimental characterization of the inner surface in micro-drilling of spray holes: A comparison between ultrashort pulsed laser and EDM
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Experimental characterization of the inner surface in micro-drilling of spray holes: A comparison between ultrashort pulsed laser and EDM

机译:喷雾孔微钻孔内表面的实验表征:超短脉冲激光与EDM的比较

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In this research, the inner surface characteristics of micro-drilled holes of fuel injector nozzles were analyzed by Shear Force Microscopy (SHFM). The surface texture was characterized by maximum peak-to-valley distance and periodicity whose dimensions were related to the adopted energy. 180 μm diameter holes were drilled using ultrashort pulsed laser process using pulse energies within the range of 10-50 μJ. Laser ablated surfaces in the tested energy range offer a smooth texture with a peculiar periodic structure with a variation in height between 60 and 90 nm and almost constant periodicity. The Scanning Electron Microscopy (SEM) photograph of the Laser Induced Periodic Surface Structure (LIPSS) showed the co-existence of Low Spatial Frequency LIPSS (LSFL) and High Spatial Frequency LIPSS (HSFL). A comparative analysis was carried out between the highest laser pulse energy in the tested range energy laser drilling which enables the shortest machining time and micro-Electrical Discharge Machining (μ-EDM). On the contrary, results showed that surfaces obtained by electro-erosion are characterized by a random distribution of craters with a total excursion up to 1.5 μm with a periodicity of 10 μm. The mean-squared surface roughness (R_q) derived from the scanned maps ranges between 220 and 560 nm for μ-EDM, and between 50 and 100 nm for fs-pulses laser drilling.
机译:在这项研究中,通过剪切力显微镜(SHFM)分析了喷油嘴微孔的内表面特性。表面纹理的特征是最大峰谷距离和周期性,其大小与所采用的能量有关。使用超短脉冲激光工艺,在10-50μJ范围内的脉冲能量上钻出了180μm直径的孔。在测试能量范围内的激光烧蚀表面可提供具有特殊周期性结构的平滑纹理,其高度在60到90 nm之间变化,并且周期性几乎恒定。激光诱导的周期性表面结构(LIPSS)的扫描电子显微镜(SEM)照片显示低空间频率LIPSS(LSFL)和高空间频率LIPSS(HSFL)并存。在能够使加工时间最短的测试范围能量激光钻孔中的最高激光脉冲能量与微电火花加工(μ-EDM)之间进行了比较分析。相反,结果表明,通过电蚀获得的表面的特征在于坑的无规分布,总偏移量最大为1.5μm,周期为10μm。从扫描图得出的均方根表面粗糙度(R_q)对于μ-EDM为220-560 nm,对于fs-脉冲激光钻孔为50-100 nm。

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