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Pulsed Nd:YAG Laser Micro-turning of Alumina to Study the Effect of Overlap Factors on Surface Roughness Performance

机译:脉冲ND:氧化铝的YAG激光微调,研究重叠因子对表面粗糙度性能的影响

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Laser micro-turning is one of the latest micromachining technologies for processing cylindrical shaped work material.Utilizing this novel micromachining process,micron size depth of desired length along the cylindrical axis of the workpiece can be micro-turned using highly intense laser beam.In this process,there are two important overlap factors i.e.spot overlap and circumferential overlap play important role for achieving the desired quality of micro-turning surface.The present paper deals with the effect of overlap factors on roughness of laser micro-turning surface.By varying the pulse frequency,workpiece rotating speed and workpiece axial feed rate,a range of spot overlap and circumferential overlap can be achieved and experiments have been conducted at different process parametric combinations.Parametric effects and detailed analysis have been carried out using different graphical plots.Scanning electron microscopic (SEM) images of the machined surface were also analysed for the qualitative assessment and parametric effects of the process.
机译:激光微转动是用于加工圆柱形工作材料的最新微机械技术之一。这种新颖的微机械加工过程,沿着工件的圆柱形轴线的微米尺寸深度可以使用高强烈的激光束微型转动。在此过程中,有两个重要的重叠因子ievit重叠和周向重叠对实现微转动表面的所需质量起着重要作用。本文涉及重叠因子对激光微转弯表面粗糙度的影响。相加的脉冲频率,工件旋转速度和工件轴向进料速率,可以实现光斑重叠和周向重叠的范围,并且在不同的过程参数组合中进行了实验。参数效果和详细分析已经使用不同的图形绘图。扫描电子还分析了加工表面的微观(SEM)图像该过程的定性评估和参数效应。

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